Anti-corrosion coating canning barrel cover supply device

By designing an anticorrosive coating canned bucket cover supply device that includes conveying components, discharge components, transfer components and lifting components, the problems of inconvenience and high cost when sealing canned bucket covers of different heights are solved, automated supply is achieved, and production efficiency is improved.

CN222947647UActive Publication Date: 2025-06-06HENAN SUNSHINE ANTICORROSIVE PAINTING CO LTD
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Patent Information

Application Number
CN202421916244.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-06-06
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

When sealing the anticorrosion coating canned barrels of different heights, the position of the overall bucket cover supply device or the use of anticorrosion coating canned barrel cover supply device of different sizes, which is inconvenient to operate and high cost.

Method used

An anticorrosive coating canned canned bucket cover supply device including conveying components, discharge components, transfer components and lifting components is designed, and the automatic transfer and supply of canned bucket covers of different sizes is achieved through the suction cup and hydraulic rod system of the transfer components.

Benefits of technology

The automated supply of canned barrel lids of anticorrosion coatings of different heights is achieved, reducing operational difficulty and cost and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of supply, in particular to an anticorrosive paint canning barrel cover supply device which comprises a conveying assembly, discharging assemblies, a transferring assembly and a lifting assembly, the discharging assemblies are connected to the positions, close to the two sides of the front face, of the upper end of the conveying assembly, and the transferring assembly is connected to the middle of the back face of the conveying assembly. The lifting assembly is arranged at the position, close to the back face, of one side of the conveying assembly, the conveying assembly is composed of a first mounting frame, a feeding roller, a first motor, a second mounting frame and a second motor, and the discharging assembly is composed of a first hydraulic rod, a first mounting hoop and a baffle; the transferring assembly is composed of a suction cup, a connecting plate, a second hydraulic rod, a hose, a second mounting hoop, an air pump, a third motor, a limiting sleeve, a first rotating rod, a fourth motor and a second rotating rod, and the lifting assembly is composed of a mounting base and a shear fork hydraulic lifting table mounted at the upper end of the mounting base.
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Description

Technical Field

[0001] The utility model relates to the technical field of supply, in particular to a supply device for a canned barrel cover of an anti-corrosion coating. Background Art

[0002] When the anti-corrosion paint cans are filled, they need to be capped. When capping anti-corrosion paint cans of different heights, the position of the overall barrel cover supply device needs to be adjusted or anti-corrosion paint can barrel cover supply devices of different sizes need to be used, which is inconvenient to operate and has high costs.

[0003] Therefore, it is necessary to design an anti-corrosion coating canning barrel cover supply device to solve the problems in the above-mentioned background technology. Utility Model Content

[0004] The utility model aims to solve the problems in the prior art and proposes a supply device for anti-corrosion paint can barrel cover.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] A device for supplying a can lid of an anti-corrosion coating comprises a conveying assembly, a discharging assembly, a transfer assembly and a lifting assembly, wherein the upper end of the conveying assembly is connected with a discharging assembly near both sides of the front side, the middle of the back side of the conveying assembly is connected with a transfer assembly, and one side of the conveying assembly is provided with a lifting assembly near the back side;

[0007] The conveying assembly is composed of a first mounting frame, a feeding roller, a first motor, a second mounting frame and a second motor, and the front of the first mounting frame is connected to the second mounting frame, and multiple groups of feeding rollers are connected inside the first mounting frame and the second mounting frame, one end of the feeding roller is connected to the second motor, and the first motor is connected to the connection of one side of the first mounting frame and the second mounting frame;

[0008] The discharge assembly is composed of a first hydraulic rod, a first mounting hoop and a baffle, and one end of the baffle is connected to the first hydraulic rod, and the first hydraulic rod is externally connected to multiple groups of first mounting hoop;

[0009] The transfer assembly is composed of a suction cup, a connecting plate, a second hydraulic rod, a hose, a second mounting hoop, an air pump, a third motor, a limiting sleeve, a first rotating rod, a fourth motor and a second rotating rod, and the upper end of the suction cup is connected to a hose, the upper end of the hose is connected to an air pump, a plurality of second mounting hoops are connected to the outside of the air pump, a connecting plate is connected to the upper part of the suction cup, the upper end of the connecting plate is connected to the second hydraulic rod, one side of the second hydraulic rod is connected to the second rotating rod, one side of the upper end of the second rotating rod is connected to the first rotating rod, the fourth motor is connected to the connection between the second rotating rod and the first rotating rod, the back of the first rotating rod is connected to the third motor, and the outside of the first rotating rod is connected to a limiting sleeve near the third motor;

[0010] The lifting assembly consists of a mounting seat and a scissor hydraulic lifting platform mounted on the upper end of the mounting seat.

[0011] As a preferred solution of the utility model, the first motor and the first mounting frame are connected by bolts, the rotating shaft of the first motor and the first mounting frame and the second mounting frame are connected by spline fitting and are locked by bolts, the second motor and the second mounting frame are connected by bolts, the rotating shaft of the second motor and the feeding roller are connected by spline fitting and are locked by bolts, and the rotating shaft of the second motor passes through one end of the feeding roller and is connected to the second mounting frame by a bearing.

[0012] As a preferred solution of the utility model, the first hydraulic rod is connected to the second mounting frame through a first mounting hoop, and the first hydraulic rod and the baffle are connected through bolts.

[0013] As a preferred solution of the utility model, the third motor, the limit sleeve and the first mounting frame are connected by bolts, the rotating shaft of the third motor and the first rotating rod are connected by a coupling, and the first rotating rod, the limit sleeve and the first mounting frame are connected by bearings.

[0014] As a preferred solution of the utility model, the second mounting clamp and the first mounting bracket are connected by bolts, and the hose and the air pump and the suction cup are screwed and connected by threads.

[0015] As a preferred solution of the utility model, the fourth motor and the first rotating rod are connected by bolts, the rotating shaft of the fourth motor passes through the first rotating rod and is connected to the second rotating rod by spline fitting and locked by bolts, the second hydraulic rod and the second rotating rod and the connecting plate are connected by bolts, and the connecting plate and the suction cup are connected by sleeve connection and locked by bolts.

[0016] As a preferred solution of the utility model, the first mounting frame, the scissor-type hydraulic lifting platform and the mounting seat are connected by bolts.

[0017] To sum up, the technical effects and advantages of the utility model are as follows: when the anti-corrosion paint can barrel cover supply device is used, the stacked anti-corrosion paint can barrel covers are placed on the scissor-type hydraulic lifting platform, and as the transfer component transports the anti-corrosion paint can barrel covers, the scissor-type hydraulic lifting platform rises accordingly, thereby facilitating the transfer component to take materials, and during transportation, the air pump is started, and the second hydraulic rod drives the suction cup to move down and adsorbs the anti-corrosion paint can barrel cover, and the second hydraulic rod moves up to its original position, and then the third motor drives the whole to rotate upward, and the fourth motor drives the second rotating rod to rotate above the conveying component, and the third motor drives the whole to rotate downward, and the second hydraulic rod moves down again, the air pump is turned off, and the suction cup puts down the anti-corrosion paint can barrel cover, and the above operations can be repeated, so that the stacked anti-corrosion paint can barrel covers can be transferred to the conveying component in turn, forming a water supply transportation structure, which saves time and effort when the anti-corrosion paint is transported. When the cover of the paint can is placed on the feeding roller in the first mounting frame, the second mounting frame can adjust the angle according to the height of the anti-corrosion paint can, and the second mounting frame is driven to rotate by the first motor, so that one end of the second mounting frame is closer to the top of the anti-corrosion paint can, so that the cover of the anti-corrosion paint can fits the anti-corrosion paint can better when it falls from the feeding roller in the second mounting frame, and can move with the cover of the anti-corrosion paint can, and the baffle can be driven to rotate by the second motor, so that the baffle forms a limit on both sides of the cover of the anti-corrosion paint can, and effectively ensures that the covers of anti-corrosion paint cans of different sizes can be located in the center position of the whole, so that the cover of the anti-corrosion paint can and the anti-corrosion paint can maintain the same center position, and when the anti-corrosion paint can moves to below the cover of the anti-corrosion paint can, the baffle opens, and the cover of the anti-corrosion paint can falls directly to the upper end of the anti-corrosion paint can. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is the overall structure diagram of the utility model;

[0019] Figure 2 This is a structural diagram of the conveying component of the utility model;

[0020] Figure 3 This is a structural diagram of the transfer component of the utility model;

[0021] Figure 4 This is a structural diagram of the lifting component of the utility model.

[0022] In the figure: 1. conveying assembly; 101. first mounting frame; 102. feeding roller; 103. first motor; 104. second mounting frame; 105. second motor; 2. unloading assembly; 201. first hydraulic rod; 202. first mounting clamp; 203. baffle; 3. transfer assembly; 301. suction cup; 302. connecting plate; 303. second hydraulic rod; 304. hose; 305. second mounting clamp; 306. air pump; 307. third motor; 308. limiting sleeve; 309. first rotating rod; 310. fourth motor; 311. second rotating rod; 4. lifting assembly; 401. mounting seat; 402. scissors hydraulic lifting platform. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

[0024] Reference Figure 1-Figure 4A device for supplying a can lid of an anticorrosive coating comprises a conveying assembly 1, a discharging assembly 2, a transfer assembly 3 and a lifting assembly 4. The upper end of the conveying assembly 1 is connected with the discharging assembly 2 near both sides of the front, the middle of the back of the conveying assembly 1 is connected with the transfer assembly 3, and a lifting assembly 4 is provided near the back of one side of the conveying assembly 1; the conveying assembly 1 is composed of a first mounting frame 101, a feeding roller 102, a first motor 103, a second mounting frame 104 and a second motor 105, and the front of the first mounting frame 101 is connected with the second mounting frame 106. The first mounting frame 101 and the second mounting frame 104 are internally connected with a plurality of feeding rollers 102, one end of the feeding rollers 102 is connected with a second motor 105, and the first mounting frame 101 and the second mounting frame 104 are connected with a first motor 103 at the connection point on one side; the unloading assembly 2 is composed of a first hydraulic rod 201, a first mounting clamp 202 and a baffle 203, and one end of the baffle 203 is connected with the first hydraulic rod 201, and the first hydraulic rod 201 is externally connected with a plurality of first mounting clamps 202; the transfer assembly 3 The suction cup 301 is composed of a suction cup 301, a connecting plate 302, a second hydraulic rod 303, a hose 304, a second mounting clamp 305, an air pump 306, a third motor 307, a limiting sleeve 308, a first rotating rod 309, a fourth motor 310 and a second rotating rod 311. The upper end of the suction cup 301 is connected to the hose 304, the upper end of the hose 304 is connected to the air pump 306, the outside of the air pump 306 is connected to multiple sets of second mounting clamps 305, the upper part of the suction cup 301 is connected to the connecting plate 302, the upper end of the connecting plate 302 is connected to the second Hydraulic rod 303, one side of the second hydraulic rod 303 is connected to the second rotating rod 311, one side of the upper end of the second rotating rod 311 is connected to the first rotating rod 309, the connection between the second rotating rod 311 and the first rotating rod 309 is connected to the fourth motor 310, the back of the first rotating rod 309 is connected to the third motor 307, and the outside of the first rotating rod 309 near the third motor 307 is connected to a limiting sleeve 308; the lifting assembly 4 is composed of a mounting seat 401 and a scissor-type hydraulic lifting platform 402 installed on the upper end of the mounting seat 401.

[0025] Reference Figure 1 and Figure 2When the anti-corrosion coating cans are filled, they need to be capped. When capping anti-corrosion coating cans of different heights, it is necessary to adjust the position of the overall barrel cover supply device or use anti-corrosion coating can barrel cover supply devices of different sizes, which is inconvenient to operate and has high cost. The first motor 103 is connected to the first mounting frame 101 by bolts, and the rotating shaft of the first motor 103 is connected to the first mounting frame 101 and the second mounting frame 104 by spline matching and locked by bolt limit, the second motor 105 is connected to the second mounting frame 104 by bolts, and the rotating shaft of the second motor 105 is connected to the feeding roller 102 by spline matching and locked by bolt limit, the rotating shaft of the second motor 105 passes through one end of the feeding roller 102 and is connected to the second mounting frame 104 by a bearing, the first hydraulic rod 201 is connected to the second mounting frame 104 by the first mounting hoop 202, and the first hydraulic rod 201 is connected to the baffle 203 by bolts. When the cover of the paint can is placed on the feeding roller 102 in the first mounting frame 101, the second mounting frame 104 can adjust the angle according to the height of the anti-corrosion paint can, and the second mounting frame 104 is driven to rotate by the first motor 103, so that one end of the second mounting frame 104 is closer to the top of the anti-corrosion paint can, so that the cover of the anti-corrosion paint can fits the anti-corrosion paint can better when it falls from the feeding roller 102 in the second mounting frame 104. The baffle 203 can be driven to rotate by the second motor 105, so that the baffle 203 forms a limit on both sides of the anti-corrosion paint canning barrel cover, and effectively ensures that the anti-corrosion paint canning barrel covers of different sizes can be located at the center position of the whole, so that the anti-corrosion paint canning barrel cover and the anti-corrosion paint canning barrel maintain the same center position; when the anti-corrosion paint canning barrel moves to below the anti-corrosion paint canning barrel cover, the baffle 203 opens, and the anti-corrosion paint canning barrel cover can directly fall onto the upper end of the anti-corrosion paint canning barrel.

[0026] Reference Figure 1 and Figure 3The third motor 307, the limiting sleeve 308 and the first mounting frame 101 are connected by bolts, the rotating shaft of the third motor 307 and the first rotating rod 309 are connected by a coupling, the first rotating rod 309 and the limiting sleeve 308 and the first mounting frame 101 are connected by a bearing, the second mounting hoop 305 and the first mounting frame 101 are connected by bolts, the hose 304 and the air pump 306 and the suction cup 301 are screwed together, the fourth motor 310 and the first rotating rod 309 are connected by bolts, the rotating shaft of the fourth motor 310 passes through the first rotating rod 309 and is connected to the second rotating rod 311 by spline fitting and is locked by bolts, the second hydraulic rod 303 and the second rotating rod 311 and the connecting plate 302 are connected by bolts. The connecting plate 302 and the suction cup 301 are connected by a sleeve connection and locked by bolt limit. During transportation, the air pump 306 is started, and the second hydraulic rod 303 drives the suction cup 301 to move down and absorbs the anti-corrosion paint can barrel cover, and the second hydraulic rod 303 moves up to its original position, and then the third motor 307 drives the whole to rotate upward, and the fourth motor 310 drives the second rotating rod 311 to rotate above the conveying component 1, and the third motor 307 drives the whole to rotate downward, and the second hydraulic rod 303 moves down again, the air pump 306 is closed, and the suction cup 301 puts down the anti-corrosion paint can barrel cover, and the above operation can be repeated, so that the stacked anti-corrosion paint can barrel covers are transferred to the conveying component 1 in turn, forming a water supply transportation structure, which saves time and effort in transportation.

[0027] Reference Figure 1 and Figure 4 The first mounting frame 101, the scissor-type hydraulic lifting platform 402 and the mounting seat 401 are connected by bolts. When in use, the stacked anti-corrosion paint can barrel covers are placed on the scissor-type hydraulic lifting platform 402. As the transfer component 3 transfers the anti-corrosion paint can barrel covers, the scissor-type hydraulic lifting platform 402 rises accordingly, thereby facilitating the transfer component 3 to take materials.

[0028] Working principle: The first mounting frame 101, the scissor-type hydraulic lifting platform 402 and the mounting seat 401 of the anti-corrosion paint canned barrel cover supply device are connected by bolts. When in use, the stacked anti-corrosion paint canned barrel covers are placed on the scissor-type hydraulic lifting platform 402. As the transfer component 3 transfers the anti-corrosion paint canned barrel covers, the scissor-type hydraulic lifting platform 402 rises accordingly, thereby facilitating the transfer component 3 to take materials. The third motor 307, the limit sleeve 308 and the first mounting frame 101 are connected by bolts. The rotating shaft of the third motor 307 and the first rotating rod 309 are connected by a coupling. The first rotating rod 309 and the limit sleeve 308 and the first mounting frame 101 are connected by bearings. The second mounting hoop 305 and the first mounting frame 10 1 is connected by bolts, the hose 304 and the air pump 306 and the suction cup 301 are screwed and connected by threads, the fourth motor 310 and the first rotating rod 309 are connected by bolts, the rotating shaft of the fourth motor 310 passes through the first rotating rod 309 and is connected to the second rotating rod 311 by spline matching and is locked by bolts, the second hydraulic rod 303 and the second rotating rod 311 and the connecting plate 302 are connected by bolts, the connecting plate 302 and the suction cup 301 are connected by sleeve connection and are locked by bolts. During transportation, the air pump 306 is started, the second hydraulic rod 303 drives the suction cup 301 to move down and absorbs the lid of the anti-corrosion paint can, the second hydraulic rod 303 moves up to the original position, and then the third motor 30 7 drives the whole to rotate upward, the fourth motor 310 drives the second rotating rod 311 to rotate above the conveying component 1, the third motor 307 drives the whole to rotate downward, the second hydraulic rod 303 moves downward again, the air pump 306 is closed, and the suction cup 301 puts down the anti-corrosion paint can bucket cover, and the above operation can be repeated to transfer the stacked anti-corrosion paint can bucket covers to the conveying component 1 in turn, forming a transfer structure with flowing water supply, which makes the transfer more time-saving and labor-saving. The first motor 103 is connected to the first mounting frame 101 by bolts, the rotating shaft of the first motor 103 and the first mounting frame 101 and the second mounting frame 104 are connected by spline matching and locked by bolt limit, and the second motor 105 and the second mounting frame 104 are connected by screws. The rotating shaft of the second motor 105 and the feeding roller 102 are connected by spline matching and locked by bolt limit, the rotating shaft of the second motor 105 passes through one end of the feeding roller 102 and is connected to the second mounting frame 104 by a bearing, the first hydraulic rod 201 is connected to the second mounting frame 104 through the first mounting hoop 202, and the first hydraulic rod 201 and the baffle 203 are connected by bolts. When the anti-corrosion paint canning barrel cover is placed on the feeding roller 102 in the first mounting frame 101, the second mounting frame 104 can adjust the angle according to the height of the anti-corrosion paint canning barrel, and the second mounting frame 104 is driven to rotate by the first motor 103, so that one end of the second mounting frame 104 is closer to the top of the anti-corrosion paint canning barrel.As a result, the lid of the anticorrosive paint can is more closely attached to the anticorrosive paint can when it falls from the feeding roller 102 in the second mounting frame 104, and can move with the lid of the anticorrosive paint can, and the baffle 203 can be driven to rotate by the second motor 105, so that the baffle 203 forms a limit on both sides of the lid of the anticorrosive paint can, and effectively ensures that the lids of anticorrosive paint cans of different sizes can be located at the center of the whole, so that the lid of the anticorrosive paint can and the anticorrosive paint can maintain the same center position. When the anticorrosive paint can moves to the bottom of the lid of the anticorrosive paint can, the baffle 203 opens, and the lid of the anticorrosive paint can can directly fall to the upper end of the anticorrosive paint can.

[0029] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A device for supplying a can lid of an anticorrosive coating, comprising a conveying assembly (1), a discharging assembly (2), a transfer assembly (3) and a lifting assembly (4), characterized in that: The upper end of the conveying component (1) is connected to the discharge component (2) near the front sides, the middle of the back of the conveying component (1) is connected to the transfer component (3), and one side of the conveying component (1) is provided with a lifting component (4) near the back; The conveying assembly (1) is composed of a first mounting frame (101), a feeding roller (102), a first motor (103), a second mounting frame (104) and a second motor (105), and the first mounting frame (101) is connected to the second mounting frame (104) at the front, and multiple groups of feeding rollers (102) are connected inside the first mounting frame (101) and the second mounting frame (104), one end of the feeding roller (102) is connected to the second motor (105), and the first motor (103) is connected to the connection between the first mounting frame (101) and the second mounting frame (104) on one side; The discharge assembly (2) is composed of a first hydraulic rod (201), a first mounting hoop (202) and a baffle (203), and one end of the baffle (203) is connected to the first hydraulic rod (201), and the first hydraulic rod (201) is externally connected to a plurality of first mounting hoop (202); The transfer assembly (3) is composed of a suction cup (301), a connecting plate (302), a second hydraulic rod (303), a hose (304), a second mounting clamp (305), an air pump (306), a third motor (307), a limiting sleeve (308), a first rotating rod (309), a fourth motor (310) and a second rotating rod (311), and the upper end of the suction cup (301) is connected to a hose (304), the upper end of the hose (304) is connected to an air pump (306), the air pump (306) is externally connected to a plurality of second mounting clamps (305), and the suction cup (301) is connected to a plurality of second hydraulic rods (305). The upper part is connected to a connecting plate (302), the upper end of the connecting plate (302) is connected to a second hydraulic rod (303), one side of the second hydraulic rod (303) is connected to a second rotating rod (311), one side of the upper end of the second rotating rod (311) is connected to a first rotating rod (309), a fourth motor (310) is connected to the connection between the second rotating rod (311) and the first rotating rod (309), the back of the first rotating rod (309) is connected to a third motor (307), and a limiting sleeve (308) is connected to the outside of the first rotating rod (309) near the third motor (307); The lifting assembly (4) is composed of a mounting seat (401) and a scissor-type hydraulic lifting platform (402) mounted on the upper end of the mounting seat (401).

2. The anti-corrosion coating canning barrel cover supply device according to claim 1, characterized in that: The first motor (103) and the first mounting frame (101) are connected by bolts, the rotating shaft of the first motor (103) and the first mounting frame (101) and the second mounting frame (104) are connected by spline fitting and are locked by bolts, the second motor (105) and the second mounting frame (104) are connected by bolts, the rotating shaft of the second motor (105) and the feeding roller (102) are connected by spline fitting and are locked by bolts, and the rotating shaft of the second motor (105) passes through one end of the feeding roller (102) and is connected to the second mounting frame (104) by a bearing.

3. The anti-corrosion coating canning barrel cover supply device according to claim 1, characterized in that: The first hydraulic rod (201) is connected to the second mounting frame (104) via a first mounting hoop (202), and the first hydraulic rod (201) and the baffle (203) are connected via bolts.

4. The anti-corrosion coating canning barrel cover supply device according to claim 1, characterized in that: The third motor (307), the limiting sleeve (308) and the first mounting frame (101) are connected via bolts, the rotating shaft of the third motor (307) and the first rotating rod (309) are connected via a coupling, and the first rotating rod (309), the limiting sleeve (308) and the first mounting frame (101) are connected via bearings.

5. The anti-corrosion coating canning barrel cover supply device according to claim 1, characterized in that: The second mounting hoop (305) and the first mounting frame (101) are connected via bolts, and the hose (304), the air pump (306) and the suction cup (301) are screwed together via threads.

6. The anti-corrosion coating canning barrel cover supply device according to claim 1, characterized in that: The fourth motor (310) and the first rotating rod (309) are connected by bolts. The rotating shaft of the fourth motor (310) passes through the first rotating rod (309) and is connected to the second rotating rod (311) by spline fitting and is locked by bolts. The second hydraulic rod (303) and the second rotating rod (311) and the connecting plate (302) are connected by bolts. The connecting plate (302) and the suction cup (301) are connected by sleeve connection and are locked by bolts.

7. The anti-corrosion coating canning barrel cover supply device according to claim 1, characterized in that: The first mounting frame (101), the scissor-type hydraulic lifting platform (402) and the mounting seat (401) are connected by bolts.