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RELIABILITY IMPROVEMENTS TO A HIGH SPEED/HIGH ENERGY PUMP

机译:高速/高能泵的可靠性改进

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The paper describes the problems encountered and solutions that were implemented to improve the reliability of a high speed/high energy centrifugal pump. Two of these pumps were originally installed in 1984, with a third installed in 1989 because of a unit expansion. The reliability of the pumps was improved in 1995 when the original stainless steel impeller and inducer were replaced with titanium, to raise the output shaft critical speed above the pump operating speed. However, the reliability of the pumps continued to be an issue with as many as seven failures in 2001. A plan was put together to address the reliability problems by modifying the gearbox seal, the secondary sealing system, and the tilting pad bearing design on the output shaft. These improvements have lowered the shaft vibration and greatly improved the reliability of the pump and gearbox. A discussion of the rotordynamic analysis used to change the bearing design is included, along with the effects of the impeller/inducer material change. Likewise, how the improved secondary sealing system improved the synchronous vibration is also discussed.
机译:本文介绍了所遇到的问题以及为提高高速/高能离心泵的可靠性而采取的解决方案。其中的两台泵最初是在1984年安装的,而第三台是在1989年由于机组扩展而安装的。 1995年,当用钛代替原来的不锈钢叶轮和诱导器时,提高了泵的可靠性,从而将输出轴的临界转速提高到了泵的运行速度之上。但是,在2001年,泵的可靠性仍然是一个问题,有多达7处故障。通过修改变速箱密封,次级密封系统和倾斜垫轴承设计,制定了一项解决可靠性问题的计划。输出轴。这些改进降低了轴的振动,并大大提高了泵和齿轮箱的可靠性。讨论了用于更改轴承设计的转子动力学分析,以及叶轮/感应器材料变化的影响。同样,还讨论了改进的二次密封系统如何改善同步振动。

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