1.中国航发湖南动力机械研究所, 湖南 株洲 412002
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覃秋霞,李黎,王永红等.考虑系统啮合错位量的弧齿锥齿轮齿面设计[J].机械传动,XXXX,XX(XX):87-91.
Qin Qiuxia Li Li Wang Yonghong Chen Haoyu.Tooth Surface Design of Spiral Bevel Gear with Considering the System Meshing Misalignment Quantity[J].Journal of Mechanical Transmission,XXXX,XX(XX):87-91.
覃秋霞,李黎,王永红等.考虑系统啮合错位量的弧齿锥齿轮齿面设计[J].机械传动,XXXX,XX(XX):87-91. DOI: 10.16578/j.issn.1004.2539.2019.10.017.
Qin Qiuxia Li Li Wang Yonghong Chen Haoyu.Tooth Surface Design of Spiral Bevel Gear with Considering the System Meshing Misalignment Quantity[J].Journal of Mechanical Transmission,XXXX,XX(XX):87-91. DOI: 10.16578/j.issn.1004.2539.2019.10.017.
基于考虑系统啮合错位量的齿面接触分析原理,以某航空减速器弧齿锥齿轮齿面设计为例,分析并建立啮合错位量计算模型,计算在制造误差、装配误差及加载变形等影响因素下的系统啮合错位量,开展了考虑系统啮合错位量的齿面设计,获得了齿面接触印痕(简称TCA)、加载印痕(简称LTCA)、传动误差、齿面相对滑动速度、齿面温升及工程应用中的装配印痕和磨合印痕,生成了齿轮副加工参数。实物齿轮通过疲劳试验考核,验证了上述设计方法的准确性,对弧齿锥齿轮的设计、生产和应用提供了一种参考。
Based on the principle of tooth surface contact analysis considering system meshing misalignment quantity, taking the design of spiral bevel gears of an aeronautical reducer as an example, the calculation model of meshing misalignment quantity is analyzed and established. The meshing misalignment quantity of the system is calculated under the influence factors of manufacturing error, assembly error and loading deformation, and the design of tooth surface considering the meshing misalignment quantity is carried out. The tooth surface contact mark (TCA), loading mark (LTCA), transmission error, relative sliding speed of tooth surface, temperature rise of tooth surface and assembly mark and running-in mark in engineering application are obtained, and the processing parameters of gear pair are generated. The accuracy of the above design method is verified by the fatigue test of the actual gears, which provides a reference for the design, production and application of spiral bevel gears.
弧齿锥齿轮 齿面修形 啮合错位量 TCA LTCA
Spiral bevel gearTooth surface modificationMeshing misalignment quantityTCALTCA
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