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作 者:M. V. Venkateshwara Rao K. Jagannadha Rao M. V. Seshagiri Rao P. Jagannadha Rao
机构地区:[1]Research Scholar JNTU Hyderabad, Andhra Pradesh, India [2]Professor of Civil Engineering, CBIT, Gandipet, Hyderabad-75, Andhra Pradesh, India [3]Professor of Civil Engineering, JNT UniversityHyderabad, Kukatpally, Hyderabad, Andhra Pradesh, India [4]Professor of Civil Engineering, Ace College of Engg., Hyderabad, Andhra Pradesh, India
出 处:《Journal of Civil Engineering and Architecture》2012年第10期1369-1375,共7页土木工程与建筑(英文版)
摘 要:A variety of new materials in the field of concrete technology have been developed during the past three decades with the ongoing demand of construction industry to meet the functional, strength, economical and durability requirements. Though reinforced concrete has high strength and is most widely used construction material it suffers from disadvantages like corrosion of steel, susceptibility to chemical and environmental attack. In order to overcome the above deficiencies of reinforced concrete new materials (special concrete composites) have been developed over the past three decades. Glass Fibre Reinforced Polymer (GFRP) is one such material with wide range of applications. Based on the preliminary investigations on GFRP bars, an optimum fiber/resin ratio of 7:3 was arrived. The tensile strength of GFRP bars is comparable to that of the mild steel as per the tests carried out, but the modulus of elasticity is about 25-30 percentage of that of steel bars. This paper deals with the experimental investigations carried out on small slab panels supported on all four edges with effective spans of 0.9 m ~ 0.45 m, which is a part of large research problem undertaken with different ratios of 10ng span to short span with different support conditions. The test results are compared with similar slab panels reinforced with conventional mild steel bars.
关 键 词:GFRP bars steel bars corrosion slab panels flexure DEFLECTIONS
分 类 号:TU375[建筑科学—结构工程] TV641.43[水利工程—水利水电工程]
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