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Bond Stress Model of Deformed Bars in High Strength Concrete

机译:高强混凝土中变形钢筋的粘结应力模型

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The use of reinforced concrete as a structural material originates from two different components; Reinforcing steel, known as a highly-tensile material, combined with concrete, a highly-compressive material, act together to resist different types of loadings. However, this composite action is dependent upon the transfer of loads between the steel and concrete known as the bond and is concluded to be on a form of continuous stress along the juncture of steel and concrete. This study focused on producing a bond stress model as a function of concrete compressive strength, embedment length and bar diameter, using single pullout test, with the help of multiple regression analysis by using Microsoft Excel. For the compressive strength, 40 MPa, 50MPa and 60MPa were used, with 50mm, 75mm and 100mm embedment length and bar diameters of 12mm, 16mm and 20mm, producing a total of 27 specimens. After subjecting each specimen to pull out test, data were tabulated and analyzed using Multiple Regression producing a model with 97.81% correlation coefficient. The model was then subjected to parametric testing and it was concluded that increasing the compressive strength of concrete would result to an increase in bond stress; however, increasing the embedment length and bar diameter would result to a decrease in bond stress.
机译:钢筋混凝土作为结构材料的使用源自两个不同的组成部分。钢筋被称为高强度材料,与混凝土(高抗压材料)结合在一起,可以抵抗不同类型的载荷。但是,这种复合作用取决于钢和混凝土之间的载荷传递(称为粘结),并且得出的结论是沿钢和混凝土的交界处具有连续应力的形式。这项研究的重点是通过使用Microsoft Excel进行多重回归分析,使用单项拉出试验生成作为混凝土抗压强度,包埋长度和钢筋直径的函数的粘结应力模型。对于抗压强度,使用40 MPa,50 MPa和60 MPa,埋深长度分别为50mm,75mm和100mm,棒直径为12mm,16mm和20mm,总共制作了27个样品。在对每个样本进行拉拔测试后,将数据制成表格并使用多元回归进行分析,以产生具有97.81%相关系数的模型。然后对该模型进行参数测试,得出的结论是,提高混凝土的抗压强度将导致粘结应力的增加。但是,增加嵌入长度和钢筋直径会导致粘结应力降低。

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