橡胶技术网

合成橡胶工业
CHINA SYNTHETIC RUBBER INDUSTRY
2002 Vol.25 No.6 P.357-360

橡胶技术网

Morphology study on elastomers reinforced by zinc dimethacrylate.In compounds

Lu YonglaiBeijing Key Laboratory of New Polymer Preparation and Processing, Beijing University of Chemical Technology, Beijing 100029, China) 
Zhang LiqunBeijing Key Laboratory of New Polymer Preparation and Processing, Beijing University of Chemical Technology, Beijing 100029, China) 
Liu LiBeijing Key Laboratory of New Polymer Preparation and Processing, Beijing University of Chemical Technology, Beijing 100029, China) 
Zhao Yang Beijing Key Laboratory of New Polymer Preparation and Processing, Beijing University of Chemical Technology, Beijing 100029, China) 

AbstractThe morphologies of various ZDMA- reinforced elastomers (including BR, SBR, EPDM, NBR,EPM, POE and HNBR) were studied by using SEM and TEM. Part I focuses on morphology of mixing compounds.The dispersion and distribution of the ZDMA particles in compound are mainly determined by the viscosity of the compound during mixture processing. For high viscosity matrixes, such as EPDM and NBR, size of ZDMA particles is remarkably fined during mixing, even part of which reaches nano - scale. While for low viscosity matrixes, such as POE, dispersion dimension of ZDMA particle in mixing compound is nearly similar to its original dimension. Such difference of preliminary dispersion structure in compounds must intensely impact on final morphologies and properties of vulcanizates because the in - situ pymolerization of ZDMA in compound during vulcanization strongly depends on the dispersed particle size of ZDMA in compound.
Keywords
zinc dimethacrylate; compound; morphology; electron microscope

甲基丙烯酸锌增强弹性体的相态研究Ⅰ.混炼胶料

卢咏来  张立群  刘力  赵阳 

摘 要:利用扫描电子显微镜(SEM)和透视电子显微镜(TEM)研究了甲基丙烯酸锌增强多种弹性体(包括BR,SBR,EPDM,NBR,EPM,POE和HNBR)的微观相态结构.发现混炼胶在混炼工艺中所具有的粘度是决定ZDMA粒子在混炼胶中分散状态的主要因素.对于高粘度胶料,如EPDM和NBR体系,在混炼中ZDMA颗粒的尺寸显著减小,部分甚至达到了纳米级.而对于低粘度胶料,如POE体系,ZDMA的尺寸特征在混炼工艺中基本不变.由于ZDMA在橡胶中的原位聚合反应历程与其分散尺寸密切相关,所以这种ZDMA在混炼胶料中初分散状态的不同必然会对其硫化化胶料的最终相态和性能产生重大的影响.
关键词:甲基丙烯酸锌;混炼胶;相态;电子显微镜
CLC Number:TQ330.38 Document ID:A

Article ID:1000-1255(2002)06-0357-04

Foundation Item:Sponsored by the National 9.5 Scientific Project ( HG-95-08 ) and Beijing Scientific New Star Project (H0104410010112).
Author Resume:Lu Yonglai, doctoral student.Zhang Liqun,To whom all correspondencl should be addressed.
     卢咏来(北京化工大学,北京市新聚合物制备和成型加工重点实验室,100029) 
     张立群(北京化工大学,北京市新聚合物制备和成型加工重点实验室,100029) 
     刘力(北京化工大学,北京市新聚合物制备和成型加工重点实验室,100029) 
     赵阳(北京化工大学,北京市新聚合物制备和成型加工重点实验室,100029) 

References:

[1]Tocuchet P, Rodriguez G, Butler D P, et al. U S, US 4 843 114,1989
[2]Medalia A I, Alesi A L, Mead J L. Pattern abrasion and other mechanisms of wear of tank track pads [J]. Rubb Chem Technol, 1992,65:154
[3]Klingender R C, Oyama M, Satio Y. High- strength compound of highly saturated nitrile and its applications [J]. Rubber World,1990,202(3): 26~31
[4]Kilngender R C, Oyama M, Saito f. Presented at a Meeting of the Rubber Division, American Chemical Society, Mexico City, Mexico,May, 1989; abstract in Rubber Chem. Technol. 1989, 62:777
[5]Costin R, Nagel W, Ekwall R. New metallic coagents for curing elastomers [J]. Rubber Chemical & Technology, 1991, 64(2): 152~161
[6]Yoshiomi Saito, Koichi Nishimura, Missko Asada, et al. Polymerization behavior of zinc methaerylate study of zinc methacrylate/rubber/peroxide compounds: Part 2 [ J ]. Japanese Rubber Society, 1994,67(12) :867~872
[7]野村显正,高野仁,丰田明宣等.ポリメタクリル酸亚铅补强HNBRの构造解析[J].日本ゴム协会志,1993,66(11):830~838
[8]Yuan Xinheng, Peng Zonglin, Zhang Xiangfu, et al. Reinforcement of NBR with zinc salts of unsaturated carboxlic acids [J]. China Synthetic Rubber Industry, 2000,23(3): 173~175


Manuscript Received:2002年9月5日

Published:2002年11月15日