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Processing and Damping Properties of Sputtered NiTi Thin Films for Tools in Machining Processes

机译:机加工过程中用于工具的溅射NiTi薄膜的加工和阻尼特性

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摘要

Nowadays, many manufacturing processes require the machining of complex forms with a high aspect ratio or cavities. Tools with a long overhang length are a common method to meet these requirements. Typical examples for this are boring bars for bore-turning and the milling with very long cutters. These tools tend to vibrate strongly due to their slender shape. The stress-induced transformation of austenite to martensite and the distinctive hysteresis loop allow the NiTi shape memory alloys (SMA) to absorb vibration energy. This article describes the innovative approach to dampen process vibrations by coating the tool shafts of cutting tools with long overhang with NiTi thin films. It explores how these thin films can be applied on polished tungsten carbide shafts and how their modal parameters are modified by these coatings. In a further step, this knowledge is used to calculate stability charts of corresponding machining processes. The study reported in this article identified the stabilizing effects of coatings with a thickness of 2-4 μm on milling processes. The minimum stability limit was increased by up to 200%.
机译:如今,许多制造过程都需要加工具有高纵横比或腔体的复杂形状。伸出长度较长的工具是满足这些要求的常用方法。典型的例子是用于车削的镗杆以及用非常长的刀具铣削。这些工具由于其细长的形状而倾向于强烈振动。应力引起的奥氏体到马氏体的转变以及独特的磁滞回线使NiTi形状记忆合金(SMA)吸收振动能量。本文介绍了一种创新的方法,该方法通过在带有长悬伸的NiTi薄膜上覆盖切削工具的刀具轴来减轻工艺振动。它探讨了如何将这些薄膜应用到抛光的碳化钨轴上,以及如何通过这些涂层来改变其模态参数。在进一步的步骤中,该知识用于计算相应加工过程的稳定性图表。本文报道的研究确定了厚度为2-4μm的涂层对研磨过程的稳定作用。最小稳定性极限提高了200%。

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