Impacts of Traverse Speed and Material Thickness on Abrasive Waterjet Contour Cutting of Austenitic Stainless Steel AISI 304L

Author:

Llanto Jennifer MilaorORCID,Tolouei-Rad Majid,Vafadar AnaORCID,Aamir MuhammadORCID

Abstract

Abrasive water jet machining is a proficient alternative for cutting difficult-to-machine materials with complex geometries, such as austenitic stainless steel 304L (AISI304L). However, due to differences in machining responses for varied material conditions, the abrasive waterjet machining experiences challenges including kerf geometric inaccuracy and low material removal rate. In this study, an abrasive waterjet machining is employed to perform contour cutting of different profiles to investigate the impacts of traverse speed and material thickness in achieving lower kerf taper angle and higher material removal rate. Based on experimental investigation, a trend of decreasing the level of traverse speed and material thickness that results in minimum kerf taper angle values of 0.825° for machining curvature profile and 0.916° for line profiles has been observed. In addition, higher traverse speed and material thickness achieved higher material removal rate in cutting different curvature radii and lengths in line profiles with obtained values of 769.50 mm3/min and 751.5 mm3/min, accordingly. The analysis of variance revealed that material thickness had a significant impact on kerf taper angle and material removal rate, contributing within the range of 69–91% and 62–69%, respectively. In contrast, traverse speed was the least factor measuring within the range of 5–18% for kerf taper angle and 27–36% for material removal rate.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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1. Integrated error modeling for abrasive waterjet cutting at various nozzle tilt angle;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2024-09-10

2. Investigation of the influence of the AWJ-specific energy on the cutting kerf profile on aluminium 6082;The International Journal of Advanced Manufacturing Technology;2023-12-21

3. OPTIMIZATION OF CUT QUALITY FOR AWJ PROCESSING OF A STEEL ALLOY;International Journal of Modern Manufacturing Technologies;2023-12-20

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5. Performance Analysis of Cutting Parameters on 304 Stainless Steels Using Abrasive Water Jet Technique;Annales de Chimie - Science des Matériaux;2023-02-28

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