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首页> 外文期刊>Journal of Applied Polymer Science >Influence of carbon black on decompression failure and hydrogen permeation properties of filled ethylene-propylene-diene-methylene rubbers exposed to high-pressure hydrogen gas
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Influence of carbon black on decompression failure and hydrogen permeation properties of filled ethylene-propylene-diene-methylene rubbers exposed to high-pressure hydrogen gas

机译:炭黑对暴露于高压氢气下的填充乙烯-丙烯-二烯-亚甲基橡胶的减压破坏和氢渗透性能的影响

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摘要

Eight carbon black (CB)-filled ethylene-propylene-diene-methylene linkage (EPDM) rubbers were manufactured by varying the content and type of CB. Then, the relationship among crack damage caused by high-pressure hydrogen decompression, the hydrogen permeation properties, and the mechanical properties of the rubbers was investigated. The hydrogen gas permeability of the rubbers decreased with an increase in the CB content and depended little on primary particle size. In contrast, the hydrogen gas diffusivity and solubility depended on both the CB content and primary particle size, that is, the hydrogen gas diffusivity decreased with an increase in the CB content and a decrease in the primary particle size, and the hydrogen gas solubility increased with an increase in the CB content and a decrease in the primary particle size. As for the mechanical properties, the CB-filled rubbers were more strongly reinforced by an increase in the CB content and a decrease in the primary particle size. The crack damage by high-pressure hydrogen decompression became larger as the ratio of the hydrogen gas solubility to estimated internal pressure at crack initiation relating to the mechanical properties became larger. As a smaller CB particle increases the hydrogen gas solubility of EPDM rubbers, while at the same time it reinforces the rubbers, the crack damage in the CB-filled rubbers was not influenced by the primary particle size.
机译:通过改变CB的含量和类型,制造了八种填充炭黑(CB)的乙烯-丙烯-二烯-亚甲基键合(EPDM)橡胶。然后,研究了由高压氢减压引起的裂纹损伤,氢渗透性能和橡胶的机械性能之间的关系。橡胶的氢气渗透性随CB含量的增加而降低,并且几乎不依赖于初级粒径。相反,氢气的扩散率和溶解度取决于CB含量和一次粒径,即,氢气的扩散度随着CB含量的增加和一次粒径的减小而降低,并且氢气的溶解度增加CB含量增加,初级粒径减小。至于机械性能,CB含量的增加和一次粒径的减小,使CB填充的橡胶得到了更强的增强。随着氢气的溶解度与在裂纹萌生时估计的内部压力之比与机械性能的比值变大,由高压氢气减压引起的裂纹损伤变得更大。随着较小的CB颗粒增加EPDM橡胶在氢气中的溶解度,同时又增强了橡胶,则CB填充橡胶中的裂纹损伤不受初级粒径的影响。

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