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A Novel Gear Honing Machine Parameter Design and Finite Element Analysis Based on the Principle of Dislocation Axis Line Contact

机译:一种新型齿轮珩磨机参数设计和有限元分析,基于位错轴线接触原理

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The characteristics of the dislocation axis line contact gear space transmission was analyzed in order to study the new precision gear honing machine prototype which could be clamped and formed at one time,and a pair of dislocation axis involute helical gears in space was designed from the most basic principle of involute gear meshing;The vertical dislocation axis line contact the worm and worm gear (helical gear) transmission mechanism were formed,when two gears had equalent normal base diameter and the sum of their base-circle spiral angles was equal to 90°.According to worm drive relationship of the vertical dislocation axis line contact,the helical gear tooth surface was honed through the worm could be used as a grinding wheel of the honing machine.Grinding wheels with different parameters could be used to machine bevel gears with different modulus,different numbers of teeth and different tooth widths.The finite element analysis and optimization showed that the prototype of the machine tool was reasonable,and the first-order natural frequency is 341.8Hz,which was much higher than the working frequency of 30Hz to avoid resonance.
机译:分析了脱位轴线接触齿轮空间传输的特性,以研究可以一次夹紧和形成的新的精密齿轮珩磨机原型,并且一对位于空间中的脱位螺旋齿轮的脱位轴线是最多的渐开线啮合的基本原理;垂直位错轴线接触蜗杆和蜗轮(螺旋齿轮)传动机构,当两个齿轮具有平等的正常基础直径并且它们的基圆螺旋角度等于90°时。根据垂直脱位轴线接触的蠕虫驱动关系,螺旋齿轮齿面珩磨通过蜗杆可以用作珩磨机的砂轮。用不同的参数磨削轮子可以用来用不同的机模量,不同数量的牙齿和不同的齿宽。有限元分析和优化表明MAC的原型HINE工具合理,一阶天然频率为341.8Hz,远高于30Hz的工作频率,以避免共振。

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