首页> 外文会议>International Conference on Fracture and Strength of Solids(FEOFS 2005) pt.1; 20050404-06; Bali(ID) >Experimental Study of the Influence of Tooth Profile Modifications on Spur Gear Dynamic Strain and Vibration
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Experimental Study of the Influence of Tooth Profile Modifications on Spur Gear Dynamic Strain and Vibration

机译:齿廓变形对正齿轮动态应变和振动影响的实验研究

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摘要

Noise and vibration that are generated in a gear transmission system are caused by transmission error. The transmission error arises from some errors that occur during manufacturing or called as manufacturing error, tooth deflection under load, structure deflection and distortions that occurs during operation. The transmission error due to tooth deflection can be reduced by performing gear profile modification. The shape and amount of gear tooth modification depend on load and error during manufacturing. This experiment uses four pair of gears. One of the pairs is gears without tooth profile modification. The other three of pairs experience tooth profile modification of long parabolic, intermediate parabolic and linear. In this experiment, the dynamic load is measured as the strain on the tooth root fillet. This measurement is carried out by installing a strain gage on the pairs of gears. Experimental result shows that strain occurring on the modified tooth profile gears is lower than on standard tooth profile until 50%, and this occurs on the tooth profile modification of the intermediate parabolic. Vibration measurement shows that the spectrum of long parabolic profile modified tooth has lower amplitude (measured on gear mesh frequency) especially under high load. The intermediate parabolic profile is higher in amplitude, and the linear profile is slightly lower in amplitude , respectivelly, compared with unmodified gear.
机译:齿轮传动系统中产生的噪音和振动是由传动误差引起的。传输误差是由制造过程中发生的一些误差引起的,这些误差称为制造误差,负载下的齿偏度,结构偏斜以及操作过程中发生的变形。可以通过执行齿轮轮廓修改来减少由于齿偏而引起的传动误差。轮齿修改的形状和数量取决于制造过程中的负载和误差。该实验使用了四对齿轮。一对齿轮是没有修改齿形的齿轮。另外三对则经历了长抛物线,中间抛物线和线性抛物线的齿形修改。在该实验中,将动态载荷测量为牙根圆角上的应变。通过在齿轮对上安装应变计进行测量。实验结果表明,在改进的齿形齿轮上产生的应变要比标准齿形低,直到50%,这是在中间抛物线的齿形变化上产生的。振动测量表明,长抛物线形改性齿的频谱具有较低的振幅(以齿轮啮合频率测量),特别是在高负载下。与未修改的齿轮相比,中间抛物线轮廓的振幅较高,而线性轮廓的振幅则略低。

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