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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Prediction and verification analysis of grinding force in the single grain grinding process of fused silica glass
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Prediction and verification analysis of grinding force in the single grain grinding process of fused silica glass

机译:熔融石英玻璃单颗粒研磨过程中研磨力的预测与验证分析

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摘要

Surface grinding is an effective method in the manufacturing process of silica glass. Study of grinding mechanism of optical glass in the ductile regime has been relatively mature, but the variation law of grinding force during brittle removal is still unclear. In this paper, a theoretical model of grinding force is presented based on fracture mechanics model to predict the influence of machining parameters on grinding force. Finite element analysis (FEA) is utilized to simulate the variation trend of grinding force and principal stress in single grain grinding. The experimental results of grinding force in the processing of single grain grinding are compared with theoretical model. The variation tendency of the FEA simulation and experimental results is in good agreement with the theoretical model. The observation of the surface topography also confirms it on the other hand. This model is reliable to predict the grinding force size and optimize the machining parameters.
机译:表面研磨是二氧化硅玻璃制造过程中的一种有效方法。 光学玻璃在延性制度中的研磨机理的研究相对成熟,但脆性去除期间研磨力的变化律仍不清楚。 本文基于断裂力学模型提出了一种研磨力的理论模型,以预测加工参数对磨力的影响。 有限元分析(FEA)用于模拟单粒研磨中研磨力和主应力的变化趋势。 与理论模型相比,将磨削力磨削磨削力的实验结果与理论模型进行了比较。 FEA模拟和实验结果的变异趋势与理论模型吻合良好。 观察表面形貌也在另一方面确认。 该模型可靠地预测研磨力尺寸并优化加工参数。

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