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Blocking of soft segments with different chain lengths and its impact on the shape memory property of polyurethane copolymer

机译:不同链长的软链段的封闭及其对聚氨酯共聚物形状记忆性能的影响

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摘要

The arrangements, whether block or random type, of the soft segments of polyurethane block copolymers prepared with MDI and two kinds of poly(tetramethylene glycol) (PTMG; MW of 1000 or 2000) in various ratios were compared for possible effects on the physical properties of the copolymers. A long soft segment, PTMG-2000, was superior in all mechanical properties (strain, stress, and modulus) because a long chain length could provide more motional freedom than a short one (PTMG-1000) could and therefore was helpful in forming strong interchain attractions among hard segments. Inclusion of more PTMG-2000 led to a lower T-g and a peak shift in infrared spectra. The arrangement of two soft segments in a block-type copolymer, a key finding in this study, was controlled by separately synthesizing two prepolymers, each with a different chain length, and connecting two prepolymers in a second step. Random-type copolymers prepared for purposes of comparison were allowed to react with two PTMGs in one step. Two types of copolymers were compared, and the reason for the differences in the shape memory property are discussed. (c) 2006 Wiley Periodicals, Inc.
机译:比较了用MDI和两种聚丁二醇(PTMG;分子量分别为1000或2000)制备的聚氨酯嵌段共聚物的软链段的嵌段或无规排列,以求对物理性能的影响共聚物。较长的软链段PTMG-2000在所有机械性能(应变,应力和模量)方面均优越,因为长链段比短链段(PTMG-1000)可提供更多的运动自由度,因此有助于形成坚固的硬链段之间的链间吸引力。包含更多的PTMG-2000导致更低的T-g和红外光谱的峰移。通过分别合成两种链长不同的预聚物,并在第二步中连接两种预聚物,可以控制嵌段共聚物中两个软链段的排列,这是这项研究的关键发现。为了比较目的而制备的无规共聚物可以与两个PTMG一步反应。比较了两种共聚物,并讨论了形状记忆性能差异的原因。 (c)2006年Wiley Periodicals,Inc.

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