Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
The invention relates to the technical field of building materials, and specifically relates to a composite building material. The composite building material comprises an anti-seismic wall plate composed of a face plate layer, a concrete layer and a bottom plate layer. The concrete layer is arranged between the face plate layer and the bottom plate layer. An upper installation cavity and a lowerinstallation cavity which are same in size are formed in the concrete layer. An anti-seismic structure is arranged in each installation cavity. Each anti-seismic structure comprises a first movable block arranged on the middle portion of the corresponding installation cavity. The left end and the right end of each first movable block are connected with the side wall of the corresponding installation cavity through springs. Second movable blocks are symmetrically arranged at the upper side and the lower side of each first movable block. The left end and the right end of each second movable block are connected with the side wall of the corresponding installation cavity through springs. The state of unceasingly consuming seismic energy through compressing and releasing of the springs and friction of the first movable blocks, the second movable blocks and third movable blocks is achieved, the seismic resistance and vibration reduction effect is improved, transverse vibration is reduced, and it is avoided that the anti-seismic wall plate overturns.
本发明涉及建筑材料技术领域,具体的说是一种复合建筑材料,包括由面板层、混凝土层及底板层构成的抗震墙板,所述混凝土层设置于面板层及底板层之间;所述混凝土层内设置有上下两个大小相同的安装腔,所述安装腔内均设置有抗震结构;所述抗震结构包括设置与安装腔中部的第一活动块,所述第一活动块左右两端通过弹簧与安装腔侧壁连接;所述第一活动块上下两侧对称设置有第二活动块,所述第二活动块左右两端通过弹簧与安装腔侧壁连接。实现通过弹簧的压缩释放及第一活动块、第二活动块、第三活动块之间的摩擦来持续消耗地震能量的状态,提高抗震减震的效果,减小横向震动,避免导致抗震墙板倾覆。
The invention relates to the technical field of building materials, and specifically relates to a composite building material. The composite building material comprises an anti-seismic wall plate composed of a face plate layer, a concrete layer and a bottom plate layer. The concrete layer is arranged between the face plate layer and the bottom plate layer. An upper installation cavity and a lowerinstallation cavity which are same in size are formed in the concrete layer. An anti-seismic structure is arranged in each installation cavity. Each anti-seismic structure comprises a first movable block arranged on the middle portion of the corresponding installation cavity. The left end and the right end of each first movable block are connected with the side wall of the corresponding installation cavity through springs. Second movable blocks are symmetrically arranged at the upper side and the lower side of each first movable block. The left end and the right end of each second movable block are connected with the side wall of the corresponding installation cavity through springs. The state of unceasingly consuming seismic energy through compressing and releasing of the springs and friction of the first movable blocks, the second movable blocks and third movable blocks is achieved, the seismic resistance and vibration reduction effect is improved, transverse vibration is reduced, and it is avoided that the anti-seismic wall plate overturns.
本发明涉及建筑材料技术领域,具体的说是一种复合建筑材料,包括由面板层、混凝土层及底板层构成的抗震墙板,所述混凝土层设置于面板层及底板层之间;所述混凝土层内设置有上下两个大小相同的安装腔,所述安装腔内均设置有抗震结构;所述抗震结构包括设置与安装腔中部的第一活动块,所述第一活动块左右两端通过弹簧与安装腔侧壁连接;所述第一活动块上下两侧对称设置有第二活动块,所述第二活动块左右两端通过弹簧与安装腔侧壁连接。实现通过弹簧的压缩释放及第一活动块、第二活动块、第三活动块之间的摩擦来持续消耗地震能量的状态,提高抗震减震的效果,减小横向震动,避免导致抗震墙板倾覆。
Composite building material
一种复合建筑材料
30.10.2020
Patent
Elektronische Ressource
Chinesisch
Europäisches Patentamt | 2024
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