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格子Boltzmann方程模拟不相溶二相流体运动理论 被引量:1
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作者 施文平 李静 《北京工业大学学报》 CAS CSCD 1999年第2期72-75,共4页
在碰撞项中引入了异类粒子的排斥势,用它取代着色粒子密度重新分布过程,完全克服了人为因素.理论推导表面张力系数的表达式,用以比较模拟的结果,为格子Boltzmann方法模拟不相溶二相流体运动提供了理论依据.
关键词 不相溶二相流 格子 BOLTZMANN方程 二相流
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以不相溶共混聚合物形成微细纤维
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作者 戴礼兴 《国外丝绸》 1995年第3期32-37,共6页
一、引言 相分离聚合物共混物的形态是与共混物性质有关的重要因素。在一定条件下,聚合物共混物结构由嵌在一种聚合物基质中的另一种聚合物微细纤维组成,一旦基质被萃取,所析出的微细纤维直径小于传统熔纺获得的微细纤维。Miller和Merr... 一、引言 相分离聚合物共混物的形态是与共混物性质有关的重要因素。在一定条件下,聚合物共混物结构由嵌在一种聚合物基质中的另一种聚合物微细纤维组成,一旦基质被萃取,所析出的微细纤维直径小于传统熔纺获得的微细纤维。Miller和Merrian最早报导了聚合物混合物在拉伸流动中的原纤化结构,所用的典型混合物包括聚苯乙烯/聚乙烯、聚乙烯/聚醋酸乙烯酯,尼龙/聚乙烯和聚三氟氯乙烯/聚乙烯,并用选择性溶剂溶掉基质聚合物,所得直径为0.1~5μ的微细纤维。Brean讨论了具有类似结果的聚对苯二甲酸乙二酯/尼龙66共混物。 展开更多
关键词 不相溶 共混聚合物 微细纤维
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Single-Entity Collisional Electrochemistry at the Micro-and/or Nano-Interface Between Two Immiscible Electrolyte Solutions
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作者 Li-Fang Yang Jun-Jie Chen +7 位作者 Ling-Yu Chen Si-Qi Jin Tao-Xiong Fang Si-Jia He Liang-Jun Shen Xin-Jian Huang Xiao-Hang Sun Hai-Qiang Deng 《电化学(中英文)》 CAS 北大核心 2024年第11期1-16,I0001,共17页
Single-entity collisional electrochemistry(SECE)is a branch of single-entity electrochemistry.It can directly characterize entities/particles with single particle resolution through random collisions between particles... Single-entity collisional electrochemistry(SECE)is a branch of single-entity electrochemistry.It can directly characterize entities/particles with single particle resolution through random collisions between particles and electrodes in a solution,and obtain rich physicochemical information,thus becoming one of the frontiers of electroanalytical chemistry in the past two decades.Interestingly,the(micro/nanoscale)sensing electrodes have evolved from a polarizable liquid/liquid(mercury/liquid)interface to a solid/liquid interface and then to a liquid/liquid interface(i.e.,an interface between twoimmiscible electrolyte solutions,ITIES),as if they have completed a cycle(but in fact they have not).ITIES has become the latest sensing electrode in the booming SECE due to its polarizability(up to 1.1 V at the water/a,a,a-trifluorotoluene interface)and high reproducibility.The four measurement modes(direct electrolysis,mediated electrolysis,current blockade,and charge displacement)developed in the realm of SECE at solid/liquid interfaces have also been fully realized at the miniature ITIES.This article will discuss these four modes at the ITIES from the perspectives of basic concepts,operating mechanisms,and latest developments(e.g.,discovery of ionosomes,blockade effect of Faradaic ion transfer,etc.),and look forward to the future development and direction of this emerging field. 展开更多
关键词 Single-entity collisional electrochemistry Interface between two immiscible electrolyte solutions Charge transfer
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