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Studies on short fatigue crack growth behavior of a plain carbon steel using a new specimen configuration

机译:使用新的试样结构研究普通碳素钢的短疲劳裂纹扩展行为

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摘要

A simple experimental technique has been developed to examine short crack growth behavior vis-a-vis microstructurai features of a material. The procedure involves the use of a new specimen configuration, fatigue testing with the help of a rotating bending machine and optical microscopic examination of crack profiles and their associated microstructures using an image analyzer. The growth characteristics of several small fatigue cracks in a 0.25% carbon steel have been studied using this technique. The critical crack lengths above which linear elastic fracture mechanics may be applicable, the fatigue threshold values at the transition of short to long cracks and the influence of microstructure on the crack path have been examined. The estimated critical crack lengths are considered to be dependent on the nature of the short cracks; but the fatigue threshold values obtained from short crack growth experiments are found to lie in a narrow range. The cracks were found to have affinity to grow through interfaces, but the length of a crack passing through a specific phase was found to be approximately proportional to the amount of the latter.
机译:已经开发了一种简单的实验技术来检查相对于材料的微结构特征的短裂纹扩展行为。该过程包括使用新的样品配置,借助旋转弯曲机进行的疲劳测试以及使用图像分析仪对裂纹轮廓及其相关的微结构进行光学显微镜检查。使用该技术研究了0.25%碳钢中几个小疲劳裂纹的生长特性。研究了可以应用线性弹性断裂力学的临界裂纹长度,从短裂纹到长裂纹的疲劳阈值以及微观结构对裂纹路径的影响。估计的临界裂纹长度取决于短裂纹的性质。但是发现从短裂纹扩展实验获得的疲劳阈值在一个狭窄的范围内。发现裂纹具有通过界面生长的亲和力,但是发现穿过特定相的裂纹的长度与后者的数量近似成比例。

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