Study on the design of ball valve based on elastic ring valve seat structure and fluid characteristics and fatigue strength

IF 2.3 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Ruiming Yu , Yefei Wu , Xiaoyu Chen , Xingguang Wu
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引用次数: 0

Abstract

Aimed at the technical problems such as the influence of granular medium on spring pre-tightening force sealing, a new ball valve based on elastic ring valve seat structure is studied. The spring plate type valve seat structure is designed to cooperate with the ball core for sealing, and the blade spring coil is used to cooperate with the ball core for sealing in the spring plate type valve seat structure. Wherein the supporting back ring supports the blade leaf spring on the outer side to enhance and protect the role of the blade spring coil. The design without the spring cavity avoids the problem of sealing failure caused by medium entering into the spring cavity and affecting the compression spring, and avoids the situation that the valve seat can be sealed with the ball core by pre-tightening the compression spring, thus avoiding the problem of sealing failure caused by the valve seat sticking on the valve body. The mechanical and flow characteristics are studied and analyzed by the ball valve characteristic test system. The stem torque, unbalance torque, flow characteristics and flow coefficient variation at different nominal diameters are analyzed. The seal allowable squeeze stress and seal surface pressure are analyzed, and the seal is stable and reliable with the seal pressure meeting the seal design criteria. The fluid dynamics simulation analyzes the velocity, pressure and flow traces of the fluid flowing through the ball valve under three opening degrees: fully closed, half open and fully open, the maximum velocity-pressure and opening degree variation curves of the inlet and outlet, the maximum velocity-pressure and opening degree variation curves of the inlet and outlet under different nominal diameters and the flow resistance coefficient curves. Static strength analysis was done for the ball core and spring plate seat structure to obtain the stress, displacement, strain and safety factor. The fatigue strength of the ball spool and spring-loaded plate seat structure was analyzed, and the total number of lives (cycles) and load factors were obtained, and the results show that the fatigue strength of the ball spool and spring-loaded plate seat structure is safe and the fatigue strength meets the requirements. Ball valve pressure test, low pressure sealing test and high pressure sealing test, valve body strength and ball valve sealing performance all meet the requirements.

基于弹性环阀座结构和流体特性及疲劳强度的球阀设计研究
针对颗粒介质对弹簧预紧力密封的影响等技术问题,研究了一种基于弹性环阀座结构的新型球阀。弹簧板型阀座结构设计为与球芯配合密封,弹簧板型阀座结构中采用片簧线圈与球芯协同密封。支撑背环在外侧支撑叶片弹簧,以增强和保护叶片弹簧线圈的作用。无弹簧腔的设计避免了介质进入弹簧腔影响压缩弹簧而导致密封失效的问题,避免了通过预紧压缩弹簧可以将阀座与球芯密封的情况,从而避免了阀座卡在阀体上而导致密封故障的问题。通过球阀特性测试系统对其力学特性和流动特性进行了研究和分析。分析了不同公称直径下的阀杆扭矩、不平衡扭矩、流量特性和流量系数变化。分析了密封允许挤压应力和密封表面压力,密封稳定可靠,密封压力符合密封设计标准。流体动力学模拟分析了流体在全闭、半开和全开三种开度下流经球阀的速度、压力和流动轨迹,入口和出口的最大速度-压力和开度变化曲线,进口和出口在不同公称直径下的最大流速压力和开度变化曲线以及流阻系数曲线。对球芯和弹簧板座结构进行了静强度分析,得到了其应力、位移、应变和安全系数。对球芯和弹簧板座结构的疲劳强度进行了分析,得出了其总寿命(循环次数)和载荷系数,结果表明,球芯和弹性板座结构疲劳强度是安全的,疲劳强度符合要求。球阀压力试验、低压密封试验和高压密封试验、阀体强度和球阀密封性能均符合要求。
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来源期刊
Flow Measurement and Instrumentation
Flow Measurement and Instrumentation 工程技术-工程:机械
CiteScore
4.30
自引率
13.60%
发文量
123
审稿时长
6 months
期刊介绍: Flow Measurement and Instrumentation is dedicated to disseminating the latest research results on all aspects of flow measurement, in both closed conduits and open channels. The design of flow measurement systems involves a wide variety of multidisciplinary activities including modelling the flow sensor, the fluid flow and the sensor/fluid interactions through the use of computation techniques; the development of advanced transducer systems and their associated signal processing and the laboratory and field assessment of the overall system under ideal and disturbed conditions. FMI is the essential forum for critical information exchange, and contributions are particularly encouraged in the following areas of interest: Modelling: the application of mathematical and computational modelling to the interaction of fluid dynamics with flowmeters, including flowmeter behaviour, improved flowmeter design and installation problems. Application of CAD/CAE techniques to flowmeter modelling are eligible. Design and development: the detailed design of the flowmeter head and/or signal processing aspects of novel flowmeters. Emphasis is given to papers identifying new sensor configurations, multisensor flow measurement systems, non-intrusive flow metering techniques and the application of microelectronic techniques in smart or intelligent systems. Calibration techniques: including descriptions of new or existing calibration facilities and techniques, calibration data from different flowmeter types, and calibration intercomparison data from different laboratories. Installation effect data: dealing with the effects of non-ideal flow conditions on flowmeters. Papers combining a theoretical understanding of flowmeter behaviour with experimental work are particularly welcome.
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