Cleaning agent filling equipment
By designing a fully automated cleaning agent filling equipment including conveying components, cylinders, positioning plates and filling pipes, the problem of manual intervention in existing equipment is solved, and an efficient and automated filling process is achieved.
Patent Information
- Application Number
- CN202421810456.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-29
AI Technical Summary
Existing cleaning agent filling equipment requires manual intervention for positioning and conveying filling, resulting in low filling efficiency and inability to meet actual use needs.
A fully automated cleaning agent filling equipment including conveying components, cylinders, positioning plates, water pumps and filling pipes is designed. The positioning plates and filling pipes are driven down by the cylinders, and combined with the cooperation of the wedge blocks and guide rods, the automatic and precise filling of the cleaning agent is achieved.
Fully automated cleaning agent filling is realized, filling efficiency is improved, manual intervention is reduced, and actual use needs are met.
Smart Images

Figure CN223033100U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a filling device, in particular to a cleaning agent filling device. Background Art
[0002] Industrial cleaning agents are chemical or biological agents used in industry to remove oil and dirt. They include mechanical equipment oil cleaning agents, marine cleaning agents, power plant cleaning agents, electrical equipment and housing cleaning agents, civil cleaning agents, and cleaning agents for other industrial fields. In the process of industrial cleaning agent production and packaging, a filling device is often required. The traditional filling device for industrial cleaning agents has the advantages of simple structure and convenient operation, but it cannot achieve good automation. Manual intervention is required for positioning and conveying filling, which greatly reduces the filling work efficiency of the cleaning agent and cannot meet the actual use requirements.
[0003] Therefore, we need to design a cleaning agent filling device that can achieve full automation. Summary of the Utility Model
[0004] In order to overcome the disadvantages of the existing cleaning agent that requires manual intervention for positioning and conveying filling and has low filling efficiency, the technical problem of the utility model is to provide a cleaning agent filling device.
[0005] The technical implementation scheme of the utility model is as follows: A cleaning agent filling device, comprising a housing, a conveying assembly, a limiting block, a guide rod I, a cylinder, a positioning plate, a liquid storage tank, a liquid inlet, a water pump, a liquid outlet pipe, an insertion interface, a telescopic pipe, a filling pipe, a protective door, and a controller. The housing is divided into an upper cavity and a lower cavity. The inner bottom of the upper cavity of the housing is provided with a conveying assembly, and a plurality of limiting blocks are fixedly connected to the conveying assembly. Guide rods I are fixedly connected to the front and rear fixing plates of the conveying assembly. A cylinder is fixedly connected to the inner top of the upper cavity of the housing, and a positioning plate is fixedly connected to the piston rod of the cylinder. The liquid storage tank is slidably placed inside the lower cavity of the housing. A liquid inlet is opened on the front side of the liquid storage tank. A water pump is installed at the inner bottom of the liquid storage tank. The top of the water pump is connected and communicated with a liquid outlet pipe. An insertion interface is provided at the rear side of the top of the liquid storage tank, and the insertion interface is communicated with the inside of the liquid storage tank. The top of the liquid outlet pipe is connected and communicated with a telescopic pipe at the insertion interface, and the top of the telescopic pipe is connected and communicated with a filling pipe. The filling pipe passes through the positioning plate. Protective doors are rotatably connected to the left and right sides of the front parts of the upper cavity and the lower cavity of the housing. A controller is installed on the protective door. The cylinder and the water pump are both electrically connected to the controller.
[0006] Optionally, the filling pipe is composed of four shunt pipes and a cross pipe. The cross pipe is connected to the top of the telescopic pipe, and the four shunt pipes are connected to the front side of the filling pipe. The shunt pipes and the cross pipe are of an integral structure.
[0007] Optionally, it further includes a wedge block, a guide rod II, a spring and a push rod. The positioning plate is slidably connected with a plurality of guide rods II, and the rear part of each guide rod II passes through the positioning plate. A wedge block is fixedly connected to the front part of each guide rod II. A spring is connected between the wedge block and the positioning plate, and a push rod is fixedly connected to the left side of the wedge block.
[0008] Optionally, it further includes a rotating rod, a stopper and a torsion spring. A stopper is rotatably connected inside each shunt pipe on the front side of the filling pipe. The protruding parts on the left and right sides of the stopper respectively pass through the shunt pipe of the filling pipe. A rotating rod is fixedly connected to the left side of the stopper. The rotating rod is in contact and cooperation with the push rod. The rotating rod is rotatably connected to the shunt pipe of the filling pipe. A torsion spring is connected between the stopper and the shunt pipe of the filling pipe.
[0009] Optionally, it further includes a liquid level observation window, and the liquid level observation window is inlaid on the front part of the liquid storage tank.
[0010] Optionally, it further includes a slide rail, and the slide rail is fixedly connected to the inner bottom of the lower cavity of the outer shell.
[0011] Compared with the prior art, the utility model has the following advantages: 1. By setting components such as a conveying assembly and a cylinder, the conveying assembly transfers the filling bottles of the cleaning agent. The piston rod of the cylinder drives the positioning plate and the filling pipe to descend. The positioning plate covers the filling bottle, and the filling pipe accurately fills the cleaning agent into the bottle. The fully automated filling system does not require manual intervention, effectively improving the filling efficiency.
[0012] 2. By setting components such as a water pump, a liquid outlet pipe and a telescopic pipe, the liquid outlet pipe, the telescopic pipe and the filling pipe are connected and communicated with each other. The cleaning agent is pumped out by the water pump. The outlet of the filling pipe is aligned with the filling bottle. Through the cooperation of components such as the wedge block, the push rod and the rotating rod, the stopper is automatically and cleverly opened and closed, realizing the automatic and accurate filling of the cleaning agent. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a three-dimensional structure schematic diagram of the utility model.
[0014] Figure 2 is a partial cross-sectional view of the utility model.
[0015] Figure 3 is a three-dimensional structure schematic diagram of components such as the positioning plate, the conveying assembly and the limit block of the utility model.
[0016] Figure 4 is a three-dimensional structure schematic diagram of components such as the cylinder, the positioning plate and the wedge block of the utility model.
[0017] Figure 5 is a three-dimensional structure schematic diagram of components such as the wedge block, the guide rod II and the spring of the utility model.
[0018] Figure 6This is a three-dimensional structural schematic diagram of components such as the water pump, liquid outlet pipe, and socket of the present utility model.
[0019] The meanings of the reference numerals in the figure: 1: housing, 3: conveying assembly, 4: limiting block, 5: guide rod I, 6: cylinder, 7: positioning plate, 8: wedge block, 9: guide rod II, 10: spring, 11: ejector rod, 12: rotating rod, 13: stop block, 14: torsion spring, 15: liquid storage tank, 16: liquid inlet, 17: water pump, 18: liquid outlet pipe, 19: socket, 20: telescopic pipe, 21: filling pipe, 22: liquid level observation window, 23: slide rail, 24: protective door, 25: controller. Specific embodiments
[0020] To make the objectives, technical solutions, and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings. It is hereby declared that the orientation terms such as up, down, left, right, front, back, inside, and outside that appear or will appear in the text of the present utility model are only based on the accompanying drawings of the present utility model, and they do not specifically limit the present utility model.
[0021] Example: A cleaning agent filling device, such as Figures 1-6As shown in the figure, it includes a housing 1, a conveying component 3, a limiting block 4, a guide rod I 5, a cylinder 6, a positioning plate 7, a liquid storage tank 15, a liquid inlet 16, a water pump 17, a liquid outlet pipe 18, an insertion interface 19, a telescopic pipe 20, a filling pipe 21, a protective door 24 and a controller 25. The housing 1 is divided into an upper cavity and a lower cavity. The inner bottom of the upper cavity of the housing 1 is bolted with a conveying component 3. A plurality of limiting blocks 4 are fixedly connected to the conveying component 3 at intervals. The tops of the fixing plates on the front and rear sides of the conveying component 3 are welded with guide rods I 5. The inner top of the upper cavity of the housing 1 is bolted with a cylinder 6. The piston rod of the cylinder 6 is welded with a positioning plate 7. Four round holes are arranged in an array at the lower part of the positioning plate 7. The size of the round holes is the same as the size of the bottle body of the cleaning agent filling bottle. The liquid storage tank 15 is slidably placed inside the lower cavity of the housing 1. The upper left part of the front side of the liquid storage tank 15 is provided with a liquid inlet 16. The inner bottom of the liquid storage tank 15 is bolted with a water pump 17. The top of the water pump 17 is connected and communicated with a liquid outlet pipe 18. An insertion interface 19 is provided at the rear side of the top of the liquid storage tank 15. The insertion interface 19 is communicated with the inside of the liquid storage tank 15. The top of the liquid outlet pipe 18 is connected and communicated with a telescopic pipe 20 at the insertion interface 19. The top of the telescopic pipe 20 is connected and communicated with a filling pipe 21. The filling pipe 21 passes through the positioning plate 7. The filling pipe 21 is composed of four shunt pipes and a cross pipe. The cross pipe is connected to the top of the telescopic pipe 20. The four shunt pipes are connected to the front side of the filling pipe 21. The shunt pipes and the cross pipe are of an integral structure. The openings of the four shunt pipes on the front side of the filling pipe 21 are aligned with the centers of the four round holes of the positioning plate 7. The front and left and right sides of the upper cavity and the lower cavity of the housing 1 are connected with protective doors 24 by hinges. A controller 25 is bolted at the middle position of the protective door 24 on the left side of the upper cavity of the housing 1. The cylinder 6 and the water pump 17 are both electrically connected to the controller 25.
[0022] As Figures 2-5 shown, it further includes a wedge-shaped block 8, a guide rod II 9, a spring 10 and a push rod 11. Four guide rods II 9 are slidably connected to the positioning plate 7, and the rear parts of the guide rods II 9 pass through the positioning plate 7. A wedge-shaped block 8 is fixedly connected to the front part of each guide rod II 9. The four wedge-shaped blocks 8 are respectively located directly above the four round holes and directly below the four shunt pipes on the front side of the filling pipe 21. A spring 10 is connected between each wedge-shaped block 8 and the positioning plate 7. A push rod 11 is fixedly connected to the upper side of the left rear part of each wedge-shaped block 8.
[0023] As Figure 5 shown, it further includes a rotating rod 12, a stop block 13 and a torsion spring 14. A stop block 13 is rotatably connected inside each shunt pipe on the front side of the filling pipe 21. The protruding parts on the left and right sides of the stop block 13 respectively pass through the shunt pipes of the filling pipe 21. A rotating rod 12 is fixedly connected to the left side of the stop block 13. The rotating rod 12 is in contact and cooperation with the push rod 11. The rotating rod 12 is rotatably connected to the shunt pipe of the filling pipe 21. A torsion spring 14 is connected between the stop block 13 and the shunt pipe of the filling pipe 21.
[0024] When it is necessary to use this device for the filling process of the cleaning agent, first start the conveying component 3 through the controller 25, place the filling bottles of the cleaning agent on the conveying component 3 in sequence. The limiting block 4 spaces multiple filling bottles and fixes their positions at the same time. The guide rods I 5 on the front and rear sides prevent the filling bottles from tipping over. Subsequently, start the cylinder 6 and the water pump 17 through the controller 25. The water pump 17 pumps the cleaning agent through the liquid outlet pipe 18, the telescopic pipe 20 to the filling pipe 21. When the filling bottle of the cleaning agent is transported by the conveying component 3 to directly below the positioning plate 7, the piston rod of the cylinder 6 drives the positioning plate 7 to descend, and the filling pipe 21 descends accordingly. The telescopic pipe 20 is compressed. The four round holes of the positioning plate 7 respectively surround the four filling bottles. Close the cylinder 6 through the controller 25. At this time, the filling bottle squeezes the wedge block 8, and the wedge block 8 drives the guide rod II 9 to move backward. The spring 10 is compressed. At this time, the ejector rod 11 moves backward following the wedge block 8. The upper end of the ejector rod 11 pushes the rotating rod 12 to rotate and abuts against the rotating rod 12. The rotating rod 12 drives the stop block 13 to rotate, and the torsion spring 14 deforms. The cleaning agent at the filling pipe 21 is filled into the filling bottle.
[0025] When the filling bottle is about to be filled, start the cylinder 6 again. The piston rod of the cylinder 6 drives the positioning plate 7 to rise and no longer surround the filling bottle. At this time, the telescopic pipe 20 stretches, the wedge block 8 is no longer squeezed, the spring 10 rebounds, and the elastic force drives the wedge block 8 and the guide rod II 9 to reset. The ejector rod 11 no longer abuts against the rotating rod 12, the rotating rod 12 rotates and resets, the torsion spring 14 rebounds, the stop block 13 closes to stop filling, and the filled cleaning agent is transported away by the conveying component 3. The worker places a storage box at the end of the conveying component 3 to store the filled cleaning agent. At the same time, the conveying component 3 transports the next group of filling bottles to directly below the positioning plate 7, and repeat the above steps to continue filling.
[0026] As Figure 2 , Figure 3 and Figure 6 shown, it also includes a liquid level observation window 22. The liquid level observation window 22 is inlaid at the middle position in the front of the liquid storage tank 15, and the internal liquid level situation of the liquid storage tank 15 can be observed through the transparent liquid level observation window 22.
[0027] As Figure 6 shown, it also includes a slide rail 23. The left and right sides of the inner bottom of the lower cavity of the outer shell 1 are fixedly connected with slide rails 23. The bottom of the liquid storage tank 15 is provided with a groove, and the groove at the bottom of the liquid storage tank 15 fits with the slide rails 23. The liquid storage tank 15 slides on the two slide rails 23.
[0028] The cleaning agent liquid level inside the liquid storage tank 15 can be observed through the liquid level observation window 22. If it is observed that the cleaning agent in the liquid storage tank 15 has been used up, an external pipe can be connected to fill the liquid storage tank 15 from the liquid inlet 16. If the liquid storage tank 15 needs to be replaced, the liquid outlet pipe 18 and the telescopic pipe 20 can be separated at the insertion interface 19, and then the liquid storage tank 15 can be pulled out through the handle on the front side of the liquid storage tank 15. The liquid storage tank 15 moves forward on the slide rail 23. After being pulled out, a new liquid storage tank 15 is placed into the lower cavity of the outer shell 1, and the liquid outlet pipe 18 and the telescopic pipe 20 are connected again.
[0029] If components such as the filling pipe 21 need to be repaired or replaced, the protective door 24 can be opened through the handle. After the components are repaired and replaced, the protective door 24 can be closed.
[0030] It should be understood that this embodiment is only used to illustrate the present invention and not to limit the scope of the present invention. In addition, it should be understood that after reading the content taught by the present invention, those skilled in the art can make various changes or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims of this application.
Claims
1. Cleaning agent filling equipment, characterized by: The invention comprises a shell (1), a conveying assembly (3), a limit block (4), a guide rod I (5), a cylinder (6), a positioning plate (7), a liquid storage box (15), a liquid inlet (16), a water pump (17), a liquid outlet pipe (18), a plug interface (19), a telescopic tube (20), a filling pipe (21), a protective door (24) and a controller (25). The shell (1) is divided into an upper cavity and a lower cavity. The inner bottom of the upper cavity of the shell (1) is provided with a conveying assembly (3). A plurality of limit blocks (4) are fixedly connected to the conveying assembly (3). The fixing plates on the front and rear sides of the conveying assembly (3) are fixedly connected with guide rods I (5). The inner top of the upper cavity of the shell (1) is fixedly connected with a cylinder (6). The piston rod of the cylinder (6) is fixedly connected with the positioning plate (7). A liquid storage tank (15) is slidably placed inside the lower cavity of the shell (1). A liquid storage box (15) is provided with a liquid inlet (16) at the front side of the liquid storage box (15), a water pump (17) is installed at the bottom of the liquid storage box (15), the top of the water pump (17) is connected and communicated with a liquid outlet pipe (18), a plug interface (19) is provided at the rear side of the top of the liquid storage box (15), the plug interface (19) is communicated with the inside of the liquid storage box (15), the top of the liquid outlet pipe (18) is connected and communicated with a telescopic pipe (20) at the plug interface (19), the top of the telescopic pipe (20) is connected and communicated with a filling pipe (21), the front part of the filling pipe (21) passes through the upper cavity and the lower cavity of the housing (1) of the positioning plate (7), and the left and right sides of the front part are rotatably connected with protective doors (24), a controller (25) is installed on the protective door (24), and the cylinder (6) and the water pump (17) are both electrically connected to the controller (25).
2. The cleaning agent filling device according to claim 1, characterized in that: The filling pipe (21) is composed of four shunt pipes and a transverse pipe. The transverse pipe is connected to the top of the telescopic pipe (20), and the four shunt pipes are connected to the front side of the filling pipe (21). The shunt pipe and the transverse pipe are an integrated structure.
3. The cleaning agent filling device according to claim 2, characterized in that: The invention also comprises a wedge block (8), a guide rod II (9), a spring (10) and a push rod (11); a plurality of guide rods II (9) are slidably connected to the positioning plate (7); the rear portion of each guide rod II (9) passes through the positioning plate (7); the front portion of each guide rod II (9) is fixedly connected to a wedge block (8); a spring (10) is connected between the wedge block (8) and the positioning plate (7); and a push rod (11) is fixedly connected to the left side of the wedge block (8).
4. The cleaning agent filling device according to claim 3 is characterized in that: The invention also comprises a rotating rod (12), a stopper (13) and a torsion spring (14); each shunt pipe on the front side of the filling pipe (21) is rotatably connected to the inside thereof; the protruding parts on the left and right sides of the stopper (13) respectively pass through the shunt pipe of the filling pipe (21); the left side of the stopper (13) is fixedly connected to the rotating rod (12); the rotating rod (12) is in contact with the push rod (11); the rotating rod (12) is rotatably connected to the shunt pipe of the filling pipe (21); and a torsion spring (14) is connected between the stopper (13) and the shunt pipe of the filling pipe (21).
5. The cleaning agent filling device according to claim 4 is characterized in that: It also includes a liquid level observation window (22), and the front part of the liquid storage box (15) is inlaid with the liquid level observation window (22).
6. The cleaning agent filling device according to claim 5, characterized in that: It also includes a slide rail (23), and the slide rail (23) is fixedly connected to the inner bottom of the lower cavity of the shell (1).