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Fatigue crack development in a low-carbon steel. Microstructure influence. Modelling

机译:低碳钢中的疲劳裂纹开发。微观结构影响。造型

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Fatigue in a low-carbon steel with ferrite and pearlite microstructure is investigated through testing of three groups of specimens. Two of the groups consist of cylindrical specimens subjected to tension-tension and rotating-bending fatigue; in this case surface microstructurally-short crack propagation is monitored by acetate-foil replica technique. The third group of specimens includes flat specimens preliminary notched by FIB-technique and then subjected to pure-bending fatigue. The study is focused on examining of crack paths in terms of interaction between the propagating short cracks and the microstructure. The obtained data for pure-bending fatigue show higher crack growth rates and shorter fatigue lifetimes than those found for rotating-bending fatigue. In comparison, the registered tension-tension fatigue data present the lowest crack growth rates, due to much lesser loading than that applied at rotating-bending and pure-bending fatigue. Based on data obtained, a Parabolic-linear model "Crack growth rate - Crack length" is used for describing and predicting adequately short crack propagation under the specified three types of fatigue. The model is supported by a comparison between the predicted and the actual fatigue lifetimes.
机译:疲劳与铁素体和珠光体组织的低碳钢,通过三组样品的测试调查。的基团的两个组成进行拉伸 - 拉伸和旋转弯曲疲劳圆柱试样的;在这种情况下表面微观结构短裂纹扩展是由乙酸乙酯 - 箔复制技术监测。标本第三组包括扁的样品通过FIB-技术初步切口,然后进行纯弯曲疲劳。该研究集中在传播短裂纹和微结构之间的相互作用方面的裂纹路径检查。将得到的纯弯曲疲劳数据显示出更高的裂纹扩展速率和更短的寿命疲劳比找到的旋转弯曲疲劳。相比较而言,注册拉伸 - 拉伸疲劳数据呈现最低裂纹增长速率,由于小得多的负载比在旋转弯曲和纯弯曲疲劳施加。基于获得的数据,一个抛物型线性模型“裂纹增长率 - 裂缝长度”是用于指定三种类型的疲劳的下描述和预测充分短裂纹扩展。该模型是由预测和实际的疲劳寿命之间的比较的支持。

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