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Tensile progressive damage and compressive postbuckling analysis of open-hole laminate composites

机译:开孔层压复合材料的拉伸渐进式损伤与压缩出故障分析

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摘要

Laminate composites contain holes as a means of connection in industrial applications. A better understanding of the mechanical properties of open-hole components is necessary. Herein, progressive damage postbuckling analysis models are proposed for investigation of tensile damage and compressive buckling behaviors of open-hole laminate composites. The progressive damage model is based on failure criteria provided by the continuum damage mechanics model; virtual crack closure technology was employed to calculate the energy release rate for crack delamination in compressive postbuckling analysis. The models were utilized to analyze variations in the tensile and compressive mechanical properties, failure process, and buckling evolution of open-hole laminate composites using finite element analysis. The tensile failure patterns and failure processes of plies with different open-hole laminate composite angles were obtained and analyzed. Buckling characteristics, as well as the progression of buckling onset, buckling propagation, crack delamination, unstable delamination, and global buckling, were investigated. The influence of delamination crack length and crack distribution on the buckling properties of open-hole laminate composites are discussed in detail. Additionally, unstable and stable buckling characteristics were examined. The numerical results were in good agreement with theoretical and experimental results; damage initiated at the edge of a hole propagated to two sides with the onset of matrix damage, followed by fiber damage. The fiber damage of a 0 degrees-ply led ultimately to laminate failure. The laminate with a symmetrical crack distribution showed stable buckling, whereas a short, nonsymmetrical distribution of cracks usually led to unstable buckling and delamination.
机译:层压复合材料包含孔作为工业应用中的连接手段。更好地理解开放孔部件的机械性能是必要的。这里,提出了逐行损伤的出现分析模型,用于研究张开孔层压复合材料的拉伸损伤和压缩屈曲行为。逐步损害模型基于连续损伤力学模型提供的故障标准;采用虚拟裂缝关闭技术来计算压缩后裂纹分析中裂纹分层的能量释放速率。使用有限元分析,利用该模型分析抗孔层压复合材料的拉伸和压缩机械性能,故障过程和屈曲演化的变化。获得并分析了具有不同开孔层压复合角度的耐焊层的拉伸破坏图案和故障过程。调查了屈曲特性,以及屈曲发作,屈曲传播,裂缝分层,不稳定分层和全球屈曲的进展。详细讨论了分层裂缝长度和裂纹分布对开孔层压材料复合材料屈曲性能的影响。另外,检查了不稳定和稳定的屈曲特性。数值结果与理论和实验结果吻合良好;在孔的边缘发起的损坏传播到两侧,具有基质损坏的开始,然后是纤维损坏。纤维损坏为0度,最终导致层压损失。具有对称裂缝分布的层压板显示出稳定的屈曲,而短暂的不对称分布通常导致不稳定屈曲和分层。

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