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Reduced scale thermal characterization of automotive disc brake

机译:减少汽车盘式制动器的热量表征

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摘要

The thermal behaviour of a disc brake is a critical factor that needs to be considered at the design phase. Most researchers utilise a full size brake dynamometer or a simple pin-on-disc rig to experimentally evaluate the performance of a friction pair (disc and pad). In the current paper, a scaling methodology is proposed to evaluate the thermal performance of a disc brake at a reduced scale. The resulting small scale disc brake has the advantage of low cost and reduced development time. The proposed scaling methodology was validated by comparing the results for the full and small scale discs using a conventional brake dynamometer. In addition, a two dimensional axisymmetric transient thermal finite element model was developed using Abaqus software to assist in the validation of the scaling methodology. The numerical simulations confirmed the equivalence between the full and small scale disc thermal performance using the proposed scaling methodology and also gave good agreement with the experimental results. It is concluded that the scaling methodology is an important tool with which to evaluate the thermal performance of disc brakes in the early design phase.
机译:盘式制动器的热性能是在设计阶段需要考虑的关键因素。大多数研究人员使用全尺寸的测功机或简单的销盘式钻机来通过实验评估摩擦副(磁盘和摩擦片)的性能。在当前的论文中,提出了一种缩放方法,以减小的比例评估盘式制动器的热性能。所产生的小型盘式制动器具有低成本和减少开发时间的优点。通过使用常规制动测功机比较全盘和小盘的结果,对所提出的定标方法进行了验证。此外,使用Abaqus软件开发了二维轴对称瞬态热有限元模型,以帮助验证缩放方法。数值模拟证实了使用所提出的缩放方法的全尺寸和小尺寸盘片热性能之间的等效性,并且与实验结果具有良好的一致性。结论是,定标方法学是评估早期设计阶段盘式制动器热性能的重要工具。

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