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首页> 外文期刊>Journal of Materials Engineering and Performance >Influence of Cyclic Straining on Fatigue, Deformation, and Fracture Behavior of High-Strength Alloy Steel
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Influence of Cyclic Straining on Fatigue, Deformation, and Fracture Behavior of High-Strength Alloy Steel

机译:循环应变对高强度合金钢疲劳,变形和断裂行为的影响

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摘要

In this paper, the results of a study on microstructural influences on mechanical behavior of the high-strength alloy steel Tenax (TM) 310 are presented and discussed. Under the influence of fully reversed strain cycling, the stress response of this alloy steel revealed softening from the onset of deformation. Cyclic strain resistance exhibited a linear trend for the variation of both elastic strain amplitude with reversals-to-failure, and plastic strain amplitude with reversals-to-failure. Fracture morphology was essentially the same at the macroscopic level over the entire range of cyclic strain amplitudes examined. However, at the fine microscopic level, this high-strength alloy steel revealed fracture to be mixed-mode with features reminiscent of "locally'' ductile and brittle mechanisms. The macroscopic mechanisms governing stress response at the fine microscopic level, resultant fatigue life, and final fracture behavior are presented and discussed in light of the mutually interactive influences of intrinsic microstructural effects, deformation characteristics of the microstructural constituents during fully reversed strain cycling, cyclic strain amplitude, and resultant response stress.
机译:本文介绍并讨论了微结构对高强度合金钢Tenax(TM)310的力学行为的影响的研究结果。在完全反向应变循环的影响下,这种合金钢的应力响应从变形开始就开始软化。循环应变抵抗力显示出线性趋势,弹性应变幅度随着破坏而变化,而塑性应变振幅随着破坏而变化。在所检查的整个循环应变幅度范围内,宏观上的断裂形态基本相同。然而,在精细的微观水平上,这种高强度合金钢显示出断裂为混合模式,具有让人联想到“局部”的韧性和脆性机制的特征。宏观机制在精细的微观水平上控制应力响应,由此产生的疲劳寿命,鉴于固有的微结构效应,在完全反向的应变循环过程中的微结构成分的变形特性,循环应变幅度以及所产生的响应应力之间的相互作用,提出并讨论了最终断裂行为。

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