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Strength Characteristic of Polyurethane with Variation of Polyol to Isocyanate Mix Ratio: A Numerical Analysis

机译:多元醇变化的聚氨酯强度特征与异氰酸酯混合比:数值分析

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Based on numerical analysis, we determine the ideal mix ratio of polyol-isocyanate content that influence the strength characteristic of polyurethane foam subjected to axial loadings. This paper focuses on compressive strength characteristics and provides the solution for ideal mix ratios of polyurethane foam. Fourteen (14) mix ratios are investigated in the numerical analyses; i.e. 1:0.59, 1:0.67, 1:0.77, 1:1.00, 1:1.10, 1:1.20, 1:1.30, 1:1.40, 1:1.50, 1:1.60, 1:1.70, 1:1.80, 1:1.90 and 1:2.00. The ABAQUS is adopted to measure the strength characteristic effects of each mix ratios and the numerical results are compared with the experimental results obtained in [1]. It is found that the maximum compressive strength is achieved with 1:2 mix ratio. This result is identical on both experimental work and numerical analysis. It is shown that the isocyanate ratio in polyol to isocyanate ratio increases the compressive strength. In conclusion, the ideal polyol-isocyanate content is determined with the relationship between the compressive stress and polyol-isocyanate content variation. It is observed that the 1:1 of polyol-isocyanate content provides an adequate expansion and compressive strength.
机译:基于数值分析,确定影响轴向载荷的聚氨酯泡沫强度特性的多元醇异氰酸酯含量的理想混合比。本文侧重于抗压强度特性,并提供了用于聚氨酯泡沫的理想混合比的解决方案。在数值分析中研究了十四(14)(14)个混合比; IE 1:0.59,1:0.67,1:0.77,1:1.00,1:1.10,1:1.20,1:1.30,1:1.40,1:1.50,1:1.60,1:1.70,1:1.80,1:1:1.70,1:1.80,1:1 :1.90和1:2.00。采用ABAQU来测量每种混合比的强度特征效应,并将数值结果与[1]中获得的实验结果进行比较。发现最大抗压强度以1:2混合比率实现。这一结果在两种实验工作和数值分析时都是相同的。结果表明,多元醇与异氰酸酯比的异氰酸酯比增加了抗压强度。总之,用压缩应力和多元醇异氰酸酯含量变化的关系确定理想的多元醇异氰酸酯含量。观察到多元醇异氰酸酯含量的1:1提供了足够的膨胀和抗压强度。

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