CN216618787U - Interim braced system of pre-buried pipe fitting - Google Patents

Interim braced system of pre-buried pipe fitting Download PDF

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Publication number
CN216618787U
CN216618787U CN202123006138.7U CN202123006138U CN216618787U CN 216618787 U CN216618787 U CN 216618787U CN 202123006138 U CN202123006138 U CN 202123006138U CN 216618787 U CN216618787 U CN 216618787U
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China
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extrusion
groove
block
fixed
sliding
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CN202123006138.7U
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Chinese (zh)
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李虎
周学军
刘振宇
田淑娟
冯金义
张伟
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Shandong Fangda Engineering Co ltd
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Shandong Fangda Engineering Co ltd
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Abstract

The utility model discloses a temporary support system for embedded pipes, which comprises: the fixed block, and the fixed block can be fixed the device, the hand power groove has been seted up to the fixed block side, and the hand power groove can be used as the hand support, the fixed block bottom is connected with the connecting axle, the connecting axle side is connected with solid fixed ring. This interim braced system of buried pipe fitting, gu fixed ring can drive the second extrusion piece when rotatory and remove, the second extrusion piece removes and can extrude the second spring, can open solid fixed ring when the second spring extrudees second extrusion inslot portion, solid fixed ring can have more the diameter of pipeline to open convenient, gu fixed ring rotates through the connecting axle when rotating, gu fixed ring can carry out the centre gripping to buried pipe after rotatory closing fixedly, gu fixed ring convenient can carry out self-closing, the bolt can extrude the bracing piece fixed when bolt screw slides to the fixed slot inside, make things convenient for the fixed block to adjust the support as required.

Description

Interim braced system of pre-buried pipe fitting
Technical Field
The utility model relates to the technical field of building devices, in particular to a temporary support system for an embedded pipe fitting.
Background
The pre-buried pipe is a pipeline pre-buried for subsequent structure and process construction in the building engineering. Building structures, generally, have few pipelines to go clearly. In a general cast-in-place structure, when reinforcing steel bars are bound, embedded pipes are fixed on a template and the reinforcing steel bars, the pipes are arranged in a structural member after concrete is poured, the embedded pipes need to be temporarily supported and fixed through a supporting device when in use, and the supporting device can be detached after the embedded pipes are supported;
this prior art solution also presents the following problems when in use:
1. the fixing ring is inconvenient to open;
2. the pre-buried pipe is inconvenient to automatically clamp;
3. the fixed block is inconvenient to place stably;
improvements are needed to address the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model provides the following technical scheme: the utility model aims to provide a temporary embedded pipe supporting system, which solves the problems that the temporary embedded pipe supporting system in the market has many defects, a fixing ring is inconvenient to open, an embedded pipe is inconvenient to automatically clamp, and a fixing block is inconvenient to stably place.
In order to achieve the purpose, the utility model provides the following technical scheme: a temporary embedded pipe support system comprising:
the fixing block can fix the device, a hand-pulling groove is formed in the side face of the fixing block and can be used as a hand support, a connecting shaft is connected to the bottom of the fixing block, a fixing ring is connected to the side face of the connecting shaft, and the fixing ring can clamp the embedded pipe;
the sliding chute penetrates through the fixed block, a sliding rod penetrates through the sliding chute, and one end of the sliding rod is connected with a pushing block;
the second extrusion groove is formed in the bottom of the fixed block, the side face of the fixing ring is connected with a second extrusion block, and a second spring is connected between the second extrusion block and the second extrusion groove.
Preferably, the second extrusion groove, the second extrusion block and the second spring are provided with two sets of blocks about the central symmetry of fixed block, and constitute extending structure through the second spring between second extrusion groove and the second extrusion block, and fixed ring can drive the second extrusion block and remove when rotatory, and the second extrusion block removes and can extrude the second spring, can open fixed ring when the second spring extrudees the inslot portion to the second.
Preferably, the sliding groove is further provided with a first extrusion groove, a first extrusion block and a first spring;
the first extrusion groove is formed in the sliding groove, a first extrusion block is connected to the side face of the sliding rod, the sliding rod can slide through the sliding groove when being pressed, the sliding rod can drive the first extrusion block to move when sliding, the first extrusion block can slide through the first extrusion groove when moving, the first extrusion block can extrude the first spring when sliding, and the pushing block can be pushed to move when the sliding rod slides;
and the first spring is connected between the first extrusion groove and the first extrusion block.
Preferably, be sliding connection between first extrusion groove and the first extrusion piece, and constitute extending structure through first spring between first extrusion groove and the first extrusion piece, the slide bar loosens the first extrusion piece of back and can reset through first spring self elasticity, and first extrusion piece resets and can drive and promote the piece and reset, promotes the piece and can produce the separation with solid fixed ring after resetting.
Preferably, the fixed block is further provided with a connecting groove, a thread groove, a supporting rod, a supporting block, a fixed groove and a bolt;
the supporting block is pulled to drive the supporting rod to move, and the supporting rod can slide through the connecting grooves when moving;
the supporting block is connected to one end of the supporting rod, a fixing groove is formed in the side face, close to the thread groove, of the supporting rod, and a bolt is connected between the fixing groove and the thread groove.
Preferably, be threaded connection between thread groove and the bolt, and be sliding connection between bolt and the fixed slot, the bracing piece can drive the fixed slot when sliding and remove, can slide with the bolt when the fixed slot removes, rotates the bolt and can carry out the screw thread slip through the thread groove when the carriage removal assigned position, and the bolt can extrude the bracing piece fixedly when the bolt screw thread slip is inside the fixed slot.
Compared with the prior art, the utility model has the beneficial effects that: this interim braced system of buried pipe fitting, gu fixed ring can drive the second extrusion piece when rotatory and remove, the second extrusion piece removes and can extrude the second spring, can open solid fixed ring when the second spring extrudees second extrusion inslot portion, solid fixed ring can have more the diameter of pipeline to open convenient, gu fixed ring rotates through the connecting axle when rotating, gu fixed ring can carry out the centre gripping to buried pipe after rotatory closing fixedly, gu fixed ring convenient can carry out self-closing, the bolt can extrude the bracing piece fixed when bolt screw slides to the fixed slot inside, make things convenient for the fixed block to adjust the support as required.
1. The push rod can slide through the sliding groove by being pressed, the first extrusion block can be driven to move when the slide rod slides, the first extrusion block can slide through the first extrusion groove when moving, the first extrusion block can extrude the first spring when sliding, the push block can be pushed to move when sliding, the inclined plane at one end of the fixing ring can be extruded when the push block moves, the fixing ring can rotate through the connecting shaft by being extruded, the second extrusion block can be driven to move when the fixing ring rotates, the second extrusion block can extrude the second spring by moving, the fixing ring can be opened when the second spring is extruded into the second extrusion groove, and the fixing ring can be conveniently opened with a larger diameter than a pipeline;
2. the fixing ring is opened and then loosened, the first extrusion block can reset through the self elasticity of the first spring after the sliding rod is loosened, the first extrusion block can reset to drive the pushing block to reset, the pushing block can be separated from the fixing ring after resetting, the second extrusion block can reset through the second spring after the pushing block is separated from the fixing ring, the second extrusion block can push the fixing ring to rotate after resetting, the fixing ring can rotate through the connecting shaft when rotating, the fixing ring can clamp and fix the embedded pipe after rotating and closing, and the fixing ring can be conveniently and automatically closed;
3. the pulling supporting shoe can drive the bracing piece and remove, can slide through the spread groove when the bracing piece removes, can drive the fixed slot when the bracing piece slides and remove, can slide with the bolt when the fixed slot removes, rotate the bolt and can carry out the screw thread slip through the thread groove when the bracing piece removes the assigned position, the bolt can extrude the bracing piece fixed when the bolt screw thread slip is inside the fixed slot, make things convenient for the fixed block to adjust the support as required.
Drawings
FIG. 1 is a schematic cross-sectional front view of the present invention;
FIG. 2 is a schematic top view of the cross-sectional structure of the present invention;
FIG. 3 is a schematic side view of the cross-sectional structure of the present invention;
FIG. 4 is an enlarged view of part A of the present invention.
In the figure: 1. a fixed block; 2. a hand-pulled groove; 3. a connecting shaft; 4. a fixing ring; 5. a chute; 6. a first extrusion groove; 7. a slide bar; 8. a first extrusion block; 9. a pushing block; 10. a first spring; 11. a second extrusion groove; 12. a second extrusion block; 13. a second spring; 14. connecting grooves; 15. a thread groove; 16. a support bar; 17. a support block; 18. fixing grooves; 19. and (4) bolts.
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. 1-4, the present invention provides a technical solution: a temporary embedded pipe support system comprising:
the device comprises a fixed block 1, a hand-pulling groove 2 is formed in the side surface of the fixed block 1, the hand-pulling groove 2 can be used as a hand support, a connecting shaft 3 is connected to the bottom of the fixed block 1, a fixing ring 4 is connected to the side surface of the connecting shaft 3, and the fixing ring 4 can clamp the embedded pipe;
the inside at fixed block 1 is seted up in the running through to spout 5, and the inside through connection of spout 5 has slide bar 7, and slide bar 7 one end is connected with and promotes piece 9, and second extrusion groove 11 is seted up in fixed block 1 bottom, and solid fixed ring 4 side is connected with second extrusion piece 12, is connected with second spring 13 between second extrusion piece 12 and the second extrusion groove 11.
Two groups of second extrusion grooves 11, second extrusion blocks 12 and second springs 13 are symmetrically arranged about the center of the fixed block 1, and a telescopic structure is formed between the second extrusion grooves 11 and the second extrusion blocks 12 through the second springs 13.
Referring to fig. 1 and 3, it can be known that a push rod 7 can slide through a sliding groove 5, the slide rod 7 can drive a first extrusion block 8 to move when sliding, the first extrusion block 8 can slide through a first extrusion groove 6 when moving, the first extrusion block 8 can extrude a first spring 10 when sliding, the slide rod 7 can push a push block 9 to move when sliding, the push block 9 can extrude an inclined plane at one end of a fixed ring 4 when moving, the fixed ring 4 can rotate through a connecting shaft 3 when being extruded, the fixed ring 4 can drive a second extrusion block 12 to move when rotating, the second extrusion block 12 can extrude a second spring 13, and the fixed ring 4 can be opened when the second spring 13 extrudes the second extrusion groove 11.
The sliding groove 5 is further provided with a first extrusion groove 6, a first extrusion block 8 and a first spring 10, the first extrusion groove 6 is formed in the sliding groove 5, the side face of the sliding rod 7 is connected with the first extrusion block 8, and the first spring 10 is connected between the first extrusion groove 6 and the first extrusion block 8.
The first extrusion groove 6 is in sliding connection with the first extrusion block 8, and the first extrusion groove 6 and the first extrusion block 8 form a telescopic structure through a first spring 10.
Referring to fig. 1, 3, 4 can know, solid fixed ring 4 is opened and is accomplished the back and loosen slide bar 7, slide bar 7 loosens the back first extrusion piece 8 and can reset through first spring 10 self elasticity, first extrusion piece 8 resets and can drive and promote piece 9 and reset, promote and can produce the separation with solid fixed ring 4 after piece 9 resets, second extrusion piece 12 can reset through second spring 13 after promotion piece 9 and solid fixed ring 4 separation, can promote solid fixed ring 4 and rotate after second extrusion piece 12 resets, gu fixed ring 4 can rotate through connecting axle 3 when rotating, gu fixed ring 4 can carry out the centre gripping fixed to the buried pipe after closing in the rotation.
Fixed block 1 still is provided with spread groove 14, thread groove 15, bracing piece 16, supporting shoe 17, fixed slot 18 and bolt 19, and spread groove 14 is seted up in the left and right sides of fixed block 1, and the thread groove 15 has been seted up to spread groove 14 inside, and the inside gomphosis of spread groove 14 has bracing piece 16, and supporting shoe 17 connects in the one end of bracing piece 16, and the bracing piece 16 side that is close to thread groove 15 has seted up fixed slot 18, is connected with bolt 19 between fixed slot 18 and the thread groove 15.
The threaded groove 15 is in threaded connection with the bolt 19, and the bolt 19 is in sliding connection with the fixing groove 18.
Referring to fig. 1 and 2, it can be known that pulling the supporting block 17 can drive the supporting rod 16 to move, the supporting rod 16 can slide through the connecting groove 14 when moving, the supporting rod 16 can drive the fixing groove 18 to move when sliding, the fixing groove 18 can slide with the bolt 19 when moving, when the supporting block 17 moves to a designated position, the rotating bolt 19 can slide through the threaded groove 15, when the bolt 19 slides into the fixing groove 18, the bolt 19 can squeeze and fix the supporting rod 16,
the working principle is as follows: when the temporary embedded pipe supporting system is used, firstly, the temporary embedded pipe supporting system needs to be simply known, when in use, the sliding rod 7 can slide through the sliding groove 5 by being pressed, the sliding rod 7 can drive the first extrusion block 8 to move when sliding, the first extrusion block 8 can slide through the first extrusion groove 6 when moving, the first extrusion block 8 can extrude the first spring 10 when sliding, the sliding rod 7 can push the pushing block 9 to move when sliding, the pushing block 9 can extrude an inclined plane at one end of the fixing ring 4 when moving, the fixing ring 4 can rotate through the connecting shaft 3 when being extruded, the fixing ring 4 can drive the second extrusion block 12 to move when rotating, the second extrusion block 12 can extrude the second spring 13, and the fixing ring 4 can be opened when the second spring 13 is extruded into the second extrusion groove 11, the embedded pipe is placed between the fixing rings 4 after the fixing rings 4 are opened, the sliding rods 7 are loosened after the embedded pipe is placed, the first extrusion blocks 8 can reset through the self elasticity of the first springs 10 after the sliding rods 7 are loosened, the first extrusion blocks 8 can reset to drive the pushing blocks 9 to reset, the pushing blocks 9 can be separated from the fixing rings 4 after being reset, the second extrusion blocks 12 can reset through the second springs 13 after the pushing blocks 9 are separated from the fixing rings 4, the fixing rings 4 can rotate through the connecting shafts 3 after the second extrusion blocks 12 reset, the fixing rings 4 can clamp and fix the embedded pipe after being rotated and closed, and the content which is not described in detail in the description belongs to the prior art which is known by professional technicians in the field.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.

Claims (6)

1. The utility model provides a temporary braced system of buried pipe spare, its characterized in that includes:
the fixing device comprises a fixing block (1), wherein a hand-pulled groove (2) is formed in the side surface of the fixing block (1), the bottom of the fixing block (1) is connected with a connecting shaft (3), and a fixing ring (4) is connected to the side surface of the connecting shaft (3);
the sliding chute (5) penetrates through the fixed block (1), a sliding rod (7) penetrates through the sliding chute (5), and one end of the sliding rod (7) is connected with a pushing block (9);
second extrusion groove (11) is seted up fixed block (1) bottom, solid fixed ring (4) side is connected with second extrusion piece (12), be connected with second spring (13) between second extrusion piece (12) and second extrusion groove (11).
2. The temporary embedded pipe supporting system of claim 1, wherein: two groups of second extrusion grooves (11), two groups of second extrusion blocks (12) and two groups of second springs (13) are symmetrically arranged around the center of the fixed block (1), and a telescopic structure is formed between the second extrusion grooves (11) and the second extrusion blocks (12) through the second springs (13).
3. The temporary embedded pipe supporting system of claim 1, wherein: the sliding groove (5) is also provided with a first extrusion groove (6), a first extrusion block (8) and a first spring (10);
the first extrusion groove (6) is formed in the sliding groove (5), and the side face of the sliding rod (7) is connected with a first extrusion block (8);
and the first spring (10) is connected between the first extrusion groove (6) and the first extrusion block (8).
4. The temporary embedded pipe supporting system of claim 3, wherein: the first extrusion groove (6) is in sliding connection with the first extrusion block (8), and the first extrusion groove (6) and the first extrusion block (8) form a telescopic structure through a first spring (10).
5. The temporary embedded pipe supporting system of claim 1, wherein: the fixed block (1) is also provided with a connecting groove (14), a thread groove (15), a supporting rod (16), a supporting block (17), a fixed groove (18) and a bolt (19);
the connecting grooves (14) are formed in the left side and the right side of the fixing block (1), threaded grooves (15) are formed in the connecting grooves (14), and supporting rods (16) are embedded in the connecting grooves (14);
the supporting block (17) is connected to one end of the supporting rod (16), a fixing groove (18) is formed in the side face, close to the thread groove (15), of the supporting rod (16), and a bolt (19) is connected between the fixing groove (18) and the thread groove (15).
6. The temporary embedded pipe supporting system of claim 5, wherein: the thread groove (15) is in threaded connection with the bolt (19), and the bolt (19) is in sliding connection with the fixing groove (18).
CN202123006138.7U 2021-12-02 2021-12-02 Interim braced system of pre-buried pipe fitting Active CN216618787U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123006138.7U CN216618787U (en) 2021-12-02 2021-12-02 Interim braced system of pre-buried pipe fitting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123006138.7U CN216618787U (en) 2021-12-02 2021-12-02 Interim braced system of pre-buried pipe fitting

Publications (1)

Publication Number Publication Date
CN216618787U true CN216618787U (en) 2022-05-27

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ID=81701759

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123006138.7U Active CN216618787U (en) 2021-12-02 2021-12-02 Interim braced system of pre-buried pipe fitting

Country Status (1)

Country Link
CN (1) CN216618787U (en)

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