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Optimization of Cutting-Edge Truncation in Ductile-Mode Grinding of Optical Glass

机译:光学玻璃延性磨削中的截断优化

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摘要

The effect of cutting-edge truncation on the grinding mechanism of quartz glass as a hard and brittle material was investigated. From computer-aided grinding simulations and experiments on surface plunge grinding it was found that cutting-edge truncation decreases the ground-surface roughness and the maximum grain depth of cut; however, the maximum grain depth of cut approaches a constant value depending on the grinding wheel specifications. The alternative means of making the maximum grain depth of cut much smaller than this constant value is to increase the speed ratio. Cutting-edge truncation should be terminated at the optimum truncation depth to avoid the high grinding forces resulting from the flattening of cutting edges.
机译:研究了尖端截断对作为坚硬和脆性材料的石英玻璃磨削机理的影响。通过计算机辅助的磨削模拟和表面切入磨削的实验,发现尖端的截断减小了磨削的表面粗糙度和最大晶粒深度。但是,根据砂轮规格,最大切削深度接近恒定值。使最大切削深度远小于该恒定值的另一种方法是提高速比。切削刃的截断应在最佳截断深度处终止,以避免由于切削刃变平而产生的高磨削力。

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