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首页> 外文期刊>Journal of Applied Polymer Science >Mathematical model for the pultrusion of blocked PU-UP matrix composites
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Mathematical model for the pultrusion of blocked PU-UP matrix composites

机译:嵌段PU-UP基复合材料拉挤的数学模型。

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The thermokinetic behavior of blocked polyurethane (PU)-unsaturated polyester (UP)-based composites during the pultrusion of glass-fiber-reinforced composites was investigated utilizing a mathematical model that accounted for the heat transfer and heat generation during curing. The equations of continuity and energy balance, coupled with a kinetic expression for the curing system, were solved using a finite difference method to calculate the temperature profiles and conversion profiles in the thickness direction in a rectangular pultrusion die. A kinetic model, dP/dt = A exp(-E/RT)P-m(1 - P)(n), was proposed to describe the curing behavior of a blocked PU-UP resin. Kinetic parameters for the model were obtained from dynamic differential scanning calorimetry scans using a multiple regression technique, which was able to predict the effects of processing parameters on the pultrusion. The effects of processing parameters including pulling speed, die wall temperature, and die thickness on the performance of the pultrusion also were evaluated. (C) 2003 Wiley Periodicals, Inc. [References: 21]
机译:利用数学模型研究了在固化玻璃纤维增​​强复合材料拉挤过程中嵌段聚氨酯(PU)-不饱和聚酯(UP)基复合材料的热动力学行为。使用有限差分法求解连续性和能量平衡方程,并结合固化系统的动力学表达式,以计算矩形拉挤模具中厚度方向的温度曲线和转化曲线。提出了动力学模型dP / dt = A exp(-E / RT)P-m(1- P)(n)来描述嵌段PU-UP树脂的固化行为。使用多元回归技术从动态差示扫描量热法扫描获得模型的动力学参数,该技术能够预测加工参数对拉挤成型的影响。还评估了包括拉速,模具壁温和模具厚度在内的加工参数对拉挤成型性能的影响。 (C)2003 Wiley Periodicals,Inc. [参考:21]

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