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High frequency gear whine control by driveshaft design optimization

机译:通过驱动轴设计优化的高频齿轮呼当控制

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Generation mechanism of transmission gear whine varies significantly by gear position, frequency and path/amplifier of the total system. Although controlling the source, namely transmission error/dynamic meshing force of the gears is desirable; it is not always feasible as well as most effective. This paper describes the root cause analyses of high frequency gear whine (overdrive position) of commercial vehicle, which combined in-depth experimental and CAE analyses. The generation mechanism of the gear whine is clarified efficiently utilizing Ford Spin-Torsional AWD NVH Test Facility, state-of-the-art Powertrain NVH development test cell, combining vehicle and sub-system NVH measurement. The analyses results showed the O/D gear whine is driveshaft airborne, due to alignment of driveshaft higher bending resonance to airborne mode ("breathing mode"). Integrating experimental verification with changing the modal characteristics (decoupling) by changing mass property of the driveshaft, and utilizing CAE modelling optimization with newly developed acoustic simulation technique to estimate radiation noise of the driveshaft, the most efficient countermeasure was developed. Final countermeasure effect to gear whines was verified with production vehicles to confirm significant effect to satisfy the customer requirement.
机译:传动齿轮的发电机构呼头通过总系统的齿轮位置,频率和路径/放大器变化显着。虽然控制源极,但是齿轮的传输误差/动态啮合力是理想的;它并不总是可行的,也是最有效的。本文介绍了商用车的高频齿轮(过驱动位置)的根本原因分析,该载体的深度实验和CAE分析组合。齿轮呼头的发电机构有效地利用福特自旋扭转AWD NVH测试设施,最先进的动力总成NVH开发测试单元,组合车辆和子系统NVH测量。分析结果表明,O / D齿轮呼头是驱动轴空气传播,因为驱动轴较高的弯曲共振与空气传播模式(“呼吸模式”)的对准。通过改变变速器通过改变驱动轴的质量特性来实现实验验证,利用CAE建模优化与新开发的声学仿真技术来估计驱动轴的辐射噪声,开发了最有效的对策。通过生产车辆验证了齿轮箱的最终对策效果,以确认满足客户要求的显着效果。

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