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首页> 外文期刊>Journal of Applied Polymer Science >Modeling reaction kinetics of rigid polyurethane foaming process
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Modeling reaction kinetics of rigid polyurethane foaming process

机译:硬质聚氨酯发泡过程的反应动力学建模

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A theoretical model was developed to simulate the polyurethane foaming process for a rigid foam. In the model, multiple ordinary differential equations were solved by MATLAB and the model was able to predict temperature profiles by inputting foam recipe information. This initial study on foam modeling focusses on reaction kinetic parameters that were fitted to experimental temperature data as a function of time. The modeling was able to accurately model temperature profiles of single-polyol polyurethane formulations and was able to accurately predict temperature profiles of mixtures based on pure component kinetic parameters. A primary goal of this work is to expedite the ability to develop new foam formulations by simulation - especially for incorporation of new bio-based polyols into formulations.
机译:建立了理论模型来模拟硬质泡沫塑料的聚氨酯发泡过程。在该模型中,MATLAB解决了多个常微分方程,该模型能够通过输入泡沫配方信息来预测温度曲线。泡沫模型的这项初步研究着眼于反应动力学参数,这些参数适合于作为时间函数的实验温度数据。该建模能够准确地对单多元醇聚氨酯配方的温度曲线进行建模,并能够基于纯组分动力学参数准确地预测混合物的温度曲线。这项工作的主要目标是通过仿真加快开发新泡沫配方的能力-尤其是将新的生物基多元醇掺入配方中的能力。

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