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Near-threshold fatigue propagation of physically through-thickness short and long cracks in a low alloy steel

机译:低合金钢中贯穿厚度的短裂纹和长裂纹的近阈值疲劳传播

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摘要

In this paper, the near-threshold fatigue behavior of physically through-thickness short cracks and of long cracks in a low alloy steel is investigated by experiments in ambient air. Physically through-thickness short fatigue cracks are created by gradually removing the plastic wake of long cracks in compact tension specimens. The crack closure is systematically measured using the compliance variation technique with numerical data acquisition and filtering for accurate detection of the stress intensity factor (SIF) at the crack opening. Based on the experimental results, the nominal threshold SIF range is shown to be dependent on the crack length and the characteristic of the crack wake which is strongly dependent on the loading history. The effective threshold SIF range and the relation between the crack propagation rate and the effective SIF range after the crack closure correction are shown to be independent on crack length and loading history. The shielding effect of the crack closure is shown to be related to the wake length and load history. The effective threshold SIF range and the relationship between the crack growth rate and the effective SIF range appear to be unique for this material in ambient air. These properties can be considered as specific fatigue properties of the couple material/ambient air environment.
机译:本文通过在环境空气中的实验研究了低合金钢中贯穿厚度的短裂纹和长裂纹的近阈值疲劳行为。通过逐渐去除紧密拉伸试样中长裂纹的塑性痕迹,可以在物理上形成整个厚度的短疲劳裂纹。使用柔度变化技术通过数值数据采集和过滤来系统地测量裂纹闭合,以准确检测裂纹开口处的应力强度因子(SIF)。根据实验结果,标称阈值SIF范围显示为取决于裂纹长度,而裂纹唤醒的特性则强烈取决于载荷历史。裂纹闭合校正后的有效阈值SIF范围以及裂纹扩展速率与有效SIF范围之间的关系显示出与裂纹长度和载荷历史无关。裂纹闭合的屏蔽效果被证明与尾流长度和载荷历史有关。有效阈值SIF范围以及裂纹扩展速率和有效SIF范围之间的关系对于这种材料在环境空气中似乎是唯一的。这些特性可以被认为是偶合材料/周围空气环境的特定疲劳特性。

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