利用多材料概念改善制动系统散热的设计与分析

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引用次数: 0

摘要

鼓式制动器由一个旋转的气缸组成,气缸被一套鞋或脚垫压紧,从而产生摩擦。铸铁是这方面的典型材料。刹车时,鼓的内表面产生摩擦,减缓或停止车轮的转动,使车辆停下来。热的发展,特别是在汽车的制动系统,是必须处理的首要问题。汽车刹车鼓通常由铸铁制成。多种材料的刹车鼓,如在铸铁上涂镍合金涂层的刹车鼓,已经取代了传统的刹车鼓。需要研究这两种设置的行为。刹车鼓的建模正在CREO中进行,ANSYS将用于结构和热分析。压力、应变和散热只是我们要比较的几个因素。此外,我们使用电镀程序在铸铁上进行了镍涂层实验,将层厚度从10到15到25微米不等。
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Design and Analysis of the Braking System to Improve Heat Dissipation by Utilizing the Multi-Material Concept
A drum brake consists of a rotating cylinder that is pressed against by a set of shoes or pads, which creates friction. Cast iron is the typical material for this. When the brakes are applied, friction develops on the drum's inner surface, slowing or stopping the wheel's rotation and bringing the vehicle to a halt. The development of heat, especially in the braking systems of automobiles, is the primary issue that must be dealt with. Brake drums for cars are typically constructed of cast iron. Multi-material brake drums, such as those with a Nickel alloy coating over cast iron, have replaced traditional brake drums. The behavior of these two setups needs to be investigated. Brake drum modeling is being done in CREO, and ANSYS will be used for structural and thermal analysis. Stress, strain, and heat dissipation % are just few of the factors we'll be comparing. Additionally, we have conducted nickel coating experiments on cast iron using an electroplating procedure, varying the layer thickness from 10 to 15 to 25 microns.
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