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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Deformation behavior of high Cr ferritic steel upon abrupt stress loading
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Deformation behavior of high Cr ferritic steel upon abrupt stress loading

机译:高Cr铁素体钢在突然应力加载下的变形行为

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摘要

Microscopic deformation behavior after abrupt stress loading under several applied stresses was investigated at high temperature for ASME-P92 steel. The estimation method for elastic limit was proposed based on analyzing the deformation behavior. Instantaneous plastic strain was not observed upon the abrupt stress loading under the applied stress from 60 to 200 MPa. Anelastic deformation originating from martensitic lath structure was observed after abrupt stress increment and reduction. Deformation behavior for a short time after stress increment is consistent with that after stress reduction under a low applied stress, meaning that only the anelastic deformation occurs. Increasing applied stress, deformation upon after stress increment is faster for a short time than that after stress reduction, indicating that not only anelastic deformation but also plastic deformation occurs after the stress increment. The stress at which plastic deformation occurs immediately after stress increment can be used to the estimate elastic limit of the ASME-P92 steel. The estimated elastic limits at 873, 923, and 973 K were close to 0.01% proof stress obtained from conventional tensile tests.
机译:在高温下研究了ASME-P92钢在几种外加应力下突然施加应力后的微观变形行为。在分析变形行为的基础上,提出了弹性极限的估算方法。在60至200 MPa的外加应力下,突然施加应力时,未观察到瞬时塑性应变。在突然的应力增加和减少之后,观察到源自马氏体板条结构的弹性变形。应力增加后短时间内的变形行为与低外加应力下应力降低后的变形行为一致,这意味着仅发生非弹性变形。施加应力增加后,应力增加后的变形在短时间内要比应力降低后的变形快,这表明应力增加后不仅发生了非弹性变形,而且发生了塑性变形。应力增加后立即发生塑性变形的应力可用于估算ASME-P92钢的弹性极限。在873、923和973 K时的估计弹性极限接近于通过常规拉伸测试获得的0.01%屈服极限应力。

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