Evaluation of hybrid spindle bearings with nitriding raceway steels under high rotational speeds

Marcus Gärtner, Christian Brecher, Stephan Neus, Leonardo Catana, Feliciano Greco, Guillermo Morales-Espejel, Defeng Lang
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Abstract

The further development of high-precision bearings regarding higher speeds and load-carrying capacity is becoming increasingly challenging. One approach to meet the increased requirements is to use new high-performance raceway steels. Particularly for a highly stressed lubricant film, where seizure may occur, the bearing material properties can make a key contribution in increasing the lifetime. In the following, the test results of hybrid spindle bearings of type 7008 made of nitriding steel are analysed. The bearings were tested in an endurance run for a constant speed parameter of 2.5 million ndm and a maximum contact stress of 2,900 MPa at the inner ring contact. The operational behaviour was validated based on the bearing outer ring temperature and the acceleration level in the test rig. A further sample test in endurance runs with an increased speed parameter of 2.8 million ndm and a maximum contact stress of 3,200 MPa at the inner ring shows that the performance limit of the bearing is even higher than initially assumed. The microscope analyses of the bearing steels after the test show low wear. An analysis of the test conditions in terms of contact stresses, lifetime and the pv value illustrates that the bearings can run far above standard conditions. The experimental results show that the operational limits of hybrid spindle bearings with a raceway made of nitriding steels are significantly higher than expected.
高转速下氮化滚道钢混合主轴轴承的性能评价
关于更高速度和承载能力的高精度轴承的进一步发展正变得越来越具有挑战性。满足日益增加的要求的一种方法是使用新的高性能滚道钢。特别是对于高应力润滑膜,其中可能发生卡顿,轴承材料性能可以在增加寿命方面做出关键贡献。对氮化钢7008型混合主轴轴承的试验结果进行了分析。轴承在恒定转速参数为250万ndm和内环接触最大接触应力为2,900 MPa的持久运行中进行了测试。基于轴承外圈温度和试验台的加速度水平,验证了其运行行为。在转速参数增加到280万ndm,内圈最大接触应力达到3200 MPa的情况下,进一步进行了耐久运行的样品试验,结果表明,轴承的性能极限甚至高于最初的假设。试验后轴承钢的显微分析显示磨损程度低。从接触应力、寿命和pv值方面对测试条件的分析表明,轴承可以远远高于标准条件。实验结果表明,氮化钢滚道混合主轴轴承的工作极限明显高于预期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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