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Modification of the grafting character to prepare PA6/ ABS-g-MA blends with higher toughness and stiffness

机译:改性接枝特性以制备具有更高韧性和刚度的PA6 / ABS-g-MA共混物

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Terr-dodecyl mercaptan (TDDM) was used to modify the grafting character of maleic anhydride-functionalized acrylonitrile-butadiene-styrene core-shell particles (ABS-g-MA). With the increase of TDDM content, the grafting degree and grafting efficiency of ABS-g-MA particles decrease, which induce the decrease of grafted acrylonitrile-styrene-maleic anhydride copolymer (g-SAM) and the increase of free acrylonitrile-styrene-maleic anhydride copolymer (f-SAM). The change of the g-SAM and f-SAM content modifies the chemical reactions degree at the interface and in the matrix. The interface reaction can decrease the interfacial tension and prohibit the agglomeration of ABS-g-MA particles, which have been testified by Molau test and SEM observation. The interface reaction is beneficial to the toughness improvement and the reaction in the matrix leads to higher stiffness. In the present paper, when TDDM content is 0.28 %, PA6/ABS-g-MA blend shows superior toughness and higher stiffness.
机译:叔十二烷基硫醇(TDDM)用于修饰马来酸酐官能化的丙烯腈-丁二烯-苯乙烯核-壳颗粒(ABS-g-MA)的接枝特性。随着TDDM含量的增加,ABS-g-MA颗粒的接枝度和接枝效率降低,这导致了接枝丙烯腈-苯乙烯-马来酸酐共聚物(g-SAM)的减少和游离丙烯腈-苯乙烯-马来酸的增加。酸酐共聚物(f-SAM)。 g-SAM和f-SAM含量的变化会改变界面和基质中的化学反应程度。界面反应可降低界面张力并阻止ABS-g-MA颗粒的团聚,这已通过Molau试验和SEM观察证明。界面反应有利于提高韧性,并且基体中的反应导致较高的刚度。在本文中,当TDDM含量为0.28%时,PA6 / ABS-g-MA共混物显示出优异的韧性和较高的刚度。

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