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首页> 外文期刊>Journal of Failure Analysis and Prevention >Optimized Valve Stem Design in Oil and Gas Industry to Minimize Major Failures
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Optimized Valve Stem Design in Oil and Gas Industry to Minimize Major Failures

机译:油气工业中优化的阀杆设计,以最大限度地减少重大故障

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摘要

A valve is a mechanical component in a piping system that is used to open and close the fluid passage, avoid return of the fluid, control the flow, or for safety purposes. An industrial valve contains different parts in general, such as pressure-controlling and pressure-containing parts. The valve stem is categorized as a pressure-containing part, and failure of this component leads to leakage of the fluid to the environment. Thus, failure of the valve stem leads to asset losses, oil or gas spillage into the environment, human injury or death, and in general health, safety, and environmental concerns. Therefore, this article addresses some of the main stem design features to minimize the risk of failure in stem. The main design features are the maximum allowable stem torque to enable the stem to handle the operator torque or force, stem diameter calculation, material selection, anti-blow out and anti-static design. Different materials for the stem, especially those with high mechanical strength, are proposed in this article. The anti-blow out design feature and solutions for stem and closure member connection, as well as stem and body connection, have been explained in detail. The anti-static design will provide electrical continuity among the stem, ball, and body to minimize the risk of fire inside the valve due to the accumulation of static electricity in the valve's soft materials, which has been explained. The valve stem sealing is not included in this article and requires separate research.
机译:阀门是管道系统中的机械部件,用于打开和关闭流体通道,避免流体返回,控制流动,或用于安全目的。工业阀通常含有不同的部分,例如压力控制和含压力的零件。阀杆被分类为含压力部分,并且该部件的故障导致流体泄漏到环境。因此,阀杆的失效导致资产损失,石油或气体泄漏到环境,人体伤害或死亡以及一般健康,安全和环境问题。因此,本文解决了一些主要的茎设计特征,以最大限度地减少茎中失效的风险。主要设计特征是最大允许的杆扭矩,使阀杆能够处理操作员扭矩或力,阀杆直径计算,材料选择,防喷和防静电设计。本文提出了茎,尤其是具有高机械强度的茎的不同材料。已经详细解释了杆和闭合构件连接的防喷设计特征和解决方案,以及杆和主体连接。防静电设计将在阀杆,球和身体之间提供电连续性,以最大限度地减少由于阀的软材料中的静电积聚而在阀门内部的火灾风险,这已经解释。本文不包括阀杆密封,并且需要单独的研究。

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