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Shape memory characteristics of rapidly solidified Ti_(50)Ni_(15)Cu_(35) alloy ribbons

机译:快速凝固的Ti_(50)Ni_(15)Cu_(35)合金薄带的形状记忆特性

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The shape memory alloy ribbons of Ti_(50)Ni_(15)Cu_(35) had been fabricated by two rapid solidification processes of melt spinner and melt overflow to achieve different rapidly solidified structures. The ribbon fabricated by the melt spinner was an amorphous and any martensitic transformations occurred in the crystallized ribbon due to the formation of an equilibrium intermetallic phase (Cu_4Ti_3). However, the microstructure of the ribbon prepared by the melt overflow exhibited columnar grains normal to the ribbon surface. X-ray diffraction analysis showed that one-step martensitic transformation of B2–B19 occurred in the ribbon. According to the DSC analysis, it was known that the martensitic transformation temperature of B2/B19 was 71.2℃. During thermal cyclic deformation with the applied stress of 120 MPa, transformation hysteresis and elongation associated with the B2–B19 transformation were observed to be 4.6℃ and 1.68%, respectively, in the Ti_(50)Ni_(15)Cu_(35) alloy. It is considered that these shape memory characteristics were ascribed to solid–solution strengthening by the supersaturation of excess Cu content.
机译:Ti_(50)Ni_(15)Cu_(35)的形状记忆合金薄带是通过熔体旋转器和熔体溢流这两个快速凝固过程制成的,以实现不同的快速凝固结构。由熔体旋转器制造的薄带是非晶态的,由于形成了平衡的金属间相(Cu_4Ti_3),在结晶的薄带中发生了任何马氏体转变。然而,由熔体溢流制备的薄带的微观结构显示出垂直于薄带表面的柱状晶粒。 X射线衍射分析表明,B2–B19的一步马氏体转变发生在薄带中。通过DSC分析,可知B2 / B19的马氏体转变温度为71.2℃。在Ti_(50)Ni_(15)Cu_(35)合金的热循环变形中,施加120 MPa的应力时,与B2-B19相变有关的相变滞后和伸长率分别为4.6℃和1.68%。 。可以认为,这些形状记忆特性归因于过量Cu含量的过饱和固溶强化。

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