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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A numerical method to investigate the temperature behavior of spiral bevel gears under mixed lubrication condition
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A numerical method to investigate the temperature behavior of spiral bevel gears under mixed lubrication condition

机译:一种研究混合润滑条件下螺旋锥齿轮温度特性的数值方法

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摘要

Thermal behaviors under mixed lubrication regime are closely to the load-carrying capacity of spiral bevel gears, especially, in heavy load and high speed. In order to analyze the bulk and flash temperature behaviors, this paper proposes a numerical method which integrates the mixed elastohydrodynamic lubrication model with a finite element method based on thermal analysis. Heat generation in mixed lubrication regime is determined as functions of the applied load, sliding velocityand friction coefficient. The friction is solved by recently developed mixed elastohydrodynamic lubrication model with the consideration of surface roughness and arbitrary entrainment angle. Heat transfer analysis is conducted by application of the time- and position-varying heat flux and convection coefficient boundary condition on single tooth finite element model. The results clearly show that the major high temperature zone for bulk temperature is located nearby tooth root and the temperature in boundary lubrication is more serious compared with mixed lubrication. The edge contact at the tooth top leads to severe high temperature. The flash temperature behavior in entire rotation period indicates the influence of thermal characteristics on risk of scuffing.
机译:混合润滑制度下的热行为与螺旋锥齿轮的承载能力密切相关,特别是重载和高速。为了分析散装和闪光温度行为,本文提出了一种数值方法,其将混合弹性动力学润滑模型与基于热分析的有限元法集成。混合润滑制度中的发热被确定为施加的负载的功能,滑动速度和摩擦系数。通过考虑表面粗糙度和任意夹带角度,最近开发了混合弹性流体动力润滑模型来解决摩擦。通过在单齿有限元模型上施加时间和位置变化的热通量和对流系数边界条件来进行传热分析。结果清楚地表明,与混合润滑相比,散热温度的主要高温区位于附近的牙根附近,与混合润滑相比,边界润滑的温度更严重。齿顶的边缘接触导致严重的高温。整个旋转周期中的闪光温度行为表示热特性对磨损风险的影响。

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