首页> 外文期刊>Journal of Materials Processing Technology >Challenges in using waterjet machining of NiTi shape memory alloys: An analysis of controlled-depth milling
【24h】

Challenges in using waterjet machining of NiTi shape memory alloys: An analysis of controlled-depth milling

机译:NiTi形状记忆合金水刀加工的挑战:可控深度铣削分析

获取原文
获取原文并翻译 | 示例
       

摘要

The nickel-titanium shape memory alloys (NiTi SMAs) have a very high potential for a wide variety of applications thanks to their unique mechanical properties: shape memory effect and pseudoelasticity. However, they have been proved to be more challenging to cut than other advanced engineering materials because of their high ductility, crystal-oriented and stress-oriented mechanical properties. In stark contrast to the extensive work on the metallurgical/microstructural properties of the SMA, there is limited research regarding non-conventional machining of this group of special alloys. Waterjet technology is well-known for cutting advanced difficult-to-cut materials owing to its benefits of reduced mechanical and thermal damages to workpiece surfaces. This paper reports for the first time the use of waterjet technology to mill the functional shape memory alloys and thus to open new avenues for the utilisation of these alloys for advanced engineering applications (e.g. aerospace, medical fields). However, when it comes to NiTi SMAs (characterised by low temperature phase martensite and parent phase austenite), the insignificant waterjet temperatures become critical to the material behaviour as their crystal structures are sensitive to the variations in both temperature and mechanical compression. This makes the processing (particularly waterjet controlled-depth milling) a real challenging task. By taking into consideration both of the waterjet temperatures at different material removal conditions (i.e. with and without abrasives in the focussing tube) and the transformation temperatures of NiTi, three different working zones (100% martensite; mix of austenite and martensite; 100% austenite) under waterjet process have been proposed. In addition, a combined phase and stress-strain diagram for shape memory effect in martensitic phase and pseudoelasticity in austenite phase of NiTi has been suggested. In this paper, Ni_(49.8)Ti_(50.2) shape memory alloy was considered in which its transition temperature range is overlapped with the waterjet operating temperature; two approaches of waterjet processes (plain and abrasive waterjet milling) were proposed so as to investigate the mechanical and metallurgical effect provoked by the relationship between operating temperatures and transformation temperatures. It was found that abrasive waterjetting is more viable than plain waterjetting for controlled-depth milling of NiTi shape memory alloys.
机译:镍钛形状记忆合金(NiTi SMA)具有独特的机械性能:形状记忆效应和拟弹性,因此在各种应用中具有很高的潜力。但是,事实证明,由于它们具有高延展性,晶体取向和应力取向的机械性能,因此与其他高级工程材料相比,其切割难度更大。与对SMA的冶金/微观结构特性的广泛研究形成鲜明对比的是,关于这组特殊合金的非常规加工的研究有限。由于减少了对工件表面的机械和热损伤,水刀技术以切割高级难切割材料而闻名。本文首次报道了使用水刀技术来研磨功能性形状记忆合金,从而为在高级工程应用(例如航空航天,医疗领域)中利用这些合金开辟了新途径。但是,当涉及到NiTi SMA(以低温相马氏体和母相奥氏体为特征)时,微不足道的喷水温度对材料的性能至关重要,因为它们的晶体结构对温度和机械压缩的变化都敏感。这使得加工(尤其是水刀控制深度铣削)成为一项真正的挑战性任务。通过考虑不同材料去除条件(即聚焦管中有无磨料)下的水刀温度和NiTi的转变温度,可以得出三个不同的工作区域(100%马氏体;奥氏体和马氏体的混合物; 100%奥氏体) )已提出在水刀过程中。此外,已经提出了相图和应力-应变图,用于NiTi的马氏体相形状记忆效应和奥氏体相的拟弹性效应。本文考虑了Ni_(49.8)Ti_(50.2)形状记忆合金,其转变温度范围与水刀的工作温度重叠。为了研究由工作温度和相变温度之间的关系引起的机械和冶金效果,提出了两种水刀工艺方法(普通水刀和磨料水刀铣削)。已发现,对于NiTi形状记忆合金的可控深度铣削,磨料水刀比普通水刀更可行。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号