文章摘要
高性能白炭黑的制备及其应用研究
The preparation of high performance silica and its application
投稿时间:2017-01-20  修订日期:2017-01-20
DOI:
中文关键词: 液相原位修饰技术  纳米二氧化硅  纳米复合材料  耐磨性  Payne效应
英文关键词: surface-modification in situ in aqueous solution  nano-silica  nanocomposites  abrasion resistance  Payne effect
基金项目:国家重点基础研究计划(科技部“973”计划项目2015CB654703),河南省科技发展计划项目(152102210052);河南省高等学校重点科研项目计划(17A150004)。
作者单位E-mail
毛义梅 河南大学化学化工学院 18739973750@163.com 
张洪影 西北橡胶塑料研究设计院有限公司  
张春华 河南大学化学化工学院  
王延鹏 河南大学化学化工学院  
李小红 河南大学纳米材料工程研究中心  
丁涛* 河南大学化学化工学院 dingtao@henu.edu.cn 
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中文摘要:
      摘要:以γ-甲基丙烯酰氧基丙基三甲氧基硅烷(KH570)为修饰剂,采用液相原位表面修饰技术,制备了可分散性纳米二氧化硅,并将这种改性后的纳米二氧化硅应用到溶聚丁苯橡胶/顺丁橡胶体系,对其进行力学性能、磨耗性能、流变性能测试,考察了修饰剂的不同用量对复合材料上述性能的影响。傅里叶红外光谱表明,KH570已经成功通过化学键键合在二氧化硅表面,扫描电镜显示其团聚减弱,分散性提高。橡胶纳米复合材料的力学性能有所改善,在修饰量为25-50mmol/kg时性能最佳;耐磨性能明显提高,尤其是修饰量为50mmol/kg时,磨耗体积最少,降低了33.85%;明显降低了Payne效应,减弱了二氧化硅的团聚,提高了其在橡胶基体中的分散性。
英文摘要:
      In this paper, the dispersible nano silica was synthetised by liquid phase in-situ modification with KH570 as modifier. To investigate the effects of different amount of modifier on the mechanical properties, abrasion properties, rheological properties of the system of solution polymerization styrene butadiene rubber/butadiene rubber which modified with nano silica were tested. Fourier transform infrared spectroscopy showed that the silica surface had been successfully modified by the KH570 through the chemical bonds. SEM showed that the agglomeration was weakened and improved the dispersion. The mechanical properties of SSBR/BR/SiO2 nanocomposites were improved, the best modified quantity was 25-50mmol/Kg; wear resistance was improved obviously, especially when the amount of modifier was 50mmol/Kg, it had minimum wear volume, reduced by 33.85%; reduced the Payne effect, weakened the agglomeration of silica, and improved the dispersion in the rubber matrix.
Author NameAffiliationE-mail
MAO Yi-mei College of Chemistry and Chemical Engineering, Henan University 18739973750@163.com 
ZHANG Hong-ying Northwest rubber plastic research and Design Institute Co Ltd  
ZHANG Chun-hua College of Chemistry and Chemical Engineering, Henan University  
WANG Yan-peng College of Chemistry and Chemical Engineering, Henan University  
LI Xiao-hong Nano materials engineering research center, Henan University, Kaifeng 475004, Henan, China  
DING Tao College of Chemistry and Chemical Engineering, Henan University dingtao@henu.edu.cn 
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