Model of Precast Beam-Column Connection Towards Structure Rigidity by using Steel Plate Causes by Cyclic Load

Muhammad Syarif Burhanuddin, H. Parung, R. Djamaluddin, A. B. Muhiddin
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Abstract

Precast connection system in structure element must be designed in such way to result in required behaviour, such as plastic hingesmust be well-planned to be able to shed earthquake energy and to limit seismic loading that goes inside the structure. This research is experimental study that precast beam connection which is modeled using steel plate. The result of this model design use to compare the occurence of structure deformity rigidity in monolith concrete construction (BN) and precast concrete (BP1 and BP2). The testing dimension consists of column with the size 300x300 mm and height 3300mm, beam 200x300 mm and width 3300 mm, with steel plate 200x400x8 mm and 300x400x8. This study resulted in monolith testing material (BN) produces average value 47.8 % from its previous rigidity, BP1is 57.13% from its previous rigidity, and BP2 is 52.22% from its previous rigidity.
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循环荷载作用下预应力梁柱连接的钢板结构刚度模型
结构元件中的预制连接系统必须以这样的方式设计,以产生所需的性能,例如塑料铰链必须精心规划,以能够减少地震能量并限制进入结构内部的地震载荷。本研究是用钢板模拟预制梁连接的试验研究。该模型设计的结果用于比较整体混凝土结构(BN)和预制混凝土(BP1和BP2)中结构变形刚度的发生。试验尺寸为柱尺寸为300x300mm,高3300mm,梁为200x300mm,宽3300mm,钢板为200x400x8mm和300x400x8。研究结果表明,整体测试材料(BN)的刚度均值为47.8%,bp1的刚度均值为57.13%,BP2的刚度均值为52.22%。
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