Building coating leakage-proof storage barrel
By using suction cups and push rod systems for limit reinforcement in architectural paint storage barrels, the leakage problems caused by coating wall hanging and pouring are solved, and more efficient and safe paint storage is achieved.
Patent Information
- Application Number
- CN202421480177.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-06-25
AI Technical Summary
Building paints are prone to wall hangs when storing, which leads to trouble cleaning, causing paint residue and waste. At the same time, the storage barrel is easily dumped and causes paint leakage.
A building paint anti-leak storage barrel was designed, and the barrel body was reinforcing the suction cup and electric push rod system to ensure the stability of the barrel body. At the same time, through the design of screws and reinforcement plates, it can adapt to uneven ground, expand the contact area between the suction cup and the ground, and improve the support and reinforcement effect.
It effectively avoids dumping of barrels and paint leakage, reduces paint waste, and improves the efficiency and safety of storage barrels.
Smart Images

Figure CN222934457U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building coatings, in particular to a leakage-proof storage barrel for building coatings. Background Art
[0002] Building coatings are materials used to coat the surface of buildings to form a continuous film, and their main functions include protection, decoration, and other special functions. Generally, storage barrels are needed to store coatings.
[0003] Since waterproof coatings are mostly tarry viscous fluids, they are prone to wall sticking when stored in storage barrels and are not easy to remove. It is troublesome for workers to clean, resulting in coating residues and thus waste of coatings.
[0004] The Chinese patent with the publication number CN212981083U was proposed in the prior art to solve the above-mentioned technical problems. The technical solution disclosed in this patent document is as follows: A storage barrel for the production of a new type of building coating, which relates to the field of building coatings, includes annular grooves opened in the inner cavity of the storage barrel. A limiting block is slidably inserted into the annular groove, and a scraping plate is fixedly connected between the two limiting blocks. The scraping plate is fixedly connected with a fixing block, the fixing block is fixedly connected with a rotating block, a connecting rod is arranged in the groove, one side of the connecting rod is fixedly connected with an elastic rope, the elastic rope is fixedly connected with the storage barrel, and a plurality of clamping grooves are opened at the top of the rotating block. One end of the connecting rod is fixedly connected with a plurality of clamping blocks. The utility model uses the setting method of cooperating the scraping plate, the connecting rod, the clamping blocks and the rotating block. The connecting rod passes through and enters the inner cavity of the circular groove, and then the connecting rod is manually rotated to drive the scraping plate to rotate clockwise or counterclockwise, which is beneficial to scraping the coating on the inner wall of the inner cavity of the storage barrel to remove the wall-sticking coating. However, when the storage barrel is placed, the storage barrel is prone to tipping due to external forces or unstable placement, which easily leads to the problem of coating leakage inside the barrel body. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a leakage-proof storage barrel for building coatings to solve the problems raised in the above background art.
[0006] To solve the above technical problems, the technical solution adopted by the utility model is:
[0007] A leak-proof storage barrel for architectural coatings, comprising a barrel body and a top cover. The top cover is threadedly installed at the top of the periphery of the barrel body. A controller is fixedly installed at one end of the barrel body. A number of protection components for limiting the top cover are arranged on the outer periphery of the barrel body at the top of the controller. Fixed frames are fixedly installed on both sides of the barrel body at the bottom of the controller. A first lead screw is threadedly installed inside each fixed frame. Each first lead screw respectively penetrates through the bottom of each fixed frame and is rotatably connected to an adjusting plate through a bearing. A pair of fixing plates are fixedly installed at the bottom of each adjusting plate. A reinforcing component for reinforcing the barrel body is arranged at the inner end of each pair of fixing plates. Connecting frames are fixedly installed at both ends of the barrel body at the bottom of the controller. A second lead screw is threadedly installed inside each connecting frame. Each second lead screw respectively penetrates through the bottom of each connecting frame and is rotatably connected to a sliding plate through a bearing. A pair of connecting plates are fixedly installed at the bottom of each sliding plate. A limiting component for limiting the barrel body is arranged inside each pair of connecting plates.
[0008] After the barrel body is placed on a relatively smooth ground, and the first suction cup and the second suction cup are closely attached to the ground. By installing the electric push rod, it can drive the movable plate to move upward, and drive the movable rod and the first piston plate to move upward, so that a negative pressure is formed in the cavity inside the outer shell and the inside of the first suction cup, so that the first suction cup and the ground are in a state of mutual adsorption. By installing the electric push rod, it can drive the sliding plate to move upward, and drive the sliding rod and the second piston plate to move upward, so that a negative pressure is formed in the cavity inside the shell and the inside of the second suction cup, so that the second suction cup and the ground are in a state of mutual adsorption. Furthermore, the barrel body can be limited and reinforced, and to a certain extent, the situation that the barrel body topples over is avoided, and the architectural coatings inside the barrel body are prevented from leaking out.
[0009] A further improvement of the technical solution of the present utility model lies in that: each reinforcing component includes an outer shell with a cavity opened inside. Each outer shell is fixedly connected to each pair of fixing plates respectively. A first suction cup is fixedly installed at the bottom of each outer shell. Each first suction cup is respectively communicated with the cavity inside each outer shell. A first piston plate is slidably installed in the cavity of each outer shell. An activity rod is fixedly connected to the top of each first piston plate. Each activity rod respectively penetrates through the top of each outer shell and is fixedly installed with a movable plate. An electric push rod is fixedly connected to the outside of each outer shell. The surface of the top of each electric push rod is fixedly connected to the lower surface of each movable plate respectively.
[0010] Adopting the above technical solution, in this solution, by setting the reinforcing component, the barrel body can be limited and reinforced from both sides, and to a certain extent, the situation that the barrel body topples to one side or the other is avoided, and the architectural coatings inside the barrel body are prevented from leaking out.
[0011] A further improvement of the technical solution of the present utility model lies in that: a screw rod is threadedly installed inside each fixing plate, and a support plate is rotatably installed at the bottom of each screw rod through a bearing.
[0012] With the above technical solution, in this solution, when the ground where the barrel is placed is in an uneven state, the first suction cup cannot be closely attached to the ground, which affects the effect of supporting and strengthening the barrel. At this time, by rotating the screw rod, the support plate can be driven to move downward, so that the bottom of the support plate is in contact with the ground, thereby being able to use the support plate to expand the contact area between the first suction cup and the ground, and thus being able to improve the effect of supporting and strengthening the barrel.
[0013] A further improvement of the technical solution of the present utility model lies in that: each limiting component includes a housing with a cavity formed inside, each housing is fixedly connected to each pair of connecting plates respectively, a second suction cup is fixedly installed at the bottom of each housing, each second suction cup is in communication with the cavity inside each housing respectively, a second piston plate is slidably installed in the cavity of each housing, a slide rod is fixedly connected to the top of each second piston plate, each slide rod penetrates through the top of each housing and is fixedly installed with a slide plate, and an electric push rod is fixedly connected to the outer end of each housing, and the surface of the top of each electric push rod is fixedly connected to the lower surface of each slide plate respectively.
[0014] With the above technical solution, in this solution, by setting the limiting component, the barrel can be limited and strengthened from both ends, to a certain extent, avoiding the situation that the barrel topples to one end and the other end, and preventing the building paint inside the barrel from leaking out.
[0015] A further improvement of the technical solution of the present utility model lies in that: a threaded rod is threadedly installed inside each connecting plate, and a reinforcing plate is rotatably installed at the bottom of each threaded rod through a bearing.
[0016] With the above technical solution, in this solution, when the ground where the barrel is placed is in an uneven state, the second suction cup cannot be closely attached to the ground, which affects the effect of supporting and strengthening the barrel. At this time, by rotating the threaded rod, the reinforcing plate can be driven to move downward, so that the bottom of the reinforcing plate is in contact with the ground, thereby being able to use the reinforcing plate to expand the contact area between the second suction cup and the ground, and thus being able to improve the effect of supporting and strengthening the barrel.
[0017] A further improvement of the technical solution of the present utility model lies in that: each protection component includes a fixator, each fixator is fixedly connected to the outer surface of the barrel body, and each fixator is circularly distributed around the barrel body. A slider is slidably installed inside each fixator through a spring. Each slider respectively penetrates through the top of each fixator and is fixedly installed with a protection block. Each protection block is in contact with the outer surface of the top cover. An inclined surface is provided at the top of each protection block, which inclines towards the bottom of the top cover.
[0018] With the above technical solution, in this solution, after the top cover is installed on the top of the barrel body, the elastic force of the spring itself can form an inward pulling force on the slider, and then the protection block can be tightly attached to the outer surface of the top cover, so as to limit the top cover and prevent the top cover from detaching from the top of the barrel body, resulting in the leakage of the architectural coating inside the barrel body. By providing an inclined surface at the top of the protection block that inclines towards the bottom of the top cover, when the top cover is rotated downward from the top to the top of the outer periphery of the barrel body, the top cover can directly press on the inclined surface, causing the protection block to automatically move outward, facilitating the installation of the top cover. There is no need for the user to separately push each protection block outward and then install the top cover, thus reducing the operation steps and improving the work efficiency.
[0019] A further improvement of the technical solution of the present utility model lies in that: a contact plate is fixedly installed at the top of each protection block.
[0020] With the above technical solution, in this solution, by installing the contact plate, the contact area between the user's hand and the protection block can be enlarged, facilitating the user to push the protection block outward and then disassemble the top cover.
[0021] Due to the adoption of the above technical solution, the technical progress achieved by the present utility model compared with the prior art is as follows:
[0022] 1. The present utility model provides a storage barrel for preventing leakage of architectural coating. When the barrel body is placed on a relatively smooth ground, the first suction cup and the second suction cup can be closely attached to the ground, and then the electric push rod and the electric push rod are respectively used to drive the movable plate and the sliding plate to move upward, so that the first suction cup and the second suction cup can adsorb each other with the ground, limiting and strengthening the barrel body, and to a certain extent, preventing the barrel body from tipping over, thereby preventing the architectural coating inside the barrel body from leaking out.
[0023] 2. The present utility model provides a storage barrel for preventing leakage of architectural coating. The spring can be used to pull the slider, making the protection block closely attached to the outer surface of the top cover, thereby preventing the top cover from detaching from the top of the barrel body and causing the architectural coating inside the barrel body to leak out.
[0024] 3. The utility model provides a leak-proof storage barrel for architectural coatings. If the ground where the barrel body is placed is uneven, the first suction cup and the second suction cup cannot be closely attached to the ground. By rotating the screw rod and the threaded rod, the support plate and the reinforcement plate can be driven to fit with the ground respectively, so as to expand the contact area between the first suction cup and the second suction cup and the ground, thereby improving the effect of supporting and reinforcing the barrel body and preventing the architectural coatings inside the barrel body from leaking out. Brief Description of the Drawings
[0025] The following further describes the present utility model with reference to the drawings.
[0026] Figure 1 is a three-dimensional view of the present utility model;
[0027] Figure 2 is a schematic diagram of the partial structure of the barrel body of the present utility model;
[0028] Figure 3 is a schematic diagram of the partial exploded structure of the barrel body of the present utility model;
[0029] Figure 4 is of the present utility model Figure 3 enlarged schematic diagram of part A;
[0030] Figure 5 is a schematic diagram of the partial sectional structure of the reinforcement component of the present utility model;
[0031] Figure 6 is a schematic diagram of the partial sectional structure of the limiting component of the present utility model.
[0032] In the figure: 1, barrel body; 2, top cover; 3, protection component; 301, fixator; 302, protection block; 303, slider; 304, spring; 305, contact plate; 4, controller; 5, fixed frame; 501, first lead screw; 6, adjusting plate; 7, reinforcement component; 701, housing; 702, movable plate; 703, movable rod; 704, first piston plate; 705, first suction cup; 706, electric push rod; 8, fixing plate; 9, limiting component; 901, housing; 902, sliding plate; 903, sliding rod; 904, second piston plate; 905, second suction cup; 906, electric push rod; 10, support plate; 1001, screw rod; 11, reinforcement plate; 1101, threaded rod; 12, connecting frame; 1201, second lead screw; 13, sliding plate; 14, connecting plate. Detailed Embodiment
[0033] The following further describes the present utility model in detail with reference to the embodiments:
[0034] Embodiment 1
[0035] As Figure 1 ,Figure 5 and Figure 6 As shown, the utility model provides a leak-proof storage barrel for architectural coatings, which includes a barrel body 1 and a top cover 2. The top cover 2 is threadedly installed at the top of the periphery of the barrel body 1; a controller 4 is fixedly installed at one end of the barrel body 1. A number of protection components 3 for limiting the top cover 2 are arranged on the periphery of the barrel body 1 at the top of the controller 4. Fixed frames 5 are fixedly installed on both sides of the barrel body 1 at the bottom of the controller 4. A first lead screw 501 is threadedly installed inside each fixed frame 5. Each first lead screw 501 respectively penetrates the bottom of each fixed frame 5 and is rotatably connected to an adjusting plate 6 through a bearing. A pair of fixing plates 8 are fixedly installed at the bottom of each adjusting plate 6. A reinforcing component 7 for strengthening the barrel body 1 is arranged at the inner end of each pair of fixing plates 8. Connecting frames 12 are fixedly installed at both ends of the barrel body 1 at the bottom of the controller 4. A second lead screw 1201 is threadedly installed inside each connecting frame 12. Each second lead screw 1201 respectively penetrates the bottom of each connecting frame 12 and is rotatably connected to a sliding plate 13 through a bearing. A pair of connecting plates 14 are fixedly installed at the bottom of each sliding plate 13. A limiting component 9 for limiting the barrel body 1 is arranged on the inner side of each pair of connecting plates 14. Each reinforcing component 7 includes a housing 701 with a cavity formed inside. Each housing 701 is fixedly connected to each pair of fixing plates 8. A first suction cup 705 is fixedly installed at the bottom of each housing 701. Each first suction cup 705 is respectively communicated with the cavity inside each housing 701. A first piston plate 704 is slidably installed in the cavity of each housing 701. A movable rod 703 is fixedly connected to the top of each first piston plate 704. Each movable rod 703 respectively penetrates the top of each housing 701 and is fixedly installed with a movable plate 702. An electric push rod 706 is fixedly connected to the outside of each housing 701. The surface at the top of each electric push rod 706 is respectively fixedly connected to the lower surface of each movable plate 702. Each limiting component 9 includes a housing 901 with a cavity formed inside. Each housing 901 is fixedly connected to each pair of connecting plates 14. A second suction cup 905 is fixedly installed at the bottom of each housing 901. Each second suction cup 905 is respectively communicated with the cavity inside each housing 901. A second piston plate 904 is slidably installed in the cavity of each housing 901. A sliding rod 903 is fixedly connected to the top of each second piston plate 904. Each sliding rod 903 respectively penetrates the top of each housing 901 and is fixedly installed with a sliding plate 902. An electric push rod 906 is fixedly connected to the outer end of each housing 901. The surface at the top of each electric push rod 906 is respectively fixedly connected to the lower surface of each sliding plate 902.
[0036] In this embodiment, after the barrel body 1 is placed on a relatively smooth ground, the first suction cup 705 and the second suction cup 905 are closely attached to the ground. By installing the electric push rod 706, the movable plate 702 can be driven to move upward, and the movable rod 703 and the first piston plate 704 can be driven to move upward, so that a negative pressure is formed in the cavity inside the housing 701 and the inside of the first suction cup 705, so that the first suction cup 705 and the ground are in a state of mutual adsorption. By installing the electric push rod 906, the sliding plate 902 can be driven to move upward, and the sliding rod 903 and the second piston plate 904 can be driven to move upward, so that a negative pressure is formed in the cavity inside the housing 901 and the inside of the second suction cup 905, so that the second suction cup 905 and the ground are in a state of mutual adsorption, and thus the barrel body 1 can be limited and reinforced, avoiding the situation that the barrel body 1 topples to a certain extent and preventing the building paint inside the barrel body 1 from leaking out.
[0037] Embodiment 2
[0038] As Figure 1 、 Figure 2 、 Figure 5 and Figure 6 shown, on the basis of Embodiment 1, the present utility model provides a technical solution: Preferably, a screw rod 1001 is threadedly installed inside each fixing plate 8, and a support plate 10 is rotatably installed at the bottom of each screw rod 1001 through a bearing. A threaded rod 1101 is threadedly installed inside each connecting plate 14, and a reinforcing plate 11 is rotatably installed at the bottom of each threaded rod 1101 through a bearing.
[0039] In this embodiment, when the ground where the barrel body 1 is placed is in an uneven state, the first suction cup 705 and the second suction cup 905 cannot be closely attached to the ground, which affects the support and reinforcement effect on the barrel body 1. At this time, by rotating the screw rod 1001, the support plate 10 can be driven to move downward so that the bottom of the support plate 10 is in contact with the ground. By rotating the threaded rod 1101, the reinforcing plate 11 can be driven to move downward so that the bottom of the reinforcing plate 11 is in contact with the ground, so that the contact area between the first suction cup 705 and the second suction cup 905 and the ground can be enlarged by using the support plate 10 and the reinforcing plate 11, thereby improving the support and reinforcement effect on the barrel body 1.
[0040] Embodiment 3
[0041] As Figure 1 、 Figure 3 and Figure 4As shown, on the basis of Embodiment 2, the present utility model provides a technical solution: Preferably, each protection component 3 includes a fixator 301. Each fixator 301 is fixedly connected to the outer surface of the barrel body 1, and each fixator 301 is circularly distributed around the barrel body 1. A slider 303 is slidably installed inside each fixator 301 through a spring 304. Each slider 303 respectively penetrates the top of each fixator 301 and is fixedly installed with a protection block 302. Each protection block 302 is in contact with the outer surface of the top cover 2. An inclined surface is provided at the top of each protection block 302 and is inclined towards the bottom of the top cover 2. A contact plate 305 is fixedly installed at the top of each protection block 302.
[0042] In this embodiment, after the top cover 2 is installed on the top of the barrel body 1, the elastic force of the spring 304 itself can form an inward pulling force on the slider 303, so that the protection block 302 can be closely attached to the outer surface of the top cover 2, thereby being able to limit the position of the top cover 2 and prevent the top cover 2 from detaching from the top of the barrel body 1 and causing the building coating inside the barrel body 1 to leak out. By providing an inclined surface at the top of the protection block 302 that is inclined towards the bottom of the top cover 2, when the top cover 2 is rotated downward from the top to the top of the periphery of the barrel body 1, the top cover 2 can directly squeeze the inclined surface, causing the protection block 302 to automatically move outward, thus facilitating the installation of the top cover 2 without the user having to separately push each protection block 302 outward and then install the top cover 2, thereby reducing the operation steps and improving the work efficiency; by installing the contact plate 305, the contact area between the user's hand and the protection block 302 can be enlarged, so as to facilitate the user to push the protection block 302 outward and then disassemble the top cover 2.
[0043] Next, the working principle of the anti-leakage storage barrel for building coatings will be specifically described.
[0044] As Figures 1 - 6As shown, during the process of the user installing the top cover 2 on the top of the barrel body 1 from the top, the top cover 2 can directly squeeze the inclined surface of the protection block 302, causing the protection block 302 to automatically move outward. There is no need for the user to separately push each protection block 302 outward, which facilitates the installation of the top cover 2. Then, the spring 304 forms an inward pulling force on the slider 303, making the protection block 302 closely fit the outer surface of the top cover 2, thereby being able to limit the position of the top cover 2 and preventing the top cover 2 from detaching from the top of the barrel body 1 and causing the building coating inside the barrel body 1 to leak out; after the user places the barrel body 1 on the ground, if the ground surface is relatively smooth, the user can closely fit the first suction cup 705 and the second suction cup 905 with the ground, and then use the electric push rod 706 to drive the movable plate 702 to move upward and drive the first piston plate 704 to move upward synchronously, so as to enable the first suction cup 705 to adsorb with the ground. At the same time, use the electric push rod 906 to drive the slide plate 902 to move upward and drive the second piston plate 904 to move upward, so as to enable the second suction cup 905 to adsorb with the ground, thereby being able to limit and reinforce the barrel body 1, and to a certain extent, prevent the barrel body 1 from tipping over, thus preventing the building coating inside the barrel body 1 from leaking out. If the ground where the barrel body 1 is placed is uneven, at this time, the first suction cup 705 and the second suction cup 905 cannot closely fit with the ground. The user can rotate the screw rod 1001 and drive the support plate 10 to move downward, so that the bottom of the support plate 10 is in contact with the ground. Then, rotate the threaded rod 1101 and drive the reinforcement plate 11 to move downward, so that the bottom of the reinforcement plate 11 is in contact with the ground, thereby being able to expand the contact area between the first suction cup 705 and the second suction cup 905 and the ground, and improving the effect of supporting and reinforcing the barrel body 1; after installing the top cover 2 on the top of the barrel body 1, the elastic force of the spring 304 itself can form an inward pulling force on the slider 303, and further enable the protection block 302 to closely fit the outer surface of the top cover 2, thereby being able to perform a limit treatment on the top cover 2 and preventing the top cover 2 from detaching from the top of the barrel body 1 and causing the building coating inside the barrel body 1 to leak out.
[0045] The above generally describes the present utility model in detail. However, based on the present utility model, some modifications or improvements can be made, which are obvious to those of ordinary skill in the technical field. Therefore, the modifications or improvements made without departing from the spirit and idea of the present utility model are all within the protection scope of the present utility model.
Claims
1. A leak-proof storage barrel for building paint, comprising a barrel body (1) and a top cover (2), wherein the top cover (2) is threadedly mounted on the top of the outer periphery of the barrel body (1); characterized in that: A controller (4) is fixedly mounted on one end of the barrel body (1); a plurality of protective components (3) for limiting the position of the top cover (2) are arranged on the periphery of the barrel body (1) at the top of the controller (4); fixed frames (5) are fixedly mounted on both sides of the barrel body (1) at the bottom of the controller (4); a first screw rod (501) is threadedly mounted inside each of the fixed frames (5); each of the first screw rods (501) respectively penetrates the bottom of each of the fixed frames (5) and is rotatably connected to an adjustment plate (6) via a bearing; a pair of fixed plates (8) are fixedly mounted on the bottom of each of the adjustment plates (6); each pair of fixed plates (8) The inner ends of the barrel bodies (1) are provided with reinforcing components (7) for reinforcing the barrel body (1), the barrel bodies (1) at the bottom of the controller (4) are fixedly mounted with connecting frames (12) at both ends, the interior of each connecting frame (12) is threadedly mounted with a second screw rod (1201), each of the second screw rods (1201) respectively passes through the bottom of each connecting frame (12) and is rotatably connected to a sliding plate (13) via a bearing, the bottom of each sliding plate (13) is fixedly mounted with a pair of connecting plates (14), and the inner sides of each pair of connecting plates (14) are provided with a limiting component (9) for limiting the position of the barrel body (1).
2. The anti-leakage storage barrel for architectural coatings according to claim 1, characterized in that: Each of the reinforcing components (7) includes a shell (701) with a cavity formed therein, each of the shells (701) is fixedly connected to each pair of the fixing plates (8), a first suction cup (705) is fixedly installed at the bottom of each of the shells (701), each of the first suction cups (705) is communicated with the cavity inside each of the shells (701), a first piston plate (704) is slidably installed in the cavity of each of the shells (701), a movable rod (703) is fixedly connected to the top of each of the first piston plates (704), each of the movable rods (703) passes through the top of each of the shells (701) and is fixedly installed with a movable plate (702), an electric push rod (706) is fixedly connected to the outer side of each of the shells (701), and the surface of the top of each of the electric push rods (706) is fixedly connected to the lower surface of each of the movable plates (702).
3. The anti-leakage storage barrel for architectural coatings according to claim 2, characterized in that: A screw rod (1001) is threadedly mounted inside each of the fixing plates (8), and a support plate (10) is rotatably mounted on the bottom of each of the screw rods (1001) via a bearing.
4. The anti-leakage storage barrel for architectural coatings according to claim 1, characterized in that: Each of the limiting components (9) includes a shell (901) with a cavity formed therein, each of the shells (901) is fixedly connected to each pair of the connecting plates (14), a second suction cup (905) is fixedly installed at the bottom of each of the shells (901), each of the second suction cups (905) is communicated with the cavity inside each of the shells (901), a second piston plate (904) is slidably installed in the cavity of each of the shells (901), a sliding rod (903) is fixedly connected to the top of each of the second piston plates (904), each of the sliding rods (903) passes through the top of each of the shells (901) and is fixedly installed with a slide plate (902), an outer end of each of the shells (901) is fixedly connected to an electric push rod (906), and the surface of the top of each of the electric push rods (906) is fixedly connected to the lower surface of each of the slide plates (902).
5. The anti-leakage storage barrel for architectural coatings according to claim 4, characterized in that: A threaded rod (1101) is threadedly mounted inside each of the connecting plates (14), and a reinforcing plate (11) is rotatably mounted at the bottom of each of the threaded rods (1101) via a bearing.
6. The anti-leakage storage barrel for architectural coatings according to claim 1, characterized in that: Each of the protective components (3) comprises a fixer (301), each of the fixers (301) is fixedly connected to the outer surface of the barrel body (1), and each of the fixers (301) is distributed in a circular shape on the periphery of the barrel body (1), and each of the fixers (301) is slidably mounted with a slider (303) inside the fixer (301) via a spring (304), and each of the sliders (303) respectively penetrates the top of each of the fixers (301) and is fixedly mounted with a protective block (302), each of the protective blocks (302) is fitted with the outer surface of the top cover (2), and the top of each of the protective blocks (302) is provided with an inclined surface inclined toward the bottom of the top cover (2).
7. The anti-leakage storage barrel for architectural coatings according to claim 6, characterized in that: A contact plate (305) is fixedly mounted on the top of each protection block (302).
Citation Information
Patent Citations
Novel storage barrel for building coating production
CN212981083U