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首页> 外文期刊>Magazine of Concrete Research >Study of rock-mortar interfaces. Part Ⅰ: surface roughness of rock aggregates and microstructural characteristics of interface
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Study of rock-mortar interfaces. Part Ⅰ: surface roughness of rock aggregates and microstructural characteristics of interface

机译:砂浆界面的研究。第一部分:岩石集料的表面粗糙度和界面微观结构特征

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摘要

This two-part paper reports the results of an extensive study on the interface between cylindrical rock aggregates and mortar matrix with particular emphasis on the influence of the surface roughness of the rock and the density of the matrix on the thickness of the interface and on its strength. In Part Ⅰ of the paper the surface roughness of three rock aggregates commonly used in concrete (sandstone, limestone and granite) is measured by means of the Talysurf apparatus on 100mm long cored cylindrical specimens of various diameters. The roughness is expressed through a roughness index R_a. It is found that the sandstone aggregate has the highest surface roughness, followed by limestone and granite in that order. Investigations are also conducted, using scanning electron microscopy, on how the microstructure of the interface and its thickness are affected by the addition of silica fume to the mortar. A chemical analysis of the constituents in, and in the vicinity of, the interface was also undertaken with a view to identifying the interfacial zone which is distinctly free from sand particles. It was found that the relative thickness of the interfacial zone reduces when silica fume is added to the mortar matrix. For all mortar and rock types the bond was found to be mechanical rather than chemical in nature. Part Ⅱ of the paper studies experimentally and theoretically the influence of the surface roughness of the rock aggregate and density of the mortar matrix on the strength of the rock-mortar interface.
机译:这份由两部分组成的论文报告了对圆柱状岩石集料和砂浆基质之间的界面进行的广泛研究的结果,其中特别强调了岩石表面粗糙度和基质密度对界面厚度及其界面厚度的影响。强度。在论文的第一部分中,使用Talysurf装置,对100mm长,不同直径的带芯圆柱试样测量了混凝土中常用的三种岩石集料(砂岩,石灰石和花岗岩)的表面粗糙度。粗糙度通过粗糙度指数R_a表示。发现砂岩骨料具有最高的表面粗糙度,其次是石灰石和花岗岩。还使用扫描电子显微镜对界面的微观结构及其厚度如何受到灰泥中添加硅粉的影响进行了研究。还对界面内和界面附近的成分进行了化学分析,以识别明显不含沙粒的界面区域。已经发现,当将硅灰添加到灰浆基质中时,界面区域的相对厚度减小。对于所有砂浆和岩石类型,发现粘结本质上都是机械的,而不是化学的。本文的第二部分从理论和实验上研究了岩石集料的表面粗糙度和砂浆基质密度对岩石砂浆界面强度的影响。

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