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首页> 外文期刊>Computers & Structures >On a general constitutive description for the inelastic and failure behavior of fibrous laminates- Part Ⅱ: Laminate theory and applications
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On a general constitutive description for the inelastic and failure behavior of fibrous laminates- Part Ⅱ: Laminate theory and applications

机译:纤维层压板无弹性和破坏行为的一般本构描述-第二部分:层压板理论与应用

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These two parts of papers report systematically a constitutive description for the inelastic and strength behavior of laminated composites reinforced with various fiber preforms. The constitutive relationship is established microme-chanically, through layer-by-layer analysis. Namely, only the properties of the constituent fiber and matrix materials of the composites are required as input data. In the previous part (Comput. Struct, (submitted)), the lamina theory was presented. Three fundamental quantities of the laminae, i.e. the internal stresses generated in the constituent fiber and matrix materials and the instantaneous compliance matrix, with different fiber preform (including woven, braided, and knitted fabric) reinforcements were explicitly obtained by virtue of the bridging micromechanics model. In the present paper, the laminate stress analysis is shown. The purpose of this analysis is to determine the load shared by each lamina in the laminate, so that the lamina theory can be applied. Incorporation of the constitutive equations into an FEM software package is illustrated. A number of application examples are given in the paper to demonstrate the efficiency of the constitutive theory established. The predictions thus made include: failure envelopes of multidirectional laminates subjected to biaxial in-plane loads, thermo-mechanical cycling stress-strain curves of a titanium metal matrix composite laminate, S-N curves of multilayer knitted fabric reinforced laminates under tensile fatigue, and bending load-deflection plots and ultimate bending strengths of laminated braided fabric reinforced beams subjected to lateral loads. All these predictions are based on the constituent properties which were measured or available independently, and are compared with experimental results. Reasonably good correlations have been found in all the cases. It is expected that the present constitutive relationship can benefit the critical design and strength analysis of a primarily loaded structure made of composite materials.
机译:这两部分论文系统地描述了各种纤维预制件增强的层压复合材料的无弹性和强度行为。通过逐层分析,以微观力学方式建立本构关系。即,仅要求复合材料的构成纤维和基质材料的特性作为输入数据。在上一部分(计算结构,(已提交))中,提出了层板理论。通过桥接微力学模型,明确获得了三个基本量的薄片,即在构成纤维和基质材料以及瞬时柔度基质中,使用不同的纤维预成型件(包括机织,编织和针织织物)增强材料时产生的内部应力。在本文中,显示了层压板应力分析。该分析的目的是确定层压板中每个薄片所分担的载荷,以便可以应用薄片理论。说明了将本构方程纳入FEM软件包的过程。本文给出了许多应用实例,以证明所建立的本构理论的有效性。这样作出的预测包括:承受双轴面内载荷的多向层压板的破坏包络,钛金属基复合材料层压板的热机械循环应力-应变曲线,拉伸疲劳下多层针织物增强层压板的SN曲线以及弯曲载荷侧向载荷作用下的层合编织织物增强梁的挠曲曲线图和极限抗弯强度。所有这些预测均基于独立测量或可获得的组成特性,并与实验结果进行比较。在所有情况下都发现了合理的良好相关性。预期当前的本构关系可以有益于复合材料制成的主要加载结构的关键设计和强度分析。

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