Method of experimental study of the force-deformation characteristics of the Belleville spring of the stop assembly of a direct-flow gate valve

IF 0.3 Q4 ENGINEERING, PETROLEUM Nafta-Gaz Pub Date : 2023-11-01 DOI:10.18668/ng.2023.11.07
I.I. Hasanov, Aga Guliyev, Yusif A. Tanriverdiyev
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Abstract

The article presents research methods and appropriate equipment for conducting experiments, as well as the analysis of the results. Studies on the hardness of the microstructure, elastic deformation and parts and samples were carried out using hardness testers, microscopes PMT-3, MIM-8 and devices for measuring the “force-strain” characteristic. The results of the study wer used to establish the dependence of the elastic properties of Belleville springs on the heat treatment modes, while also determining the microstructure and layer depth using various research methods. Every work studying the elastic properties and measurement of the static compressive force of a spring at a given strain value has been studied theoretically. Depending on the operating conditions, disc springs can be installed singly or assembled into packages, forming an elastic element working under compression. The research materials will be used in the work to improve the tightness of straight-through valves and the durability of the shut-off assembly parts. The dependence of the spring compression force and its deformation on the geometrical parameters of the disc springs has been established. Comparison of experimental and theoretical dependences has been made. It has been established that the residual deformation of the Belleville spring after captivity has a negative effect on the tightness of the shut-off valve assembly. The influence of various technological processes and modes of thermal treatment of disc springs on their elastic properties has been studied. Practical recommendations for improving the technological process of thermal treatment of Belleville springs have been proposed. The tasks of further research and implementation of the obtained results have been determined. Search work has been carried out to improve the technology of hardening processing of parts of the shut-off unit (gate and seat) of direct-flow valves. The possibility of using accelerated nitrocarburizing in a triethanolamine medium with induction heating by high-frequency currents at a temperature range of 950°С for boriding and borochroming has been established. Samples were made from standard steel grades 40, 40Kh and 38Kh2MYuA, subjected to hardening by the considered methods, and a study was made of the hardness, depth and microstructure of the hardened layer. Research in this direction should be continued in order to study the tribological characteristics (friction coefficient and wear resistance) of hardened parts. Each operation of the spring manufacturing technology has been studied, and deviations that have a significant impact on the operation of the spring and the sealing of the shut-off valve assembly have been identified.
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直通式闸阀止动组件贝勒维尔弹簧力变形特性的实验研究方法
文章介绍了进行实验的研究方法和适当设备,以及对实验结果的分析。使用硬度测试仪、显微镜 PMT-3、MIM-8 和 "力-应变 "特性测量设备对微观结构的硬度、弹性变形以及零件和样品进行了研究。研究结果用于确定贝勒维尔弹簧的弹性特性与热处理模式的关系,同时还利用各种研究方法确定了微观结构和层深度。所有研究弹性特性和测量给定应变值下弹簧静态压缩力的工作都是理论研究。根据工作条件的不同,碟形弹簧可以单独安装,也可以组装成套件,形成一个在压缩条件下工作的弹性元件。研究材料将用于提高直通阀的密封性和关闭组件部件的耐用性。弹簧压缩力及其变形与碟形弹簧几何参数的关系已经确定。对实验和理论依赖性进行了比较。实验证明,贝勒维尔弹簧的残余变形对截止阀组件的密封性有负面影响。研究了碟形弹簧的各种技术流程和热处理模式对其弹性特性的影响。提出了改进贝勒维尔弹簧热处理技术工艺的实用建议。确定了进一步研究和实施所获成果的任务。为改进直流阀关闭装置部件(闸门和阀座)的硬化处理技术,已开展了研究工作。已经确定了在三乙醇胺介质中使用加速软氮化,并在 950°С 温度范围内通过高频电流感应加热进行硼化和硼铬化的可能性。样品由标准钢种 40、40Kh 和 38Kh2MYuA 制成,采用上述方法进行硬化,并对硬化层的硬度、深度和微观结构进行了研究。为了研究硬化部件的摩擦学特性(摩擦系数和耐磨性),应继续进行这方面的研究。对弹簧制造技术的每项操作都进行了研究,找出了对弹簧操作和截止阀组件密封性有重大影响的偏差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nafta-Gaz
Nafta-Gaz ENGINEERING, PETROLEUM-
CiteScore
0.80
自引率
60.00%
发文量
81
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