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Single point diamond machining of ferroelectric materials

机译:铁电材料单点金刚石加工

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One of the most important ferroelectric ceramic materials used in a wide range of applications is the lead zirconate titanate solid solution series (PZT). The ability to machine ferroelectrics in a ductile manner and by so doing reduce sub-surface damage, could eliminate the need for subsequent lapping and polishing and thus reduce production costs. Fracture mechanics techniques were used to investigate the localised elastic /plastic behaviour in these materials. The possibility of machining brittle materials using single point diamond turning in a 'ductile mode' has been investigated by many researchers in crecent years and for this study poled and unpoled PZT ceramics were single point diamond turned under different machining conditions and ductile machining has been achieved. X-ray diffraction (XRD) indicates the degree of domain reorientation caused by machining, and it is suggested that the strain generated by re-orientation accounts for brittle damage. Appropriate poring can have a marked effect on the brittle/ductile machining response.
机译:一个在宽范围的应用中使用的最重要的铁电陶瓷材料的是钛酸锆酸铅固溶体系列(PZT)。的能力,以延性方式机铁电体并通过这样做减少子表面损伤,可以消除对后续的研磨和抛光的需求,从而降低生产成本。断裂力学的技术被用来研究这些材料中的局部弹性/塑性行为。使用单点金刚石车削在“韧性模式”加工脆性材料的可能性已经由crecent几年,许多研究人员和这项研究调查了极化和非极化的PZT陶瓷的单点金刚石不同的加工条件下开启和球墨铸铁加工已实现。 X射线衍射(XRD)表示由加工域重新定向的程度,并因此建议通过重新定向产生的应变占脆损。适当波利会对脆/韧加工响应效果显着。

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