Evaluation techniques of hydrogen permeation in sealing rubber materials
Three techniques for determining the hydrogen permeation properties of rubber samples were developed based on the volumetric and gravimetric measurements of released H2 gas after sample decompression. These methods include gas chromatography (GC) by thermal desorption analysis (TDA), volumetric coll...
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Veröffentlicht in: | Polymer testing 2021-01, Vol.93, p.107016, Article 107016 |
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Sprache: | eng |
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Zusammenfassung: | Three techniques for determining the hydrogen permeation properties of rubber samples were developed based on the volumetric and gravimetric measurements of released H2 gas after sample decompression. These methods include gas chromatography (GC) by thermal desorption analysis (TDA), volumetric collection (VC) measurement of hydrogen by graduated cylinder and gravimetric (GM) measurement by electronic balance. By measuring the released hydrogen against elapsed time after the decompression of pressure, the charging amount (C0) and diffusivity (D) were obtained with the developed diffusion analysis program. From these values, the solubility (S) and permeability (P) of polymers were evaluated through the relations of Henry's law andP=SD, respectively. The developed techniques were applied to three kinds of spherically shaped sealing rubber materials. D, S and P were analyzed as a function of pressure. The transport behaviors obtained in the three methods are discussed and compared with the characteristics of each measuring technique. The correlations between transport parameters and carbon black filler or density are discussed.
•Development of three techniques for determining permeation characteristics of hydrogen gas.•Total charging amount of hydrogen(C0) and diffusivity(D) are obtained, which evaluate solubility(S) and permeability(P).•Pressure dependence on C0 follows Henry's law.•No appreciable pressure dependence for D and P is observed.•The transport behaviors obtained in three methods are discussed and compared with characteristics of each technique. |
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ISSN: | 0142-9418 |
DOI: | 10.1016/j.polymertesting.2020.107016 |