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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Rotational Vibration of a Helical Gear Pair with Modified Tooth Surfaces
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Rotational Vibration of a Helical Gear Pair with Modified Tooth Surfaces

机译:修改后的齿面的斜齿轮副的旋转振动

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摘要

The dynamic increment of tooth load derived from the new theory is verified by experiment, which is expressed as a function of two variables, velocity and operating load, with the parameter of tooth surface modification, when the dimensions and the tooth-pair spring constant of the gear pair are given. This dynamic incremental load can be used as an index of the dynamic performance of a gear pair, such as noise, vibration and dynamic load. A gear design method to minimize the index is discussed theoretically, which clarifies that there are combinations of tooth surface modification, tooth-pair spring constant and static load which minimize the index and that, in the gear pair which realizes no dynamic incremental load (the index = 0) under any load, the tooth surface is not modified and the equivalent tooth-pair spring constant does not vary. In other words, designing a gear pair to show good dynamic performance under any load means realizing an equivalent tooth-pair spring constant with variation as small as possible by choosing the optimal dimensions and realizing tooth suface modification as small as possible by choosing proper manufacturing processes.
机译:通过实验验证了从新理论推导出的齿载荷的动态增量,当齿的尺寸和齿对弹簧常数为常数时,齿载荷的动态增量表示为速度和工作载荷这两个变量的函数,并带有齿面修改参数。给出齿轮对。该动态增量负载可以用作齿轮对动态性能的指标,例如噪音,振动和动态负载。从理论上讨论了一种最小化该指标的齿轮设计方法,该方法阐明了齿面修整,齿对弹簧常数和静态负载的组合使该指标最小,并且在齿轮对中没有动态增量负载(指数= 0)在任何负载下,齿面都不会改变,并且等效齿对弹簧常数不变。换句话说,将齿轮副设计成在任何负载下都具有良好的动态性能意味着通过选择最佳尺寸来实现等效齿对弹簧常数,且其变化要尽可能小,而通过选择适当的制造工艺来实现尽可能小的齿面修整。 。

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