采用天然浮石作粗骨料的轻质混凝土断裂力学参数评价

Azhar Nimat, A. Mohammed, A. Mohammed
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引用次数: 0

摘要

混凝土材料软化响应曲线对混凝土的精确数值分析至关重要。拉伸强度、初始断裂能和总断裂能是定义这种软化响应的三个重要参数。其中,在任何试图模拟钢筋混凝土(RC)结构性能的分析程序中,通常都会考虑断裂能。采用缺口梁试件进行三点弯曲试验,研究了19mm最大粒径天然浮石骨料制备的轻量化混凝土的脆性和断裂特性。采用尺寸效应法(SEM)和断裂功法(WFM)对断裂参数进行了分析和解释,并与已发表的文献结果进行了比较。结果表明,平均总断裂能(GF)为145.65 N/m,平均特征长度(Lch)为590.34 mm。随后,将该方法获得的结果与SEM方法相关联,确定了初始断裂能Gf,平均值为58.26 N/m,断裂韧性KIC为38.47 MPa。0.5毫米。轻质混凝土的延展性更强,需要更多的能量才能在试件上传播断裂,这是当前数据与文献数据的对比所显示的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Fracture Mechanics Parameters of Light-weight Concrete by Implementing Natural Pumice Stone as Coarse Aggregate
The concrete material softening response curve is essential for accurate numerical analysis of concrete. The tensile strength, initial fracture energy, and total fracture energy are the three parameters of interest in defining such softening response. Among them, the fracture energy is usually regarded in any analytical program that attempts to model reinforced concrete (RC) structures' behavior. The brittleness and fracture characteristics of lightweight concrete (LWC) produced from 19 mm maximum size natural pumice stone aggregate were investigated via testing notched beam specimens under three-point bending test. Fracture parameters were analyzed and explained using the size effect method (SEM) and the work of fracture method (WFM), and the results were compared to those found in the published literature. The results show mean total fracture energy (GF) of 145.65 N/m and a mean characteristic length (Lch) of 590.34 mm. Later, by correlating the result obtained via this method to the SEM approach, the initial fracture energy (Gf) was determined with a mean value of 58.26 N/m and the fracture toughness (KIC) was found to be 38.47 MPa.mm 0.5. Lightweight concrete was found to be more ductile and need more energy to propagate fracture across the specimen, as shown by a comparison of current data to that acquired from literature.
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