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首页> 外文期刊>International Journal of Automotive Technology >Prediction of the cooling factors of a vehicle brake disc and its influence on the results of a thermal numerical simulation
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Prediction of the cooling factors of a vehicle brake disc and its influence on the results of a thermal numerical simulation

机译:车辆制动盘冷却因子的预测及其对热数值模拟结果的影响

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摘要

In the process of developing the brake disc, it is necessary that we predict the suitability of the design. In this manner, we can affirm that even the first prototype will satisfy all of the customer homologation requests. Usually those comprise different sequential braking tests in which the maximal achieved temperature is the criterion that governs brake disc suitability. The knowledge of how to predict the behavior of a brake disc in the early pretesting phase has a significant impact on development costs and time. The common method that is used for predicting the temperatures in the brake disc during braking is numerical simulation analysis. With the help of Computational Fluid Dynamics, the flow through a vehicle ventilated brake disc of known geometry was determined, and the wall heat transfer coefficients for all vehicle speeds and brake disc temperatures were calculated. The results were then imported into a thermal numerical simulation of a sequential-braking vehicle test. The results showed that the consideration of cooling factors has a significant impact on temperature courses. To obtain accurate results from the numerical simulation and to simulate the vehicle test precisely, the proper wall heat transfer coefficients must be considered. The proposed method produces more accurate numerical results and enables the development engineer to develop suitable brake disc geometry in the early pretesting phase.
机译:在开发制动盘的过程中,有必要预测设计的适用性。通过这种方式,我们可以确定即使第一个原型也可以满足所有客户认证要求。通常,它们包括不同的顺序制动测试,其中最大达到的温度是控制制动盘适用性的标准。如何在早期的预测试阶段中预测制动盘的行为的知识对开发成本和时间有重大影响。预测制动过程中制动盘温度的常用方法是数值模拟分析。借助于计算流体动力学,确定了通过已知几何形状的车辆通风的制动盘的流量,并计算了所有车速和制动盘温度下的壁传热系数。然后将结果输入到顺序制动车辆测试的热数值模拟中。结果表明,冷却因素的考虑对温度变化过程有重大影响。为了从数值模拟中获得准确的结果并精确地模拟车辆测试,必须考虑适当的壁传热系数。所提出的方法可产生更准确的数值结果,并使开发工程师能够在早期的预测试阶段开发合适的制动盘几何形状。

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