CN218233355U - Pond dam geomembrane laying device - Google Patents

Pond dam geomembrane laying device Download PDF

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Publication number
CN218233355U
CN218233355U CN202222273191.1U CN202222273191U CN218233355U CN 218233355 U CN218233355 U CN 218233355U CN 202222273191 U CN202222273191 U CN 202222273191U CN 218233355 U CN218233355 U CN 218233355U
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China
Prior art keywords
fixed
rod
frame
geomembrane
limiting
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CN202222273191.1U
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Chinese (zh)
Inventor
梅召峰
王坚
刘加炜
魏银
吴柯
石卉
杨振龙
毛江彦
王辉
靳旭
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Sinohydro Engineering Bureau 4 Co Ltd
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Sinohydro Engineering Bureau 4 Co Ltd
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Abstract

The utility model provides a small reservoir dam geomembrane laying device belongs to construction technical field, and it has solved when current laying device can not adjust according to the different size of geomembrane, makes and lays more smooth problem. This pond dam geomembrane laying device lays the frame including two, and two are laid and are fixed with the piece of obstacles removing between the frame, lay and have seted up the standing groove on the frame, and standing groove sliding connection has the pole of placing, places and has seted up the through-hole on the pole, is provided with the reel roller in the through-hole, and the both ends of reel roller are all through fastening bolt fixed connection, are provided with two sets of fixed subassemblies on the reel roller, and two are laid and are fixed with the gag lever post between the frame, have seted up logical chamber in the gag lever post, lead to the intracavity and be provided with spacing subassembly. The utility model has the advantages of can adjust the size according to the different width of geomembrane, make the device make in the course of the work lay more level and more smooth.

Description

Pond dam geomembrane laying device
Technical Field
The utility model belongs to the technical field of the construction, a laying device, especially a small reservoir dam geomembrane laying device is related to.
Background
The geomembrane is a seepage-proofing and damp-proofing waterproof building material which is compounded by a plastic film serving as a seepage-proofing base material and non-woven fabrics, the seepage-proofing performance of the geomembrane mainly depends on the seepage-proofing performance of the plastic film, and the geomembrane is used for hydraulic engineering such as building warehouses, dams, cofferdams, canals, artificial lakes, reservoirs and the like.
The geomembrane needs many people cooperation operation at the laying process now, and the cost of labor is higher, and during manual operation, it is balanced to be difficult to accomplish strength moreover, so lay the degree of difficulty great, consuming time power.
Through retrieval, as disclosed in chinese patent literature, a geomembrane laying device [ application No.: 202210691544.1; publication No.: CN 114855757A ]. The device comprises a laying frame, a geomembrane arranged on the laying frame, inner supporting mechanisms are inserted into the inner sides of the two ends of the geomembrane, the end parts of the inner supporting mechanisms are arranged on the laying frame, the laying frame comprises a left side plate and a right side plate, a plurality of telescopic supporting rods are arranged between the left side plate and the right side plate, geomembrane bottom supporting components are arranged on the telescopic supporting rods of the two sides close to the bottom of the laying frame, U-shaped limiting grooves are formed in the top surfaces of the left side plate and the right side plate, and the outer ends of the inner supporting mechanisms at the two ends of the geomembrane are respectively arranged in the U-shaped limiting grooves of the two sides.
Although the geomembrane laying device disclosed in the patent is simple in structure and convenient to use, the geomembrane can be efficiently laid, a large amount of manpower and material resources are saved, the laying efficiency is greatly improved, but the device is not only troublesome to operate in the use process, but also cannot be adjusted according to different width sizes of the geomembrane, so that the working efficiency is not high, uneven conditions possibly exist in the tiling process, and great inconvenience is brought to the work of workers.
SUMMERY OF THE UTILITY MODEL
The utility model aims at having the above-mentioned problem to current technique, proposed a small reservoir dam geomembrane laying device, the technical problem that this utility model will solve is: how to carry out leveling laying to the geomembrane when, can carry out adjusting device according to the size geomembrane of difference to improve the effect of laying.
The purpose of the utility model can be realized by the following technical proposal:
the utility model provides a small reservoir geomembrane laying device, lay the frame, two lay and be fixed with the piece of obstacles removing between the frame, lay and seted up the standing groove on the frame, standing groove sliding connection has the pole of placing, place and seted up the through-hole on the pole, be provided with the reel roller in the through-hole, the both ends of reel roller are all through fastening bolt fixed connection, be provided with two sets of fixed subassemblies on the reel roller, two are laid and are fixed with the gag lever post between the frame, it leads to the chamber to have seted up in the gag lever post, lead to the intracavity and be provided with spacing subassembly, fixed subassembly is connected with spacing subassembly, it rotates to be connected with the removal wheel to lay one side of keeping away from the gag lever post on the frame, it is fixed with the seat that pushes away on the seat, be fixed with the pushing hands.
The utility model discloses a theory of operation is: the user places the geomembrane on the reel roller earlier, it is fixed in the standing groove to place the rethread placing rod, readjust the position between two sets of fixed subassemblies, place fixed subassembly on suitable spacing subassembly according to the size of geomembrane and fix, pass spacing subassembly with one side of geomembrane again and place on the ground, it removes to promote the handle drive and remove the wheel, it removes to remove the wheel drive and lays the frame, it removes to lay the frame drive clearance piece, clearance piece is clear away great stone on the road of laying, prevent the geomembrane of gouging, the geomembrane can slide on the reel roller this moment, thereby lay.
The pushing handle comprises a pushing rod, one end of the pushing rod is fixedly connected with the pushing seat, the other end of the pushing rod is fixedly provided with a holding rod, the other end of the holding rod is fixedly provided with a fixing column, and the diameter of the holding rod is smaller than that of the pushing rod and the fixing column.
By adopting the structure, when the electric hand-holding rod works, a user places a hand on the holding rod, the hand slip in the pushing process is effectively prevented, and the stress is more stable.
Fixed subassembly is including removing the dish, removes dish and spool roller sliding connection, removes to be fixed with the hang plate on the dish, and the other end of hang plate is fixed with the fixed disk, fixed disk and gag lever post sliding connection, and fixed disk and spacing subassembly cooperation.
Structure more than adopting, during the adjustment size, at first remove the fixed disk on the gag lever post, the fixed disk drives the hang plate and removes, and the hang plate drives the removal dish and removes, removes the dish and removes on the spool roller, after removing suitable position, carries on spacingly to the fixed disk through spacing subassembly to carry on spacingly to the geomembrane, prevent to take place the displacement at the in-process of laying, the effect is laid in the influence.
The improved telescopic plate is characterized in that a first cross rod is fixed on the inclined plate, the other end of the first cross rod is connected with a telescopic cylinder in a sliding mode, the other end of the telescopic cylinder is connected with a second cross rod in a sliding mode, the second cross rod is fixedly connected with the other inclined plate, smoothing blocks are fixed on the first cross rod, the second cross rod and the telescopic cylinder, smoothing claws are fixed on the smoothing blocks, connecting rods are fixed on the smoothing blocks located on the telescopic cylinder, and the other end of each connecting rod is fixedly connected with a limiting rod.
Structure more than adopting, during the adjustment position, the hang plate removes and can drive first horizontal pole and second horizontal pole and remove in opposite directions, thereby first horizontal pole and second horizontal pole slip shrink in a flexible section of thick bamboo drive the smooth piece removal on first horizontal pole and the second horizontal pole, smooth the piece and drive and smooth the claw and remove to the messenger smooths the claw and smooths the different positions of geomembrane all the time, makes the device lay more level and more smooth.
Lead to having seted up a plurality of slope slide openings on the chamber, spacing subassembly includes spacing seat, and the one end of spacing seat is passed the slope slide opening and is located and lead to the chamber outside, and the other end of spacing seat rotates and is connected with the pull rod, and the one end of pull rod is fixed with the spring, the other end of spring with lead to intracavity wall fixed connection, the other end of pull rod is provided with the block group.
Structure more than adopting, the during operation, pulling block subassembly, block subassembly drive pull rod motion, and the pull rod drives the spring motion, and the pull rod also can drive spacing seat and contract along the inclined hole simultaneously and go into, can freely adjust the position of fixed disk this moment to convenient size adjustment position according to the geomembrane, after the adjustment is accomplished, loosen the block subassembly, make spacing seat return the normal position under the effect of spring, thereby fix the geomembrane.
The clamping component comprises an extension rod, the extension rod is rotatably connected with one end of the pull rod, the other end of the extension rod is located on the outer side of the through cavity, a limiting plate is fixed on the extension rod, a limiting frame is fixed on the limiting rod, and the limiting plate is matched with the limiting frame.
By adopting the structure, a user pulls the extension rod, the extension rod drives the pull rod to move and simultaneously drives the limiting plate to move, the extension rod is rotated after the limiting seat is put into the inclined sliding hole, the limiting plate is abutted against the limiting frame, so that the fixing position is conveniently adjusted, after the adjustment is completed, the extension rod is reversely rotated, the limiting plate is not in contact with the limiting frame, and the device returns to the original position under the action of the spring.
Compared with the prior art, the device for laying the geomembrane of the small reservoir has the advantages that:
1. the user places the geomembrane earlier on the reel roller, the rethread is placed the pole and is placed in the standing groove and fix, readjust the position between two sets of fixed subassemblies, place fixed subassembly on suitable spacing subassembly according to the size of geomembrane and fix, pass spacing subassembly with one side of geomembrane again and place on the ground, it removes to promote the handle drive and remove the wheel, it removes to remove the wheel drive and lays the frame, it removes to lay the frame drive and clears away the barrier piece, it clears away great stone on the road of laying to clear away the barrier piece, prevent the geomembrane of gouging, the geomembrane can slide on the reel roller this moment, thereby lay.
2. When the position is adjusted, the inclined plate moves to drive the first transverse rod and the second transverse rod to move in opposite directions, so that the first transverse rod and the second transverse rod slide and contract in the telescopic cylinder to drive the smoothing block on the first transverse rod and the second transverse rod to move, the smoothing block drives the smoothing claw to move, the smoothing claw is used for smoothing different positions of the geomembrane all the time, and the device is laid to be smoother.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of another perspective of the present invention.
Fig. 3 is a schematic perspective view of the middle smoothing mechanism of the present invention.
Fig. 4 is a cross-sectional view of the stop lever of the present invention.
Fig. 5 is a schematic view of the three-dimensional structure of the middle placing rod of the present invention.
In the figure, 1, a laying frame; 2. a placement groove; 3. placing a rod; 4. a reel roller; 5. a limiting rod; 6. a moving wheel; 7. a pushing seat; 8. a push rod; 9. a holding rod; 10. fixing a column; 11. a movable tray; 12. an inclined plate; 13. fixing the disc; 14. a first cross bar; 15. a telescopic cylinder; 16. a second cross bar; 17. flattening the block; 18. smoothing the claws; 19. a limiting seat; 20. a pull rod; 21. stretching the rod; 22. a limiting plate; 23. a limiting frame; 24. removing obstacles; 25. a spring; 26. a connecting rod.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
As shown in fig. 1-5, this embodiment provides a small reservoir geomembrane laying device, including two laying frames 1, two are laid and are fixed with clearance piece 24 between the frame 1, lay and have seted up standing groove 2 on the frame 1, standing groove 2 sliding connection has places pole 3, place and have seted up the through-hole on the pole 3, be provided with reel roller 4 in the through-hole, the both ends of reel roller 4 are all through fastening bolt fixed connection, be provided with two sets of fixed subassemblies on the reel roller 4, two are laid and are fixed with gag lever post 5 between the frame 1, it leads to the chamber to have seted up in the gag lever post 5, lead to the intracavity and be provided with spacing subassembly, fixed subassembly is connected with spacing subassembly, it is connected with removal wheel 6 to lay one side rotation that keeps away from gag lever post 5 on the frame 1, it is fixed with on the frame 1 to push away from seat 7, be fixed with the pushing hands on the push seat 7.
The user places the geomembrane on spool roller 4 earlier, place the standing groove 2 in through placing pole 3 again, fix through fixing bolt, readjust the position between two sets of fixed subassemblies, place fixed subassembly on suitable spacing subassembly according to the size of geomembrane and fix, pass spacing subassembly with one side of geomembrane again and place subaerially, it removes to promote the handle to drive removes wheel 6, remove wheel 6 and drive and lay 1 removal, it removes to lay 1 drive obstacles removing block 24, obstacles removing block 24 clears away great stone on to the road of laying, the geomembrane that prevents to knocks, the geomembrane can slide on spool roller 4 this moment, thereby lay.
The pushing hands comprise pushing rods 8, one ends of the pushing rods 8 are fixedly connected with the pushing seats 7, holding rods 9 are fixed to the other ends of the pushing rods 8, fixing columns 10 are fixed to the other ends of the holding rods 9, and the diameters of the holding rods 9 are smaller than those of the pushing rods 8 and the fixing columns 10.
During operation, a user places hands on the holding rod 9, hand slip in the pushing process is effectively prevented, and stress is more stable.
Fixed subassembly is including removing dish 11, removes dish 11 and 4 sliding connection of spool roller, removes to be fixed with hang plate 12 on the dish 11, and the other end of hang plate 12 is fixed with fixed disk 13, fixed disk 13 and 5 sliding connection of gag lever post, and fixed disk 13 is joined in marriage with spacing subassembly.
During the adjustment size, at first with fixed disk 13 remove on gag lever post 5, fixed disk 13 drives hang plate 12 and removes, and hang plate 12 drives and removes dish 11 and removes, removes dish 11 and removes on spool roller 4, after removing suitable position, carries on spacingly through spacing subassembly to fixed disk 13 to it is spacing to carry out the geomembrane, prevents to take place the displacement at the laying process, influences the effect of laying.
Be fixed with first horizontal pole 14 on the hang plate 12, the other end sliding connection of first horizontal pole 14 has a telescopic cylinder 15, the other end sliding connection of telescopic cylinder 15 has second horizontal pole 16, second horizontal pole 16 and another one hang plate 12 fixed connection, first horizontal pole 14, all be fixed with smooth piece 17 on second horizontal pole 16 and the telescopic cylinder 15, smooth and be fixed with smooth claw 18 on the piece 17, smooth piece 17 that is located on the telescopic cylinder 15 is fixed with connecting rod 26, the other end and the 5 fixed connection of gag lever post of connecting rod 26.
When the position is adjusted, the inclined plate 12 moves to drive the first cross rod 14 and the second cross rod 16 to move oppositely, the first cross rod 14 and the second cross rod 16 slide and contract in the telescopic cylinder 15 to drive the smoothing blocks 17 on the first cross rod 14 and the second cross rod 16 to move, the smoothing blocks 17 drive the smoothing claws 18 to move, so that the smoothing claws 18 can smooth different positions of the geomembrane all the time, and the device is laid more smoothly.
Lead to and seted up a plurality of slope slide openings on the chamber, spacing subassembly includes spacing seat 19, and the one end of spacing seat 19 is passed the slope slide opening and is located and lead to the chamber outside, and the other end of spacing seat 19 rotates and is connected with pull rod 20, and the one end of pull rod 20 is fixed with spring 25, spring 25's the other end and lead to intracavity wall fixed connection, and pull rod 20's the other end is provided with the block subassembly.
The during operation, pulling block subassembly, block subassembly drive pull rod 20 motion, and pull rod 20 drives the spring motion, and pull rod 20 also can drive spacing seat 19 simultaneously and contract into along the inclined hole, can freely adjust the position of fixed disk 13 this moment to the convenient size adjustment position according to the geomembrane, the adjustment is accomplished the back, loosens block subassembly, makes spacing seat 19 return the normal position under spring 25's effect, thereby fixes the geomembrane.
The clamping component comprises a stretching rod 21, the stretching rod 21 is rotatably connected with one end of the pull rod 20, the other end of the stretching rod 21 is located on the outer side of the through cavity, a limiting plate 22 is fixed on the stretching rod 21, a limiting frame 23 is fixed on the limiting rod 5, and the limiting plate 22 is matched with the limiting frame 23.
The user stimulates the stretcher 21, and the stretcher 21 also can drive limiting plate 22 to move when driving pull rod 20 to move, and after spacing seat 19 was taken in the slope slide opening, the stretcher 21 was rotated, made limiting plate 22 contradict with spacing 23 to fix convenient adjustment fixed position, after the adjustment was accomplished, the backward rotation stretcher 21 made limiting plate 22 and spacing 23 not in the contact, thereby under spring 25's effect, the device returned the normal position.
The utility model discloses a theory of operation: the user firstly places the geomembrane on the scroll roller 4, then places the geomembrane in the placing groove 2 through the placing rod 3, fixes the geomembrane through the fixing bolt, then pulls the stretching rod 21, the stretching rod 21 drives the pull rod 20 to move and simultaneously drives the limiting plate 22 to move, after the limiting seat 19 is put in the inclined slide hole, the stretching rod 21 is rotated to ensure that the limiting plate 22 is butted with the limiting frame 23, the limiting is relieved, then the limiting rod 5 is moved through the fixed disk 13, the fixed disk 13 drives the inclined plate 12 to move, the inclined plate 12 drives the movable disk 11 to move, the movable disk 11 is moved on the scroll roller 4, when the geomembrane is moved to a proper position, after the adjustment is completed, backward rotation stretches pole 21, make limiting plate 22 not in the contact with spacing 23, thereby under the effect of spring 25, the device returns the normal position, thereby it is spacing to carry out the geomembrane, prevent to take place the displacement at the laying process, pass spacing subassembly with one side of geomembrane again and place subaerially, it removes wheel 6 and removes to promote the handle drive, it removes to remove wheel 6 and drive laying frame 1, laying frame 1 and driving clearance piece 24 and removing, clearance piece 24 clears away great stone on the road of laying, prevent the geomembrane of gouging, the geomembrane can slide on spool roller 4 this moment, thereby lay.
During the adjustment, the inclined plate 12 removes and can drive first horizontal pole 14 and the removal in opposite directions of second horizontal pole 16, thereby first horizontal pole 14 and the second horizontal pole 16 slide in telescopic cylinder 15 shrink and drive smooth piece 17 removal on first horizontal pole 14 and the second horizontal pole 16, smooth piece 17 drive and smooth claw 18 removal of smoothing to the messenger smooths claw 18 and smooths the different positions of geomembrane all the time, makes the device lay more level and more smooth.
To sum up, through the setting of spool roller 4 and fixed subassembly, realize can making it can adapt the geomembrane of different specifications to geomembrane that geomembrane can be according to the size adjustment device of geomembrane in the course of the work to the geomembrane, thereby improve the practicality of device.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions may be made by those skilled in the art to the specific embodiments described without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (6)

1. The utility model provides a small reservoir geomembrane laying device, lay frame (1) including two, a serial communication port, two it is fixed with clearance piece (24) to lay between the frame (1), lay and seted up standing groove (2) on the frame (1), standing groove (2) sliding connection has places pole (3), place and seted up the through-hole on pole (3), be provided with reel roller (4) in the through-hole, the both ends of reel roller (4) all are through fastening bolt fixed connection, be provided with two sets of fixed subassemblies on reel roller (4), it is fixed with between frame (1) to lay for two is spacing pole (5), it leads to the chamber to have seted up in spacing pole (5), lead to the intracavity and be provided with spacing subassembly, fixed subassembly is connected with spacing subassembly, it rotates to keep away from one side of spacing pole (5) on frame (1) and is connected with and removes wheel (6), it pushes away from seat (7) to be fixed with on frame (1), it pushes away from the hand to be fixed with on seat (7).
2. The small reservoir geomembrane laying device according to claim 1, wherein the push handle comprises a push rod (8), one end of the push rod (8) is fixedly connected with the push seat (7), the other end of the push rod (8) is fixedly provided with a holding rod (9), the other end of the holding rod (9) is fixedly provided with a fixed column (10), and the diameter of the holding rod (9) is smaller than that of the push rod (8) and the fixed column (10).
3. The small reservoir geomembrane laying device according to claim 2, wherein the fixing assembly comprises a moving disc (11), the moving disc (11) is slidably connected with the reel roller (4), an inclined plate (12) is fixed on the moving disc (11), a fixing disc (13) is fixed at the other end of the inclined plate (12), the fixing disc (13) is slidably connected with the limiting rod (5), and the fixing disc (13) is matched with the limiting assembly.
4. The small reservoir geomembrane laying device according to claim 3, wherein a first cross bar (14) is fixed on the inclined plate (12), a telescopic cylinder (15) is slidably connected to the other end of the first cross bar (14), a second cross bar (16) is slidably connected to the other end of the telescopic cylinder (15), the second cross bar (16) is fixedly connected with the other inclined plate (12), a smoothing block (17) is respectively fixed on the first cross bar (14), the second cross bar (16) and the telescopic cylinder (15), a smoothing claw (18) is fixed on the smoothing block (17), a connecting rod (26) is fixed on the smoothing block (17) positioned on the telescopic cylinder (15), and the other end of the connecting rod (26) is fixedly connected with the limiting rod (5).
5. The small reservoir geomembrane laying device according to claim 4, wherein a plurality of inclined sliding holes are formed in the through cavity, the limiting component comprises a limiting seat (19), one end of the limiting seat (19) penetrates through the inclined sliding holes and is positioned outside the through cavity, the other end of the limiting seat (19) is rotatably connected with a pull rod (20), one end of the pull rod (20) is fixedly provided with a spring (25), the other end of the spring (25) is fixedly connected with the inner wall of the through cavity, and the other end of the pull rod (20) is provided with a clamping component.
6. The small reservoir geomembrane laying device according to claim 5, wherein the clamping component comprises a stretching rod (21), the stretching rod (21) is rotatably connected with one end of the pull rod (20), the other end of the stretching rod (21) is positioned outside the through cavity, a limiting plate (22) is fixed on the stretching rod (21), a limiting frame (23) is fixed on the limiting rod (5), and the limiting plate (22) is matched with the limiting frame (23).
CN202222273191.1U 2022-08-29 2022-08-29 Pond dam geomembrane laying device Active CN218233355U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222273191.1U CN218233355U (en) 2022-08-29 2022-08-29 Pond dam geomembrane laying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222273191.1U CN218233355U (en) 2022-08-29 2022-08-29 Pond dam geomembrane laying device

Publications (1)

Publication Number Publication Date
CN218233355U true CN218233355U (en) 2023-01-06

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ID=84684316

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222273191.1U Active CN218233355U (en) 2022-08-29 2022-08-29 Pond dam geomembrane laying device

Country Status (1)

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CN (1) CN218233355U (en)

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