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首页> 外文期刊>The Physics of Metals and Metallography >Effect of thermocycling on the temperatures of phase transformations, structure, and properties of the equiatomic alloy Ti50.0Ni50.0
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Effect of thermocycling on the temperatures of phase transformations, structure, and properties of the equiatomic alloy Ti50.0Ni50.0

机译:热循环对等原子合金Ti50.0Ni50.0的相变温度,结构和性能的影响

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摘要

This article is devoted to studying the influence of thermocycling in the range of temperatures of the thermoelastic martensitic transformation B2-B19' on the microstructure, the temperatures of the martensitic transformations, and the mechanical properties of the equiatomic alloy Ti50Ni50 in the coarse-grained (CG) and ultrafine-grained (UFG) states, the latter obtained by equal-channel angular pressing (ECAP). One hundred cycles of thermocycling and the related increase in the dislocation density in the CG alloy led to a decrease in the temperatures of martensitic transformations. In the UFG alloy, the temperatures of the forward transformation (M (s), M (f)) decrease by 2-3 K, and the temperatures of the reverse transformation (A (s), A (f)) increase by 6 K. The ultimate strength remains almost unaltered upon the thermocycling, but the yield stress increases substantially from 430 to 550 MPa and from 935 to 1120 MPa for the CG and UFG states, respectively.
机译:本文专门研究在热弹性马氏体相变B2-B19'的温度范围内热循环对粗晶粒( CG)和超细颗粒(UFG)状态,后者通过等通道角挤压(ECAP)获得。 CG合金中的一百次热循环和相关的位错密度增加导致马氏体相变温度降低。在UFG合金中,正向转变温度(M(s),M(f))降低2-3 K,反向转变温度(A(s),A(f))升高6 K.在热循环后,极限强度几乎保持不变,但CG和UFG状态的屈服应力分别从430 MPa增大到550 MPa,从935 MPa增大到1120 MPa。

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