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Prediction of Automotive Side Swing Door Closing Effort

机译:预测汽车侧摆动门关闭努力

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The door closing effort is a quality issue concerning both automobile designers and customers. This paper describes an Excel-based mathematical model for predicting the side door closing effort in terms of the required minimum energy or velocity, to close the door from a small open position when the check-link ceases to function. A simplified but comprehensive model is developed which includes the cabin pressure (air bind), seal compression, door weight, latch effort, and hinge friction effects. The flexibility of the door and car body is ignored. Because the model simplification introduces errors, we calibrate it using measured data. Calibration is also necessary because some input parameters are difficult to obtain directly. In this work, we provide the option to calibrate the hinge model, the latch model, the seal compression model, and the air bind model. The door weight effect is geometrically exact, and does not need calibration. The capabilities and accuracy of the developed model are demonstrated using the front and rear doors of a production vehicle.
机译:门关闭努力是一项关于汽车设计师和客户的质量问题。本文介绍了一种基于Excel的数学模型,用于在检查链路停止功能时从所需的最小能量或速度预测侧门关闭努力,从小的打开位置关闭门。开发了一种简化但综合的模型,包括机舱压力(空气绑定),密封压缩,门重,闩锁工作和铰链摩擦效应。忽略了门和车身的灵活性。由于模型简化引入错误,因此我们使用测量数据校准它。校准也是必要的,因为一些输入参数难以直接获得。在这项工作中,我们提供校准铰链模型,闩锁模型,密封压缩模型和空气绑定模型的选项。门重量效果是几何精确的,并且不需要校准。使用生产车辆的前门和后门来证明开发模型的能力和准确性。

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