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Generation of noncircular gears for variable motion of the crank-slider mechanism

机译:用于曲柄滑块机构的可变运动的非圆形齿轮的产生

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The paper proposes a modified kinematics for the crank-slider mechanism of a nails machine The variable rotational motion of the driven gear allows to slow down the velocity of the slider in the head forming phase and increases the period for the forming forces to be apnlied improving the quality of the final product. The noncircular gears are designed based on a hybrid function for the gear transmission ratio whose parameters enable multiple variations of the noncircular driven gears and crack-slider mechanism kinematics, respectively. The AutoCAD graphical and programming facilities are used (i) to analyse and optimize the slider-crank mechanism output functions, in correlation with the predefined noncircular gears transmission ratio, (ii) to generate the noncircular centrodes using the kinematics hypothesis, (iii) to generate the variable geometry of the gear teeth profiles, based on the rolling method, and (iv) to produce the gears solid virtual models. The study highlights the benefits/limits that the noncircular gears transmission ratio defining hybrid functions have on both crank-slider mechanism kinematics and gears geometry.
机译:本文提出了一种用于钉子机的曲柄滑块机构的改进的运动学,该齿轮的可变旋转运动允许减慢头部成形相中滑块的速度,并增加成形力的时期被渗入改进最终产品的质量。非圆形齿轮基于用于齿轮传动比的混合函数设计,其参数分别能够分别使得非圆形从动齿轮和裂缝滑块机构运动学的多种变化。使用AutoCAD图形和编程设施(i)以分析和优化滑块曲柄机构输出功能,与预定的非圆形齿轮传动比(II)使用运动假设(III)产生非晕圈中心的相关性。基于轧制方法和(iv)产生齿轮齿轮廓的变量几何形状,以产生齿轮固体虚拟模型。该研究突出了非曲线齿轮传动比在曲柄滑块机构运动学和齿轮几何形状上具有定义混合动力功能的益处/限制。

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