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A Study on Micro-Machining Technology for the Machining of NiTi: Five-Axis Micro-Milling and Micro Deep-Hole Drilling

机译:NiTi加工的微加工技术研究:五轴微铣削和微深孔钻削

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摘要

Micro-sized applications are gaining more and more relevance for NiTi-based shape memory alloys (SMA). Different types of micro-machining offer unique possibilities for the manufacturing of NiTi components. The advantage of machining is the low thermal influence on the workpiece. This is important, because the phase transformation temperatures of NiTi SMAs can be changed and the components may need extensive post manufacturing. The article offers a simulation-based approach to optimize five-axis micro-milling processes with respect to the special material properties of NiTi SMA. Especially, the influence of the various tool inclination angles is considered for introducing an intelligent tool inclination optimization algorithm. Furthermore, aspects of micro deep-hole drilling of SMAs are discussed. Tools with diameters as small as 0.5 mm are used. The possible length-to-diameter ratio reaches up to 50. This process offers new possibilities in the manufacturing of microstents. The study concentrates on the influence of the cutting speed, the feed and the tool design on the tool wear and the quality of the drilled holes.
机译:微型应用对于基于NiTi的形状记忆合金(SMA)越来越重要。不同类型的微加工为制造NiTi组件提供了独特的可能性。加工的优点是对工件的热影响小。这很重要,因为可以更改NiTi SMA的相变温度,并且组件可能需要大量的后期制造。本文针对NiTi SMA的特殊材料特性,提供了一种基于模拟的方法来优化五轴微铣削工艺。尤其是,在引入智能刀具倾斜度优化算法时,考虑了各种刀具倾斜角的影响。此外,讨论了SMA的微深孔钻探方面。使用直径小至0.5 mm的工具。可能的长径比高达50。此过程为微支架的制造提供了新的可能性。研究集中于切削速度,进给和刀具设计对刀具磨损和钻孔质量的影响。

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