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Comparison between Casting and Alloy Rim Pattern on Brake Disk Cooling Using Numerical Simulation

机译:数值模拟铸造与合金边缘模式的比较

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Efficient function of brake system is considered a crucial stage in the vehicle development process. Heat exchange reduction can decrease the operational condition of braking system. Although the rims patterns have a significant role on vehicle aerodynamics, they can also have effect on air flow around the brake disk. So, selecting a rim is vital from both a safety and an aerodynamic point of view. In this paper the effect of air flow around a brake disk for two different types of rims was studied; a steel casting and an aluminum alloy rim. Numerical simulation was used for this analysis. First, the flow field around brake disk with iron casting rim was investigated at different velocities. Second, the flow field around the same brake disk system with an aluminum alloy rim was modeled at the same velocities. Finally, the effect of rim design on flow pattern over brake disk was compared. It was found that changing rim design has significant influence on velocity distribution around brake disc and pads.
机译:制动系统的有效功能被认为是车辆开发过程中的关键阶段。热交换减少可降低制动系统的操作状态。尽管轮辋图案对车辆空气动力学具有重要作用,但它们也可以对制动盘周围的空气流动产生影响。因此,从安全性和空气动力学的角度来看,选择边缘至关重要。在本文中,研究了气流围绕制动盘两种不同类型轮辋的影响;钢铸造和铝合金轮辋。用于该分析的数值模拟。首先,在不同的速度下研究了制动盘周围的制动盘周围的流场。其次,在相同的速度下建模具有铝合金边缘的相同制动盘系统周围的流场。最后,比较了RIM设计对制动盘的流动模式的影响。发现改变轮辋设计对制动盘和垫周围的速度分布具有显着影响。

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