首页> 外文会议>ASME Pressure Vessels and Piping Conference >THE MECHANICAL CHARACTERISTICS AND SEALING PERFORMANCE EVALUATION OF BOLTED PIPE FLANGE CONNECTIONS WITH METALLIC FLAT GASKETS SUBJECTED TO INTERNAL PRESSURE
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THE MECHANICAL CHARACTERISTICS AND SEALING PERFORMANCE EVALUATION OF BOLTED PIPE FLANGE CONNECTIONS WITH METALLIC FLAT GASKETS SUBJECTED TO INTERNAL PRESSURE

机译:螺栓管法兰连接与内部压力的金属扁平垫圈的机械特性及密封性能评价

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Bolted pipe flange connections with metallic gaskets have been used under higher pressure as well as higher temperature. However, a few researches on the mechanical characteristics in connections with metallic gaskets have been carried out. It is necessary to examine the mechanical characteristics such as the contact gasket stress distributions which govern the sealing performance, the deformation of the metallic gaskets, changes in axial bolt forces and the hub stress under higher pressure and temperature. In the present paper, the objectives are to examine the changes in axial bolt forces, the hub stress and the contact gasket stress distributions and the sealing performance of the pipe flange connections with metallic flat gaskets. Firstly, the mechanical characteristics of the connections under higher pressure are analyzed using FEA. Then, experiments were carried out to measure the load factor, the hub stress and the leak rate (the sealing performance). The relationship between the average contact gasket stress and the leak rate was measured using platen device at room temperature. The FEA results are fairly coincided with the experimental results. It is shown that the leak rate decreases as the contact gasket stress increases and when the plastic deformation of gaskets occurs, the sealing performance increases. The leak rate was measured in the range of 10~(-4)~10~(-7) [Pa·m~3/s]. It is found that the sealing performance increases as the gasket width increase in the elastic deformation range while it is independent of the gasket width when the plastic deformation occurs. The effect of temperature on the mechanical characteristics of the connection is also examined. The FEA results are in a fairly good agreement with the experimental results. It is found that the sealing performance increases as the temperature increases. In addition, a method how to determine the bolt preload for increasing the sealing performance is proposed.
机译:具有金属垫圈的螺栓管法兰连接已在较高的压力下使用以及更高的温度使用。然而,已经进行了一些关于与金属垫圈的机械特性的研究已经进行。有必要检查机械特性,例如控制密封性能的触头垫应力分布,金属垫圈的变形,在较高压力和温度下在轴向螺栓力和轮毂应力下变化。在本文中,目的是检查轴向螺栓力,轮毂应力和接触垫圈应力分布的变化以及与金属平垫圈的管道法兰连接的密封性能。首先,使用FEA分析在较高压力下的连接的机械特性。然后,进行实验以测量负载因子,轮毂应力和泄漏率(密封性能)。在室温下使用压板装置测量平均接触垫应力和泄漏率之间的关系。 FEA结果与实验结果相当恰逢其股。结果表明,随着接触垫圈应力增加并且当发生垫圈的塑性变形时,泄漏率降低,密封性能增加。测量泄漏率在10〜(-4)〜10〜(-7)[PA·m〜3 / s]的范围内。发现密封性性能随着弹性变形范围内的垫圈宽度增加而增加,而当塑性变形发生时它与垫圈宽度无关。还检查了温度对连接的机械特性的影响。 FEA结果与实验结果相当愉快。发现密封性性能随温度升高而增加。另外,提出了一种方法如何确定用于增加密封性能的螺栓预载。

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