• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2026, Vol. 62 ›› Issue (10): 159-169.doi: 10.3901/JME.260498

• 材料科学与工程 • 上一篇    

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铸造AZ91D镁合金室温单轴棘轮-疲劳交互作用的实验研究

谭英泽, 胡雅楠, 胡冰晖, 雷宇, 于超, 康国政   

  1. 西南交通大学力学与航空航天学院 成都 611756
  • 收稿日期:2025-05-20 修回日期:2025-11-20 发布日期:2026-07-29
  • 作者简介:谭英泽,男,2001年出生,博士研究生。主要研究方向为变形镁合金的低周腐蚀疲劳行为。E-mail:tanyingze@my.swjtu.edu.cn;康国政(通信作者),男,1969年出生,博士,教授,博士研究生导师。主要研究方向为材料本构关系、疲劳与断裂。E-mail:guozhengkang@swjtu.edu.cn
  • 基金资助:
    国家自然科学基金(12192210,12192214)和四川省科技计划(2024NSFSC0431)资助项目。

Experimental Study on Uniaxial Ratchetting-fatigue Interaction of Cast AZ91D Magnesium Alloy at Room Temperature

TAN Yingze, HU Yanan, HU Binghui, LEI Yu, YU Chao, KANG Guozheng   

  1. School of Mechanics and Aerospace Engineering, Southwest Jiaotong University, Chengdu 611756
  • Received:2025-05-20 Revised:2025-11-20 Published:2026-07-29

摘要: 针对铸造AZ91D镁合金,在室温下开展了对称应变和非对称应力控制单轴疲劳实验,研究该合金的全寿命棘轮行为和疲劳失效行为及其应力水平依赖性。研究发现:铸造AZ91D镁合金在循环变形过程中表现出明显的循环硬化特征,且循环硬化程度随应变幅值的增大而增大;在应力控制的循环变形过程中体现出明显的棘轮行为,在高平均应力下的棘轮行为表现出明显的平均应力和应力幅值依赖性,但在低平均应力下仅表现出平均应力依赖性;平均应力和应力幅值的增加均会降低材料的疲劳寿命,而在峰值应力一定时,应力比的增加反而延长了材料的疲劳寿命;棘轮变形的产生会造成附加损伤,进而降低材料的疲劳寿命,但是,由于最终的棘轮应变不足以产生显著的附加损伤,材料的失效机制仍由疲劳损伤主导。

关键词: 铸造镁合金, 棘轮行为, 应力水平, 低周疲劳, 失效机制

Abstract: The whole-life ratchetting and fatigue failure behavior of cast AZ91D magnesium alloy, along with their dependence on stress level, are investigated through a series of uniaxial symmetric strain-controlled and asymmetric stress-controlled fatigue tests at room temperature. The experimental results indicate that the AZ91D alloy exhibits significant cyclic hardening with a higher cyclic hardening observed at higher strain amplitude. During the stress-controlled cyclic loading, the AZ91D alloy presents pronounced ratchetting. At higher mean stress, the ratchetting is strongly influenced by both the mean stress and stress amplitude, whereas at lower mean stress, it is only dependent on the mean stress. Furthermore, an increase in mean stress or stress amplitude leads to a decrease in fatigue life. However, when the peak stress remains constant, the fatigue life increases with increasing stress ratio. Meanwhile, the investigation on the ratchetting-fatigue interaction of AZ91D alloy reveals that the ratchetting could promote fatigue damage, resulting in a reduction in fatigue life. However, the failure of the alloy is primarily governed by fatigue damage, as the ratchetting strain at fracture is not sufficiently excessive to induce significant ratchetting damage.

Key words: cast magnesium alloy, ratchetting, stress level, low-cycle fatigue, failure mechanism

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