Modeling and simulation of the vacuum forming of wood fiber-filled thermoplastic composites

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作者
Department of Mechanical Engineering, Chang Gung College of Medicine and Technology, Tao-Yuan [1 ]
333, Taiwan
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来源
Polym Compos | / 6卷 / 673-680期
关键词
Viscoelasticity - Filled polymers - Finite element method - Polypropylenes - Reinforced plastics - Thickness control - Wood products;
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摘要
Vacuum forming of wood fiber-filled thermoplastic composite sheets has become an important process in the industry because of their low cost, good formability, and high strength to weight. Nonuniform thickness distribution of a vacuum formed part caused by inappropriate mold design and processing condition is one of the problems that confound the overall success of this technique. A novel viscoelastic model of two-dimensional finite element scheme, with eight noded overlay isoparametric elements was developed to numerically simulate the vacuum forming of wood fiber filled isotactic polypropylene. Computed results are in agreement with literature experimental data. Numerical simulation of a vacuum forming process can be used to optimize the molds and the forming parameters to achieve a product with ideal thickness distribution. Copyright © 1997 Society of Plastics Engineers.
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