首页> 外文会议>ASME Pressure Vessels and Piping conference >AXI-SYMMETRICAL STRESS ANALYSIS AND SEALING PERFORMANCE EVALUATION OF A PIPE FLANGE CONNECTION UNDER ELEVATED TEMPERATURE AND INTERNAL PRESSURE
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AXI-SYMMETRICAL STRESS ANALYSIS AND SEALING PERFORMANCE EVALUATION OF A PIPE FLANGE CONNECTION UNDER ELEVATED TEMPERATURE AND INTERNAL PRESSURE

机译:高温和内压下管道法兰连接的轴对称应力分析和密封性能评估

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摘要

The pipe flange connections have been widely used in mechanical structures and these are mainly used under internal pressure and elevated temperature. Some investigations have been performed on mechanical behaviors such as the contact gasket stress distribution of pipe flange connection under internal pressure. However, the effects of elevated temperature on the sealing performance and mechanical behavior in the pipe flange connection have not been analyzed exactly. To design a pipe flange connection, it is necessary to know the effect of elevated temperature and the detailed flange strength for the hub and the contact gasket stress distributions in the connection. In this paper, the stress analysis of a pipe flange connection under elevated temperature and internal pressure is carried out taking into account a non-linearity and hysteresis of the gasket using the axi-symmetric theory of elasticity. The contact gasket stress distributions at the interfaces, the hub stress, in the pipe flange connection under elevated temperature and internal pressure are analyzed. Using the obtained contact gasket stress distributions, the amount of gasket leakage (He gas) is estimated. Leakage tests of the pipe flange connections were also conducted and the temperature of pipe flange connection was measured using thermoelectric couples. As a result, the difference of temperature between inner and outer is about 10%. The contact gasket stress was increased as the heated temperature was increased.
机译:管法兰连接已广泛用于机械结构中,主要在内部压力和高温下使用。已经对机械性能进行了一些研究,例如在内部压力下管法兰连接的接触垫片应力分布。但是,尚未精确分析高温对管道法兰连接中的密封性能和机械性能的影响。要设计管道法兰连接,必须了解高温的影响以及轮毂的详细法兰强度和连接中的接触垫片应力分布。在本文中,使用轴对称弹性理论,考虑了垫圈的非线性和滞后性,对高温和内压下的管道法兰连接进行了应力分析。分析了在高温和内压作用下,管法兰连接处界面处的接触垫片应力分布,轮毂应力。使用获得的接触垫片应力分布,可以估算出垫片泄漏(氦气)的量。还进行了管道法兰连接的泄漏测试,并使用热电偶测量了管道法兰连接的温度。结果,内部和外部之间的温度差约为10%。接触垫片的应力随着加热温度的升高而增加。

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