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Lay-up optimisation of fibre metal laminates based on fatigue crack propagation and residual strength

机译:基于疲劳裂纹扩展和残余强度的纤维金属层压板铺放优化

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摘要

A methodology to design and optimise fibre metal laminates for improved fatigue and damage tolerance properties is presented. The lay-ups are defined in a systematic manner where the number and thickness of metal layers are varied and the lay-ups are divided into grades in which the amount and orientation of the fibre plies in the fibre layers are defined. The optimisation procedure is implemented with genetic algorithms and the lay-ups are designed such that the fatigue crack propagation or residual strength criteria is satisfied. The design criteria are evaluated using prediction methods and fitness approximations of these prediction methods. The latter evaluation aims to speed up the optimisation procedure. The functions of the fitness approximation are verified against the prediction methods and the design solutions of both evaluation methods are in compliance with each other. In conclusion, the procedure managed to find the optimal solutions within the design space while an improvement in computation time is achieved with the use of fitness approximation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种设计和优化纤维金属层压板以改善疲劳和抗损伤性能的方法。叠层是以系统的方式定义的,其中金属层的数量和厚度是变化的,并且叠层被划分为多个等级,其中,定义了纤维层中纤维层的数量和取向。使用遗传算法执行优化程序,并设计叠层,以便满足疲劳裂纹扩展或残余强度标准。使用预测方法和这些预测方法的适用性近似来评估设计标准。后一个评估旨在加快优化过程。针对预测方法验证了适应度逼近的功能,并且两种评估方法的设计解决方案彼此一致。总而言之,该程序设法在设计空间内找到最佳解决方案,同时通过使用适应度近似来缩短计算时间。 (C)2015 Elsevier Ltd.保留所有权利。

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