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A comparative analysis of air-inflated and foam seat cushions for truck seats

机译:卡车座椅空气充气和泡沫座垫的比较分析

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_A comprehensive comparison between an air-inflated seat cushion designed for truck seats and a commonly used foam cushion is provided, using a single-axis test rig designed for seat dynamic testing. Different types of tests were conducted in order to evaluate various aspects of each type of cushion; in terms of their response to narrow-band (single frequency) dynamics, broadband input of the type that is commonly used in the trucking industry for testing seats, and a step input for assessing the damping characteristics of each cushion. The tests were conducted over a twelve-hour period-in four-hour intervals-measuring the changes that occur at the seat cushion over time and assessing how these changes can affect the metrics that are used for evaluating the cushions. The tests indicated a greater stiffening of the foam cushion over time, as compared with the air-inflated cushion that showed almost no change in stiffness when exposed to a static weight for twelve hours. Furthermore, pressure measurements at the seat showed higher-pressure concentrations for the foam cushion at the bony prominence of the seat profile-namely, the ischial tuberosities-as compared to the air-inflated cushion. A series of tests aimed at evaluating the damping properties of each cushion showed both cushions to have nearly identical damping properties. Other methods used for evaluating the dynamic properties of the two seat cushions included those recommended by studies in the past, as well as new techniques that were developed specifically for this study. The results show that the air-inflated seat cushion can provide significant improvements in pressure distribution between the seat cushion and the driver, therefore providing a more comfortable ride and possibly causing less fatigue.
机译:空气充气座垫设计用于卡车座位和一个常用的泡沫衬垫之间_A综合比较提供,使用单轴试验台设计用于座椅动态测试。不同类型的试验,以评价每种类型的垫的各个方面进行;在其响应于窄带(单频率)动力学,宽带是通常在货运业用于测试座椅的类型的输入,以及用于评估每个缓冲的阻尼特性的步骤输入的条款。该试验进行了超过12小时的期间,在4小时的间隔测量随着时间的推移发生在座垫的变化,并评估这些变化是如何影响被用于评估垫子的指标。测试表明更大的随时间的泡沫垫的加强,与空气充气垫当暴露于一个静态重量十二个小时显示出刚度几乎没有变化进行比较。此外,在座椅的压力测量在座椅的骨性隆起显示出对泡沫衬垫较高压力的浓度轮廓即,相比于空气充气垫坐骨结节作为-。一系列的旨在评估每个缓冲的阻尼性能试验表明既垫子具有几乎相同的阻尼特性。用于评估两个座垫的动态特性的其他方法包括在这些建议在过去的研究中,以及该是为这项研究专门开发的新技术。结果表明,在空气充气的座垫可以在座垫和驱动器之间的压力分布提供显著的改进,因此提供了更舒适的乘坐,并可能引起较少疲劳。

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