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Preparation of a high-performance synthetic pitch from aromatic hydrocarbons containing N/Cl
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作者 ZHANG Yu-kun LIN Xiong-chao +3 位作者 GAO Hong-feng XI Wen-shuai WANG Cai-hong WANG Yong-gang 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第4期655-667,共13页
The preparation of a synthetic pitch from aromatic monomers could easily regulate structure orientation at the molecu-lar level,which would be useful in fabrication.An isotropic synthetic pitch was prepared by a chlor... The preparation of a synthetic pitch from aromatic monomers could easily regulate structure orientation at the molecu-lar level,which would be useful in fabrication.An isotropic synthetic pitch was prepared by a chlorine-and/or nitrogen-induced sub-stitution polymerization reaction method using aromatic hydrocarbon precursors containing Cl and N,which for this study were chloromethyl naphthalene and quinoline.This method was verified by investigating the structural changes under different synthesis conditions,and the synthesis mechanism induced by aromatics containing Cl was also probed.The result shows that the pyridinic N in quinoline contains a lone pair of electrons,and is an effective active site to induce the polymerization reaction by coupling with aromatic hydrocarbons containing Cl.The reaction between such free radicals causes strong homopolymerization and oligomeriza-tion.A higher reaction temperature and longer reaction time significantly increased the degree of polymerization and thus increased the softening point of the pitch.A linear molecular structure was formed by the Cl substitution reaction,which produced a highly spinnable pitch with a softening point of 258.6℃,and carbon fibers with a tensile strength of 1163.82 MPa were obtained.This study provides a relatively simple and safe method for the preparation of high-quality spinnable pitch. 展开更多
关键词 QUINOLINE 1-Chloromethyl-naphthalene Synthetic pitch SPINNABILITY Carbon fiber
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减水剂对水泥浆体流变参数影响的数学分析 被引量:3
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作者 王浩 逄建军 +2 位作者 张力冉 王栋民 王启宝 《硅酸盐通报》 CAS CSCD 北大核心 2014年第5期1035-1039,共5页
水泥浆体流变参数是衡量减水剂(SPs)对水泥颗粒分散能力的一种方法。依流变曲线中回滞圈面积的大小可判断减水剂破坏水泥浆体絮凝结构能力的大小。本文采用旋转粘度计测定不同转速下水泥浆体的流变参数,得出回滞圈,采用最小二乘法和线... 水泥浆体流变参数是衡量减水剂(SPs)对水泥颗粒分散能力的一种方法。依流变曲线中回滞圈面积的大小可判断减水剂破坏水泥浆体絮凝结构能力的大小。本文采用旋转粘度计测定不同转速下水泥浆体的流变参数,得出回滞圈,采用最小二乘法和线性回归方法计算回滞圈面积。结果表明:氨基磺酸盐减水剂(AS)的面积最大,为73836 Pa·s-1,其次是萘系减水剂(PNS),为10555 Pa·s-1,再次是脂肪类减水剂(FAS),为7635 Pa·s-1,酯类聚羧酸减水剂(PCB)和醚类聚羧酸减水剂(PC)的面积分别为256 Pa·s-1和158 Pa·s-1。计算结果与实际减水率大小一致,为分析各减水剂减水率大小提供理论依据。 展开更多
关键词 减水剂 流变参数 回滞圈面积
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