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Effect of loading history on the threshold stress in the creep deformation of an austenitic stainless steel

机译:加载历史对奥氏体不锈钢蠕变变形中阈值应力的影响

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The steady state creep rate of AISI 316L(N) SS at 923 K can be described by the threshold stress compensated power law relationship. The threshold stress for creep deformation over the stress range 142-230 MPa has been evaluated graphically as 60 ± 10MPa from the conventional creep tests. A threshold stress of about 110 MPa was computed from two stress decrease tests which is much higher than that obtained from conventional creep tests. The higher apparent threshold stress has been rationalized by invoking the effect of dislocation cell structure on the constant A in the steady state creep rate equation. A stress change test wherein the stress was progressively increased yielded a threshold stress identical to that obtained from the conventional creep tests. This implies that the steady state structure at a particular stress is path independent so long as the preceding stresses are lower. The dislocation substructure indicates that the creep deformation proceeds by the dislocation network mechanism. The threshold stress for this mechanism represents the stress for the activation of dislocation links constituting the Frank network.
机译:AISI 316L(N)SS在923 K时的稳态蠕变速率可以通过阈值应力补偿幂律关系来描述。根据常规蠕变测试,在142-230 MPa的应力范围内,蠕变变形的阈值应力已通过图形评估为60±10MPa。通过两次应力降低测试计算得出的阈值应力约为110 MPa,该阈值应力远高于从常规蠕变测试获得的应力。通过调用位错单元结构对稳态蠕变速率方程中常数A的影响,可以使较高的表观阈值应力合理化。应力逐渐增加的应力变化测试产生的阈值应力与常规蠕变测试获得的阈值应力相同。这意味着只要前面的应力较低,则在特定应力下的稳态结构与路径无关。位错子结构表明蠕变变形是由位错网络机制引起的。该机制的阈值应力表示激活构成Frank网络的位错链的应力。

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