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Investigation of Physical and Mechanical Characteristics of Rubber Materials Exposed to High-Pressure Hydrogen

材料科学 极限抗拉强度 天然橡胶 复合材料 压缩永久变形 丁基橡胶 体积热力学 丙烯腈 渗透 聚合物 化学 有机化学 共聚物 物理 量子力学 生物化学
作者
Sang Koo Jeon,Jae Kap Jung,Nak-Kwan Chung,Un Bong Baek,Seung Hoon Nahm
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:14 (11): 2233-2233 被引量:26
标识
DOI:10.3390/polym14112233
摘要

Rubber materials play a key role in preventing hydrogen gas leakage in high-pressure hydrogen facilities. Therefore, it is necessary to investigate rubber materials exposed to high-pressure hydrogen to ensure operational safety. In this study, permeation, volume swelling, hydrogen content, and mechanical characteristics of acrylonitrile butadiene rubber (NBR), ethylene propylene diene monomer (EPDM), and fluorocarbon (FKM) samples exposed to pressures of 35 and 70 MPa were investigated. The results showed that the volume recovery and hydrogen desorption behavior of EPDM with the highest permeation were fast whereas those of FKM with the lowest permeation were slow. The volume of NBR with the highest hydrogen content expanded after decompression. In contrast, FKM swelled the most despite having the lowest hydrogen content. After exposure to high-pressure hydrogen, the compression set (CS) slightly increased due to internal cracks, but the tensile strength decreased significantly with increasing pressure despite the absence of cracks in the fracture area of all tensile specimens. It was concluded that the decrease in tensile strength is closely related to the volume increase because of the relationship between the relative true strength and the volume ratio.
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