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Surface integrity evolution from main cut to finish trim cut in W-EDM of shape memory alloy

机译:从主切割完成表面完整性进化,以完成形状记忆合金的W-EDM切割切割

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Shape memory alloys such as Nitinol are widely used in medical, aerospace, actuator, and machine tool industries. However, Nitinol is a very difficult-to-machine material due to the superelasticity, high ductility, and severe strain-hardening. This study explores the process capability of W-EDM (Dl-water based dielectric) in machining Nitinol Ni_(50.8)Ti_(49.2) by one main cut (MC) followed by four trim cuts (TC). Experimental results show that the 6-sigma distributions of Ra are very different between MC and finish TC. Thick white layers (2-8 μm) with microcracks in MC and very thin white layers (0-2 μm) free of those defects in finish TC can be observed. However, microcracks would not propagate into the heat affected zone (HAZ) below the white layer. The white layer by TC is about 50% higher than that by MC. In addition, Ni is the dominant element for the measured microhardness.
机译:形状记忆合金,如镍钛合金广泛用于医疗,航空航天,执行器和机床行业。然而,由于超弹性,高延展性和严重的应变硬化,镍钛诺是一种非常难以充气的材料。该研究探讨了W-EDM(基于DL水 - 水基电介质)在用一个主切割(MC)的镍钛烯醇Ni_(50.8)Ti_(49.2)中的过程能力,然后进行四个剪裁(Tc)。实验结果表明,MC与完成TC的RA的6秒形分布非常不同。可以观察到厚的白色层(2-8μm),在MC和非常薄的白色层(0-2μm)中的微裂纹,可以在完成TC中没有这些缺陷。然而,微裂纹不会传播到白色层下方的热影响区(HAZ)中。 TC的白色层比MC高约50%。此外,Ni是测量的微硬度的主要元素。

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