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Ultra-precision grinding of PZT ceramics--Surface integrity control and tooling design

机译:PZT陶瓷的超精密研磨-表面完整性控制和模具设计

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摘要

A comprehensive statistical analysis of the factors controlling surface quality and form in ultra-precision grinding of polycrystalline lead zirconate titanate (PZT) ceramics has been conducted. The work focuses on practical grinding conditions and it includes an assessment of the interactions that exist between the method of material removal and the machine design. In the first phase of experimentation, defects including porosity and the fractural damage induced in the subsurface area were investigated. Machining trials were then conducted which were used to highlight the significant technical factors or combinations of technical factors that influence surface roughness, surface flatness and textural damage. A model for the systematic material removal mechanism which suggests that a relatively large depth of cut and ‘soft contact’ can be used to achieve improved surface integrity is proposed. In order to verify the suggested model, a series of design modifications to the tooling structure were made and the nature of the contact at the material removal interface was studied. Dramatic improvements in surface quality were achieved by incorporating a compliant polymer layer into the vacuum chuck used to hold the ceramics during grinding.
机译:进行了多晶钛酸锆钛酸铅(PZT)陶瓷超精密磨削中控制表面质量和形状的因素的综合统计分析。该工作着重于实际的磨削条件,其中包括对材料去除方法与机器设计之间存在的相互作用的评估。在实验的第一阶段,研究了包括孔隙率和在地下区域引起的断裂破坏在内的缺陷。然后进行机加工试验,以强调影响表面粗糙度,表面平整度和纹理损伤的重要技术因素或技术因素的组合。提出了一种系统的材料去除机制的模型,该模型表明可以使用较大的切削深度和“软接触”来实现改善的表面完整性。为了验证建议的模型,对模具结构进行了一系列设计修改,并研究了材料去除界面处的接触特性。通过将顺应性聚合物层并入用于在研磨过程中固定陶瓷的真空吸盘中,可以实现表面质量的显着改善。

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