变齿厚非圆齿轮齿廓曲面生成方法及啮合试验

Method for generating tooth profile surface and meshing test of variable tooth non-circular gear

  • 摘要: 针对非圆齿轮传动易形成齿面磨损,导致啮合侧隙增大从而降低传动精度的问题,提出耦合变齿厚齿轮结构特点构建变齿厚非圆齿轮的方案。根据变齿厚轮齿的调隙原理及结构形态,以非圆齿轮节曲线为基准创建多层包络模型,通过图像处理方法提取齿廓曲线,将各个截面的齿廓曲线扫掠后形成变齿厚非圆齿轮的三维数字化模型,并采用多轴电火花线切割的方式进行加工,最后搭建试验台进行啮合测试。试验结果表明,变齿厚非圆齿轮副啮合平稳,运行中无干涉,调节主动轮与从动轮的轴向相对位置即可实现啮合侧隙的调节,从动轮输出的角速度曲线符合预期运动规律,变齿厚非圆齿轮有利于变速状态下的精密传动,具有良好的推广价值。

     

    Abstract: To address the issues of tooth surface wear in non-circular gear transmission, which result in increased meshing backlash and reduced transmission accuracy, a solution for constructing variable tooth non-circular gears was proposed. Based on the principle of side clearance adjustment and structural form of variable tooth thickness gear teeth, a multi-layer envelope model was created based on the non-circular gear pitch curve. The tooth profile curves of each section were extracted through image processing and then swept to form a three-dimensional digital model of the variable tooth non-circular gear, which was processed using multi-axis electric discharge wire cutting. A test bench was built for meshing testing. The experimental results demonstrate that the variable tooth non-circular gear pair operates smoothly with no interference. By adjusting the relative axial position between the driving gear and the driven gear, the meshing backlash can be adjusted. The angular velocity curve output by the driven gear aligns with the expected motion law. The variable tooth non-circular gear is advantageous for precision transmission under variable speed conditions and holds significant promotion value.

     

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