Effects of Strain Amplitude and Loading Path on Cyclic Behavior and Martensitic Transformation of 304 Stainless Steel

Yajing Li, Dunji Yu, Xu Chen
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引用次数: 3

Abstract

Effects of strain amplitude and loading path on cyclic deformation behavior and martensitic transformation of 304 stainless steel were experimentally investigated at room temperature. Series of symmetrical strain-control low cycle fatigue tests with strain amplitude ranging from 0.4% to 1.0% and various loading paths (uniaxial, torsional, proportional, rhombus, square and circular) with the same equivalent strain amplitude of 0.5% were carried out. Three-stage cyclic deformation behavior containing initial hardening, cyclic softening or saturation, and secondary hardening as well as near-linear relationship between α’-martensite content and number of cycles was observed during the whole life regime as for each test. Besides, a nearly linear relation between peak stress and α’-martensite content was found during secondary hardening stage. Furthermore, higher strain amplitude or non-proportionality of loading path resulted in higher cyclic stress response and α’-martensite content growth rate, defined by the slope of curves of α’-martensite content versus number of cycles.
应变幅值和加载路径对304不锈钢循环行为和马氏体相变的影响
实验研究了应变幅值和加载路径对304不锈钢室温循环变形行为和马氏体相变的影响。进行了应变幅值为0.4% ~ 1.0%的对称应变控制低周疲劳试验,并进行了等效应变幅值为0.5%的单轴、扭转、比例、菱形、方形和圆形加载路径试验。在每次试验的全寿命期内,观察到初始硬化、循环软化或饱和和二次硬化的三阶段循环变形行为,以及α′-马氏体含量与循环次数之间的近似线性关系。在二次硬化阶段,峰值应力与α′-马氏体含量呈近似线性关系。此外,较高的应变幅值或非比例加载路径导致较高的循环应力响应和α′-马氏体含量增长率(由α′-马氏体含量随循环次数曲线的斜率决定)。
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