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    • 73. 发明专利
    • COLUMN-BEAM JOINING PART STRUCTURE
    • JPH08291559A
    • 1996-11-05
    • JP9839795
    • 1995-04-24
    • KAJIMA CORP
    • SUZUKI KOICHI
    • E04B1/24E04B1/58
    • PURPOSE: To enhance tensile bearing force of a joining part by superposing cast iron-made T-shaped restraining metallic materials on T flanges of split T metallic materials to join a beam steel frame and a column steel frame together by bolts from the beam steel frame side, and joining them together by bolts. CONSTITUTION: T webs 12 of split T metallic materials 1 are superposed on flanges 21 of a beam steel frame 2, and T flanges 11 are superposed on a flange 31 and a web 32 of a column steel frame 3, and they are joined together by penetratingly passing bolts 4. In order to restrain out-of-plane deformation of the T flanges 11, cast iron-made restraining metallic materials 5 molded in a T shape by a plate part overlapping with the T flanges 11 and a stiffening part to prevent deformation of the plate part itself, are superposed from the beam steel frame side, and are joined to the column steel frame 3 by bolts together with the T flanges 11. Since the restraining metallic materials 5 stiffen the T flanges 11, tensile force acting on the T webs 12 is uniformly and dispersively borne by the whole bolts 4, and they are made effectively resistible.
    • 76. 发明专利
    • STEEL SKELETON CONSTRUCTING METHOD
    • JPH062364A
    • 1994-01-11
    • JP18451692
    • 1992-06-17
    • KAJIMA CORP
    • SUZUKI KOICHI
    • E04B1/24E04G21/14
    • PURPOSE:To make erection of structural steels executed safely, easily and in a short time in constructing a skeleton of structural steel columns and steel beams. CONSTITUTION:Structural steel columns 1 are connected with pin joints 4 at one side of each of connecting parts on which the columns are connected with one another, and such connections with pin joints 4 are positioned in zigzag in the longitudinal direction of the structural steel columns 1. Each of steel beams 2 is connected with a pin joint 4 at its upper end to the structural steel column 1 to which the connection is made on one side, and is also connected with the pin joint 4 at its lower end to the structural steel column 1 on the other side. On the ground, the structural steel columns facing each other are bent in the same direction with the steel beams 2 interposed between the columns in overlapping, and the columns and beams are placed entirely in folded state. When erecting a skeleton, the top of the frame is lifted, making the entire body erected upright, and after that the other side of each of the connecting parts for connecting the columns one another is connected with a pin joint 4 that is installed beforehand, and the structural steel columns 1 are formed in a continuous body and each of the steel beams 2 is connected to the side of the structural steel column 1.