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Design Methodology for Gear Design of a Formula One Racing Car: A Modelling Procedure Based on Finite Element

机译:一级方程式赛车齿轮设计的设计方法:基于有限元的建模过程

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FIA regulations for the 2015 Formula One World Championship introduced an upper limit to the number of transmission assemblies employed during the season;;a new approach to reliability has been forced on the designers, along with a reconsideration of the calculation procedures. Whereas mechanical transmission reliability calculations are well coded within the commercial transportations field, the peculiar aspects of the motorsport branch - namely a) the quest for an extreme lightweight design, b) the harsh dynamic transitions in speed and torque at gear shifts with a seamless shift transmission and wheel-road chattering, c) the circumscribed consequences of a breakage due to the controlled nature of the racing track environment, and d) the frenzied design procedures pace - urged for the development of specific validation procedures, that have to be rapidly redefined with the 2015 regulation adjustment. The present contribution rethinks those reliability assessment procedures - mostly based on nonlinear, dynamic Finite Element (FE) calculations - for a Formula One gearbox. In particular, the required model complexity is discussed with respect to the inclusion of shafts, bearings and carter compliance, chassis load induced deformation, significant load case selection, misuse robustness. The finalized validation procedure is shown to be predictive with respect to the augmented reliability requirements, while remaining feasible within the motorsport timescale environment.
机译:2015级别的FIA条例一级世界锦标赛向季节采用的传输组件数量引入了上限;;在设计人员上强制了一种新的可靠性方法,以及重新考虑计算程序。而机械传输可靠性计算在商业运输领域中良好编码,赛车分支的特殊方面 - 即A)对极轻的设计,b)速度和扭矩的速度动态过渡,齿轮换档与无缝换档传输和轮路喋喋不休,c)由于赛道环境的受控性质而被造成的破损后果,而d)疯狂的设计程序步伐 - 敦促开发具体的验证程序,必须快速重新定义随着2015年监管调整。目前的贡献重新考虑了那些可靠性评估程序 - 主要基于非线性,动态有限元(FE)计算 - 用于公式一个变速箱。特别地,关于包含轴,轴承和卡特顺应性,底盘载荷引起的变形,显着的负载壳体选择,滥用鲁棒性,讨论所需的模型复杂性。最终确定的验证程序是针对增强可靠性要求的预测性,同时在Motorsport时间内环境中仍然可行。

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