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The role of microstructure on the mechanical properties of polyurethane foams containing thermoregulating microcapsules

机译:微观结构对含热胶囊微胶囊的聚氨酯泡沫力学性能的作用

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Rigid polyurethane foams with up to 50 wt% of microcapsules from LDPE-EVA containing Rubitherm((R))RT27 were synthesized. The influence of microcapsules on the foams density, microstructure and mechanical resistance was studied. Cell size and strut and wall thicknesses were analyzed by SEM. The relationships between densities and foam microstructures with their Young's moduli and collapse stress were found by the Gibson and Ashby formulations and the Kerner equation for mechanical properties of composites. It was found a cell structure change from polyhedral closed-cells to spherical or amorphous open-cells. A good agreement between the experimental and theoretical data was observed but requiring a cell form factor. Thus, Fitting parameters confirmed the high trend of these microcapsules to be incorporated into the foam cell walls and the form factors depicted the abrupt change of cell morphology. Thus, these equations are suitable for predicting the mechanical properties of foams containing fillers of low mechanical resistance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:合成了含Rubitherm((R))RT27的LDPE-EVA微胶囊含量高达50%的硬质聚氨酯泡沫塑料。研究了微胶囊对泡沫密度、微观结构和机械阻力的影响。通过SEM分析了孔尺寸、支柱和壁厚。通过Gibson和Ashby公式以及复合材料力学性能的Kerner方程,发现了密度和泡沫微观结构与其杨氏模量和坍塌应力之间的关系。发现细胞结构由多面体封闭细胞转变为球形或无定形开放细胞。观察到实验数据和理论数据之间有很好的一致性,但需要一个细胞形状因子。因此,拟合参数证实了这些微胶囊融入泡沫细胞壁的高趋势,形状因子描述了细胞形态的突变。因此,这些方程适用于预测含有低机械阻力填料的泡沫的机械性能。(C) 2017爱思唯尔有限公司版权所有。

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