Study on life distribution and prediction method of flexible graphite composite reinforced gasket

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Yunhao Zhang, Chunlei Shao, Jing Kong, Junwei Zhou, Jianfeng Zhou
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引用次数: 0

Abstract

Purpose

This paper aims to prevent gasket sealing failure in engineering, accurately predict gasket life, extend system life and improve sealing reliability. The accelerated life test method of flexible graphite composite–reinforced gaskets is established, the life distribution law of flexible graphite composite–reinforced gaskets is revealed, and the life prediction method of flexible graphite composite–reinforced gaskets with different allowable leakage rates is proposed, which can provide a reference for the life prediction of other types of gaskets.

Design/methodology/approach

In this study, flexible graphite composite–reinforced gaskets were tested for long-term high-temperature sealing performance on a multi-sample gasket accelerated life test rig. The data were also analyzed using the least squares method and the K-S hypothesis calibration method. A gasket time-dependent leakage model and an accelerated life model were also developed. Constant stress-accelerated life tests were conducted on flexible graphite composite–reinforced gaskets. On this basis, a gasket life prediction method at different allowable leakage rates was proposed.

Findings

The life distribution law of flexible graphite composite–reinforced gaskets is revealed. The results show that the life of the gasket obeys the Weibull distribution. The time-correlated leakage model and accelerated life model of the gasket were established. And the accelerated life test method of the flexible graphite composite–reinforced gasket was established. The life distribution parameters, accelerated life model parameters and life estimates of gaskets were obtained through tests. On this basis, a gasket life prediction method under different leakage rates was proposed, which can be used as a reference for other types of gaskets.

Practical implications

The research in this paper can better provide guidance for the use and replacement of gaskets in the project, which is also very meaningful for predicting the leakage condition of gaskets in the bolted flange connection system and taking corresponding control measures to reduce energy waste and pollution and ensure the safe operation of industrial equipment.

Originality/value

A multi-specimen gasket-accelerated life test device has been developed, and the design parameters of the device have reached the international advanced level. The life distribution law of the flexible graphite composite–reinforced gasket was revealed. The accelerated life test method for the flexible graphite composite–reinforced gasket was established. The life prediction method of the flexible graphite composite–reinforced gasket under different allowable leakage rates was proposed.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-08-2023-0254/

柔性石墨复合增强垫片寿命分布及预测方法研究
目的防止工程中垫片密封失效,准确预测垫片寿命,延长系统寿命,提高密封可靠性。建立了柔性石墨复合增强垫片的加速寿命试验方法,揭示了柔性石墨复合增强垫片的寿命分布规律,提出了不同允许泄漏率下柔性石墨复合增强垫片的寿命预测方法,可为其他类型垫片的寿命预测提供参考。设计/方法/方法在本研究中,在多样品垫片加速寿命试验台上测试了柔性石墨复合增强垫片的长期高温密封性能。采用最小二乘法和K-S假设校正法对数据进行分析。建立了衬垫随时间变化的泄漏模型和加速寿命模型。对柔性石墨复合增强垫片进行了恒应力加速寿命试验。在此基础上,提出了不同允许泄漏率下垫片寿命预测方法。发现揭示了柔性石墨复合增强垫片的寿命分布规律。结果表明,垫片的寿命服从威布尔分布。建立了密封垫片的时间相关泄漏模型和加速寿命模型。建立了柔性石墨复合增强垫片的加速寿命试验方法。通过试验得到了衬垫的寿命分布参数、加速寿命模型参数和寿命估计。在此基础上,提出了不同泄漏率下垫片寿命预测方法,可为其他类型垫片的寿命预测提供参考。实际意义本文的研究可以更好地为工程中垫片的使用和更换提供指导,对于预测螺栓法兰连接系统垫片的泄漏情况并采取相应的控制措施,减少能源浪费和污染,保证工业设备的安全运行也具有重要意义。研制了多试样垫片加速寿命试验装置,装置设计参数达到国际先进水平。揭示了柔性石墨复合增强垫片的寿命分布规律。建立了柔性石墨复合增强垫片的加速寿命试验方法。提出了不同允许泄漏率下柔性石墨复合增强垫片的寿命预测方法。同行评议本文的同行评议历史可在:https://publons.com/publon/10.1108/ILT-08-2023-0254/
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
Industrial Lubrication and Tribology
Industrial Lubrication and Tribology 工程技术-工程:机械
CiteScore
3.00
自引率
18.80%
发文量
129
审稿时长
1.9 months
期刊介绍: Industrial Lubrication and Tribology provides a broad coverage of the materials and techniques employed in tribology. It contains a firm technical news element which brings together and promotes best practice in the three disciplines of tribology, which comprise lubrication, wear and friction. ILT also follows the progress of research into advanced lubricants, bearings, seals, gears and related machinery parts, as well as materials selection. A double-blind peer review process involving the editor and other subject experts ensures the content''s validity and relevance.
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