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基于苯乙烯/丙烯酸酯基硅油的高熔体强度聚丙烯的流变性能和发泡性能    

Rheology and Foaming Properties of High Melt Strength Polypropylene Based on Styrene/Acrylic Silicone Oil

文献类型:期刊文献

中文题名:基于苯乙烯/丙烯酸酯基硅油的高熔体强度聚丙烯的流变性能和发泡性能

英文题名:Rheology and Foaming Properties of High Melt Strength Polypropylene Based on Styrene/Acrylic Silicone Oil

作者:王卫霞[1];周帅[1];辛忠[1,2];石尧麒[1,3];赵世成[1]

机构:[1]华东理工大学化工学院上海市多相结构材料化学工程重点实验室,上海200237;[2]华东理工大学化工学院化学工程联合国家重点实验室,上海200237;[3]上海化工研究院上海市聚烯烃催化技术重点实验室,上海200062

年份:2015

卷号:44

期号:10

起止页码:1239

中文期刊名:石油化工

外文期刊名:Petrochemical Technology

收录:CSTPCD;;Scopus;北大核心:【北大核心2014】;CSCD:【CSCD2015_2016】;

基金:国家自然科学基金项目(21476085;21306047);中央高校基本科研基金项目(22A201514016;222201314051)

语种:中文

中文关键词:高熔体强度聚丙烯;长支链;苯乙烯;丙烯酸酯基硅油;流变性能;发泡

外文关键词:high melt strength polypropylene; long branched chain; styrene; acrylic silicone oil; rheology; foaming

摘要:以过氧化苯甲酰(BPO)为引发剂、苯乙烯(St)和丙烯酸酯基硅油(ASO)为接枝单体,制备无凝胶的高熔体强度聚丙烯(HMSPP),考察了St添加量对等规聚丙烯(iPP)流变性能和发泡性能的影响。FTIR表征结果显示,St和ASO成功接枝到iPP上。流变性能测试结果显示,HMSPP在η^*~ω曲线(η^*:复数黏度;ω:扫描频率)的低频区出现明显的剪切变稀现象,在G′~ω曲线(G′:储能模量)的低频区出现明显的偏离末端行为,在拉伸过程中拉伸黏度具有明显的应变硬化现象,说明HMSPP中有长支链结构存在。当St和ASO的添加量均为1.0%(w)时,HMSPP的熔体强度从0.051N提高到0.770N,且表现出优良的发泡性能,泡孔密度从7.0×10^6cell/m^3提高到1.3×10^8cell/cm^3。
High melt strength polypropylene(HMSPP) was prepared by melt grafting with styrene(St) and acrylic silicone oil(ASO) as grafting monomers and benzoyl peroxide(BPO) as initiator. The effects of St content on the rheology and foaming properties of isotactic polypropylene(iPP) were investigated. The FTIR results showed that St and ASO were grafted onto iPP. The rheological data of HMSPP, such as the obvious shear thinning in the low frequency of the η^*-ω curves η^*: complex viscosity; ω: scanning frequency), deviating from the terminal in the low frequency of the G′-ω curves(G′: storage modulus), and obvious strain hardening of the extensional viscosity, proved that long branched chains had been added to the HMSPP molecules. When the addition of St and ASO were both 1.0%(w), the melt strength of HMSPP increased from 0.051 N to 0.770 N. Under this condition HMSPP exhibited excellent foaming properties, and its cell density increased to the maximum, from 7.0×10^6 to 1.3×10^8cell/cm^3.

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