Performance Study of LaPO4-Y2O3 Composite Fabricated by Sol-Gel Process Using Abrasive Waterjet Machining

M. Uthayakumar, B. Karnan, Adam Słota, J. Zajac, J. Davim
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引用次数: 2

Abstract

This chapter presents an effective approach to assess the abrasive water jet machining of lanthanum phosphate reinforced with yttrium composite. A novel composite is prepared with the mixture of lanthanum phosphate sol and yttrium nitrate hexalate with a ratio of 80/20 by aqueous sol-gel process. Silicon carbide of 80 mesh size is used as abrasive. The effects of each input parameter of abrasive water jet machining are studied with an objective to improve the material removal rate with reduced kerf angle and surface roughness. The observations show that the jet pressure contributes by 77.6% and 45.15% in determining material removal rate and kerf angle, respectively. Through analysis of variance, an equal contribution of jet pressure (38.18%) and traverse speed (40.97%) on surface roughness is recorded. Microscopic examination shows the internal stress developed by silicon carbide which tends to get plastic deformation over the cut surface.
磨料水射流溶胶-凝胶法制备LaPO4-Y2O3复合材料的性能研究
本章提出了一种有效的方法来评估磨料水射流加工钇复合材料增强磷酸镧的性能。将磷酸镧溶胶与六酸硝酸钇按80/20的比例混合,采用水溶胶-凝胶法制备了新型复合材料。80目尺寸的碳化硅用作磨料。研究了磨料水射流加工中各输入参数对材料去除率的影响,以减小切削角和表面粗糙度来提高材料去除率。结果表明,射流压力对材料去除率和切口角的影响分别为77.6%和45.15%。通过方差分析,射流压力(38.18%)和穿越速度(40.97%)对表面粗糙度的贡献相等。显微检查显示碳化硅产生的内应力使切割表面产生塑性变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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