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Disc spring damper with presettable initial stiffness

A disc spring and initial stiffness technology, applied in the field of damping devices, can solve the problems of increasing the length of the damper, deformation and waste of two sets of disc springs, and achieve the effects of shortening the length, preventing resonance and reducing the cost of shock isolation

Pending Publication Date: 2017-02-22
NANJING DADE DAMPING TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] 1. The load connecting rod is kept balanced under the joint action of two sets of disc springs. Although the pretightening force of the two sets of disc springs can be adjusted, no matter how it is adjusted, the force of the two sets of disc springs on the load connecting rod will The acting forces are a set of equal and opposite forces, just applying any external force on the load connecting rod will destroy this balance and deform the two sets of disc springs, so the damper described above cannot preset the initial stiffness ;
[0006] 2. In this invention, two sets of disc springs must be used together to provide damping when the damper is under compression or tension load, which not only causes a certain amount of waste, but also greatly increases the length of the damper, which is not suitable for some Use where the installation space is tight
It can be seen that although the stiffness of the spring in the patent application scheme can be changed, the effective working length of the spring is not only significantly shortened, but also can only be compressed for energy consumption and vibration reduction, and cannot be stretched for energy consumption and vibration reduction.

Method used

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  • Disc spring damper with presettable initial stiffness
  • Disc spring damper with presettable initial stiffness
  • Disc spring damper with presettable initial stiffness

Examples

Experimental program
Comparison scheme
Effect test

example 1

[0039] see Figure 1~5 , the damper described in this example is a vertical shock-isolation device (also known as a vertical shock-isolation support) for building anti-seismic, which includes a guide sleeve 1, a first end cover 2, a second end cover 3 , Disc spring group 4 and back pressure device.

[0040] see Figure 1~3 , the guide sleeve 1 is in the shape of a circular tube, its upper end radially shrinks inward to form a first end cover 2 with a guide hole in the center, and its lower end radially extends outward to form a flange 5 . The second end cover 3 is disc-shaped, with installation holes 6 on the periphery, and the guide sleeve 1 is fixed in the middle of its upper surface by the flange 5 provided at the lower end.

[0041] see Figure 1~3 , the driving member is composed of a dynamic pressure plate 7 and an upper connecting plate 8, wherein the upper connecting plate 8 is disc-shaped, and the edge is provided with a mounting hole 6, and the center of the lower ...

example 2

[0053] see Figure 6-11 , the damper described in this example is also a vertical shock-isolation device for building anti-seismic, and on the basis of example 1, the following improvements are mainly made: (1) the pre-compressed steel wire rope 9 is increased by three to six; (2) replace the eye screw 10 as the wire rope changing element with a U-shaped member 15; (3) replace the eye screw 10 at the other end of the fixed preloaded wire rope 9 with a wire rope self-locking anchor 16; (4) The middle part of the second end cover 3 is thickened and uplifted to form an inverted washbasin shape, so as to install the wire rope self-locking anchorage 16; (5) correspondingly change the described back pressure device to:

[0054] The anti-pressure device consists of six pre-compressed steel wire ropes 9, six U-shaped members 15 as wire rope direction-changing elements, a floating counter-pressure steel plate 11, six eyebolts 10 with one end of the fixed pre-compressed steel wire rope ...

example 3

[0063] see Figures 12 to 14 , this example is a damper used for seismic reinforcement of building structures, the damper includes a guide sleeve 1, the two ends of the guide sleeve 1 are respectively fixed with a first end cover 2 and a second end cover 3, and a dish-shaped Spring group 4, a driving member extends from the center of the first end cover 2 at one end of the guide sleeve into the guide sleeve 1 and presses on the disc spring group 4; wherein the driving member is composed of a dynamic pressure plate 7 and its A first driving rod 17 connected in one body is formed, and the end of the first driving rod 17 is provided with a hinge hole 18 .

[0064] see Figure 12 , the outer side of the second end cover 3 is provided with a second drive rod 19 integrated with it, and the end of the second drive rod 19 is also provided with a hinge hole 18 .

[0065] see Figures 12 to 16 , the guide sleeve 1 is provided with a back pressure device, the back pressure device cons...

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Abstract

The invention relates to a disc spring damper with presettable initial stiffness, characterized in that a counter pressure device is disposed in a guide sleeve and comprises more than three prestressed wire ropes, wire rope reversing elements as many as the prestressed wire ropes, and a floating counter pressure steel plate, wherein the prestressed wire ropes are distributed in a center hole of a disc spring set in a broken line form, one end of each prestressed wire rope is fixed symmetrically around the axis of the guide sleeve to the floating counter pressure steel plate, and the other end of each prestressed wire rope is passed through the opposite wire rope reversing element and returned and is then passed through the floating counter pressure steel plate beside a fixation point thereof on the floating counter pressure steel plate and fixed to a second end cover; the prestressed wire ropes are tensioned to tension required by preset initial stiffness, such that the disc spring set is clamped constantly between a drive member and the floating counter pressure steel plate.

Description

technical field [0001] The invention relates to a building anti-vibration (or vibration) device, in particular to a damping device including a disc spring. Background technique [0002] A damper is a device that dissipates the energy of motion by providing resistance to motion. Since the 1970s, dampers have been gradually transferred from industries such as aerospace, aviation, military, guns, and automobiles to structural engineering such as buildings, bridges, and railways. Disc springs are widely used in vibration isolation and shock absorption devices in various heavy-duty occasions due to their large load-bearing capacity, strong buffering and vibration-absorbing capacity, and wide range of nonlinear characteristics. Disc springs are usually combined into a disc spring group by multiple pieces, and different combination methods have different effects; however, no matter which method the disc spring group is composed of, it can only be compressed and deformed. Therefor...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B1/98E04H9/02
CPCE04H9/021
Inventor 谢韩涛刘汶津韩磊张少华
Owner NANJING DADE DAMPING TECH CO LTD
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