Difference between revisions of "Published Papers (DIW)"

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== DIW/SEP/SSE, 2026 ==
 
== DIW/SEP/SSE, 2026 ==
  
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* [https://www.researchgate.net/profile/Koshovyi-Oleh/publication/400707991_Formulation_and_evaluation_of_semi-solid_extrusion_SSE_3D-printed_drug_preparations_using_poloxamers_and_polyethylene_oxide_as_co-printed_carrier_polymers/links/6990398064ca8a38208cec29/Formulation-and-evaluation-of-semi-solid-extrusion-SSE-3D-printed-drug-preparations-using-poloxamers-and-polyethylene-oxide-as-co-printed-carrier-polymers.pdf Formulation and Evaluation of Semi-solid Extrusion (SSE) 3D-printed Drug Preparations Using Poloxamers and Polyethylene Oxide as Co-printed Carrier Polymers] by a team from [https://ut.ee/en University of Tartu]'s [https://ut.ee/en/contact/institute-pharmacy Institute of Pharmacy] and [https://omi.ut.ee/en Institute of Ecology and Earth Sciences]
 
* [https://assets-eu.researchsquare.com/files/rs-8651682/v1/71e68e5f-62be-4762-995f-54b6573a8659.pdf?c=1770116728 Effect of 3-D Printing on Mechanical Properties of Poly(vinyl alcohol) based Algal Biopolymer Composites] by a team from [https://www.iitkgp.ac.in/ Indian Institute of Technology, Kharagpur]
 
* [https://assets-eu.researchsquare.com/files/rs-8651682/v1/71e68e5f-62be-4762-995f-54b6573a8659.pdf?c=1770116728 Effect of 3-D Printing on Mechanical Properties of Poly(vinyl alcohol) based Algal Biopolymer Composites] by a team from [https://www.iitkgp.ac.in/ Indian Institute of Technology, Kharagpur]
 
* [https://advanced.onlinelibrary.wiley.com/doi/pdfdirect/10.1002/adma.72447 Liquids as Reinforcements for Anisotropic and Tough Soft Matter Composites] by a team from [https://bartlett.me.vt.edu/ Mechanical Engineering, Soft Materials and Structures Lab, Virginia Tech] and [https://www.unl.edu/ University of Nebraska–Lincoln]'s [https://smr.unl.edu/ Smart Materials & Robotics Lab] and [https://engineering.unl.edu/ece/ Electrical & Computer Engineering Department]
 
* [https://advanced.onlinelibrary.wiley.com/doi/pdfdirect/10.1002/adma.72447 Liquids as Reinforcements for Anisotropic and Tough Soft Matter Composites] by a team from [https://bartlett.me.vt.edu/ Mechanical Engineering, Soft Materials and Structures Lab, Virginia Tech] and [https://www.unl.edu/ University of Nebraska–Lincoln]'s [https://smr.unl.edu/ Smart Materials & Robotics Lab] and [https://engineering.unl.edu/ece/ Electrical & Computer Engineering Department]

Revision as of 13:49, 17 February 2026

The Published Papers page ran too long, so the pages for Unheated or Chilled Reservoir Printing are listed here, by year of publication.

The information about 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 here.

To see the list of non-DIW papers, please visit the Published Papers page.

Count

706 total documents as of 17 February, 2026.

Unheated or Chilled Reservoir Printing

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

DIW/SEP/SSE, 2026

DIW/SEP/SSE, 2025

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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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