激光打标后 TA15 合金的疲劳断裂行为

Kun Qian, Linqing Yang, Yunlong Jiang, Jinlan An, Li Hui
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引用次数: 0

摘要

为了研究激光打标对 TA15 钛合金疲劳性能的影响,分别对合金进行了两种深度的打标,并对打标后 TA15 钛合金的低循环疲劳性能和断裂机理进行了分析和讨论。结果表明,激光打标后合金表面出现不同程度的打标凹坑,易造成局部应力集中。随着功率的增加,激光打标的底端截面形状由半弧形变为尖锥形,从而产生高应力集中现象。激光浅打标试样的低循环疲劳寿命降低了 62.7%,激光深打标试样的低循环疲劳寿命降低了 86.4%。随着打标深度的增加,疲劳源区由开始的光滑逐渐变得粗糙,裂纹的发散程度增加,起始区内每条裂纹的间距增大,形态变得粗糙。标记区域越深,为裂纹萌发提供的驱动力越大,最终导致疲劳性能显著恶化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fatigue Fracture Behavior of TA15 Alloy after Laser Marking
In order to study the effect of laser marking on the fatigue properties of TA15 titanium alloy, the alloy was marked at two depths respectively, and the low-cycle fatigue properties and fracture mechanism of TA15 titanium alloy after marking were analyzed and discussed. The results show that different degrees of marking pits appear on the surface of the alloy after laser marking, which is easy to cause local stress concentration. With the increase of power, the cross section shape of the bottom end of laser marking changes from a semi-arc shape to a sharp cone shape, resulting in high stress concentration phenomenon. The low cycle fatigue life of laser shallow marking specimens decreases by 62.7%, and that of laser deep marking specimens decreases by 86.4%. With the increase of the marking depth, the fatigue source area gradually becomes rough from smooth at the beginning, the divergence degree of cracks increases, the spacing of each crack in the initiation area increases, and the morphology becomes rough. The deeper the marking area is, the more driving force is provided for the initiation of cracks, and finally the fatigue performance deteriorates significantly.
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