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INFLUENCES OF PLASTICITY-INDUCED CRACK CLOSURE ON FATIGUE CRACK HEALING OF CARBON STEEL WITH HEAT TREATMENT

机译:塑性诱导裂纹闭合对热处理碳钢疲劳裂纹愈合的影响

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Healing technology for metallic materials is an important subject in terms of long-term reliability and durability of structural members, a healing technology to heal fatigue crack by applying heat treatment at annealing temperature level has been discovered. In this study, the influences of plasticity-induced crack closure on healing were evaluated by obtaining the crack opening load during the pre-crack introduction and evaluating the fatigue crack propagation characteristics before and after the healing heat treatment, using compact tension specimens made of carbon steel with different test conditions. As a result, the specimen with high crack opening load showed high healing effect and were able to heal up to 95% of the pre-crack length. This suggested that the residual compressive stress due to the plasticity-induced crack closure accelerates the solid-state diffusion bonding during the crack healing process and this leads to the improvement of the healing effect.
机译:在结构构件的长期可靠性和耐久性方面,金属材料的愈合技术是结构构件的长期可靠性和耐久性,通过在退火温度水平上施加热​​处理来治愈疲劳裂纹的愈合技术。在这项研究中,通过在预裂纹引入引入和评估愈合热处理前后的抗疲劳裂纹传播特性期间,使用紧凑的张力样品来评估可塑性诱导的裂纹闭合对愈合进行愈合的影响。钢具有不同的测试条件。结果,具有高裂缝开口负荷的样品显示出高的愈合效果,并且能够愈合高达95%的预裂纹长度。这表明由于塑性诱导的裂纹闭合引起的残余压缩应力在裂纹愈合过程中加速了固态扩散键合,这导致愈合效果的提高。

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