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Development of Front-Wheel-Drive ELSD for Efficient Performance and Safety

机译:开发前轮驱动ELSD,用于高效性能和安全性

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The open (standard) differential provides an important function in vehicle dynamics and handling by splitting the applied driveline torque and allowing each wheel or axle to spin at different speeds. This function is necessary to eliminate axle bind-up while negotiating turns. However, it inherently impedes optimal traction and mobility performance by allowing the available torque to be limited by the wheel or axle having the least amount of traction. Loss of traction could result in loss of driveline torque control and a resulting loss of vehicle control. This loss of control could be catastrophic in the case of higher speed maneuvers. The proposed electronically controlled hydraulic limited slip differential solution corrects this problem, seamless to the driver, while maintaining the fundamental open differential function. Furthermore, this system maintains efficient forward motion compared to other solutions that slow the vehicle down while expending valuable energy. A number of other systems available today govern and deprive the driver of the sense of confident unimpeded control while the proposed system maintains it. This paper will provide an overview of design considerations, development and testing of the electro-hydraulic limited slip differential. It will be shown that the optimal solution to this problem is to integrate the limited slip function into the differential and within the transaxle or axle assembly. The proposed design is a replacement for the open differential. Additionally, it provides OEMs with an integrated optimal solution that satisfies manufacturing drivers such as part complexity and weight reduction as well as the end customer.
机译:开放(标准)差速器通过分离施加的传动系扭矩并允许每个滚轮或轴以不同的速度旋转来提供一种重要的运行动力学功能。在协商转弯时,必须在轴切绑定时才需要此功能。然而,通过允许可用的扭矩受到具有最少量牵引量的轮子或轴限制,它本质地阻碍了最佳牵引力和移动性能。牵引的丧失可能导致驱动线扭矩控制丢失和导致的车辆控制损失。在更高速度的操纵情况下,这种控制丧失可能是灾难性的。所提出的电子控制液压有限滑动差动解决方案纠正了这个问题,无缝向驾驶员,同时保持基本的开放差分功能。此外,与其他解决方案相比,该系统保持高效的正向运动,同时消耗有价值的能量。今天,许多其他系统可用,并剥夺了自信地无法阻挡的驾驶员,而建议的系统维护它。本文将概述电液有限滑动差速器的设计考虑,开发和测试。结果表明,该问题的最佳解决方案是将限量滑动功能集成到差动和轴组件内。所提出的设计是开放差异的替代品。此外,它提供了具有集成最佳解决方案的OEM,满足了制造驱动因素,如零件复杂性和减重以及最终客户。

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