Three-dimensional vibration isolation device with adjustable vertical early stiffness
A stiffness, three-dimensional technology, applied in the field of three-dimensional shock isolation devices, 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 buffer the impact of tension and compression, and reduce wind resistance Anti-vibration costs and the effect of reducing the risk of overturning
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example 1
[0032] see figure 1 , the three-dimensional isolation device in this example is composed of laminated rubber isolation bearings and vertical isolation bearings connected in series up and down.
[0033] see figure 1 and Figure 4 , the laminated rubber shock-isolation bearing includes an upper connecting plate 14, a lower connecting plate 15, a laminated rubber pad 17 clamped between the upper and lower connecting plates and six tensile steel cables 16; wherein, the upper Both the connecting plate 14 and the lower connecting plate 15 are disc-shaped, and the edge of the upper connecting plate 14 is provided with mounting holes 13; the main body of the laminated rubber pad 17 is alternately composed of a layer of rubber 17-1 and a layer of steel plate 17-2 After lamination, it is molded and vulcanized, and a rubber protective layer 17-3 is naturally formed around it during the process of molded vulcanization. The upper and lower end surfaces of the main body of the laminated ...
example 2
[0043] This example has the following differences from Example 1:
[0044] see Figure 7-9 , the first group of preloaded steel cables 8 and the second group of preloaded steel cables 7 are composed of three preloaded steel cables. The number of said rigging turnbuckles 18 is reduced to six, and they are connected in series in the middle of each preloaded steel cable respectively.
[0045] see Figure 7-9 In order to prevent dust and other debris from falling on the cylindrical helical compression spring 4 and affect the normal operation of the damper, a layer of rubber protective sleeve 19 is wrapped on the outside of the back pressure device, and the two ends of the protective sleeve 19 are respectively connected to the first floating The outer peripheral surfaces of the pressing plate 6 and the second floating pressing plate 5 are glued together. The length of the sheath 19 is greater than the distance between the upper surface of the upper end plate 2 and the lower surf...
example 3
[0048] see Figure 10-12 , the difference between this example and Example 2 is: the upper end plate 2 is disc-shaped, and the middle part of the lower end plate 3 bulges upwards in an inverted washbasin shape; the upper end of the guide rod 1 is connected to the upper end plate The middle part of 2 is welded together, and the lower end extends downward along the central hole of cylindrical helical compression spring 4 to the middle part that passes through the upward bulge of lower end plate 3; Between the lower surface of the lower surface of the middle part of the lower end plate 3 bulge and the lower surface of the lower end plate 3 edge, a flexible space 11 for the lower end of the guide rod 1 is formed. The first group of preloaded steel cables 8 and the second group of preloaded steel cables 7 are composed of five preloaded steel cables; The middle part of the preloaded steel cable.
[0049] Other implementations of this example other than the above are the same as Ex...
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