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Relationship Between Segment Structures and Elastic Properties of Segmented Poly(urethane-urea) Elastic Fibers

机译:聚氨基甲酸酯-脲弹性纤维段结构与弹性性能的关系

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摘要

Studies on segmented poly(urethane-urea) (SPUU) elastic fibers having various segment structures were done in terms of elastic recovery and stress-strain relationship (S-S).Three kinds of segment structures were used:1) the same composition having different sequences of segment units,2) the same length of soft segments having different molecular weights of polyol,and 3) different segment structures having almost the same stress at 350% elongation.The SPUU elastic fibers having higher sequence numbers of both soft and hard segment units,that is,greater block structures,show better elastic recovery properties,especially delayed elastic recovery.The SPUU elastic fibers showing better elastic recovery take an optimum value for the number-average molecular weight (M_n) of soft segments jointed with urethane bonds.Here the optimum M_n depends on the molecular weight of polytetramethyleneglycol (PTMG) as a starting material.The hysteresis loss in S-S for the pre-elongation decreases with an increase of M_n of PTMG.The SPUU elastic fibers having greater block structures show lower stress with lower 2C_1 and 2C_1+2C_2 of Mooney-Rivlin plot constants for elastic fibers having the same composition.This indicates a lower density of crosslinks for finite deformation.An increase of the urea bonds or the molar ratio of urea bond to urethane bond raises the stress.It is found that the polymerization process,as well as composition,is important for design of segment structures of SPUU elastic fibers.
机译:从弹性回复率和应力-应变关系(SS)的角度研究了具有不同链段结构的分段聚(氨酯-脲)弹性纤维,采用了三种链段结构:1)相同组成,不同序列SPUU弹性纤维在软链段单元和硬链段单元上均具有更高的序号; 2)相同长度的多元醇分子量不同的软链段的长度相同; 3)在350%伸长率下具有几乎相同应力的不同链段结构。 SPUU弹性纤维具有更好的弹性恢复性能,它是通过氨基甲酸酯键连接的软链段的数均分子量(M_n)的最佳值。最佳的M_n取决于作为原料的聚四亚甲基二醇(PTMG)的分子量。预拉伸时SS的磁滞损耗随i减小。具有相同嵌段结构的SPUU弹性纤维具有更高的嵌段结构,其SPUU弹性纤维的应力较低,而Mooney-Rivlin图常数的2C_1和2C_1 + 2C_2较低,这表明具有有限变形的交联密度较低。脲键的增加或脲键与氨基甲酸酯键的摩尔比增加了应力。发现聚合过程以及组成对于SPUU弹性纤维段结构的设计很重要。

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