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Interfacial leakage of elastomer seals at low temperatures

机译:在低温下弹性体密封件的界面泄漏

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摘要

Interfacial leakage of air in hydrogenated nitrile butadiene rubber (HNBR) O-ring seals exposed to sub-ambient temperatures is studied. Flange-type fixtures with sealing surfaces produced by 3 different surface finish processes are used. When the seals are cooled down to temperatures below the elastomer glass transition point T-g of (-23 degrees C), an abrupt increase of air leakage (10(-2) cm(3)/min) is observed. The effects of surface finish conditions, compression ratio, grease lubrication and additions of carbon black in the HNBR on the cold leakage are discussed. Persson's contact mechanics and effective medium leakage theory coupled with finite element analysis (FEA) of the HNBR seals are utilized to capture the changes in the contact area and pressure with cooling and predict the seal failure temperatures. The main cause for the cold seal failures is believed to be the detachment of the elastomer seals from their mating sealing parts due to the elastomer thermal contraction and the negligible recovery of the HNBR in cold environment. In addition, the adhesive rubber-substrate interface influences the detachment and seal failure.
机译:研究了含氢丁腈丁二烯橡胶(HNBR)O形圈密封件的界面泄漏,暴露于亚环境温度。使用带有3种不同表面光洁度的密封表面的法兰式夹具。当密封件被冷却到低于(-23℃)的弹性体玻璃化转变点T-G的温度时,观察到空气泄漏(& 10(-2)cm(3)/ min)的突然增加。讨论了表面饰面条件,压缩比,润滑脂润滑和HNBR中的炭黑在冷泄漏中的炭黑的影响。 Persson的接触力学和有效介质泄漏理论与HNBR密封件的有限元分析(FEA)相结合,用于捕获接触面积和压力的变化,通过冷却,预测密封失效温度。冷密封故障的主要原因被认为是由于弹性体热收缩而从它们的配合密封部件和冷环境中的HNBR恢复脱落的弹性体密封件的分离。此外,粘合剂橡胶衬底界面会影响脱离和密封故障。

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