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NUMERICAL SIMULATION AND EXPERIMENTAL VALIDATION OF NORMAL STRAIN DISTRIBUTION AND PITTING PHENOMENON IN INDUSTRIAL GEARS

机译:工业齿轮正常应变分布和点蚀现象的数值模拟与实验验证

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In this paper, the normal strain distribution and pitting phenomenon on gears are investigated by means of numerical finite element analyses and experimental activities. In the first part of the paper, results of experimental tests for the investigation of the pitting phenomenon on gears are reported. These durability tests are made at a specific nominal load and far from the resonance. The experimental data are collected periodically from two tri-axial accelerometers placed on the gear shafts. After a short time, a visible pitting phenomenon arises on the gear teeth, where the contact pattern is perfectly centered (due to the high lead crown imposed on the teeth) and the wear pattern is consistent with FE simulations. In the second part of the paper, numerical finite element studies on the normal strain distribution at the base of the gear teeth during the contact are reported. These analyses are made at the same nominal load of the previous pitting analyses and at very low rotational speed (static analyses). A peak of normal strain at the base of the contact tooth is found around the contact time, preceded and followed by a low constant value of normal strain. The numerical results are validated by comparisons with experimental tests carried out in the same operating conditions and placing strain gauges at the tooth base of the gears.
机译:在本文中,通过数值有限元分析和实验活动研究了齿轮上的正常应变分布和点蚀现象。在本文的第一部分中,报道了对齿轮上进行点蚀现象的实验试验的结果。这些耐久性测试是在特定的标称载荷和远离共振的特定标称负载。从放置在齿轮轴上的两个三轴加速度计周期性地收集实验数据。在短时间之后,在齿轮齿上产生可见的点点现象,其中接触图案是完美的(由于施加在齿上的高引线冠部),并且磨损图案与FE模拟一致。在纸张的第二部分中,报道了在触点期间齿轮齿底部的正常应变分布的数值有限元研究。这些分析在先前点蚀分析的相同标称载荷和非常低的转速(静态分析)处进行。在接触齿的底部围绕接触时间达到正常菌株的峰值,前面并随后是正常菌株的低常数值。通过比较与在相同的操作条件下进行的实验试验和在齿轮的齿底处放置应变计的实验测试进行验证的数值结果。

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