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Experimental evaluation of lubrication characteristics of a new type oil-film bearing oil using multi-sensor system

机译:多传感器系统对新型油膜轴承润滑油特性的实验评价

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摘要

In order to evaluate the operating performance of a new type oil-film bearing oil S220,a new test bearing was designed based on oil-film bearing test rig. The operating temperature ofS220 was tested through the thermocouples installed on a test bearing; the operating oil-film pressurewas tested through pressure transducers; and the operating oil-film thickness was tested throughdisplacement transducers. Meanwhile, M220 was also tested as a comparison, and both oils arebased on mineral oil. The results showed that all property indexes of the test rig can meet thespecified requirements and can guarantee the performance test of oil-film bearing oil; the operatingtemperature of S220 is generally equal to that of M220, and both have the same operating stability.The temperature property conforms to Formula (1) and the operating temperature under differentload cases can be predicted. Although oil-film pressure of M220 is a little more stable, the oil-filmpressure of S220 is similar to that of M220. Moreover, both have the similar oil-film thickness, andthe oil-film thickness of S220 is slightly smaller than that of M220, especially at the beginning ofoperation. Ultimately, oil S220 is evaluated to be suitable for actual engineering application.
机译:为了评估新型油膜轴承油S220的运行性能,设计了一种基于油膜轴承试验台的新型试验轴承。 S220的工作温度通过安装在测试轴承上的热电偶进行测试;通过压力传感器测试工作油膜压力;并通过位移传感器测试了工作油膜的厚度。同时,还对M220进行了比较测试,两种油均基于矿物油。结果表明,该试验台的各项性能指标均满足规定要求,可以保证油膜轴承油的性能测试。 S220的工作温度通常与M220相同,并且两者具有相同的工作稳定性。温度特性符合公式(1),可以预测不同负荷情况下的工作温度。尽管M220的油膜压力稍微稳定一些,但S220的油膜压力与M220相似。而且,两者的油膜厚度相似,特别是在开始运行时,S220的油膜厚度略小于M220。最终,对油S220进行了评估,使其适合实际工程应用。

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