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Structural Topology Optimization of Brake Disc Using the Equivalent Moving Load Method

机译:使用等效移动载荷法的制动盘结构拓扑优化

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During the braking process, the brake disc is subjected to the moving load. The process-point of the moving load moves along a certain trajectory, which makes it difficult to design the brake disc structure by using a traditional topology optimization method. The novel Equivalent Moving Load (EML) method proposed in this paper aims to solve this problem. According to the principle of continuous photographing technology, a mathematical model was established by using the round inward polygonal approximation algorithm. The EML method equalizes the continuous dynamic load action to many finite working conditions by geometric approximation. These working conditions are placed along the trajectory. The structure of the brake disc is then optimized by the EML method. Additionally, the influence of the layout style of the brake pads and the total number of working conditions on the optimization result are discussed in this paper. The optimization results showed that the new structure is a three-annulus structure. The weight of the new structure is reduced by 57.95% compared to the initial structure by structural topology optimization using the EML method. It was proved that structural topology optimization using the EML method is efficient in optimizing a structure subjected to dynamic load.
机译:在制动过程中,制动盘经受移动载荷。移动负载的处理点沿着一定的轨迹移动,这使得难以使用传统的拓扑优化方法设计制动盘结构。本文提出的新型等效移动负载(EML)方法旨在解决这个问题。根据连续拍摄技术的原理,通过使用圆向内多边形近似算法建立了数学模型。 EML方法通过几何近似使连续动态负载动作均衡到许多有限的工作条件。这些工作条件沿着轨迹放置。然后通过EML方法优化制动盘的结构。另外,本文讨论了制动垫的布局风格的影响和工作条件的总数。优化结果表明,新结构是三环结构。通过使用EML方法的结构拓扑优化,新结构的重量减少了57.95%。事实证明,使用EML方法的结构拓扑优化在优化经过动态负荷的结构方面是有效的。

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