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Surface roughness model in experiment of grinding engineering glass-ceramics

机译:工程玻璃陶瓷磨削实验中的表面粗糙度模型

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The grinding experiment of mica glass-ceramics was conducted on the GM-D300-type surface grinder. The article investigated the influence of surface roughness on grinding wheel velocity, table feed speed, and grinding depth. The results indicated that surface roughness decreased with the increasing grinding wheel velocity and grinding depth in overall trend, and decreased with increasing table feed speed. Moreover, a modified surface roughness model, which introduced the maximum undeformed chip thickness, was developed based on Snoeys' empirical formula. The modified model was in good agreement with the experimental data in most cases. The disparity between experimental data and predicted results of surface roughness was attributed to the organization of pores randomly distributed within the mica glass-ceramics.
机译:云母玻璃陶瓷的磨削实验是在GM-D300型平面磨床上进行的。本文研究了表面粗糙度对砂轮速度,工作台进给速度和磨削深度的影响。结果表明,表面粗糙度总体上随着砂轮速度和磨削深度的增加而减小,并随着工作台进给速度的增加而减小。此外,基于Snoeys的经验公式,开发了一种修正的表面粗糙度模型,该模型引入了最大的未变形切屑厚度。在大多数情况下,修改后的模型与实验数据非常吻合。实验数据与表面粗糙度预测结果之间的差异是由于云母玻璃陶瓷中随机分布的孔组织所致。

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