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Development of a fatigue crack growth testing apparatus and its application to thin titanium foil

机译:疲劳裂纹扩展测试装置的研制及其在薄钛箔上的应用

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A low-cost experimental apparatus has been developed to investigate the mode I fatigue crack growth behaviour of thin metallic foils and sheets. The apparatus utilizes magnetic coupling between a ceramic magnet and a rotating steel disc to induce cyclic tensile loads in notched rectangular specimens. To illustrate the testing apparatus, mode I fatigue crack growth in 30-um-thick high-purity titanium foils was studied. Experiments were performed at ambient temperature using a loading frequency of 2 Hz and a nominal stress ratio of 0.1. The cyclic crack growth data could be fit to a Paris relationship between crack growth rate and stress intensity range. The stress intensity factor exponent, m, in the Paris relationship was between 4 and 6, which is comparable with the relatively high values found in the literature for the tension-tension fatigue of other metallic bulk materials. Incomplete self-similarity analysis was used to explain the observed higher m values for thin metallic foils.
机译:已经开发出一种低成本的实验设备来研究薄金属箔和薄板的I型疲劳裂纹扩展行为。该设备利用陶瓷磁体和旋转的钢盘之间的磁耦合在带槽的矩形样品中引起周期性的拉伸载荷。为了说明该测试设备,研究了I型疲劳裂纹在30微米厚的高纯度钛箔中的生长。实验是在环境温度下使用2 Hz的加载频率和0.1的标称应力比进行的。周期性裂纹扩展数据可以拟合裂纹扩展速率与应力强度范围之间的巴黎关系。巴黎关系中的应力强度因子指数m在4到6之间,这与其他金属散装材料的拉伸疲劳强度文献中发现的相对较高的值相当。不完全自相似性分析用于解释薄金属箔的较高m值。

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