Literatura académica sobre el tema "3d-print"

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Artículos de revistas sobre el tema "3d-print"

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Brookes, Ken. "3D Print Show." Metal Powder Report 69, no. 1 (2014): 33–35. http://dx.doi.org/10.1016/s0026-0657(14)70030-x.

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Hájková, P., A. Soukup, J. Kohout, E. Kohoutová, and P. Koutník. "Geopolymers for 3D print." Journal of Physics: Conference Series 2568, no. 1 (2023): 012003. http://dx.doi.org/10.1088/1742-6596/2568/1/012003.

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Abstract 3D print of building materials has increasing popularity in the construction industry all around the world. However, geopolymer material, which stands out for its high temperature resistance and low CO2 emissions compared to concrete, is very rarely used for 3D printing. This work is focused on a composite material based on a geopolymer binder, which is suitable for 3D printing of building elements. The properties of the developed geopolymer composite and the parameters that influence them are described in detail. One of the most important properties of the geopolymer composite for 3D
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Olivia, Sisca, Khairul Anshar, Erna Muliana, Nur Faliza, and Yenny Novianti. "Pengenalan Teknologi 3D Print Sebagai Pendukung Wirausaha Bagi Siswa SMK Kota Lhokseumawe." Jurnal Abdimas Perbanas 5, no. 2 (2024): 46–55. http://dx.doi.org/10.56174/jap.v5i2.567.

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SMK sebagai sekolah yang mempersiapkan siswa siap terjun ke dunia kerja dengan keahlian yang dipelajari di sekolah, seperti manajemen perkantoran, tata boga, otomotif, dan bidang lainnya. Dalam pendidikan, tidak hanya keahlian tertentu saja dipelajari, tetapi juga diperlukan memahami teknologi. Teknologi berkembang dengan sangat cepat, salah satunya adalah 3D print. 3D print merupakan suatu teknologi percetakan model 3D dari bidang 2D. Produk/model 3D ini tidak hanya digunakan di bidang kesehatan saja, tetapi sudah merambah ke segala bidang, termasuk dalam bidang bisnis. Teknologi 3D print bel
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Olivia, Sisca, Khairul Anshar, Erna Muliana, Nur Faliza, and Yenny Novianti. "Pengenalan Teknologi 3D Print Sebagai Pendukung Wirausaha Bagi Siswa SMK Kota Lhokseumawe." Jurnal Malikussaleh Mengabdi 3, no. 1 (2024): 18. http://dx.doi.org/10.29103/jmm.v3i1.15500.

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SMK sebagai sekolah yang mempersiapkan siswa siap terjun ke dunia kerja dengan keahlian yang dipelajari di sekolah, seperti manajemen perkantoran, tata boga, otomotif, dan bidang lainnya. Dalam pendidikan, tidak hanya keahlian tertentu saja dipelajari, tetapi juga diperlukan memahami teknologi. Teknologi berkembang dengan sangat cepat, salah satunya adalah 3D print. 3D print merupakan suatu teknologi percetakan model 3D dari bidang 2D. Produk/model 3D ini tidak hanya digunakan di bidang kesehatan saja, tetapi sudah merambah ke segala bidang, termasuk dalam bidang bisnis. Teknologi 3D print bel
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Geiger, R., S. Rommel, J. Burkhardt, and T. Prof Bauernhansl. "Additiver Hybrid-Leichtbau – Highlight 3D print*/Additive Hybrid Lightweight Construction - Highlight 3D print." wt Werkstattstechnik online 106, no. 03 (2016): 169–74. http://dx.doi.org/10.37544/1436-4980-2016-03-73.

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Additive Fertigungsverfahren bieten durch ihren schichtweisen Aufbau einzigartige Gestaltungsfreiheiten. Hieraus leitet sich ein enormes Potential für den strukturellen Leichtbau ab. Bionische Leichtbaustrukturen, integrierte Funktionalitäten sowie topologieoptimierte Bauteile lassen sich direkt produzieren. Neben dem strukturellen Leichtbau lassen sich durch die Verwendung hochfester Werkstoffe oder von Werkstoffen mit geringer Dichte ebenfalls Leichtbauprodukte generieren. Ein Beispiel für werkstofflichen Leichtbau sind Faserverbundstrukturen, welche geringe Materialdichte mit hoher Festigke
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Dai, Guyu, Xin Xu, Xiaohong Wu, et al. "Application of 3D-print silica bolus for nasal NK/T-cell lymphoma radiation therapy." Journal of Radiation Research 61, no. 6 (2020): 920–28. http://dx.doi.org/10.1093/jrr/rraa084.

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Abstract The aim of the study was to evaluate the clinical feasibility of a 3D-print silica bolus for nasal NK/T-cell lymphoma radiation therapy. Intensity modulated radiotherapy (IMRT) and volumetric modulated arc therapy (VMAT) plans were designed using an anthropomorphic head phantom with a 3D-print silica bolus and other kinds of bolus used clinically, and the surface dose was measured by a metal oxide semiconductor field-effect transistor (MOSFET) dosimeter. Four nasal NK/T patients with or without 3D-print silica bolus were treated and the nose surface dose was measured using a MOSFET do
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Wawrek, I. "Building materials for 3D print." IOP Conference Series: Materials Science and Engineering 867 (October 9, 2020): 012047. http://dx.doi.org/10.1088/1757-899x/867/1/012047.

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Betts, B. "Software reviews: 3D print services." Engineering & Technology 7, no. 10 (2012): 96–97. http://dx.doi.org/10.1049/et.2012.1019.

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Cahyono, Gunawan Rudi, Jerry Iberahim, Pathur Razi Ansyah, and Sunu Hasta Wibowo. "Pengaruh Print Speed Extruder dan Height Layer terhadap Kekuatan Tekan dan Foto Makro pada Hasil 3D Printing." Buletin Profesi Insinyur 5, no. 1 (2022): 9–15. http://dx.doi.org/10.20527/bpi.v5i1.134.

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Penelitian tentang manufaktur objek tiga dimensi melalui mesin cetak 3D printing masih terus berlanjut dikalangan para peneliti. Kombinnasi parameter print speed dan height layer untuk diuji bending, belum dilakukan telaah lebih lanjut. Kecepatan cetak (print speed) ini, dapat saja mempengaruhi object yang dicetak mesin 3D printing. Peneletitian ini bertujuan untuk mengetahui pengaruh print speed dan height layer 3D printing terhadap kekuatan tekan spesimen berdasarkan standar ASTM D955 dengan variasi print speed 50 mm/s, 40 mm/s, 30 mm/s, serta variasi height layer 0,3 mm, 0,4 mm, 0,5 mm. Has
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Joseph, Katrina, Jim McLean, and Constance Harris. "Learning with fun in the Mason instructional design special interest group (MID-SIG)." Innovations in Teaching & Learning Conference Proceedings 8 (July 15, 2016): 2. http://dx.doi.org/10.13021/g8kk61.

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We propose to introduce participants to the Mason Instructional Design Special Interest Group (MID-SIG). Mason faculty members, staff, and graduate research and teaching assistants with an interest or involvement in instructional design are invited to join.This poster session intends to demonstrate a small scale version of a Technology Speed Dating Event. During this event, we will share ideas on the topic of 3D print design in a fun and engaging way. We will demonstrate how a 3D print design activity can challenge students to embrace learning as a creative and reflective process. This session
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Tesis sobre el tema "3d-print"

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Eriksson, Emma. "Biokomposit : Kommersiell potential med 3D-print." Thesis, Högskolan i Gävle, Avdelningen för industriell ekonomi, industridesign och maskinteknik, 2021. http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-36276.

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Biokomposit är ett material som har stor potential att ersätta plastprodukter i framtiden. Med ett innehåll av träfibrer och växtbaserad plast är det både biologiskt nedbrytbart och fullt möjligt att återvinna. I det här projektet undersöks materialet biokomposit i samklang med additiv tillverkning, 3D-print. Syftet är att undersöka materialets estetiska potential, och visa möjligheter inom en tillverkningsteknik som inte håller samma status som exempelvis formsprutning. Författaren vill framhäva det som många skulle se som defekter i en tillverkningsprocess, för att ge komplement till Studio
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Wang, Dazhi. "2D and 3D electrohydrodynamic atomization print-patterning." Thesis, Queen Mary, University of London, 2006. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.439436.

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McColl, Erin A. "Using stereolithography to 3D print GelMA hydrogels." Thesis, Queensland University of Technology, 2017. https://eprints.qut.edu.au/109468/1/Erin_McColl_Thesis.pdf.

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The two projects covered by this thesis describe new ways to leverage modern advancements in additive manufacturing techniques in the field of biofabrication. The initial project was a proof-of-principle study which involved the selection, customisation and use of a commercially available stereolithography (SLA) 3D printer to produce synthetic structures using GelMA hydrogels for a cartilage fabrication process. The second topic investigated improving the accuracy, design processes and reproducibility of melt-electrospinning onto a rotating mandrel. This investigation advanced the process from
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Початко, Тетяна Володимирівна, Татьяна Владимировна Початко, Tetiana Volodymyrivna Pochatko, and Y. Znamenshchykov. "3D printing offers ability to print physical objects." Thesis, Вид-во СумДУ, 2011. http://essuir.sumdu.edu.ua/handle/123456789/22541.

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Sears, Forest (Forest Orion). "3D print quality in the context of PLA color." Thesis, Massachusetts Institute of Technology, 2016. http://hdl.handle.net/1721.1/104320.

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Thesis: S.B., Massachusetts Institute of Technology, Department of Materials Science and Engineering, 2016.<br>Cataloged from PDF version of thesis.<br>Includes bibliographical references (page 45).<br>3D printing is a hot topic in manufacturing and a truly useful tool, but it has limitations. Print quality properties - like raft peelability, dimensional tolerance and surface roughness - are hard to calibrate perfectly. A common material used in fused deposition modeling (FDM) printers is polylactic acid (PLA). One print quality concern is how different colors of PLA print differently under th
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Kašpárková, Kristýna. "3D tisk kompozitních materiálů." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2020. http://www.nusl.cz/ntk/nusl-417454.

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The submitted thesis deals with a study of composite materials and processing them using 3D printing technology. The experimental part of this thesis is focused on the production of test samples with the use of additive technology Fused Deposition Modeling and Continuous Filament Fabrication. The composite samples made of common onyx material, individually reinforced with continuous carbon fiber filaments, kevlar, or fiberglass, were made with Marforged Mark Two 3D printer. The other samples made of PETG PM and PETG CFjet materials were made with Original Prusa i3 MK2S 3D printer. For technolo
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Čuma, Zdeněk. "3D FDM tiskárna s výměnnou tiskovou hlavou." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2021. http://www.nusl.cz/ntk/nusl-444263.

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The aim of the work is to design and manufacture a mechanism for setting up and clamping the replaceable head of a 3D FDM printer. The first part of the thesis deals with 3D printing in general, the second part describes the FDM method. Part three is devoted to the selection and construction of a suitable 3D printer, the fourth part to the actual design of the head attachment. In the fifth part, a technical and economic evaluation is carried out.
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Műller, Jakub. "Kompozitní tisk pro 3D FDM tiskárnu." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2018. http://www.nusl.cz/ntk/nusl-382278.

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This diploma thesis deals with the study of 3D printing based on the FDM method. This method focuses on the possibility of using two extruders it means that the composite parts can be printed. This diploma thesis describes the available variants of composite printing currently on the market. Based on the gained knowledge and the availability of 3D printers and software, individual variants of composite parts were printed. A tensile test was performed on these samples to determine the strength characteristics. Additionally, compatibility and adhesion of two selected materials were tested. Based
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Martini, Julian. "Assesment of Market Potential of 3D Body Scanners within the Target Group of 3D Print Stores." Master's thesis, Vysoká škola ekonomická v Praze, 2013. http://www.nusl.cz/ntk/nusl-198217.

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The world has recently witnessed the widespread of 3D printing technology. In the shadow of this development a new means of freezing time was born: 3D figurines. A 3D figurine is a mini version of oneself; a little sculpture manufactured by 3D Printers. These 3D figurines are sold for a profit by so called 3D Print Stores to consumers. For the production of such a 3D figurine one needs 3D Body Scanners. It is from the perspective of a producer of 3D Body Scanners that this master thesis was written. The objective was to establish whether or not the company should tap into that new market segme
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Prinz, Ralf. "Vom CAD-Modell über die Simulation zum 3D-Druck und zurück : Simulationsansätze in einer, durch den 3D-Druck entfesselten, neuen Gestaltungsfreiheit." Universitätsbibliothek Chemnitz, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-206799.

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War bisher die Gestalt von Bauteilen und Baugruppen in Konstruktionen sehr stark durch ihre Fertigungsverfahren beeinflusst, so ändern sich diese Vorgaben durch die Verwendung von 3D- Druck auf beinahe revolutionäre Art und Weise. Und somit werden Ansätze salonfähig, die bisher doch eher selten in Anwendung waren, wie z.B. Gitterstrukturen oder Topologieoptimierung. Diese finden nun wieder häufiger ihren Weg in die Bauteil- und Baugruppenstrukturen. Die Verwendung birgt aber auch damit einhergehende Herausforderungen, da sich z.B. die Bauteilgrößen nach einer Topologieoptimierung drastisch ver
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Libros sobre el tema "3d-print"

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Falce, Germaine. 3D Print : the 3D Printing Manufacture: Learn 3D Printing. Independently Published, 2021.

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Defoe, Luci. Improve 3D Print Quality : 3D Printer Starter Guide: 3D Printing. Independently Published, 2021.

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3D Printing: Build Your Own 3D Printer and Print Your Own 3D Objects. Que Publishing, 2013.

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Thomas, Gavin, Steve Dacombe, and Drew Sleep. 3D Make and Print: Everything You Need to Know about 3D Printing. Future Publishing, 2021.

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Spahic, Benjamin. 3D Printing Without Prior Knowledge: 7 Days to Your First 3D Print. Independently Published, 2020.

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Thomas, Gavin, Dan Peel, and Perry Wardell-Wicks. 3D Make and Print: Everything You Need to Know about 3D Printing. Future Publishing, 2020.

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Thomas, Gavin, and Rebecca Greig. 3D Make and Print: Everything You Need to Know about 3D Printing. Future Publishing, 2020.

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3D Make and Print: Everything You Need to Know about 3D Printing. Future Publishing, 2023.

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Publisher, Hobbies8261. My Therapy Is 3D Print Notebook - Funny 3D Print Journal Gift: Lined 3D Print Lovers and Fans Notebook / Journal Gift, 120 Pages, 6x9, Soft Cover, Matte Finish. Independently Published, 2020.

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Kelly, James. 3D Modeling and Printing with Tinkercad: Create and Print Your Own 3D Models. Pearson Education, Limited, 2014.

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Capítulos de libros sobre el tema "3d-print"

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Singh, Sandeep. "3D Model to 3D Print." In Beginning Google SketchUp for 3D Printing. Apress, 2010. http://dx.doi.org/10.1007/978-1-4302-3362-6_4.

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Pungercar, Vesna, Martino Hutz, and Florian Musso. "3D Print with Salt." In 3D Printing for Construction with Alternative Materials. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-09319-7_5.

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AbstractSustainable materials and additive manufacturing have the potential to increase material efficiency and minimize waste in the building process. One of the most promising materials is salt (sodium chloride). It is highly available as a residue of desalination and potash production processes and attracts attention due to its material properties (storage of humidity and heat). This research presents an investigation and evaluation of using salt as an alternative material in additive manufacturing. Thus, the focus of the study was on small-scale 3D printing with paste extrusion. Experiment
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Reynolds, Jorge, and Nasdly Diaz. "Heart Models in 3D Print." In VII Latin American Congress on Biomedical Engineering CLAIB 2016, Bucaramanga, Santander, Colombia, October 26th -28th, 2016. Springer Singapore, 2017. http://dx.doi.org/10.1007/978-981-10-4086-3_135.

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De-la-Cruz-Diaz, Myreya, Aldo Alvarez-Risco, Micaela Jaramillo-Arévalo, Maria de las Mercedes Anderson-Seminario, and Shyla Del-Aguila-Arcentales. "3D Print, Circularity, and Footprints." In Circular Economy. Springer Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-0549-0_5.

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Kerr, Tyler. "From 3D Object to Physical 3D Print: Slicing Software." In Synthesis Lectures on Digital Circuits & Systems. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-19350-7_7.

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Manik, Raj, and Ajit Behera. "Manufacturing of 3D Print Biocompatible Shape Memory Alloys." In Smart 3D Nanoprinting. CRC Press, 2022. http://dx.doi.org/10.1201/9781003189404-15.

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Imamović, Aida, Amra Talić-Čikmiš, Mirsada Oruč, Šaban Žuna, and Zijad Alibašić. "Recycled Titanium Alloy TiAl6Nb7 and 3D Print Technology." In Mechanisms and Machine Science. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-80512-7_36.

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Zhang, Jinjin, Xuening Pang, and Naitao Yang. "Materials and Applications of 3D Print for Solid Oxide Fuel Cells." In 3D Printing. CRC Press, 2023. http://dx.doi.org/10.1201/9781003296676-8.

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Dachtler, Markus, Gerald Huber, and Tanja Pries. "2D & 3D-Print-Technologien in der pharmazeutischen Industrie." In Digitale Transformation von Dienstleistungen im Gesundheitswesen VII. Springer Fachmedien Wiesbaden, 2020. http://dx.doi.org/10.1007/978-3-658-26670-7_4.

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Ehtezazi, Touraj. "The Application of 3D Print in the Formulation of Novel Pharmaceutical Dosage Forms." In 3D Printing. CRC Press, 2023. http://dx.doi.org/10.1201/9781003296676-26.

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Actas de conferencias sobre el tema "3d-print"

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Zhang, Zihao, Leander Siegle, Pavel Ruchka, Daniel Flamm, and Harald Giessen. "Beam Shaping with 3D printed refractive, holographic and diffractive optics on fiber." In Digital Holography and Three-Dimensional Imaging. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/dh.2024.tu1a.5.

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We design, 3d print, and measure a 3D freeform hologram onto the tip of a single mode fiber, yielding a 3D focus shape. Particularly, we generate a spiral distribution of several separate foci in 3-dimensions.
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Gomez Fernandez, Irving Enrique, Jesus Alberto Ramos González, and Juan Carlos Bautista Dueñas. "Modeling of Launch and Space Vehicles using 3D Print with an Educational Approach." In IAF Space Education and Outreach Symposium, Held at the 75th International Astronautical Congress (IAC 2024). International Astronautical Federation (IAF), 2024. https://doi.org/10.52202/078378-0105.

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Heng, Qidong. "Revolutionizing 3D printing: the design and implementation of a transaction management system for B/S-based 3D print models." In 4th International Conference on Internet of Things and Smart City, edited by Xinwei Yao and Francisco Falcone. SPIE, 2024. http://dx.doi.org/10.1117/12.3035051.

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Ovčačíková, Hana, Mario Machů, Michaela Topinková, Marek Velička, and Jozef Vlček. "Ceramic 3D print." In 27TH INTERNATIONAL MEETING OF THERMOPHYSICS 2022. AIP Publishing, 2023. http://dx.doi.org/10.1063/5.0164319.

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Dima, M., G. Farisato, M. Bergomi, et al. "From 3D view to 3D print." In SPIE Astronomical Telescopes + Instrumentation, edited by Jacobus M. Oschmann, Mark Clampin, Giovanni G. Fazio, and Howard A. MacEwen. SPIE, 2014. http://dx.doi.org/10.1117/12.2056502.

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Stoimenov, Nikolay, Gabriela Kotseva, and Vanya Georgieva. "Classification of 3d print technologies." In International Scientific and Technical Conference Automation of Discrete Production Engineering ADP 2025. Az-buki National Publishing House, 2025. https://doi.org/10.53656/adpe-2025.04.

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This article aims to classify the different types of 3D printers and their technologies, providing an overview of the opportunities and challenges associated with additive manufacturing. This classification aims to help understand the variety of solutions and technologies available on the market and their applications in various fields such as industry, science, education, society and others.
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Tanaka, Hiroya, Yusuke Tominaka, Atsushi Masumori, Taisuke Oshima, Keita Sekijima, and Youka Watanabe. "3D effects box for bridging 3D scan and 3D print." In UbiComp '13: The 2013 ACM International Joint Conference on Pervasive and Ubiquitous Computing. ACM, 2013. http://dx.doi.org/10.1145/2494091.2499208.

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Heinrich, Andreas. "Can one 3D print a laser?" In Organic Photonic Materials and Devices XXII, edited by Christopher E. Tabor, François Kajzar, and Toshikuni Kaino. SPIE, 2020. http://dx.doi.org/10.1117/12.2547183.

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Kolísko, Jiří, Karel Hurtig, David Čítek, Vladislav Bureš, and Martin Kroc. "UHPC Material Develompent for 3D Print." In Third International Interactive Symposium on Ultra-High Performance Concrete. Iowa State University Digital Press, 2023. http://dx.doi.org/10.21838/uhpc.16699.

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Naji, Noora Hadi, and Ali Mohsin Al-Juboori. "Autoencoder for 3D Palm Print Identification." In 2023 International Conference on Information Technology, Applied Mathematics and Statistics (ICITAMS). IEEE, 2023. http://dx.doi.org/10.1109/icitams57610.2023.10525439.

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Informes sobre el tema "3d-print"

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Diggs-McGee, Brandy, Eric Kreiger, Megan Kreiger, and Michael Case. Print time vs. elapsed time : a temporal analysis of a continuous printing operation. Engineer Research and Development Center (U.S.), 2021. http://dx.doi.org/10.21079/11681/41422.

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In additive construction, ambitious goals to fabricate a concrete building in less than 24 hours are attempted. In the field, this goal relies on a metric of print time to make this conclusion, which excludes rest time and delays. The task to complete a building in 24 hours was put to the test with the first attempt at a fully continuous print of a structurally reinforced additively constructed concrete (ACC) building. A time series analysis was performed during the construction of a 512 ft2 (16’x32’x9.25’) building to explore the effect of delays on the completion time. This analysis included
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Nathaniel Petre, Nathaniel Petre. Can we design a 100L bioreactor that costs less than $5000 to 3D print? Experiment, 2022. http://dx.doi.org/10.18258/28297.

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Vavrin, John L., Ghassan K. Al-Chaar, Eric L. Kreiger, et al. Automated Construction of Expeditionary Structures (ACES) : Energy Modeling. Engineer Research and Development Center (U.S.), 2021. http://dx.doi.org/10.21079/11681/39641.

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The need to conduct complex operations over time results in U.S. forces remaining in deployed locations for long periods. In such cases, more sustainable facilities are required to better accommodate and protect forward deployed forces. Current efforts to develop safer, more sustainable operating facilities for contingency bases involve construction activities that redesign the types and characteris-tics of the structures constructed, reduce the resources required to build, and reduce resources needed to operate and maintain the com-pleted facilities. The Automated Construction of Expeditionar
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4

Diggs, Brandy N., Richard J. Liesen, Michael P. Case, Sameer Hamoush, and Ahmed C. Megri. Automated Construction of Expeditionary Structures (ACES) : Energy Modeling. Engineer Research and Development Center (U.S.), 2021. http://dx.doi.org/10.21079/11681/39759.

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The need to conduct complex operations over time results in U.S. forces remaining in deployed locations for long periods. In such cases, more sustainable facilities are required to better accommodate and protect forward deployed forces. Current efforts to develop safer, more sustainable operating facilities for contingency bases involve construction activities that redesign the types and characteris-tics of the structures constructed, reduce the resources required to build, and reduce resources needed to operate and maintain the com-pleted facilities. The Automated Construction of Expeditionar
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5

Al-Chaar, Ghassan K., Peter B. Stynoski, Todd S. Rushing, et al. Automated Construction of Expeditionary Structures (ACES) : Materials and Testing. Engineer Research and Development Center (U.S.), 2021. http://dx.doi.org/10.21079/11681/39721.

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Complex military operations often result in U.S. forces remaining at deployed locations for long periods. In such cases, more sustaina-ble facilities are required to better accommodate and protect forward-deployed forces. Current efforts to develop safer, more sustaina-ble operating facilities for contingency bases involve construction activities that require a redesign of the types and characteristics of the structures constructed, that reduce the resources required to build, and that decrease the resources needed to operate and maintain the completed facilities. The Automated Construction of
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6

Martin, Kathi, Nick Jushchyshyn, and Claire King. Christian Lacroix Evening gown c.1990. Drexel Digital Museum, 2017. http://dx.doi.org/10.17918/wq7d-mc48.

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The URL links to a website page in the Drexel Digital Museum (DDM) fashion image archive containing a 3D interactive panorama of an evening gown by French fashion designer Christian Lacroix with related text. This evening gown by Christian Lacroix is from his Fall 1990 collection. It is constructed from silk plain weave, printed with an abstract motif in the bright, deep colors of the local costumes of Lacroix's native Arles, France; and embellished with diamanté and insets of handkerchief edged silk chiffon. Ruffles of pleated silk organza in a neutral bird feather print and also finished wit
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7

Pauwels, Annelies, and Merlina Herbach. Buy It, Steal It, Print It: How Right-Wing Extremists in Europe Acquire Firearms and What To Do About It. International Centre for Counter Terrorism, 2024. https://doi.org/10.19165/2024.9820.

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This policy brief examines the methods of firearms acquisition by right-wing extremists (RWEs) in Europe between 2019 and 2024. Based on a dataset of 118 cases, it reveals that RWEs resort to diverse legal and illegal acquisition strategies, including the use of illicit markets, legal possession, theft from military and law enforcement sources, and private manufacture, particularly 3D printing. The policy brief further discusses current EU countermeasures and their effectiveness in addressing RWE-specific acquisition methods. It identifies gaps in existing policies and enforcement, particularl
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