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Experimental and theoretical studies of ordinary Portland cement composites contains nano LSCO perovskite with Fokker-Planck and chemical reaction equations

机译:普通硅酸盐水泥复合材料的实验和理论研究包含具有Fokker-Planck的纳米LSCO钙钛矿和化学反应方程式

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摘要

In this study, LaSr0.5Co0.5O3 perovskite (LSCO), with 1, 2 and 4 wt% of LSCO nanoparticle inserted into the OPC (Ordinary Portland Cement) matrix via the sol-gel route. The sample nanocrystallite characteristics, surface topography, flexural strength, the influence of crystallite's size, chemical interaction, and the correlation between carrier diffusion; surface roughness were studied using some related techniques and Master and Fokker-Planck approaches. The obtained results from LSCO/cement discrete cell structure show that the sample cement mortar containing 2 wt% LSCO nanocrystallites has a more stable mechanical structure and higher flexural strength due to the its permanent electric dipole, more occupation of the trap sites into the cement, and diffusion of particles (crystallites) through the cell boundary and inside the cells.
机译:在这项研究中,LaSr0.5Co0.5O3钙钛矿(LSCO)通过溶胶-凝胶途径将1、2和4 wt%的LSCO纳米颗粒插入了OPC(普通波特兰水泥)基质中。样品的纳米微晶特征,表面形貌,抗弯强度,微晶尺寸的影响,化学相互作用以及载流子扩散之间的相关性;使用一些相关技术以及Master和Fokker-Planck方法研究了表面粗糙度。从LSCO /水泥离散单元结构获得的结果表明,由于样品的水泥砂浆含有永久性电偶极子,因此含有2 wt%LSCO纳米微晶的水泥砂浆具有更稳定的机械结构和更高的抗弯强度,更多的俘获位点被水泥吸收,以及穿过细胞边界和细胞内部的粒子(微晶)扩散。

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