首页> 外文会议>Proceedings of the ASME international mechanical engineering congress and exposition 2009 >TEMPERATURE EFFECT ON THE DYNAMIC CHARACTERISTIC OF THE AIRCRAFT SEAT CUSHION
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TEMPERATURE EFFECT ON THE DYNAMIC CHARACTERISTIC OF THE AIRCRAFT SEAT CUSHION

机译:温度对飞机座椅垫动态特性的影响

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The aim of this study is to identify the affect of significant variables like cushion thickness, rate sensitivity and temperature influencing the pelvic lumbar load of the seated occupant during vertical crash. Aircraft seat cushions are exposed to varying temperature ranges during their lifetime. Currently the Federal Aviation Regulations require the seat cushions to be tested and certified at room temperature. The objective of this study is achieved by conducting quasi-static test on cushions with different rate sensitivity and with different thickness, at extreme temperatures to determine the variations in their dynamic characteristics. The various seat cushions are tested with different combination of the factors to determine their characteristics and to predict their dynamic behavior. The prediction is based on the mathematical model developed suing biodynamic code MADYMO which is validated with one of the Dynamic sled test. The sensitivity analysis is carried on this validated model to understand the percentage contribution of various input factors affecting the lumbar load. Factorial design is selected at two levels for each factor. This sensitivity analysis facilitates different combinations of these factors to get better insight in the relation between the response and the factors.
机译:这项研究的目的是确定重大变量的影响,如坐垫厚度,速率敏感性和温度,这些影响在垂直碰撞期间影响就座乘员的骨盆腰部负荷。飞机座垫在其使用寿命中会暴露于变化的温度范围。当前,《联邦航空条例》要求座垫必须在室温下进行测试和认证。这项研究的目的是通过在极端温度下对具有不同速率灵敏度和不同厚度的垫子进行准静态测试来确定其动态特性的变化来实现的。对各种座垫进行了不同因素组合测试,以确定其特性并预测其动态行为。该预测基于使用生物动力学代码MADYMO开发的数学模型,该数学模型已通过动态雪橇测试之一进行了验证。在此经过验证的模型上进行了敏感性分析,以了解影响腰部负荷的各种输入因素的百分比贡献。为每个因子在两个级别选择因子设计。这种敏感性分析有助于这些因素的不同组合,以更好地了解响应与因素之间的关系。

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