tag:blogger.com,1999:blog-24822616037959272282024-02-08T11:33:48.412-08:006th International Conference on 3D Printing Technology and Innovations<b>Date:</b>May 24-25, 2021<br>
<b>Venue:</b>Webinar
Stella Hayneshttp://www.blogger.com/profile/13612416070949410215noreply@blogger.comBlogger1125tag:blogger.com,1999:blog-2482261603795927228.post-38747401001330413952019-10-31T05:47:00.001-07:002020-11-17T10:39:23.307-08:003D Printing 2021<div dir="ltr" style="text-align: left;" trbidi="on">
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<h2 class="heading-highlights" style="background: rgb(56, 138, 187); border-radius: 4px 4px 0px 0px; box-shadow: rgba(0, 0, 0, 0.2) 1px 1px 1px; box-sizing: border-box; color: white; font-family: "Helvetica Neue", Helvetica, Arial, sans-serif; font-size: 22px; font-weight: 500; line-height: 1.1; margin: 0px; padding: 5px 45px; position: relative;">
<b>About Conference</b></h2>
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“<a href="https://3dprinting.insightconferences.com/">5<sup>th</sup> International Conference on 3D Printing Technology and Innovations</a>”
during <time datetime="2021-05-24" style="box-sizing: border-box; color: #333333; font-family: "Roboto Slab", serif; font-size: 18px; text-align: center;">May 24-25, 2021 </time><a href="https://3dprinting.insightconferences.com/registration.php" style="box-sizing: border-box; color: #b98642; font-family: "Roboto Slab", serif; font-size: 18px; text-align: center; text-decoration-line: none;"><span class="blinking" style="animation: 1.2s ease 0s infinite normal none running blinkingText; box-sizing: border-box; font-weight: bold;">Webinar</span></a>, which includes prompt
keynote presentations, Oral talks, Poster presentations and Exhibitions.</div>
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<a href="https://3dprinting.insightconferences.com/">3D Printing</a> also
known as Additive manufacturing. It turns digital 3D models into solid
objects by building them up in layers. The technology was first invented
in the 1980s, and since that time has been used for rapid prototyping
(RP). However, in the last few years, <a href="https://3dprinting.insightconferences.com/">3D printing </a>has additionally started to evolve into a next-generation <a href="https://3dprinting.insightconferences.com/">manufacturing technology </a>that
has the potential to allow the local, on-demand production of final
products or parts thereof. This technology is used in the fields of
jewellery, footwear, industrial design, architecture, engineering and
construction (AEC), automotive, <a href="https://3dprinting.insightconferences.com/">aerospace</a>, dental and medical industries, education, geographic information systems, civil engineering, and many others.</div>
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CONFERENCE HIGHLIGHTS</h2>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 1:</span></b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> </span><a href="https://3dprinting.insightconferences.com/events-list/advances-in-3d-printing-additive-manufacturing-technology"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;"> Advances in 3D Printing & Additive
Manufacturing Technology</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
<div class="MsoNormal" style="background: white; line-height: normal; margin-bottom: 7.5pt; text-align: justify;">
<a href="https://www.omicsonline.org/proceedings/3d-printing-a-new-way-for-building-body-spare-parts-and-implants-16742.html"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is a form of Additive
manufacturing is a process of making three dimensional solid objects by laying
down successive layers of material from a digital file. It is also known as
rapid prototyping. According to <b>Standard Terminology for </b></span><a href="http://www.omicsgroup.org/journals/additive-manufacturing-a-renaissance-2168-9806.1000e131.php?aid=33748"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Additive Manufacturing</span></a><b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> Technologies,</span></b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> The <b>American
Society for Testing and Materials</b> (ASTM) group “<b>ASTM F42 – Additive
Manufacturing</b>” developed a set of standards that classify the Additive
Manufacturing processes into some categories. </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 2:</span></b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> </span><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt;"><a href="https://3dprinting.insightconferences.com/events-list/applications-of-3d-printing-in-health-care-medicine">Applications
of 3D Printing in Health Care & Medicine<span style="font-weight: normal;"></span></a></span></b></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">3D Printing has been applied in medicine since 2000s. For
manufacturing of custom pros-thetics and </span><a href="http://www.omicsgroup.org/journals/dental-implants-OHCR-1000e102.php?aid=63891"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">dental implants</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> it was first used and then
onwards the medical applications for 3D Printing has evolved significantly. By
the use of 3D printing we can produce </span><a href="http://www.omicsgroup.org/journals/exoskeletons--the-new-technology-in-rehabilitation-2165-7025-1000e142.php?aid=63745"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">exoskeletons</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, windpipes, jaw bone, bones, ears,
blood vessels, vascular networks, tissues, eye-glasses, cell cultures, stem cells
and organs. The current </span><a href="http://www.omicsgroup.org/journals/3d-printing-technology-in-pharmaceutical-drug-delivery-prospects-andchallenges-2167-7956-1000e141.php?aid=64501"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">medical applications of 3D Printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> can be
categorized into a number of categories that are creating im-plants, tissue and
organ fabrication, prosthetics and pharmaceutical research concerning </span><a href="http://www.omicsonline.com/open-access/antimalarial-drug-discovery-andrographis-paniculata-leaf-extract-2470-6965-1000e132.php?aid=81894"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">drug discovery</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> and anatomical models. </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 3: </span></b><a href="https://3dprinting.insightconferences.com/events-list/innovations-in-3d-printing"><b><span style="font-family: "times new roman" , "serif"; font-size: 10pt;">Innovations in 3D Printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="http://www.omicsgroup.org/journals/3d-printing-technology-in-pharmaceutical-drug-delivery-prospects-andchallenges-2167-7956-1000e141.php?aid=64501"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Printing technology</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is constantly
evolving and definitely has a considerable measure in its pocket for the
future. The level of customization that the technology offers opens up the door
for its application in numerous enterprises, permitting it to take care of a
considerable measure of issues. This review will abandon you with a look at
work in advance in the 3D Printing Industry. </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 4: </span></b><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt;"><a href="https://3dprinting.insightconferences.com/events-list/3d-printing-materials">3D
Printing Materials<span style="font-weight: normal;"></span></a></span></b></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">A wide range of materials can be utilized for </span><a href="https://www.omicsonline.org/proceedings/3d-printing-a-new-way-for-building-body-spare-parts-and-implants-16742.html"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, for example, ABS plastic, PLA,
polyamide (nylon), glass filled polyamide, </span><a href="http://www.omicsonline.org/stereolithography-and-the-use-of-preadapted-fabricated-plates-for-accurate-repair-of-maxillofacial-defects-2161-1173.S6-004.php?aid=17924"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">stereo lithography</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> materials (epoxy gums), silver,
titanium, steel, wax, photopolymers and polycarbonate. The materials accessible
for 3D printing have progressed significantly since the beginning of the
innovation. There is presently a wide assortment of various material types,
which are provided in various states. Particular materials are now generally
produced for particular stages performing dedicated applications with material
properties that more precisely suit the application. The energy around the
promise of 3D printing has opened the floodgates. New printers are being
created each day to print a wide range of materials from </span><a href="http://www.omicsonline.com/open-access/plastics-issues-challenges-and-remediation-2252-5211.1000134.php?aid=23449"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">plastics</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, metals, composites, and cement, to
organic materials, paper, and food. </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 5: </span></b><a href="https://3dprinting.insightconferences.com/events-list/metal-3d-printing"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Metal 3D Printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="https://www.omicsgroup.org/journals/powder-metallurgy-mining.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Metal 3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> also known as Metal </span><a href="https://www.omicsgroup.org/journals/powder-metallurgy-mining.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Additive Manufacturing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> (AM) and
Direct Metal Laser Sintering (DMLS) is the procedure by which parts are
fabricated by a laser fusing together high performance metals, layer by layer.
Metal printing processes like powder bed fusion, metal binder jetting, and
directed energy deposition developed at an explosive pace. There are various
sorts of </span><a href="https://www.omicsgroup.org/journals/powder-metallurgy-mining.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">metal 3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> that each have their own
particular advantages. Here are some of the most common types used to digitally
craft metal objects.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 6: </span></b><a href="https://3dprinting.insightconferences.com/events-list/benefits-of-3d-printing-and-technology"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Benefits of 3D Printing and Technology</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">3D Printing, whether at an Industrial, local or individual level, brings
a large group of advantages that conventional strategies for fabricate (or
prototyping) simply can't. </span><a href="https://www.omicsonline.org/proceedings/3d-printing-a-new-way-for-building-body-spare-parts-and-implants-16742.html"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> forms take into account mass
customisation — the capacity to customize items as per individual needs and
prerequisites. When you utilize a 3D printer over more conventional </span><a href="http://www.sciencedirect.com/science/journal/15266125"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">manufacturing Processes</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, the list of
coming about advantages is entirely long. From significant cost investment
funds and quicker generation times to more imaginative opportunity and a
diminished carbon impression, there is no deficiency of focal points with these
manufacturing methods. A 3D printer diminishes your overhead expenses
altogether, and in more ways than one. Initially, it eliminates material
expenses. Rather than utilizing a major square of </span><a href="http://www.omicsonline.com/open-access/plastics-issues-challenges-and-remediation-2252-5211.1000134.php?aid=23449"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">plastic</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, metal or other material and
removing the product out of it we can utilize just the materials totally
essential for the construct (added substance producing). This not just cuts
your forthright expenses for materials, it also reduces the funds you'd
typically spend on transporting and discarding that </span><a href="http://www.omicsonline.com/open-access/international-journal-waste-resources.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">waste</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">.</span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 7: </span></b><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt;"><a href="https://3dprinting.insightconferences.com/events-list/3d-printing-technology-impact-on-manufacturing-industry">3D
Printing Technology Impact on Manufacturing Industry<span style="font-weight: normal;"></span></a></span></b></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">3D printing, or </span><a href="http://www.omicsgroup.org/journals/additive-manufacturing-a-renaissance-2168-9806.1000e131.php?aid=33748"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">additive manufacturing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, has been the
concentration of some solid talks in the manufacturing industry in the most
recent couple of years. While the idea of </span><a href="https://3dprinting.insightconferences.com/"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> has been around for some time, new progressions in the innovation
have begun to bring down the cost of the procedure to levels that make it more
achievable for general manufacturing use. The procedure of utilizing
specialized equipment to gather an object layer by layer has some one of a kind
and fascinating points of interest over traditional manufacturing. </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 8: </span></b><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt;"><a href="https://3dprinting.insightconferences.com/events-list/3d-printing-in-biomaterials">3D
printing in Biomaterials<span style="font-weight: normal;"></span></a></span></b></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">3D bio printing is the process of making cell designs in a bound space
utilizing 3D printing technologies, where cell capacity and suitability are
saved inside the printed build. 3D bioprinting contributes to huge advances in
the medical field of </span><a href="http://www.omicsonline.org/open-access/tissue-engineering-and-regenerative-medicine-from-and-beyond-the-dentistry-2161-1122-1000306.php?aid=54683"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">tissue engineering</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> by taking into account research
to be done on inventive materials called biomaterials. </span><a href="http://www.omicsonline.org/biotechnology-biomaterials.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Biomaterials</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> are the materials adjusted and
utilized for printing three-dimensional articles. Some of the most prominent
bioengineered substances are normally stronger than the normal real materials,
including soft tissue and bone. These constituents can act as future
substitutes, even upgrades, for the original body materials. </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 9: </span></b><a href="https://3dprinting.insightconferences.com/events-list/3d-bio-printing"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Bio printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="https://3dprinting.insightconferences.com/"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Bio printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is the way towards making cell
designs in a restricted space utilizing 3D printing technology, where cell
capacity and viability are saved inside the printed build. 3D bioprinting adds
to huge advances in the medicinal field of tissue engineering by allowing for
research to be done on innovative materials called biomaterials. In
bioprinting, there are three major types of printers that have been utilized.
These are inkjet, laser-assisted, and extrusion printers. </span><a href="https://3dprinting.insightconferences.com/events-list/3d-bio-printing"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Bio printers</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> are streamlined to have the
capacity to print skin tissue, heart tissue, and veins among other essential
tissues that could be appropriate for surgical treatment and transplantation.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 10: </span></b><a href="https://3dprinting.insightconferences.com/events-list/3d-printing-future-technology"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Printing Future Technology</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="https://www.omicsonline.org/proceedings/3d-printing-a-new-way-for-building-body-spare-parts-and-implants-16742.html"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is moving in several directions
as of now and all signs are that it will keep on expanding in numerous ranges
later on. The absolute most encouraging zones incorporate </span><a href="http://www.omicsgroup.org/journals/3d-printing-technology-in-pharmaceutical-drug-delivery-prospects-andchallenges-2167-7956-1000e141.php?aid=64501"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">medical applications</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, custom parts
substitution, and customized buyer items. As materials enhance and expenses go
down, different applications we can barely imagine today will become possible.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 11:</span></b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> </span><a href="https://3dprinting.insightconferences.com/events-list/3d-image-processing-and-visualization"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Image Processing and Visualization</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Research and technology development in </span><a href="https://www.omicsonline.org/international-journal-of-advancements-in-technology.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D image processing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> and </span><a href="https://www.omicsgroup.org/journals/radiology.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">visualization</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> envelops an expansive range of
activities. Based on the in-house center </span><a href="https://www.omicsonline.org/international-journal-of-advancements-in-technology.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">innovation</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> of object triangulation with
the capacity to control both the blunder of estimate and the quantity of
triangles, four classes of complementing activities, reveal the broadness and
imperativeness of this </span><a href="https://www.omicsonline.org/international-journal-of-advancements-in-technology.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">R&D motivation</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 12: </span></b><a href="https://3dprinting.insightconferences.com/events-list/polymers-in-3d-printing"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Polymers in 3d printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="http://www.tsijournals.com/journals/research-reviews-in-polymer.html"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Polymers</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> are macromolecules made of many
rehashing subunits called </span><a href="https://www.blogger.com/null"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">monomers</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">. These monomers are coordinated by
covalent bonds where atoms share electrons being a strong union. The procedure
to deliver a </span><a href="https://www.scitechnol.com/polymer-science-applications.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">polymer</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is known as </span><a href="https://www.omicsgroup.org/journals/material-sciences-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">polymerization reaction</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">. </span><a href="https://www.scitechnol.com/polymer-science-applications.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Thermoplastic polymers</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> are really
important in Additive Manufacturing. </span><a href="https://www.omicsgroup.org/journals/material-sciences-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Thermoplastics</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> are polymers which relax when
they are warmed and harden as they cool. These polymers are utilized for </span><a href="https://www.omicsgroup.org/journals/material-sciences-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">plastic 3D prints</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, prominently </span><a href="https://www.omicsgroup.org/journals/material-sciences-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Selective Laser Sintering</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> (SLS). There
are a few prominent </span><a href="https://www.omicsgroup.org/journals/material-sciences-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">thermoplastics</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> that can be utilized with this
procedure, delivering a variety of results depending on their base properties.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 13: </span></b><a href="https://3dprinting.insightconferences.com/events-list/tissue-and-organ-printing"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Tissue and Organ printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="https://www.omicsonline.org/tissue-science-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Tissue</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> and Organ failure is brought on
by aging, illness, accidents, and birth defects. The present treatment for
these failures is replacement from a living or expired Organ/Tissue Donor.
Three-Dimensional Printing, or "stereo lithography", is the way
toward keeping materials in layers to shape 3D objects. "</span><a href="https://www.omicsonline.org/biomimetics-biomaterials-tissue-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Bio printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">" includes the utilization of
modified 3D printers, empowering them to print natural materials. Progressions
in this technology, alongside biomaterials, will enable a patient's own cells
to be utilized to build replacement tissues and organs for those in need. The
ordinary procedure for bio printing </span><a href="https://www.omicsonline.org/tissue-science-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D tissues</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> and organs includes: Imaging,
Design approach, </span><a href="https://www.omicsonline.org/biomimetics-biomaterials-tissue-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Material/Cell</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> determination, Printing, and
Application. Imaging of the earth of the harmed tissue is useful in the outline
procedure, and includes the utilization of X-ray, CT scan, and MRI imaging.
Minitissues are the smallest auxiliary and functional components of a tissue,
similar to a kidney nephron. These are utilized as a part of both "Biomimicry"
and “Self-assembly” strategies. The test of actualizing 3D printing with </span><a href="https://www.omicsonline.org/tissue-science-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Organ and Tissue</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> building is taking innovation
intended to print liquid plastics and metals, and adjusting it to a procedure
that prints delicate, living, </span><a href="https://www.omicsonline.org/biomimetics-biomaterials-tissue-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">natural materials</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 14: </span></b><a href="https://3dprinting.insightconferences.com/events-list/nano-3d-printing"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Nano 3D Printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="https://3dprinting.insightconferences.com/"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Nanotechnology</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is the manipulation of material
with at least one dimension sized from 1 to 100 nanometers. Nanotechnology has
a lot in common with the additive </span><a href="https://3dprinting.insightconferences.com/"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">manufacturing technology</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">. At least, these two technologies
are starting to revolutionize a lot of different sectors, from the medical
industry, to chemistry or consumer products. The nanotechnology and </span><a href="https://3dprinting.insightconferences.com/"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D microprinting</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> can totally be combined to create new
impressive projects. That is where we can talk about </span><a href="https://3dprinting.insightconferences.com/"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">nano 3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 15: </span></b><a href="https://3dprinting.insightconferences.com/events-list/3d-printing-industries"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Printing Industries</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">The origin of 3D printing in </span><a href="http://www.omicsgroup.org/journals/rapid-prototyping-technology-in-bone-tissue-engineering-2168-9873.1000e124.php?aid=21186"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">'Rapid Prototyping'</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> were established on the
standards of Industrial prototyping as a method for accelerating the earliest
stages of product development with a quick and clear method for creating models
that allows for multiple iterations of product to arrive more rapidly and
effectively at an optimum solution. This saves time and cash at the beginning
of the whole product improvement process and guarantees certainty in front of
production tooling. Industrial 3D printers are better than consumer-grade 3D
printers for manufacturing completely working, quality models. The best
business 3D printers have extensive print capacity, choice determination and
utilize to a great degree tough materials. 3D Printing applications cover different
segments from education to industry, and the entire value chain from models to
extra part management. </span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 16:</span></b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> </span><a href="https://3dprinting.insightconferences.com/events-list/challenges-in-3d-printing"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Challenges in 3D Printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">The biggest challenges of </span><a href="https://www.omicsonline.org/proceedings/3d-printing-a-new-way-for-building-body-spare-parts-and-implants-16742.html"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3d printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> we’ve heard over the years and
throughout the industry including Equipment costs, Limited materials available,
Post-processing requirements, </span><a href="https://www.omicsgroup.org/journals/textile-science-engineering.php"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Manufacturing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> costs, Lack of in-house </span><a href="http://www.omicsgroup.org/journals/additive-manufacturing-a-renaissance-2168-9806.1000e131.php?aid=33748"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">additive manufacturing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> resources,
Lack of expertise and/or training among workforce/employees, Limited
repeatability (accuracy from build to build), Lack of formal standards, Lack of
proven documentation of additive manufacturing’s capabilities, Software
development and capabilities, Longer production timelines, Limited
recyclability, Risk of litigation/legal implication, Data storage requirements
and others.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 17: </span></b><a href="https://3dprinting.insightconferences.com/events-list/challenge-of-3d-printing-in-radiation-oncology"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Challenge of 3D printing in Radiation oncology</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Enduring the physical and mental results of having a </span><a href="http://www.omicsonline.org/open-access/emerging-aid-in-oral-cancer-diagnosis-2155-9929-1000e122.php?aid=63675"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">cancer diagnosis</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is only the beginning of the
battle. Cancer patients then need to manage difficult treatment cycles and
related side effects. The high measurements of radiation used to destroy tumour
cells can likewise harm neighbouring healthy tissues. Although major
improvements in </span><a href="http://www.omicsonline.org/advance-oxidation-of-sewage-water-reclamation-and-hygienization-by-radiation-technology-a-novel-approach-2157-7587.1000108.php?aid=1123"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">radiation technology</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">, for example,
intensity modulated </span><a href="http://www.omicsgroup.org/journals/diagnosis-and-treatment-of-radiation-therapy-induced-ocular-surfacedisorders-2167-7964-1000e138.php?aid=76028"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">radiation therapy</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> have led to reduced
toxicity, these techniques have a tendency to be complex requiring a few
arranging steps and security checks before the patient can begin treatment. 3D
printing is promising to take care of some of these issues and help in
providing personalized </span><a href="http://www.omicsgroup.org/journals/ayurveda-for-cancer-treatment-.php?aid=81115"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">cancer treatment.</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 18: </span></b><a href="https://3dprinting.insightconferences.com/events-list/design-for-3d-printing"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">Design for 3D Printing</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Designing for </span><a href="https://3dprinting.insightconferences.com/"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> can be different when compared to designing of other purposes.
Something that looks excellent in your CAD program could be difficult to print
which makes a frustrating experience for any Maker. So, there are some key
design rules to create an easily printable object</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 19: </span></b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> </span><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt;"><a href="https://3dprinting.insightconferences.com/events-list/3d-printing-technology-market">3D
Printing Technology & Market<span style="font-weight: normal;"></span></a></span></b></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">3D printing also called as </span><a href="http://www.omicsgroup.org/journals/additive-manufacturing-a-renaissance-2168-9806.1000e131.php?aid=33748"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">additive manufacturing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> technology
where a three dimensional object is made by setting down progressive layers of
material. It is otherwise called </span><a href="http://www.omicsgroup.org/journals/rapid-prototyping-technology-in-bone-tissue-engineering-2168-9873.1000e124.php?aid=21186"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">rapid prototyping</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">. It is an automated technique
whereby 3D objects are rapidly made on a sensibly estimated machine associated
with a PC containing blueprints for the object.</span></div>
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<span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">The </span><a href="https://thejournal.com/articles/2016/08/17/report-3d-printing-market-to-double-by-2020.aspx"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D printing Market</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> is required to achieve USD
30.19 Billion by 2022, at a CAGR of 28.5% somewhere around 2016 and 2022. The
market has been sectioned on the premise of printer, material form, material
shape, process, technology, software, service, application, vertical, and
geology. 3D printing is currently used to make complex parts, models
(quick prototyping), and little arrangement segments. Streamlining of creation
work process through computerized generation instruments, powder taking care of
and reusing capacities, and mobile production controls is filling the interest
for industrial printers. The base year considered for this report is 2015 and
the figure time frame is from 2016 to 2022.</span></div>
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<b><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;">Track 20: </span></b><a href="https://3dprinting.insightconferences.com/events-list/3d-printing-of-supply-chain-management"><b><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D Printing of Supply Chain Management</span></b></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"></span></div>
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<a href="http://paper.li/brianfederal/1336924696"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">3D printing</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> has played an important role in
transforming the </span><a href="http://www.omicsgroup.org/journals/assessment-of-integrated-pharmaceutical-logistic-system-for-themanagement-hivaids-and-tuberculosis-laboratory-diagnosticcommoditie-2376-0419-1000158.php?aid=75801"><span style="color: #b98642; font-family: "times new roman" , "serif"; font-size: 10pt; text-decoration: none;">supply chain</span></a><span style="color: #333333; font-family: "times new roman" , "serif"; font-size: 10pt;"> over the previous decade. Its recent
sparkle in the general population eye is yet a flash contrasted with the impact
of the technology has in the background on the production floor. It is
affecting each phase of the product development lifecycle, from the product
itself to packaging, presentation, conveyance—and so on. In all the buildup, it
can be hard to remove the substantial benefits of the technology from the
dreamy, more futuristic tales. The real differences 3D printing is conveying to
the supply chain exist in five key territories.</span></div>
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Supporting Journals</h2>
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<a class="list-group-item" href="https://www.omicsonline.org/material-sciences-engineering.php" target="_blank" title="Journal of Material Sciences & Engineering">Journal of Material Sciences & Engineering</a> </div>
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<a class="list-group-item" href="https://www.omicsonline.org/international-journal-advance-innovations-thoughts-ideas.php" target="_blank" title="International Journal of Advance Innovations, Thoughts & Ideas">International Journal of Advance Innovations, Thoughts & Ideas</a>
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All accepted abstracts will be published in respective Conference Series LLC LTD International Journals.</div>
<div class="digital-identifier list-group-item">
Abstracts will be provided with Digital Object Identifier by Cross ref</div>
</div>
<a class="list-group-item" href="https://www.omicsonline.org/nanomedicine-biotherapeutic-discovery.php" style="-webkit-text-stroke-width: 0px; background-color: whitesmoke; border: 1px solid rgb(221, 221, 221); box-sizing: border-box; color: #555555; display: block; font-family: "Roboto Slab", serif; font-size: 13px; font-style: normal; font-variant-caps: normal; font-variant-ligatures: normal; font-weight: 400; letter-spacing: normal; margin-bottom: -1px; orphans: 2; outline: 0px; padding: 10px 15px; position: relative; text-align: start; text-decoration: none; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px;" target="_blank" title="Journal of Nanomedicine & Biotherapeutic Discovery"></a></div>
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See more : https://3dprinting.insightconferences.com/</div>
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