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微米级滑石粉补强丁腈橡胶的性能研究
引用本文:王煦,吴金花,舒博钊,邱岳峰.微米级滑石粉补强丁腈橡胶的性能研究[J].西南石油大学学报(社会科学版),2014,34(2):156-160.
作者姓名:王煦  吴金花  舒博钊  邱岳峰
作者单位:西南石油大学材料科学与工程学院,四川成都610500
摘    要:为使滑石粉补强丁腈橡胶(NBR),研究了滑石粉的粒径、用量和表面经偶联剂处理时对NBR 硫化胶的力学性能影响。结果表明:滑石粉在粒径很小、用量适中时才显示较好的补强效果,2 500 目、60 份时橡胶的拉伸强度为13.5 MPa、撕裂强度41.4 kN/m;用质量分数为1% 的KH550 处理滑石粉,橡胶的综合性能获得进一步提高,其拉伸强度可达14.1 MPa、撕裂强度48.1 kN/m,SEM 分析指出这与偶联剂改善了滑石粉在NBR 中的分散性及相容性有关。

关 键 词:粉体    滑石粉    丁腈橡胶    补强    力学性能

Performance of Nitrile Rubber Filled with Micro-talc Powder
Wang xu,Wu Jinhua,Shu Bozhao,Qiu Yuefeng.Performance of Nitrile Rubber Filled with Micro-talc Powder[J].Journal of Southwest Petroleum University(Social Sciences Edition),2014,34(2):156-160.
Authors:Wang xu  Wu Jinhua  Shu Bozhao  Qiu Yuefeng
Institution:School of Materials Science and Engineering,Southwest Petroleum University,Chengdu,Sichuan 610500,China
Abstract:In order to reinforce the nitrile rubber(NBR)with the micro-talc powder,the effects of the particle size and thecontent and the surface treatment by the silane coupling agent of the talc on the mechanical properties of NBR are studied inthis paper. It is shown that the talc has better reinforcement results when its particle size is very small with its optimal contentand NBR has the tensile strength of 13.5 MPa and the tearing strength of 41.4 kN/m when the talc has the particle size of 2500mesh and the content of 60phr,and that the comprehensive properties of NBR can be further raised with the tearing strength of14.1 MPa and the tearing strength of 48.1kN/m when the surface of the talc is treated by 1%(mass concentration)KH550,andthat the dispersivity and compatibility improved by KH550 between the talc and NBR have been verified through the SEM.
Keywords:powder                                                                                                                        talc powder                                                                                                                        nitrile rubber                                                                                                                        reinforcement                                                                                                                        mechanical properties
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