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The invention belongs to the technical field of buildings, and particularly relates to a building reinforcing and damping structure. The building reinforcing and damping structure comprises a foundation pillar, a damping mechanism and wall bodies, wherein the damping mechanism is arranged below the foundation pillar, and the wall bodies are arranged on the two sides of the damping mechanism; stress plates are fixedly connected to the two sides of the foundation pillar; fixing plates are fixedly connected to the outer walls of the stress plates; supporting rods are fixedly connected to the outer sides of the fixing plates of the stress plates; second spring penetrate through the middle parts of the supporting rods; shaking force generated when the foundation pillar shakes can be borne through the stress plates; the second springs further relieve vibrating force generated when the foundation pillar is subjected to external vibration, so that it is guaranteed that the foundation pillar ismore stable; multiple damping springs arranged in a damping cavity in parallel further bear the pressure of the foundation pillar and can also bear the vibration force generated when the foundation pillar is subjected to external vibration; and moreover, the vibration force can be further borne through a third spring in the damping mechanism; the cavity is fixed through a stress rod; and the wallbodies and the stress rod are fixed through fixing nails, so that the bearing force is increased.
本发明属于建筑技术领域,尤其为一种建筑加固减震结构,包括基柱与基柱下方设置的减震机构以及设置在减震机构两侧的墙体,基柱的两侧固定连接有受力板,受力板的外壁固定连接有固定板,受力板的固定板外侧固定连接有支撑杆,支撑杆的中部贯穿有第二弹簧,通过受力板可承受基柱在晃动时产生的晃动力,第二弹簧进一步的缓解基柱在受到外部震动时产生的震动力,从而保证基柱更加的稳固,减震腔内部设置的多个平行设置的减震弹簧进一步的承受基柱的压力,并且也可以承受基柱受到外部震动时产生的震动力,并且通过减震机构内部的第三弹簧更进一步的可以承受震动力,通过受力杆进而固定空腔,在通过固定钉将墙体与受力杆固定,进而增加了承受力。
The invention belongs to the technical field of buildings, and particularly relates to a building reinforcing and damping structure. The building reinforcing and damping structure comprises a foundation pillar, a damping mechanism and wall bodies, wherein the damping mechanism is arranged below the foundation pillar, and the wall bodies are arranged on the two sides of the damping mechanism; stress plates are fixedly connected to the two sides of the foundation pillar; fixing plates are fixedly connected to the outer walls of the stress plates; supporting rods are fixedly connected to the outer sides of the fixing plates of the stress plates; second spring penetrate through the middle parts of the supporting rods; shaking force generated when the foundation pillar shakes can be borne through the stress plates; the second springs further relieve vibrating force generated when the foundation pillar is subjected to external vibration, so that it is guaranteed that the foundation pillar ismore stable; multiple damping springs arranged in a damping cavity in parallel further bear the pressure of the foundation pillar and can also bear the vibration force generated when the foundation pillar is subjected to external vibration; and moreover, the vibration force can be further borne through a third spring in the damping mechanism; the cavity is fixed through a stress rod; and the wallbodies and the stress rod are fixed through fixing nails, so that the bearing force is increased.
本发明属于建筑技术领域,尤其为一种建筑加固减震结构,包括基柱与基柱下方设置的减震机构以及设置在减震机构两侧的墙体,基柱的两侧固定连接有受力板,受力板的外壁固定连接有固定板,受力板的固定板外侧固定连接有支撑杆,支撑杆的中部贯穿有第二弹簧,通过受力板可承受基柱在晃动时产生的晃动力,第二弹簧进一步的缓解基柱在受到外部震动时产生的震动力,从而保证基柱更加的稳固,减震腔内部设置的多个平行设置的减震弹簧进一步的承受基柱的压力,并且也可以承受基柱受到外部震动时产生的震动力,并且通过减震机构内部的第三弹簧更进一步的可以承受震动力,通过受力杆进而固定空腔,在通过固定钉将墙体与受力杆固定,进而增加了承受力。
Building reinforcing and damping structure
一种建筑加固减震结构
CAO LIHUA (author)
2020-12-18
Patent
Electronic Resource
Chinese
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