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EFFECT OF CONSTRAINED GROOVE PRESSING ON MECHANICAL PROPERTIES OF NITINOL ALLOY

机译:凹槽压力对镍钛合金力学性能的影响

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Nitinol shape memory alloy is well known for its shape memory effect and super elastic effect. In the present work, the improvement of mechanical properties of nitinol alloy like yield strength, ultimate tensile strength and micro-hardness is discussed along with the study of evolution of micro-structure after every pass to extend the applications of shape memory alloys into high strength application areas. Severe plastic deformation processes are usually adopted for producing fine grain structures which improve the mechanical properties of a material. One such severe deformation process is constrained groove pressing, which is considered as one of the best severe plastic deformation techniques for sheet metals. The results of constrained groove pressing process on nitinol alloy show that the yield strength and the ultimate tensile strength have increased by about 3.6 times 2.5 times respectively, with an increment of 50% and 74% in micro-hardness after 1st pass of constrained groove pressing and 2nd pass of constrained groove pressing respectively. Microstructure shows increase in martensitic phase after constrained groove pressing processing. Increasing in twinning and grain boundary density can be observed in constrained groove pressing processed nitinol, which are the reasons for the tremendous increase in the strength of the alloy. Thus, the constrained groove pressing process on nitinol alloy can increase its range of application for high strength requirements.
机译:镍钛诺形状记忆合金以其形状记忆效应和超弹性效应而闻名。在目前的工作中,讨论了镍钛诺合金力学性能的改善,如屈服强度,极限抗拉强度和显微硬度,并研究了每次通过后微观结构的演变,以将形状记忆合金的应用扩展到高强度。应用领域。通常采用严重的塑性变形工艺来生产细晶粒结构,从而改善材料的机械性能。一种这样的严重变形过程是受约束的凹槽压制,这被认为是钣金件最好的严重塑性变形技术之一。在镍钛合金上进行约束沟槽压制工艺的结果表明,屈服强度和极限抗拉强度分别提高了约3.6倍和2.5倍,约束沟槽压制第一遍后显微硬度提高了50%和74%。约束凹槽压制的第二遍和第二遍。在受约束的槽压加工之后,显微组织显示出马氏体相的增加。在受约束的槽压加工的镍钛合金中可以观察到孪晶和晶界密度的增加,这是合金强度大幅增加的原因。因此,在镍钛合金上进行约束槽压制工艺可以增加其在高强度要求方面的应用范围。

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