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Analysis of Layer Waviness in Flat Compression-Loaded Thermoplastic Composite Laminates

机译:平板压载热塑性复合材料层合板的波纹度分析

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A finite element analysis was used to investigate layer waviness effects in flat compression-loaded composite laminates. Stress distributions in the vicinity of the layer waves as well as the locations and modes of failure were investigated. Two layer wave geometries were considered, each modeled within an otherwise wave-free thermoplastic composite laminate. These two wave geometries, classified as moderate and severe, corresponded to layer waves fabricated in actual laminates and tested under uniaxial compression loading. Material nonlinearities obtained from intralaminar shear and 0 and 90 deg tension and compression testing were incorporated into the analysis. The nonlinearity observed in the intralaminar shear stress-strain behavior was assumed to be valid for interlaminar shear stress-strain behavior, and the nonlinearity observed in the 90 deg tension and compression stress-strain behavior was assumed to be valid for interlaminar normal stress-strain behavior. Failure was predicted using a maximum stress failure theory. An interlaminar tension failure was predicted for the severe layer wave geometry, producing a large compression strength reduction in comparison to the wave-free laminate. Fiber compression failure was predicted for the moderate layer wave, producing only a slight compression strength reduction. Although significant material nonlinearity was present in the interlaminar compression and shear response of the material, the inclusion of material nonlinearity produced only slight decreases in predicted compression strengths relative to predictions based on linear material behavior.
机译:有限元分析被用来研究扁平压缩复合复合材料层中的波纹度效应。研究了层波附近的应力分布以及破坏的位置和方式。考虑了两层波的几何形状,每层都在没有波的热塑性复合材料层压板中建模。这两个波的几何形状,分为中度和严重,对应于在实际层压板中制造并在单轴压缩载荷下测试的层波。通过层内剪切以及0和90度拉伸和压缩测试获得的材料非线性被纳入分析。假定在层内剪切应力-应变行为中观察到的非线性对于层间剪切应力-应变行为是有效的,并且在90度拉伸和压缩应力-应变行为中观察到的非线性被假定为对层间法向应力有效。行为。使用最大应力失效理论预测了失效。预测到了严重的层波几何形状时层间拉伸失效,与无波层合板相比,产生了很大的压缩强度降低。预测中度层波的纤维压缩破坏,只会使压缩强度稍有下降。尽管材料的层间压缩和剪切响应中存在明显的材料非线性,但是与基于线性材料行为的预测相比,材料非线性的包含只会使预测的压缩强度略有降低。

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