CN219619338U - Float bowl - Google Patents

Float bowl Download PDF

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Publication number
CN219619338U
CN219619338U CN202320045040.2U CN202320045040U CN219619338U CN 219619338 U CN219619338 U CN 219619338U CN 202320045040 U CN202320045040 U CN 202320045040U CN 219619338 U CN219619338 U CN 219619338U
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CN
China
Prior art keywords
bolt
groove
pontoon
spring
rotating
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Active
Application number
CN202320045040.2U
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Chinese (zh)
Inventor
赵柱深
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Dongguan Mengfeng Industrial Co ltd
Original Assignee
Dongguan Mengfeng Industrial Co ltd
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Priority to CN202320045040.2U priority Critical patent/CN219619338U/en
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Publication of CN219619338U publication Critical patent/CN219619338U/en
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Abstract

The utility model provides a flotation pontoon, including the flotation pontoon is whole, the holistic four corners department of flotation pontoon all is provided with the engaging lug, the bolt hole has been seted up to the engaging lug, the bolt has been pegged graft in the bolt, the bolt chamber has been seted up in the bolt chamber, sliding in the bolt chamber sets up the linkage post, spring chamber has been seted up in the linkage post, the spring intracavity is provided with the movable rod, the spring intracavity is provided with resumes the subassembly, the spring intracavity rotation is provided with the dwellings, the side of dwellings is provided with the vertical lift groove of seting up of a plurality of and the swivelling chute of spiral, the lift groove is crisscross with rotate the groove and distribute, lift groove and swivel groove head and tail connection, the crossing department of lift groove and swivelling chute is connected with guide assembly, the movable rod slides and sets up in the lift groove, swivel groove and guide assembly, the bottom of linkage post is provided with the gag lever post, when the bolt is the locking state, one side that the protruding bolt of one end of gag lever post. Through moving the piece in lift groove, rotation groove and guide slot, only need press the unblock and the locking state that link post can change the bolt, not only save time but also laborsaving.

Description

Float bowl
Technical Field
The utility model relates to the technical field of water platform equipment, in particular to a pontoon.
Background
We tend to see motorboats moored at the jetty in some water parks, jetty clubs, motorboat clubs. In order to avoid the problem that the motorboat can corrode the bottom of the boat due to long-time contact with water, people commonly use a pontoon as a berth, wherein the pontoon comprises a V-shaped pontoon and an A-shaped pontoon, and the V-shaped pontoon and the A-shaped pontoon are mutually assembled to form the motorboat berth.
The pontoon comprises a pontoon body and connecting lugs, the connecting lugs of each pontoon are required to be overlapped in order to ensure the firmness and stability between the pontoon and the pontoon, the connecting lugs are provided with bolt holes, and the bolts are inserted into the overlapped bolt holes between the pontoons. Two rotation holes are formed in the upper surface of the bolt, and a torque wrench is inserted into the rotation holes to rotate, so that a connection hemisphere of the bolt is buckled with the pontoon.
The pontoon among the related art, when needing to install or dismantle the cylinder, need adopt torque wrench to rotate the bolt one by one for bolt and engaging lug are fixed or separation, and this kind of mode has both wasted time and has wasted energy.
Disclosure of Invention
In order to improve the phenomenon that the installation or the disassembly of the bolt is time-consuming and labor-consuming when the torque wrench is installed or disassembled between the pontoons, the utility model provides the pontoon.
The utility model provides a pontoon which adopts the following technical scheme:
the utility model provides a flotation pontoon, includes the flotation pontoon is whole, the holistic four corners department of flotation pontoon all is provided with the engaging lug, the engaging lug has been seted up the bolt hole, the bolt hole is pegged graft and is had the bolt, the bolt chamber has been seted up in the bolt chamber, the slip sets up the interlock post in the interlock post, the spring chamber has been seted up, the spring intracavity is provided with the movable rod, the spring intracavity is provided with resumes the subassembly, the spring intracavity rotation is provided with the rotation post, the side of rotation post is provided with the vertical lift groove of seting up of a plurality of and the rotation groove of spiral, the lift groove with rotate groove head and tail connection, the lift groove with the crossing department of rotation groove is connected with guide assembly, the movable rod slide set up in the lift groove with in the guide assembly, the bottom of interlock post is provided with the gag lever post, when the bolt is the state, the one end of gag lever post is outstanding one side of bolt.
Through adopting above-mentioned technical scheme, when needs connect the installation between the buoy whole and the buoy whole, closely coincide the engaging lug that corresponds between buoy whole and the buoy whole, slide on the diagonal of inserting the gag lever post alignment bolt with the bolt bottom again. The movable rod is moved along the lower edge of the rotating groove at the intersection of the rotating groove and the guide assembly until the bottom end of the other group of lifting grooves is reached, the limiting rod rotates at the moment, one side of the limiting rod protrudes out of the plug pin, and the top surface of the limiting rod is abutted to the bottom surface of the connecting lug, so that the connection between the whole pontoon and the whole pontoon is firm.
Because the action of the restoring component, the restoring component drives the linkage column to move upwards and downwards, so that the moving rod is restored to the intersection of the lifting groove and the rotating groove of the same group from the bottom end of the lifting groove of the other group, and the linkage column is restored to the original state. When the pontoon is required to be disassembled from the pontoon body, the linkage column is pressed down, and the movable rod is matched with the lifting groove, the rotary groove and the guide assembly, so that the limit rod rotates back to the diagonal position of the bolt hole, at the moment, one end of the limit rod, which is far away from the rotary column, is positioned right below the diagonal position of the bolt hole, the linkage column is waited to recover to the original state, the bolt is taken out, and the pontoon body are separated.
Through the removal of moving part at lift groove, rotation groove and guide assembly, drive the rotation post and rotate, consequently drive the rotation of gag lever post, because the gag lever post equals with the half of the diagonal of bolt hole, rotatory in-process can the unblock when being in on the diagonal, can the locking when not being in on the diagonal.
Preferably, the guide assembly comprises a guide groove, the guide groove is obliquely arranged, and the joint of the guide groove and the rotating groove is positioned right above the lower edge of the rotating groove.
Through adopting above-mentioned technical scheme, when the trace received spring elastic potential energy and resumes the state when not pressing, the carriage release lever removes to the top of carriage release lever by the bottom of lift groove, because the guide groove is the slope setting, and the guide carriage release lever removes to the intersection department of guide groove and rotation groove from the top of lift groove, and the junction of guide groove and rotation groove is located directly over the lower edge of rotation groove, when pressing the trace, the lower edge butt of carriage release lever and rotation groove moves along the rotation groove spiral.
Preferably, the bolt hole is square, and the length of the limiting rod is equal to half of the diagonal line of the bolt hole.
Through adopting above-mentioned technical scheme, when aiming at the diagonal slip of bolt hole and inserting the back, when pressing the linkage post, the linkage post drives movable rod elevating movement, and the movable rod is followed the junction of rotation groove and guide slot, along the lower edge motion of rotation groove, when reaching the bottom of another group lift groove, the gag lever post outstanding one side of bolt this moment, can fix the bolt. When the linkage column is pressed down again, the limiting rod returns to the diagonal line at the moment, and the bolt can be taken out.
Preferably, one end of the limiting rod, which is far away from the rotating column, is arranged in a pointed cone shape.
By adopting the technical scheme, the end of the limiting rod is arranged in a pointed cone shape, so that when the bolt is aligned with the diagonal line of the bolt hole, the end of the limiting block cannot protrude out of the bolt.
Preferably, the restoring assembly comprises a spring, one end of the spring is abutted against the top surface of the spring cavity, and the other end of the spring is abutted against the top surface of the linkage post.
By adopting the technical scheme, as the spring releases elastic potential energy, the linkage column receives the energy of the elastic potential energy and moves upwards and downwards, and therefore, the movable rod is restored to the connection part of the rotating groove and the guide groove from the bottom end of the lifting groove.
Preferably, the upper surface of the whole pontoon is provided with an anti-slip roller, and a plurality of lugs are arranged on the periphery of the anti-slip roller at certain intervals.
By adopting the technical scheme, when the motorboat needs to be stopped on the pontoon or pushed into water, the roller can be used for driving the motorboat to move, so that the use of force is reduced. The friction force between the roller and the motorboat can be increased by the plurality of convex blocks on the periphery of the anti-skid roller, and the anti-skid effect on the motorboat can be increased.
Preferably, a button cover is arranged at the top end of the plug pin cavity, and the button cover is buckled on the plug pin cavity.
Through adopting above-mentioned technical scheme, the top in bolt chamber is provided with the button lid, and after the bolt is fixed, covers the button lid, can prevent that other people from touching the interlock post by mistake.
Preferably, the upper surface of the bolt is provided with an anti-slip point, and the top surface of the button cover is provided with an anti-slip point.
Through adopting above-mentioned technical scheme, when covering the button lid, be provided with the skid-proof point the same with the bolt upper surface on the surface of button lid, can play the effect of preventing the landing after the people stands above.
In summary, the present utility model includes at least one of the following beneficial technical effects:
1. through the removal of moving part at lift groove, rotation groove and guiding groove, drive the rotation post and rotate, consequently drive the rotation of gag lever post, because the gag lever post equals with the half of the diagonal of bolt hole, rotatory in-process can unlock when being in the diagonal, can lock when not being in on the diagonal. The unlocking and locking states of the bolt can be changed only by pressing the linkage column, so that time and labor are saved.
2. The linkage column can be restored to the original state by utilizing the elastic potential energy of the spring, so that the movable rod moves from the lower end of the lifting groove to the connection position of the guide groove and the rotating groove.
3. When people stop the motorboat on the pontoon or push into the water, because the design of the anti-skidding roller, the labor can be saved, and the circumference side of the anti-skidding roller is provided with the convex blocks, so that the friction force between the bottom of the motorboat and the anti-skidding roller is further increased, and the anti-skidding effect on the motorboat is improved.
Drawings
FIG. 1 is a schematic view of the overall structure in the present embodiment;
FIG. 2 is a schematic view showing the internal structure of the latch in the present embodiment;
figure 3 is a schematic view of the deployment of the steering column in this embodiment,
fig. 4 is a schematic view showing the relationship between the stopper rod and the bolt hole in the present embodiment.
Reference numerals illustrate: 10. the pontoon is integral; 11. a concave portion; 12. a cartridge cavity; 13. a buckle; 14. an anti-slip roller; 15. a bump; 16. an anti-slip strip; 17. a connecting lug; 18. a bolt hole; 19. a plug pin; 20. a button cover; 21. an anti-slip point; 22. a plug pin cavity; 23. a linkage column; 24. a button; 25. a spring cavity; 26. a spring; 27. rotating the column; 28. a rotating groove; 29. a lifting groove; 30. a guide groove; 31. a moving rod; 32. a bottom opening; 33. and a limit rod.
Detailed Description
The utility model is described in further detail below with reference to fig. 1-3.
A buoy, referring to figure 1, comprises a buoy body 10, wherein a concave part 11 for placing the bottom of a motorboat is arranged in the center of the upper surface of the buoy body 10, and the concave part 11 is arranged in an arc shape with two sides high and a middle bottom. The upper surface of concave part 11 has seted up cassette chamber 12, and buckle 13 is installed on the both ends in cassette chamber 12. The anti-slip roller 14 is rotatably mounted on the concave 11, the anti-slip roller 14 is mounted along the horizontal direction of the buoy 10, a plurality of bumps 15 are mounted on the circumference of the anti-slip roller 14 at certain intervals, and two ends of the anti-slip roller 14 are buckled on the buckles 13. The two sides of the groove are connected with a plurality of anti-slip strips 16, and the anti-slip strips 16 are distributed at certain intervals. Four connecting lugs 17 are connected to the buoy body 10, and the four connecting lugs 17 are distributed at four corners of the buoy body 10 in a staggered manner. The connecting lug 17 is provided with a bolt hole 18, the bolt hole 18 is square, the bolt hole 18 penetrates through the upper surface and the lower surface of the connecting lug 17, when the buoy body 10 and the buoy body 10 are required to be connected and installed, the buoy body 10 and the connecting lug 17 corresponding to the buoy body 10 are required to be closely overlapped, at the moment, the bolt 19 is slidably inserted in the bolt hole 18, and the connection between the buoy body 10 and the buoy body 10 is fixed through the action of the bolt 19.
Referring to fig. 1 and 2, the latch 19 is provided in a square shape, an anti-slip point 21 is provided on an upper surface of the latch 19, a button cover 20 is rotatably installed at a top end of the latch 19, and an anti-slip point 21 is provided on a top surface of the button cover 20. The bolt 19 is internally provided with a bolt 19 cavity, and the bolt 19 cavity is in a cylindrical shape. The cavity of the bolt 19 is communicated with the upper surface of the bolt 19. The button cover 20 is buckled at the top of the cavity of the bolt 19, the linkage column 23 is slidably arranged in the cavity of the bolt 19, and the button 24 is fixedly connected to the top of the linkage column 23.
Referring to fig. 2 and 3, a spring cavity 25 is formed in the linkage column 23, the spring cavity 25 is in a cylindrical shape, the spring cavity 25 penetrates through the lower surface of the linkage column 23, a spring 26 is installed in the spring cavity 25, a rotary column 27 is installed in the spring cavity 25 in a rotary mode, one end of the spring 26 is abutted to the top of the spring cavity 25, and the other end of the spring 26 is abutted to the top surface of the linkage column 23. Eight sets of rotating grooves 28 and lifting grooves 29 are respectively formed in a staggered manner in the side face of the rotating column 27, the lifting grooves 29 are vertically arranged, the rotating grooves 28 are spirally arranged, a guide groove 30 is connected between the top end of the lifting groove 29 and the top end of the rotating groove 28, the guide groove 30 is obliquely arranged, the connection position of the guide groove 30 and the rotating groove 28 is located right above the lower edge of the rotating groove 28, and the bottom of the lifting groove 29 is connected with the bottom of the other set of rotating groove 28. The inner wall of the spring cavity 25 is horizontally provided with a moving rod 31, and the moving rod 31 is slidably inserted into the guide groove 30, the rotating groove 28 and the lifting groove 29.
Referring to fig. 3 and 4, the bottom surface of the latch 19 is provided with a bottom opening 32, one end of the rotating column 27 away from the spring 26 is rotatably arranged outside the bottom opening 32, one end of the rotating column 27 away from the spring 26 is connected with a limit rod 33, and the limit rod 33 is horizontally arranged along the latch 19. The cross section of bolt 19 and bolt hole 18 grafting complex one end personally submits the square setting, and the pivoted post 27 is located the center pin of bolt 19, and the one end protrusion bolt 19's of pivoted post 27 side is kept away from to gag lever post 33, and the length of gag lever post 33 is the half of bolt hole 18 diagonal, and gag lever post 33 goes up and down to slide in bolt hole 18, and when the unblock state, gag lever post 33 is located the diagonal of bolt hole 18.
The implementation principle of the utility model is as follows: when the pontoon whole 10 and the pontoon whole 10 need to be connected and installed, the corresponding connecting lugs 17 between the pontoon whole 10 and the pontoon whole 10 are closely overlapped, and then the limit rods 33 at the bottom ends of the bolts 19 are aligned with the diagonal sliding insertion of the bolt holes 18. At this time, the button cover 20 is opened, the button 24 is pressed while the spring 26 is compressed, and the button 24 is fixedly connected with the linkage post 23, so that the linkage post 23 is driven to move up and down while the button 24 is pressed. One side of the lower end of the linkage column 23 is inserted with a moving rod 31, the linkage column 23 moves up and down, and simultaneously drives the moving rod 31 to move up and down, the moving rod 31 moves downwards along the lower edge of the rotating groove 28 from the intersection of the rotating groove 28 and the guide groove 30 until reaching the bottom end of the other lifting groove 29, at this time, the limiting rod 33 rotates by 45 degrees, the top surface of the limiting rod 33 is abutted with the bottom surface of the connecting lug 17, and the limiting rod 33 protrudes out of one side of the bolt hole 18, so that the connection between the pontoon whole 10 and the pontoon whole 10 is firm.
Since the spring 26 releases the elastic potential energy, the link post 23 receives the energy of the elastic potential energy to perform the upward lifting movement, so that the moving rod 31 moves from the bottom end of the other lifting groove 29 to the upper end of the other lifting groove 29, the button 24 is restored to the original state, and the button cover 20 is covered.
When the pontoon assembly 10 and the pontoon assembly 10 need to be disassembled, the button cover 20 is opened, the button 24 is pressed, the movable rod 31 is matched with the other group of lifting grooves 29 and the rotating grooves 28, the limiting rod 33 rotates 45 degrees, the limiting rod 33 is positioned on the diagonal line of the bolt hole 18, at the moment, the limiting rod 33 is positioned right below the diagonal line of the bolt hole 18, the button 24 is waited to restore to the original state, the button cover 20 is covered, the bolt 19 is taken out, and the pontoon assembly 10 are separated.
The above embodiments are not intended to limit the scope of the present utility model, so: all equivalent changes in structure, shape and principle of the utility model should be covered in the scope of protection of the utility model.

Claims (8)

1. The utility model provides a flotation pontoon, includes flotation pontoon whole (10), all be provided with engaging lug (17) in the four corners department of flotation pontoon whole (10), bolt hole (18) have been seted up to engaging lug (17), bolt hole (18) are pegged graft and are had bolt (19), its characterized in that: the novel lock pin is characterized in that a plug pin (19) cavity is formed in the plug pin (19), a linkage column (23) is arranged in the plug pin (19) cavity in a sliding mode, a spring cavity (25) is formed in the linkage column (23), a moving rod (31) is arranged in the spring cavity (25), a recovery assembly is arranged in the spring cavity (25), a rotating column (27) is arranged in the spring cavity (25) in a rotating mode, a plurality of vertically-formed lifting grooves (29) and spirally-formed rotating grooves (28) are formed in the side face of the rotating column (27), the lifting grooves (29) and the rotating grooves (28) are distributed in a staggered mode, the lifting grooves (29) are connected with the head and tail of the rotating grooves (28), the moving rod (31) is arranged in the lifting grooves (29) in a sliding mode and in the guide assembly, a limit rod (33) is arranged at the bottom end of the linkage column (23), and one end of the plug pin (19) protrudes out of one side of the plug pin (33) in a locking mode.
2. A pontoon according to claim 1, characterized in that: the guide assembly comprises a guide groove (30), the guide groove (30) is obliquely arranged, and the joint of the guide groove (30) and the rotating groove (28) is located right above the lower edge of the rotating groove (28).
3. A pontoon according to claim 1, characterized in that: the bolt hole (18) is square, and the length of the limiting rod (33) is equal to half of the diagonal line of the bolt hole (18).
4. A pontoon according to claim 3, characterized in that: one end of the limiting rod (33) far away from the rotating column (27) is in a sharp cone shape.
5. A pontoon according to claim 1, characterized in that: the restoring assembly comprises a spring (26), one end of the spring (26) is abutted against the top surface of the spring cavity (25), and the other end of the spring (26) is abutted against the top surface of the linkage post (23).
6. A pontoon according to claim 1, characterized in that: the upper surface of the buoy body (10) is provided with an anti-slip roller (14), and a plurality of lugs (15) are arranged on the periphery of the anti-slip roller (14) at certain intervals.
7. A pontoon according to claim 1, characterized in that: the top of the plug pin (19) cavity is provided with a button cover (20), and the button cover (20) is buckled on the plug pin (19) cavity.
8. A pontoon according to claim 7, characterized in that: the top surface of the button cover (20) is provided with an anti-slip point (21).
CN202320045040.2U 2023-01-03 2023-01-03 Float bowl Active CN219619338U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320045040.2U CN219619338U (en) 2023-01-03 2023-01-03 Float bowl

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320045040.2U CN219619338U (en) 2023-01-03 2023-01-03 Float bowl

Publications (1)

Publication Number Publication Date
CN219619338U true CN219619338U (en) 2023-09-01

Family

ID=87793823

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320045040.2U Active CN219619338U (en) 2023-01-03 2023-01-03 Float bowl

Country Status (1)

Country Link
CN (1) CN219619338U (en)

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