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Thermal stress analysis of different full and ventilated disc brakes

机译:不同的全盘式和通风盘式制动器的热应力分析

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During the braking phase, the heat produced by friction between pads and disc cannot be entirely dissipated. Consequently, the brake disc, especially if very hard braking occur, can accumulate large amounts of heat in a short time so producing high gradients of temperature on it. Under these conditions, functionality and safety of the brake system can be compromised. The object of this study is to investigate, under extreme working conditions, the thermomechanical behaviour of different brake rotors in order to evaluate their efficiency and stability and to identify any compromising weakness on them. In particular, by means of FEM thermo-mechanical coupled analyses, one full disc and three ventilated rotors with different shapes have been studied. A very hard (fading) test has been used to evaluate the performances of the discs in terms of temperature distribution, stresses and strains. Obtained results demonstrate that the analysed ventilated discs, unlike the full rotor, can be effectively used in very hard working conditions, always ensuring high safety levels. Among the studied rotors, the curved-vanes disc was found to be the best solution.
机译:在制动阶段,制动衬块和制动盘之间的摩擦产生的热量无法完全散发。因此,制动盘,特别是在发生非常猛烈的制动时,可能会在短时间内积聚大量热量,从而在其上产生较高的温度梯度。在这种情况下,制动系统的功能和安全性可能会受到损害。这项研究的目的是在极端的工作条件下研究不同制动转子的热机械性能,以评估其效率和稳定性,并找出任何不利的缺点。尤其是,通过FEM热力耦合分析,已经研究了一个完整的圆盘和三个具有不同形状的通风转子。已使用非常困难(褪色)的测试来评估光盘在温度分布,应力和应变方面的性能。所得结果表明,与完整转子不同,所分析的通风盘可在非常艰苦的工作条件下有效使用,始终确保较高的安全水平。在研究的转子中,弧形叶片盘是最佳解决方案。

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