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Thermomechanical fatigue behavior and life prediction of a cast nickel-based superalloy

机译:铸造镍基高温合金的热机械疲劳行为及寿命预测

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The cyclic deformation and lifetime behavior of a cast nickel-based superalloy M963 was investigated under both thermomechanical fatigue (TMF) and isothermal fatigue (IF) conditions. Two types of TMF tests, i.e. in-phase (IP) and out-of-phase (OP), were performed in temperature range of 450-900℃, and IF tests were conducted at a temperature of 900℃. All tests were carried out under mechanical strain control at a given strain rate of 1.0 x 10~(-4) s~(-1). Results revealed that isothermal fatigue exhibited a longer lifetime than both types of TMF at corresponding mechanical strain amplitude in spite of its higher fraction of plastic strain amplitude. Different cracking behavior occurred in IP and OP TMF. In IP loading, cracks tended to initiate and propagate intergranularly or interdendritically, while totally transgranular cracking occurred in OP loading. Three life prediction models were selected and compared to evaluate the possibility of predicting TMF lifetime by using IF data.
机译:在热机械疲劳(TMF)和等温疲劳(IF)条件下研究了铸造镍基高温合金M963的循环变形和寿命行为。在450-900℃的温度范围内进行了两种类型的TMF测试,即同相(IP)和异相(OP),在900℃的温度下进行了IF测试。所有测试均在机械应变控制下以给定的应变速率1.0 x 10〜(-4)s〜(-1)进行。结果表明,等温疲劳在相应的机械应变幅度下比两种TMF都有更长的寿命,尽管塑性应变幅度的比例更高。 IP和OP TMF中发生了不同的破解行为。在IP载荷中,裂纹倾向于在晶间或齿间开始并扩展,而在OP载荷中发生了完全的沿晶裂纹。选择了三种寿命预测模型并进行了比较,以评估使用IF数据预测TMF寿命的可能性。

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