首页> 外文期刊>Petroleum science >Drag reduction and shear resistance properties of ionomer and hydrogen bond systems based on lauryl methacrylate
【24h】

Drag reduction and shear resistance properties of ionomer and hydrogen bond systems based on lauryl methacrylate

机译:基于甲基丙烯酸月桂酯的离聚物和氢键体系的减阻和抗剪切性能

获取原文
           

摘要

Based on molecular dynamics simulation results, a lauryl methacrylate polymer with drag reduction and shear resistance properties was designed, and synthesized by emulsion polymerization using 2-vinyl pyridine and methyl methacrylate as the polar polymerization monomer. After ionization of lauryl methacrylate polymer, an ion-dipole interaction based drag reduction agent (DRA) was obtained. The existence of ion-dipole interaction was proven through characterization of the drag-reducing agent from its infrared (IR) spectrum. The pilot-scale reaction yield of the DRA under optimum conditions was investigated, and the drag reduction and shear resistance properties were measured. The results show that: 1) The ion-dipole or hydrogen bonding interaction can form ladder-shaped chains, therefore the synthesized DRA has shear resistance properties; 2) The larger the molecular weight (MW) and more concentrated the distribution of MW, the better the drag reduction effi ciency and the performance of the ionomer system was superior to that of the hydrogen bonding system; 3) With increasing shear frequency, the drag-reduction rates of both the DRAs decreased, and the drag reduction rate of the ionomer system decreased more slowly than of the corresponding hydrogen bonding system. From the point of view of drag reduction rate and shear resistance property, the ionomer system is more promising than the hydrogen bonding system.
机译:根据分子动力学模拟结果,设计了具有减阻和抗剪切性能的甲基丙烯酸月桂酯聚合物,并以2-乙烯基吡啶和甲基丙烯酸甲酯为极性聚合单体,通过乳液聚合合成。甲基丙烯酸月桂酯聚合物电离后,获得基于离子-偶极相互作用的减阻剂(DRA)。离子-偶极相互作用的存在已通过减阻剂的红外(IR)光谱特征进行了证明。研究了DRA在最佳条件下的中试反应产率,并测量了减阻和抗剪切性能。结果表明:1)离子偶极或氢键相互作用可形成梯形链,因此合成的DRA具有抗剪切性能。 2)分子量(MW)越大,分子量分布越集中,减阻效率越好,离聚物体系的性能优于氢键体系; 3)随着剪切频率的增加,两个DRA的减阻率均下降,离聚物体系的减阻率下降的速度比相应的氢键系统更缓慢。从减阻速率和抗剪切性能的观点来看,离聚物体系比氢键体系更有前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号