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首页> 外文期刊>Composite Structures >Rate dependent constitutive modelling of laminated FRP composites degraded by fire
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Rate dependent constitutive modelling of laminated FRP composites degraded by fire

机译:火灾引起的层压FRP复合材料的速率依赖本构模型

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摘要

A constitutive theory is proposed for FRP laminated composite materials that is designed to account for both temperature and strain rate dependent response, such as would occur during, and after, exposure to the elevated temperatures due to fire. The theory is physically based, and in particular, is based on a kinematical framework fixed on the fabric laminates; full accounting of laminate reorientation and anisotropic response is thus achieved. The theory is numerically implemented and FEM analysis of compressive deformation of a sandwich panel, given as an example, demonstrates how common material failure modes such as kinking are naturally included in the theory and in analyses using the theory. The theory accounts for finite strains and thus the extent of deformation is arbitrary. The theory and its numerical implementation are designed specifically to perform numerical analysis of structural response of FRP structures subject to fire degradation.
机译:提出了一种用于FRP层压复合材料的本构理论,其设计目的是考虑温度和应变率相关的响应,例如在因火暴露于高温期间和之后可能发生的响应。该理论是基于物理的,尤其是基于固定在织物层压板上的运动学框架。从而实现了层合材料重新定向和各向异性响应的全面考虑。以数字方式实施该理论,并以夹层板的压缩变形的有限元分析为例,该理论证明了常见的材料破坏模式(例如扭结)如何自然地包含在该理论中以及使用该理论进行的分析中。该理论考虑了有限应变,因此变形程度是任意的。该理论及其数值实现经过专门设计,可对遭受火灾退化的FRP结构的结构响应进行数值分析。

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