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DSC showed there were two glass transitions and phase interface came into being in the superabsorbent fiber.
DCS谱图显示高吸水纤维具有两个玻璃化转变温度区间,表明在高吸水纤维内形成了相分离。
参考来源 - 高吸水纤维的制备与研究Mechanical property of superabsorbent fiber was studied.
研究了高吸水纤维的力学性能。
参考来源 - 三元共聚高吸水纤维的制备及其保湿膜的初步研制·2,447,543篇论文数据,部分数据来源于NoteExpress
高吸水纤维的吸液倍率随丙烯酰胺用量的增加先增大后减小,丙烯酰胺用量为单体重量的25%时吸液倍率最大;
The absorbency increased first and reduced then as the content of AM increased, it got the maximize when the content was 25% of monomer.
实验结果显示,由于处理后纤维的结构中含有高吸水性的羧甲基基团,处理后的纤维比初始纤维有更高的吸湿性。
Experimental results showed that the treated fibers had much higher hydroscopicity than the untreated ones, due to the highly absorbent carboxymethyl groups in the fiber structure.
将含聚合引发剂的丙烯酸盐单体水溶液涂布到天然纤维布基材上,在微波辐照下聚合,制得高吸水性纤维复合体。
The complex of super water absorbing resin-natural fabric were obtained by microwave radiation polymerization of natural fabric which dip-coated in acrylic acid and its sodium salt aqueous solution.
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