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1)  emulsion copolymerization
乳液共聚合
1.
A review on the development of mathematical model of emulsion copolymerization;
乳液共聚合数学模型的发展(Ⅱ)
2.
The apparent kinetics of styrene/acrylate semibatch emulsion copolymerization using reactive emulsifier
反应性乳化剂存在下半连续苯丙乳液共聚合表观动力学
3.
The emulsion copolymerization of acrylonitrile(M 1) and ethylacrylate(M 2) initiated continuously with a redox initiator system potassium persulfate/sodium bisulfite at a temperature scope from 0 ℃ to 30 ℃ was researched.
用氧化还原引发剂在低温下研究了丙烯腈 (M1)和丙烯酸乙酯 (M2 )的乳液共聚合
2)  emulsion polymerization
乳液共聚合
1.
Terpolymers of ChMI/MMA/St were synthesized by semi-batch emulsion polymerization.
用完全滴加料乳液共聚合方式合成了环己基马来酰亚胺/甲基丙烯酸甲酯/苯乙烯三元共聚物(ChM I/MMA/St),研究了三元共聚物的热性能、力学性能及流变性。
2.
Methyl methacrylate(MMA)—butyl acrylate(BA)—acrylic acid(AA) copolymer emulsion was prepared by emulsion polymerization using a redox initiation system of(NH_4)_2SO_8-NaSO_3.
丙烯酸(AA)是含亲水性羧基的水溶性单体,AA与甲基丙烯酸甲酯(MMA)、丙烯酸丁酯(BA)乳液共聚合,所得乳液在建筑涂料业有着广泛应用[1-3],尤其是水性涂料中丙烯酸系乳胶涂料占绝对优势,以其耐候性、湿附着力、流动性好而受到广泛重视。
3.
Terpolymer of N cyclohexylmaleimide/methyl methacrylate/styrene(ECMS)was synthesized by emulsion polymerization and used as a heat resistant modifier and blended with PVC.
通过乳液共聚合得到N 环己基马来酰亚胺 (ChMI)、甲基丙烯酸甲酯 (MMA)、苯乙烯 (St)的三元共聚物(ECMS) ,用共聚物作耐热改性剂与PVC共混 ,用TBA和TGA研究了共聚物含量对共混物热性能、力学性能、流变性能及维卡软化点的影响。
3)  Inverse emulsion copolymerization
反相乳液共聚合
1.
Inverse emulsion copolymerization of sodium acrylate(NaAA),acrylamide(AM),and acryloyloxyethyl trimethylammonium chloride(DAC)was investigated,using Span80-Tween80 as complex emulsifier and 2,2′-azobis-(2-amidinopropen)-dihydrochloride(AIBA) as initiator.
采用Span80-Tween80复合乳化剂和AIBA引发剂,进行丙烯酸钠(NaAA)/丙烯酰胺(AM)/丙烯酰氧基乙基三甲基氯化铵(DAC)反相乳液共聚合
2.
The Kinetics of inverse emulsion copolymerization of acryl acid and acrylamide using span 80Tween 80 mixture as emulsifier(HLB=6 44),K 2S 2O 8 as initiator and toluene as continuous phase was studied.
以Span80twen80为乳化剂(HLB=644)、K2S2O8为引发剂、甲苯为油相,研究了丙烯酸—丙烯酰胺反相乳液共聚合反应动力学。
4)  Microemulsion copolymerization
微乳液共聚合
1.
Styrene/butyl acrylate(St/BA) microemulsion copolymerization was carried out with sodium dodecyl sulfate and sodium dodecyl benzene sulfonate as emulsifier, K2S2O8/ Na2SO3 as initiator.
以十二烷基硫酸钠/十二烷基苯磺酸钠(SDS/SDBS)为乳化剂,过硫酸钾/亚硫酸钠(K_2S_2O_8/Na_2SO_3)为引发剂进行苯乙烯/丙烯酸丁酯(St/BA)微乳液共聚合反应。
5)  seeded emulsion copolymerization
种子乳液共聚合
6)  triad emulsion polymerization
三元乳液共聚合
1.
The relationships between Butylacrylate/Acrylonitrile/Methylacrylate triad emulsion polymerization kinetics and temperature, initiator concentration and total monomer concentration were researched.
研究了温度、乳化剂浓度、引发剂浓度和单体浓度与BA/AN/MA三元乳液共聚合的动力学行为的关系;考察了温度、乳化剂浓度、引发剂浓度及分子量调节剂对三元共聚物特性粘数的影响;对共聚物的结晶性及微观结构用宽角X射线衍射、红外光谱和核磁共振氢谱进行了表征。
补充资料:乳液共混
分子式:
CAS号:

性质:将不同聚合物乳液一起搅拌均匀后,加入凝聚剂使异种聚合物共沉析以形成聚合物共混物体系。此法可保证共混产物的均匀性,但仅能适用于乳液法生产的品种。当原料聚合物为聚合物乳液、胶液或共混物以乳液形式被利用时,此法最为有利。常与共聚-共混法联用,也可作为熔融共混的预备性操作。主要优点是它能够接枝和交联,控制粒度分布,控制共单体的用量比。缺点是它需要铁和其他过渡金属元素作为氧化还原引发体系的组分。这些金属离子必须彻底洗净,否则树脂将在干燥或加工成型过程中发生降解。

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