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The durability and reliability of variators for a dual-cavity, full-toroidal CVT

机译:双腔,全环CVT的变形剂的耐久性和可靠性

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A full-toroidal CVT has been expected as a new generation of transmission. However, high contact pressure is needed to generate traction force and temperature due to shear in contact areas becomes very high. Therefore, the fatigue life of variator is insufficient. This paper describes the application of developed bearing steel to improve the fatigue life of the varitator. Failure due to pitting depends on a film parameter Λ so that the limitation of Λ to prevent failure has been determined by a two roller test machine. Durability test of the variator made of developed bearing steel with the larger Λ than the limitation has been carried out to confirm the prevention of pitting by a dual-cavity full-toroidal CVT's variator test rig. The thickness of EHD (Elastohydrodynamic) fluid film has also been calculated by isothermal Newtonian EHD analysis with spin motion to confirm whether adequate film thickness is provided to avoid failure.
机译:预期全环CVT作为新一代传输。然而,需要高接触压力以产生牵引力,并且由于接触区域的剪切而导致的温度变得非常高。因此,变速器的疲劳寿命不足。本文介绍了开发轴承钢的应用,提高了变型器的疲劳寿命。由于蚀引起的故障取决于薄膜参数λ,使得λ的限制是通过两个辊式试验机确定的λ。已经进行了由开发的轴承钢制成的变速器的耐久性测试,其λ比限制较大,以确认通过双腔全环CVT的变速器试验台预防蚀。 EHD的厚度(弹性流体动力学)流体膜也通过等温牛顿EHD分析来计算,通过旋转运动来确认是否提供了足够的膜厚度以避免失败。

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