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48MnV钢拉压疲劳过程中的磁记忆信号变化
引用本文:王翔,陈铭,徐滨士.48MnV钢拉压疲劳过程中的磁记忆信号变化[J].中国机械工程,2007,18(15):1862-1864.
作者姓名:王翔  陈铭  徐滨士
作者单位:1. 上海交通大学,上海,200030
2. 装甲兵工程学院,北京,100072
摘    要:为探索金属磁记忆信号在材料疲劳过程中的变化规律,选用48MnV钢为材料,以其疲劳极限为负载作标准拉压疲劳试验,并采用金属磁记忆诊断仪检测材料疲劳过程中磁记忆信号的变化。试验结果表明,磁记忆信号在整个疲劳过程中表现出振荡、突变和收敛三大规律,即:磁记忆信号随疲劳循环次数的增加而上下振荡;在500万次疲劳循环附近,磁记忆信号存在一个突变点;该突变点前后,磁记忆信号随疲劳循环次数增加均有明显的收敛现象。

关 键 词:磁记忆  磁记忆信号  拉压疲劳  48MnV钢
文章编号:1004-132X(2007)15-1862-03
修稿时间:2006-06-19

Change of Magnetic Memory Signals during the Tension-Compression Fatigue of 48MnV Steel
Wang Xiang,Chen Ming,Xu Binshi.Change of Magnetic Memory Signals during the Tension-Compression Fatigue of 48MnV Steel[J].China Mechanical Engineering,2007,18(15):1862-1864.
Authors:Wang Xiang  Chen Ming  Xu Binshi
Affiliation:1. Shanghai Jiao Tong University, Shanghai, 200030; 2. Armored Force Engineering Institute, Beijing, 100072
Abstract:To develop the variation law of magnetic memory signals during the fatigue of material, 48MnV steel was used to carry through tension-compression fatigue test under the load of its fatigue limit. During the test, magnetic memory signals were measured by metal magnetic memory instrument. The results show that magnetic memory signals have following three laws. magnetic memory signals vibrate during the whole fatigue process; a break point exists near 5 million cycles; before and after the break point, the magnetic memory signals both have a trend of concentration.
Keywords:magnetic memory  magnetic memory signal  tension-compression fatigue  48MnV steel
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