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首页> 外文期刊>International Journal of Automotive Technology >Prediction of the dimensional deformation of the addendum and dedendum after the warm shrink fitting process using a correction coefficient
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Prediction of the dimensional deformation of the addendum and dedendum after the warm shrink fitting process using a correction coefficient

机译:使用校正系数预测热收缩拟合过程后齿顶和齿根的尺寸变形

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摘要

The warm shrink fitting process is generally used to assemble automobile transmission parts (shafts/gears). However, this process causes a deformation in the addendum and dedendum of the gear depending on the fitting interference and gear profile, and this deformation causes additional noise and vibration between the gears. To address these problems, the warm shrink fitting process is analyzed by considering the error in the dimensional deformation of the addendum and dedendum found when comparing the results of a theoretical analysis and finite element analysis (FEA). A correction coefficient that reduces this error is derived through an analysis of the difference in the cross-sectional area between the shapes used for the theoretical analysis and that of the actual gear, and a closed-form equation to predict the dimensional deformation of the addendum and dedendum is proposed. The FEA method is proposed to analyze the thermal-structural-thermal coupled field analysis of the warm shrink fitting process (heating-fitting-cooling process). To verify the closed-form equation using the correction coefficient, measurements are made of actual helical gears used in automobile transmissions. The results are in good agreement with those given by the closed-form equation.
机译:热收缩装配过程通常用于组装汽车变速箱零件(轴/齿轮)。然而,该过程导致齿轮的齿顶和齿根的变形,这取决于装配干涉和齿轮轮廓,并且这种变形导致齿轮之间的附加噪声和振动。为了解决这些问题,在比较理论分析和有限元分析(FEA)的结果时,通过考虑所发现的齿顶和齿根的尺寸变形误差来分析热收缩装配过程。通过分析用于理论分析的形状与实际齿轮的形状之间的横截面积之间的差异,以及用于预测齿顶尺寸变形的闭合形式方程,可以得出减小该误差的校正系数。并提出了齿根。提出了有限元分析方法来分析热缩配合过程(热配合-冷却过程)的热-结构-热耦合场分析。为了使用校正系数验证闭合式方程,对汽车变速器中使用的实际斜齿轮进行了测量。结果与闭式方程给出的结果非常吻合。

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