ANALISA KUAT GESER BALOK BETON BERTULANG BERLAPIS BETON NORMAL-BETON STYROFOAM

Q4 Mathematics
K. Kusnadi, I. Imran, M. Rizal
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引用次数: 0

Abstract

This study aims to analyze the shear strength of layered reinforced concrete beams as a composite. Concrete beams consist of normal concrete f'c 25 MPa on the compression side and lightweight concrete of 2.55 MPa, 1.32 MPa and 0.31 MPa on the tensile side as a consequence of the use of styrofoam as much as 30%, 40% and 50% of the concrete volume. This layered concrete beam is intended to reduce the weight of the structure. The tested beam is designed without shear reinforcement with dimensions of .150 cm long, 15 cm wide and 32 cm high, given 3Æ12 flexural reinforcement. The beam test used two concentrated loads with an effective shear-span ratio (a/d) 1.43 to ensure shear failure. The shear strength of layered concrete beams depends on the quality of each layer of concrete where the higher the quality of the cross-sectional concrete, the higher the shear strength. The prediction of shear strength based on the regulation is in line with the shear strength in the first oblique crack condition. 
分析强化钢筋混凝土块的横切面结构
本研究的目的是分析层状钢筋混凝土梁作为一种组合的抗剪强度。混凝土梁的受压侧为25 MPa的普通混凝土,受拉侧为2.55 MPa、1.32 MPa和0.31 MPa的轻量混凝土,其中泡沫塑料的用量分别占混凝土体积的30%、40%和50%。这种分层混凝土梁旨在减轻结构的重量。试验梁设计为无剪力加固,尺寸为0.150 cm长,15 cm宽,32 cm高,给出3Æ12抗弯加固。梁试验采用两个集中荷载,有效剪跨比(a/d)为1.43,保证剪切破坏。层状混凝土梁的抗剪强度取决于每层混凝土的质量,截面混凝土的质量越高,抗剪强度越高。根据该规律预测的抗剪强度与第一斜裂条件下的抗剪强度基本一致。
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
AIUB Journal of Science and Engineering
AIUB Journal of Science and Engineering Mathematics-Mathematics (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
3
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