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Finishing of Ceramics in a Single-Disk Lapping Machine Configuration

机译:单盘研磨机配置中的陶瓷精加工

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摘要

Lapping of plane surfaces is the technology which allows achieving high surface quality. Kinematics of lapping has the main effect on the flatness of active plane of the lapping tools as well as on the quality and flatness of the machined surface. Lapping machines can be used for grinding without the chuck-related problems as encountered in conventional surface grinding. The configuration of a conventional single-disk lapping machine was modified and the rotational velocity of a workpiece holder can be precisely controlled by a stepper motor. Two types of tools were used for experiments on a modified machine. The first tool was equipped with grinding inserts made of resin and synthetic diamond micrograins (grit size 3/2 μm). In the second stage of experiments the single-layer electroplated diamond tool (D107 - grit size 106/90 μm) was applied. Ceramic workpieces (Al_2O_3) were machined on the modified single-disc lapping machine with the use of both tools and with additional loose abrasive. Experimental results of removal rates, technological parameters and kinematical analysis are the subject of the presented paper.
机译:研磨平面是可以实现高表面质量的技术。研磨的运动学对研磨工具的有效平面的平面度以及对加工表面的质量和平面度具有主要影响。可以使用精研机进行研磨,而不会遇到传统表面研磨所遇到的与卡盘相关的问题。修改了传统的单盘研磨机的配置,并且可以通过步进电机精确地控制工件支架的旋转速度。两种类型的工具用于在修改后的机器上进行实验。第一个工具配备了由树脂和合成金刚石微颗粒(粒度为3/2μm)制成的磨削刀片。在实验的第二阶段,使用了单层电镀金刚石工具(D107-粒度106/90μm)。陶瓷工件(Al_2O_3)在改良的单盘研磨机上使用两种工具和额外的疏松磨料进行加工。去除率,工艺参数和运动学分析的实验结果是本文的主题。

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