停留疲劳载荷下钛合金 Ti-6Al-4V 的损伤-失效转变

V. Oborin, Aleksandr Balakhnin, Oleg Naimark, Yuri Gornostyrev, Vladimir Pushin, Nataliya Kuranova, Dimitrii Rasposienko, Aleksey Svirid, Aleksey Uksusnikov
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引用次数: 0

摘要

结构机制的作用是结构演化的韧性和蠕变动力学的结合和连续性,以及停留疲劳机制的建模,从而导致损伤-失效转变的分期。损伤-失效转变被视为临界现象,即结构缩放转变,此时损伤发展为特定阶段,具有特征阶段:新相成核和相生长动力学。在驻留疲劳的情况下,成核阶段与滑移局部化、切面、空洞和微裂纹的产生有关;相生长动力学与自由能释放的特定非线性有关,负责损伤-失效转变的分期。基于统计的损伤-失效转变现象学模型明确了宏观材料参数与结构参数之间的联系,这些参数负责微观结构对结构敏感机械性能的影响。基于驻留疲劳载荷下损伤动力学的二元性而开发的钛合金建模概念,使我们能够提出结构研究策略,以提供结构参数/阶段与现象学参数之间的联系,这些参数负责 LCF 和应力保持状态下损伤累积的不同机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Damage-failure transition in titanium alloy Ti-6Al-4V under dwell fatigue loads
The role of structural mechanisms responsible for the consequent staging of damage-failure transition as the combination and continuity of ductile and creep kinetics of the structure evolution and the modeling in dwell fatigue regime. Damage-failure transition is considered as critical phenomena, the structural-scaling transition, when the damage develops as specific phase with characteristic stages: nucleation of new phase and the phase growth kinetics. In the case of dwell fatigue, the nucleation stage is associated with slip localization, faceting, voids and microcrack initiation; the phase growth kinetics has the relation to specific non-linearity of the free energy release responsible for the staging of damage-failure transition. Statistically based phenomenological model of damage-failure transition specified the links of macroscopic material parameters with structural parameters responsible for the influence of microstructure on the structure sensitive mechanical properties. The developed conception of modeling of Ti alloys based on the duality of damage kinetics in dwell fatigue loads allowed us to propose the strategy of structural study to provide in perspective the links of structural parameters of /phases with phenomenological parameters responsible for different mechanisms of damage accumulation at LCF and stress hold regimes.
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