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Characteristics of Lightweight Cellular Concrete and Effects on Mechanical Properties

机译:轻质蜂窝混凝土的特性及其对力学性能的影响

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摘要

This study investigated the pore structure and its effects on mechanical properties of lightweight cellular concrete (LCC) in order to understand more and detailed characteristics of such structure. As part of investigation, environment scanning electron microscopes (ESEM) and industrial high-definition (HD) macro photography camera were separately used to capture and compare images of specimens. Physical properties of the pore structure, including pore area, size, perimeter, fit ellipse, and shape descriptors, were studied based on the image processing technology and software applications. Specimens with three different densities (400, 475, and 600 kg/m ) were prepared in the laboratory. Firstly, the effects of density on the characteristics of pore structure were investigated; furthermore, mechanical properties (compressive strength, modulus of elasticity and Poisson’s ratio, flexural strength and splitting tensile strength of LCC) were tested. The relationships among pore characteristics, density, and mechanical properties were analyzed. Based on the results obtained from the lab test—comparisons made between specimens with high-densities and those with low-densities—it was found significant variability in bubble size, thickness, and irregularity of pores. Furthermore, the increase of density is accompanied by better mechanical properties, and the main influencing factors are the thickness of the solid part and the shape of the bubble. The thicker of solid part and more regular pores of LCC has, the better mechanical properties are.
机译:这项研究调查了孔结构及其对轻质多孔混凝土(LCC)力学性能的影响,以了解这种结构的更多详细信息。作为研究的一部分,环境扫描电子显微镜(ESEM)和工业高清(HD)宏观摄影相机分别用于捕获和比较标本的图像。基于图像处理技术和软件应用,研究了孔结构的物理性质,包括孔面积,大小,周长,椭圆形和形状描述符。在实验室中准备了三种不同密度(400、475和600 kg / m 2)的样品。首先,研究了密度对孔结构特征的影响;此外,还测试了机械性能(LCC的抗压强度,弹性模量和泊松比,抗弯强度和抗拉强度)。分析了孔隙特性,密度和力学性能之间的关系。根据实验室测试的结果(高密度样品与低密度样品之间的比较),发现气泡大小,厚度和孔的不规则性存在明显差异。此外,密度的增加伴随着更好的机械性能,并且主要的影响因素是固体部分的厚度和气泡的形状。 LCC的固体部分越厚,孔越规则,机械性能越好。

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