Three-dimensional vibration isolation support seat with adjustable vertical initial rigidity
A technology of shock-isolation bearings and initial stiffness, which is applied in the direction of shock-proof, building components, building types, etc., can solve the problems of reducing the cost of shock-isolation, shortening the effective working length of the spring, not being able to stretch, energy consumption and shock absorption, etc., to achieve buffer tension The impact of extension and compression, reducing the cost of wind and shock resistance, and reducing the risk of overturning
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example 1
[0042] see figure 1 , the three-dimensional seismic isolation bearing in this example is composed of laminated rubber isolation bearings and vertical isolation bearings connected in series up and down.
[0043] see figure 1 and Figure 4 , the laminated rubber shock-isolation bearing includes an upper connection plate 15, a lower connection plate 8, a laminated rubber pad 17 clamped between the upper and lower connection plates and six tensile steel wire ropes 16; wherein, the upper connection Both the plate 15 and the lower connecting plate 8 are disc-shaped, and the edge of the upper connecting plate 15 is provided with mounting holes 6; the main body of the laminated rubber pad 17 is alternately laminated by a layer of rubber 17-1 and a layer of steel plate 17-2. It is formed by molding vulcanization after being combined, and a rubber protection layer 17-3 is naturally formed around it during the molding vulcanization process. The upper and lower ends of the main body ...
example 2
[0065] see Figures 13 to 17 , on the basis of example 1, this example has mainly carried out the following improvements: (1) increasing the number of preloaded steel wire ropes 9 from three to four; (2) replacing the eyebolt 10 as the direction changing element of the steel wire rope with a U-shaped member 20; (3) the steel wire rope self-locking tensioning anchors 19 of the other end of the fixed preloaded steel wire rope 9 are increased to four; (4) the corresponding back pressure device is changed to:
[0066] The back pressure device consists of four preloaded steel wire ropes 9, four U-shaped components 20 as wire rope direction changing elements, a floating back pressure steel plate 11, four eyebolts 10 for fixing one end of the preloaded steel wire rope 9 and four fixed The other end of the preloaded wire rope 9 is composed of a wire rope self-locking tensioning anchor; wherein,
[0067] The floating anti-pressure steel plate 11 is arranged between the cylindrical rub...
example 3
[0074] see Figures 18-21 , this example has mainly carried out the following improvements on the basis of example 1: (1) replace the eyebolt 10 as the wire rope changing element with the fixed pulley 21; (2) change the described back pressure device accordingly to :
[0075] The back pressure device consists of six preloaded steel wire ropes 9, six fixed pulleys 21 as wire rope direction changing elements, a floating back pressure steel plate 11, six eyebolts 10 with one end of the fixed preloaded steel wire ropes 9 and six fixed preloaded wire ropes. The steel wire rope self-locking tensioning anchor at the other end of the wire rope 9 is composed of; wherein,
[0076] The floating anti-pressure steel plate 11 is arranged between the cylindrical rubber elastic body 4 and the base 3, and is in dynamic cooperation with the guide sleeve 1;
[0077] Six fixed pulleys 21 as steel wire rope changing elements are fixed symmetrically around the axis of the guide sleeve 1 on the lo...
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