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Materiale Plastice
Cite as: Mater. Plast.
https://doi.org/10.37358/Mat.Plast.1964

OSIM Nr. R102356
ISSN Print 0025-5289
ISSN Online 2668-8220
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Materiale Plastice (Mater. Plast.), Year 2023, Volume 60, Issue 3, 94-105

https://doi.org/10.37358/MP.23.3.5679

Dinu-Valentin Gubencu

Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites


Abstract:
The main objective of the research was to study the influence of the abrasive water jet cutting (AWJC) parameters on the surface roughness parameters Rz1max and Rt, obtained when processing Kevlar fiber-reinforced polymers (KFRP). For this purpose, a full factorial experimental program was designed and roughness evaluations were carried out in two different zones of the cut slot. In this way, it was possible to test the statistical significance of the input parameters effects and characterize both these regions, by means of prediction models proposed for each roughness parameter. Finally, response surfaces and level curves were represented to facilitate the selection of proper factors combination to achieve surface finish requirements.


Keywords:
Kevlar/epoxy composite material; abrasive water jet cutting; total height of the roughness profile; maximum roughness depth; full factorial experiment

Issue: 2023 Volume 60, Issue 3
Pages: 94-105
Publication date: 2023/10/4
https://doi.org/10.37358/MP.23.3.5679
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This article is published under the Creative Commons Attribution 4.0 International License
Citation Styles
Cite this article as:
GUBENCU, D., , Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites, Mater. Plast., 60(3), 2023, 94-105. https://doi.org/10.37358/MP.23.3.5679

Vancouver
Gubencu D. Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites. Mater. Plast.[internet]. 2023 Jul;60(3):94-105. Available from: https://doi.org/10.37358/MP.23.3.5679


APA 6th edition
Gubencu, D., (2023). Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites. Materiale Plastice, 60(3), 94-105. https://doi.org/10.37358/MP.23.3.5679


Harvard
Gubencu, D., (2023). 'Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites', Materiale Plastice, 60(3), pp. 94-105. https://doi.org/10.37358/MP.23.3.5679


IEEE
D. Gubencu, "Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites". Materiale Plastice, vol. 60, no. 3, pp. 94-105, 2023. [online]. https://doi.org/10.37358/MP.23.3.5679


Text
Dinu-Valentin Gubencu,
Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites,
Materiale Plastice,
Volume 60, Issue 3,
2023,
Pages 94-105,
ISSN 2668-8220,
https://doi.org/10.37358/MP.23.3.5679.
(https://revmaterialeplastice.ro/Articles.asp?ID=5679)
Keywords: Kevlar/epoxy composite material; abrasive water jet cutting; total height of the roughness profile; maximum roughness depth; full factorial experiment


RIS
TY - JOUR
T1 - Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites
A1 - Gubencu, Dinu-Valentin
JF - Materiale Plastice
JO - Mater. Plast.
PB - Materiale Plastice SRL
SN - 2668-8220
Y1 - 2023
VL - 60
IS - 3
SP - 94
EP - 105
UR - https://doi.org/10.37358/MP.23.3.5679
KW - Kevlar/epoxy composite material
KW - abrasive water jet cutting
KW - total height of the roughness profile
KW - maximum roughness depth
KW - full factorial experiment
ER -


BibTex
@article{MatPlast2023P94,
author = {Gubencu Dinu-Valentin},
title = {Experimental Investigation for the Prediction of Surface Roughness Height Parameters in Abrasive Water Jet Cutting of Kevlar/epoxy Composites},
journal = {Materiale Plastice},
volume = {60},
number = {3},
pages = {94-105},
year = {2023},
issn = {2668-8220},
doi = {https://doi.org/10.37358/MP.23.3.5679},
url = {https://revmaterialeplastice.ro/Articles.asp?ID=5679}
}


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