Program development on cleaning pattern and performance evaluation for low pressure waterjet

Waterjet is a device that cuts or crushes materials using water pressure injected through the nozzle. Especially, Low pressure waterjet is used in stripping and cleaning work. The cleaning patterns of the low pressure waterjet is determined by various design variables, such as the number of nozzles,...

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Main Authors: Ji-Heon Kang, Jin-Seok Jang, Kun-woo Kim, Wan-Suk Yoo, Jae-Wook Lee
Format: Article
Language:English
Published: SAGE Publishing 2021-02-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814020985162
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spelling doaj-fed7d453dda845d294516c990047f7ca2021-02-19T23:34:20ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402021-02-011310.1177/1687814020985162Program development on cleaning pattern and performance evaluation for low pressure waterjetJi-Heon Kang0Jin-Seok Jang1Kun-woo Kim2Wan-Suk Yoo3Jae-Wook Lee4Korea Institute of Industrial Technology, Daegu, Republic of KoreaKorea Institute of Industrial Technology, Daegu, Republic of KoreaKorea Institute of Industrial Technology, Daegu, Republic of KoreaDepartment of Mechanical Engineering, Pusan National University, Busan, Republic of KoreaKorea Institute of Industrial Technology, Daegu, Republic of KoreaWaterjet is a device that cuts or crushes materials using water pressure injected through the nozzle. Especially, Low pressure waterjet is used in stripping and cleaning work. The cleaning patterns of the low pressure waterjet is determined by various design variables, such as the number of nozzles, an angle of nozzles, gear ratio and so on. In order to optimize the cleaning pattern, the optimum waterjet design is required depending on the shape of the target structure. To do this, a large number of waterjet analysis models should be used. This study reduced design time by automating the creation of the desired analysis model with simple changes in design variables, and conducted evaluation of the cleaning patterns using numerical method for the most frequently used cylindrical structures. In addition, it analyzed the effects of changes in design variables and suggested improvements. Moreover, the idea of a module type waterjet was proposed to reduce the cost of waterjet replacement due to usage changes. This study can be used to design the waterjet, which suits a particular purpose.https://doi.org/10.1177/1687814020985162
collection DOAJ
language English
format Article
sources DOAJ
author Ji-Heon Kang
Jin-Seok Jang
Kun-woo Kim
Wan-Suk Yoo
Jae-Wook Lee
spellingShingle Ji-Heon Kang
Jin-Seok Jang
Kun-woo Kim
Wan-Suk Yoo
Jae-Wook Lee
Program development on cleaning pattern and performance evaluation for low pressure waterjet
Advances in Mechanical Engineering
author_facet Ji-Heon Kang
Jin-Seok Jang
Kun-woo Kim
Wan-Suk Yoo
Jae-Wook Lee
author_sort Ji-Heon Kang
title Program development on cleaning pattern and performance evaluation for low pressure waterjet
title_short Program development on cleaning pattern and performance evaluation for low pressure waterjet
title_full Program development on cleaning pattern and performance evaluation for low pressure waterjet
title_fullStr Program development on cleaning pattern and performance evaluation for low pressure waterjet
title_full_unstemmed Program development on cleaning pattern and performance evaluation for low pressure waterjet
title_sort program development on cleaning pattern and performance evaluation for low pressure waterjet
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2021-02-01
description Waterjet is a device that cuts or crushes materials using water pressure injected through the nozzle. Especially, Low pressure waterjet is used in stripping and cleaning work. The cleaning patterns of the low pressure waterjet is determined by various design variables, such as the number of nozzles, an angle of nozzles, gear ratio and so on. In order to optimize the cleaning pattern, the optimum waterjet design is required depending on the shape of the target structure. To do this, a large number of waterjet analysis models should be used. This study reduced design time by automating the creation of the desired analysis model with simple changes in design variables, and conducted evaluation of the cleaning patterns using numerical method for the most frequently used cylindrical structures. In addition, it analyzed the effects of changes in design variables and suggested improvements. Moreover, the idea of a module type waterjet was proposed to reduce the cost of waterjet replacement due to usage changes. This study can be used to design the waterjet, which suits a particular purpose.
url https://doi.org/10.1177/1687814020985162
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AT jinseokjang programdevelopmentoncleaningpatternandperformanceevaluationforlowpressurewaterjet
AT kunwookim programdevelopmentoncleaningpatternandperformanceevaluationforlowpressurewaterjet
AT wansukyoo programdevelopmentoncleaningpatternandperformanceevaluationforlowpressurewaterjet
AT jaewooklee programdevelopmentoncleaningpatternandperformanceevaluationforlowpressurewaterjet
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