飞机轮胎转弯时的热-力学耦合分析

A. Konde, I. Rosu, F. Lebon, Olivier Brardo, B. Devésa
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引用次数: 18

摘要

利用实验装置、基于有限元软件的模型和用局部摩擦系数表示滑橇产生的热量随温度变化的适当方法,预测了飞机轮胎的热力学行为。在热-力学模型中,稳态力学分析与瞬态热问题相结合。该方法基于三个主要计算步骤:变形步骤、耗散步骤和热步骤。变形步骤计算应力场和速度场,并将其作为耗散步骤的输入,计算摩擦产生的热量。假定内部耗散可以忽略不计。最后,热步骤根据耗散步骤计算的热流密度生成新的热图。通过在前两步中更新摩擦系数来建立耦合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermomechanical analysis of an aircraft tire in cornering using coupled ale and lagrangian formulations
The thermomechanical behavior of an aircraft tire is predicted, using experimental devices, a model based on finite element software and an appropriate method of expressing the heat generated by skid in terms of the local friction coefficient, depending on the temperature. In the thermomechanical model, a steady state mechanical analysis is combined with a transient thermal problem. This combined approach is based on three main computing steps: the deformation step, the dissipation step and the thermal step. The deformation step calculates the stress and the velocity fields, which are used as inputs in the dissipation step to calculate the heat generated due to friction. The internal dissipation is assumed to be negligible. Finally, the thermal step yields new thermal maps based on the heat flux computed in the dissipation step. The coupling is established by updating the friction coefficient in the first two steps.
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