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Analysis of the Transient Thermomechanical Behaviour of a Lightweight Brake Disc for a Regenerative Braking System

机译:蓄热式制动系统轻型制动盘的瞬态热机械行为分析

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Regenerative braking would extend the working range of an EV or HV provided that any extra energy consumption from increased vehicle mass and system losses did not outweigh the saving from energy recuperation, also reduce duty levels on the brakes themselves, giving advantages including extended brake rotor and friction material life, but more importantly reduced brake mass, minimise brake pad wear. The objective of this research is to define thermal performance on lightweight disc brake models. Thermal performance was a key factor which was studied using the 3D model in FEA simulations. Ultimately a design method for lightweight brakes suitable for use on any car-sized hybrid vehicle was used from previous analysis. The design requirement, including reducing the thickness, would affect the temperature distribution and increase stress at the critical area. Based on the relationship obtained between rotor weight, thickness, undercut effect and offset between hat and friction ring, criteria have been established for designing lightweight brake discs in a vehicle with regenerative braking.
机译:蓄能制动将扩大电动汽车或HV的工作范围,前提是增加的车辆质量和系统损失所产生的任何额外能量消耗均不超过能量回收所节省的成本,还可以降低制动器本身的负荷水平,从而提供包括延长制动盘和摩擦材料寿命,但更重要的是减少了制动器质量,最大程度地减少了制动衬块的磨损。这项研究的目的是定义轻型盘式制动器模型的热性能。热性能是在FEA仿真中使用3D模型进行研究的关键因素。最终,从先前的分析中得出了适用于任何汽车大小的混合动力车辆的轻型制动器的设计方法。设计要求(包括减小厚度)将影响温度分布并增加关键区域的应力。基于在转子重量,厚度,底切效果以及帽与摩擦环之间的偏移量之间获得的关系,已经建立了在具有再生制动的车辆中设计轻型制动盘的标准。

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