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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Modelling the deformation of continuous fibre-reinforced thermoplastics subjected to hygrothermal loading
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Modelling the deformation of continuous fibre-reinforced thermoplastics subjected to hygrothermal loading

机译:对湿热负荷进行连续纤维增强热塑性塑料的变形

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摘要

For the application of continuous fibre-reinforced thermoplastics in car body structures it has to be ensured that they can pass through the automotive paint shop. There are substantial chemical, hygroscopic and thermal impacts throughout this process that can affect the shape of such components. The aim of this study is to model the deformation behaviour of continuous fibre-reinforced thermoplastics under hygrothermal loading. Relaxation tests were performed to assess temperature-dependent and viscoelastic behaviour. Input parameters for temperature and moisture distribution were determined experimentally and computed using finite difference method. A straightforward approach based on classical laminate theory is presented that comprises anisotropic viscoelasticity as well as hygroscopic, thermal and polymer-chemical effects. The introduced phenomenological model was successfully used to describe the deformation of five different laminate layups both dry and fully saturated with moisture.
机译:为了在汽车体结构中施加连续纤维增强热塑性塑料,必须确保它们可以通过汽车涂料店。在该过程中存在大量的化学,吸湿性和热冲击,这可以影响这些组分的形状。本研究的目的是在湿热载荷下模拟连续纤维增强热塑性塑料的变形行为。进行弛豫测试以评估温度依赖性和粘弹性的行为。通过有限差分法测定温度和水分分布的输入参数和计算。提出了一种基于经典层压理论的直接方法,其包括各向异性粘弹性以及吸湿,热和聚合物 - 化学效果。引入的现象模型成功地描述了五种不同层压体叠层的变形,两种不同的层压体积干燥并完全饱和水分。

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