首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Mechanical properties of high-density polyethylene and crosslinked high-density polyethylene in crude oil and its components
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Mechanical properties of high-density polyethylene and crosslinked high-density polyethylene in crude oil and its components

机译:原油及其组分中高密度聚乙烯和交联高密度聚乙烯的力学性能

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The tensile and stress-relaxation properties of an uncrosslinked and a loosely silane-crosslinked high-density polyethylene exposed to organic '' crude-oil '' penetrants were assessed. The measurements were performed on penetrant-saturated samples, surrounded by the organic liquid throughout the experiment. The penetrant solubilities in the two polymers were similar and in accordance with predicted values based on the solubility parameter method. The stiffness and strength of the swollen samples were significantly less than those of the dry samples, indicating a plasticization of the amorphous component. Raman spectroscopy on polyethylene exposed to deuterated n-hexane revealed a penetrant-induced partial melting/dissolution of the crystal surface and an intact crystal core component. The stress-relaxation rates, within the time frame of the experiment (similar to 1 s to 18 h), were approximately the same, independent of silane-crosslinks and the presence of penetrants. This indicated that the mechanical alpha-relaxation, which is the main relaxation process occurring in the measured time interval, was not affected by the penetrants. Consequently, its rate seemed to be independent of the crystal surface dissolution (decrease in the content of crystal-core interface). The shape of the '' log stress-log time '' curves of the swollen samples was, however, different from that of the dry samples. This was most likely attributed to a time-dependent saturation of penetrant to a higher level associated with the stretched state of the polymer sample. The silane crosslinks affected only the elongation at break, which was less than that of the uncrosslinked material. (c) 2005 Wiley Periodicals, Inc.
机译:评估了暴露于有机“原油”渗透剂中的未交联和松散的硅烷交联高密度聚乙烯的拉伸和应力松弛性能。在整个实验过程中,对渗透剂饱和的样品进行测量,样品周围被有机液体包围。两种聚合物中的渗透剂溶解度相似,并且符合基于溶解度参数法的预测值。溶胀样品的刚度和强度显着小于干燥样品的刚度和强度,表明无定形组分的增塑。在暴露于氘化正己烷的聚乙烯上进行的拉曼光谱分析显示,渗透剂诱导了晶体表面的部分熔融/溶解以及完整的晶体核心成分。在实验时间范围内(类似于1 s至18 h),应力松弛率大致相同,而与硅烷交联和渗透剂的存在无关。这表明机械α松弛是在测量的时间间隔内发生的主要松弛过程,不受渗透剂的影响。因此,其速率似乎与晶体表面溶解度(晶体-核心界面含量的减少)无关。但是,溶胀样品的“对数应力-对数时间”曲线的形状与干燥样品不同。这最有可能归因于渗透剂随时间的饱和到与聚合物样品的拉伸状态相关的更高水平。硅烷交联仅影响断裂伸长率,该断裂伸长率小于未交联材料的断裂伸长率。 (c)2005年Wiley Periodicals,Inc.

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