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In-Situ Print Characterization and Defect Monitoring of 3D Printing via Conductive Filament and Ohm’s Law
Procedia Manufacturing
◽
10.1016/j.promfg.2021.06.044
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2021
◽
Vol 53
◽
pp. 417-426
Author(s):
Helen Parker
◽
Sean Psulkowski
◽
Phong Tran
◽
Tarik Dickens
Keyword(s):
3D Printing
◽
Conductive Filament
◽
Ohm’S Law
◽
Ohm's Law
Download Full-text
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References
Ohm's law
AccessScience
◽
10.1036/1097-8542.466200
◽
2015
◽
Keyword(s):
Ohm’S Law
◽
Ohm's Law
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A Strategy for Fabricating in Situ Topographical 3D Scaffolds Using 3D Printing and Pluronic F-127
SSRN Electronic Journal
◽
10.2139/ssrn.3455095
◽
2019
◽
Author(s):
JiUn Lee
◽
SooJung Chae
◽
Hyeongjin Lee
◽
GeunHyung Kim
Keyword(s):
3D Printing
◽
3D Scaffolds
Download Full-text
OHM'S LAW IS THE GENERAL LAW OF EXACT SCIENCES
10.21506/j.ponte.2016.7.9
◽
2016
◽
Vol 72
(7)
◽
Cited By ~ 2
Author(s):
Alexander Alexandrovich Antonov
Keyword(s):
Ohm’S Law
◽
General Law
◽
Ohm's Law
Download Full-text
Stray current control - an application of Ohm's law
IET Seminar on EMC in Railways
◽
10.1049/ic:20060190
◽
2006
◽
Cited By ~ 3
Author(s):
K. Griffiths
Keyword(s):
Current Control
◽
Stray Current
◽
Ohm’S Law
◽
Ohm's Law
Download Full-text
Ultrafast Electrohydrodynamic 3D Printing with in situ Jet Speed Monitoring
Materials & Design
◽
10.1016/j.matdes.2021.109791
◽
2021
◽
pp. 109791
Author(s):
Ievgenii Liashenko
◽
Alberto Ramon
◽
Andreu Cabot
◽
Joan Rosell-Llompart
Keyword(s):
3D Printing
Download Full-text
Developing video-based learning for the application of ohm’s law towards conductive transparent layer
Journal of Physics Conference Series
◽
10.1088/1742-6596/1760/1/012043
◽
2021
◽
Vol 1760
◽
pp. 012043
Author(s):
A Izzah
◽
S Saehana
Keyword(s):
Ohm’S Law
◽
Transparent Layer
◽
Video Based Learning
◽
Ohm's Law
Download Full-text
Ohm's law: another look
The Journal of the Acoustical Society of America
◽
10.1121/1.1995205
◽
1975
◽
Vol 57
(S1)
◽
pp. S38-S38
Author(s):
W. M. Mills
◽
J. D. Gilliom
Keyword(s):
Ohm’S Law
◽
Ohm's Law
Download Full-text
Improving precision of material extrusion 3D printing by in-situ monitoring & predicting 3D geometric deviation using conditional adversarial networks
Additive Manufacturing
◽
10.1016/j.addma.2020.101695
◽
2021
◽
Vol 38
◽
pp. 101695
Author(s):
Ling Li
◽
Ryan McGuan
◽
Robert Isaac
◽
Pirouz Kavehpour
◽
Robert Candler
Keyword(s):
3D Printing
◽
In Situ Monitoring
◽
Material Extrusion
◽
Adversarial Networks
◽
Geometric Deviation
Download Full-text
In situ generation of Ag nanoparticles during photopolymerization by using newly developed dyes‐based three‐component photoinitiating systems and the related 3D printing applications and their shape change behavior
Journal of Polymer Science
◽
10.1002/pol.20210154
◽
2021
◽
Author(s):
Hong Chen
◽
Guillaume Noirbent
◽
Shaohui Liu
◽
Yijun Zhang
◽
Ke Sun
◽
...
Keyword(s):
3D Printing
◽
Ag Nanoparticles
◽
Shape Change
◽
Change Behavior
◽
In Situ Generation
Download Full-text
Role of in situ added cellulose nanocrystals as rheological modulator of novel waterborne polyurethane urea for 3D-printing technology
Cellulose
◽
10.1007/s10570-021-03826-6
◽
2021
◽
Author(s):
Julen Vadillo
◽
Izaskun Larraza
◽
Tamara Calvo-Correas
◽
Nagore Gabilondo
◽
Christophe Derail
◽
...
Keyword(s):
3D Printing
◽
Cellulose Nanocrystals
◽
Waterborne Polyurethane
◽
Printing Technology
◽
3D Printing Technology
Download Full-text
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