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Local Impact Damage Response of CFRP Strengthened Concrete Slabs

机译:CFRP加强混凝土板的局部冲击损伤响应

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The effectiveness of carbon fiber reinforced polymer (CFRP) strengthening is well established for seismic retrofitting and structurally deficient RC members, however their response to impact loads is not well known. This paper attempts to investigate the local damage behavior of CFRP strengthened RC slabs against projectile impact. In the present study, CFRP strengthened RC slabs were tested under the impact of 40 mm diameter projectile with hemispherical nose and the response was compared with the control. The test specimens were 600 mm square, 90 mm thick RC slabs reinforced with 8 mm diameter steel rebars. The velocity of steel projectiles was varied within sub-ordinance range and the projectile was made to strike normal to the slab using a gas gun. The slabs were also tested under quasi-static load for establishing their punching resistance against the same projectiles. The test results illustrate that CFRP strengthening is effective in reducing the local damage from front and rear faces of RC slabs. Moreover, the strengthening increases the ballistic limit velocity by 18% and the energy absorption in quasi-static punching by 65.5%. The CFRP strengthening is also effective in reducing the flying of concrete fragments from the rear face.
机译:碳纤维增强聚合物(CFRP)强化的有效性很好地用于地震改装和结构缺陷的RC构件,但它们对冲击载荷的反应是不公知的。本文试图调查CFRP加强RC平板对弹丸影响的局部损伤行为。在本研究中,CFRP强化RC板在40毫米直径射弹的冲击下进行测试,并将反应与对照进行比较。试样为600毫米平方,90毫米厚的RC板坯,加强了8毫米直径的钢筋钢筋。钢射弹的速度在子条目范围内变化,并使射弹使用气枪撞击平板。在准静态载荷下也测试了该板坯,用于建立它们对相同射弹的冲击性。测试结果说明CFRP强化有效地减少了RC板的前面和后表面的局部损伤。此外,强化将弹道极限速度提高18%,以准静电冲压以65.5%的能量吸收。 CFRP强化也有效地减少了从后面的混凝土碎片的飞行。

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