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Hydrogen permeation under high pressure conditions and the destruction of exposed polyethylene-property of polymeric materials for high-pressure hydrogen devices (2)-

机译:高压条件下的氢渗透和高压氢气装置(2)的聚合物材料的暴露聚乙烯性质的破坏 -

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摘要

Aiming to elucidate physical property affecting to hydrogen gas permeability of polymer materials used for liner materials of storage tanks or hoses and sealants under high-pressure environment, as model materials with different free volume fraction, five types of polyethylene were evaluated using two methods. A convenient non-steady state measurement of thermal desorption analysis (TDA), and steady-state high-pressure hydrogen gas permeation test (HPHP) were used both under up to 90 MPa of practical pressure. The limit of TDA method of evaluation for the specimens suffering fracture during decompression process after hydrogen exposure was found. Permeability coefficient decreased with the decrease of diffusion coefficient under higher pressure condition. Specific volume and degree of crystallinity under hydrostatic environment were measured. The results showed that the shrinkage in free volume caused by hydrostatic effects of the applied hydrogen gas pressure decreases diffusion coefficient, resulting in the decrease of permeability coefficient with the pressure rise. (C) 2021 The Author(s). Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:旨在阐明影响用于储存罐或软管和密封剂在高压环境下用于衬里材料的聚合物材料的物理性质,作为具有不同自由体积分数的模型材料,使用两种方法评价五种类型的聚乙烯。在高达90MPa的实际压力下,使用了方便的非稳态测量热解吸分析(TDA)和稳态高压氢气渗透试验(HPHP)。发现了氢暴露后减压过程中骨折的试样评价的TDA方法的极限。在较高压力条件下,渗透系数随着扩散系数的降低而降低。测量静水压环境下的特定体积和结晶度。结果表明,由施加的氢气压力的静压效应引起的自由体积的收缩降低了扩散系数,导致压力升高的渗透系数降低。 (c)2021提交人。由elsevier有限公司发布代表氢能出版物LLC。

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