CN209278403U - A kind of building electromechanical equipment antidetonation connecting elements - Google Patents

A kind of building electromechanical equipment antidetonation connecting elements Download PDF

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Publication number
CN209278403U
CN209278403U CN201821956478.1U CN201821956478U CN209278403U CN 209278403 U CN209278403 U CN 209278403U CN 201821956478 U CN201821956478 U CN 201821956478U CN 209278403 U CN209278403 U CN 209278403U
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China
Prior art keywords
pedestal
antidetonation
stainless steel
steel plate
damping
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CN201821956478.1U
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Chinese (zh)
Inventor
王君
高效田
申胜歌
冯钊飞
朱喆
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Henan Landscape Architectrue Planning And Design Co Ltd
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Henan Landscape Architectrue Planning And Design Co Ltd
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Abstract

The utility model discloses a kind of building electromechanical equipment antidetonation connecting elements, including mounting base, antidetonation pedestal, pedestal and stainless steel plate, the two sides of the pedestal are all evenly arranged with fixation hole, the top of the pedestal is equipped with stainless steel plate, and the middle position inside stainless steel plate is equipped with antidetonation pedestal, the inside of the stainless steel plate of the antidetonation pedestal surrounding is mounted on rubber cushion assembly, and the bottom end of rubber cushion assembly and the top of pedestal connect, the top of the antidetonation pedestal is provided with damping trough, and the bottom end inside damping trough is uniformly equipped with damper cylinder.The utility model is by being equipped with damping spring, so that playing good cushioning effect, and damping spring is connect by support rod with vibration damper plate, support rod can slide up and down inside damper cylinder, cause to influence its service life so that not only avoiding damping spring and transversely deforming occurring, while being conducive to further consume the energy that vibration generates.

Description

A kind of building electromechanical equipment antidetonation connecting elements
Technical field
The utility model relates to electromechanical engineering technical field, specially a kind of building electromechanical equipment antidetonation connecting elements.
Background technique
With being constantly progressive for society, so that the development of building trade is more and more rapider, currently, countries in the world are for building Electromechanical earthquake resistant construction uses substantially passes to structure for the seismic force that equipment generates by antidetonation connecting elements and connecting rod, American-European widely used form is mainly carried by rigid connection rod piece (such as C-shaped channel steel, angle steel or steel pipe), and such connection type is good Pulling force can both have been born in one group of antidetonation connection or bear pressure by being in, and this structure can be effectively prevent in earthquake, machine Electric equipment damage leads to secondary disaster, reduces economic loss, avoids casualties, but conventionally, as each portion Fixed form between part is rigid fixed, once there is seismism in component one of in this way, and it is connected to it another One component can also shake with it, and in building electromechanical equipment, vibration often causes some security risks, so hardness is even Connect that there are biggish security risks.
Utility model content
The purpose of this utility model is to provide a kind of building electromechanical equipment antidetonation connecting elements, to solve above-mentioned background skill The problem of being proposed in art.
To achieve the above object, the utility model provides the following technical solutions: a kind of building electromechanical equipment antidetonation connection structure Part, including mounting base, antidetonation pedestal, pedestal and stainless steel plate, the two sides of the pedestal are all evenly arranged with fixation hole, the bottom The top of seat is equipped with stainless steel plate, and the middle position inside stainless steel plate is equipped with antidetonation pedestal, the antidetonation pedestal The inside of the stainless steel plate of surrounding is mounted on rubber cushion assembly, and the bottom end of rubber cushion assembly and the top of pedestal connect, institute The top for stating antidetonation pedestal is provided with damping trough, and the bottom end inside damping trough is uniformly equipped with damper cylinder, the damper cylinder Inside is mounted on damping spring, and the top of damping spring is mounted on support rod, and the top of support rod, which vertically passes through, to be subtracted The top of cylinder is shaken, the outside of the support rod is enclosed with the first rubber damping set, and the top inside the damping trough is equipped with Vibration damper plate, and the bottom end of vibration damper plate is fixedly connected with the top of support rod, the top of the vibration damper plate is equipped with load axis, and carries The top of lotus axis is equipped with mounting base, and the two sides of the mounting base are all evenly arranged with mounting hole.
Preferably, the top of the mounting base and the bottom end of pedestal are respectively and fixedly provided with rubber pad.
Preferably, the outside of the vibration damper plate is uniformly equipped with sliding block, and the outside of sliding block is enclosed with the resistance of the second rubber Buddhist nun covers, and is evenly arranged with sliding slot on the inner sidewall of the antidetonation pedestal, and the quantity of sliding slot and sliding block is disposed as four, sliding slot It is connect with sliding block.
Preferably, screw thread is all evenly arranged on the inner sidewall of the mounting hole and fixation hole.
Preferably, grooved hole is arranged in the middle position of the stainless steel plate, and the section of slot is rounded, antidetonation pedestal It is mounted in slot.
Compared with prior art, the utility model has the beneficial effects that the building electromechanical equipment antidetonation connecting elements passes through Damping spring is installed, so that playing good cushioning effect, and damping spring is connect by support rod with vibration damper plate, is supported Bar can slide up and down inside damper cylinder, transversely deforming occurs lead to influence it to use the longevity so that not only avoiding damping spring Life, while the energy for being conducive to further consume vibration generation is conducive to by installing the first rubber damping set on the outside of support rod Increasing friction force accelerates the consumption of vibration energy, improves stability, device is by being equipped with sliding slot and sliding block, so that playing limit The effect of position and guiding, it is ensured that vibration damper plate moves in the same direction, to consume the energy that subduction vibration generates, improves damping Plate carries out the stability of damping by displacement, and use is more safe and reliable, while being equipped with the second rubber damping set on the outside of sliding block, So that being conducive to increase sliding block mobile energy to be consumed in sliding slot, to accelerate to eliminate shaking force, device passes through installation There is rubber cushion assembly, so that playing the role of buffering, increase the mode of damping, is conducive to improve antidetonation shock attenuation effect, avoid Electromechanical equipment damage leads to secondary disaster, reduces economic loss, avoids casualties.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the antidetonation base construction schematic diagram of the utility model;
Fig. 3 is the vibration damper plate structure schematic top plan view of the utility model;
In figure: 1, mounting base;2, antidetonation pedestal;3, load axis;4, vibration damper plate;5, mounting hole;6, pedestal;7, rubber damping Device;8, damping trough;9, sliding slot;10, stainless steel plate;11, fixation hole;12, sliding block;13, the first rubber damping set;14, damping bullet Spring;15, the second rubber damping set;16, support rod;17, damper cylinder.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-3 is please referred to, a kind of embodiment provided by the utility model: a kind of building electromechanical equipment antidetonation connecting elements, Including mounting base 1, antidetonation pedestal 2, pedestal 6 and stainless steel plate 10, the two sides of pedestal 6 are all evenly arranged with fixation hole 11, pedestal 6 Top stainless steel plate 10 is installed, grooved hole is arranged in the middle position of stainless steel plate 10, and the section of slot is rounded, antidetonation Pedestal 2 is mounted in slot, is played the role of fixed and is limited, and stability, the middle position inside stainless steel plate 10 are improved Antidetonation pedestal 2 is installed, the inside of the stainless steel plate 10 of 2 surrounding of antidetonation pedestal is mounted on rubber cushion assembly 7, rubber cushion assembly 7 bottom end is connect with the top of pedestal 6, and the top of antidetonation pedestal 2 is provided with damping trough 8, and the bottom end inside damping trough 8 is uniformly pacified Equipped with damper cylinder 17, the inside of damper cylinder 17 is mounted on damping spring 14, and the top of damping spring 14 is mounted on support rod 16, the top of support rod 16 vertically passes through the top of damper cylinder 17, and the outside of support rod 16 is enclosed with the first rubber damping 13 are covered, the top inside damping trough 8 is equipped with vibration damper plate 4, and the bottom end of vibration damper plate 4 is fixedly connected with the top of support rod 16, subtracts The outside of shake plate 4 is uniformly equipped with sliding block 12, and the outside of sliding block 12 is enclosed with the second rubber damping set 15, antidetonation pedestal 2 Sliding slot 9 is evenly arranged on inner sidewall, sliding slot 9 and the quantity of sliding block 12 are disposed as four, and sliding slot 9 is connect with sliding block 12, is risen To the effect of guiding, while the energy that further consumption subduction vibration generates, be conducive to enhance anti seismic efficiency, the top of vibration damper plate 4 End is equipped with load axis 3, and the top of load axis 3 is equipped with mounting base 1, and the top of mounting base 1 and the bottom end of pedestal 6 are respectively and fixedly provided with Rubber pad, plays the role of protection and damping, and the two sides of mounting base 1 are all evenly arranged with mounting hole 5, mounting hole 5 and fixation hole It is all evenly arranged with screw thread on 11 inner sidewall, is easily installed.
Working principle: mechanical and electric equipment installation will be built first in mounting base 1, when vibrating in use process, will be carried Shock energy is passed to vibration damper plate 4 by lotus axis 3, and vibration damper plate 4 is moved in damping trough 8 by the deformation of damping spring 14, by subtracting Shake spring 14 plays good cushioning effect, and damping spring 14 is connect by support rod 16 with vibration damper plate 4, and when vibration supports Bar 16 not only avoids 14 transversely deforming of damping spring in 17 internal slide of damper cylinder, while further consuming what vibration generated Energy is conducive to the effect for improving damping, and sliding block 12 slides in sliding slot 9 when vibration, can play the work of limit and guiding With, it is ensured that vibration damper plate 4 moves in the same direction, to consume the energy that subduction vibration generates, improves the stabilization of vibration damper plate 4 Property, use is more safe and reliable, is conducive to increase by the effect of the first rubber damping set 13 and the second rubber damping set 15 and rub Power is wiped, vibration damper plate 4 is hindered to move, while rubber cushion assembly 7 can further decrease the amplitude of pedestal 6, improves damping antidetonation effect Fruit avoids electromechanical equipment damage from leading to secondary disaster, reduces economic loss, avoid casualties.
It is obvious to a person skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and And without departing substantially from the spirit or essential attributes of the utility model, it can realize that this is practical new in other specific forms Type.Therefore, in all respects, the present embodiments are to be considered as illustrative and not restrictive, this is practical new The range of type is indicated by the appended claims rather than the foregoing description, it is intended that containing for the equivalent requirements of the claims will be fallen in All changes in justice and range are embraced therein.It should not treat any reference in the claims as limiting Related claim.

Claims (5)

1. a kind of building electromechanical equipment antidetonation connecting elements, including mounting base (1), antidetonation pedestal (2), pedestal (6) and stainless steel Plate (10), it is characterised in that: the two sides of the pedestal (6) are all evenly arranged with fixation hole (11), the top peace of the pedestal (6) Middle position equipped with stainless steel plate (10), and stainless steel plate (10) inside is equipped with antidetonation pedestal (2), the antidetonation pedestal (2) inside of the stainless steel plate (10) of surrounding is mounted on rubber cushion assembly (7), and the bottom end of rubber cushion assembly (7) and pedestal (6) top connection, the top of the antidetonation pedestal (2) are provided with damping trough (8), and the bottom end of damping trough (8) inside is uniform It is equipped with damper cylinder (17), the inside of the damper cylinder (17) is mounted on damping spring (14), and the top of damping spring (14) End is mounted on support rod (16), and the top of support rod (16) vertically passes through the top of damper cylinder (17), the support rod (16) outside is enclosed with the first rubber damping set (13), and the internal top of the damping trough (8) is equipped with vibration damper plate (4), And the bottom end of vibration damper plate (4) is fixedly connected with the top of support rod (16), the top of the vibration damper plate (4) is equipped with load axis (3), and the top of load axis (3) is equipped with mounting base (1), and the two sides of the mounting base (1) are all evenly arranged with mounting hole (5)。
2. a kind of building electromechanical equipment antidetonation connecting elements according to claim 1, it is characterised in that: the mounting base (1) bottom end on top and pedestal (6) is respectively and fixedly provided with rubber pad.
3. a kind of building electromechanical equipment antidetonation connecting elements according to claim 1, it is characterised in that: the vibration damper plate (4) outside is uniformly equipped with sliding block (12), and the outside of sliding block (12) is enclosed with the second rubber damping set (15), described anti- It shakes and is evenly arranged with sliding slot (9) on the inner sidewall of pedestal (2), and the quantity of sliding slot (9) and sliding block (12) is disposed as four, slides Slot (9) is connect with sliding block (12).
4. a kind of building electromechanical equipment antidetonation connecting elements according to claim 1, it is characterised in that: the mounting hole (5) and on the inner sidewall of fixation hole (11) all it is evenly arranged with screw thread.
5. a kind of building electromechanical equipment antidetonation connecting elements according to claim 1, it is characterised in that: the stainless steel plate (10) grooved hole is arranged in middle position, and the section of slot is rounded, and antidetonation pedestal (2) is mounted in slot.
CN201821956478.1U 2018-11-26 2018-11-26 A kind of building electromechanical equipment antidetonation connecting elements Active CN209278403U (en)

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110630005A (en) * 2019-10-08 2019-12-31 湖南三湘和高新科技有限公司 Aluminum alloy anti-seismic template building structure
CN110925527A (en) * 2019-12-09 2020-03-27 湖南金翎箭信息技术有限公司 Motor base shock attenuation equipment
CN111306416A (en) * 2020-04-15 2020-06-19 丁宏建 Anti-seismic electromechanical equipment mounting base
CN111520428A (en) * 2020-05-26 2020-08-11 湖州杭佳弹簧有限公司 Spring assembly with strong stability
CN111759324A (en) * 2020-06-18 2020-10-13 杨湘才 Cardiovascular and cerebrovascular detection device and method thereof
CN111981081A (en) * 2020-08-19 2020-11-24 湖北京博艺展设计有限公司 Museum exhibition cultural relic shock isolation device and application method thereof
CN112695946A (en) * 2020-12-18 2021-04-23 福建江夏学院 Roof structure for assembled building anti-seismic support
CN112982651A (en) * 2021-02-04 2021-06-18 江西科技师范大学 Assembled building mechanism with deformation is prevented in antidetonation
CN114961390A (en) * 2022-06-02 2022-08-30 巫前进 Shock absorption and isolation structure of earthquake-resistant building

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110630005A (en) * 2019-10-08 2019-12-31 湖南三湘和高新科技有限公司 Aluminum alloy anti-seismic template building structure
CN110630005B (en) * 2019-10-08 2021-08-03 湖南三湘和高新科技有限公司 Aluminum alloy anti-seismic template building structure
CN110925527A (en) * 2019-12-09 2020-03-27 湖南金翎箭信息技术有限公司 Motor base shock attenuation equipment
CN111306416A (en) * 2020-04-15 2020-06-19 丁宏建 Anti-seismic electromechanical equipment mounting base
CN111520428A (en) * 2020-05-26 2020-08-11 湖州杭佳弹簧有限公司 Spring assembly with strong stability
CN111759324A (en) * 2020-06-18 2020-10-13 杨湘才 Cardiovascular and cerebrovascular detection device and method thereof
CN111981081A (en) * 2020-08-19 2020-11-24 湖北京博艺展设计有限公司 Museum exhibition cultural relic shock isolation device and application method thereof
CN112695946A (en) * 2020-12-18 2021-04-23 福建江夏学院 Roof structure for assembled building anti-seismic support
CN112982651A (en) * 2021-02-04 2021-06-18 江西科技师范大学 Assembled building mechanism with deformation is prevented in antidetonation
CN114961390A (en) * 2022-06-02 2022-08-30 巫前进 Shock absorption and isolation structure of earthquake-resistant building
CN114961390B (en) * 2022-06-02 2024-03-29 广东新长安建筑设计院有限公司 Shock attenuation shock insulation structure of antidetonation building

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