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Design and Operating Characteristics of High-Speed, Small-Bore Cylindrical-Roller Bearings

机译:高速小孔径圆柱滚子轴承的设计和工作特性

摘要

The computer program SHABERTH was used to analyze 35-mm-bore cylindrical roller bearings designed and manufactured for high-speed turbomachinery applications. Parametric tests of the bearings were conducted on a high-speed, high-temperature bearing tester and the results were compared with the computer predictions. Bearings with a channeled inner ring were lubricated through the inner ring, while bearings with a channeled outer ring were lubricated with oil jets. Tests were run with and without outer-ring cooling. The predicted bearing life decreased with increasing speed because of increased contact stresses caused by centrifugal load. Lower temperatures, less roller skidding, and lower power losses were obtained with channeled inner rings. Power losses calculated by the SHABERTH computer program correlated reasonably well with the test results. The Parker formula for XCAV (used in SHABERTH as a measure of oil volume in the bearing cavity) needed to be adjusted to reflect the prevailing operating conditions. The XCAV formula will need to be further refined to reflect roller bearing lubrication, ring design, cage design, and location of the cage-controlling land.
机译:计算机程序SHABERTH用于分析为高速涡轮机械应用设计和制造的35毫米孔圆柱滚子轴承。在高速,高温轴承测试仪上进行了轴承参数测试,并将结果与​​计算机预测结果进行了比较。带有沟槽内圈的轴承通过内圈润滑,而带有沟槽外圈的轴承则通过喷油嘴润滑。在有和没有外圈冷却的情况下进行测试。轴承寿命的预测值随转速的增加而降低,这是由于离心载荷引起的接触应力增加所致。使用带槽的内圈可获得更低的温度,更少的辊打滑和更低的功率损耗。 SHABERTH计算机程序计算出的功率损耗与测试结果之间的相关性相当好。需要调整XCAV的Parker公式(在SHABERTH中用作轴承腔中油量的度量),以反映当前的工作条件。 XCAV公式将需要进一步完善,以反映出滚动轴承的润滑,环设计,保持架设计以及保持架控制区域的位置。

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