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Condition monitoring of an ultra high pressure intensifier for water j et cutting machines

机译:水J et切割机超高压增强器的状态监测

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The most important advantages of water jet are the capability to cut nearly every material, the low cutting temperature and the negligible cutting forces. When end users are interviewed, most of them point out that the most critical problem of water jet machines is the reliability of the system components, together with the difficulty in estimating their life time. As far as the UHP (Ultra High Pressure) intensifier is concerned, there are several components that work under extreme fatigue conditions, as the pressure inside the cylinders can reach 400 or even 600 MPa. Nearly every critical component is located into the UHP intensifier, but different failure scenarios can be envisaged, leading to different pattern deviations from nominal behavior conditions. In this paper a correlation analysis on multiple signal features with the health status of the machine is presented. Then a multi-sensor based monitoring approach is discussed and tested on a real case study: it is based on the usage of control charts for in-control region definition and possible detection of faults.
机译:水射流最重要的优点是能够切割几乎每种材料,低切削温度和可忽略不计的切割力。当最终用户受访时,他们中的大多数人指出了水喷射机器的最关键问题是系统组件的可靠性,以及难以估计其寿命的难度。就UHP(超高压)增强器而言,有几个部件在极端疲劳条件下工作,因为汽缸内的压力可以达到400甚至600MPa。几乎每个关键组件都位于UHP增强器中,但可以设想不同的故障情景,导致与标称行为条件不同的模式偏差。本文提出了对机器健康状态的多个信号功能的相关分析。然后,在实际研究中讨论并测试了基于多传感器的监视方法:它基于控制图表的控制图的用法以及可能的故障检测。

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