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Assembly type lead-aluminum foam composite material vibration-reducing and energy-consuming wall device
The invention discloses an assembly type lead-aluminum foam composite material vibration-reducing and energy-consuming wall device, and belongs to the field of building structure vibration control. The device comprises a middle sliding metal plate, a front aluminum foam composite material plate, a rear aluminum foam composite material plate, a front steel plate, a rear steel plate, lead core rod and split bolts. The front aluminum foam composite material plate is located between the front steel plate and the middle sliding metal plate, the rear aluminum foam composite material plate is locatedbetween the rear steel plate and the middle sliding metal plate, the front steel plate, the front aluminum foam composite material plate, the rear aluminum foam composite material plate and the rearsteel plate are combined, tensioned and connected through the split bolts, and therefore the middle sliding metal plate can be tightly pressed between the front aluminum foam composite material plateand the rear aluminum foam composite material plate, the two ends of each lead core rod are embedded into the front steel plate and the rear steel plate correspondingly, and the lead core rods and themetal plate are in clearance fit. The assembly type lead-aluminum foam composite material vibration-reducing and energy-consuming wall device comprises multiple energy consumption mechanisms, is simple in structure, is completely assembled, is relatively convenient to install and maintain and can provide a new means for the vibration reduction control of a building structure.
本发明公开了一种装配式铅‑泡沫铝复合材料减振耗能墙装置,属于建筑结构振动控制领域。此装置包括中间滑动金属板、前、后泡沫铝复合材料板、前钢板、后钢板、铅芯棒和对拉螺栓,其中,前泡沫铝复合材料板位于前钢板与中间滑动金属板之间,后泡沫铝复合材料板位于后钢板与中间滑动金属板之间,前钢板、前、后泡沫铝复合材料板以及后钢板通过对拉螺栓组合拉紧连接,从而使中间滑动金属板压紧于前、后泡沫铝复合材料板之间,铅芯棒两端分别嵌入前钢板和后钢板中,且铅芯棒与中间滑动金属板间隙配合。本发明的耗能墙装置具有多重耗能机制,构造简单,完全为装配式,安装和维修都较为方便,能为建筑结构的减振控制提供新手段。
Assembly type lead-aluminum foam composite material vibration-reducing and energy-consuming wall device
The invention discloses an assembly type lead-aluminum foam composite material vibration-reducing and energy-consuming wall device, and belongs to the field of building structure vibration control. The device comprises a middle sliding metal plate, a front aluminum foam composite material plate, a rear aluminum foam composite material plate, a front steel plate, a rear steel plate, lead core rod and split bolts. The front aluminum foam composite material plate is located between the front steel plate and the middle sliding metal plate, the rear aluminum foam composite material plate is locatedbetween the rear steel plate and the middle sliding metal plate, the front steel plate, the front aluminum foam composite material plate, the rear aluminum foam composite material plate and the rearsteel plate are combined, tensioned and connected through the split bolts, and therefore the middle sliding metal plate can be tightly pressed between the front aluminum foam composite material plateand the rear aluminum foam composite material plate, the two ends of each lead core rod are embedded into the front steel plate and the rear steel plate correspondingly, and the lead core rods and themetal plate are in clearance fit. The assembly type lead-aluminum foam composite material vibration-reducing and energy-consuming wall device comprises multiple energy consumption mechanisms, is simple in structure, is completely assembled, is relatively convenient to install and maintain and can provide a new means for the vibration reduction control of a building structure.
本发明公开了一种装配式铅‑泡沫铝复合材料减振耗能墙装置,属于建筑结构振动控制领域。此装置包括中间滑动金属板、前、后泡沫铝复合材料板、前钢板、后钢板、铅芯棒和对拉螺栓,其中,前泡沫铝复合材料板位于前钢板与中间滑动金属板之间,后泡沫铝复合材料板位于后钢板与中间滑动金属板之间,前钢板、前、后泡沫铝复合材料板以及后钢板通过对拉螺栓组合拉紧连接,从而使中间滑动金属板压紧于前、后泡沫铝复合材料板之间,铅芯棒两端分别嵌入前钢板和后钢板中,且铅芯棒与中间滑动金属板间隙配合。本发明的耗能墙装置具有多重耗能机制,构造简单,完全为装配式,安装和维修都较为方便,能为建筑结构的减振控制提供新手段。
Assembly type lead-aluminum foam composite material vibration-reducing and energy-consuming wall device
一种装配式铅-泡沫铝复合材料减振耗能墙装置
LIU SHAOBO (Autor:in) / LI AIQUN (Autor:in)
30.10.2020
Patent
Elektronische Ressource
Chinesisch
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