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A Comparative Study on White Layer Properties by Laser Cutting vs. Electrical Discharge Machining of Nitinol Shape Memory Alloy

机译:镍钛烯酚形状记忆合金激光切割与电气放电加工的白色层性能对比研究

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Nitinol shape memory alloys (SMA) are widely used in biomedical and aerospace applications because of its outstanding properties such as superelasticity, shape memory, and biocompatibility. Conventional mechanical cutting of Nitinol is very challenging due to rapid tool wear and large burr formation. Laser cutting and electrical discharge machining (EDM) are often used to manufacture Nitinol SMA parts. However, the intensive heat flux in laser cutting and EDM induces thermal damage such as white layer (recast layer) and heat affected zone (HAZ). White layer is formed due to the rapid re-solidification of the molten material in both laser cutting and EDM. However, the properties of white layer from the two very different processes could be very different. Very little work has been done to differentiate their potential properties. This work provides a comparative study on the properties of white layer generated by laser cutting vs. EDM. Surface topography was analyzed by scanning electron microscope (SEM). The grain size and orientation were studied by electron backscatter diffraction (EBSD). Nanoindentation was used to investigate the hardness of the white layer. The elemental contamination was analyzed using energy dispersive X-ray spectroscopy (EDS). It was found that the nature of the white layer by laser cutting and EDM is significantly different. The white layer from laser cutting is more uniformly distributed on the surface than the EDMed one. Moreover, nanohardness of the white layer in the laser cut samples is lower than the bulk material, while the EDMed white layer has higher hardness than the bulk. This could be attributed to the different quenching rate and alloying hardening in EDM, which is confirmed by the EDS analysis. In laser cutting, no elemental contamination was detected.
机译:镍钛烯醇形状记忆合金(SMA)广泛应用于生物医学和航空航天应用,因为其优异的性质如超弹性,形状记忆和生物相容性。由于快速的工具磨损和大毛刺形成,镍钛诺的常规机械切割非常具有挑战性。激光切割和电气放电加工(EDM)通常用于制造镍钛合金SMA零件。然而,激光切割和EDM中的密集热通量诱导热损坏,例如白层(重塑层)和热影响区域(HAZ)。由于激光切割和EDM中的熔融材料的快速凝固,形成白色层。然而,来自两个非常不同的过程的白色层的性质可能非常不同。已经做了很少的工作来区分他们的潜在财产。这项工作提供了激光切割与EDM产生的白色层性质的比较研究。通过扫描电子显微镜(SEM)分析表面形貌。通过电子反向散射衍射(EBSD)研究了晶粒尺寸和取向。纳米indentation用于研究白层的硬度。使用能量分散X射线光谱(EDS)分析元素污染。发现通过激光切割和EDM的白色层的性质显着不同。来自激光切割的白色层更均匀地分布在表面上的表面比Edmed One上。此外,激光切割样品中的白色层的纳米率低于散装材料,而红斑的白色层的硬度高于块状。这可能归因于EDM中的不同猝灭率和合金化硬化,其通过EDS分析证实。在激光切割中,未检测到元素污染。

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