Difference between revisions of "Published Papers"

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(DPE, HME 2018)
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== Count ==
 
== Count ==
  
706 total documents as of 17 February, 2026.
+
727 total documents as of 4 June, 2026.
  
 
== '''Non-Traditional Manufacturing''' ==
 
== '''Non-Traditional Manufacturing''' ==
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== NTM, 2026 ==
 
== NTM, 2026 ==
  
 +
* [https://www.nature.com/articles/s41467-026-72616-0_reference.pdf Extrusion-printed La<sub>3-x</sub>Te<sub>4</sub> Legs With Interlocking Ni Electrode for High-temperature Thermoelectric Devices] by a team from [https://www.mccormick.northwestern.edu/materials-science/ Department of Materials Science & Engineering, Northwestern University] and [https://www.jpl.nasa.gov/ Thermoelectric and Electrochemical Systems and Technologies Jet Propulsion Laboratory / California Institute of Technology]
 +
* [https://link.springer.com/article/10.1007/s00289-026-06391-9 Effect of CO2 Laser Treatment on Interfacial Properties of Quartz Fibre for 3D Printed Sandwich Composite] by a team from [https://www.ictmumbai.edu.in/Deptindex.aspx?page=a&ItemID=cg&nDeptID=g Department of Fibres and Textile Processing Technology, Institute of Chemical Technology Mumbai], [https://diat.ac.in/metallurgical-materials-engineering/ Additive Manufacturing Laboratory, Department of Metallurgical and Materials Engineering, Defence Institute of Advanced Technology (DU), Girinagar], [https://www.diatphys.in/ Advanced Laser Laboratory, Department of Applied Physics, Defence Institute of Advanced Technology (DU), Girinagar], and [https://www.srmist.edu.in/department/department-of-mechanical-engineering/ Department of Mechanical Engineering, SRM Institute of Science and Technology, Kattankulathur]
 +
* [https://www.proquest.com/openview/15d3d0e4f9e0a9041706e34f860ee959/1?pq-origsite=gscholar&cbl=18750&diss=y Printed Flexible High Density and High Frequency Connectors With Active Components Integration], a Master dissertation submitted to the [https://www.uml.edu/ University of Massachusetts (UMass), Lowell Campus]
 
* [https://www.science.org/doi/pdf/10.1126/sciadv.aeb2417 Robotic Conformal 4D Printing of Liquid Crystal Elastomers] by a team from the [https://engineering.ucdenver.edu/departments/mechanical-engineering Department of Mechanical Engineering, University of Colorado Denver]
 
* [https://www.science.org/doi/pdf/10.1126/sciadv.aeb2417 Robotic Conformal 4D Printing of Liquid Crystal Elastomers] by a team from the [https://engineering.ucdenver.edu/departments/mechanical-engineering Department of Mechanical Engineering, University of Colorado Denver]
 
* [https://carleton.scholaris.ca/items/0b4e329a-343d-4973-b68a-e32447e4f1b5 Rapid Prototyping of a Directly Heated Thermionic Triode Using 3D Printing Techniques], a Masters dissertation submitted to [https://carleton.ca/ Carleton University, Ottawa]
 
* [https://carleton.scholaris.ca/items/0b4e329a-343d-4973-b68a-e32447e4f1b5 Rapid Prototyping of a Directly Heated Thermionic Triode Using 3D Printing Techniques], a Masters dissertation submitted to [https://carleton.ca/ Carleton University, Ottawa]
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== DPE/HME 2026 ==
 
== DPE/HME 2026 ==
  
 +
* [https://www.proquest.com/openview/7815e5d822e54ba99e016415e1d3bfee/1?pq-origsite=gscholar&cbl=18750&diss=y Utilizing Enzymatic Degradation and Phase Separation to Generate Micro/Nano-scale Mass Transport Networks in Organic Binder Systems for Ceramic Green Bodies], a Master dissertation submitted to the [https://www.uml.edu/ University of Massachusetts (UMass), Lowell Campus]
 
* [https://onlinelibrary.wiley.com/doi/pdf/10.1002/rpm2.70039 4D Printing of Fast-responsive Liquid Crystalline Elastomers for Light-driven Actuators] by a team from [https://www.unifi.it/en University of Florence], [https://www.cnr.it/en/institute/111/national-institute-of-optics-ino National Institute of Optics, National Research Council (INO-CNR), Sesto Fiorentino, Italy], and [https://lens.unifi.it/ European Laboratory for Non Linear Spectroscopy (LENS), Sesto Fiorentino, Italy]
 
* [https://onlinelibrary.wiley.com/doi/pdf/10.1002/rpm2.70039 4D Printing of Fast-responsive Liquid Crystalline Elastomers for Light-driven Actuators] by a team from [https://www.unifi.it/en University of Florence], [https://www.cnr.it/en/institute/111/national-institute-of-optics-ino National Institute of Optics, National Research Council (INO-CNR), Sesto Fiorentino, Italy], and [https://lens.unifi.it/ European Laboratory for Non Linear Spectroscopy (LENS), Sesto Fiorentino, Italy]
 
* [https://www.proquest.com/openview/71f1b108870532d30a3ff7b0bd13a84c/1?pq-origsite=gscholar&cbl=18750&diss=y Advancing Aerospace Materials: 3D Printing of Fiber Reinforced Cyanate Ester Ipns and Uhtcmcs], a thesis submitted to [https://www.utep.edu/engineering/mechanical/ University of Texas at El Paso]
 
* [https://www.proquest.com/openview/71f1b108870532d30a3ff7b0bd13a84c/1?pq-origsite=gscholar&cbl=18750&diss=y Advancing Aerospace Materials: 3D Printing of Fiber Reinforced Cyanate Ester Ipns and Uhtcmcs], a thesis submitted to [https://www.utep.edu/engineering/mechanical/ University of Texas at El Paso]
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[[#top|Top]]
 
[[#top|Top]]
  
== DPE, HME 2017 ==
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== DPE/HME 2017 ==
  
 
* [http://pubs.acs.org/doi/abs/10.1021/acsami.7b13602 Shear-Thinning and Thermo-Reversible Nanoengineered Inks for 3D Bioprinting] in the [http://www.acs.org/content/acs/en.html American Chemical Society's] [http://pubs.acs.org/toc/aamick/current Applied Materials & Interfaces Journal]
 
* [http://pubs.acs.org/doi/abs/10.1021/acsami.7b13602 Shear-Thinning and Thermo-Reversible Nanoengineered Inks for 3D Bioprinting] in the [http://www.acs.org/content/acs/en.html American Chemical Society's] [http://pubs.acs.org/toc/aamick/current Applied Materials & Interfaces Journal]
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== FDM/FFF, 2026 ==
 
== FDM/FFF, 2026 ==
  
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* [https://link.springer.com/article/10.1007/s00170-026-18350-9 Effect of Process Parameters on the Mechanical Properties of Mex Fabricated Short Carbon Reinforced Peek Composites] by a team from [https://www.etsmtl.ca/en/study-at-ets/departments/mechanical-engineering Department of Mechanical Engineering, École de technologie supérieure, Montréal], [https://ica.cnrs.fr/home/ Institut Clément Ader (ICA), Université de Toulouse], and [https://www.ntu.edu.sg/cintra CNRS-International-NTU-THALES-Research-Alliance (CINTRA, Nanyang Technological University, Singapore]
 +
* [http://www.sciengine.com/doi/pdf/8EA2C62E62FA4F4891C3E622E3C4526D Gradient-Stiffness Star-Shaped Auxetic Metamaterial for High-Energy Absorption] by a team from [https://en.hit.edu.cn/ Harbin Institute of Technology, China]
 +
* [https://link.springer.com/article/10.1007/s40964-025-01509-3 In Situ Cold Plasma-enhanced Polymer Additive Manufacturing] by a team from [https://tsmart.mie.utoronto.ca Toronto Smart Materials and Structures, Mechanical and Industrial Engineering, University of Toronto] and [https://nrc.canada.ca/en Division of Emerging Technologies, National Research Council Canada]
 
* [https://www.proquest.com/openview/cbb9bc0e87307e6c7690ed03de0216f7/1?pq-origsite=gscholar&cbl=18750&diss=y A Framework for Distributed Additive Manufacturing], a PhD dissertation submitted to [https://www.nmsu.edu/ New Mexico State University]
 
* [https://www.proquest.com/openview/cbb9bc0e87307e6c7690ed03de0216f7/1?pq-origsite=gscholar&cbl=18750&diss=y A Framework for Distributed Additive Manufacturing], a PhD dissertation submitted to [https://www.nmsu.edu/ New Mexico State University]
  

Latest revision as of 20:03, 4 June 2026

Below is a list of published works citing Hyrel equipment.

The information for 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), ran too long, and has been split off to the new Published Papers (DIW) page.

Count

727 total documents as of 4 June, 2026.

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, 2026

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).

This info ran too long, and has been split off to the new Published Papers (DIW) page.

Heated Reservoir Printing

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

DPE/HME 2026

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 FDM (Fused Deposition Modeling) or FFF (Fused Filament Fabrication).

FDM/FFF, 2026

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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