Integration of a Multi-scale Homogenization Model into Finite Element Software for Predicting Mechanical Properties of Bulk Moulding Compound (BMC) Composite

L. Nhung, Vu Dinh Quy, V. Huy, Phan Truc Dien
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Abstract

Bulk Moulding Compound (BMC) is a short fiber composite with random orientation, used in many industrial sectors such as automotive, electrical,... Design and optimization of composite structures made of BMC meet difficulties due to the nature of this material and thus have not been integrated in the finite element software. This paper introduces a method to build and integrate a new computational model into finite element software (ABAQUS). The chosen model is a multi-scale homogenization model, which helps to calculate mechanical properties of composite materials by using the properties of the components and orientation tensor. This integration can be applied for prediction of composite properties on many kinds of materials, reducing time and cost for suppliers when it comes to optimization of mechanical properties.
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基于多尺度均匀化模型的BMC复合材料力学性能有限元预测
大块成型复合材料(BMC)是一种具有随机取向的短纤维复合材料,广泛应用于汽车、电气、…由于BMC材料的性质,其复合结构的设计和优化遇到了困难,因此尚未集成到有限元软件中。本文介绍了一种在有限元软件(ABAQUS)中建立和集成新的计算模型的方法。所选择的模型是一种多尺度均质化模型,该模型利用组分的性质和方向张量来计算复合材料的力学性能。这种集成可以应用于多种材料的复合性能预测,减少供应商在机械性能优化方面的时间和成本。
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