ISSN   1004-0595

CN  62-1224/O4

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甘来, 蒲伟, 肖科, 王家序, 曹伟, 汪巨基. 混合润滑下螺旋锥齿轮抗胶合能力分析[J]. 摩擦学学报, 2019, 39(4): 426-433. DOI: 10.16078/j.tribology.2018162
引用本文: 甘来, 蒲伟, 肖科, 王家序, 曹伟, 汪巨基. 混合润滑下螺旋锥齿轮抗胶合能力分析[J]. 摩擦学学报, 2019, 39(4): 426-433. DOI: 10.16078/j.tribology.2018162
GAN Lai, PU Wei, XIAO Ke, WANG Jiaxu, CAO Wei, WANG Juji. Analysis of Spiral Bevel Gears Scuffing Load Capacity in Mixed EHL Regime[J]. TRIBOLOGY, 2019, 39(4): 426-433. DOI: 10.16078/j.tribology.2018162
Citation: GAN Lai, PU Wei, XIAO Ke, WANG Jiaxu, CAO Wei, WANG Juji. Analysis of Spiral Bevel Gears Scuffing Load Capacity in Mixed EHL Regime[J]. TRIBOLOGY, 2019, 39(4): 426-433. DOI: 10.16078/j.tribology.2018162

混合润滑下螺旋锥齿轮抗胶合能力分析

Analysis of Spiral Bevel Gears Scuffing Load Capacity in Mixed EHL Regime

  • 摘要: 针对螺旋锥齿轮重载下热胶合失效问题,对螺旋锥齿轮在混合润滑条件下的摩擦热行为进行分析. 通过混合弹流润滑数值计算方法和基于有限元的热分析方法,综合考虑螺旋锥齿轮的表面粗糙度、载荷分担、速度矢量和真实接触几何等因素建立点接触混合润滑分析模型,计算啮合轨迹上的连续摩擦系数变化和摩擦热流率,采用有限元分析软件进行齿面热载荷的加载,考虑轮齿导热和齿面与环境的热对流,分析轮齿本体温度场分布和啮合过程中闪温变化. 根据齿面最大接触温度与国际标准ISO 6336-20中齿轮抗胶合能力计算方法进行比较分析. 结果表明:有限元热分析得到的齿面温度与ISO所得变化规律十分接近,其最大温度低于ISO标准计算温度,使用ISO标准计算出螺旋锥齿轮抗胶合安全系数小于有限元法. 在混合润滑下求解的齿面热流率和温度变化,并且考虑了齿轮热传导和热对流影响,从理论上来说有限元法更加符合实际工作情况. ISO方法在处理上述问题以及计算本体温度上仍有不足,但其在齿轮抗胶合能力校核上具有广泛的适用性,可考虑结合有限元热分析法解决传热问题同时进行抗胶合能力综合评价.

     

    Abstract: In order to analyze the thermal scuffing failure under heavy load, the thermal behavior due to friction power loss was investigated in mixed lubrication regime for spiral bevel gears. This method integrated the mixed elastohydrodynamic lubrication (EHL) analysis results with the finite element method (FEM) based on thermal analysis. The EHL model of point contact was conducted to solve the friction and heat flux along the contact path by taking into account the machine roughness, load shearing, velocity vector and contact geometry. A single tooth model form FEM was utilized to analyze the bulk and flash temperature by considering the heat conduct and heat convection. Comparative analysis of scuffing load capacity using ISO 6336-20 standard and FEM results for spiral bevel gears was carried out. The results show that the variation of temperature solved with conjunct method was under the ISO standard, and the change law of FEM results was very close to the ISO standard. In theory, the conjunct method solved the heat flux and temperature was more coincident with the actual work condition under heat conduction and heat convection. The ISO standard was weak in solving above mentioned peculiarities and bulk temperature, but it had wide applicability. It was useful to integrate the finite element thermal analysis with ISO standard for estimating the load capacity of spiral bevel gears in economy and applicability.

     

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