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Experimental study of heat dissipation process into fatigue crack tip in titanium alloys

机译:钛合金疲劳裂纹尖端散热过程的实验研究

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Paper is devoted to investigation of initiation and propagation of cracks in titanium alloys by infrared thermography study of heat generation under cyclic loading and fractography analyses of fracture surface.Two series of experiments on cylindrical specimens and flat specimens with preliminary grown fatigue crack are carried out.Spatial and time temperature evolution into crack tip is investigated,the shape and dissipative intensity at crack process zone are estimated.Based on a result of comparative analysis of the experimental data and the linear fracture mechanics equations it is shown that the spatial distribution and character of heat dissipation zone into the crack tip doesn't correspond to the conventional models.High-speed shooting (at a frequency of 1 kHz) allowed us to determine the intensity and shape of zone of energy dissipation caused by plastic deformation at the crack tip,as well as to compare the rate of energy dissipation for different stress levels.Fractured specimens were analyzed by interferometer microscope and SEM to verify the existing models of inelastic deformation at the crack tip and to improve methods of monitoring of damage accumulation during fatigue test.
机译:本文主要通过红外热像图研究循环载荷下的热量产生和断裂表面的形貌分析,研究钛合金中裂纹的产生和扩展。对具有初步产生的疲劳裂纹的圆柱试样和扁平试样进行了两个系列的实验。研究了裂纹尖端的空间和时间温度演化,估计了裂纹加工区的形状和耗散强度。在对实验数据和线性断裂力学方程进行比较分析的结果基础上,得出了裂纹的空间分布和特征。裂纹尖端的散热区与传统模型不符。高速射击(频率为1 kHz)使我们能够确定裂纹尖端塑性变形所导致的能量耗散区的强度和形状,以及比较不同应力水平下的能量耗散率。通过干涉仪显微镜和SEM对ens进行分析,以验证裂纹尖端非弹性变形的现有模型,并改善疲劳测试过程中损伤累积的监测方法。

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