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Prediction of Crack Initiation for One-Piece Type Brake Disc for Motorcycles under Overload Condition

机译:过载条件下摩托车一体式制动盘的裂纹启动预测

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A prediction method was proposed for crack initiation in one-piece type brake discs under extreme braking conditions. Braking tests under extreme loading conditions were conducted by using sample discs. The variations of internal temperatures and surface strains at several locations were measured by using thermocouples and strain gages. In order to obtain the S-N curve of the disc material, specimens with a hole in their center were used for the fatigue test in which an alternative strain was cyclically applied. The numbers of strain cycles, when a 0.3mm crack initiated from the hole, were analyzed by the Weibull plot. The maximum and minimum strains at the hole edge were estimated by calculation considering the temperature variation with respect to time as well as the strain induced by friction due to braking pads. The number of cycles corresponding to the strain amplitude range was estimated by the rain-flow method. The fatigue life of the sample disc was predicted based on the cumulative damage principle as well as by shifting the master S-N curve. The predicted life due to crack initiation reasonably agreed with the experimental life as long as the shift factor for the master S-N curve was appropriately chosen.
机译:提出了裂纹萌生在极端制动的条件下的单件式制动盘的预测方法。极端载荷条件下的制动试验通过使用样品盘进行。内部温度和表面应变的在若干位置中的变化,通过使用热电偶和应变计测量。为了获得盘材料的S-N曲线,被用于疲劳试验在其中周期性地施加一个替代菌株在其中心具有孔的标本。应变循环,当从孔发起的0.3毫米裂纹,是由Weibull分布图分析的数量。在孔边缘上的最大和最小菌株通过计算考虑相对于温度变化,以时间,以及由于制动垫诱导摩擦应变估计。对应于应变振幅范围的周期数是由雨流方法来估计。样品盘的疲劳寿命是基于累积损伤原理以及通过移动主S-N曲线预测。由于裂纹萌生的预测寿命合理与实验寿命同意只要对主S-N曲线,适当选择的移位因子。

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