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Experimental and dynamic system simulation and optimization of a centrifugal pump-coupling-engine system--Part 1: Failure identification

机译:离心泵-耦合发动机系统的实验和动态系统仿真与优化-第1部分:故障识别

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The failure mode of the six impellers of a centrifugal pump in an irrigation system used for street washing has been analyzed. The irrigation system is installed in more than 300 vehicles and consists of a pump, a tank, a regulator valve and the piping network. The was caused by a premature deterioration of the pump impellers in the water inlet section, which led to an increase in water loss, reduction of pump capacity and, finally, the breakdown of the pump. In order to ascertain whether the anomaly was metallurgically related, the original pump impellers were replaced with others of the same geometry but made of stainless steel; these new pumps also presented the same failure mode. The system was analyzed using a non-excited torsional lumped model, in which the stiffness of several degrees of freedom was evaluated with a finite element code, and an experimental analysis of the pumping system. The results show a very high level of torsional vibrations induced by severe pulsations of engine torque. These vibrations were mainly responsible for damage to the impellers.
机译:分析了用于街道冲洗的灌溉系统中离心泵的六个叶轮的故障模式。灌溉系统安装在300多辆车中,由泵,水箱,调节阀和管道网络组成。这是由于进水段中的泵叶轮过早损坏而导致的,这导致水损失增加,泵容量降低,并最终导致泵故障。为了确定异常是否与冶金有关,将原来的泵叶轮换成其他相同形状但由不锈钢制成的叶轮。这些新泵也表现出相同的故障模式。使用非激励扭转集总模型对系统进行了分析,其中使用有限元代码评估了多个自由度的刚度,并对泵系统进行了实验分析。结果表明,由于发动机扭矩的剧烈波动而引起的非常高的扭转振动。这些振动是造成叶轮损坏的主要原因。

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