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Strain Amplitude and Temperature Effects on the Low Cycle Fatigue Behavior of Alloy 617M

机译:应变幅度和温度效应合金的低循环疲劳行为617m

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摘要

In the present investigation, comparative evaluation of the low cycle fatigue (LCF) of tube and forged Alloy 617M have been studied. Total axial strain controlled tests were performed on sub-sized specimens between 300 and 1023 K employing strain amplitudes ranging from +/- 0.25 to +/- 1 % at a nominal strain rate of 3 x 10(-3) s(-1). The alloy underwent cyclic hardening at all temperatures and strain amplitudes and the rate of hardening was sensitive to both temperature and strain amplitude. There were distinct differences in the LCF behavior of forged and tube products. The forged alloy exhibited better fatigue life than that of tube material and significant difference in the rate of hardening was observed between the material conditions at 1023 K. The variation in the LCF behavior of the two products was found to be associated with the difference in the initial microstructure. The grains of the tube product were equiaxed having 214 mu m average size whereas a distribution of both large grains (average 65 mu m) and clusters of small grains (average 15 mu m) were found in the forged product. Microstructural investigations revealed mixed mode of failure for both the product forms.
机译:在本发明的研究中,研究了管和锻造合金的低循环疲劳(LCF)的比较评价617M。在300至1023k的子尺寸样本上进行总轴向应变控制试验,该试样使用以3×10(-3)的标称应变速率从+/- 0.25至+/- 1%的应变幅度范围为+/- 0.25至+/- 1% 。在所有温度和应变幅度处接受循环硬化的合金以及硬化速率对温度和应变幅度敏感。锻造和管产品的LCF行为有明显的差异。锻造合金表现出比管材的更好的疲劳寿命,并且在1023k的材料条件下观察到硬化速率的显着差异。发现两种产品的LCF行为的变化与差异有关初始组织。将管产物的晶粒具有214μm平均尺寸,而在锻造产物中发现大颗粒(平均65μm)和小晶粒(平均15μm)的簇的分布。微观结构研究显示了产品形式的混合失效模式。

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