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Is the Safe Performance of Flame Gaps in Flameproof Electrical Apparatus Deteriorated by Rusting and Mechanical Damage? Part 2: Group ⅡB and ⅡC Gases

机译:防爆电气设备中的火焰间隙的安全性能是否会因生锈和机械损坏而恶化?第2部分:ⅡB和ⅡC组气体

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摘要

Electrical apparatus in industry for use in the presence of explosive gases must be specially designed to prevent the apparatus from igniting the gas. In the case of flameproof enclosures, any holes and gaps in the enclosure wall must be sufficiently long and narrow to prevent hot combustion products expelled by a gas explosion inside the enclosure from igniting an external explosive cloud. There are tight requirements as to the maximum permissible gap surface roughness. This article describes an experimental study of the influence of severe mechanical and corrosive damage of flame gap surfaces on gap performance for ⅡB and ⅡC gases in air, using ethylene and hydrogen as test gases. In agreement with previously published findings for propane (ⅡA gas), it appeared that even with ethylene and hydrogen gap surfaces can suffer considerable damage without this causing any reduction of gap performance.
机译:在爆炸性气体存在下使用的工业电气设备必须经过特殊设计,以防止设备点燃该气体。对于防火外壳,外壳壁上的任何孔和间隙必须足够长且较窄,以防止外壳内部气体爆炸所排出的热燃烧产物点燃外部爆炸云。对于最大允许间隙表面粗糙度有严格的要求。本文以乙烯和氢气为测试气体,对火焰间隙表面的严重机械损伤和腐蚀损伤对空气中ⅡB和ⅡC气体的间隙性能的影响进行了实验研究。与先前发表的有关丙烷(ⅡA气体)的发现相一致,似乎即使在乙烯和氢的间隙表面上也可能遭受相当大的破坏,而这不会导致间隙性能的任何降低。

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