首页> 外文会议>Society of Plastics Engineers Annual Technical Conference; 20070506-11; Cincinnati,OH(US) >Modeling the Rheology and Orientation Distribution of Short Glass Fibers Suspended in Polymeric Fluids: Simple Shear Flow
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Modeling the Rheology and Orientation Distribution of Short Glass Fibers Suspended in Polymeric Fluids: Simple Shear Flow

机译:模拟聚合物流体中悬浮的短玻璃纤维的流变学和取向分布:简单剪切流

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摘要

In this paper we present a constitutive relation for predicting the rheology of short glass fibers suspended in a polymeric matrix. The performance of the model is assessed through its ability to predict the steady-state and transient shear rheology as well as qualitatively predict the fiber orientation distribution of a short glass fiber (0.5 mm, L/D < 30) filled polypropylene. In this approach the total extra stress is equal to the sum of the contributions from the fibers (a special form of the Doi theory), the polymer and the rod-polymer interaction (multi-mode viscoelastic constitutive relation).
机译:在本文中,我们提出了一种本构关系,用于预测悬浮在聚合物基质中的短玻璃纤维的流变性。该模型的性能通过预测稳态和瞬态剪切流变能力以及定性预测玻璃短纤维(0.5 mm,L / D <30)填充的聚丙烯的纤维取向分布的能力来评估。在这种方法中,总的额外应力等于纤维(Doi理论的一种特殊形式),聚合物和棒-聚合物相互作用(多模粘弹性本构关系)的贡献之和。

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