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INVESTIGATION OF LOW-CYCLE BENDING FATIGUE OF AISI 9310 STEEL SPUR GEARS

机译:AISI 9310钢毛齿轮的低循环弯曲疲劳度研究

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摘要

An investigation of the low-cycle bending fatigue of spur gears made from AISI 9310 gear steel was completed. Tests were conducted using the single-tooth bending method to achieve crack initiation and propagation. Tests were conducted on spur gears in a fatigue test machine using a dedicated gear test fixture. Test loads were applied at the highest point of single tooth contact. Gear bending stresses for a given testing load were calculated using a linear-elastic finite element model. Test data were accumulated from 1/4 cycle to several thousand cycles depending on the test stress level. The relationship of stress and cycles for crack initiation was found to be semi-logarithmic. The relationship of stress and cycles for crack propagation was found to be linear. For the range of loads investigated, the crack propagation phase is related to the level of load being applied. Very high loads have comparable crack initiation and propagation times whereas lower loads can have a much smaller number of cycles for crack propagation cycles as compared to crack initiation.
机译:完成了对由AISI 9310齿轮钢制成的正齿轮的低周弯曲疲劳的研究。使用单齿弯曲方法进行了测试,以实现裂纹萌生和扩展。使用专用齿轮测试夹具在疲劳试验机中对正齿轮进行了测试。在单齿接触的最高点施加测试载荷。使用线性弹性有限元模型计算了给定测试载荷下的齿轮弯曲应力。根据测试应力水平,从1/4周期到几千个周期累积了测试数据。发现应力和裂纹萌生周期的关系是半对数的。发现应力和裂纹扩展周期的关系是线性的。对于所研究的载荷范围,裂纹扩展阶段与所施加的载荷水平有关。与裂纹萌生相比,极高的负载具有可比的裂纹萌生和扩展时间,而负载低时,裂纹扩展循环的周期数量则少得多。

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