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首页> 外文期刊>Journal of Applied Polymer Science >Effects of Hard-Segment Compositions on Properties of Polyurethane-Nitrolignin Films
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Effects of Hard-Segment Compositions on Properties of Polyurethane-Nitrolignin Films

机译:硬段组成对聚氨酯-硝酸甘油膜性能的影响

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Segmented polyurethane (PU) films from castor-oil-based PU prepolymer with different hard-segment compositions and nitrolignin (NL) were synthesized. Diisocyanates (Dis), such as 2,4-tolylene DI (TDI) and 4,4'-diphenylmethane DI (MDI), 1,4-butanediol (BDO) as a chain extender, and trimethanol propane (TMP) as a crosslinker were used to obtain PU films containing NL (UL) which were named as UL-TB for TDI and BDO, UL-TT for TDI and TMP, UL-MB for MDI and BDO, and UL-MT for MDI and TMP, respectively. The mechanical properties and thermal stability of the films were characterized by a tensile test and thermogravimetric analysis, respectively. The MDI-based UL films exhibited a higher tensile strength (#delta#_b) and thermal stability than TDI-based UL. However, the recoverability of the TDI-based UL films was better than that of others. The UL films with TMP (UL-TT and UL-MT) had higher #delta#_b and lower breaking elongation (#SIGMA#_b) than the UL films with BDO (UL-TB and UL-MB), caused by enhancement in the crosslinking network of hard segments and microphase separation between soft and hard segments. The values of #delta#_b and #SIGMA#_b of the UL films that contained NL were much higher than those of the PU films, which indicates that the introduction of NL increased the interaction between hard segments by crosslinking. The hydrogen bonding in the UL films was studied by infrared spectroscopy, which indicated that MDI favored the formation of hydrogen bonds, especially in the ordered domain. Differential scanning calorimetry, dynamic mechanical analysis, and wide-angel X-ray diffraction indicated that the UL films were compatible as a whole, but microphase separation existed between soft and hard segments and significantly affected the mechanical properties.
机译:合成了具有不同硬段组成的蓖麻油基PU预聚物和硝基木质素(NL)的分段聚氨酯(PU)薄膜。二异氰酸酯(Dis),例如2,4-甲苯DI(TDI)和4,4'-二苯甲烷DI(MDI),1,4-丁二醇(BDO)作为增链剂,以及三甲醇丙烷(TMP)作为交联剂用于获得包含NL(UL)的PU膜,分别将其用于TDI和BDO命名为UL-TB,用于TDI和TMP的命名为UL-TT,用于MDI和BDO的命名为UL-MB,以及用于MDI和TMP的命名为UL-MT。薄膜的机械性能和热稳定性分别通过拉伸试验和热重分析来表征。与基于TDI的UL相比,基于MDI的UL薄膜具有更高的拉伸强度(#delta#_b)和热稳定性。但是,基于TDI的UL薄膜的可恢复性优于其他薄膜。具有TMP的UL膜(UL-TT和UL-MT)比具有BDO的UL膜(UL-TB和UL-MB)具有更高的#delta#_b和更低的断裂伸长率(#SIGMA#_b),这是由于硬链段的交联网络以及软链段和硬链段之间的微相分离。包含NL的UL膜的#delta#_b和#SIGMA#_b的值远高于PU膜的值,这表明NL的引入通过交联增加了硬链段之间的相互作用。通过红外光谱研究了UL膜中的氢键,这表明MDI有利于氢键的形成,特别是在有序域中。差示扫描量热法,动态力学分析和广角X射线衍射表明,UL膜总体上是相容的,但是在软链段和硬链段之间存在微相分离,并且显着影响机械性能。

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