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首页> 外文期刊>International Journal of Automotive Technology >Novel Steel and Aramid/Phenol Composite Gear for a Transmission with Optimum Design and FEM Vibration Analysis
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Novel Steel and Aramid/Phenol Composite Gear for a Transmission with Optimum Design and FEM Vibration Analysis

机译:具有优化设计和有限元振动分析的新型钢和芳族聚酰胺/酚复合齿轮

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摘要

Hybrid gears made of steel and fiber-reinforced polymeric composite material are recently attracting electric vehicle designers' attention due to their possible advantages such as lightweight and lessened transfer of noise and vibration for automotive transmissions. Polymeric composite material may be placed in-between the steel teeth and central hub regions in the radial direction of the gear. The partial usage of polymeric composite material for a gear is expected to reduce the transmissibility of vibration from teeth to hub as well as the weight of the gear-train. Using the finite element method, optimization, vibration and noise analyses have been performed in order to calculate SPL (sound pressure level) for pure steel and hybrid gears, separately. At a specified point of a tooth and a hub, the changes in SPL are computed and are compared to check how effective the polymeric composite region is. The reduction in SPL of the hybrid gear is observed by comparing to that of a pure steel gear. To minimize the weight of the hybrid gear, design optimization is applied by considering fatigue strength of steel and composite material.
机译:钢和纤维增强聚合物复合材料制成的混合齿轮最近由于其可能的优点而导致电动汽车设计师的注意力,例如轻质,减少汽车传输的噪音和振动的转移。聚合物复合材料可以在齿轮的径向方向上置于钢齿和中心毂区域之间。预计聚合物复合材料的部分用途预计将从牙齿到毂以及齿轮系的重量降低振动的传动率。使用有限元方法,已经进行了优化,振动和噪声分析,以便分别计算纯钢和混合齿轮的SPL(声压级)。在牙齿和枢纽的指定点处,计算SPL的变化并进行比较,以检查聚合物复合区域是如何有效。通过比较纯钢齿轮的比较,观察混合动力齿轮的SP的缩小。为了最小化混合动力齿轮的重量,通过考虑钢和复合材料的疲劳强度来应用设计优化。

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