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首页> 外文期刊>International journal of low carbon technologies >Three-dimensional CFD modeling of thermal behavior of a disc brake and pad for an automobile
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Three-dimensional CFD modeling of thermal behavior of a disc brake and pad for an automobile

机译:圆盘制动器和垫的三维CFD建模和汽车的垫

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摘要

The brake system of an automobile is composed of disc brake and pad which are co-working components in braking and accelerating. In the braking period, due to friction between the surface of the disc and pad, the thermal heat is generated. It should be avoided to reach elevated temperatures in disc and pad. It is focused on different disc materials that are gray cast iron and carbon ceramics, whereas pad is made up of a composite material. In this study, the CFD model of the brake system is analyzed to get a realistic approach in the amount of transferred heat. The amount of produced heat can be affected by some parameters such as velocity and friction coefficient. The results show that surface temperature for carbon-ceramic disc material can change between 290 and 650 K according to the friction coefficient and velocity in transient mode. Also, if the disc material gray cast iron is selected, it can change between 295 and 500 K. It is claimed that the amount of dissipated heat depends on the different heat transfer coefficient of gray cast iron and carbon ceramics.
机译:汽车的制动系统由盘式制动器和垫构成,该垫子制动和垫是制动和加速的共同工作组件。在制动周期中,由于盘和垫的​​表面之间的摩擦,产生热量。应该避免在圆盘和垫中达到升高的温度。它专注于灰铸铁和碳陶瓷的不同盘材料,而垫是由复合材料组成的。在该研究中,分析制动系统的CFD模型以在转移的热量中获得现实方法。产生的热量可以受到一些参数的影响,例如速度和摩擦系数。结果表明,根据瞬态模式下的摩擦系数和速度,碳陶瓷盘材料的表面温度可以在290和650k之间变化。而且,如果选择盘材料灰铸铁,则可以在295和500k之间变化。要求耗散的热量取决于灰铸铁和碳陶瓷的不同传热系数。

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