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A static test method to assess swivel seat strength in frontal impact

机译:评估正面撞击中旋转座椅强度的静态测试方法

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摘要

Mechanical swivel seat adaptations are a key aftermarket disability modification to any small-to medium-sized passenger vehicle. However, the crashworthiness of these devices is currently unregulated and the existing 20g dynamic sled testing approach is prohibitively expensive for prototype assessment purposes. In this paper, an alternative quasi-static test method for swivel seat assessment is presented, and two different approaches (free-body diagram and multibody modelling) validated through published experimental data are developed to determine the appropriate loading conditions to apply in the quasi-static testing.Results show the two theoretical approaches can give similar results for estimating the quasi-static loading conditions, and this depends on the seatbelt configuration. Application of the approach to quasi-static testing of both conventional seats and those with integrated seat belts showed the approach to be successful and easy to apply. It is proposed that this method be used by swivel seat designers to assess new prototypes prior to final validation via the traditional 20g sled test.
机译:对于任何中小型乘用车,机械式转椅座椅改装都是关键的售后市场改装。但是,这些设备的耐撞性目前尚未受到监管,并且现有的20g动态滑板测试方法对于原型评估而言过于昂贵。在本文中,提出了一种用于旋转座椅评估的准静态测试替代方法,并开发了两种不同的方法(自由体图和多体建模),这些方法通过已发布的实验数据进行了验证,以确定适用于准静态测试的合适载荷条件。结果表明,两种理论方法在估计准静态载荷条件方面可以给出相似的结果,这取决于安全带的配置。该方法在常规座椅和集成安全带座椅的准静态测试中的应用表明,该方法是成功且易于应用的。建议旋转座椅设计者使用此方法在通过传统20g雪橇测试进行最终验证之前评估新原型。

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