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Method to determine the required microstructure size to be represented by a second order fibre orientation tensor using X-ray micro computed tomography to evaluate compression moulded composites

机译:确定所需的微结构尺寸的方法,该尺寸由使用X射线微计算机断层扫描技术评估压缩成型复合材料的二阶纤维取向张量表示

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The second order fibre orientation tensor has been used to predict the mechanical response of injection and compression moulded composites with the capability to couple mould filling with structural finite element simulations to account for the microstructure. In order to accurately model these materials the mesh size used simulations must be representative of the actual microstructure of the composite. Herein a method to determine the microstructure size required to achieve a near constant value of the orientation tensor based on its derivative is presented. The method is demonstrated with the microstructure of a sheet moulding compound composite which has been evaluated using X-ray micro computed tomography. The average values of the derivative of the orientation tensor and its standard deviation approach constant values with increasing microstructure size. For the material considered a microstructure size of 5 mm square is sufficient to achieve a near constant value of the fibre orientation tensor, which is called a microstructural unit.
机译:二阶纤维取向张量已用于预测注塑和压塑复合材料的机械响应,并具有将模具填充与结构有限元模拟相结合以说明微观结构的能力。为了准确地对这些材料进行建模,所使用的网格尺寸模拟必须代表复合材料的实际微观结构。本文提出了一种基于其导数确定实现取向张量的接近恒定值所需的微结构尺寸的方法。用片状模塑料复合材料的微观结构证明了该方法,该复合材料已使用X射线计算机断层扫描技术进行了评估。随着微结构尺寸的增加,取向张量的导数及其标准偏差的平均值接近恒定值。对于所考虑的材料,5mm见方的微结构尺寸足以实现纤维取向张量的近似恒定值,这被称为微结构单位。

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