牙科修复体用钴铬合金微铣削中的力、形状偏差和表面粗糙度

F. Elsner-Dörge, O. Riemer, Melanie Willert, A. Meier
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引用次数: 0

摘要

除选择性激光熔化外,微铣削也常用于制造义齿。这些假体的应用需要坚硬的材料,如钴铬合金或陶瓷。切削过程受过程和工件结构之间的静态和动态相互作用的支配。这些相互作用影响了工作效果,尤其是形状精度。铣刀的偏转是其中一个影响因素,对铣刀的加工有重要的影响。然而,通过优化制造策略、调整工艺参数或优化刀具路径,可以最大限度地减少偏转,从而提高最终产品的质量。本文提出的工作旨在建立刀具偏转和在CoCr合金中定义几何形状的微铣削过程中产生的形式偏差之间的联系。这是通过测量在加工具有不同进给速率和径向进给的定义测试几何形状时的主动力以及随后对结果形状的评估来实现的。此外,分析了工件几何形状对力和形状偏差的影响,以作为未来优化步骤的基础。为了量化表面质量,采用白光干涉法测量了表面粗糙度Sa和Sq,推导了进给速率vf和径向进给ae对表面粗糙度的影响。
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Forces, form deviations and surface roughness in micro-milling of CoCr alloys for dental prostheses
Micro-milling, besides selective laser melting, is commonly used for the manufacture of dental prostheses. Demands to the application of these prostheses require hard and tough materials like cobalt-chrome alloys or ceramics. The cutting process is governed by static as well as dynamic interactions between the process and the structure of the workpiece. These interactions deteriorate the work result, especially the shape accuracy. The deflection of the milling tool is one effect, which has a significant influence. However, the deflection can be minimised by optimising the manufacturing strategy, by an adjustment of the process parameters or by optimising the tool path, which leads to an increased quality of the final product. The work presented in this paper aims to establish a connection between tool deflection and resulting form deviations during micro-milling of defined geometries in CoCr alloys. This is achieved by measuring the active forces while machining an defined test geometry with different feed rates and radial infeeds and a subsequent evaluation of the resulting form. Furthermore, the influence of the workpiece geometry on the forces and form deviations is analysed to serve as a foundation for future optimisation steps. In order to quantify the surface quality, white light interferometry is applied to measure the surface roughness Sa and Sq and the influence of feed rate vf and radial infeed ae on the surface roughness is derived.
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来源期刊
International Journal of Nanomanufacturing
International Journal of Nanomanufacturing Engineering-Industrial and Manufacturing Engineering
CiteScore
0.60
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