Difference between revisions of "Published Papers"

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These pages ran too long, and have been split off to the new '''[[Published_Papers_(DIW)|Published Papers (DIW)]]''' page.
 
These pages ran too long, and have been split off to the new '''[[Published_Papers_(DIW)|Published Papers (DIW)]]''' page.
 
== DIW/SEP/SSE, 2025 ==
 
 
* [https://www.nature.com/articles/s41467-025-62794-8 Hierarchically Ordered Porous Transition Metal Compounds From One-pot Type 3D Printing Approaches] by a team from several departments of [https://www.cornell.edu/ Cornell University], [https://www.bnl.gov/world/ Brookhaven National Laboratory], [https://www.univ-grenoble-alpes.fr/english/home-628540.kjsp University of Grenoble Alpes, France], [https://www.nist.gov/ National Institute of Standards and Technology], and [https://www.bu.edu/ Boston University]
 
* [https://arxiv.org/pdf/2508.13248 Visible-Light Photocatalytic Degradation of Cresols using Sustainable 3D-Printed Bi<sub>4</sub>O<sub>5</sub>I<sub>2</sub>-Hematite Scaffold] by a team from various departments of [https://www.iitkgp.ac.in/ Indian Institute of Technology, Kharagpur], [https://www.rice.edu/ Rice University], [https://unicamp.br/en/ State University of Campinas, São Paulo], and [https://international.unb.br/ University of Brasília]
 
* [https://www.proquest.com/openview/906405812b4e0c069148cb9aab0f4ee7/1?pq-origsite=gscholar&cbl=18750&diss=y Modeling and Characterization of Additively Manufactured Barium Titanate Ceramic] a thesis submitted to the [https://www.utep.edu/engineering/mechanical/ Aerospace and Mechanical Engineering Department of the University of Texas at El Paso]
 
* [https://www.sciencedirect.com/science/article/pii/S095006182404995X?via%3Dihub Filament Geometry Control of Printable Geopolymer Using Experimental and Data Driven Approaches] by a team from the [https://orbit.dtu.dk/en/organisations/department-of-civil-and-mechanical-engineering Department of Civil and Mechanical Engineering, Technical University of Denmark]
 
* [https://www.sciencedirect.com/science/article/pii/S0264127525009402 Material Extrusion of Photocurable Alumina Pastes: Rheology, Printability, and Polycrystal Microstructure Characterization] by a team from [https://www.ch.pw.edu.pl/ch_en Faculty of Chemistry, Warsaw University of Technology]
 
* [https://tesidottorato.depositolegale.it/bitstream/20.500.14242/217892/1/Doctoral_Thesis_Miravalle_Edoardo.pdf Recovery and Recycling Processes of Thermoset Elastomers and Polyurethanes Processing Scrap], a thesis submitted to the [https://en.unito.it/ University of Turin]
 
* [https://www.proquest.com/openview/b61e00bcbb2436b926c300c87d7a2b2c/1?pq-origsite=gscholar&cbl=7217055 Hexagonal Boron Nitride Reinforced Quick-setting Multifunctional Cement] by a team from [https://www.rice.edu/ Rice University], [https://msu.edu/ Michigan State University], and [https://americas.aramco.com/en Aramco Americas]
 
* [https://www.proquest.com/openview/6cf2ec7ef86ceb5d6126affa8a53f0d1/1?pq-origsite=gscholar&cbl=18750&diss=y Multifunctional Liquid Crystal Elastomers for Muscle Inspired Actuation], a paper submitted in pursuit of a PhD to [https://www.cmu.edu/ Carnegie Mellon University]
 
* [https://pubs.acs.org/doi/abs/10.1021/acsami.5c07337 Development of Highly Conductive and Stable Direct Writeable Metal-Free Inks Based on Carbon Nanotube and Functionalized Graphene Oxide] by a team from [https://me.umd.edu/ Department of Mechanical Engineering, University of Maryland College Park]
 
* [https://pubs.rsc.org/en/content/articlehtml/2025/ta/d5ta01478f A Recyclable, Reshapable and Uv-curable Polybenzoxazine Vitrimer Enabling Closed-loop 3D Printing Applications] by a team from [https://www.list.lu/ Luxembourg Institute of Science and Technology (LIST)] and [https://www.uni.lu/fstm-en/research-departments/department-of-physics-materials-science/ Department of Physics and Materials Science, University of Luxembourg]
 
* [https://www.researchgate.net/profile/Koshovyi-Oleh/publication/393549119_Verbena_officinalis_L_Herb_Extract_Its_Amino_Acids_Preparations_and_3D-Printed_Dosage_Forms_Phytochemical_Technological_and_Pharmacological_Research/links/686f6401e4632b045dcb07b1/Verbena-Officinalis-L-Herb-Extract-Its-Amino-Acids-Preparations-and-3D-Printed-Dosage-Forms-Phytochemical-Technological-and-Pharmacological-Research.pdf?__cf_chl_tk=g0aAQEeG07iWeHxzla1awi.GgsvXtNJCwBGtLKAIHws-1752692998-1.0.1.1-SB9SnNAluzr9Db8vdfRYCiexygy7SsRTqFthZYzgMP4 Verbena Officinalis L. Herb Extract, Its Amino Acids Preparations and 3D-printed Dosage Forms: Phytochemical, Technological, and Pharmacological Research] by a team from [https://ut.ee/en/institute-pharmacy Institute of Pharmacy, Faculty of Medicine, University of Tartu], [https://chem.ut.ee/en Institute of Chemistry, Faculty of Science and Technology, University of Tartu], [https://www.inmu.com.ua/pharmacy/ Department of Pharmaceutical Management, Drug Technology and Pharmacognosy, Ivano-Frankivsk National Medical University], and [https://en.nuph.edu.ua/institute-of-qualification-improvement-for-pharmacists/ Institute for Advanced Training of Pharmacy Specialists, The National University of Pharmacy, Kharkiv]
 
* [https://advanced.onlinelibrary.wiley.com/doi/pdfdirect/10.1002/admt.202500274 Dielectric Barrier Discharge Electrothermal Heating and Additive Manufacturing of Thermoset Parts] by a team from the [https://engineering.tamu.edu/chemical/index.html Artie McFerrin Department of Chemical Engineering, Texas A&M University]
 
* [https://www.science.org/doi/pdf/10.1126/sciadv.adv3359 Flexible Multichannel Muscle Impedance Sensors for Collaborative Human-machine Interfaces] by a team from the [https://www.ntu.edu.sg/mae School of Mechanical and Aerospace Engineering, Nanyang technological University]
 
* [https://advanced.onlinelibrary.wiley.com/doi/10.1002/adhm.202404866?af=R Leveraging the Shape Fidelity of 3D Printed Bone Scaffolds Through Architectural Tailoring of an Emulsion Ink: A Combined Experimental and Computational Analysis] by a team from [https://home.iitd.ac.in IIT Delhi]
 
* [https://ieeexplore.ieee.org/abstract/document/11020885 Design and Fabrication Workflow for Vertebrate Soft Robots] by a team from the [https://www.sutd.edu.sg/ Singapore University of Technology and Design (SUTD)]
 
* [https://scholar.google.com/scholar_url?url=https://www.repository.cam.ac.uk/bitstreams/38acc702-86b9-41a2-960b-e26ddc57ef37/download&hl=en&sa=X&d=12581543694159985542&ei=SrFDaObuKKm7ieoP2JSXsQo&scisig=AAZF9b_qpRmb0J_6_66uP-BEg8R3&oi=scholaralrt&hist=QZPgiEkAAAAJ:18370435948786443487:AAZF9b_8qqxJEWTLWYwhpCUoK2IS&html=&pos=0&folt=kw Embedded 3D Printing of Isotropically Enhanced Lattice Structure with Programmable Elasticity via Three-Dimensional Fiber Alignment] by a team from [https://mse.berkeley.edu/ Department of Material Science and Engineering, University of California, Berkeley], [https://www.cee.ucla.edu/ Department of Civil and Environmental Engineering, University of California, Los Angeles],[https://www.eng.cam.ac.uk/ Department of Engineering, University of Cambridge, UK], and [https://www.ornl.gov/division/manufacturing-science Manufacturing Science Division, Oak Ridge National Laboratory]
 
* [https://pubs.acs.org/doi/abs/10.1021/acsami.5c05683 Self-Sensing Composites via an Embedded 3D-Printed PVDF-MoS2 Nanosensor for Structural Health Monitoring] by a team from the Universities of [https://www.unt.edu/index.html North Texas], [https://www.ou.edu/ Oklahoma], [https://www.upenn.edu Pennsylvania], and [https://www.utk.edu/ Tennessee], as well as [https://www.ornl.gov/ Oak Ridge National Laboratory] and the [https://www.energy.gov U.S. Department of Energy]
 
* [https://www.sciencedirect.com/science/article/abs/pii/S095522192500398X 3D-printable Scaffolds via Diw From Ceramic Pastes of Zno Nanoparticles Without Organic Binders and Their Application as Reusable Photocatalysts for the Degradation of Bisphenol A] by a team from [https://investigadores.unison.mx/en/organisations/ciencias-materiales/network-organisations/ CIMAV's Advanced Functional Materials & Nanotechnology Group. Centro de Investigación en Materiales Avanzados S.C.]
 
* [https://www.sciencedirect.com/science/article/abs/pii/S0921510725004738 3D-printed Mil-101(Cr)-monoliths for Butanol and Cyclohexane Removal: Insights Into Rheological Behavior and Adsorption Capacity] by a team from seven different organizations in Mexico and Iran
 
* [https://www.cell.com/device/fulltext/S2666-9986(25)00112-7 Adaptive Core-shell 3D Printing of Hollow Fiber Actuators] by a team from [https://www.jhu.edu/ Johns Hopkins University]'s [https://engineering.jhu.edu/case/ Department of Civil and Systems Engineering] and [https://hemi.jhu.edu/ Hopkins Extreme Materials Institute (HEMI)]
 
* [https://www.sciencedirect.com/science/article/pii/S0958946525001982 Chemically Foamed Geopolymers for 3D Printing Applications] by a team from [https://orbit.dtu.dk/en/organisations/department-of-civil-and-mechanical-engineering Department of Civil and Mechanical Engineering, Technical University of Denmark] and several engineering departments of the [https://www.ua.pt/en/ University of Aveiro, Portugal]
 
* [https://www.sciencedirect.com/science/article/abs/pii/S0169131725000961 Rheological Behaviour and Printability Optimization of Geopolymer Ink for Direct Ink Writing] by a team from [https://bmsce.ac.in/home/Chemical-Engineering-About Department of Chemical Engineering, B. M. S. College of Engineering, Bengaluru] and [https://www.nitw.ac.in/path/?dept=/che Department of Chemical Engineering, National Institute of Technology, Warangal]
 
* [https://www.researchsquare.com/article/rs-6051348/v1.pdf De novo Autogenic Engineered Living Functional Materials] by a team from multiple departments of both [https://www.vt.edu/ Virginia Tech] and [https://www.northeastern.edu/ Northeastern University, Boston]
 
* [https://scholar.google.com/scholar_url?url=https://www.preprints.org/frontend/manuscript/5790c69055be75760b1ac2f5d82570ae/download_pub&hl=en&sa=X&d=1761419109860601782&ei=6YPxZ56LAvCj6rQPrrHXyQ4&scisig=AFWwaeZSoINQQ7IEPwcdVm4k3NEr&oi=scholaralrt&hist=QZPgiEkAAAAJ:18370435948786443487:AFWwaeaEM0xeEgrLLW3xIdc2G8Zs&html=&pos=0&folt=kw Extrusion-Based 3D Printing of Plant-Origin Flavonoids Using Aqueous Polyethylene Oxide Gel Inks] by a team from [https://ut.ee/en/institute-pharmacy Institute of Pharmacy, Faculty of Medicine, University of Tartu], [https://cnc.nuph.edu.ua/pharmacognosy/ Department of Pharmacognosy and Nutriciology, The National University of Pharmacy, Kharkiv], and [https://curifylabs.com/ CurifyLabs Oy, Helsinki]
 
* [https://link.springer.com/article/10.1557/s43580-025-01235-6 Solvent Evaporation-assisted Direct Ink Writing Using Polar Solvent for Flexible Polyvinyl Fluoride Piezoelectric Composites in Enhancement of Piezoelectric Properties] by a team from [https://www.utep.edu/engineering/mechanical/ Department of Aerospace and Mechanical Engineering, The University of Texas at El Paso]
 
* [https://www.sciencedirect.com/science/article/abs/pii/S1773224725002291 Eic Acid Encapsulated 3D Printed Polycaprolactone/polyvinylpyrrolidone Scaffolds for Wound Healing Applications] by a team from [https://lahore.comsats.edu.pk/default.aspx COMSATS University Islamabad, Lahore Campus], [https://www.marmara.edu.tr/en Marmara University], [https://www.yildiz.edu.tr/en Yildiz Teknik Üniversitesi], and [https://www.tuseb.gov.tr/public/en Health Institutes of Türkiye (Turkey) (TUSEB)]
 
* [https://link.springer.com/article/10.1007/s11771-025-5854-1 Electrical Properties of PVDF/PZT Composite Films Prepared by Direct Ink Writing] by a team from [https://en.csu.edu.cn/Schools/schools2/Materials_Science_and_Engineering.htm School of Materials Science and Engineering, Central South University, Changsha], [https://en.csu.edu.cn/Schools/schools3/Powder_Metallurgy_Research_Institute.htm State Key Laboratory of Powder Metallurgy, Central South University, Changsha], and the National Key Laboratory of Aerospace Mechanism, Institute of Aerospace System Engineering Shanghai
 
* [https://www.sciencedirect.com/science/article/abs/pii/S1526612525000556 Enhanced Mechanical, Tribological, and Thermal Properties of Copper-graphene Composites Using Additive Manufacturing] by a team from [http://www.metal.iitkgp.ac.in Department of Metallurgical and Materials Engineering, Indian Institute of Technology, Kharagpur], [https://amity.edu/noida/aias/ Amity Institute of Applied Sciences, Amity University, Noida], [https://www.psu.edu/news/impact/story/carbon-science-research-centre-excellence-opens-innovation-park Carbon Center of Excellence Morgan Advanced Materials, State College, PA], [https://www.ems.psu.edu/academics/our-departments/john-and-willie-leone-family-department-energy-and-mineral-engineering The John and Willie Leone Family Department of Energy and Mineral Engineering, Penn State University], and [https://iitjammu.ac.in/materials-engineering Department of Materials Engineering, Indian Institute of Technology, Jammu]
 
* [https://link.springer.com/article/10.1007/s10853-024-10340-0 Direct Ink Writing of Metals and Metal‑based Heterostructures] by a team from [https://msne.rice.edu Department of Materials Science and Nanoengineering, Rice University], [http://www.metal.iitkgp.ac.in Metallurgical and Materials Engineering, Indian Institute of Technology, Kharagpur]
 
* [https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/adem.202402283 Direct Ink Writing (3D Printing) of Robust, Highly Efficient, Double-Half-Heusler Thermoelectric High-Entropy Alloy], by a team from [https://ju.edu.et/jit/faculties-and-schools/2871-2/ Faculty of Materials Science and Engineering, Jimma Institute of Technology, Jimma University, Ethiopia] and [http://www.metal.iitkgp.ac.in Department of Metallurgical and Materials Engineering, Indian Institute of Technology, Kharagpur]
 
* [https://watermark.silverchair.com/itaf002.pdf?token=AQECAHi208BE49Ooan9kkhW_Ercy7Dm3ZL_9Cf3qfKAc485ysgAAA2gwggNkBgkqhkiG9w0BBwagggNVMIIDUQIBADCCA0oGCSqGSIb3DQEHATAeBglghkgBZQMEAS4wEQQMTdohposelabbQ94RAgEQgIIDGyk9Wxv45nfwSQLBasOfXlF2OW5BbsVxBmS_35wTkCvpN0Y1612sx3xK2XBopHzdEDOUWfyvBmddKL01T3czFRpZ4ZvzTRO5lHzIv7mFuge_NfNeFLP0vVnCVvcwiz50lIbalMq-ijBFIC6uZ50yonMTFZbTP3i0uvMxc_hvWLizbvhnf69vMzsmfZauewf2XQQs7T6ByUk1BQJCFwETJoiI1rMdBMUsCOTE9Z9cyWp5LnLfHUJM0C9TD64Kbi7mYwV0fKKvVHaPy0wr_MZH8BtmoLnzL_MGcP9LOoheW_SQ792K2q_k5ZIDAONsXwYbFmNaeSgnpIH1sxcLl4lThtcYNtGU9cBrdZXK8I5uLemUXJRB9KQSgFQw2m44ypFLkF1xF5X4mQtnJ13hZM-TGQrFRuzYUL4Unh2Gt2d-zfHnTzzD-ievTf4VaOJaYKOrNnngBV-49PUsFgUDNcZax5iFqRphXfCDEkqTOIgIN-f5mGGvy0WZrUSNgXwSwhRqzAWCUe9t8Vog5ySSpjA5yWnQerxYK-2yB9mIUPuNIQOpbeVztg2FVS_29zdXFcKCnUWZn3syvTDX7-AziPKQEkKyaPSfHfsf62f6QN8-RgmahSEMuOgS8tVj6l9EjkaADXyr1aNtfxZkp2OKJsnBJUf6j2cMD6ll-b1dxxYn7YQix77HoUNIyP4St9D7hHnUTR9QdZAEsjZg5jd63T8inVgEWf6D9vUDoJaX_W7dnZ84MD7pgOm0v6akyPLLo5f0x81cUAqTh39acuYafSx4GjJ0i97fQUIpJm6AdSsHZwHzeuCIQr4PXfFpUTszo9-E5R3M28_EjY_hYT82r7EN-A1diMbtM5FB_daic2Mf_7IgFu6XvMzHMMi47so-1Z2oEV2-C3myBGW4PEWcSEFyo81zYNm0hbRE_Upf7CmnOH3QdBofIVrvJQp43w4x9tj-1Prey1gLXiv6OtpFif9Vw4BdrJWBdZCu_usf2mDBp13CMaQO7yZpJGkNXzpSpL7j5A1qCR0sTs9R6aFcWj5pe4iGKBsYF3lO9YnRBA Hexagonal Boron Nitride Reinforced Quick-setting Multifunctional Cement] by a team from [https://msne.rice.edu/ Department of Materials Science and NanoEngineering, Rice University], [https://cee.rice.edu/ Department of Civil and Environmental Engineering, Rice University], [https://chemistry.rice.edu/ Department of Chemistry, Rice University], [https://engineering.msu.edu/about/departments/me Department of Mechanical Engineering, Michigan State University], and [https://americas.aramco.com/en Aramco Americas]
 
* [https://www.sciencedirect.com/science/article/abs/pii/S1526612525002385 Machine Learning-driven Ultrasonic Monitoring for Quality Assurance in Additive Manufacturing Employing 2D Phononic Coupons] by a team from [https://clarkson.edu Clarkson University, Potsdam]
 
* [https://jppres.com/jppres/pdf/vol13/jppres24.2016_13.1.115.pdf Semi-solid Extrusion 3D Printing of Plant-origin Rosmarinic Acid Loaded in Aqueous Polyethylene Oxide Gels] by a team from [https://ut.ee/en/institute-pharmacy Institute of Pharmacy, University of Tartu], [https://en.nuph.edu.ua National University of Pharmacy, Kharkiv], [https://kymu.edu.ua/en/ Kyiv International University, Kiev], and [https://curifylabs.com Curify Labs]
 
* [https://dspace.nuph.edu.ua/bitstream/123456789/34605/1/%D0%97%D0%B1%D1%96%D1%80%D0%BD%D0%B8%D0%BA%20%D0%9A%D0%BE%D0%BD%D1%84%D0%B5%D1%80%D0%B5%D0%BD%D1%86%D1%96%D1%8F%20%D0%9F%D0%A2%D0%9B%D1%82%D0%B0%D0%9A%D0%97%202024%20final.pdf#page=161 Development of 3D-printed Dosage Forms With Rutin] published by the [https://moz.gov.ua/en?dev-home Ministry of Health of Ukraine]
 
* [https://ceramics.onlinelibrary.wiley.com/doi/pdf/10.1002/ces2.70003 Additive Manufacturing of Textured Barium Titanate Ceramics via Shear Force-induced Platelet Alignment] by a team from [https://www.utep.edu/engineering/mechanical/ Department of Aerospace and Mechanical Engineering, The University of Texas at El Paso]
 
* Solidago Canadensis L. Herb Extract, Its Amino Acids Preparations and 3D-Printed Dosage Forms: Phytochemical, Technological, Molecular Docking and Pharmacological Research [[File:Preprints202502.2331.v1.pdf]] by a team from [https://ut.ee/en Uniersity of Tartu]
 
* [https://www.sciencedirect.com/science/article/pii/S0141813025017453 Alginate Crosslinking Beyond Calcium: Unlocking the Potential of a Range of Divalent Cations for Fiber Formation] by a team from [https://www.unifi.it/en University of Florence], [https://en.unistra.fr/ Université de Strasbourg], and [https://www.p4sb.eu/partners/detail/centre-national-de-la-recherche-scientifique-cnrs.html CNRS]
 
* [https://pubs.acs.org/doi/abs/10.1021/acsabm.4c01576 Fabrication of Hypoxia-Mimicking Supramolecular Hydrogels for Cartilage Repair] by a team from [https://people.iith.ac.in/subharath/index.html Regenerative Medicine and Stem Cell Laboratory (RMS), Department of Biomedical Engineering, Indian Institute of Technology Hyderabad] and [https://msme.iith.ac.in/index.html Department of Materials Science and Metallurgical Engineering, Indian Institute of Technology Hyderabad]
 
* [https://www.sciencedirect.com/science/article/abs/pii/S2214860425000430 Direct Ink Writing of Coaxial Electrostatic Fibers With Customizable Cross-sections and Functional Properties] by a team from [https://www.ntu.edu.sg/mae School of Mechanical and Aerospace Engineering, Nanyang Technological University]
 
* [https://onlinelibrary.wiley.com/doi/abs/10.1002/pat.70073 High-Performance Bionic Architectures via 3D Printing of Recycled Kevlar: A Study of Laser Ablation and Mechanical Properties] by  a team from [https://www.deakin.edu.au/ifm Institute for Frontier Materials, Deakin University, Waurn Ponds Campus, Geelong, Victoria, Australia], [https://www.ramint.gov.au/ Royal Australian Mint, Canberra, Australian Capital Territory, Australia], and [https://en.wikipedia.org/wiki/Defence_Institute_of_Advanced_Technology  Ministry of Defence, India]
 
* [https://pubs.acs.org/doi/abs/10.1021/acsami.4c19700 Microgel-Guided MXene Assembly for High-Performance, Low-Solid Content Conductive Inks] by a team from the departments of [https://sc.edu/study/colleges_schools/engineering_and_computing/departments/chemical_engineering/index.php Chemical Engineering] and [https://sc.edu/study/colleges_schools/engineering_and_computing/departments/biomedical_engineering/index.php Biomedical Engineering] of the [https://sc.edu/ University of South Carolina]
 
 
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== DIW/SEP/SSE, 2024 ==
 
== DIW/SEP/SSE, 2024 ==

Revision as of 14:27, 27 August 2025

Below is a list of published works citing Hyrel equipment.

Count

661 documents as of 27 August, 2025.

Non-Traditional Manufacturing

Including:

  • 4D Printing
  • Antennas, Sensors, Batteries, Inductors, and Circuits
  • Electro-Spinning
  • Electro-Melt-Spinning
  • Engineered Living Materials (ELM)
  • Melt Electro-Writing (MEW)
  • Multiphase Direct Ink Writing (MDIW)
  • Nanostructures
  • Micro-Encapsulated Phase-Changing Materials (MEPCM)
  • Plasma Treatments
  • Printing with Embedded Fibers
  • Shape Memory Polymers
  • And combining two or more additive manufacturing methods in a single build.

NTM, 2025

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NTM, 2024

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NTM, 2023

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NTM, 2022

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NTM, 2021

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NTM, 2020

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NTM, 2019

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NTM, 2018

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NTM, 2017

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NTM, 2016

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NTM, 2015

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Unheated or Chilled Reservoir Printing

Also known as Robocasting or DIW (Direct Ink Writing), SEP (Semisolid Extrusion Printing), SSE (Semisolid Extrusion). 3DCP (3D Concrete Printing), or DCC (Digital Concrete Construction).

These pages ran too long, and have been split off to the new Published Papers (DIW) page.

DIW/SEP/SSE, 2024

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DIW/SEP/SSE, 2023

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DIW/SEP/SSE, 2022

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DIW/SEP/SSE, 2021

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DIW/SEP/SSE, 2020

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DIW/SEP/SSE, 2019

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DIW/SEP/SSE, 2018

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DIW/SEP/SSE, 2017

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DIW/SEP/SSE, 2016

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DIW/SEP/SSE, 2015

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DIW/SEP/SSE, 2014

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Heated Reservoir Printing

Also known as DPE (Direct Powder Extrusion) or HME (Hot Melt Extrusion).

DPE, HME 2025

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DPE, HME 2024

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DPE, HME 2023

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DPE, HME 2022

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DPE, HME 2021

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DPE, HME 2020

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DPE, HME 2019

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DPE, HME 2018

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DPE, HME 2017

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Filament Printing

Also known as FFF (Fused Filament Fabrication) or FDM (Fused Deposition Modeling).

FDM/FFF, 2025

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FDM/FFF, 2024

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FDM/FFF, 2023

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FDM/FFF, 2022

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FDM/FFF, 2021

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FDM/FFF, 2020

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FDM/FFF, 2019

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FDM/FFF, 2018

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FDM/FFF, 2017

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FDM/FFF, 2016

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