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Thermal Fatigue Live Analysis of Brake Drums Made With Gray Cast Iron and Vermicular Cast Iron Via FEM Simulation

机译:通过FEM模拟用灰色铸铁和蠕虫铸铁制造的制动鼓的热疲劳实时分析

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The brake drums are designed to convert kinetic energy of the vehicle into thermal energy. The stress originated by thermal transients produced by braking process may nucleate fatigue cracks and lead the component to failure. The aim of this work is to study thermal fatigue life for brake drum made with gray cast iron and vermicular cast iron. The loading transients due to different braking events were determined by thermal analysis, using FEM methods. Stress amplitudes and mean stresses were obtained. The fatigue life of the component has been evaluated and the points with the highest probability for crack nucleation were determined. The highest level of stress was observed in the hoop direction when the brake drum is made in gray cast iron and in the radial direction when it is made with vermicular graphite cast iron. The highest stress levels observed were associated with the braking event where the vehicle goes through successive braking actions during 5 seconds of braking and 4 seconds of free riding. The fatigue life of the components has been evaluated and the points with the highest probability for crack nucleation were examined. The method of rain-flow for counting of cycles had been applied and the Goodman equation used to determine the number of cycles to failure. The results have shown that the section near to the bolting flange is the most probable site for crack nucleation for the two materials. The brake drum made with vermicular cast iron presented higher thermal fatigue endurance than that one made with gray cast iron.
机译:制动鼓设计成将车辆的动能转换为热能。由制动过程产生的热瞬变起源的应力可以核心疲劳裂缝并引导组分失效。这项工作的目的是研究用灰色铸铁和蠕虫铸铁制成的制动鼓的热疲劳寿命。使用FEM方法通过热分析确定由于不同制动事件引起的加载瞬变。获得应激幅度和平均应力。已经评估了组分的疲劳寿命,并确定了具有最高裂缝成核概率的点。当制动鼓用灰色铸铁和径向制成时,在用蠕虫石墨铸铁制成时,在箍方向上观察到最高压力。观察到的最高应力水平与制动事件相关联,其中车辆在5秒的制动期间通过连续制动动作,并且4秒的自由骑行。已经评估了组分的疲劳寿命,并检查了具有最高裂缝成核概率的点。已经应用了用于计数周期的雨流程的方法,并且用于确定失败的循环次数的古德曼方程。结果表明,螺栓传输法兰附近的部分是两种材料的裂纹成核的最可能的部位。用蠕虫铸铁制成的制动鼓呈现比用灰色铸铁制成的热疲劳耐久性。

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