在拉伸区域连续撕裂的钢纤维混凝土梁上弯曲的行为

Erlina Prasetyawati, Moch. Solikin
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引用次数: 1

摘要

受到正弯曲力的混凝土梁,在顶部将受到压缩力,而在底部将受到拉伸力。钢筋混凝土理论认为钢筋混凝土是一种结构体系,其中混凝土中的钢或钢筋起承受拉力的作用,那么中性线以下的混凝土不受压缩力,而是将拉力传递给钢筋。本研究通过连续安装2英寸直径的PVC管,并在混凝土中加入纤维,分析并减少了拉伸区的面积。这种面积的减少有望在不降低强度的情况下减轻重量和节省材料。本研究采用龄期28天的混凝土砌块,质量f'c = 21.04 MPa,尺寸为12 cm x 18 cm x 250 cm,配筋为4Ø10 mm,质量fy = 450 MPa。混凝土梁有实心梁、无纤维空心梁、有纤维空心梁三种形式。每个变异有2个样本。从试验结果来看,所有梁都经历了弯曲裂缝,其特征是垂直于梁轴的裂缝和抗弯强度行为差异不显著。从该梁的三种变形结果可以看出,加入纤维的空心梁具有更大的初裂荷载。纤维的添加能够减缓裂缝的发生,并有助于承受拉伸应力,因此即使裂缝发生,梁仍然具有承受载荷的强度。根据计算模拟,为了使空心梁与纤维的强度均衡,需要增大实心梁的尺寸,从而使实心梁变得更加昂贵。这表明纤维空心梁比实心梁更经济。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PERILAKU LENTUR PADA BALOK BETON SERAT BESI BERLUBANG MENERUS DI DAERAH TARIK
Concrete beams that receive a positive bending force, at the top will experience a compressive force while at the bottom receive a tensile force. The theory that reinforced concrete is a structural system where the steel or reinforcement in the concrete functions to withstand tension, then the concrete below the neutral line does not receive a compressive force but transmits a tensile force to the reinforcement. This study analyzes and reduces the area in the tensile area by continuously installing 2 inch diameter PVC pipes and adding fiber to the concrete. This reduction in area is expected to reduce weight and material savings without reducing its strength. This research was carried out with a sample of 28 days old concrete blocks with quality f'c = 21.04 MPa with dimensions of 12 cm x 18 cm x 250 cm, with 4Ø10 mm reinforcement with quality fy = 450 MPa. Concrete beams are made in 3 variations in the form of solid beams, hollow beams without fiber, hollow beams with fiber. Each variation has 2 samples. From the test results, all beams experienced flexural cracks which were characterized by cracks perpendicular to the beam axis and flexural strength behavior which the difference was not significant. From the three variations of this beam, it shows that the results of the hollow beam with the addition of fiber have a greater first crack load. The addition of fiber is able to slow down the cracks that occur and contribute to withstand tensile stresses so that the beam still has strength to bear the load even though cracks have occurred. Based on the calculation simulation, in order to equalize the strength of the hollow beam with fiber, the dimensions of the solid beam need to be enlarged so that the solid beam becomes more expensive. This shows that hollow beams with fiber are more economical than solid beams.
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