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首页> 外文期刊>Journal of Applied Polymer Science >Structure and properties of polyimide-g-nylon 6 and nylon 6-b-polyimide-b-nylon 6 copolymers
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Structure and properties of polyimide-g-nylon 6 and nylon 6-b-polyimide-b-nylon 6 copolymers

机译:聚酰亚胺-g-尼龙6和尼龙6-b-聚酰亚胺-b-尼龙6共聚物的结构和性能

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Polyimide-g-nylon 6 copolymers were prepared by the polymerization of phenyl 3,5-diaminobenzoate with several diamines and dianhydrides with a one-step method. The polyimides containing pendant ester moieties were then used as activators for the anionic polymerization of molten epsilon-caprolactam. Nylon 6-b-polyimide-b-nylon 6 copolymers were prepared by the use of phenyl 4-aminobenzoate as an end-capping agent in the preparation of a series of imide oligomers. The oligomers were then used to activate the anionic polymerization of epsilon-caprolactam. In both the graft and copolymer syntheses, the phenyl ester groups reacted quickly with caprolactam anions at 120 degrees C to generate N-acyllactam moieties, which activated the anionic polymerization. All the block copolymers had higher moduli and tensile strengths than those of nylon 6. However, their elongations at break were much lower. The graft copolymers based on 2,2'-bis[4-(3,4-dicarboxyphenoxy)phenyl]propane dianhydride and 2,2'-bis[4-(4-aminophenoxy)phenyl]propane displayed elongations comparable to that of nylon 6 and the highest moduli and tensile strengths of all the copolymers. The thermal stability, moisture resistance, and impact strength were dramatically increased by the incorporation of only 5 wt % polyimide into both the graft and block copolymers. The graft and block copolymers also exhibited improved melt processability. (c) 2005 Wiley Periodicals, Inc.
机译:聚酰亚胺-g-尼龙6共聚物是通过3,5-二氨基苯甲酸苯基酯与几种二胺和二酐的一步聚合反应制得的。然后将含有侧酯部分的聚酰亚胺用作活化的ε-己内酰胺的阴离子聚合的活化剂。尼龙6-b-聚酰亚胺-b-尼龙6共聚物是通过在制备一系列酰亚胺低聚物中使用4-氨基苯甲酸苯酯作为封端剂来制备的。然后将低聚物用于活化ε-己内酰胺的阴离子聚合。在接枝和共聚物合成中,苯基酯基团与己内酰胺阴离子在120℃下迅速反应,生成N-酰基内酰胺部分,从而激活了阴离子聚合反应。所有嵌段共聚物均具有比尼龙6更高的模量和拉伸强度。但是,其断裂伸长率要低得多。基于2,2'-双[4-(3,4-二羧基苯氧基)苯基]丙烷二酐和2,2'-双[4-(4-氨基苯氧基)苯基]丙烷的接枝共聚物显示出与尼龙相当的伸长率6和所有共聚物的最高模量和拉伸强度。通过仅将5重量%的聚酰亚胺引入接枝共聚物和嵌段共聚物两者中,热稳定性,耐湿性和冲击强度显着提高。接枝和嵌段共聚物还表现出改善的熔融加工性。 (c)2005年Wiley Periodicals,Inc.

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