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On Effective Properties of Layers in Damaged Composite Laminates

机译:复合材料层合板层的有效性能研究

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Methodology is suggested for calculation of effective elastic constants of layer containing intralaminar cracks. Trends are presented for layers with low and medium high crack densities, where the interaction between cracks can be neglected. The effective properties of the damaged layer are determined by back- calculation using previously developed GLOB-LOC model for thermo-mechanical properties of damaged laminate [1]. It is shown that the effective transverse modulus and shear modulus of a layer decrease linearly with increasing crack density, whereas longitudinal modulus and major Poisson's ratio do not change at all. Experimental data for multiple cracking are analyzed showing that linear approximation of crack density versus applied strain may have sufficient accuracy. These two linear trends are used to calculate the effective elastic properties of a layer as a function of strain.
机译:建议使用方法来计算包含层内裂纹的层的有效弹性常数。提出了具有低和中等高裂纹密度的层的趋势,其中裂纹之间的相互作用可以忽略。受损层的有效性能是通过使用先前开发的GLOB-LOC模型对受损层压板的热机械性能进行反算来确定的[1]。结果表明,层的有效横向模量和剪切模量随裂纹密度的增加而线性降低,而纵向模量和主要泊松比完全不变。分析了多个裂纹的实验数据,表明裂纹密度与所施加应变的线性近似可能具有足够的精度。这两个线性趋势用于计算作为应变函数的层的有效弹性。

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