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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >CVJ and Knuckle Design Optimization to Protect Inboard Wheel Bearing Seals from Splash
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CVJ and Knuckle Design Optimization to Protect Inboard Wheel Bearing Seals from Splash

机译:CVJ和转向节设计优化可防止内侧车轮轴承密封件飞溅

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摘要

For higher mileage vehicles, noise from contaminant ingress is one of the largest durability issues for wheel bearings. The mileage that wheel bearing sealing issues increase can vary due to multiple factors, such as the level of corrosion for the vehicle and the mating components around the wheel bearing. In general, sealing issues increase after 20,000 to 30,000 km. Protecting the seals from splash is a key step in extending bearing life. Benchmarking has shown a variety of different brake corner designs to protect the bearing from splash. This report examines the effect of factors from different designs, such as the radial gap between constant velocity joint (CVJ) slinger and the knuckle, knuckle labyrinth height and varying slinger designs to minimize the amount of splash to the bearing inboard seal. This report reviews some of the bearing seal failure modes caused by splash. This study also discusses the test methodology to confirm the robustness of the various designs and provides information on the effectiveness of different features to protect the corner from splash.
机译:对于更高里程的车辆,污染物进入的噪音是车轮轴承最大的耐用性问题之一。车轮轴承密封问题增加的里程可能因多种因素而变化,例如车辆的腐蚀程度以及车轮轴承周围的配合部件。通常,密封问题在20,000 km至30,000 km之后会增加。保护密封件免于飞溅是延长轴承寿命的关键步骤。基准测试显示了各种不同的制动角设计,可以防止轴承飞溅。该报告研究了不同设计因素的影响,例如等速万向节(CVJ)挡圈和转向节之间的径向间隙,转向节迷宫高度和变化的挡圈设计,以最大程度地减少轴承内侧密封件的飞溅。该报告回顾了一些由飞溅引起的轴承密封失效模式。这项研究还讨论了用于确认各种设计的鲁棒性的测试方法,并提供了有关保护墙角不受飞溅影响的各种功能的有效性的信息。

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