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Experimental gears vibration analysis for reducing meshing force of automatic transmission

机译:实验齿轮振动分析减少自动变速器啮合力

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The effort of gear noise reduction has traditionally focused on minimizing transmission error. On the other hand, gears vibration characteristics are also known to influence gear noise strongly. With the thin helical gears, therefore, the entire gear noise mechanism is clarified quantitatively by experimental analysis, and a dominant factor is specified. The analysis has shown that meshing force is the most significant factor. Thus, innovative gear structure has been devised, which aggressively controls meshing force characteristics like a dynamic vibration reducer. Redesigned gears have successfully improved gear noise. These experimental technologies and design methods can be applied to general gear noise problem in order to conduct optimization.
机译:齿轮降噪的努力传统上专注于最小化传输误差。另一方面,还已知齿轮振动特性来强烈影响齿轮噪声。因此,通过薄螺旋齿轮,通过实验分析定量阐明整个齿轮噪声机制,并指定了显性因素。分析表明,啮合力是最重要的因素。因此,已经设计了创新的齿轮结构,这激进了像动态振动减振器那样的啮合力特性。重新设计的齿轮已经成功地改善了齿轮噪音。这些实验技术和设计方法可以应用于一般齿轮噪声问题以进行优化。

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