Thrust Force Analysis of Tripod Constant Velocity Joint Using Multibody Model
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概要
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A tripod constant velocity joint is used in the driveshaft of front wheel drive vehicles. Thrust force generated by this joint causes lateral vibration in these vehicles. To analyze the thrust force, a detailed model is constructed based on a multibody dynamics approach. This model includes all principal parts of the joint defined as rigid bodies and all force elements of contact and friction acting among these parts. This model utilizes a new contact modeling method of needle roller bearings for more precise and faster computation. By comparing computational and experimental results, the appropriateness of this model is verified and the principal factors inducing the second and third rotating order components of the thrust force are clarified. This paper also describes the influence of skewed needle rollers on the thrust force and evaluates the contribution of friction forces at each contact region to the thrust force.
著者
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SUGIURA Hideki
Toyota Central R&D Labs., Inc
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MATSUNAGA Tsugiharu
Toyota Central R&D Labs., Inc
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ANDO Yosei
JTEKT Corporation
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KASHIWAGI Isashi
JTEKT Corporation
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MIZUTANI Yoshiteru
Toyota Central R&D Labs., Inc
関連論文
- Thrust Force Analysis of Tripod Constant Velocity Joint Using Multibody Model
- Study on Roller Behavior and Thrust Force of Tripod Constant Velocity Joint
- Study on Thrust Force Reduction of Tripod Constant Velocity Joint
- Dynamic Analysis of Needle Roller Bearings on Torque Loss