钢筋混凝土梁的瞬时荷载-挠度行为

Md. Imran Hasan Bappy
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引用次数: 0

摘要

荷载作用下的梁挠度和混凝土开裂是一种普遍现象,存在于所有类型的混凝土结构中。本研究工作对使用不同比例的低碳钢作为钢筋以及不同养护条件(即涂刷、空气和水养护)的简支梁的实验挠度和理论挠度进行了比较分析。理论挠度使用 AS 3600-2018、ACI 318-14 和 Eurocode 2:2004 进行测量。为了区分这些规范,收缩率根据不同的固化条件而变化。使用 ImageJ 软件通过图像处理测量了裂缝宽度,并与 Eurocode 2:2004 和 ACI 224.1R-07 的理论结果进行了比较。处理具有足够信息的 RGB 图像可提供裂缝参数。通过滤波和阈值处理将 RGB 图像转换为灰度图像。裂缝参数由脊检测插件自动确定。根据 AS 3600-2018、Eurocode 2:2004 和 ACI 318-14 的实验和计算结果得出的简支梁挠度非常接近。图像处理是研究混凝土裂缝的一项非常有效的技术,而 "脊线检测 "插件对自动检测非常有帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INSTANTANEOUS LOAD-DEFLECTION BEHAVIOUR OF REINFORCED CONCRETE BEAMS
Beam deflection under load and concrete cracking is a ubiquitous phenomenon, present in all types of concrete structures. This research work represents a comparative analysis of experimental and theoretical deflections of simply supported beams with different proportions of mild steel as reinforcement and also different curing conditions i.e. Painting, Air and Water curing. Theoretical deflections were measured using AS 3600-2018, ACI 318-14 and Eurocode 2:2004. To differentiate among these codes Shrinkage was kept variable by different curing conditions. Crack width was measured by image processing using ImageJ software and compared with theoretical results using Eurocode 2:2004 and ACI 224.1R-07. Processing of RGB images with sufficient information will provide the parameters of cracks. RGB images were converted into Gray scale proceed by a filtering and thresholding. Crack parameters were automatically determined by Ridge Detection plugin. Deflections of simply supported beams from experimental and calculation results using AS 3600-2018, Eurocode 2:2004 and ACI 318-14 are very close. Image processing is a very effective technique in the study of crack in concrete and for automatic detection “Ridge Detection” plugin is very helpful.
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