首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >LEAKAGE OF A HIGH TEMPERATURE AND HIGH PRESSURE FLANGE METAL GASKET DUE TO ITS RATCHETING IN ALTERNATING POURS OF RAIN
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LEAKAGE OF A HIGH TEMPERATURE AND HIGH PRESSURE FLANGE METAL GASKET DUE TO ITS RATCHETING IN ALTERNATING POURS OF RAIN

机译:高温和高压法兰金属垫片泄漏由于其在交替雨水中的棘轮时

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In the high pressure ethylene polymerization process, pipes transmitting reaction product are often bolt-flange connected with metal gaskets which demands high tightness. However ethylene and polyethylene was found leaking from a flange connection in the pipe out of a polymerization kettle after several pours of rain, which leads to an emergency shutdown. A finite element model was worked out to simulate the ratcheting of the metal gasket during the on and off rains by keeping the temperature of the pipe, flange, and gasket as 270°C, but changing the temperature of bolts from higher temperature 270°C to a lower temperature cyclically. Elastic and perfect plastic model was conservatively employed in the ratcheting analysis. It is found that gasket plastic strains accumulate with the bolt temperature drop cycles. The higher the bolt temperature drop, the more plastic strain accumulation. Consequently, the contact pressure between the flange and the gasket reduces with the bolt temperature cycles. The higher the temperature drop, the less the flange connection tightness. It reveals that bolt temperature drop below 155°C does not destroy the flange connection tightness with a gasket parameter 3.0. When temperature drops are above 155°C , temperature cycles to destroy the flange connection tightness decrease with temperature drops, namely the higher the temperature drop, the less temperature cycles needed to destroy the flange connection tightness. A margin line has been worked out to correlate the bolt temperature drops and cycles to the gasket leakage.
机译:在高压乙烯聚合过程中,管传送反应产物往往螺栓凸缘与要求高密封性金属垫圈连接。然而乙烯和聚乙烯被发现从后雨水几个倒进,这导致紧急关闭在管出聚合釜的法兰连接泄漏。有限元模型,通过保持管,法兰的温度,以及密封垫270℃,但是从较高温度270改变螺栓的温度计算出在接通和关断的降雨,以模拟该金属垫圈的棘轮℃下到较低的温度循环。弹性和完美塑料模型在棘轮分析保守使用。据发现,垫圈的塑性应变与螺栓温度下降周期累积。越高螺栓温度下降,越塑性应变的积累。因此,凸缘和垫圈之间的接触压力与螺栓温度循环降低。较高的温度下降,越少的法兰连接紧密度。它揭示了在155℃以下的是螺栓温度降不带垫片参数3.0破坏法兰连接紧密度。当温度下降高于155℃,的温度循环以破坏法兰连接紧密度降低随着温度下降,即较高的温度下降,以破坏法兰连接紧密度所需要的更少的温度循环。甲缘线已经制定出到螺栓温度下降并循环到垫圈泄漏相关。

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