CN221097733U - Adjustable pipeline bracket connecting structure - Google Patents

Adjustable pipeline bracket connecting structure Download PDF

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Publication number
CN221097733U
CN221097733U CN202323060455.6U CN202323060455U CN221097733U CN 221097733 U CN221097733 U CN 221097733U CN 202323060455 U CN202323060455 U CN 202323060455U CN 221097733 U CN221097733 U CN 221097733U
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CN
China
Prior art keywords
installation
support
pipeline
supporting
ring
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Application number
CN202323060455.6U
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Chinese (zh)
Inventor
殷豪
蒋海榆
何春林
黄根
陈建
马龙波
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China Construction Eighth Engineering Divion Southern Construction Co Ltd
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China Construction Eighth Engineering Divion Southern Construction Co Ltd
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Priority to CN202323060455.6U priority Critical patent/CN221097733U/en
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Abstract

The utility model discloses an adjustable pipeline bracket connecting structure, which comprises a support frame and a support part, wherein the support frame is provided with a plurality of support grooves; the support frame is fixedly arranged at a pre-installation position through a fixing structure, and an installation chute is formed in the support frame along the vertical direction; at least one supporting part is arranged in the installation chute in a sliding manner along the vertical direction, each supporting part is matched with a locking structure connected with the supporting frame, and the supporting parts are used for supporting the pipeline; compared with the prior art, the pipeline supporting device mainly comprises the supporting frame and the supporting part, the supporting part slides in the vertical direction in the installation chute according to the installation height of the pipeline to be adjusted to a proper height, and then the adjusted position of the supporting part is locked and fixed through the locking structure, so that the supporting part stably supports the pipeline or the pipeline; the adjustable pipeline bracket connecting structure can adapt to different installation heights of pipelines and has a sufficient application range.

Description

Adjustable pipeline bracket connecting structure
Technical Field
The utility model relates to the technical field of pipeline installation structures, in particular to an adjustable pipeline bracket connection structure.
Background
In the use of the pre-buried pipeline support in current corridor, because various pipelines and pipelines need to be installed at the top, therefore need install multiunit support frame at the top for support pipeline and pipeline, the height of support frame is fixed usually, therefore when carrying out the altitude mixture control, need change the support frame of corresponding height, it is comparatively inconvenient.
Disclosure of utility model
Aiming at the defects in the prior art, the utility model aims to provide an adjustable pipeline bracket connecting structure so as to solve the problem that in the prior art, when pipelines or pipelines with different heights are supported and installed, the supporting frames with different heights need to be replaced, so that inconvenience is caused.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: an adjustable pipe support connection comprising:
the support frame is fixedly arranged at the pre-installation position through a fixing structure, and an installation chute is formed in the support frame along the vertical direction;
The support parts are at least one and are all arranged in the installation chute in a sliding mode along the vertical direction, each support part is matched with a locking structure connected with the support frame, and the support parts are used for supporting the pipeline.
Compared with the prior art, the utility model has the following beneficial effects:
The adjustable pipeline bracket connecting structure mainly comprises a supporting frame and a supporting part, wherein the supporting part slides in the vertical direction in an installation chute according to the installation height of a pipeline so as to be adjusted to a proper height, and then the position of the supporting part after adjustment is locked and fixed through a locking structure, so that the supporting part stably supports the pipeline or the pipeline; the adjustable pipeline bracket connecting structure can adapt to different installation heights of pipelines and has a sufficient application range.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present utility model after installation;
FIG. 2 is a front view of FIG. 1;
FIG. 3 is a schematic diagram illustrating the connection between the support frame and the support portion in FIG. 1;
FIG. 4 is a partial cross-sectional view of FIG. 3;
FIG. 5 is a schematic view of the support portion of FIG. 3;
fig. 6 is a schematic view of the limiter of fig. 5.
Reference numerals in the drawings of the specification include: the support frame 1, the top plate 11, the vertical plate 12, the fixed structure 2, the support bar 21, the T-shaped bolt 22, the nut 23, the support part 3, the support seat 31, the placing ring 32, the gear ring 33, the gear 34, the rotating block 35, the guide ring 36, the limiting rod 4, the movable hole 5, the limiting block 6, the limiter 7, the inserting rod 71, the spring 72 and the moving plate 73.
Detailed Description
The utility model is described in further detail below by way of specific embodiments:
as shown in fig. 1 and 2, an embodiment of the present utility model provides an adjustable pipe bracket connection structure, which includes a support frame 1 and a support portion 3;
The support frame 1 is fixedly arranged at a pre-installation position through a fixing structure 2, and an installation chute is formed in the support frame 1 along the vertical direction;
The support portion 3 is at least one and all along vertical direction sliding arrangement in the installation spout, and every support portion 3 all cooperates with the locking structure that links to each other with support frame 1, and support portion 3 is used for supporting the pipeline.
The pre-installation position can be on the ceiling of a hospital corridor, and can also be other positions where pipelines or pipelines need to be installed; in this embodiment, the pre-installation position is described by the ceiling of the hospital corridor, which is poured concrete, a chute is reserved on the concrete, and the fixing structure 2 is installed in the chute to fix the support frame 1.
After the installation heights of the pipeline and the pipeline are determined, unlocking the locking structure on the supporting part 3, and sliding the supporting part 3 along the vertical direction to adjust to the proper height; the supporting part 3 is locked through the locking structure to fix the supporting part 3 with the height adjusted, and then a pipeline or a pipeline is mounted on the supporting part 3 to be supported; the adjustable pipeline bracket connecting structure can adapt to different installation heights of pipelines and has a sufficient application range.
The number of the supporting parts 3 may be 2, 4, 7, or the like, and may be determined according to actual requirements.
As shown in fig. 1 and 2, according to another embodiment of the present utility model, the adjustable pipe bracket connection structure, wherein the fixing structure 2 includes a supporting bar 21 and a connection member;
wherein the supporting bar 21 is fixedly arranged in the chute, and a connecting slot is formed on the supporting bar 21 along the length direction of the supporting bar 21;
The connecting pieces are multiple in number, one ends of the connecting pieces are limited in the connecting grooves in a sliding mode, and the other ends of the connecting pieces are connected with the supporting frame 1.
In this embodiment:
The supporting bar 21 is adapted to the inside of the chute, and the supporting bar 21 can be fixed in the chute by an elongated screw; the connecting piece specifically comprises a TT-shaped bolt 22, and the cross section of the corresponding connecting through groove is T-shaped, so that the T-shaped end of the TT-shaped bolt 22 slides into the connecting through groove from one end of the connecting through groove to limit, and a nut 23 is matched on the TT-shaped bolt 22 to connect and fix the support frame 1; specifically, two connectors are used for stably limiting and fixing the support frame 1.
As shown in fig. 3, 4 and 5, according to another embodiment of the present utility model, the adjustable pipe bracket connecting structure is provided with a movable hole 5 communicating with the installation chute along the vertical direction on the outer wall of the support frame 1, the locking structure passes through the movable hole 5 and has one end connected with the support portion 3, and the other end abuts against the outer wall of the support frame 1 to be locked; so that the locking structure can be adjusted quickly and conveniently to control the locking state of the supporting part 3.
Based on the scheme:
The support part 3 is connected with a limiting block 6 which is arranged in the installation chute in a sliding way, the locking structure comprises a limiting rod 4, one end of the limiting rod 4 is connected with the limiting block 6 through threads, and the other end of the limiting rod freely passes through the movable hole 5 and then is provided with a big head end arranged outside the support frame 1.
In this embodiment:
Two limiting blocks 6 which are arranged in a separated mode are connected to each supporting part 3, the cross section of each limiting block 6 is T-shaped, and the two limiting blocks 6 are arranged in the installation chute in a sliding mode to guide the movement of the supporting part 3; and only one of the restriction blocks 6 is fitted with a locking structure, which has sufficient stability after locking the support 3.
Holding the big end of the limiting rod 4 to rotate so as to separate the big end from the outer wall of the support frame 1, then the supporting part 3 can be moved in the installation chute by holding the big end of the limiting rod 4, and after the supporting part 3 is moved to a proper height, the big end of the limiting rod 4 reversely rotates so as to separate the big end from the outer wall of the support frame 1, thereby completing locking and fixing of the supporting part 3; a plurality of positioning grooves are arranged on the movable hole 5 at intervals along the length direction, and the big end of the limiting rod 4 can prop against any positioning groove to lock and fix the supporting part 3 later.
Wherein, the restriction pole 4 can be made of stainless steel, and its intensity is high, not fragile.
As shown in fig. 3, according to another embodiment of the present utility model, the adjustable pipe bracket connecting structure, wherein the supporting frame 1 includes a top plate 11 and a riser 12;
wherein the top plate 11 is connected with the fixed structure 2;
the two vertical plates 12 are arranged at the bottom of the top plate 11 in parallel and spaced apart, and the mounting chute is formed between the two vertical plates 12.
In this embodiment:
specifically, the top plate 11 is connected with two connecting pieces for fixing, and the two connecting pieces are distributed at two ends of the top plate 11; the movable hole 5 is arranged on the outer wall of any vertical plate 12.
The support frame 1 is formed by the cooperation of the top plate 11 and the two vertical plates 12, and has a simple structure and can be mounted on the support portion 3.
As shown in fig. 4 and 5, according to another embodiment of the present utility model, the adjustable pipe bracket connection structure includes support seats 31 and placement rings 32 for each of the support parts 3;
Wherein, the supporting seat 31 is slidably arranged in the installation chute along the vertical direction and is matched with the corresponding locking structure, an installation channel is formed in the supporting seat 31, and a first installation notch is arranged at the bottom of the installation channel;
The placement ring 32 is rotatably disposed within the mounting channel and defines a second mounting notch.
In this embodiment:
After the height of the supporting part 3 is adjusted, the placing ring 32 is rotated to align the second installation notch with the first installation notch, at this time, a pipeline or pipeline can be placed in the placing ring 32 from the first installation notch to cross the second installation notch, and then the placing ring 32 is rotated to stagger the second installation notch and the first installation notch, so that the pipeline or pipeline is stably limited in the placing ring 32 through the cooperation of the supporting seat 31 and the placing ring 32 to be installed, and the installation of the pipeline or pipeline is relatively convenient and quick.
The second mounting notch and the first mounting notch can be staggered, a pipeline or a pipeline is penetrated into the mounting hole formed by the supporting seat 31 and the placing ring 32 in a matched manner to be mounted, various mounting modes are provided, and the mounting convenience and flexibility are improved.
In order to facilitate the rotation of the placement ring 32 for the installation of pipes or lines, each of said support portions 3 further comprises a rotation adjustment member associated with the placement ring 32, in particular comprising a gear ring 33 and a gear 34;
Wherein, the gear ring 33 is rotatably arranged in the mounting channel and fixedly sleeved outside the placement ring 32, and a third mounting notch aligned with the second mounting notch is arranged on the gear ring 33;
The gear 34 is rotatably provided on the support base 31 and meshes with the ring gear 33.
The following are given here:
Rotating the gear 34 to rotate the gear ring 33, wherein the gear ring 33 drives the placement ring 32 to rotate in the rotating process, so that the second mounting notch is aligned with or staggered from the first mounting notch, and the pipeline or the pipeline is conveniently mounted; the third mounting notch on the ring gear 33 is provided and its position is provided to avoid obstruction to the installation of the pipe or the pipeline.
Further as shown in fig. 4, 5 and 6, a rotating block 35 is connected to the gear 34, and the limiter 7 is cooperatively disposed on the rotating block 35.
The rotation block 35 is designed to facilitate the holding to adjust the rotation of the gear 34, when the installation of the pipeline or pipeline is completed, the limiter 7 limits and fixes the rotation block 35, so that the gear 34 is kept fixed and cannot rotate, and at the same time, the gear ring 33 cannot rotate, so that the placing ring 32 is stably arranged in the supporting seat 31 to be matched with the supporting seat 31, the pipeline or pipeline is stably supported, and the stability of the pipeline or pipeline after the installation is improved; when it is necessary to rotate the rotation block 35 to adjust the placement ring 32, it is necessary to release the fixed restriction of the rotation block 35 by the restrictor 7.
Specifically, the rotation block 35 is provided with a through hole, and the limiter 7 comprises an insertion rod 71 and an elastic support member;
wherein the insertion rod 71 is used for being matched with the through hole;
the elastic support is connected between one end of the insertion rod 71 and the support seat 31.
In this embodiment:
The through hole is a rectangular through hole, and the insertion rod 71 is also a rectangular rod; the outer wall of the supporting seat 31 is provided with a placement groove, the elastic supporting piece comprises a spring 72 arranged in the installation groove, one end of the spring 72 is connected with a moving plate 73 penetrating out of the installation groove, and one end of the inserting rod 71 is fixedly connected with the moving plate 73.
To move the moving plate 73 away from the rotating block 35, the spring 72 is compressed, and at this time, one end of the insertion rod 71 is moved out of the through hole, and the rotating block 35 is released from the fixing restriction; at this time, the rotating block 35 is rotated, the placing ring 32 is rotated by the transmission of the gear 34 and the gear ring 33, the placing ring 32 is rotated by 180 degrees to rotate the second mounting notch from the top to the bottom in the mounting channel, and the second mounting notch is aligned with the first mounting notch; the pipe or tubing is now installed into the placement ring 32 from the first installation notch. The rotating block 35 is reversely rotated to reversely rotate the placing ring 32 by 180 degrees to rotate the second mounting notch from the bottom to the top in the mounting channel, and the second mounting notch is staggered with the first mounting notch; at this time, the restriction on the moving plate 73 is released, the spring 72 is reset to be extended, and one end of the insertion rod 71 is driven to penetrate into the through hole to restrict and fix the rotating block 35 again, so that the placing ring 32 stably maintains the state, and the pipeline or the pipeline is stably supported.
In order to make the placing ring 32 more stable in the rotation process, a guide ring 36 is rotatably arranged in the installation channel, the guide ring 36 is fixedly sleeved outside the placing ring 32, and a fourth installation notch aligned with the second installation notch is formed in the guide ring 36.
Because the supporting seat 31 has a certain thickness, the mounting channel has a certain length, and the guide ring 36 is positioned on one side of the gear ring 33; the placement ring 32 is guided by the guide ring 36 during rotation to improve the stability of the placement ring 32 during rotation; the fourth installation notch is formed and designed in a position to avoid obstruction to the installation of the pipeline or pipeline.
When in use, the utility model is characterized in that:
The supporting bar 21 is installed in the sliding groove, then the TT-shaped bolt 22 is embedded in the connecting through groove of the supporting bar 21, and is rotated for ninety degrees to enable the supporting bar 21 to be vertical to the supporting bar, then the top plate 11 is locked and fixed through matching of the TT-shaped bolt 22 and the nut 23, and then the height of the supporting seat 31 is adjusted through the height of a pipeline or a pipeline to be installed.
The limiting rod 4 is rotated out of the positioning groove, the limitation of the limiting rod 4 on the supporting seat 31 is released, then the limiting rod 4 is moved to drive the limiting block 6 and the supporting seat 31 to synchronously move, and after a proper height is found, the limiting rod 4 is screwed into the positioning groove with the corresponding height to prop against the positioning groove, so that the height of the supporting seat 31 is adjusted, and the installation height of a pipeline or a pipeline is adjusted.
Then, the insertion rod 71 is moved upward so as to press the spring 72, and the insertion rod 71 is disengaged from the rotation block 35; the rotating block 35 is rotated to drive the gear 34 to rotate so as to drive the gear ring 33 to rotate, the placement ring 32 is driven to rotate under the limit of the guide ring 36 under the drive of the gear ring 33, so that the second installation notch is aligned with the first installation notch, and a pipeline or a pipeline is conveniently embedded into the placement ring 32 upwards from the first installation notch, so that the penetrating area of the pipeline or the pipeline is increased, the installation is convenient, the pipeline or the pipeline can be directly embedded from the interior of the placement ring 32, multiple installation modes are provided, and the convenience and the flexibility of the installation are improved; after the pipeline or the pipeline is placed in the placement ring 32, the rotary block 35 is reversely rotated to reset, and the supporting seat 31 is matched with the placement ring 32 to stably limit the pipeline or the pipeline in the placement ring for installation; the insertion rod 71 is inserted into the through hole, and the rotating block 35 is fixed in a limited manner, so that the placing ring 32 is stably matched with the supporting seat 31 to support the installed pipeline or pipeline.
Finally, it is noted that the above embodiments are only for illustrating the technical solution of the present utility model and not for limiting the same, and although the present utility model has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications and equivalents may be made thereto without departing from the spirit and scope of the technical solution of the present utility model, which is intended to be covered by the scope of the claims of the present utility model.

Claims (10)

1. An adjustable pipe bracket connection structure, comprising:
the support frame is fixedly arranged at the pre-installation position through a fixing structure, and an installation chute is formed in the support frame along the vertical direction;
The support parts are at least one and are all arranged in the installation chute in a sliding mode along the vertical direction, each support part is matched with a locking structure connected with the support frame, and the support parts are used for supporting the pipeline.
2. The adjustable pipe bracket connection structure according to claim 1, wherein each of the support portions comprises:
The support seat is arranged in the installation chute in a sliding manner along the vertical direction and matched with the corresponding locking structure, an installation channel is formed in the support seat, and a first installation notch is formed at the bottom of the installation channel;
The placing ring is rotatably arranged in the mounting channel and is provided with a second mounting notch.
3. The adjustable pipe bracket connection of claim 2, wherein each of the support sections further comprises a rotation adjustment member connected to the placement ring, the rotation adjustment member comprising:
the gear ring is rotatably arranged in the mounting channel and fixedly sleeved outside the placement ring, and a third mounting notch aligned with the second mounting notch is formed in the gear ring;
The gear is rotatably arranged on the supporting seat and meshed with the gear ring.
4. An adjustable pipe bracket connection according to claim 2, wherein: the installation channel is internally provided with a guide ring in a rotating way, the guide ring is fixedly sleeved outside the placement ring, and a fourth installation notch aligned with the second installation notch is formed in the guide ring.
5. An adjustable pipe bracket connection according to claim 3, wherein: the gear is connected with a rotating block, and the rotating block is provided with a limiter in a matched mode.
6. The adjustable pipe bracket connection structure according to claim 5, wherein the rotation block is provided with a through hole, and the limiter comprises:
the insertion rod is used for being matched with the through hole;
the elastic support piece is connected between one end of the insertion rod and the support seat.
7. An adjustable pipe bracket connection according to claim 1, wherein: the outer wall of the support frame is provided with a movable hole communicated with the installation chute along the vertical direction, the locking structure penetrates through the movable hole, one end of the locking structure is connected with the support part, and the other end of the locking structure abuts against the outer wall of the support frame to be locked.
8. The adjustable pipe bracket connection of claim 7, wherein: the support part is connected with a limiting block which is arranged in the installation chute in a sliding way, the locking structure comprises a limiting rod, one end of the limiting rod is connected with the limiting block through threads, and the other end of the limiting rod freely penetrates through the movable hole to form a big head end arranged outside the support frame.
9. An adjustable pipe bracket connection according to claim 1, wherein: the pre-installation position is provided with a chute, and the fixing structure comprises:
The supporting bar is fixedly arranged in the chute, and a connecting slot is formed in the supporting bar along the length direction of the supporting bar;
The connecting pieces are multiple in number, one ends of the connecting pieces are limited in the connecting grooves in a sliding mode, and the other ends of the connecting pieces are connected with the supporting frame.
10. The adjustable pipe bracket connection of claim 1, wherein the support bracket comprises:
the top plate is connected with the fixed structure;
And two vertical plates are arranged at the bottom of the top plate at intervals in parallel, and the mounting sliding groove is formed between the two vertical plates.
CN202323060455.6U 2023-11-10 2023-11-10 Adjustable pipeline bracket connecting structure Active CN221097733U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323060455.6U CN221097733U (en) 2023-11-10 2023-11-10 Adjustable pipeline bracket connecting structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323060455.6U CN221097733U (en) 2023-11-10 2023-11-10 Adjustable pipeline bracket connecting structure

Publications (1)

Publication Number Publication Date
CN221097733U true CN221097733U (en) 2024-06-07

Family

ID=91312824

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323060455.6U Active CN221097733U (en) 2023-11-10 2023-11-10 Adjustable pipeline bracket connecting structure

Country Status (1)

Country Link
CN (1) CN221097733U (en)

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