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Estimation of the elastic constants of highly porous cellular plastics reinforced with fibres embedded in foam struts

机译:用泡沫撑杆中嵌入的纤维增强的高多孔多孔塑料的弹性常数的估算

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摘要

In order to enhance the mechanical properties of polymer foams, fillers of different materials and sizes are being applied. Fibrous fillers shorter than the characteristic foam cell dimensions have the potential of efficient reinforcement, due to their high aspect ratio, without detrimentally interfering with foam structure. A theoretical model is developed for evaluation of the effect of filler on foam stiffness. The elastic response of rigid polymer foams filled with short fibres, of length commensurable with that of foam struts, is modelled by using the orientational averaging technique. Explicit expressions for components of the stiffness tensor of composite foams are derived in terms of elasticity characteristics of the polymer and reinforcing fibres, fibre content, foam density, and parameters of the orientational distribution of foam struts. The model is applied to describing the foam stiffness as a function of fibre loading of polyurethane foams filled with milled carbon fibres.
机译:为了增强聚合物泡沫的机械性能,正在使用不同材料和尺寸的填料。短于特征泡沫孔尺寸的纤维填料由于其高的纵横比而具有有效增强的潜力,而不会不利地干扰泡沫结构。建立了用于评估填料对泡沫刚度影响的理论模型。使用定向平均技术对填充有短纤维的长度与泡沫支柱相当的硬质聚合物泡沫的弹性响应进行建模。根据聚合物和增强纤维的弹性特性,纤维含量,泡沫密度以及泡沫支柱的定向分布参数,得出了复合泡沫的刚度张量成分的明确表达式。该模型用于描述泡沫刚度与填充有磨碎碳纤维的聚氨酯泡沫的纤维载荷的关系。

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