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FAILURE ANALYSIS OF A LARGE KNIFE GATE VALVE SUBJECTED TO MULTIAXIAL LOADING

机译:大型刀闸阀承受多轴载荷的故障分析

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Knife gate valves are common in process piping plants in the petrochemical industry. In this study a failure analysis is undertaken on a large knife gate valve attached on top of a Y-piece as part of a purge bin outlet in a polyethylene production facility. A large crack was discovered on the knife gate valve shortly after its installation and operation of the facility. The study outlines a methodology, based on the finite element method, to analyze failure of such units. It starts out by determining the stress intensification factors for a Y-piece by conducting an FEA, which are used in CAESER II piping software to determine the operational loads on the valve. The loads are used as inputs for a non-linear FEA model of the valve accounting for material failure based on continuum damage mechanics approach. The FEA results suggest that the operational loads are not the root cause to the observed failure on the gate valve. It is rather attributed to internal casting defects and the lack of post-heat treatment of the valve.
机译:刀闸阀在石化行业的过程管道工厂中很常见。在这项研究中,对大型刀闸阀进行了故障分析,该刀闸阀安装在Y型件的顶部,是聚乙烯生产设备中吹扫仓出口的一部分。设备安装和运行后不久,在刀闸阀上发现了一个大裂缝。这项研究概述了一种基于有限元方法的方法,可以分析此类单元的故障。首先通过执行有限元分析确定Y型件的应力增强因子,该因子在CAESER II管道软件中用于确定阀上的工作负载。负载用作基于连续损伤力学方法考虑材料故障的阀门非线性有限元分析模型的输入。 FEA结果表明,操作负载不是闸阀上观察到的故障的根本原因。而是将其归因于内部铸件缺陷和阀门缺乏后热处理。

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