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Load - Deflection Characteristics of Reinforced Concrete and Reinforced Latecrete Beams at Mid-Span

机译:跨中钢筋混凝土和钢筋混凝土梁的荷载-挠度特性

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A laboratory Investigation of the Flexural Strength of Latecrete materials was carried out. The laterite used falls under AASHTO soil classification A-7-6 (10) with low plasticity clay (CL) according to the Unified soil classification system. This laterite is within zone four gradation characterized by fine laterite and has kaolinite as its dominant clay mineral. The Experimental programme involves the fabrication of twenty beams of concrete and latecrete materials; and testing them for flexural strength. Tests show that The Flexural strength recorded for plain concrete beams was 2.89 N/mm 2 , while plain latecrete beams has a value 1.44 N/mm 2 . The flexural strength of 13.58 N/mm2 was recorded for the reinforced concrete beams and 7.80 N/mm 2 for reinforced latecrete beams, indicating that the flexural strength of latecrete beam is approximately 50% of that of concrete beam specimens. The load-deflection behaviors of the beams are essentially linear within the elastic range of loading. Based on the findings of this investigation, it was observed that the behavior of latecrete is similar to that of concrete; however, the concrete materials showed better strength characteristics than the latecrete materials.
机译:进行了对晚混凝土材料抗弯强度的实验室研究。根据统一土壤分类系统,所使用的红土属于AASHTO土壤分类A-7-6(10)的低塑性粘土(CL)。该红土在以细红土为特征的四级带内,并以高岭石为其主要粘土矿物。实验程序涉及制造20根混凝土和最新混凝土材料的梁。并测试它们的抗弯强度。测试表明,普通混凝土梁的抗弯强度为2.89 N / mm 2,而普通混凝土桩的抗弯强度为1.44 N / mm 2。钢筋混凝土梁的抗弯强度为13.58 N / mm2,钢筋混凝土梁的抗弯强度为7.80 N / mm 2,这表明钢筋混凝土梁的抗弯强度约为混凝土梁试样的50%。在载荷的弹性范围内,梁的载荷-偏转行为基本上是线性的。根据这项调查的结果,观察到,晚混凝土的行为与混凝土相似。然而,混凝土材料的强度特性要比乳胶混凝土好。

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