论文标题

选择性激光融化的Ni-Rich Niti的机械评估:压缩,张力和扭转

Mechanical Evaluation Of Selective Laser Melted Ni-Rich Niti: Compression, Tension, And Torsion

论文作者

Baghbaderani, Keyvan Safaei, Nematollahi, Mohammadreza, Bayatimalayeri, Parisa, Dabbaghi, Hediyeh, Jahadakbar, Ahmadreza, Elahinia, Mohammad

论文摘要

超弹性和形状记忆效应的两种独特的行为使形状记忆合金,例如NITI,这是一种有趣的合金,用于不同的应用。最近,增材制造(AM)作为制造NITI的强大工具已成为制造复杂几何形状的感兴趣。选择性激光熔化(SLM)是一种AM方法,它不仅提供了制造复杂3D形状的灵活性,而且还可以通过更改过程参数来定制零件的热机械性能。 NITI的非二烯微观结构以及NITI的不对称机械行为,使研究在不同的负载条件下SLM NITI零件的特性非常重要。在这项研究中,通过SLM技术将Ni50.8ti(AT。%)粉末用于制造立方体,狗骨和管。通过差异扫描量热法(DSC)方法测量样品的转化温度(TT),并讨论了TTS的变化。在压缩,张力和扭转下,机械测试了三个优惠券。在机械测试期间,采用了原位数字图像相关(DIC)来测量和监测样品的应变场。应变分布显示所有三个样品的局部应变。计算等效应力/应变以比较压缩,拉伸和扭转响应的结果,并显示并讨论了显着的不对称行为。

Two unique behaviors of superelasticity and shape memory effect have made shape memory alloy such as NiTi, an interesting alloy for different applications. Recently, additive manufacturing (AM) as a powerful tool for fabricating NiTi has become of interest to make complex geometries. Selective laser melting (SLM) is an AM method that not only provides flexibility to make complex 3D shapes but also it can be possible to tailor the thermomechanical properties of the parts just by changing the process parameters. The non-homogeneous microstructure of as-fabricated parts as well as asymmetric mechanical behavior of NiTi, make it important to study the properties of SLM NiTi parts under different loading condition. In this study, Ni50.8Ti (at. %) powder was utilized to fabricate cube, dog-bone, and tube by SLM technique. The transformation temperatures (TTs) of samples were measured by the differential scanning calorimetry (DSC) method and the variation of TTs was discussed. Three coupons were tested mechanically under compression, tension, and torsion. In-situ digital image correlation (DIC) was employed to measure and monitor the strain field of samples during the mechanical tests. The strain distribution showed localized strain for all three samples. The equivalent stress/strain was calculated to compare the result of compressive, tensile, and torsional responses and the significant asymmetric behavior was shown and discussed.

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