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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A study of Ti_(50-x/2)Ni_(40-x/2)Cu_(10)Cr_x (x = 0 - 1 at. percent) shape memory alloys
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A study of Ti_(50-x/2)Ni_(40-x/2)Cu_(10)Cr_x (x = 0 - 1 at. percent) shape memory alloys

机译:Ti_(50-x / 2)Ni_(40-x / 2)Cu_(10)Cr_x(x = 0-1 at。%)形状记忆合金的研究

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摘要

The martensitic transformation, shape memory (SME), superelasticity (SE) and cold-rolling effect of Ti_(50-x/2)Ni_(40-x/2)Cu_(10)Cr_x (x = 0, 0.2, 0.6,1.0) alloys have been studied. Experimental results reveal that the Ti_(50-x/2)Ni_(40-x/2)Cu_(10)Cr_x (x = 0,0.2,0.6,1.0) alloys exhibit a B2 <-> B19 <-> B19' two-stage martensitic transformation. Their transformation temperatures are decreased due to the Cr addition, but the specimen hardness and shape recovery increase with increasing Cr content. The Ti_(50-x/2)Ni_(40-x/2)Cu_(10)Cr_x alloys can also exhibit an excellent superelasticity. The sigma_(SIM) stress increases with raising test temperature, but the sigma_(SIM) stress and stress hysteresis decrease with increasing deformation cycles. For the cold-rolled Ti_(49.7)Ni_(39.7)Cu_(10)Cr_(0.6) specimen, the M_1 (A_1) temperatures are found to decrease with increasing amount of cold rolling and the M_2 (A_2) peaks are not even observed in the DSC measurement. More B2 parent phase can be observed after cold rolling at room temperature. This phenomenon is ascribed to the formation of SIP B2 phase and/or the depression of forward B2 -> B19 transformation due to the dislocations introduced during rolling process. Meanwhile, the superelasticity curves show that the stress hysteresis increases with increasing amount of cold rolling. The superelasticity curves show that the stress hysteresis increases with increasing amount of cold rolling.
机译:Ti_(50-x / 2)Ni_(40-x / 2)Cu_(10)Cr_x的马氏体相变,形状记忆(SME),超弹性(SE)和冷轧效果(x = 0,0.2,0.6, 1.0)已经研究了合金。实验结果表明,Ti_(50-x / 2)Ni_(40-x / 2)Cu_(10)Cr_x(x = 0,0.2,0.6,1.0)合金表现出B2 <-> B19 <-> B19'两阶段马氏体转变。由于添加了铬,它们的相变温度降低了,但是随着铬含量的增加,样品的硬度和形状恢复性也增加了。 Ti_(50-x / 2)Ni_(40-x / 2)Cu_(10)Cr_x合金也可以表现出优异的超弹性。随着测试温度的升高,sigma_(SIM)应力增加,但是随着变形周期的增加,sigma_(SIM)应力和应力滞后减小。对于冷轧的Ti_(49.7)Ni_(39.7)Cu_(10)Cr_(0.6)试样,发现M_1(A_1)温度随着冷轧量的增加而降低,甚至没有观察到M_2(A_2)峰在DSC测量中。在室温下冷轧后可以观察到更多的B2母相。这种现象归因于SIP B2相的形成和/或由于轧制过程中引入的位错而导致正向B2-> B19转变的降低。同时,超弹性曲线表明,应力滞后随着冷轧量的增加而增加。超弹性曲线表明,应力滞后随着冷轧量的增加而增加。

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