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Analysis of casting materials under thermal fatigue

机译:热疲劳下铸造材料分析

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High-temperature components, for example turbochargers, are often subject to complex thermal and mechanical loading paths. Non-uniform temperature distribution and constraints by neighboring components result in complex timely varying stress and strain states during operation. In this paper the inelastic behavior of a casting material Ni-resist D-5S in a wide stress, strain rate and temperature ranges is analyzed. The material model including a constitutive equation for the inelastic strain rate tensor, a non-linear kinematic hardening rule and a damage evolution equation is developed. To calibrate the model, experimental databases from creep and low cycle fatigue (LCF) tests are applied. For the verification of the model, simulations of the material behavior under uni-axial thermomechanical fatigue (TMF) loading conditions are performed. The results for the stress response and lifetime are compared with experimental data.
机译:高温成分,例如涡轮增压器,通常经受复杂的热和机械负载路径。 相邻部件的非均匀温度分布和约束导致操作期间复杂的及时变化应力和应变状态。 本文分析了铸造材料Ni抗蚀剂D-5S在宽应力,应变率和温度范围内的非弹性行为。 开发了包括非弹性应变速率张量,非线性运动硬化规则和损伤演化方程的本构方程的材料模型。 为了校准模型,应用来自蠕变和低循环疲劳(LCF)测试的实验数据库。 为了验证模型,执行单轴热机械疲劳(TMF)负载条件下的材料行为的模拟。 将应力响应和寿命的结果与实验数据进行比较。

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