1. 重庆大学机械工程学院
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高攀, 陈平, 尹爱军, 等. 2024-T351铝合金喷丸残余应力松弛模型研究[J]. 机械强度, 2021,43(6):1316-1320.
GAO Pan, CHEN Ping, YIN AiJun, et al. RESEARCH ON SHOT STRESS RELAXATION MODEL OF2024-T351 ALUMINUM ALLOY[J]. 2021,43(6):1316-1320.
高攀, 陈平, 尹爱军, 等. 2024-T351铝合金喷丸残余应力松弛模型研究[J]. 机械强度, 2021,43(6):1316-1320. DOI: 10.16579/j.issn.1001.9669.2021.06.007.
GAO Pan, CHEN Ping, YIN AiJun, et al. RESEARCH ON SHOT STRESS RELAXATION MODEL OF2024-T351 ALUMINUM ALLOY[J]. 2021,43(6):1316-1320. DOI: 10.16579/j.issn.1001.9669.2021.06.007.
喷丸引入的残余压应力场可以有效地提高构件的疲劳性能,但残余压应力会随着循环周期而发生松弛,进而降低残余压应力对疲劳性能的增益效果,因此深入研究残余应力松弛规律,有助于更加准确的掌握其对疲劳性能的影响。为了系统性地研究残余应力松弛规律,以2024-T351铝合金标准试件为研究对象,综合考虑应力幅、载荷条件和喷丸引起冷作硬化程度的改变对残余应力的影响,根据理论构建残余应力松弛模型。通过拉伸疲劳试验,基于全寿命试验数据和阶段性试验数据对松弛模型进行验证,证明了模型的有效性。
The residual compressive stress field introduced by shot peening can effectively improve the fatigue performance of the component, but decrease of the residual compressive stress cased by the cycle stress relaxation, thereby reducing the gain effect of residual compressive stress on fatigue performance, Therefore, in-depth study of the residual stress relaxation law will help to more accurately grasp its impact on fatigue performance.In order to systematically study the law of residual stress relaxation, the standard test piece of 2024-T351 aluminum alloy was taken as the research object, comprehensively considering the influence of stress amplitude、load conditions and the change of cold work hardening degree caused by shot peening on residual stress, a residual stress relaxation model was constructed based on theory. Through the tensile fatigue test, the relaxation model is verified based on the full life test data and the phase test data to prove the effectiveness of the model.
2024-T351铝合金喷丸残余应力疲劳性能松弛模型
2024-T351 aluminum alloyShot peening residual stressFatigue performanceRelaxation model
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