首页> 外文会议>Conference Proceedings at ANTEC '98 >A NON-ISOTHERMAL MODEL TO STUDY THE INFLUENCE OF BLOWING AGENT CONCENTRATION ON POLYMER VISCOSITY AND GAS DIFFUSIVITY IN THERMOPLASTIC FOAM EXTRUSION
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A NON-ISOTHERMAL MODEL TO STUDY THE INFLUENCE OF BLOWING AGENT CONCENTRATION ON POLYMER VISCOSITY AND GAS DIFFUSIVITY IN THERMOPLASTIC FOAM EXTRUSION

机译:发泡剂挤出中发泡剂浓度对聚合物黏度和气体扩散率影响的非等温模型

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This fundamental study focuses on the influence of blowing agent on bubble growth during thermoplastic foam extrusion. The extruded molten mixture expands and cools simultaneously when exposed to ambient conditions. The bubble growth is influenced by the concentration-dependent blowing agent diffusion coefficient, transient cooling of the expanding foam, influence of blowing agent on polymer viscosity, and the escape of blowing agent from the surface of the foam. Previous models in the literature do not consider these significant influences. A model is presented accounting for those more subtle effects. In addition, a new experimental technique is described to collect experimental bubble growth data. Predictions of the new model reasonably agree with the experimental data.
机译:这项基础研究的重点是发泡剂对热塑性泡沫挤出过程中气泡生长的影响。当暴露于环境条件下时,挤出的熔融混合物同时膨胀和冷却。气泡的生长受到浓度依赖性发泡剂扩散系数,膨胀泡沫的瞬时冷却,发泡剂对聚合物粘度的影响以及发泡剂从泡沫表面逸出的影响。文献中的先前模型并未考虑这些重大影响。提出了一个模型,解释了那些更微妙的影响。另外,描述了一种新的实验技术来收集实验气泡增长数据。新模型的预测与实验数据基本吻合。

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