A platform for research: civil engineering, architecture and urbanism
Three-dimensional damping support
The invention provides a three-dimensional damping support. The three-dimensional damping support comprises a support body, an upper connecting plate and a lower connecting plate. The support body comprises a rubber layer, an upper steel plate is attached to the upper end face of the rubber layer, a lower steel plate is attached to the lower end face of the rubber layer, the outer side face of the rubber layer is coated with a cord thread layer, and a through hole sequentially penetrating through the upper steel plate, the rubber layer and the lower steel plate is formed in the support body along the center line of the support body. The rubber layer, the upper steel plate, the lower steel plate and the cord thread layer are integrally vulcanized and formed; the upper connecting plate is parallel to the upper steel plate and is connected with the upper side of the upper steel plate, and the lower connecting plate is parallel to the lower steel plate and is connected with the lower side of the lower steel plate. The damping support can resist vibration in the shearing direction and the compression direction, is simple in structure, convenient to manufacture and controllable in cost, does not use multiple layers of inner steel plates, can improve the shearing deformation capacity of the damping support, and has a stronger function of resisting earthquakes in the shearing direction.
本发明提供了一种三维减震支座,包括支座本体、上连接板和下连接板;所述支座本体包括橡胶层,所述橡胶层的上端面贴设有上钢板、下端面贴设有下钢板,所述橡胶层的外侧面包覆有帘线层,所述支座本体沿其中心线设置有依次贯通所述上钢板、橡胶层和下钢板的通孔;所述橡胶层与所述上钢板、下钢板和帘线层一体硫化成型;所述上连接板平行于所述上钢板并与所述上钢板的上侧连接,所述下连接板平行于所述下钢板并与所述下钢板的下侧连接。本发明减震支座可抵御剪切和压缩方向的震动,且结构简单、制造方便、成本可控,且未使用多层内钢板,可提高隔震支座的剪切变形能力,具有更强的抵御剪切方向地震的功能。
Three-dimensional damping support
The invention provides a three-dimensional damping support. The three-dimensional damping support comprises a support body, an upper connecting plate and a lower connecting plate. The support body comprises a rubber layer, an upper steel plate is attached to the upper end face of the rubber layer, a lower steel plate is attached to the lower end face of the rubber layer, the outer side face of the rubber layer is coated with a cord thread layer, and a through hole sequentially penetrating through the upper steel plate, the rubber layer and the lower steel plate is formed in the support body along the center line of the support body. The rubber layer, the upper steel plate, the lower steel plate and the cord thread layer are integrally vulcanized and formed; the upper connecting plate is parallel to the upper steel plate and is connected with the upper side of the upper steel plate, and the lower connecting plate is parallel to the lower steel plate and is connected with the lower side of the lower steel plate. The damping support can resist vibration in the shearing direction and the compression direction, is simple in structure, convenient to manufacture and controllable in cost, does not use multiple layers of inner steel plates, can improve the shearing deformation capacity of the damping support, and has a stronger function of resisting earthquakes in the shearing direction.
本发明提供了一种三维减震支座,包括支座本体、上连接板和下连接板;所述支座本体包括橡胶层,所述橡胶层的上端面贴设有上钢板、下端面贴设有下钢板,所述橡胶层的外侧面包覆有帘线层,所述支座本体沿其中心线设置有依次贯通所述上钢板、橡胶层和下钢板的通孔;所述橡胶层与所述上钢板、下钢板和帘线层一体硫化成型;所述上连接板平行于所述上钢板并与所述上钢板的上侧连接,所述下连接板平行于所述下钢板并与所述下钢板的下侧连接。本发明减震支座可抵御剪切和压缩方向的震动,且结构简单、制造方便、成本可控,且未使用多层内钢板,可提高隔震支座的剪切变形能力,具有更强的抵御剪切方向地震的功能。
Three-dimensional damping support
一种三维减震支座
WU HUADONG (author) / LU ZHENXIONG (author) / LIAO QINGBO (author)
2023-08-22
Patent
Electronic Resource
Chinese
Split type high-damping three-dimensional shock insulation support
European Patent Office | 2023
|Shock insulation adjustable three-dimensional high-damping shock insulation support
European Patent Office | 2022
|Separation type damping energy consumption three-dimensional seismic isolation support
European Patent Office | 2015
|Spring-damping three-dimensional vibration reduction and isolation friction pendulum support
European Patent Office | 2024
|