首页> 外文期刊>Mechanism and Machine Theory: Dynamics of Machine Systems Gears and Power Trandmissions Robots and Manipulator Systems Computer-Aided Design Methods >Computerized design and simulation of meshing of modified double circular-arc helical gears by tooth end relief with helix
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Computerized design and simulation of meshing of modified double circular-arc helical gears by tooth end relief with helix

机译:螺旋齿端卸荷啮合的改进型双圆弧斜齿轮啮合的计算机设计与仿真

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摘要

The contents of the paper cover: (i) computerized design, (ii) method for modification, (iii) simulation of meshing, and (iv) finite element analysis of the unmodified and modified double circular-arc gears. The approach proposed of tooth end relief with helix is based on the curves of circumferential displacement differences between before and after tooth surfaces entering in mesh and exiting out mesh. And the solutions under the conditions of different modification parameters are investigated. The results demonstrate that the method enables to decline transmission errors, decrease the maximum contact stress, lessen the tooth end stress, and cut down the circumferential displacement difference, effectively. Therefore, the purposes for modification of reducing noise and vibration and avoiding edge contact are achieved. In comparison with conventional double circular-arc gears, the developed theory is illustrated with numerical examples that confirm the advantages of the gear drives of the modified geometry.
机译:论文封面内容:(i)计算机化设计,(ii)修改方法,(iii)啮合模拟,(iv)未修改和修改的双圆弧齿轮的有限元分析。提出的具有螺旋的齿端起伏的方法是基于齿表面进入网格和退出网格之前和之后的圆周位移差的曲线。并研究了不同修改参数条件下的解。结果表明,该方法可以有效降低传递误差,减小最大接触应力,减小齿端应力,减小周向位移差。因此,达到了用于减少噪声和振动以及避免边缘接触的修改目的。与常规的双圆弧齿轮相比,通过数值示例说明了开发的理论,这些示例证实了改进的几何形状的齿轮驱动装置的优点。

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