Analytical solution of nano-concrete-epoxy interaction area considering static equilibrium

IF 4.703 3区 材料科学
Md. Foisal Haque
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Abstract

This research proposes an analytical solution of the nano-concrete-epoxy interaction area within nano crack region of the reinforced concrete beam by applying Newton’s third law in static equilibrium. For deriving the governing equation, the imaginary beam with free ends (no support) is considered within nano crack region. This imaginary beam is acted along the imaginary line of concrete-epoxy interface. Newton’s third law is applicable for deriving the governing equation because of assuming the absence of frictional and other external forces. The parametric study is performed for implementing the proposed formula of nano interactive area considering variable nano crack depths and thicknesses. The nano interactive area is increased gradually with the increment of depths and thicknesses based on the parametric study because of linear functionality of interactive area and geometry of nano crack region. The maximum interactive area is found to be 314 nm2 at 0.6 ratio of depths and thicknesses of the nano crack. The incremental differences in interactive area between the crack depth or thickness ratios of 0.1 and 0.6 are found to be 25.4% and 1.6% for variations of the crack depth and thickness ratios, respectively. So, the crack depth shows higher impact on the interaction area compared to the thickness of the crack. However, there is a scope for enhancing this research in future by deriving closed-formed analytical formulations to consider appropriate boundary conditions.

Abstract Image

考虑静态平衡的纳米混凝土-环氧树脂相互作用面积的分析解决方案
本研究提出了一种钢筋混凝土梁纳米裂缝区域内纳米混凝土-环氧树脂相互作用区域的分析方法,即在静态平衡中应用牛顿第三定律。在推导控制方程时,考虑了纳米裂缝区域内两端自由(无支撑)的假想梁。该假想梁沿着混凝土-环氧树脂界面的假想线作用。由于假设没有摩擦力和其他外力,牛顿第三定律适用于推导控制方程。考虑到不同的纳米裂缝深度和厚度,为实施所提出的纳米交互面积公式进行了参数研究。根据参数研究,纳米交互面积随着深度和厚度的增加而逐渐增大,因为交互面积与纳米裂纹区域的几何形状具有线性函数关系。当纳米裂纹的深度和厚度比为 0.6 时,最大交互面积为 314 nm2。在裂纹深度或厚度比为 0.1 和 0.6 之间,发现裂纹深度和厚度比变化时,交互面积的增量差异分别为 25.4% 和 1.6%。因此,与裂纹厚度相比,裂纹深度对相互作用面积的影响更大。不过,今后仍有改进这一研究的余地,即通过考虑适当的边界条件,推导出封闭式分析公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nanoscale Research Letters
Nanoscale Research Letters NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
15.00
自引率
0.00%
发文量
110
审稿时长
2.5 months
期刊介绍: Nanoscale Research Letters (NRL) provides an interdisciplinary forum for communication of scientific and technological advances in the creation and use of objects at the nanometer scale. NRL is the first nanotechnology journal from a major publisher to be published with Open Access.
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