Evaluation of the Depth and Width of Cuts after Controlled-Depth Abrasive Water Jet Machining Using Low Pressure

Author:

Botko Frantisek1ORCID,Botkova Dominika1,Gelatko Matus1ORCID,Vandzura Radoslav1ORCID,Klichova Dagmar2ORCID

Affiliation:

1. Faculty of Manufacturing Technologies, Technical University of Košice with Seat in Prešov, 080 01 Prešov, Slovakia

2. The Czech Academy of Sciences, Institute of Geonics, 708 00 Ostrava, Czech Republic

Abstract

The presented paper is focused on the evaluation of material removal during machining via an abrasive water jet with a controlled depth of cut. In the introductory parts of the work, a theoretical analysis of water jet technology and an analysis of the current state of the problem are presented. The experimental part of the work is devoted to testing the effects of technological parameters on material removal from the point of view of the maximum erosion depth and volume loss of material during machining with a low water pressure of 50 MPa. The tested material was a Ti 6Al 4V titanium alloy. The experiments were carried out by changing the traverse speed of the cutting head, the mass flow of the abrasive and the angle of inclination of the cutting head, according to the DoE 33 experiment plan. The obtained values were evaluated using the method of variance (ANOVA) and regression analysis. Furthermore, the values of the width of the erosion track and the maximum and minimum erosion effects for both tested materials were evaluated.

Funder

Slovak Research and Development Agency

Ministry of Education, Science, Research and Sport of the Slovak Republic

ERDF

Publisher

MDPI AG

Subject

General Materials Science

Reference33 articles.

1. Integral modeling of abrasive waterjet micro-machining process;Kong;Wear,2021

2. Hashish, M. (2003, January 17–19). Inside AWJ nozzles. Proceedings of the 12th WJTA Conference 2003, Houston, TX, USA.

3. Hashish, M. (1984, January 26–28). On the modeling of abrasive-waterjet cutting. Proceedings of the 7th International Symposium on Jet Cutting Technology, Ottawa, ON, Canada.

4. Modeling of abrasive water jet machining process;Puthumana;IJMECH,2015

5. Botko, F. (2006). Mathematical Modeling of Macromechanisms during Aluminum Removal by High-Speed Hydroabrasive Jet. [Master´s Thesis, Technical University of Kosice].

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