Metal bending energy-consuming damper for preventing tension and compression and yield
A damper, metal technology, applied in the field of components or energy-dissipating components of building structures, metal dampers, can solve the problem that the bending energy dissipation capacity at both ends of the steel plate cannot be fully utilized, and the performance of the damper does not have tensile and compression deformation capabilities. Can not achieve the best and other problems, to achieve the effect of broad market promotion and application prospects, large deformation, easy processing
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Embodiment 1
[0028] Such as image 3 , Figure 4 The tensile and compression yielding metal bending energy dissipation damper shown in the present invention includes an upper connecting plate 1, a lower connecting plate 2 and a core steel energy dissipating element. The core steel energy dissipating element includes three pairs arranged perpendicular to the upper and lower connecting plates. Steel plates, the steel plates are composed of the upper energy dissipation plate 4 and the lower energy dissipation plate 5, wherein one end of the upper energy dissipation plate 4 and one end of the lower energy dissipation plate 5 are firmly welded to the upper connecting plate 1 and the lower connecting plate 2, respectively The other end of the upper energy dissipating plate 4 and the other end of the lower energy dissipating plate 5 are overlapped with each other, and the through holes provided on the upper and lower energy dissipating plates are connected together by fasteners 6 at the overlap. In...
Embodiment 2
[0037] Such as Figure 7 , Figure 8 , Picture 9 The difference between the tensile and compression yielding metal bending energy dissipation damper of the present invention shown in the first embodiment is that a steel plate composed of five upper and lower energy dissipation plates is set as a core steel energy dissipation element. The through holes on the upper energy dissipating plate 4 and the lower energy dissipating plate 5 are changed to be provided with a notch 13. Since the material, shape and size of the upper and lower energy dissipating plates are exactly the same, they are used here. Figure 8 Give instructions. In addition, the upper energy dissipating board 4 and the lower energy dissipating board 5 are arranged in a staggered order, that is, as Picture 9 As shown in the structure, the upper energy dissipating plate 4 and all adjacent lower energy dissipating plates 5 are kept in contact with each other or a certain gap is kept within the range of the overlappin...
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