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A thermomechanical model for the analysis of disc brake using the finite element method in frictional contact

机译:使用有限元法在摩擦接触中分析盘式制动的热机械模型

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In this work, a numerical simulation of the transient thermal analysis and the static structural one was performed here sequentially, with the coupled thermo-structural method using the ANSYS software. Numerical procedure of calculation relies on important steps such that the CFD thermal analysis has been well illustrated in 3D, showing the effects of heat distribution over the brake disc. This CFD analysis helped in the calculation of the values of the thermal coefficients (h) that have been exploited in the 3D transient evolution of the brake disc temperatures. Three different brake disc materials were selected in this simulation and comparative analysis of the results was conducted in order, to derive the one with the best thermal behavior. Finally, the resolution of the coupled thermomechanical model allows to visualize other important results of this research such as; the deformations, and the equivalent stresses of Von Mises of the disc, as well as the contact pressure of the brake pads. Following our analysis and results we draw from it, we derive several conclusions. The choice makes it possible to deliver the best brake rotor so as to ensure and guarantee the good braking performance of the vehicles.
机译:在这项工作中,顺序地在此顺序地进行瞬态热分析和静态结构的数值模拟,使用ANSYS软件的耦合热结构方法进行。计算的数值过程依赖于重要步骤,使得CFD热分析在3D中得到了很好地说明,显示了热分布在制动盘上的影响。该CFD分析有助于计算在制动盘温度的3D瞬态演进中被利用的热系数(H)的值。在该模拟中选择三种不同的制动盘材料,并按顺序进行结果进行比较分析,以导出具有最佳热行为的结果。最后,耦合热机械模型的分辨率允许可视化该研究的其他重要结果如;椎间盘的vonmm的变形和等效应力,以及制动衬块的接触压力。在我们的分析和结果遵循我们的分析和结果,我们得出了几个结论。选择使得可以提供最佳制动转子,以确保和保证车辆的良好制动性能。

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