Study on the Effect of Standoff Distance on Processing Performance of Alumina Ceramics in Two Modes of Abrasive Waterjet Turning Patterns

Author:

Liu Dun1,Huang Chuan Zhen1,Wang Jun1ORCID,Zhu Hong Tao1,Yao Peng1,Liu Zeng Wen1

Affiliation:

1. Shandong University

Abstract

Abrasive waterjet (AWJ) turning is an emerging technology, which plays an important role in machining cylindrical parts with the distinct advantages of negligible thermal effects and extremely low cutting force. This paper presents an experimental study of abrasive waterjet turning (AWJT) of Al2O3ceramics. The machining process and performance in terms of the depth of penetration (DOP), surface roughness (Ra) and actual impact angle (β) are discussed to understand the effect of standoff distance (SOD) on the processing performance at two different turning modes. Based on the results of these investigations, there is a significant change ofDOPandRaat differentSODin radial mode turning and the optimalSODof gaining maximumDOPand the minimumRais about 5.5mm.However, theDOPis nearly independent on theSODin offset mode turning. SmallerRaandDOPcan be obtained in offset mode. Furthermore, the results indicate that the roundness error of cylinder parts is probably improved with the properSODinterval in radial mode turning and it is suitable for machining cylinder part with considerably different radial size. The offset mode turning as the next operation after radial mode turning is recommended to process workpiece with excellent roundness. In this way, by understanding the effect ofSODon processing alumina ceramics, the paper establishes a good basis for developing strategies for optimizing processing parameters in order to generate the desired part geometry and achieve better surface quality.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Numerical investigations on the material response of nickel-based superalloys during abrasive waterjet milling;Journal of Manufacturing Processes;2024-06

2. Damage study of fiber-reinforced composites drilled by abrasive waterjet —challenges and opportunities;The International Journal of Advanced Manufacturing Technology;2021-10-28

3. Material removal mechanisms of ceramics turned by abrasive waterjet (AWJ) using a novel approach;Ceramics International;2021-06

4. A user-friendly finite element model for radial mode abrasive waterjet turning;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2021-05-10

5. Experiment on carbon fiber–reinforced plastic cutting by abrasive waterjet with specific emphasis on surface morphology;The International Journal of Advanced Manufacturing Technology;2020-02-13

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