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Influence of microstructure on strain-controlled fatigue and fracture behavior of ultra high strength alloy steel AerMet 100

机译:显微组织对超高强度合金钢AerMet 100的应变控制疲劳和断裂行为的影响

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摘要

In this paper, the results of a study aimed at understanding the specific role of microstructure on cyclic stress response, cyclic strain resistance, and cyclic stress versus strain response, deformation and fracture behavior of high strength alloy steel AerMet~® 100 is presented and discussed. The cyclic strain amplitude-controlled fatigue properties of this ultra-high strength alloy steel revealed a linear trend for the variation of log elastic strain amplitude with log reversals-to-failure, and log plastic strain amplitude with log reversals-to-failure. Cyclic stress response revealed a combination of initial hardening for the first few cycles followed by stability for large portion of fatigue life before culminating in rapid softening to failure at the lower cyclic strain amplitudes and intermediate cyclic strain amplitudes and resultant enhanced cyclic fatigue life. Fracture characteristics of test specimens of this high strength alloy steel were different at both the macroscopic and fine microscopic levels over the entire range of cyclic strain amplitudes examined. Both macroscopic and fine microscopic observations revealed fracture to be essentially ductile with features reminiscent of locally occurring ductile mechanisms. The intrinsic microscopic mechanisms governing stress response, deformation characteristics, fatigue life and final fracture behavior are presented and discussed in light of the competing and mutually interactive influences of intrinsic microstructural effects, deformation characteristics of the microstructural constituents, cyclic strain amplitude and concomitant response stress.
机译:本文提出并讨论了旨在了解显微组织对高强度合金钢AerMet〜®100的循环应力响应,循环应变阻力以及循环应力与应变响应,变形和断裂行为的特定作用的研究结果。 。这种超高强度合金钢的循环应变振幅控制疲劳特性揭示了对数弹性应变振幅随对数破坏而变化的线性趋势,以及对数塑性应变振幅随着对数反转对破坏的变化。循环应力响应显示了最初几个循环的初始硬化,然后是大部分疲劳寿命的稳定性,然后最终在较低的循环应变振幅和中等的循环应变振幅下迅速软化至破坏,并最终延长了循环疲劳寿命,最终达到稳定。在所考察的整个循环应变幅度范围内,这种高强度合金钢的试样的断裂特性在宏观和精细微观水平上都不同。宏观和精细的显微镜观察都显示出裂缝基本上是延性的,其特征让人联想到局部发生的延性机制。根据内在微观结构效应,微观结构成分的变形特性,循环应变幅度和伴随的响应应力的相互竞争和相互影响,提出并讨论了控制应力响应,变形特性,疲劳寿命和最终断裂行为的内在微观机制。

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