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A fast algorithm for the elastic fields due to interacting fibre breaks in a periodic fibre composite

机译:周期性纤维复合材料中的相互作用纤维断裂引起的弹性场快速算法

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Monte Carlo simulations of the failure of unidirectional fibre composites typically require numerous evaluations of the stress-state in partially damaged composite patches. In a simulated composite patch comprised of N fibres, of which fibres are broken in a common cross-sectional plane transverse to the fibre direction, the stress overloads in the intact fibres are given by the weighted superposition of the unit break solutions associated with each of the breaks. Determining the weights involves solving linear equations, and determining overloads in the intact fibres requires matrix-vector multiplication. These operations require , and floating point operations, respectively. These costs become prohibitive for large N, and ; they limit Monte Carlo failure simulations to composite patches of only a few thousand fibres. In the present work, a fast algorithm to determine the overloads in a partially damaged composite, requiring floating point operations, is proposed. This algorithm is based on the discrete Fourier transform. The efficiency of the proposed method derives from the computational simplicity of weighted superposition in Fourier space. Computations of the stress state ahead of large circular clusters of breaks in composite patches comprised of about one million fibres are used to demonstrate the efficiency of the proposed algorithm.
机译:单向纤维复合材料的失效的蒙特卡罗模拟通常需要在部分损坏的复合贴片中的应力状态进行许多评价。在由n纤维组成的模拟复合贴片中,在横向于纤维方向的公共横截面中破坏纤维,完整纤维中的应力过载由与每个的单位断开解决方案的加权叠加给出休息。确定权重涉及求解线性方程,并确定完整光纤中的过载需要矩阵矢量乘法。这些操作分别需要和浮点操作。这些成本对大型N和Livent且;它们将Monte Carlo失效模拟限制为只有几千纤维的复合斑块。在本作工作中,提出了一种快速算法,用于确定需要浮点操作的部分损坏的复合材料中的过载。该算法基于离散的傅里叶变换。所提出的方法的效率源于傅里叶空间中加权叠加的计算简单性。使用大约一百万纤维组成的复合贴片中大圆形斑块的压力状态的计算用于展示所提出的算法的效率。

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