合成树脂及塑料
閤成樹脂及塑料
합성수지급소료
China Synthetic Resin and Plastics
2015年
5期
9-12
,共4页
周晓明%王格%褚立强%谢文杰
週曉明%王格%褚立彊%謝文傑
주효명%왕격%저립강%사문걸
聚丁二酸丁二酯%聚己内酯%相容性
聚丁二痠丁二酯%聚己內酯%相容性
취정이산정이지%취기내지%상용성
poly(butylene succinate)%poly(ε-caprolactone)%compatibility
采用1,4-丁二酸、1,4-丁二醇和己内酯为共聚单体,合成丁二酸丁二酯-己内酯共聚物[P(BS-co-CL)],作为聚丁二酸丁二酯(PBS)/聚己内酯(PCL)共混物的增容剂.通过将m(PBS):m(PCL)为80:20的PBS/PCL共混物与增容剂熔融共混,制备不同增容剂含量的PBS/PCL共混物.结果表明:随着增容剂P(BS-co-CL)的加入,PCL相的结晶能力增强,PBS相的结晶能力减弱;增容剂的加入未改变共混物中PBS及PCL相的晶体结构;当增容剂用量为5 phr时,共混物两相的界面相容性提高,共混物晶体生长受到抑制,晶体尺寸变小,共混物的拉伸形变显著增大.
採用1,4-丁二痠、1,4-丁二醇和己內酯為共聚單體,閤成丁二痠丁二酯-己內酯共聚物[P(BS-co-CL)],作為聚丁二痠丁二酯(PBS)/聚己內酯(PCL)共混物的增容劑.通過將m(PBS):m(PCL)為80:20的PBS/PCL共混物與增容劑鎔融共混,製備不同增容劑含量的PBS/PCL共混物.結果錶明:隨著增容劑P(BS-co-CL)的加入,PCL相的結晶能力增彊,PBS相的結晶能力減弱;增容劑的加入未改變共混物中PBS及PCL相的晶體結構;噹增容劑用量為5 phr時,共混物兩相的界麵相容性提高,共混物晶體生長受到抑製,晶體呎吋變小,共混物的拉伸形變顯著增大.
채용1,4-정이산、1,4-정이순화기내지위공취단체,합성정이산정이지-기내지공취물[P(BS-co-CL)],작위취정이산정이지(PBS)/취기내지(PCL)공혼물적증용제.통과장m(PBS):m(PCL)위80:20적PBS/PCL공혼물여증용제용융공혼,제비불동증용제함량적PBS/PCL공혼물.결과표명:수착증용제P(BS-co-CL)적가입,PCL상적결정능력증강,PBS상적결정능력감약;증용제적가입미개변공혼물중PBS급PCL상적정체결구;당증용제용량위5 phr시,공혼물량상적계면상용성제고,공혼물정체생장수도억제,정체척촌변소,공혼물적랍신형변현저증대.
Biodegradable aliphatic poly(butylene succinate-co-ε-caprolactone) P(BS-co-CL) synthesized as a compatibilizer was added to the immiscible blends of poly(butylene succinate)/poly(ε-caprolactone)(PBS/PCL)with the aim to increase the compatibility between PBS and PCL, and then to improve the performance of the blends. The blends were prepared at 80:20 by weight using a melt blending method. The results show the addition of P(BS-co-CL) accelerated the crystallization of PCL in the blends, whereas the crystallization of PBS was retarded. The compatibilizer did not disturb the crystalline structure of the blends. The crystal growth of PBS/PCL blend was inhibited and the size of crystal became smaller. The compatibilizer enhanced the interaction between the two components. It was worth to note that the addition of 5 phr of P(BS-co-CL) copolymer had an effective compatibilizing effect on morphology and mechanical properties of PBS/PCL blend, showing reduced interfacial tension between two phases and a significant enhancement in fracture strain as compared with that of the PBS/PCL blend without compatibilizer.