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Mechanism based nonlinear constitutive model for composite laminates subjected to large deformations

机译:基于机制的复合材料层合板大变形非线性本构模型

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摘要

A nonlinear constitutive model for composite laminates is developed with the focus on the distinction among inducing mechanisms. It is shown, that the effect of fiber rotation and damage is essential in consideration of large deformations. The evolution of yielding is described by two independent hardening curves either for in-plane shear or transverse normal load. A method for the experimental determination of the hardening curves is proposed based on uniaxial tests. To ensure the applicability to structural parts, the numerical model is validated by a large number of various angle-ply tension and off-axis compression tests, fabricated of the same carbon/epoxy IM7-8552 material. Extra wide specimen geometry was used for the conducted angle-ply tension tests to prevent delamination failure. The implemented model shows excellent correlation even at very large shear strains of up to 14%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:针对复合材料层合板的非线性本构模型,重点研究了诱导机理之间的区别。结果表明,考虑到大的变形,纤维旋转和损坏的影响至关重要。屈服的发展由两个独立的硬化曲线描述,分别是平面内剪切或横向法向载荷。在单轴试验的基础上,提出了一种硬化曲线的实验确定方法。为了确保适用于结构零件,该数值模型通过大量的相同角碳/环氧树脂IM7-8552材料制成的各种角向拉伸和离轴压缩测试进行了验证。特宽的试样几何形状用于进行角度铺层张力测试,以防止分层失败。即使在高达14%的非常大的剪切应变下,所实现的模型也显示出极好的相关性。 (C)2015 Elsevier Ltd.保留所有权利。

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