CN105386535A - Damping device of construction equipment - Google Patents

Damping device of construction equipment Download PDF

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Publication number
CN105386535A
CN105386535A CN201511000605.1A CN201511000605A CN105386535A CN 105386535 A CN105386535 A CN 105386535A CN 201511000605 A CN201511000605 A CN 201511000605A CN 105386535 A CN105386535 A CN 105386535A
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CN
China
Prior art keywords
backstay
spring
fixedly connected
brace table
cross bar
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CN201511000605.1A
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Chinese (zh)
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CN105386535B (en
Inventor
刘汉佑
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Advocating Creation Shanghai Consulting Management Firm
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刘汉佑
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Priority to CN201511000605.1A priority Critical patent/CN105386535B/en
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Publication of CN105386535B publication Critical patent/CN105386535B/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/92Protection against other undesired influences or dangers
    • E04B1/98Protection against other undesired influences or dangers against vibrations or shocks; against mechanical destruction, e.g. by air-raids

Abstract

A damping device of construction equipment comprises a bottom plate device, a fixing device, positioning devices, a supporting table device, an ejecting device and a motor device. The bottom plate device comprises a first bottom plate and a second bottom plate. The fixing device comprises a fixing plate, first fixing transverse rods, first vertical rods and rotating rods. Each positioning device comprises a first positioning rod, a second positioning rod, a first spring and a first limiting block. The supporting table device comprises a supporting table, second transverse rods, second springs, third springs, fixing blocks and third positioning rods. The ejecting device comprises supports, a fourth spring, a fifth spring, sixth springs and first connecting ropes. The motor device comprises a motor, an output shaft, a second connecting rope and a third connecting rope. The output shaft is horizontally arranged and connected with the motor, the second connecting rope is vertical, the lower end of the second connecting rope is fixedly connected with the output shaft, and the upper end of the second connecting rope is fixedly connected with the lower end of the third connecting rope. The damping device can effectively damp construction equipment and reduce losses.

Description

A kind of building implements damping device
Technical field
The present invention relates to building machinery technical field, particularly relate to a kind of building implements damping device.
Background technology
Building implements refers to all technical measures being applicable to room and building, comprises the energy of management place and public place and supply or waste discharge.Its objective is and provide the normal use of building and necessary safety to resident and user.On the one hand, it usually must measure, such as sewage, supply of electric power or illumination.On the other hand, all equipment of building can automatic operating.In these highrise buildings, the building implementss such as air conditioner cold-heat source, blower fan, cooling tower, water pump are often placed on the basement of building, mechanical floor or roof, these equipment tell that running produces exciting force, cause foundation vibration, and produce solid-borne sound, if it is improper that vibration isolation measure adopts, obviously there is vibration & noise with equipment adjacent room, resident family is produced and has a strong impact on.
Therefore, need to provide a kind of new technical scheme to solve the problems of the technologies described above.
Summary of the invention
The object of this invention is to provide a kind of building implements damping device that can effectively solve the problems of the technologies described above.
In order to solve the problems of the technologies described above, the present invention adopts following technical scheme:
A kind of building implements damping device, described building implements damping device comprises bottom plate apparatus, be positioned at the fastening devices above described bottom plate apparatus, be positioned at the positioner above described fastening devices, be positioned at the brace table device above described positioner, be arranged at leaning device and leaning the electric machine below device described in being positioned on described brace table device, described bottom plate apparatus comprises the first base plate and is positioned at the second base plate below described first base plate, described fastening devices comprises fixed head, be positioned at the first cross bar of the described fixed head left and right sides, the swingle being arranged at the first montant on described first cross bar and being positioned on described first montant, described positioner comprises the first backstay, be positioned at the second backstay of described first backstay side, the first spring between described first backstay and the second backstay and the first stop block be arranged on described second backstay, described brace table device comprises brace table, be positioned at the second cross bar of the described brace table left and right sides, be positioned at the second spring below described second cross bar, be positioned at the 3rd spring below described brace table, be positioned at the fixed block on described brace table and be positioned at the 3rd backstay of described 3rd spring side, the described device that leans comprises support, be arranged at the 4th spring on described support, be positioned at the 5th spring below described 4th spring, be positioned at the 6th spring below described support and be positioned at the first connection cord of described 6th spring side, described electric machine comprises motor, be arranged at the output shaft on described motor, be arranged at the second connection cord on described output shaft and be arranged at the 3rd connection cord on described second connection cord, the soffit of described motor is fixedly connected with the upper surface of described fixed head, described output shaft is cylinder, described output shaft horizontal positioned, described output shaft is connected with described motor, described second connection cord is vertical shape, the lower end of described second connection cord is fixedly connected with described output shaft, the upper end of described second connection cord is fixedly connected with the lower end of described 3rd connection cord, described 3rd connection cord is provided with two and lays respectively at the left and right sides, described 3rd connection cord is skewed, the upper end of described 3rd connection cord is fixedly connected with the soffit of described support, the lower end of described 3rd connection cord is fixedly connected with the upper end of described second connection cord.
Described first base plate is cuboid, and described first floor level is placed, and described second base plate is cuboid, and described second floor level is placed, and the soffit of described first base plate is fixedly connected with the upper surface of described second base plate.
Described fixed head is cuboid, described fixed head horizontal positioned, the soffit of described fixed head is fixedly connected with the upper surface of described first base plate, described first cross bar is provided with two and lays respectively at the left and right sides, described first cross bar is cuboid, described first cross bar horizontal positioned, one end of described first cross bar is fixedly connected with the side of described fixed head, and the soffit of described first cross bar is fixedly connected with the upper surface of described first base plate.
Described first montant is cylinder, described first montant is vertically placed, described first montant runs through the upper and lower surface of described first cross bar and is threaded with it, the lower end of described first montant extends to the inside of described first base plate through the upper surface of described first base plate, described swingle is cylinder, described swingle horizontal positioned, the upper end of described first montant is fixedly connected with described swingle.
Described first backstay is cuboid, described first backstay is vertically placed, the lower end of described first backstay is fixedly connected with the upper surface of described fixed head, described second backstay is cuboid, described second backstay is vertically placed, the soffit of described second backstay is fixedly connected with the upper surface of described fixed head, the upper surface of described second backstay and the upper surface of described first backstay are in same level, described first spring is vertical shape, the lower end of described first spring is fixedly connected with the upper surface of described fixed head, described first stop block is cuboid, described first stop block horizontal positioned, one end of described first stop block is fixedly connected with the side of described second backstay, the upper surface of described first stop block and the upper surface of described second backstay are in same level.
The cross section of described brace table is concave shape, the two ends of described brace table to be between described first backstay and described second backstay and to be slidably connected with described first backstay and described second backstay, described second cross bar is provided with two and lays respectively at the left and right sides, described second cross bar is cuboid, described second cross bar horizontal positioned, one end of described second cross bar is fixedly connected with the side of described brace table.
Described second spring is provided with two and lays respectively at the left and right sides of described brace table, described second spring is vertical shape, the upper end of described second spring is fixedly connected with the soffit of described second cross bar, the lower end of described second spring is fixedly connected with the upper surface of described first backstay, described 3rd spring is provided with two and lays respectively at the left and right sides, described 3rd spring is contained in described brace table, described 3rd spring is vertically placed, the upper end of described 3rd spring is fixedly connected with the inner surface of described brace table, the lower end of described 3rd spring is fixedly connected with the upper surface of described second backstay.
Described fixed block is provided with two and lays respectively at the left and right sides, described fixed block is cuboid, the soffit of described fixed block is fixedly connected with the upper surface of described brace table, described 3rd backstay is provided with two and lays respectively at the left and right sides, described 3rd backstay is cuboid, described 3rd backstay is vertically placed, and the upper end of described 3rd backstay is fixedly connected with the inner surface of described brace table.
Described support is provided with two and lays respectively at the left and right sides, described support is L-type, one end of described support leans on the inner surface of described brace table, the side of described 3rd backstay leans on the bracket, described first stop block to lean on support and is connected with described bracket slide, the other end of described support to lean on the side of described second backstay and is slidably connected with it, described 6th spring is provided with two and lays respectively at the left and right sides, described 6th spring is vertically placed, the lower end of described 6th spring is fixedly connected with the upper surface of described fixed head, the upper end of described 6th spring is fixedly connected with the soffit of described support, described 4th spring is horizontal, the end of described 4th spring is fixedly connected with the side of described support, described 5th spring is horizontal, the end of described 5th spring is fixedly connected with the side of described support, described first connection cord is provided with two and lays respectively at the left and right sides, the upper end of described first connection cord is fixedly connected with the soffit of described support, the lower end of described first connection cord is fixedly connected with the upper surface of described fixed head.
After adopting technique scheme, tool of the present invention has the following advantages:
Building implements damping device structure of the present invention is simple, easy to use, effective damping can be carried out to building implements, prevent it in the process used, because vibration causes damage to equipment, reduce the loss, and effective support can be carried out to building implements to fix, and its height can be regulated, improve its scope of application, greatly reduce cost.
Accompanying drawing explanation
Be described further below in conjunction with the detailed description of the invention of accompanying drawing to building implements damping device of the present invention:
Fig. 1 is the structural representation of building implements damping device of the present invention;
Detailed description of the invention
As shown in Figure 1, building implements damping device of the present invention comprises bottom plate apparatus 1, is positioned at fastening devices 2 above described bottom plate apparatus 1, is positioned at positioner 3 above described fastening devices 2, is positioned at brace table device 4 above described positioner 3, is arranged at leaning device 5 and leaning the electric machine 6 below device 5 described in being positioned on described brace table device 4.
As shown in Figure 1, described bottom plate apparatus 1 comprises the first base plate 11 and is positioned at the second base plate 12 below described first base plate 11.Described first base plate 11 is cuboid, described first base plate 11 horizontal positioned.Described second base plate 12 is in cuboid, and described second base plate 12 horizontal positioned, the soffit of described first base plate 11 is fixedly connected with the upper surface of described second base plate 12, thus is conveniently fixed in the position needing to fix.
As shown in Figure 1, described fastening devices 2 swingle 24 that comprises fixed head 21, be positioned at the first cross bar 22 of described fixed head 21 left and right sides, be arranged at the first montant 23 on described first cross bar 22 and be positioned on described first montant 23.Described fixed head 21 is in cuboid, and described fixed head 21 horizontal positioned, the soffit of described fixed head 21 is fixedly connected with the upper surface of described first base plate 11.Described first cross bar 22 is provided with two and lays respectively at the left and right sides, described first cross bar 22 is in cuboid, described first cross bar 22 horizontal positioned, one end of described first cross bar 22 is fixedly connected with the side of described fixed head 21, and the soffit of described first cross bar 22 is fixedly connected with the upper surface of described first base plate 11.Described first montant 23 is in cylinder, described first montant 23 is vertically placed, described first montant 23 runs through the upper and lower surface of described first cross bar 22 and is threaded with it, when described first montant 23 is rotated, described first montant 23 can move up and down, the lower end of described first montant 23 extends to the inside of described first base plate 11 through the upper surface of described first base plate 11, thus plays comparatively firm fixation.Described swingle 24 is in cylinder, and described swingle 24 horizontal positioned, the upper end of described first montant 23 is fixedly connected with described swingle 24.
As shown in Figure 1, described positioner 3 is provided with two and lays respectively at the left and right sides.The first stop block 34 that described positioner 3 comprises the first backstay 31, the second backstay 32 in described first backstay 31 side, the first spring 33 between described first backstay 31 and the second backstay 32 and is arranged on described second backstay 32.Described first backstay 31 is in cuboid, and described first backstay 31 is vertically placed, and the lower end of described first backstay 31 is fixedly connected with the upper surface of described fixed head 21.Described second backstay 32 is in cuboid, described second backstay 32 is vertically placed, the soffit of described second backstay 32 is fixedly connected with the upper surface of described fixed head 21, and the upper surface of described second backstay 32 and the upper surface of described first backstay 31 are in same level.Described first spring 33 is in vertical shape, and the lower end of described first spring 33 is fixedly connected with the upper surface of described fixed head 21.Described first stop block 34 is in cuboid, described first stop block 34 horizontal positioned, one end of described first stop block 34 is fixedly connected with the side of described second backstay 32, and the upper surface of described first stop block 34 and the upper surface of described second backstay 32 are in same level.
As shown in Figure 1, described brace table device 4 comprises brace table 41, is positioned at the second cross bar 42 of described brace table 41 left and right sides, is positioned at the second spring 43 below described second cross bar 42, is positioned at the 3rd spring 44 below described brace table 41, is positioned at the fixed block 45 on described brace table 41 and is positioned at the 3rd backstay 46 of described 3rd spring 44 side.The cross section of described brace table 41 is concave shape, the two ends of described brace table 41 to be between described first backstay 31 and described second backstay 32 and and be slidably connected between described first backstay 31 and described second backstay 32, described brace table 41 can be moved up and down.Described second cross bar 42 is provided with two and lays respectively at the left and right sides, and described second cross bar 42 is in cuboid, and described second cross bar 42 horizontal positioned, one end of described second cross bar 42 is fixedly connected with the side of described brace table 41.Described second spring 43 is provided with two and lays respectively at the left and right sides of described brace table 41, described second spring 43 is in vertical shape, the upper end of described second spring 43 is fixedly connected with the soffit of described second cross bar 42, and the lower end of described second spring 43 is fixedly connected with the upper surface of described first backstay 31.Described 3rd spring 44 is provided with two and lays respectively at the left and right sides, described 3rd spring 44 is contained in described brace table 41, described 3rd spring 44 is vertically placed, the upper end of described 3rd spring 44 is fixedly connected with the inner surface of described brace table 41, the lower end of described 3rd spring 44 is fixedly connected with the upper surface of described second backstay 32, thus plays enough supporting roles to described brace table 41.Described fixed block 45 is provided with two and lays respectively at the left and right sides, described fixed block 45 is in cuboid, the soffit of described fixed block 45 is fixedly connected with the upper surface of described brace table 41, and described fixed block 45 can prevent building implements to be slipped to both sides, thus can be fixed building implements.Described 3rd backstay 46 is provided with two and lays respectively at the left and right sides, and described 3rd backstay 46 is in cuboid, and described 3rd backstay 46 is vertically placed, and the upper end of described 3rd backstay 46 is fixedly connected with the inner surface of described brace table 41.
As shown in Figure 1, lean described in that device 5 comprises support 51, the 4th spring 52 be arranged on described support 51, be positioned at the 5th spring 53 below described 4th spring 52, be positioned at the 6th spring 54 below described support 51 and be positioned at the first connection cord 55 of described 6th spring 54 side.Described support 51 is provided with two and lays respectively at the left and right sides, described support 51 is in L-type, one end of described support 51 leans on the inner surface of described brace table 41, the side of described 3rd backstay 46 leans on described support 51, described first stop block 34 to lean on support 51 and is slidably connected with described support 51, the other end of described support 51 to lean on the side of described second backstay 32 and is slidably connected with it, and described first stop block 34 can prevent described support 51 from excessively moving up.Described 6th spring 54 is provided with two and lays respectively at the left and right sides, described 6th spring 54 is vertically placed, the lower end of described 6th spring 54 is fixedly connected with the upper surface of described fixed head 21, the upper end of described 6th spring 54 is fixedly connected with the soffit of described support 51, thus described support 51 is played a supporting role, make described support 51 have the tendency moved up.Described 4th spring 52 is horizontal, and the end of described 4th spring 52 is fixedly connected with the side of described support 51, thus described support 51 is leaned on the 3rd backstay 46, thus plays fixing effect to described support 51.Described 5th spring 53 is horizontal, and the end of described 5th spring 53 is fixedly connected with the side of described support 51, thus described support 51 is leaned in the first stop block 34, thus plays fixation to described support 51.Described first connection cord 55 is provided with two and lays respectively at the left and right sides, the upper end of described first connection cord 55 is fixedly connected with the soffit of described support 51, the lower end of described first connection cord 55 is fixedly connected with the upper surface of described fixed head 21, thus prevent described support 51 from excessively moving up, and then positioning action is played to described support 51.
As shown in Figure 1, described electric machine 6 comprise motor 61, the output shaft 62 be arranged on described motor 61, the 3rd connection cord 64 that is arranged at the second connection cord 63 on described output shaft 62 and is arranged on described second connection cord 63.The soffit of described motor 61 is fixedly connected with the upper surface of described fixed head 21.Described output shaft 62 is in cylinder, and described output shaft 62 horizontal positioned, described output shaft 62 is connected with described motor 61, makes described motor 61 drive described output shaft 62 to rotate.Described second connection cord 63 is in vertical shape, and the lower end of described second connection cord 63 is fixedly connected with described output shaft 62, and the upper end of described second connection cord 63 is fixedly connected with the lower end of described 3rd connection cord 64.Described 3rd connection cord 64 is provided with two and lays respectively at the left and right sides, described 3rd connection cord 64 is in skewed, the upper end of described 3rd connection cord 64 is fixedly connected with the soffit of described support 51, the lower end of described 3rd connection cord 64 is fixedly connected with the upper end of described second connection cord 63, thus described support 51 can be driven to move up and down.
As shown in Figure 1, when described building implements damping device of the present invention uses, first building implements is placed between fixed block 45, thus fixed block 45 can be fixed building implements.Simultaneously the first spring 33, second spring 43 and the 3rd spring 44, the 6th spring 54 are compressed, thus are played a supporting role to described brace table 41, and the first base plate 11 and the second base plate 12 can be fixed on needs fixing position simultaneously.Then rotating rotary rods 24, make the first montant 23 tightly fix the first cross bar 22 and described first base plate 11, thus fixed head 21 to be fixed on the first base plate 11.Then, when needing the height regulating brace table 41, starter motor 61, makes output shaft 62 rotate, and then makes the second connection cord 63 and the 3rd connection cord 64 move down or move up, and makes brace table 41 move to the height of needs, to satisfy the demands.So far, building implements damping device of the present invention use procedure is described.
The above; be only the specific embodiment of the present invention, but protection scope of the present invention is not limited thereto, any those skilled in the art are in the technical scope that the present invention discloses; change can be expected easily or replace, all should be encompassed within protection scope of the present invention.Therefore, protection scope of the present invention should be as the criterion with the protection domain of described claim.

Claims (9)

1. a building implements damping device, it is characterized in that: described building implements damping device comprises bottom plate apparatus, be positioned at the fastening devices above described bottom plate apparatus, be positioned at the positioner above described fastening devices, be positioned at the brace table device above described positioner, be arranged at leaning device and leaning the electric machine below device described in being positioned on described brace table device, described bottom plate apparatus comprises the first base plate and is positioned at the second base plate below described first base plate, described fastening devices comprises fixed head, be positioned at the first cross bar of the described fixed head left and right sides, the swingle being arranged at the first montant on described first cross bar and being positioned on described first montant, described positioner comprises the first backstay, be positioned at the second backstay of described first backstay side, the first spring between described first backstay and the second backstay and the first stop block be arranged on described second backstay, described brace table device comprises brace table, be positioned at the second cross bar of the described brace table left and right sides, be positioned at the second spring below described second cross bar, be positioned at the 3rd spring below described brace table, be positioned at the fixed block on described brace table and be positioned at the 3rd backstay of described 3rd spring side, the described device that leans comprises support, be arranged at the 4th spring on described support, be positioned at the 5th spring below described 4th spring, be positioned at the 6th spring below described support and be positioned at the first connection cord of described 6th spring side, described electric machine comprises motor, be arranged at the output shaft on described motor, be arranged at the second connection cord on described output shaft and be arranged at the 3rd connection cord on described second connection cord, the soffit of described motor is fixedly connected with the upper surface of described fixed head, described output shaft is cylinder, described output shaft horizontal positioned, described output shaft is connected with described motor, described second connection cord is vertical shape, the lower end of described second connection cord is fixedly connected with described output shaft, the upper end of described second connection cord is fixedly connected with the lower end of described 3rd connection cord, described 3rd connection cord is provided with two and lays respectively at the left and right sides, described 3rd connection cord is skewed, the upper end of described 3rd connection cord is fixedly connected with the soffit of described support, the lower end of described 3rd connection cord is fixedly connected with the upper end of described second connection cord.
2. building implements damping device according to claim 1, it is characterized in that: described first base plate is cuboid, described first floor level is placed, described second base plate is cuboid, described second floor level is placed, and the soffit of described first base plate is fixedly connected with the upper surface of described second base plate.
3. building implements damping device according to claim 2, it is characterized in that: described fixed head is cuboid, described fixed head horizontal positioned, the soffit of described fixed head is fixedly connected with the upper surface of described first base plate, described first cross bar is provided with two and lays respectively at the left and right sides, described first cross bar is cuboid, described first cross bar horizontal positioned, one end of described first cross bar is fixedly connected with the side of described fixed head, and the soffit of described first cross bar is fixedly connected with the upper surface of described first base plate.
4. building implements damping device according to claim 3, it is characterized in that: described first montant is cylinder, described first montant is vertically placed, described first montant runs through the upper and lower surface of described first cross bar and is threaded with it, the lower end of described first montant extends to the inside of described first base plate through the upper surface of described first base plate, described swingle is cylinder, described swingle horizontal positioned, and the upper end of described first montant is fixedly connected with described swingle.
5. building implements damping device according to claim 4, it is characterized in that: described first backstay is cuboid, described first backstay is vertically placed, the lower end of described first backstay is fixedly connected with the upper surface of described fixed head, described second backstay is cuboid, described second backstay is vertically placed, the soffit of described second backstay is fixedly connected with the upper surface of described fixed head, the upper surface of described second backstay and the upper surface of described first backstay are in same level, described first spring is vertical shape, the lower end of described first spring is fixedly connected with the upper surface of described fixed head, described first stop block is cuboid, described first stop block horizontal positioned, one end of described first stop block is fixedly connected with the side of described second backstay, the upper surface of described first stop block and the upper surface of described second backstay are in same level.
6. building implements damping device according to claim 5, it is characterized in that: the cross section of described brace table is concave shape, the two ends of described brace table to be between described first backstay and described second backstay and to be slidably connected with described first backstay and described second backstay, described second cross bar is provided with two and lays respectively at the left and right sides, described second cross bar is cuboid, described second cross bar horizontal positioned, one end of described second cross bar is fixedly connected with the side of described brace table.
7. building implements damping device according to claim 6, it is characterized in that: described second spring is provided with two and lays respectively at the left and right sides of described brace table, described second spring is vertical shape, the upper end of described second spring is fixedly connected with the soffit of described second cross bar, the lower end of described second spring is fixedly connected with the upper surface of described first backstay, described 3rd spring is provided with two and lays respectively at the left and right sides, described 3rd spring is contained in described brace table, described 3rd spring is vertically placed, the upper end of described 3rd spring is fixedly connected with the inner surface of described brace table, the lower end of described 3rd spring is fixedly connected with the upper surface of described second backstay.
8. building implements damping device according to claim 7, it is characterized in that: described fixed block is provided with two and lays respectively at the left and right sides, described fixed block is cuboid, the soffit of described fixed block is fixedly connected with the upper surface of described brace table, described 3rd backstay is provided with two and lays respectively at the left and right sides, described 3rd backstay is cuboid, and described 3rd backstay is vertically placed, and the upper end of described 3rd backstay is fixedly connected with the inner surface of described brace table.
9. building implements damping device according to claim 8, it is characterized in that: described support is provided with two and lays respectively at the left and right sides, described support is L-type, one end of described support leans on the inner surface of described brace table, the side of described 3rd backstay leans on the bracket, described first stop block to lean on support and is connected with described bracket slide, the other end of described support to lean on the side of described second backstay and is slidably connected with it, described 6th spring is provided with two and lays respectively at the left and right sides, described 6th spring is vertically placed, the lower end of described 6th spring is fixedly connected with the upper surface of described fixed head, the upper end of described 6th spring is fixedly connected with the soffit of described support, described 4th spring is horizontal, the end of described 4th spring is fixedly connected with the side of described support, described 5th spring is horizontal, the end of described 5th spring is fixedly connected with the side of described support, described first connection cord is provided with two and lays respectively at the left and right sides, the upper end of described first connection cord is fixedly connected with the soffit of described support, the lower end of described first connection cord is fixedly connected with the upper surface of described fixed head.
CN201511000605.1A 2015-12-26 2015-12-26 A kind of Architectural Equipment damping device Active CN105386535B (en)

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Cited By (5)

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CN107217752A (en) * 2017-07-17 2017-09-29 盛年科技有限公司 The method and antidetonation isolation mounting of a kind of electromechanical equipment antidetonation vibration isolation
CN109296245A (en) * 2018-10-11 2019-02-01 筑梦高科建筑有限公司 A kind of friction pendulum sliding architectural vibration-insulation system
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JP2001311450A (en) * 2000-04-28 2001-11-09 Ohbayashi Corp Seismic isolator
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CN205259392U (en) * 2015-12-26 2016-05-25 刘汉佑 Damping device of building equipment

Cited By (7)

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CN105966636A (en) * 2016-05-25 2016-09-28 王杨 Damping equipment for unmanned aerial vehicle photographing support
CN106081527A (en) * 2016-08-17 2016-11-09 王杨 A kind of power equipment vehicle
CN107217752A (en) * 2017-07-17 2017-09-29 盛年科技有限公司 The method and antidetonation isolation mounting of a kind of electromechanical equipment antidetonation vibration isolation
CN107217752B (en) * 2017-07-17 2019-01-29 盛年科技有限公司 A kind of method and antidetonation isolation mounting of the vibration isolation of electromechanical equipment antidetonation
CN109296245A (en) * 2018-10-11 2019-02-01 筑梦高科建筑有限公司 A kind of friction pendulum sliding architectural vibration-insulation system
CN109296245B (en) * 2018-10-11 2020-07-28 广东博智林机器人有限公司 Building shock insulation system that slides is put to friction pendulum
CN110344635A (en) * 2019-08-01 2019-10-18 田春海 A kind of earthquake-resistant structure steel construction

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