首页> 外文会议>Asia-Pacific Symposium on Engineering Plasticity and Its Applications(AEPA 2006); 20060925-29; Nagoya(JP) >A Modified Kinematic-Hardening Viscoplasticity Model for Off-Axis Creep Behavior of Unidirectional CFRPs at High Temperature
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A Modified Kinematic-Hardening Viscoplasticity Model for Off-Axis Creep Behavior of Unidirectional CFRPs at High Temperature

机译:高温下单向CFRP轴外蠕变行为的修正运动学强化粘塑性模型

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摘要

A macromechanics constitutive model to describe the anisotropic creep behavior of unidirectional composites under off-axis loading conditions is developed with a particular emphasis on accurate prediction of temporal creep softening due to stress variation. A viscoplasticity model that takes account of a combined isotropic and kinematic hardening is adopted as a base for this formulation, and the evolution equation of the kinematic hardening variable is elaborated to enhance the accuracy of prediction of the transient creep softening due to stress variation. Validity of the modified kinematic-hardening viscoplasticity model is evaluated by comparing with the experimental results on unidirectional T800H/3631 carbon/epoxy composites. It is demonstrated that the proposed model can adequately describe the off-axis creep behavior of the unidirectional CFRP laminate under constant and variable stress conditions.
机译:建立了描述单轴复合材料在轴外载荷条件下各向异性蠕变行为的宏观力学本构模型,特别强调了由于应力变化而引起的时间蠕变软化的准确预测。该公式采用考虑了各向同性和运动学硬化相结合的粘塑性模型作为基础,并阐述了运动学硬化变量的演化方程,以提高预测由于应力变化而引起的瞬态蠕变软化的准确性。通过与单向T800H / 3631碳/环氧树脂复合材料的实验结果进行比较,评估了改进的运动硬化粘塑性模型的有效性。结果表明,所提出的模型能够充分描述单向CFRP层压板在恒定和可变应力条件下的离轴蠕变行为。

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