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THERMO-ELASTIC MODELLING OF HIGH PERFORMANCE BRAKING SYSTEMS

机译:高性能制动系统的热弹性建模

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摘要

The thermal and structural behaviour of carbon-carbon disc brake and pads have been studied. A literature review was conducted to investigate recent research that has been completed in many areas related to thermo-elastic modelling of braking systems. The friction forces generated during braking between brake pads and disc produce high thermal gradients on the rubbing surfaces. Thermo-elastic deformation results in contact concentration, leading to the non uniform distribution of temperature and pressure making the disc susceptible to hot bands and hot spots formation. The present paper proposes a simplified modelling concept useful in the preliminary brake system design phase. Furthermore, a full finite element model related to structural/thermal analysis is presented as well. The thermo-elastic behaviour has been investigated experimentally under different braking conditions. The models (simplified and full FE) have been validated experimentally on the basis of indoor tests results. The accuracy of the two models is good, but the computational effort required by the full FE model can be very high.
机译:已经研究了碳-碳盘式制动器和衬块的热和结构行为。进行了文献综述以调查最近在与制动系统的热弹性建模有关的许多领域中完成的研究。制动衬块和制动盘之间的制动过程中产生的摩擦力会在摩擦表面上产生较高的热梯度。热弹性变形导致接触集中,从而导致温度和压力分布不均匀,从而使光盘容易出现热区和热点。本文提出了一种简化的建模概念,可用于初步制动系统设计阶段。此外,还提出了与结构/热分析有关的完整有限元模型。已经在不同的制动条件下通过实验研究了热弹性行为。这些模型(简化和完整的有限元分析)已根据室内测试结果进行了实验验证。两种模型的准确性都很好,但是完整的有限元模型所需的计算量可能很高。

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