CN215760397U - Quick type springboard extension support - Google Patents
Quick type springboard extension support Download PDFInfo
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- CN215760397U CN215760397U CN202122191958.1U CN202122191958U CN215760397U CN 215760397 U CN215760397 U CN 215760397U CN 202122191958 U CN202122191958 U CN 202122191958U CN 215760397 U CN215760397 U CN 215760397U
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- springboard
- guardrail
- stabilizing
- rods
- main body
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Abstract
The utility model belongs to the technical field of building supports, and particularly relates to a quick type springboard extending support which aims at solving the problems that an existing springboard is inconvenient to mount and dismount, easily causes resource waste, is not provided with high-altitude protection and is easy to fall. The main body of the springboard is installed in sections and connected through the connecting pieces, the connecting length of the main body of the springboard can be adjusted, the main body of the guardrail is installed after the springboard is connected, and the main body of the guardrail is adjusted according to the actual length.
Description
Technical Field
The utility model relates to the technical field of building supports, in particular to a quick springboard extension support.
Background
In the building high altitude construction process, constructor need set up interim current jump frame, need with steel wire, iron nail temporary fixation, during high altitude construction, need connect jump frame and temporary installation frame, the connection process is very inconvenient convenient, and the springboard supports and need uses electric welding fixed to waste time and energy, and after the construction was accomplished, the jump frame need be followed a construction site and shifted to another construction site and continue to use.
Because the jumping stand is fixed by the steel wire and the iron nails, the jumping stand is inconvenient to disassemble and easy to damage in the disassembling process, and if the jumping stand is not replaced, potential safety hazards are brought to production, so that more materials can be wasted, the steel wire for connection and the iron nails cannot be used for the second time, and are also wasted.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the defects that the existing springboard is inconvenient to mount and dismount, easily causes resource waste, is not provided with high-altitude protection and is easy to fall, and provides a quick springboard extension support.
In order to achieve the purpose, the utility model adopts the following technical scheme:
a plurality of rapid type springboard extending supports comprise a springboard main body, a connecting mechanism and a supporting mechanism are connected between two mutually close springboard main bodies, a plurality of guardrail inserting rods are arranged at the top of the springboard main body, guardrail main bodies are inserted at the top ends of the guardrail inserting rods and comprise two inserting tubes and two guardrail cross rod units, the two guardrail cross rod units are positioned between the two corresponding inserting tubes, the inserting tubes are connected with the corresponding guardrail inserting rods, guardrail screws are connected on the inserting tubes and the corresponding guardrail inserting rods, the guardrail cross rod units comprise two transverse tubes and telescopic tubes, transverse tube locking screws are connected on the two transverse tubes and the two corresponding inserting tubes, the two ends of the telescopic tubes are connected with the inner sides of the two transverse tubes in a sliding manner, the outer side of the telescopic tubes are rotatably provided with a torsion bar, the bottom end of the torsion bar is fixedly provided with a winding wheel, and the outer side of the winding wheel is wound with two wires, the other ends of the two wires are connected with stabilizing mechanisms which are connected with the telescopic pipes.
Preferably, the connecting mechanism comprises a connecting sheet and a connecting screw, a plurality of second connecting holes are formed in the connecting sheet, a plurality of first connecting holes are formed in the two sides of the springboard main body, and the connecting screw is connected to the first connecting holes and the second connecting holes.
Preferably, the supporting mechanism comprises an I-shaped frame and mounting screws, the I-shaped frame is in contact with the bottom of the springboard main body, and the mounting screws are mounted on the springboard main body and the I-shaped frame.
Preferably, stabilizing mean includes the stabilizing piece, the slide bar, a spring, the stabilizing piece, down tube and inserted bar, stabilizing piece fixed mounting has seted up the through hole in the expansion pipe, the slide bar is two and slidable mounting on the stabilizing piece, the stabilizing piece links to each other with two slide bars, the spring is two and fixed mounting between stabilizing piece and stabilizing piece, the wire passes the through hole and links to each other with the stabilizing piece, the one end and the stabilizing piece of down tube rotate to be connected, the other end of down tube rotates with the bottom of inserted bar to be connected, inserted bar slidable mounting has seted up a plurality of slots on the inner wall of horizontal pipe, the inserted bar links to each other with the slot that corresponds, seted up on the inner wall of horizontal pipe and blocked the groove, it blocks the piece to block slidable mounting in the groove, it links to block the outer wall of piece and expansion pipe.
Compared with the prior art, the utility model has the advantages that:
according to the scheme, the springboard main bodies are installed on the I-shaped frame through the installation screws, the two mutually close springboard main bodies are connected through the connecting pieces, the connecting pieces are connected with the springboard main bodies through the connecting screws, the transverse pipes are installed on the plug-in pipes through the transverse pipe locking screws, and the installation and the disassembly are convenient;
when the length of the guardrail main body is adjusted, the rolling wheel is driven to rotate, the rolling wheel rolls two wires, the wires pull the corresponding stabilizing blocks to move, the stabilizing blocks drive the two sliding rods to slide on the stabilizing plates, the stabilizing blocks pull the inserting rods to move downwards through the inclined rods, the inserting rods leave the corresponding inserting grooves, the fixation of the telescopic pipes and the transverse pipes can be relieved, the displacement of the telescopic pipes and the transverse pipes is pulled, the distance between the two inserting pipes can be adjusted or the length of a guardrail cross rod unit can be adjusted, and the protection range of the guardrail can be adjusted;
the quick springboard extending frame is mainly used for erecting the peripheral operation platform of the I-shaped frame, the springboard erecting process is convenient and quick, the material waste is reduced, the springboard can be repeatedly utilized, the erection is safe and reliable, and the injury of personnel and equipment is avoided;
the main body of the springboard is installed in sections and connected through the connecting pieces, the connecting length of the main body of the springboard can be adjusted, the main body of the guardrail is installed after the springboard is connected, and the main body of the guardrail is adjusted according to the actual length.
Drawings
FIG. 1 is a schematic structural view of a quick jump board extension bracket according to the present invention;
FIG. 2 is a schematic structural view of a portion A of the extension bracket of the quick jump board according to the present invention;
fig. 3 is a schematic top view of the springboard main body of the quick springboard extension bracket according to the present invention.
In the figure: 1. a diving board main body; 2. an I-shaped frame; 3. mounting screws; 4. a first connection hole; 5. connecting sheets; 6. a connecting screw; 7. a second connection hole; 8. a guardrail insert rod; 9. inserting a pipe; 10. a guardrail screw; 11. a transverse tube; 12. a transverse pipe locking screw; 13. a telescopic pipe; 14. a torsion bar; 15. a winding wheel; 16. a wire; 17. a stabilizing sheet; 18. a slide bar; 19. a spring; 20. a through hole; 21. a stabilizing block; 22. a diagonal bar; 23. inserting a rod; 24. a slot; 25. a blocking block; 26. blocking the groove.
Detailed Description
The technical solutions in the embodiments will be described clearly and completely with reference to the drawings in the embodiments, and it is obvious that the described embodiments are only a part of the embodiments, but not all embodiments.
Example one
Referring to fig. 1-3, a quick-acting springboard extension bracket comprises a springboard main body 1, a plurality of springboard main bodies 1, a connecting mechanism and a supporting mechanism connected between two mutually adjacent springboard main bodies 1, a plurality of guardrail insertion rods 8 arranged at the top of the springboard main body 1, guardrail main bodies inserted at the top ends of the guardrail insertion rods 8, the guardrail main bodies including two insertion tubes 9 and two guardrail cross rod units, the two guardrail cross rod units located between the two corresponding insertion tubes 9, the insertion tubes 9 connected with the corresponding guardrail insertion rods 8, guardrail screws 10 connected to the insertion tubes 9 and the corresponding guardrail insertion rods 8, the guardrail cross rod units including two transverse tubes 11 and telescopic tubes 13, the two transverse tubes 11 and the corresponding two insertion tubes 9 connected with transverse tube locking screws 12, the two ends of the telescopic tubes 13 slidably connected with the inner sides of the two transverse tubes 11, torsion bars 14 rotatably installed at the outer sides of the telescopic tubes 13, a winding wheel 15 is fixedly installed at the bottom end of the torsion bar 14, two wires 16 are wound on the outer side of the winding wheel 15, and the other ends of the two wires 16 are connected with a stabilizing mechanism which is connected with the telescopic pipe 13.
In this embodiment, coupling mechanism includes connection piece 5 and connecting screw 6, has seted up a plurality of second connecting holes 7 on the connection piece 5, and a plurality of first connecting holes 4 have all been seted up to the both sides of springboard main part 1, and connecting screw 6 is connected on first connecting hole 4 and second connecting hole 7, and the coupling mechanism who sets up is used for linking to each other two springboard main parts 1, and dismantles the convenience.
In this embodiment, the supporting mechanism includes an i-shaped frame 2 and a mounting screw 3, the i-shaped frame 2 contacts with the bottom of the springboard main body 1, the mounting screw 3 is mounted on the springboard main body 1 and the i-shaped frame 2, and the supporting mechanism is used for supporting the springboard main body 1.
In this embodiment, the stabilizing mechanism includes two stabilizing plates 17, two sliding rods 18, two springs 19, two stabilizing blocks 21, two inclined rods 22 and two inserting rods 23, the stabilizing plates 17 are fixedly installed in the telescopic tube 13, through holes 20 are formed in the stabilizing plates 17, the two sliding rods 18 are slidably installed on the stabilizing plates 17, the stabilizing blocks 21 are connected with the two sliding rods 18, the two springs 19 are fixedly installed between the stabilizing blocks 21 and the stabilizing plates 17, the wires 16 penetrate through the through holes 20 to be connected with the stabilizing blocks 21, one end of each inclined rod 22 is rotatably connected with the corresponding stabilizing block 21, the other end of each inclined rod 22 is rotatably connected with the bottom end of the corresponding inserting rod 23, the inserting rods 23 are slidably installed on the telescopic tube 13, a plurality of inserting slots 24 are formed in the inner wall of the transverse tube 11, the inserting rods 23 are connected with the corresponding inserting slots 24, and the stabilizing mechanism is used for connecting the telescopic tube 13 with the transverse tube 11.
In this embodiment, the inner wall of the transverse tube 11 is provided with a blocking groove 26, a blocking block 25 is slidably mounted in the blocking groove 26, the blocking block 25 is connected with the outer wall of the telescopic tube 13, and the blocking block 25 is slidably mounted in the blocking groove 26 to ensure that the telescopic tube 13 can only slide in the transverse tube 11.
In the embodiment, when the device is used, the springboard main body 1 is installed on the i-shaped frame 2 through the installation screw 3, the two mutually close springboard main bodies 1 are connected through the connecting sheet 5, the connecting sheet 5 is connected with the springboard main body 1 through the connecting screw 6, the transverse pipe 11 is installed on the inserting pipe 9 through the transverse pipe locking screw 12, when the distance between the two inserting pipes 9 needs to be adjusted or the length of a guardrail transverse rod unit needs to be adjusted, the torsion bar 14 is rotated, the torsion bar 14 drives the winding wheel 15 to rotate, the winding wheel 15 winds two conducting wires 16, the conducting wires 16 drive the corresponding stabilizing blocks 21 to move, the stabilizing blocks 21 drive the two sliding rods 18 to slide on the stabilizing sheets 17, the stabilizing blocks 21 drive the inserting rods 23 to move downwards through the inclined rods 22, the inserting rods 23 leave the corresponding slots 24, the fixation between the telescopic pipe 13 and the transverse pipe 11 can be released, and the telescopic pipe 13 and the transverse pipe 11 are driven to move, the distance between the two inserting pipes 9 can be adjusted or the length of the guardrail cross bar unit can be adjusted, the guardrail protection range can be adjusted, after the proper adjustment is carried out, the torsion bar 14 is loosened, the inserting rods 23 enter the corresponding inserting grooves 24 under the elastic force action of the springs 19, the telescopic pipes 13 can be connected with the transverse pipes 11, the inserting pipes 9 are inserted into the corresponding guardrail inserting rods 8 and are connected through guardrail screws 10 to be used; when the guardrail is disassembled, the guardrail screw 10 can be disassembled, the guardrail main body can be disassembled, the mounting screw 3 and the connecting screw 6 can be disassembled, and the springboard main body 1 can be disassembled.
Example two
Referring to fig. 1-3, a quick-acting springboard extension bracket comprises a springboard main body 1, a plurality of springboard main bodies 1, a connecting mechanism and a supporting mechanism connected between two mutually adjacent springboard main bodies 1, a plurality of guardrail insertion rods 8 arranged at the top of the springboard main body 1, guardrail main bodies inserted at the top ends of the guardrail insertion rods 8, the guardrail main bodies including two insertion tubes 9 and two guardrail cross rod units, the two guardrail cross rod units located between the two corresponding insertion tubes 9, the insertion tubes 9 connected with the corresponding guardrail insertion rods 8, guardrail screws 10 connected to the insertion tubes 9 and the corresponding guardrail insertion rods 8, the guardrail cross rod units including two transverse tubes 11 and telescopic tubes 13, the two transverse tubes 11 and the corresponding two insertion tubes 9 connected with transverse tube locking screws 12, the two ends of the telescopic tubes 13 slidably connected with the inner sides of the two transverse tubes 11, torsion bars 14 rotatably installed at the outer sides of the telescopic tubes 13, a winding wheel 15 is fixedly installed at the bottom end of the torsion bar 14, two wires 16 are wound on the outer side of the winding wheel 15, and the other ends of the two wires 16 are connected with a stabilizing mechanism which is connected with the telescopic pipe 13.
In this embodiment, coupling mechanism includes connection piece 5 and connecting screw 6, has seted up a plurality of second connecting holes 7 on the connection piece 5, and a plurality of first connecting holes 4 have all been seted up to the both sides of springboard main part 1, and connecting screw 6 is connected on first connecting hole 4 and second connecting hole 7, and the coupling mechanism who sets up is used for linking to each other two springboard main parts 1, and dismantles the convenience.
In this embodiment, the supporting mechanism includes an i-shaped frame 2 and a mounting screw 3, the i-shaped frame 2 contacts with the bottom of the springboard main body 1, the mounting screw 3 is mounted on the springboard main body 1 and the i-shaped frame 2, and the supporting mechanism is used for supporting the springboard main body 1.
In this embodiment, the stabilizing mechanism includes two stabilizing plates 17, two sliding rods 18, two springs 19, two stabilizing blocks 21, two inclined rods 22 and two inserting rods 23, the stabilizing plates 17 are fixedly installed in the telescopic tube 13, through holes 20 are formed in the stabilizing plates 17, the two sliding rods 18 are slidably installed on the stabilizing plates 17, the stabilizing blocks 21 are connected with the two sliding rods 18, the two springs 19 are fixedly installed between the stabilizing blocks 21 and the stabilizing plates 17, the wires 16 penetrate through the through holes 20 to be connected with the stabilizing blocks 21, one end of each inclined rod 22 is rotatably connected with the corresponding stabilizing block 21, the other end of each inclined rod 22 is rotatably connected with the bottom end of the corresponding inserting rod 23, the inserting rods 23 are slidably installed on the telescopic tube 13, a plurality of inserting slots 24 are formed in the inner wall of the transverse tube 11, the inserting rods 23 are connected with the corresponding inserting slots 24, and the stabilizing mechanism is used for connecting the telescopic tube 13 with the transverse tube 11.
In this embodiment, the inner wall of the transverse tube 11 is provided with a blocking groove 26, a blocking block 25 is slidably mounted in the blocking groove 26, the blocking block 25 is connected with the outer wall of the telescopic tube 13, and the blocking block 25 is slidably mounted in the blocking groove 26 to ensure that the telescopic tube 13 can only slide in the transverse tube 11.
In this embodiment, a torsion plate is disposed at the top end of the torsion bar 14, and a screw is connected to the torsion plate through a thread, and the screw is in contact with the extension tube 13.
The difference between the second embodiment and the first embodiment is that: the twist-in screw secures the twist disk to the torsion bar 14 and releases the torsion bar 14 when adjusting the telescopic tube 13.
The above descriptions are only preferred embodiments of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the scope of the present invention, and the technical solutions and the utility model concepts of the present invention are equivalent to, replaced or changed.
Claims (5)
1. A quick type springboard extending support comprises a springboard main body (1) and is characterized in that the springboard main body (1) is provided with a plurality of springboard main bodies (1), a connecting mechanism and a supporting mechanism are connected between two mutually close springboard main bodies (1), a plurality of guardrail inserting rods (8) are arranged at the top of the springboard main body (1), guardrail main bodies are inserted at the top ends of the guardrail inserting rods (8), each guardrail main body comprises two inserting pipes (9) and two guardrail cross rod units, the two guardrail cross rod units are positioned between the two corresponding inserting pipes (9), the inserting pipes (9) are connected with the corresponding guardrail inserting rods (8), the inserting pipes (9) and the corresponding guardrail inserting rods (8) are connected with guardrail screws (10), each guardrail cross rod unit comprises two transverse pipes (11) and telescopic pipes (13), the two transverse pipes (11) and the two corresponding inserting pipes (9) are connected with transverse pipe locking screws (12), the two ends of the telescopic pipe (13) are connected with the inner sides of the two transverse pipes (11) in a sliding mode, a torsion bar (14) is rotatably installed on the outer side of the telescopic pipe (13), a winding wheel (15) is fixedly installed at the bottom end of the torsion bar (14), two wires (16) are wound on the outer side of the winding wheel (15), the other ends of the two wires (16) are connected with a stabilizing mechanism, and the stabilizing mechanism is connected with the telescopic pipe (13).
2. The quick-type springboard extending support of claim 1, wherein the connecting mechanism comprises a connecting piece (5) and a connecting screw (6), the connecting piece (5) is provided with a plurality of second connecting holes (7), both sides of the springboard main body (1) are provided with a plurality of first connecting holes (4), and the connecting screw (6) is connected to the first connecting holes (4) and the second connecting holes (7).
3. The quick-change springboard extension bracket of claim 1, characterised in that the support mechanism comprises an i-shaped frame (2) and a mounting screw (3), the i-shaped frame (2) is in contact with the bottom of the springboard body (1), and the mounting screw (3) is mounted on the springboard body (1) and the i-shaped frame (2).
4. The quick jump board extension bracket according to claim 1, wherein the stabilizing mechanism comprises two stabilizing pieces (17), two sliding rods (18), two springs (19), two stabilizing blocks (21), two inclined rods (22) and two inserting rods (23), the stabilizing pieces (17) are fixedly installed in the telescopic tube (13), through holes (20) are formed in the stabilizing pieces (17), the two sliding rods (18) are slidably installed on the stabilizing pieces (17), the stabilizing blocks (21) are connected with the two sliding rods (18), the two springs (19) are fixedly installed between the stabilizing blocks (21) and the stabilizing pieces (17), a wire (16) passes through the through holes (20) and is connected with the stabilizing blocks (21), one end of the inclined rod (22) is rotatably connected with the stabilizing blocks (21), the other end of the inclined rod (22) is rotatably connected with the bottom end of the inserting rod (23), and the inserting rod (23) is slidably installed on the telescopic tube (13), a plurality of slots (24) are formed in the inner wall of the transverse pipe (11), and the inserted rods (23) are connected with the corresponding slots (24).
5. The quick springboard extension bracket of claim 4, characterised in that the inner wall of the transverse tube (11) is provided with a blocking groove (26), a blocking block (25) is slidably mounted in the blocking groove (26), and the blocking block (25) is connected with the outer wall of the telescopic tube (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122191958.1U CN215760397U (en) | 2021-09-10 | 2021-09-10 | Quick type springboard extension support |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122191958.1U CN215760397U (en) | 2021-09-10 | 2021-09-10 | Quick type springboard extension support |
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CN215760397U true CN215760397U (en) | 2022-02-08 |
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CN202122191958.1U Active CN215760397U (en) | 2021-09-10 | 2021-09-10 | Quick type springboard extension support |
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2021
- 2021-09-10 CN CN202122191958.1U patent/CN215760397U/en active Active
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