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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Rate-Dependence of Off-Axis Tensile Behavior of Cross-Ply CFRP Laminates at Elevated Temperature and Its Simulation
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Rate-Dependence of Off-Axis Tensile Behavior of Cross-Ply CFRP Laminates at Elevated Temperature and Its Simulation

机译:交叉CFRP层压板在高温下轴外拉伸行为的速率相关性及其模拟

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The present paper focuses on experimental verification of the ply-by-ply basis inelastic analysis of multidirectional laminates. First of all, rate dependence of the tensile behavior of balanced symmetric cross-ply T800H/epoxy laminates with a [0/90]3s lay-up under off-axis loading conditions at 100 deg C is examined. Uni-axial tension tests are performed on plain coupon specimens with various fiber orientations [theta/(90 -theta)]_(3s) (theta = 0, 5,15,45 and 90 deg ) at two different strain rates (1.0 and 0.01 percent/min). The off-axis stress-strain curves exhibit marked nonlinearity for all the off-axis fiber orientations except for the on-axis fiber orientations theta = 0 and 90 deg , regardless of the strain rates. Strain rate has significant influences not only on the off-axis flow stress in the regime of nonlinear response but also on the apparent off-axis elastic modulus in the regime of initial linear response. A macromechanical constitutive model based on a ply viscoplasticity model and the classical laminated plate theory is applied to predictions of the rate-dependent off-axis nonlinear behavior of the cross-ply CFRP laminate. The material constants involved by the ply viscoplasticity model are identified on the basis of the experimental results on the unidirectional laminate of the same carbon/epoxy system. It is demonstrated that good agreements between the predicted and observed results are obtained by taking account of the fiber rotation induced by deformation as well as the rate dependence of the initial Young's moduli.
机译:本文着重于多方向层压板逐层非弹性分析的实验验证。首先,研究了在100℃下轴外负载条件下,[0/90] 3s叠层的平衡对称交叉多层T800H /环氧树脂层压板的拉伸性能与速率的相关性。在两种不同的应变速率(1.0和1.0)下,对具有各种纤维取向[θ/(90θ)] _(3s)(θ= 0、5、15、45和90度)的普通试样进行单轴拉伸测试。 0.01%/分钟)。轴外应力-应变曲线对于所有轴外纤维取向都显示出明显的非线性,除了轴上纤维取向theta = 0和90度之外,与应变率无关。应变速率不仅对非线性响应状态下的轴外流动应力有重大影响,而且对初始线性响应状态下的视轴外弹性模量也有重要影响。基于层粘塑性模型和经典层合板理论的宏观力学本构模型被用于预测层间CFRP层合物的速率相关的离轴非线性行为。基于在相同碳/环氧体系的单向层压板上的实验结果,可以确定帘布层粘塑性模型所涉及的材料常数。结果表明,通过考虑变形引起的纤维旋转以及初始杨氏模量的速率依赖性,可以在预测结果和观察结果之间取得良好的一致性。

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