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Generation of filament-winding paths for complex axisymmetric shapes based on the principal stress field

机译:基于主应力场的复杂轴对称形状细丝缠绕路径的生成

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Filament winding is a process in which glass or carbon fibers are wound around a mandrel to form fiber-reinforced structures of a desired shape. The strength of the fiber-reinforced part is maximized when the fiber direction coincides with the direction of the major principal stress of the part. Previous studies addressed methods to calculate the winding paths of maximum strength by adjusting the mandrel shapes. However, these methods are not appropriate for predetermined shapes that are fixed to satisfy certain special requirements. This study proposes a method to generate filament-winding paths using the principal stress fields of the part to be manufactured. In this method, variable winding directions as close as possible to the major principal stress directions of the product are calculated to generate filament-winding paths that can support the maximum load without slippage. The proposed method had the advantage of not being limited by the complexity of axisymmetric mandrel shape. (C) 2016 Elsevier Ltd. All rights reserved.
机译:细丝缠绕是其中将玻璃纤维或碳纤维缠绕在心轴上以形成所需形状的纤维增强结构的过程。当纤维方向与零件的主要主应力方向一致时,纤维增强零件的强度将最大化。先前的研究提出了通过调整心轴形状来计算最大强度的卷绕路径的方法。但是,这些方法不适用于固定以满足某些特殊要求的预定形状。这项研究提出了一种使用要制造零件的主应力场生成细丝缠绕路径的方法。在这种方法中,计算出尽可能接近产品主要主应力方向的可变缠绕方向,以生成可以支撑最大载荷而不会打滑的细丝缠绕路径。所提出的方法的优点是不受轴对称心轴形状的复杂性的限制。 (C)2016 Elsevier Ltd.保留所有权利。

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