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Corrective polishing of complex ceramics geometries

机译:复杂陶瓷几何形状的校正抛光

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摘要

High quality surfaces in terms of low roughness and high form accuracy are achieved by polishing as the essential finishing step. Polishing of brittle materials is an established process in science and industry. However, the machining is limited to planar or spherical geometries. The objective of this paper is to present first results to overcome this limitations indicated by processing advanced ceramics. In order to finish complex surfaces, a technological transfer of known parameters and conditions of 2-dimensional to zonal polishing is undertaken. To shorten the development of stable and reproducible processes the knowledge and understanding of the complex interactions of the 2-dimensional process is used. The applicability of these conditions is evaluated by extensive research on the zonal polishing setup. The used machine tool is capable of adjusting significant process factors, such as free controlled force and heterodyne velocity profiles. By use of a small tool the material removal is only affecting a zonal area of a complex surface. Based on preliminary investigations concerning the material removal function the scientific insight on zonal processes is extended. This first approach will be used for corrective polishing of zonal form deviations.
机译:通过抛光作为基本的精加工步骤,可以获得低粗糙度和高形状精度方面的高质量表面。脆性材料的抛光是科学和工业中的既定过程。但是,加工仅限于平面或球形几何形状。本文的目的是提出克服因加工高级陶瓷而出现的这种局限性的初步结果。为了完成复杂的表面,进行了将二维的已知参数和条件的技术转移到区域抛光的技术转移。为了缩短稳定和可重复过程的开发,使用了对二维过程复杂相互作用的知识和理解。这些条件的适用性通过对区域抛光装置的广泛研究来评估。所使用的机床能够调节重要的过程因素,例如自由控制力和外差速度曲线。通过使用小型工具,材料去除仅影响复杂表面的区域区域。基于有关材料去除功能的初步研究,扩展了对分区过程的科学认识。第一种方法将用于修正抛光带状偏差。

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