CN219388847U - Pipeline anti-seismic bracket - Google Patents

Pipeline anti-seismic bracket Download PDF

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Publication number
CN219388847U
CN219388847U CN202320263905.2U CN202320263905U CN219388847U CN 219388847 U CN219388847 U CN 219388847U CN 202320263905 U CN202320263905 U CN 202320263905U CN 219388847 U CN219388847 U CN 219388847U
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China
Prior art keywords
plate
pipe
fixed
fixing
mounting
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Active
Application number
CN202320263905.2U
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Chinese (zh)
Inventor
赵树楠
曹丽丝
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Guizhou Zhongyi Tongchuang Safety Equipment Co ltd
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Guizhou Zhongyi Tongchuang Safety Equipment Co ltd
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Priority to CN202320263905.2U priority Critical patent/CN219388847U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E30/00Energy generation of nuclear origin
    • Y02E30/30Nuclear fission reactors

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  • Supports For Pipes And Cables (AREA)

Abstract

The utility model discloses a pipeline anti-seismic bracket which comprises a mounting structure, wherein a mounting plate is embedded in the mounting structure, supporting arms are fixedly arranged on the lower surface of the mounting plate, three groups of supporting arms are arranged, hanging pipe clamps are fixedly connected to the lower surfaces of the supporting arms, a pipeline body is embedded in the hanging pipe clamps, the hanging pipe clamps and the pipeline body are fixedly arranged through a fixing structure, the mounting structure comprises an upper transverse plate, plate holes, a fixing shaft, a stop block, a vertical rod, a lower transverse plate, a connecting plate, a first hinge and a second hinge, the connecting plate is fixedly arranged on the lower surface of the upper transverse plate close to two sides, and the lower transverse plate is movably arranged on the adjacent surface of the connecting plate. The pipeline anti-seismic bracket provided by the utility model can be convenient to detach and mount, can strengthen the anti-seismic effect of the bracket, and can adapt to the fixation of pipelines with various specifications.

Description

Pipeline anti-seismic bracket
Technical Field
The utility model relates to the field of anti-seismic supports, in particular to a pipeline anti-seismic support.
Background
The earthquake-resistant bracket is used for limiting the auxiliary electromechanical engineering facilities to generate displacement, controlling the vibration of the facilities and transmitting the load to various components or devices on the bearing structure, and the earthquake-resistant reinforced electromechanical engineering facilities for building water supply and drainage, heating, ventilation, air conditioning, fuel gas and the like can achieve the purposes of reducing earthquake or vibration damage, reducing and preventing secondary disasters as far as possible when encountering earthquake or vibration, thereby reducing casualties and property loss; the existing pipeline anti-seismic support has certain defects when in use, the anti-seismic support is fixed at a high position, the installation and the disassembly are complicated, the hanging pipe is fixed in a standard manner, and the anti-seismic support is not suitable for pipelines with different sizes, so that the pipeline anti-seismic support is provided.
Disclosure of Invention
The utility model mainly aims to provide a pipeline anti-seismic bracket which can effectively solve the problems in the background technology.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
the utility model provides a pipeline antidetonation support, includes mounting structure, mounting structure's inside inlays establishes and installs the mounting panel, the lower fixed surface of mounting panel installs the trailing arm, the trailing arm is three sets of, the lower fixed surface of trailing arm is connected with the suspension pipe strap, the inside of suspension pipe strap is inlayed and is installed the pipeline body, through fixed knot structure fixed mounting between suspension pipe strap and the pipeline body.
Preferably, the mounting structure includes diaphragm, diaphragm hole, fixed axle, dog, pole setting, lower diaphragm, connection plate, first hinge, second hinge, the lower surface of going up the diaphragm is close to the equal fixed mounting in both sides position and has connection plate, the equal movable mounting in adjacent face of connection plate has the diaphragm down, all pass through first hinge swing joint between connection plate and the lower diaphragm, four sets of altogether of first hinge, the equal movable mounting in front surface and the rear surface of diaphragm has the pole setting down, all pass through second hinge swing joint between diaphragm and the pole setting down, the pole hole has all been seted up to the front surface of pole setting.
Preferably, the mounting panel includes plate body, fixed block, spring, the both sides surface of plate body is close to front surface and back surface position and all fixed mounting has the fixed block, the fixed block is four sets of, all pass through spring fixed connection between fixed block and the plate body.
Preferably, the front surface and the back surface of the upper transverse plate are close to the fixed shafts fixedly installed at the two sides, one end of the fixed shaft is movably provided with the stop block, the mounting structure and the mounting plate are embedded and arranged on the upper surface of the lower transverse plate through the plate body, and the mounting structure and the mounting plate are embedded and arranged inside the plate holes through the fixed shafts and are fixed by the stop block.
Preferably, the suspension pipe clamp comprises a Q-shaped pipe bundle and pipe holes, the surfaces of the Q-shaped pipe bundle are provided with the pipe holes, and the number of the pipe holes is two.
Preferably, the fixed knot constructs including fixed orifices, fixed plate, spliced pole, bolt, nut, semi-circular tube bank, the equal fixed plate of both sides surface of semi-circular tube bank, all through spliced pole fixed connection between semi-circular tube bank and the fixed plate, the fixed orifices has all been seted up on one side surface of fixed plate, inlay between the fixed orifices and establish and install the bolt, and be fixed by the nut.
Preferably, the suspension pipe clamp and the fixing structure sequentially penetrate through the fixing hole, the pipe hole and the fixing hole through bolts and are fixed through nuts.
Compared with the prior art, the utility model has the following beneficial effects:
according to the utility model, the upper transverse plate and the mounting plate can be easily detached through the mounting structure, so that the support is convenient to maintain, the plate body can horizontally move above the lower transverse plate through the spring, the anti-seismic effect of the support is enhanced, and the positions between the semicircular tube bundles and the Q-shaped tube bundles can be adjusted through the fixing structure, so that the support is suitable for pipelines with various specifications.
Drawings
FIG. 1 is a schematic view of the overall structure of a pipe seismic bracket according to the present utility model;
FIG. 2 is a detailed view of the mounting structure of a pipe seismic bracket according to the present utility model;
FIG. 3 is a cross-sectional view of an upper cross-plate of a conduit anti-vibration bracket of the present utility model;
FIG. 4 is a cross-sectional view of a Q-shaped tube bundle of a conduit anti-seismic bracket of the present utility model;
fig. 5 is an enlarged detail view a of fig. 3 of a pipe seismic bracket of the utility model.
In the figure: 1. a mounting structure; 101. an upper cross plate; 102. a plate hole; 103. a fixed shaft; 104. a stop block; 105. a vertical rod; 106. a lower cross plate; 107. connecting the plates; 108. a first hinge; 109. a second hinge; 2. a mounting plate; 201. a plate body; 202. a fixed block; 203. a spring; 3. a bracket arm; 4. suspending the pipe clamp; 401. a Q-shaped tube bundle; 402. pipe holes; 5. a pipe body; 6. a fixed structure; 601. a fixing hole; 602. fixing the plate; 603. a connecting column; 604. a bolt; 605. a nut; 606. a semicircular tube bundle.
Detailed Description
The utility model is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
As shown in fig. 1-5, the pipeline anti-seismic bracket comprises a mounting structure 1, wherein a mounting plate 2 is embedded in the mounting structure 1, a supporting arm 3 is fixedly arranged on the lower surface of the mounting plate 2, three groups of supporting arms 3 are arranged, a hanging pipe clamp 4 is fixedly connected with the lower surface of the supporting arm 3, a pipeline body 5 is embedded in the hanging pipe clamp 4, and the hanging pipe clamp 4 and the pipeline body 5 are fixedly arranged through a fixing structure 6;
the mounting structure 1 comprises an upper transverse plate 101, plate holes 102, a fixed shaft 103, a stop block 104, a vertical rod 105, a lower transverse plate 106, connecting plate blocks 107, first hinges 108 and second hinges 109, wherein the connecting plate blocks 107 are fixedly mounted on the positions, close to two sides, of the lower surface of the upper transverse plate 101, the lower transverse plate 106 is movably mounted on the adjacent surfaces of the connecting plate blocks 107, the lower transverse plate 106 is positioned on the positions, close to the lower sides, of one side of the connecting plate blocks 107, the distance between the upper transverse plate 101 and the lower transverse plate 106 is larger than the height of a plate body 201, the connecting plate blocks 107 and the lower transverse plate 106 are movably connected through the first hinges 108, the first hinges 108 are four groups, the vertical rods 105 are movably mounted on the front surface and the rear surface of the lower transverse plate 106, the lower transverse plate 106 and the vertical rods 105 are movably connected through the second hinges 109, and the plate holes 102 are formed in the front surface of the vertical rods 105; the mounting plate 2 comprises a plate body 201, fixing blocks 202 and springs 203, wherein the fixing blocks 202 are fixedly arranged on the two side surfaces of the plate body 201 close to the front surface and the rear surface, the fixing blocks 202 are in four groups, the fixing blocks 202 are fixedly connected with the plate body 201 through the springs 203, the fixing blocks 202 protect the springs 203, and the springs 203 are prevented from severely wearing the connecting plate 107 when moving along with the plate body 201, so that the mounting structure 1 is not stable enough; fixed shafts 103 are fixedly arranged on the front surface and the rear surface of the upper transverse plate 101 close to the two sides, a stop block 104 is movably arranged at one end of each fixed shaft 103, the stop block 104 can rotate by taking the fixed shaft 103 as a shaft, the mounting structure 1 and the mounting plate 2 are embedded and arranged on the upper surface of the lower transverse plate 106 through a plate body 201, and are embedded and arranged inside the plate holes 102 through the fixed shafts 103 and are fixed by the stop blocks 104; the suspension pipe clamp 4 comprises a Q-shaped pipe bundle 401 and pipe holes 402, wherein the pipe holes 402 are formed in the surface of the Q-shaped pipe bundle 401, and the pipe holes 402 are two groups; the fixing structure 6 comprises fixing holes 601, fixing plates 602, connecting columns 603, bolts 604, nuts 605 and semicircular tube bundles 606, wherein the fixing plates 602 are fixedly arranged on the surfaces of two sides of each semicircular tube bundle 606, the semicircular tube bundles 606 are fixedly connected with the fixing plates 602 through the connecting columns 603, the fixing holes 601 are formed in one side surface of each fixing plate 602, the bolts 604 are embedded between the fixing holes 601, and the fixing holes are fixed through the nuts 605; the hanging pipe clamp 4 and the fixing structure 6 sequentially pass through the fixing hole 601, the pipe hole 402 and the fixing hole 601 through bolts 604 and are fixed by nuts 605.
When the pipeline anti-seismic bracket is used, firstly, the mounting structure 1 is fixed on a roof to be mounted, the pipeline body 5 is embedded and mounted in the hanging pipe clamp 4 and is fixed by the fixing structure 6, the pipeline body 5 is placed in the Q-shaped pipe bundle 401, the position of the semicircular pipe bundle 606 is adjusted according to the thickness of the pipeline body 5, the connecting column 603 in the pipe hole 402 is slid up and down, the pipeline body 5 is embedded between the Q-shaped pipe bundle 401 and the semicircular pipe bundle 606, the bolts 604 sequentially pass through the fixing holes 601, the pipe holes 402 and the fixing holes 601 on the fixing plate 602 and are fixed by nuts 605, then the mounting plate 2 is embedded and mounted in the mounting structure 1, the plate body 201 is placed on the lower surface of the upper transverse plate 101, the stop 104 passes through the plate hole 102, the fixing shaft 103 is embedded and mounted in the plate hole 102, the stop 104 is rotated to be parallel to the upper transverse plate 101, and the plate body 201 can be fixed by the upright rods 105, the upper transverse plate 101 and the lower transverse plate 106; when vibration occurs, the pipeline body 5 horizontally swings under the action of the supporting arm 3, the plate 201 slightly swings under the action of the spring 203 at one side of the fixed block 202, and the vibration-resistant effect of the bracket is enhanced; when the bracket needs to be maintained or disassembled, the stop block 104 is rotated to be parallel to the connecting plate block 107, and the upright rod 105 is rotated to enable the stop block 104 and the fixed shaft 103 to be far away from the plate hole 102, so that the mounting plate 2 can be removed.
The foregoing has shown and described the basic principles and main features of the present utility model and the advantages of the present utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (7)

1. The utility model provides a pipeline antidetonation support which characterized in that: including mounting structure (1), mounting structure (1)'s inside inlays is established and is installed mounting panel (2), the lower fixed surface of mounting panel (2) installs trailing arm (3), trailing arm (3) are three groups, the lower fixed surface of trailing arm (3) is connected with and hangs pipe strap (4), the inside of hanging pipe strap (4) is inlayed and is installed pipeline body (5), hang through fixed knot between pipe strap (4) and pipeline body (5) and construct (6) fixed mounting.
2. A pipe seismic bracket as defined in claim 1, wherein: mounting structure (1) are including last diaphragm (101), plate hole (102), fixed axle (103), dog (104), pole setting (105), lower diaphragm (106), connect plate (107), first hinge (108), second hinge (109), the lower surface of going up diaphragm (101) is close to both sides position and all fixed mounting has connect plate (107), the equal movable mounting in adjacent face of connecting plate (107) has lower diaphragm (106), all through first hinge (108) swing joint between connecting plate (107) and lower diaphragm (106), first hinge (108) are four sets altogether, the equal movable mounting in front surface and the rear surface of lower diaphragm (106) has pole setting (105), all through second hinge (109) swing joint between lower diaphragm (106) and pole setting (105), plate hole (102) have all been seted up to the front surface of pole setting (105).
3. A pipe seismic bracket as defined in claim 2, wherein: the mounting plate (2) comprises a plate body (201), fixing blocks (202) and springs (203), wherein the fixing blocks (202) are fixedly mounted on the two side surfaces of the plate body (201) close to the front surface and the rear surface, the fixing blocks (202) are four groups, and the fixing blocks (202) are fixedly connected with the plate body (201) through the springs (203).
4. A pipe seismic bracket according to claim 3, wherein: the front surface and the back surface of going up diaphragm (101) are close to both sides position and all fixed axle (103) are fixed, the one end of fixed axle (103) is all movable mounting has dog (104), mounting structure (1) inlays through plate body (201) with mounting panel (2) and establishes the upper surface of installing in diaphragm (106) down, and inlays through fixed axle (103) and establish and install in plate hole (102) inside to fixed by dog (104).
5. A pipe seismic bracket as defined in claim 4, wherein: the hanging pipe clamp (4) comprises a Q-shaped pipe bundle (401) and pipe holes (402), the pipe holes (402) are formed in the surface of the Q-shaped pipe bundle (401), and the number of the pipe holes (402) is two.
6. A pipe seismic bracket as defined in claim 5, wherein: the fixing structure (6) comprises fixing holes (601), fixing plates (602), connecting columns (603), bolts (604), nuts (605) and semicircular tube bundles (606), wherein the fixing plates (602) are fixedly installed on the surfaces of two sides of each semicircular tube bundle (606), the semicircular tube bundles (606) are fixedly connected with the fixing plates (602) through the connecting columns (603), the fixing holes (601) are formed in one side surface of each fixing plate (602), and bolts (604) are installed in the fixing holes (601) in an embedded mode and are fixed through the nuts (605).
7. A pipe seismic bracket as defined in claim 6, wherein: the hanging pipe clamp (4) and the fixing structure (6) sequentially penetrate through the fixing hole (601), the pipe hole (402) and the fixing hole (601) through bolts (604) to be fixed through nuts (605).
CN202320263905.2U 2023-02-21 2023-02-21 Pipeline anti-seismic bracket Active CN219388847U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320263905.2U CN219388847U (en) 2023-02-21 2023-02-21 Pipeline anti-seismic bracket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320263905.2U CN219388847U (en) 2023-02-21 2023-02-21 Pipeline anti-seismic bracket

Publications (1)

Publication Number Publication Date
CN219388847U true CN219388847U (en) 2023-07-21

Family

ID=87190515

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320263905.2U Active CN219388847U (en) 2023-02-21 2023-02-21 Pipeline anti-seismic bracket

Country Status (1)

Country Link
CN (1) CN219388847U (en)

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