CN215635384U - Comprehensive anti-seismic support structure - Google Patents

Comprehensive anti-seismic support structure Download PDF

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Publication number
CN215635384U
CN215635384U CN202121149027.9U CN202121149027U CN215635384U CN 215635384 U CN215635384 U CN 215635384U CN 202121149027 U CN202121149027 U CN 202121149027U CN 215635384 U CN215635384 U CN 215635384U
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concave
fixedly connected
plate
pipe
rod
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CN202121149027.9U
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彭清明
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Haiwo Construction Engineering Technology Hunan Co ltd
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Haiwo Construction Engineering Technology Hunan Co ltd
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Abstract

The utility model belongs to the field of anti-seismic facilities and discloses a comprehensive anti-seismic support structure which comprises a concave block; the water-saving type water-saving device also comprises a concave cavity arranged in the concave block, wherein the concave cavity is filled with water, and the inner wall of the concave cavity is fixedly connected with two partition plates which are symmetrically distributed; the outer surface of the partition plate is provided with a one-way valve, and the flow direction of the one-way valve is the direction of the groove of the concave block pointing to the partition plate; a circular tube is fixedly inserted into the outer surface of the partition plate, a magnetic ring is fixedly connected to the upper end of the inner surface of the circular tube, a porous plate is fixedly connected to the inner surface of the circular tube, a guide rod is inserted into the outer surface of the porous plate, and the outer surface of the guide rod penetrates through the outer surface of the porous plate; the energy of vibration is consumed by utilizing the circulation of the extrusion water flow, so that the anti-seismic effect of the pipeline is achieved.

Description

Comprehensive anti-seismic support structure
Technical Field
The utility model belongs to the field of anti-seismic facilities, and particularly relates to a comprehensive anti-seismic support structure.
Background
The support is a term of the building industry, and particularly relates to a temporary support erected when a building is built, and the support can be removed along with the building. However, nowadays, the stent is widely used, and can be seen everywhere in work and life, such as a tripod of a camera, a heart stent used in the medical field, a pipeline stent and the like.
The pipeline bracket in the prior art has poor anti-seismic effect, and when the pipeline is subjected to vibration from the horizontal direction or the vertical direction, the pipeline can be damaged by the vibration, so that the requirement of people on bearing the pipeline bracket can not be met gradually.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a comprehensive anti-seismic support structure, which solves the problem that the pipeline support in the background art cannot well resist vibration in the horizontal direction and the vertical direction.
In order to achieve the purpose, the utility model provides the following technical scheme: a comprehensive anti-seismic support structure comprises a concave block;
the water-saving type water-saving device also comprises a concave cavity arranged in the concave block, wherein the concave cavity is filled with water, and the inner wall of the concave cavity is fixedly connected with two partition plates which are symmetrically distributed;
the outer surface of the partition plate is provided with a one-way valve, and the flow direction of the one-way valve is the direction of the groove of the concave block pointing to the partition plate;
a round pipe is fixedly inserted into the outer surface of the partition plate, a magnetic ring is fixedly connected to the upper end of the inner surface of the round pipe, a porous plate is fixedly connected to the inner surface of the round pipe, a guide rod is inserted into the outer surface of the porous plate, the outer surface of the guide rod penetrates through the outer surface of the porous plate, an iron block is fixedly connected to the upper end of the guide rod, and a bottom plate is fixedly connected to the lower end of the guide rod;
two symmetrically distributed through pipes are inserted into the inner surface of the concave block, the interiors of the through pipes are communicated with the concave cavity, the inner surfaces of the through pipes are connected with an extrusion plate in a sliding manner, and the other ends of the extrusion plate are connected with a fixed connecting rod in a rolling manner;
and the outer surface of the concave block is provided with a buffer piece.
Preferably, the bolster includes spout, telescopic link, fixed block, spring, connecting pipe, slide, the internal surface of concave type piece is inserted and is equipped with connecting pipe, connecting pipe and the inside intercommunication of concave die cavity, the internal surface sliding connection of connecting pipe has the slide, the upper end fixedly connected with spring of slide, the other end fixedly connected with fixed block of spring, a plurality of spouts have been seted up to the internal surface of concave type piece, the internal surface sliding connection of spout has the telescopic link.
Preferably, the telescopic link includes outer pole and interior pole, the surface and the spout sliding connection of outer pole, the one end and the fixed block fixed connection of interior pole, the internal surface sliding connection of outer pole has interior pole.
Preferably, the contact position of the sliding plate and the connecting pipe is sleeved with a sealing ring, and the contact position of the through pipe and the extrusion plate is sleeved with a sealing ring.
Preferably, the inner diameter of the magnetic ring is smaller than the diameter of the iron block, and the side length of the upper port of the connecting pipe is smaller than that of the sliding plate.
Preferably, the outer surface of the fixed connecting rod is fixedly connected with an arc panel.
The technical scheme has the following technical effects:
1. through division board and buffer etc, the division board divide into first minute chamber and two second minute chambers with the concave type chamber, and the flow direction of check valve is the direction that first minute chamber flowed into the second minute chamber, and the bolster is located first minute chamber, and the siphunculus is located the second and divides the intracavity, and the both ends of pipe are located first minute chamber and second minute intracavity respectively, fixes putting the pipeline on the bolster, and when the pipeline received vibrations, the pipeline can pass through the bolster and move down, plays the cushioning effect.
2. Through check valve and pipe etc, and extrude the water in the first minute intracavity, make the water in the first minute intracavity flow into the second minute intracavity through the check valve, the water in the second minute intracavity can pass through stripper plate extrusion fixed connecting rod, make fixed connecting rod paste mutually with the both sides of pipeline, the vibrations that the pipeline horizontal direction received can extrude fixed connecting rod, make the water in the second minute intracavity can extrude the iron plate, make the iron plate shake off the appeal of magnetic ring, the iron plate drives the bottom plate through the guide arm and moves down, the bottom plate will not be blockking up the pipe, make the water in the second minute intracavity can flow into the first minute intracavity through pipe and perforated plate, the water in the first minute intracavity upwards extrudees the bolster, at whole in-process, the energy of vibrations has been consumed, thereby realize the antidetonation of pipeline developments, avoid only relying on spring elasticity shock attenuation.
Drawings
FIG. 1 is a schematic perspective view of an integrated seismic support structure;
FIG. 2 is a schematic cross-sectional view of an integrated seismic support structure;
fig. 3 is a schematic view of a circular tube section structure of a comprehensive anti-seismic support structure.
Wherein: 1. a concave block; 2. fixing the connecting rod; 3. a pressing plate; 4. a chute; 5. a telescopic rod; 6. a fixed block; 7. a spring; 8. connecting pipes; 9. a slide plate; 10. a partition plate; 11. a one-way valve; 12. pipe passing; 13. a circular tube; 14. a magnetic ring; 15. an iron block; 16. a guide bar; 17. a perforated plate; 18. a base plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-3, the technical solution provided by the present invention is: a comprehensive anti-seismic support structure comprises a concave block 1;
the water-saving type water-saving water dispenser also comprises a concave cavity arranged in the concave block 1, wherein water is filled in the concave cavity, and the inner wall of the concave cavity is fixedly connected with two partition plates 10 which are symmetrically distributed;
the outer surface of the partition plate 10 is provided with a one-way valve 11, and the flow direction of the one-way valve 11 is the direction that the groove of the concave block 1 points to the partition plate 10;
a round pipe 13 is fixedly inserted into the outer surface of the partition plate 10, a magnetic ring 14 is fixedly connected to the upper end of the inner surface of the round pipe 13, a porous plate 17 is fixedly connected to the inner surface of the round pipe 13, a guide rod 16 is inserted into the outer surface of the porous plate 17, the outer surface of the guide rod 16 penetrates through the outer surface of the porous plate 17, an iron block 15 is fixedly connected to the upper end of the guide rod 16, and a bottom plate 18 is fixedly connected to the lower end of the guide rod 16;
two symmetrically distributed through pipes 12 are inserted into the inner surface of the concave block 1, the insides of the through pipes 12 are communicated with the concave cavity, the inner surface of the through pipes 12 is connected with an extrusion plate 3 in a sliding manner, and the other end of the extrusion plate 3 is connected with a fixed connecting rod 2 in a rolling manner;
the outer surface of the concave block 1 is provided with a buffer.
The concave cavity is divided into a first sub cavity and two second sub cavities by the partition plate 10, the flow direction of the one-way valve is the direction that the first sub cavity flows into the second sub cavity, the buffer is positioned in the first sub cavity, the through pipe 12 is positioned in the second sub cavity, two ends of the round pipe 13 are respectively positioned in the first sub cavity and the second sub cavity, the pipeline is fixedly placed on the buffer, when the pipeline is vibrated, the pipeline can move downwards through the buffer to play a buffer role and extrude water in the first sub cavity, so that the water in the first sub cavity flows into the second sub cavity, the water in the second sub cavity can extrude the fixed connecting rod 2 through the extrusion plate 3, so that the fixed connecting rod 2 is attached to two sides of the pipeline, the vibration received in the horizontal direction of the pipeline can extrude the fixed connecting rod 2, the water in the second sub cavity can extrude the iron block 15, so that the iron block 15 breaks the attractive force of the magnetic ring 14, the iron block 15 drives the bottom plate 18 to move downwards through the guide rod 16, the bottom plate 18 will not block up the pipe 13, and the water in the second sub-cavity can flow into the first sub-cavity through the pipe 13 and the perforated plate 17, and the water in the first sub-cavity extrudes the buffer part upwards, so that in the whole process, the energy of vibration is consumed, the dynamic anti-vibration of the pipeline is realized, and the shock absorption by only depending on the elastic force of the spring is avoided.
Please refer to fig. 1-2, wherein the buffer member comprises a sliding groove 4, a telescopic rod 5, a fixed block 6, a spring 7, a connecting pipe 8 and a sliding plate 9, the connecting pipe 8 is inserted into the inner surface of the concave block 1, the connecting pipe 8 is communicated with the inside of the concave cavity, the inner surface of the connecting pipe 8 is connected with the sliding plate 9 in a sliding manner, the upper end of the sliding plate 9 is fixedly connected with the spring 7, the other end of the spring 7 is fixedly connected with the fixed block 6, the inner surface of the concave block 1 is provided with a plurality of sliding grooves 4, the inner surface of the sliding grooves 4 is connected with the telescopic rod 5 in a sliding manner, the telescopic rod 5 comprises an outer rod and an inner rod, the outer surface of the outer rod is connected with the sliding groove 4 in a sliding manner, one end of the inner rod is fixedly connected with the fixed block 6, and the inner surface of the outer rod is connected with the inner rod in a sliding manner.
Pipeline fixed mounting is on fixed block 6, and the pipeline rocks and can pass through fixed block 6 extrusion spring 7, and spring 7 compresses to, spring 7 extrusion slide 9, and, when the pipeline rocked at the horizontal direction, can extrude or tensile telescopic link 5, restrict the orientation of rocking of pipeline.
Referring to fig. 1-2, a sealing ring is sleeved at the contact position of the sliding plate 9 and the connecting pipe 8, and a sealing ring is sleeved at the contact position of the through pipe 12 and the extrusion plate 3 to prevent the connecting pipe 8 and the through pipe 12 from leaking water
Referring to fig. 1-3, the inner diameter of the magnetic ring 14 is smaller than the diameter of the iron block 15 to prevent the iron block 15 from separating from the circular tube 13, and the side length of the upper end of the connecting tube 8 is smaller than the side length of the sliding plate 9 to prevent the sliding plate 9 from separating from the connecting tube 8.
Referring to fig. 1-2, the outer surface of the fixed link 2 is fixedly connected with an arc panel, so that the contact area between the fixed link 2 and the pipeline is increased, and the stability of the pipeline is increased.
Those not described in detail in this specification are within the skill of the art.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. An integrated anti-seismic support structure comprises a concave block (1); the method is characterized in that:
the water-saving die also comprises a concave die cavity arranged in the concave die block (1), wherein water is filled in the concave die cavity, and the inner wall of the concave die cavity is fixedly connected with two partition plates (10) which are symmetrically distributed;
the outer surface of the partition plate (10) is provided with a one-way valve (11), and the flow direction of the one-way valve (11) is the direction in which the groove of the concave block (1) points to the partition plate (10);
a round pipe (13) is fixedly inserted into the outer surface of the partition plate (10), a magnetic ring (14) is fixedly connected to the upper end of the inner surface of the round pipe (13), a porous plate (17) is fixedly connected to the inner surface of the round pipe (13), a guide rod (16) is inserted into the outer surface of the porous plate (17), the outer surface of the guide rod (16) penetrates through the outer surface of the porous plate (17), an iron block (15) is fixedly connected to the upper end of the guide rod (16), and a bottom plate (18) is fixedly connected to the lower end of the guide rod (16);
two symmetrically distributed through pipes (12) are inserted into the inner surface of the concave block (1), the interiors of the through pipes (12) are communicated with the concave cavity, an extrusion plate (3) is connected to the inner surface of each through pipe (12) in a sliding manner, and the other end of each extrusion plate (3) is connected with a fixed connecting rod (2) in a rolling manner;
the outer surface of the concave block (1) is provided with a buffer piece.
2. A composite seismic brace construction as defined in claim 1, wherein: the utility model discloses a buffer piece, including the bolster, the bolster includes spout (4), telescopic link (5), fixed block (6), spring (7), even pipe (8), slide (9), the internal surface of concave type piece (1) is inserted and is equipped with even pipe (8), even inside intercommunication of pipe (8) and concave type chamber, the internal surface sliding connection of even pipe (8) has slide (9), the upper end fixedly connected with spring (7) of slide (9), the other end fixedly connected with fixed block (6) of spring (7), a plurality of spouts (4) have been seted up to the internal surface of concave type piece (1), the internal surface sliding connection of spout (4) has telescopic link (5).
3. A composite seismic support structure, according to claim 2, wherein: the telescopic rod (5) comprises an outer rod and an inner rod, the outer surface of the outer rod is connected with the sliding groove (4) in a sliding mode, one end of the inner rod is fixedly connected with the fixing block (6), and the inner surface of the outer rod is connected with the inner rod in a sliding mode.
4. A composite seismic support structure, according to claim 2, wherein: the sealing ring is sleeved at the contact position of the sliding plate (9) and the connecting pipe (8), and the sealing ring is sleeved at the contact position of the through pipe (12) and the extrusion plate (3).
5. A composite seismic support structure, according to claim 2, wherein: the inner diameter of the magnetic ring (14) is smaller than the diameter of the iron block (15), and the side length of the upper port of the connecting pipe (8) is smaller than that of the sliding plate (9).
6. A composite seismic brace construction as defined in claim 1, wherein: the outer surface of the fixed connecting rod (2) is fixedly connected with an arc panel.
CN202121149027.9U 2021-05-27 2021-05-27 Comprehensive anti-seismic support structure Active CN215635384U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121149027.9U CN215635384U (en) 2021-05-27 2021-05-27 Comprehensive anti-seismic support structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121149027.9U CN215635384U (en) 2021-05-27 2021-05-27 Comprehensive anti-seismic support structure

Publications (1)

Publication Number Publication Date
CN215635384U true CN215635384U (en) 2022-01-25

Family

ID=79939703

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121149027.9U Active CN215635384U (en) 2021-05-27 2021-05-27 Comprehensive anti-seismic support structure

Country Status (1)

Country Link
CN (1) CN215635384U (en)

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