工程塑料应用
工程塑料應用
공정소료응용
ENGINEERING PLASTICS APPLICATION
2013年
10期
34-37
,共4页
聚对苯二甲酸乙二酯%增韧%相容性
聚對苯二甲痠乙二酯%增韌%相容性
취대분이갑산을이지%증인%상용성
polyethylene terephthalate%toughening%compatability
采用熔融接枝法在聚烯烃弹性体(POE)上分别接枝三种不同的反应性单体马来酸酐(MAH)、丙烯酸(AA)、甲基丙烯酸环氧丙酯(GMA),制备了POE-g-GMA,POE-g-MAH,POE-g-AA,考察了三种不同反应基团接枝的POE对PET的增韧效果。采用傅立叶变换红外光谱(FTIR)证实三种反应单体成功接枝到POE分子链上。结果表明, PET/POE-g-GMA共混物的冲击强度、相容性明显高于PET/POE-g-AA与PET/POE-g-MAH共混物,熔体流动速率明显降低。POE-g-AA与POE-g-MAH不能有效增韧PET,而POE-g-GMA是PET的有效增韧剂。
採用鎔融接枝法在聚烯烴彈性體(POE)上分彆接枝三種不同的反應性單體馬來痠酐(MAH)、丙烯痠(AA)、甲基丙烯痠環氧丙酯(GMA),製備瞭POE-g-GMA,POE-g-MAH,POE-g-AA,攷察瞭三種不同反應基糰接枝的POE對PET的增韌效果。採用傅立葉變換紅外光譜(FTIR)證實三種反應單體成功接枝到POE分子鏈上。結果錶明, PET/POE-g-GMA共混物的遲擊彊度、相容性明顯高于PET/POE-g-AA與PET/POE-g-MAH共混物,鎔體流動速率明顯降低。POE-g-AA與POE-g-MAH不能有效增韌PET,而POE-g-GMA是PET的有效增韌劑。
채용용융접지법재취희경탄성체(POE)상분별접지삼충불동적반응성단체마래산항(MAH)、병희산(AA)、갑기병희산배양병지(GMA),제비료POE-g-GMA,POE-g-MAH,POE-g-AA,고찰료삼충불동반응기단접지적POE대PET적증인효과。채용부립협변환홍외광보(FTIR)증실삼충반응단체성공접지도POE분자련상。결과표명, PET/POE-g-GMA공혼물적충격강도、상용성명현고우PET/POE-g-AA여PET/POE-g-MAH공혼물,용체류동속솔명현강저。POE-g-AA여POE-g-MAH불능유효증인PET,이POE-g-GMA시PET적유효증인제。
Reactive monomers such as acrylic acid (AA),maleic anhydride (MAH)and glycidyl methacrylate (GMA)were grafted onto polyolefinic elastomer(POE) by melt blending to prepare POE-g-GMA,POE-g-MAH,POE-g-AA. The different reactive groups functionalized POE elastomers used as modifiers to toughen polyethylene terephthalate(PET) were investigated. Fourier transform infrared spectroscopy(FTIR) results show that these monomers were introduced onto POE. The results show that impact strength and compatibility are improved obviously in PET/POE-g-GMA blends than in PET/POE-g-AA and PET/POE-g-MAH. The melt flow rate of blends decrease obviously in PET/POE-g-GMA blends. POE-g-AA and POE-g-MAH are ineffective for toughening PET,but POE-g-GMA is effective for toughening PET.