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Towards a real-time pneumatic tire performance prediction using an advanced tire-ice interface model

机译:使用高级轮胎-冰界面模型进行实时充气轮胎性能预测

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Icy road conditions and tire operational parameters play a vital role in determining the overall performance of a vehicle. This study builds on prior work in the researchers’ group. The Advanced Tire-Ice Interface Model (ATIIM) simulates the temperature rise in the contact patch based on the measured pressure distribution and the thermal properties of the tread compound and of the ice surface. It has the capability to simulate the height of the thin water film created from the melted ice, to predict the tractive performance, and to estimate the viscous friction due to the water layer and the influence of braking operations, including the locked wheel condition. The experimental investigation included measuring the bulk temperature distribution in the contact patch to validate the temperature rise simulations of the ATIIM. As shown by the simulations and the test data, a rise in temperature was observed from the leading edge to the trailing edge of the contact patch. As the wheel load increases, the difference in temperature rise increases, as also reflected in the experimental study. When the temperature difference was significant, a thin water film was observed that resulted in a reduction of friction, which was simulated using the ATIIM.
机译:冰冷的路况和轮胎工作参数在确定车辆的整体性能中起着至关重要的作用。这项研究是建立在研究人员小组先前工作的基础之上的。先进的轮胎-冰界面模型(ATIIM)基于测得的压力分布以及胎面胶和冰面的热性能,模拟了接触面的温度升高。它具有模拟由融化的冰形成的薄水膜的高度,预测牵引性能以及估算由于水层和制动操作(包括车轮锁定状态)的影响而产生的粘滞摩擦的能力。实验研究包括测量接触贴片中的整体温度分布,以验证ATIIM的温升模拟。如仿真和测试数据所示,从贴片的前缘到后缘观察到温度升高。随着车轮载荷的增加,温升的差异也增加,这也反映在实验研究中。当温度差很大时,观察到水薄膜很薄,从而减少了摩擦,这是使用ATIIM模拟的。

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