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Chapter 60 Modulation Signal Bispectrum Based Monitoring of Tooth Surface Wear for Modification Spiral Bevel Gear

机译:第60章改进螺旋锥齿轮齿面磨损的基于调制信号BISPectrum监测

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As the contact point and contact path seriously affect the spiral bevel gear mesh characterize, the tooth modification method was applied to manufacture, and tooth contact markers can verify the contact area. However, when the contact area wear happen, the actual contact area may be changed which is not the expectation. And hence, the spiral bevel gear transmission is more sensitive to wear compare with parallel shaft gear transmission. The vibration response would reflect the wear severity. Nonetheless, the relative motion of spiral bevel gear contacting areas, which cause tooth surfaces wear, is rather complex on account of time-vary proportion of rolling and sliding. Moreover, the wear is not uniform, if there were some defects on the surface, the wear would intensify the defect. Modulation signal bispectrum (MSB) has been proven to be an effective monitoring approach which is sensitive to gear tooth defect. Spiral bevel gear tooth modification, which can change the contact area, is very important to the dynamic performance. To assess the improvement of the modification to tooth wear, a run-to-failure experiment of modification spiral bevel gear was carried out under accelerated wear conditions, and MSB method is applied to analysis the gearbox housing vibration signal to indicate the wear progress. The experimental results demonstrated the accuracy and reliability of the MSB-SE monitoring approach proposed.
机译:由于接触点和接触路径严重影响螺旋锥齿轮网格表征,牙齿修改方法应用于制造,并且牙齿接触标记可以验证接触面积。然而,当接触面积磨损发生时,可以改变实际接触区域,这不是期望。因此,螺旋锥齿轮传动更敏感于与平行轴齿轮传动的磨损比较。振动响应会反映磨损严重程度。尽管如此,螺旋锥齿轮接触区域的相对运动,导致齿面磨损的区域是由于轧制和滑动的时变比例而变得非常复杂。而且,磨损不均匀,如果表面上存在一些缺陷,磨损会加剧缺陷。调制信号BISPectrum(MSB)已被证明是一种有效的监测方法,对齿轮齿缺陷敏感。螺旋锥齿轮齿改性,可以改变接触面积,对动态性能非常重要。为了评估改进修改牙齿磨损,在加速磨损条件下进行改性螺旋锥齿轮的失效试验,并应用MSB方法来分析齿轮箱壳体振动信号以指示磨损进度。实验结果表明了建议的MSB-SE监测方法的准确性和可靠性。

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