首页 | 本学科首页   官方微博 | 高级检索  
     检索      

45CrNiMoVA钢的低周疲劳特性和表面疲劳裂纹的在位观测
引用本文:龚明,刘云平,赵建华,董本涵,高鹏飞.45CrNiMoVA钢的低周疲劳特性和表面疲劳裂纹的在位观测[J].实验力学,2001,16(1):86-92.
作者姓名:龚明  刘云平  赵建华  董本涵  高鹏飞
作者单位:1. 中国科学技术大学力学与机械工程系,
2. 中国航空总公司第六O六研究所,
摘    要:利用MTS810材料试验机对带中心圆孔的45CrNiMoVA钢低周疲劳特性进行了研究,并借助长焦显微镜和CCD摄像头对试样表面裂纹的演化规律进行了在位停机观测和在位不停机连续观测尝试,试验发现,裂纹均萌生于与拉伸应力垂直的圆孔边缘;疲劳裂纹的萌生与Lueders形变带密切相关,萌生期超过整个疲劳寿命的70%,主裂纹的发展既可以共面扩展的方式向前连续延伸,也可以裂纹连接的方式向前跳跃传播,应力控制的低周疲劳条件下,疲劳寿命与应力面形貌图像,频闪光源照明可以实现表面疲劳裂纹的在位不停机观测。

关 键 词:疲劳短裂纹  应力集中  在位观测  
文章编号:1001-4888(2001)01-0086-07
修稿时间:2000年1月16日

The Test of Low Cycle Fatigue Characteristics for 45CrNiMoVA Steel and In-situ Observation on Surface Crack Propagation
GONG Ming,LIU Yun ping,ZHAO Jian hu,DONG Ben han,GAO Peng fei.The Test of Low Cycle Fatigue Characteristics for 45CrNiMoVA Steel and In-situ Observation on Surface Crack Propagation[J].Journal of Experimental Mechanics,2001,16(1):86-92.
Authors:GONG Ming  LIU Yun ping  ZHAO Jian hu  DONG Ben han  GAO Peng fei
Abstract:The low cycle fatigue characteristics of 45CrNiMoVA specimens with central hole were investigated on a MTS810 material testing machine. By means of a long focal distance microscope with CCD camera, the initiation and propagation of surface cracks were observed in both running and stopped states. It was found that in most occasions cracks initiated from the edge of the hole where maximum tension stress occured, and that crack initiation was mainly associated with the Luders deformation bands and covered about 70% of the whole fatigue life. It was also found that cracks could propagate either in a continuous co planar fashion or by jumping extension through coalescence. In the test, a nearly liner logarithmic relationship between fatigue lifetime and stress amplitude was obtained. Continuous illumination and flashing illumination were used respectively for observations in runing and stopped states.
Keywords:short fatigue crack  stress concentration  in  situ observation
本文献已被 维普 万方数据 等数据库收录!
点击此处可从《实验力学》浏览原始摘要信息
点击此处可从《实验力学》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号