Tolerance management during the design of composite structures considering variations in design parameters

被引:0
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作者
Michael Franz
Benjamin Schleich
Sandro Wartzack
机构
[1] FAU Erlangen-Nürnberg,Engineering Design
关键词
Composite structures; Tolerance optimisation; Metamodel; Endless fibre reinforced plastics;
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中图分类号
学科分类号
摘要
Composite structures play an important role in realising resource-efficient products. Their high lightweight potential and improved manufacturing technologies lead to an increased use in high-volume products. However, especially during the design and development of high-volume products, the consideration of uncertainties is essential to guarantee the final product quality. In this context, the use of modern lightweight materials, such as fibre reinforced plastics (FRP), leads to new challenges. This is due to their high number of design parameters, which are subject to deviations from their nominal values. Deviating parameters, e.g. ply angles and thicknesses, influence the manufacturing process as well as the structural behaviour of a composite part. To consider the deviating design parameters during the design process, a new tolerance optimisation approach is presented, defining tolerance values for laminate design parameters, while ensuring the functionality of the composite structure. To reduce the computational effort, metamodels are used during this optimisation to replace finite element simulations. The proposed approach is applied to a use case with different key functions to show its applicability and benefits.
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页码:1753 / 1770
页数:17
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