Study on the effect of dispersed phase particle functional groups on the polishing performance of shear-thickening polishing slurry

抛光 泥浆 增稠 材料科学 粒子(生态学) 粒径 相(物质) 膨胀的 复合材料 剪切(地质) 化学工程 化学 地质学 工程类 高分子科学 海洋学 有机化学
作者
Xu Wang,Xuanda Shao,Kaiyao Zhou,Luguang Guo,Jiahua Wang,Hongyu Chen,Binghai Lyu
出处
期刊:Precision Engineering-journal of The International Societies for Precision Engineering and Nanotechnology [Elsevier BV]
卷期号:94: 290-302 被引量:6
标识
DOI:10.1016/j.precisioneng.2025.03.002
摘要

This paper compares three types of dispersed phases—Phosphate Ester-Bis-Polyhydroxy Polymers, Hydroxypropyl-Bis-Polyhydroxy Phosphate Esters, and General Polyhydroxy Polymer—all of which are produced in large quantities on an industrial scale. The effect of different dispersed phase functional groups on Shear Thickening Polishing performance was investigated. Rheological properties were measured for Shear Thickening Fluids with various dispersed phase configurations , revealing that dispersed phases with hydroxypropyl functional groups exhibited superior rheological properties. The differences in viscosity among the experimental groups were explained using double stacking theory and particle size distribution , derived from the volume fraction of suspended particles. Furthermore, in Shear Thickening Polishing Fluid with different dispersed phase configurations, a new mechanism explaining changes in shear thickening behavior was proposed based on the distinct characteristics of the three dispersed phases. Measurements of polishing force and temperature during the polishing process, combined with SEM image comparisons, showed that dispersions containing phosphate functional groups demonstrated superior temperature resistance. Finally, the polishing performance was validated on YAG crystals, concluding that phosphate ester functional groups give the dispersed phase better temperature resistance for long polishing times, while hydroxypropyl functional groups give the dispersed phase better rheological properties for higher demands on polishing precision.
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