首页> 外文会议>ASME pressure vessels and piping conference;PVP2009 >SHAKING TABLE TESTS WITH LARGE TEST SPECIMENS OF SEISMICALLY ISOLATED FBR PLANTS PART 2: DAMAGE TEST OF REINFORCED CONCRETE WALL STRUCTURE
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SHAKING TABLE TESTS WITH LARGE TEST SPECIMENS OF SEISMICALLY ISOLATED FBR PLANTS PART 2: DAMAGE TEST OF REINFORCED CONCRETE WALL STRUCTURE

机译:隔震FBR植物的大试件振动台试验第2部分:钢筋混凝土墙结构的损伤试验

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This paper describes the dynamic damage test of a reinforced concrete (RC) wall structure with seismic isolation sysytem. It has been expected that seismically isolated structures are damaged in sudden when the accelerations of the structures exceed a certain level by hardening of the rubber bearings. However, the response behavior and the damage mode have not been observed by experimental test yet. So, shaking table tests were carried out at "E-Defense", equipping the world's largest shaking table, located at Miki City, Hyogo prefecture, Japan. The specimen was composed of an upper structure of 600 ton by weight and six lead-rubber bearings (LRBs) of 505 mm in diameter which provide both stiffness and hysteretic damping. The upper structure consisted of a RC mass and four RC walls with counter weight. The RC wall structure was designed so that the damage of the RC wall occurred between the shear force at the hardening of the rubber bearings and that at their breaking. The dimensions of the RC wall were 1600 × 800 × 100 mm (B × H × t). The reinforcement ratios were 2.46% in vertical by D13 (deformed reinforcing bar, 13 mm in diameter) and 1.0% in horizontal by D10. The shaking table test was conducted consecutively by increasing the levels up to 225% of tentative design earthquake motion. Consequently, because of the increase of the structural response by the hardening of the rubber bearings, the damage of the wall structure with seismic isolation system suddenly happened. In addition, thepreliminary finite element analysis simulated the test results fairly well, which were the restoring force characteristics, the crack patterns of the RC wall structure and such.
机译:本文描述了带有隔震系统的钢筋混凝土(RC)墙结构的动态损伤试验。可以预料,当结构的加速度超过一定水平时,由于橡胶轴承的硬化,地震隔离的结构会突然损坏。然而,还没有通过实验测试观察到响应行为和损伤模式。因此,在世界上最大的振动台“ E-Defense”上进行了振动台测试,该设备位于日本兵库县三木市。样品由一个重量为600吨的上部结构和六个直径为505 mm的铅橡胶轴承(LRB)组成,可提供刚度和滞后阻尼。上部结构由RC质量和四个带有配重的RC壁组成。 RC墙的结构设计使得RC墙的损坏发生在橡胶轴承硬化时的剪切力与断裂之间。 RC墙的尺寸为1600×800×100 mm(B×H×t)。 D13(变形的钢筋,直径13毫米)的垂直增强率为2.46%,而D10水平的增强率为水平的1.0%。通过将试验设计地震运动的水平提高到最大225%,连续进行了振动台测试。因此,由于橡胶轴承硬化而增加了结构响应,突然发生了隔震系统对墙体结构的破坏。除此之外 初步的有限元分析相当好地模拟了测试结果,包括恢复力特性,RC墙结构的裂缝模式等。

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