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Topology optimisation on frames of electric motorcycles

机译:电动摩托车车架的拓扑优化

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摘要

As scientific and engineering studies advance, CAD and CAE are applied in engineering widely. But for wheeled device frame design engineers, how to sketch the frame efficiently and form it in optimisation at the same time is difficult. Until now, many engineers still find the optimal design by using FEA and Try and Error method. In this paper, a topology optimisation method, simple fully stressed design method (SFSD), that integrates fully stressed design (FSD) concept and commercial FEA software are presented to design frames. Engineers will reduce time on making a new frame design through this topology optimisation. Unlike executing conventional optimisation procedure, engineers don't need to calculate the sensitivity. That means engineers can integrate CAE with the frame sketch more efficiently. Currently, electric motorcycles are popularising but it is defect of weight. This paper illustrates the SFSD method with the frame design of electric motorcycles.
机译:随着科学研究和工程学的发展,CAD和CAE在工程中得到了广泛的应用。但是对于轮式设备框架设计工程师来说,如何高效地绘制框架并同时进行优化成形是困难的。直到现在,许多工程师仍然通过使用FEA和“尝试和错误”方法来找到最佳设计。本文提出了一种拓扑优化方法,即简单的全应力设计方法(SFSD),该方法将全应力设计(FSD)概念与商用FEA软件相集成,以设计框架。工程师将通过这种拓扑优化来减少进行新框架设计的时间。与执行常规优化程序不同,工程师无需计算灵敏度。这意味着工程师可以更有效地将CAE与框架草图集成。当前,电动摩托车正在普及,但是它是重量的缺陷。本文用电动摩托车的框架设计说明了SFSD方法。

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