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固溶氮原子对不锈钢单轴及多轴低周疲劳特性的影响

THE EFFECT OF NITROGEN ATOMS ON THE CHARACTERISTIC OF LOW CYCLE FATIGUE OF STAINLESS STEELS UNDER UNIAXIAL AND MULTIAXIAL LOADING

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【作者】 何国求陈成澍高庆孙训方沈志云

【Author】 HE Guoqiu, CHEN Chengshu (Department of Materials Engineering, Southwest Jiaotong University, Chengdu 610031) GAO Qing, SUN Xunfang (Department of Applied Mechanics and Engineering, Southwest Jiaotong University, Chengdu 610031) SHEN Zhiyun (National Tra

【机构】 西南交通大学材料工程系!成都610031西南交通大学应用力学与工程系!成都610031西南交通大学牵引动力国家重点实验室!成都610031

【摘要】 对 316L和 316LN不锈钢进行了单轴拉压及多轴非比例加载低周疲劳实验研究,分析了固溶的氮原子对单轴及多轴非比例加载低周疲劳特性及其微结构的影响,结果表明、固溶的氮原子增大了不锈钢的单轴循环软化程度及非比例循环附加强化程度.延长了不锈钢的单轴拉压低周疲劳寿命,但却缩短了不锈钢的多轴非比例加载低周疲劳寿命,固溶的氮原子对单轴及多轴低周疲劳高密度位错结构的形成具有明显的抑制作用.利用Mossbauer谱方法.间接地证实了至今尚未得到实验证实的IS结合体的假设

【Abstract】 The tests on low--cycle fatigue of 316L and 316LN stainless steels under uniaxial tension- compression and multiaxial nonproportional loading are made. The effect of solution nitrogen atoms on the characteristics and microstructures of low-cycle fatigue under tension-compression and multiaxial nonproportional loading is analyzed. The results show that the solution nitrogen atoms increase the degree of uniaxial cyclic softening and multiaxial nonproportional cyclic additional hardening, prolong the uniaxial tension-compression low-cycle fatigue life, however, shorten the low-cycle fatigue life of stainless steels under multiaxial nonproportional loading, and inhibit the formation of the high density dislocation structures in stainless steels under uniaxial and multiaxial low--cycle fatigue. The hypothesis of IS complexes which has not been proved so far is proved indirectly with the methods of Mossbauer spectra.

【基金】 国家自然科学基金!59571035,58971068;博士后基金
  • 【文献出处】 金属学报 ,ACTA METALLRUGICA SINICA , 编辑部邮箱 ,2000年01期
  • 【分类号】TG142.71
  • 【被引频次】5
  • 【下载频次】172
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