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首页> 外文期刊>International Journal of Mechanical Sciences >On the predictive modelling of machined surface topography in abrasive air jet polishing of quartz glass
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On the predictive modelling of machined surface topography in abrasive air jet polishing of quartz glass

机译:在石英玻璃磨料空气喷射抛光中加工表面形貌的预测模型

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Abrasive Air Jet Polishing (AAJP) process can be considered as one of the most promising ultra-high-precision finishing methods of quartz glass products due to the superior machined surface integrity, and the high machining feasibility for free-form surfaces. Although many academic and engineering efforts have been paid so far to AAJP process from the theoretical, numerical and experimental aspects, most of the available studies have considered neither (i) the stochastic nature of the abrasive sizes nor (ii) the elastic springback after the impacting abrasives bounced back from the workpiece surface. To fill this gap, this paper proposes the predictive model of the machined surface topography in the AAJP process of quartz glass. A series of experimental trials are performed as well which to a large extent proved the model feasibility and accuracy, and, more importantly, the necessity to consider the normally-distributed abrasive sizes, the stochastic abrasive distribution within the spray airflow, and the elastic workpiece deformation recovery after the AAJP process. Both the experimental and theoretical results also conclude that the small-sized abrasives and the low jet airflow pressure were more effective to achieve the smooth surfaces. The proposed model in this work is expected to be not only helpful to provide the theoretical foundation to study more in-depth mechanism of the AAJP process of brittle materials, but also meaningful to guide the industrial manufacturing in terms of machining parameter optimisation and machined surface quality prediction.
机译:磨料空气喷射抛光(AAJP)工艺可被认为是石英玻璃产品的最有希望的超高精度整理方法之一,由于卓越的加工表面完整性,以及用于自由形状表面的高加工可行性。虽然从理论,数值和实验方面向AAJP进程支付了许多学术和工程努力,但大多数可用研究都认为(i)磨料尺寸的随机性质,也不认为(ii)的弹性回弹施力磨料从工件表面反弹。为了填补这一差距,本文提出了石英玻璃AAJP过程中加工表面形貌的预测模型。在很大程度上进行了一系列实验试验,在很大程度上证明了模型可行性和准确性,更重要的是,需要考虑正常分布的磨料尺寸,喷雾气流内的随机磨料分布以及弹性工件AAJP过程后的变形恢复。实验和理论结果均得出结论,小尺寸的磨料和低喷射气流压力更有效地实现光滑表面。这项工作中的拟议模型预计不仅有助于提供理论基础,以便研究脆性材料的AAJP过程的更深入机制,也有意义地指导工业制造,在加工参数优化和加工表面方面质量预测。

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