CN219886829U - Large-area seepage-proofing geomembrane construction device - Google Patents

Large-area seepage-proofing geomembrane construction device Download PDF

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Publication number
CN219886829U
CN219886829U CN202321073629.XU CN202321073629U CN219886829U CN 219886829 U CN219886829 U CN 219886829U CN 202321073629 U CN202321073629 U CN 202321073629U CN 219886829 U CN219886829 U CN 219886829U
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China
Prior art keywords
supporting rod
connecting frame
geomembrane
construction
clamping pieces
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CN202321073629.XU
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Chinese (zh)
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钟学秋
吕建松
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Yunnan Dongxin Geotechnical Materials Manufacturing Co ltd
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Yunnan Dongxin Geotechnical Materials Manufacturing Co ltd
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Abstract

The utility model discloses a large-area anti-seepage geomembrane construction device, which relates to the technical field of geomembrane construction and comprises a connecting frame, wherein the bottom surface of the connecting frame is connected with four universal wheels, one end of the connecting frame is connected with a supporting rod, one end of the supporting rod is connected with a discharging unit, the device can connect and fix the discharging unit with a driving vehicle through the connecting frame, so that the discharging construction of a large-area project is facilitated, a driving cylinder can drive an adjusting connecting frame and the supporting rod to retract and retract the discharging unit along the outer surface of the connecting shaft, the construction and the storage of the geomembrane are facilitated, the construction efficiency is improved, the construction time is reduced, the geomembranes with different sizes are limited and fixed, the clamping rods are matched with two clamping pieces, the clamping pieces can slide along the movable grooves, the outer surfaces of the two ends of the geomembrane are limited and fixed, shaking during the discharging of the geomembrane is prevented, and the construction quality is influenced.

Description

Large-area seepage-proofing geomembrane construction device
Technical Field
The utility model relates to the technical field of geomembrane construction, in particular to a large-area anti-seepage geomembrane construction device.
Background
The geomembrane is commonly used in the job site of building site, and the laying of geomembrane can prevent the seepage of moisture, and the cost is lower, can provide the guarantee for the antiseep effect of engineering, and the geomembrane when being under construction, need lay it on project surface to weld it, for example chinese patent discloses a laying device (bulletin number CN 218204394U) for the geomembrane construction, and the device is nevertheless can carry out the blowing construction to the geomembrane voluntarily, but when the geomembrane construction of large tracts of land, the device construction blowing inefficiency, is difficult to accomplish the construction of geomembrane fast, has increased construction consuming time.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model provides a large-area seepage-proofing geomembrane construction device, which solves the problem of low large-area construction efficiency.
In order to achieve the above purpose, the utility model is realized by the following technical scheme: the large-area anti-seepage geomembrane construction device comprises a connecting frame, wherein the bottom surface of the connecting frame is connected with four universal wheels, one end of the connecting frame is connected with a supporting rod, and one end of the supporting rod is connected with a discharging unit;
the discharging unit comprises a supporting rod, two fixing blocks are connected to the outer surface of the supporting rod, connecting springs are connected to one side face of each fixing block and the outer surface of the supporting rod, limiting columns are connected to one side face of each fixing block, and a roll shaft is connected between the limiting columns.
As a further technical scheme of the utility model, the inner side of the connecting frame is connected with a driving cylinder, and one side of the connecting frame is connected with a connecting shaft.
As a further technical scheme of the utility model, the outer surfaces of the two limit posts are connected with the adjusting plates, the surfaces of the adjusting plates are connected with the two clamping pieces, the surfaces of the adjusting plates and the sliding paths of the two clamping pieces are provided with the movable grooves correspondingly, one ends of the clamping pieces are arc-shaped, and the inner side walls of the clamping pieces are made of rubber materials.
As a further technical scheme of the utility model, one end of the supporting rod is connected with an adjusting connecting rod, one end of the adjusting connecting rod is hinged with the driving end of the driving cylinder, the other end of the supporting rod is connected with the outer surface of the supporting rod, one end of the connecting spring is connected with the surface of the fixed block, the other end of the connecting spring is connected with the side surface of the supporting rod, and the surface of the supporting rod and the connecting shaft are provided with through holes.
As a further technical scheme of the utility model, one ends of the two clamping pieces penetrate through the surface of the adjusting plate, one ends of the two clamping pieces are connected with the adjusting screw rod, the two clamping pieces are connected through the adjusting screw rod, the outer surface of one end of the fixing block penetrates through and is connected with the fixing pin, and a plurality of pin holes are correspondingly formed on the outer surface of the supporting rod and the fixing pin.
As a further technical scheme of the utility model, the driving end of the driving cylinder is connected with the bearing rod through the adjusting connecting rod and the supporting rod, one end of the supporting rod is connected with the fixed block through the connecting spring, and the bearing rod is connected with the connecting frame through the supporting rod and the connecting shaft.
As a further technical scheme of the utility model, the inner diameter of one end of the fixed block is matched with the outer diameter of the supporting rod, the inner diameter of the pin hole is matched with the outer diameter of the fixed pin, and the inner diameter of the movable groove is matched with the sliding path of the clamping piece.
Advantageous effects
The utility model provides a large-area seepage-proofing geomembrane construction device. Compared with the prior art, the method has the following beneficial effects:
1. a large tracts of land prevention of seepage geomembrane construction equipment can be connected fixedly blowing unit and drive vehicle through the link, conveniently carries out the blowing construction of geomembrane to large tracts of land project, and drive the cylinder and can drive the receipts of adjusting link and bracing piece along the upper and lower blowing unit of the surface of connecting axle and put, the construction and the accomodating of the geomembrane of being convenient for improve the efficiency of construction, reduce the consuming time of construction.
2. The utility model provides a large tracts of land prevention of seepage geomembrane construction equipment, cooperation between through fixed pin and a plurality of pinhole can drive fixed block and spacing post at the fixed position of supporting rod surface to carry out spacing fixedly to the geomembrane of equidimension, accommodate the cooperation of lead screw and two clamping pieces can make the clamping piece slide along the movable groove, carries out spacing fixedly to geomembrane both ends surface, shake when preventing the geomembrane blowing, influences the quality of construction.
Drawings
FIG. 1 is a schematic structural view of a large-area impermeable geomembrane construction apparatus;
FIG. 2 is a top view of a large area impermeable geomembrane construction apparatus;
FIG. 3 is a schematic structural view of a discharge unit of a large-area impermeable geomembrane construction apparatus;
fig. 4 is a schematic diagram of an exploded structure of a discharging unit of a large-area impermeable geomembrane construction apparatus.
In the figure: 1. a connecting frame; 11. a connecting shaft; 2. a universal wheel; 3. a driving cylinder; 4. a discharging unit; 41. a support rod; 42. a connecting spring; 43. a fixed block; 44. a limit column; 45. a roll shaft; 46. a fixing pin; 47. a pin hole; 48. an adjusting plate; 49. a movable groove; 401. a clamping piece; 402. adjusting a screw rod; 5. a support rod; 51. and adjusting the connecting rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, the present utility model provides a technical scheme of a large-area impermeable geomembrane construction device: the utility model provides a large tracts of land prevention of seepage geomembrane construction equipment, including link 1, the bottom surface of link 1 is connected with four universal wheels 2, the one end of link 1 is connected with bracing piece 5, the one end of bracing piece 5 is connected with blowing unit 4, blowing unit 4 includes support pole 41, the surface connection of support pole 41 has two fixed blocks 43, a side of two fixed blocks 43 just is located the surface of support pole 41 and all is connected with connecting spring 42, a side of two fixed blocks 43 all is connected with spacing post 44, be connected with roller 45 between two spacing posts 44.
As shown in fig. 1-2, the driving cylinder 3 is connected to the inner side of the connecting frame 1, a connecting shaft 11 is connected to one side of the connecting frame 1, an adjusting connecting rod 51 is connected to one end of the supporting rod 5, one end of the adjusting connecting rod 51 is hinged to the driving end of the driving cylinder 3, the other end of the supporting rod 5 is connected to the outer surface of the supporting rod 41, one end of the connecting spring 42 is connected to the surface of the fixing block 43, the other end of the connecting spring 42 is connected to the side surface of the supporting rod 5, a through hole is formed in the surface of the supporting rod 5 and the connecting shaft 11, the driving end of the driving cylinder 3 is connected to the supporting rod 41 through the adjusting connecting rod 51 and the supporting rod 5, one end of the supporting rod 5 is connected to the connecting frame 1 through the supporting rod 5 and the connecting shaft 11, it is required to be explained that one end of the connecting frame 1 can be fixed to the rear of a vehicle, the large-area geomembrane construction is facilitated, and the driving cylinder 3 can drive the supporting rod 41 to swing up and down along the connecting shaft 11 through the adjusting connecting rod 51 and the supporting rod 5, so that the geomembrane construction discharging and upward recycling are facilitated.
As shown in fig. 3-4, the outer surface of two spacing posts 44 is connected with regulating plate 48, the surface of regulating plate 48 is connected with two clamping pieces 401, the surface of regulating plate 48 and the sliding path of two clamping pieces 401 all correspond and have seted up movable slot 49, and the one end of clamping piece 401 is the arc, the inside wall of clamping piece 401 is the rubber material, the one end of two clamping pieces 401 is all run through in the surface of regulating plate 48, the one end of two clamping pieces 401 is connected with adjusting screw 402, two clamping pieces 401 are connected through adjusting screw 402, the one end surface of fixed block 43 is run through and is connected with fixed pin 46, the surface of supporting rod 41 and fixed pin 46 correspond and have seted up a plurality of pinholes 47, the internal diameter size of fixed block 43 one end and the external diameter size looks adaptation of supporting rod 41, the internal diameter size of pinholes 47 and the external diameter size looks adaptation of fixed pin 46, the internal diameter size of movable slot 49 and the sliding path looks adaptation of clamping piece 401, it is to be explained, can adjust two clamping pieces 401 through adjusting screw 402 and slide along movable slot 49, thereby carry out the centre gripping to the both ends of roller 45 and geomembrane, and the both ends of fixed block 43 and spacing post 43 can pass through a plurality of pinholes 47 and fixed pin 46, the convenient to fix the same size of geomembrane and the same geomembrane.
The working principle of the utility model is as follows: when the device is used, a geomembrane and a roll shaft 45 are placed between two limit posts 44, a fixed pin 46 inserted into the outer surface of one end of a fixed block 43 is pulled out according to the size of the geomembrane, the two fixed blocks 43 slide along the outer surface of a supporting rod 41 until the two limit posts 44 are inserted into the two ends of the roll shaft 45, the fixed pin 46 is inserted into corresponding pin holes 47 along one end of the fixed block 43, the geomembrane and the roll shaft 45 can be fixed, and then two adjusting screw rods 402 are rotated, so that two clamping pieces 401 slide along a movable groove 49 until the inner side walls of the two clamping pieces 401 are attached to the outer surfaces of the two ends of the roll shaft 45 provided with the geomembrane, shaking of the roll shaft 45 during discharging can be prevented, and the stability of discharging is maintained;
one end of the connecting frame 1 is connected with a vehicle, the driving cylinder 3 is started again, and the driving end of the driving cylinder 3 drives one end of the adjusting connecting rod 51 to be lifted upwards, so that the supporting rod 5 is driven to be lifted upwards along the outer surface of the connecting shaft 11, the supporting rod 41 connected with one end of the supporting rod 5 is enabled to rotate downwards, and the construction discharging of the geomembrane can be carried out.

Claims (7)

1. The large-area anti-seepage geomembrane construction device comprises a connecting frame (1), and is characterized in that the bottom surface of the connecting frame (1) is connected with four universal wheels (2), one end of the connecting frame (1) is connected with a supporting rod (5), and one end of the supporting rod (5) is connected with a discharging unit (4);
the discharging unit (4) comprises a supporting rod (41), two fixing blocks (43) are connected to the outer surface of the supporting rod (41), connecting springs (42) are connected to one side surface of each fixing block (43) and located on the outer surface of the supporting rod (41), limit posts (44) are connected to one side surface of each fixing block (43), and roll shafts (45) are connected between the limit posts (44).
2. The large-area impermeable geomembrane construction device according to claim 1, wherein the inner side of the connecting frame (1) is connected with a driving cylinder (3), and one side of the connecting frame (1) is connected with a connecting shaft (11).
3. The large-area impermeable geomembrane construction device according to claim 1, wherein the outer surfaces of the two limiting columns (44) are connected with an adjusting plate (48), the surface of the adjusting plate (48) is connected with two clamping pieces (401), the surface of the adjusting plate (48) and the sliding paths of the two clamping pieces (401) are respectively provided with a movable groove (49), one end of each clamping piece (401) is arc-shaped, and the inner side walls of the clamping pieces (401) are made of rubber materials.
4. The large-area impermeable geomembrane construction device according to claim 2, wherein one end of the supporting rod (5) is connected with an adjusting connecting rod (51), one end of the adjusting connecting rod (51) is hinged with the driving end of the driving cylinder (3), the other end of the supporting rod (5) is connected with the outer surface of the supporting rod (41), one end of the connecting spring (42) is connected to the surface of the fixing block (43), the other end of the connecting spring is connected to the side surface of the supporting rod (5), and through holes are formed in the surface of the supporting rod (5) and the connecting shaft (11).
5. A large-area impermeable geomembrane construction device according to claim 3, wherein one end of each of the two clamping pieces (401) penetrates through the surface of the adjusting plate (48), one end of each of the two clamping pieces (401) is connected with an adjusting screw (402), each of the two clamping pieces (401) is connected through the adjusting screw (402), one end outer surface of each of the fixing blocks (43) is connected with a fixing pin (46) in a penetrating manner, and a plurality of pin holes (47) are correspondingly formed in the outer surface of each of the supporting rods (41) and the fixing pins (46).
6. The large-area impermeable geomembrane construction device according to claim 4, wherein the driving end of the driving cylinder (3) is connected with the supporting rod (41) through the adjusting connecting rod (51) and the supporting rod (5), one end of the supporting rod (5) is connected with the fixed block (43) through the connecting spring (42), and the supporting rod (41) is connected with the connecting frame (1) through the supporting rod (5) and the connecting shaft (11).
7. The large-area impermeable geomembrane construction device according to claim 5, wherein the inner diameter of one end of the fixed block (43) is matched with the outer diameter of the supporting rod (41), the inner diameter of the pin hole (47) is matched with the outer diameter of the fixing pin (46), and the inner diameter of the movable groove (49) is matched with the sliding path of the clamping piece (401).
CN202321073629.XU 2023-05-08 2023-05-08 Large-area seepage-proofing geomembrane construction device Active CN219886829U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321073629.XU CN219886829U (en) 2023-05-08 2023-05-08 Large-area seepage-proofing geomembrane construction device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321073629.XU CN219886829U (en) 2023-05-08 2023-05-08 Large-area seepage-proofing geomembrane construction device

Publications (1)

Publication Number Publication Date
CN219886829U true CN219886829U (en) 2023-10-24

Family

ID=88409489

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321073629.XU Active CN219886829U (en) 2023-05-08 2023-05-08 Large-area seepage-proofing geomembrane construction device

Country Status (1)

Country Link
CN (1) CN219886829U (en)

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