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Development of AAS resin by the emulsion–suspension polymerization method

机译:乳液-悬浮聚合法开发AAS树脂

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AbstractIn order to improve the weatherability of acryonitrile—styrene—butadiene rubber graft polymer (ABS resin), an attempt was made to develop a resin (AAS resin) in which acrylic rubber of good weatherability was used instead of butadiene rubber. First, by copolymerizing dicyclopentenyl‐methacrylate (DCP‐MA,3) with butyl acrylate, crosslinked acrylic rubber was obtained. This also introduced grafting sites into the rubber. Next, methods of graft copolymerizing styrene and acrylonitrile with this rubber were examined. An emulsion–suspension polymerization method was developed in which the initial stage of the polymerization, emulsion polymerization, changed into suspension polymerization during the process. By this method of polymerization, rubber particles were combined and enlarged, bringing about a graft‐type resin with high impact resistance. This polymerization method is industrially useful because particle‐shaped resins are obtained without the need of a salting‐out process. The AAS resin, obtained in this way, has much improved weatherability over ABS resin and shows strength equal to that of ABS resin. © 1992 John
机译:摘要为提高丙烯腈—苯乙烯—丁二烯橡胶接枝聚合物(ABS树脂)的耐候性,尝试开发一种用耐候性好的丙烯酸橡胶代替顺丁橡胶的树脂(AAS树脂)。首先,将二环戊烯基甲基丙烯酸酯(DCP-MA,3%)与丙烯酸丁酯共聚,得到交联丙烯酸橡胶。这也将接枝位点引入橡胶中。接下来,研究了苯乙烯和丙烯腈与该橡胶的接枝共聚方法。开发了一种乳液-悬浮聚合方法,其中聚合的初始阶段,即乳液聚合,在此过程中转变为悬浮聚合。通过这种聚合方法,橡胶颗粒被结合并扩大,从而产生了具有高抗冲击性的接枝型树脂。这种聚合方法在工业上是有用的,因为不需要盐析过程即可获得颗粒状树脂。以这种方式获得的AAS树脂比ABS树脂具有更大的耐候性,并且显示出与ABS树脂相同的强度。© 1992 约翰

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