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    • 71. 发明专利
    • Water cut-off structure for boxy body joint part
    • BOXY BODY JOINT PART的水切割结构
    • JP2014025300A
    • 2014-02-06
    • JP2012167953
    • 2012-07-30
    • Kajima Corp鹿島建設株式会社
    • YASUNAGA MASAMICHI
    • E21D11/04E04B1/684E21D11/08E21D11/38
    • PROBLEM TO BE SOLVED: To provide a water cut-off structure for a joint part between concrete box bodies which are embedded in a ground and are straight linearly, capable of economically and easily cutting off water from a junction portion where relative displacement in the shearing direction and the axial direction occurs between the box bodies.SOLUTION: In a joint part 3 between concrete box bodies 1 embedded in a ground, a joint filler 16 is arranged in a joint part joint area. In the whole outer periphery of the box body joint part 3, cutout recessed parts 17 are formed. A canvas 18 is arranged over the whole peripheries of the concrete box bodies 1 along the shapes of the cutout recessed parts 17 so as to be adhered not to the cutoff recessed parts 17, 17 but to both concrete box bodies 1. The canvas 18 is covered at its outside with a rubber sheet 19 which is installed to be adhered at its ends to the concrete box bodies 1 and bridged between the concrete box bodies 1.
    • 要解决的问题:为了提供嵌入地面并直线的混凝土箱体之间的接合部分的截水结构,能够经济地且容易地从剪切中相对位移的接合部分切断水 方向和轴向方向发生在箱体之间。解决方案:在嵌入地面的混凝土箱体1之间的接头部分3中,接头填料16布置在接头部分接合区域中。 在盒体接合部3的整个外周形成切口凹部17。 画布18沿着切口凹部17的形状布置在混凝土箱体1的整个周边上,以便不被粘附到切割凹部17,17上,而是粘合到两个混凝土箱体1.帆布18是 在其外侧用橡胶片19覆盖,橡胶片19的端部被安装在混凝土箱体1上,并被桥接在混凝土箱体1之间。
    • 72. 发明专利
    • Installation method for precast member and precast structure used for the same
    • 用于预测成员的预安装方法及其使用的预测结构
    • JP2013104175A
    • 2013-05-30
    • JP2011246699
    • 2011-11-10
    • Kajima Corp鹿島建設株式会社
    • YASUNAGA MASAMICHIYAMANAKA HIROYUKIUO AKIYUKI
    • E03F1/00
    • PROBLEM TO BE SOLVED: To provide a method capable of joining precast members in two non-parallel directions (for example, in a lateral direction and a vertical direction) even when a bolt box is not used, and a precast structure suitable for the same.SOLUTION: An inventive installation method for precast members includes the steps of: joining a first precast member having holes which can accommodate tip sides of coupling rods to an existing concrete structure; joining a second precast member having through-holes forming coupling rod insertion holes together with the holes to the existing concrete structure so that it is arranged adjacently to the first precast member; inserting the coupling rods from the other openings of the through-holes of the second precast member, respectively, and pushing the coupling rods into the coupling rod insertion holes until the tip sides of the coupling rods are accommodated in the holes of the first precast member; and filling the coupling rod insertion holes with a liquid filler after the coupling rods are pushed in.
    • 要解决的问题:即使在不使用螺栓箱的情况下,也能够提供能够在两个非平行方向(例如,在横向和垂直方向上)连接预制构件的方法,并且预制结构适合 相同的 解决方案:一种用于预制构件的本发明的安装方法包括以下步骤:将具有孔的第一预制构件连接到可以容纳连接杆的顶端的现有混凝土结构; 将具有通孔的第二预制构件与孔一起形成与现有混凝土结构的连接杆插入孔,使得其布置成与第一预制构件相邻; 将耦合杆分别从第二预制构件的通孔的其他开口插入,并将联结杆推入联接杆插入孔中,直到联接杆的顶端容纳在第一预制构件的孔中 ; 在连接杆推入后,用液体填充物填充连接杆插入孔。(C)2013,JPO&INPIT
    • 75. 发明专利
    • DEW CONDENSATION PREVENTING EQUIPMENT
    • JPH0821059A
    • 1996-01-23
    • JP18085494
    • 1994-07-09
    • KAJIMA CORP
    • YASUNAGA MASAMICHIINOUE TANENAO
    • E04F13/08E04B1/04
    • PURPOSE:To heat a wall and prevent the dew condensation by providing a surface heating element on the inner surface of the wall, and carrying a current thereto in winter. CONSTITUTION:A dew condensation preventing equipment has a surface heating element 1 stuck to a wall paper 3, and this dew condensation preventing equipment is stuck to the inside of a wall 5. The sheet surface heating element 1 has vinyl sheets on both surfaces of the surface heating layer. The heating layer is heated by supplying a current through a lead sire. In winter, the current is carried to the dew condensation preventing equipment, and the wall paper 3 and the wall surface of the concrete wall 5 are slightly warmed to prevent the dew condensation. The wall paper 3 having the surface heating body 1 thereon is extremely thin, and never protruded inward even when the dew condensation preventing equipment is stuck to the wall 5, and the surface heating body I also has a reasonable strength because it is made of carbon. Further, since the heating value of the surface heating element 1 can be regulated to freely set the temperature on the wall 5 inside, the equipment can be operated with the lowest electric energy.