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Snowboard stiffness prediction model for any composite sandwich construction

机译:任意复合夹层结构的滑雪板刚度预测模型

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摘要

A new model to calculate the key snowboard properties of bending and torsional stiffness has been developed. The code allows any composite sandwich structure to be evaluated for use within a snowboard, including consideration of fabric architecture on a micro level. A geometric unit-cell approach was utilised to predict the overall fibre volume fraction, average tow undulation and areal weight for ten common fabric configurations. Elastic properties of the composite layers are calculated using Hashin's Cylinder Model, together with common coordinate transformations and volumetric averaging methods for the stiffness and compliance constants. The classical 2-D laminate theory was applied to calculate the key stiffness properties along the chord for the full snowboard composite sandwich, including consideration of the topsheet and base layer. A simple validation of the model was undertaken to confirm its applicability to modern snowboard design.
机译:已经开发了一种新的模型来计算关键的滑雪板弯曲和扭转刚度特性。该代码允许评估任何复合夹层结构在滑雪板中的使用,包括在微观层面上考虑织物结构。几何单位单元方法用于预测十种常见织物配置的总纤维体积分数,平均丝束起伏和单位面积重量。复合材料层的弹性特性是使用Hashin圆柱模型以及常见的坐标转换和体积平均方法(用于计算刚度和柔度常数)来计算的。应用经典的2-D层压板理论来计算整个滑雪板复合材料夹心板沿弦的关键刚度属性,其中包括对顶层和基础层的考虑。对模型进行了简单验证,以确认其在现代滑雪板设计中的适用性。

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