Composite spring damper with early rigidity capable of being adjusted
A composite spring and damper technology, which is applied in the direction of spring/shock absorber, spring/shock absorber functional characteristics, spring, etc., can solve the problems of reducing the cost of shock absorption, waste of resources, and the inability to change the initial stiffness of the damper, etc., to achieve The effect of reducing the cost of isolation and shortening the length
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example 1
[0033] see figure 1, the composite spring damper in this example that can adjust the early stiffness is a kind of energy dissipation device that can be used for seismic reinforcement of building structures. It includes a guide sleeve 1, a first end cover 2 and a second The end cap 3, wherein, the first end cap 2 and the second end cap 3 are respectively fixedly connected to the two ends of the guide sleeve by screws. A composite spring 4 is arranged axially in the guide sleeve 1, and a driving member protrudes from the center of the first end cover 2 into the guide sleeve 1 and presses on the composite spring 4; wherein, the drive The component is composed of a dynamic pressure plate 5 located at the upper end of the composite spring 4 and movingly matched with the guide sleeve 1, and a driving rod 5-1 extending upward from the upper surface of the dynamic pressure plate 5 out of the guide sleeve 1. The driving rod 5-1 is located on the guide sleeve 1. The outer end is provi...
example 2
[0044] see Figure 8-11 , this example has the following differences from Example 1:
[0045] Both the first group of preloaded steel cables 8 and the second group of preloaded steel cables 9 are composed of three preloaded steel cables. The number of said rigging turnbuckles 16 is reduced to six, and they are connected in series in the middle of each preloaded steel cable respectively.
[0046] The implementation method of this example except the above is the same as Example 1.
example 3
[0048] see Figures 12 to 14 , the composite spring damper capable of adjusting the early stiffness in this example is a vibration isolation device (also known as an isolation support) that can be used for vertical isolation of buildings. Compared with Example 2, this example mainly has the following differences:
[0049] 1. As a shock-absorbing support, in order to facilitate installation, in this example, the connecting lug plate provided on the second end cover 3 is omitted, and the second end cover 3 is radially extended from the edge outward, and evenly distributed at the edge A connecting bolt hole 17 is provided, and the second end cover 3 is used as the base of the shock-absorbing support. The driving rod 5-1 of the driving member is a metal tube fixedly connected to the upper surface of the dynamic pressure plate 5 by bolts, and the end of the metal tube located outside the guide sleeve 1 is provided with a connecting bracket 18, and the connecting bracket Bolt holes...
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