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Analysis for creep behavior and collapse of thick-section composite structures

机译:厚截面复合结构的蠕变行为和倒塌分析

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摘要

A nonlinear viscoelastic and multi-scale modeling framework is used for the analysis of creep behavior and collapse of thick-section and layered composite structures. Previously developed nonlinear viscoelastic micromodels by the authors [Haj-Ali RM, Muliana AH. Micromechanical constitutive framework for the nonlinear viscoelastic behavior of pultruded composite materials. Int J Solids Struct 2003;40(5):1037-57; Haj-Ali RM, Muliana AH. A multi-scale constitutive formulation for the nonlinear viscoelastic analysis of laminated composite materials and structures. Int J Solids Struct 2004;41(13):3461-90], are used in order to generate the effective viscoelastic response of both unidirectional and random layered media. These micromodels are integrated with a displacement-based finite element (FE) model to perform structural analysis. In this study, we investigate the nonlinear creep behavior and critical time for structural collapse of composite structures. To that end, long-term behavior of composite materials is calibrated for the proposed material models. Both 3D and shell based structural models are employed in this study. Numerical applications of the proposed multi-scale viscoelastic analysis are presented for creep analyses of axially compressed I-shaped thick-section composite columns and a laminated cylinder under surface pressure. It is shown that the compressive loading ratio, along with the residual stiffness of the structure after buckling, can affect the creep behavior and the magnitude of the critical time for initiation of unstable response. The proposed models are general and can be used to examine the serviceability life of these structures.
机译:使用非线性粘弹性和多尺度建模框架来分析厚截面和层状复合结构的蠕变行为和倒塌。作者[Haj-Ali RM,Muliana AH。先前开发的非线性粘弹性微观模型。拉挤复合材料非线性粘弹性行为的微机械本构框架。 Int J Solids Struct 2003; 40(5):1037-57; Haj-Ali RM,Muliana AH。一种用于多层复合材料和结构的非线性粘弹性分析的多尺度本构公式。 Int J Solids Struct 2004; 41(13):3461-90]用于产生单向和随机分层介质的有效粘弹性响应。这些微模型与基于位移的有限元(FE)模型集成在一起以执行结构分析。在这项研究中,我们研究了复合材料结构的非线性蠕变行为和结构坍塌的临界时间。为此,针对建议的材料模型对复合材料的长期行为进行了校准。这项研究采用了3D和基于壳的结构模型。提出了所提出的多尺度粘弹性分析的数值应用,用于轴向受压的I形厚截面复合材料柱和层合圆柱在表面压力下的蠕变分析。结果表明,压缩载荷比以及屈曲后结构的残余刚度会影响蠕变行为和引发不稳定响应的临界时间。提出的模型是通用的,可用于检查这些结构的使用寿命。

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