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Effects of sorption and desorption of CO2 on the thermomechanical experimental behavior of HNBR and FKM O-rings - Influence of nanofiller-reinforced rubber

机译:CO2吸附和解吸对HNBR和FKM O形圈热机械实验行为的影响 - 纳米填充橡胶的影响

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摘要

Despite its importance in sealing, a fundamental understanding of the behavior of elastomeric O-rings in a gas environment is still incomplete. Further experimental research is needed to obtain a precise predictive model which can describe the combined effects of gases and mechanical loading. The effect of CO2 pressure (2, 4 and 6 MPa) on the mechanical compression behavior of HNBR and FKM seals at two temperatures (60 and 130 degrees C) is described in the paper. To evaluate the contribution of nanofiller reinforcement, experimental tests were carried out on two kinds of rubber which are reinforced or not with nanofiller (10 phr of expanded graphite). A ranking of materials was performed thanks to experimental database. HNBR seems to be the better candidate in the service conditions applied. Furthermore, the nanofillers which are introduced in the rubber can lead some damages in Rapid Gas Decompression conditions, notably when the zero pressure was applied (desorption).
机译:尽管密封至关重要,但对气体环境中弹性体O形圈的行为的根本理解仍然不完整。 需要进一步的实验研究来获得精确的预测模型,可以描述气体和机械载荷的组合效果。 本文描述了CO2压力(2,4和6MPa)对HNBR和FKM密封件的机械压缩行为的影响(60和130℃)。 为了评估纳米填充增强的贡献,在两种橡胶上进行实验试验,该橡胶与纳米填充物(10phr的膨胀石墨)加固。 由于实验数据库,进行了物料的排名。 HNBR似乎是所应用的服务条件中更好的候选人。 此外,在橡胶中引入的纳米填充物可以在快速的气体减压条件下引入一些损伤,特别是当施加零压力时(解吸)。

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