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Adsorbed Conformations of PCE Superplasticizers in Cement Pore Solution Unraveled by Molecular Dynamics Simulations

机译:分子动力学模拟揭示了PCE高效减水剂在水泥孔隙溶液中的吸附形态

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摘要

The conformations of polycarboxylate ether (PCE) type superplasticizer polymers adsorbed on the surface of MgO in cement pore solution are simulated by molecular dynamics (MD). Three types of PCEs commonly applied to concrete are simulated, namely a methacrylate type PCE (PCEM-P), an allyl ether type PCE (PCEA-P), and an isoprenyl ether type PCE (PCEI-P) with ethylene oxide (EO) unit numbers (P) of 25, 34 and 25, respectively. It is observed that the adsorbed layer thickness is inversely proportional to the experimentally measured adsorbed amount at the initial paste flow of 26 ± 0.5 cm. Simulation results indicate that the adsorbed layer thickness is sensitive to the initial polymer orientations against the model MgO surface. I.e., polymer molecules initially placed parallel/perpendicularly against the MgO surface gradually forms a train shaped or a loop and tail adsorption profile, respectively. As a result, the loop and tail shaped conformation gives a higher layer thickness.
机译:通过分子动力学(MD)模拟了聚羧酸醚(PCE)型高效减水剂聚合物在水泥孔隙溶液中吸附在MgO表面的构象。模拟了三种通常用于混凝土的PCE,即甲基丙烯酸酯型PCE(PCEM-P),烯丙基醚型PCE(PCEA-P)和异戊二烯基醚型PCE(PCEI-P)和环氧乙烷(EO)单元号(P)分别为25、34和25。可以看出,在初始糊料流为26±0.5 cm时,吸附层的厚度与实验测得的吸附量成反比。仿真结果表明,吸附层的厚度对模型MgO表面的初始聚合物取向敏感。即,最初平行于/垂直于MgO表面放置的聚合物分子分别逐渐形成列状或环状和尾部吸附分布。结果,环状和尾状构象给出了更高的层厚度。

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