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Unified constitutive material models for nonlinear finite-element structural analysis

机译:用于非线性有限元结构分析的统一本构材料模型

摘要

Unified constitutive material models were developed for structural analyses of aircraft gas turbine engine components with particular application to isotropic materials used for high-pressure stage turbine blades and vanes. Forms or combinations of models independently proposed by Bodner and Walker were considered. These theories combine time-dependent and time-independent aspects of inelasticity into a continuous spectrum of behavior. This is in sharp contrast to previous classical approaches that partition inelastic strain into uncoupled plastic and creep components. Predicted stress-strain responses from these models were evaluated against monotonic and cyclic test results for uniaxial specimens of two cast nickel-base alloys, B1900+Hf and Rene' 80. Previously obtained tension-torsion test results for Hastelloy X alloy were used to evaluate multiaxial stress-strain cycle predictions. The unified models, as well as appropriate algorithms for integrating the constitutive equations, were implemented in finite-element computer codes.
机译:开发了统一的本构材料模型,用于飞机燃气涡轮发动机组件的结构分析,特别是应用于高压级涡轮叶片和叶片的各向同性材料。考虑了Bodner和Walker独立提出的模型的形式或组合。这些理论将非弹性的与时间有关和与时间无关的方面组合成连续的行为谱。这与以前的经典方法形成鲜明对比,以前的经典方法将非弹性应变分为未耦合的塑性和蠕变分量。针对两种铸造镍基合金B1900 + Hf和Rene'80的单轴试样的单调和循环测试结果,评估了这些模型的预测应力-应变响应。使用先前获得的Hastelloy X合金的拉伸-扭转测试结果来评估多轴应力-应变循环预测。在有限元计算机代码中实现了统一的模型以及用于整合本构方程的适当算法。

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