Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process

Abrasive water jet (AWJ) is a safe processing technology which can effectively machine almost any materials. However, due to excessive influence factors and micro-high-speed characteristics of the erosion process, traditional experiment methods have limitations in the research of the process, and th...

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Main Authors: Songsheng Deng, Xiaochen Chen, Jinfa Guan, Zhili Chen, Ming Chen, Qiang Liu
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2017-07-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/1090
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spelling doaj-73431ec32c1a472ab51a77f0b3f6f4b22021-02-18T20:59:53ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162017-07-015910.3303/CET1759024Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process Songsheng DengXiaochen ChenJinfa GuanZhili ChenMing ChenQiang LiuAbrasive water jet (AWJ) is a safe processing technology which can effectively machine almost any materials. However, due to excessive influence factors and micro-high-speed characteristics of the erosion process, traditional experiment methods have limitations in the research of the process, and the understanding of the abrasive water jet cutting (AWJC) process is not comprehensive. In this paper, the SPH coupled FEM method is used to establish the model of the pre-mixed AWJC process, and the effect of jet angle on the abrasive particle erosion process is analyzed deeply. The effect of jet angle on erosion crater sphericity is achieved from simulation results and the sphericity values are compared with the values observed in the experiments. Simulation results are in good agreement with results obtained from the experimental verification, which proves that the SPH coupled FEM method has better reliability and higher accuracy than single particle or multi-particle FEM erosion simulation. Based on the analysis of erosion crater morphology, the reason of jet angle change during AWJC process. This paper not only enriches the research method of abrasive water jet cutting process, but also contributes to the precise control of abrasive water jet cutting process. https://www.cetjournal.it/index.php/cet/article/view/1090
collection DOAJ
language English
format Article
sources DOAJ
author Songsheng Deng
Xiaochen Chen
Jinfa Guan
Zhili Chen
Ming Chen
Qiang Liu
spellingShingle Songsheng Deng
Xiaochen Chen
Jinfa Guan
Zhili Chen
Ming Chen
Qiang Liu
Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process
Chemical Engineering Transactions
author_facet Songsheng Deng
Xiaochen Chen
Jinfa Guan
Zhili Chen
Ming Chen
Qiang Liu
author_sort Songsheng Deng
title Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process
title_short Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process
title_full Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process
title_fullStr Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process
title_full_unstemmed Research on the Effect of Jet Angle on Pre-Mixed Abrasive Water Jet Erosion Process
title_sort research on the effect of jet angle on pre-mixed abrasive water jet erosion process
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2017-07-01
description Abrasive water jet (AWJ) is a safe processing technology which can effectively machine almost any materials. However, due to excessive influence factors and micro-high-speed characteristics of the erosion process, traditional experiment methods have limitations in the research of the process, and the understanding of the abrasive water jet cutting (AWJC) process is not comprehensive. In this paper, the SPH coupled FEM method is used to establish the model of the pre-mixed AWJC process, and the effect of jet angle on the abrasive particle erosion process is analyzed deeply. The effect of jet angle on erosion crater sphericity is achieved from simulation results and the sphericity values are compared with the values observed in the experiments. Simulation results are in good agreement with results obtained from the experimental verification, which proves that the SPH coupled FEM method has better reliability and higher accuracy than single particle or multi-particle FEM erosion simulation. Based on the analysis of erosion crater morphology, the reason of jet angle change during AWJC process. This paper not only enriches the research method of abrasive water jet cutting process, but also contributes to the precise control of abrasive water jet cutting process.
url https://www.cetjournal.it/index.php/cet/article/view/1090
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