A paint processing dispensing tank
By introducing a combination structure of drive rod, support sleeve, support rod, spring, arc plate and electric heating plate into the paint mixing tank, the problem of poor fluidity of paint at low temperature is solved, realizing smooth entry of paint and improving processing efficiency. Real-time monitoring is achieved through scale strip and glass plate, improving the convenience of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2026-06-12
AI Technical Summary
When the external temperature is low, the viscosity of the paint increases and its fluidity decreases, making it difficult for the paint to flow smoothly into the mixing tank and affecting processing efficiency.
It adopts a combination structure of drive rod, support sleeve, support rod, spring, arc plate, shell and electric heating plate. The stirring and shell vibration are driven by servo motor, combined with the heating of electric heating plate, to ensure that the paint material enters the mixing tank smoothly, and the material quantity can be observed through scale strip and glass plate.
It improves the processing efficiency of paint, ensures that paint material enters the mixing tank smoothly, and enables real-time monitoring of material quantity through graduated strips and glass plates, thereby improving processing efficiency and ease of operation.
Smart Images

Figure CN224345829U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of paint processing technology, specifically to a mixing tank for paint processing. Background Technology
[0002] Paint is a chemical mixture that can firmly cover the surface of an object, serving as a protective, decorative, marking, and other special-purpose coating. The main components of paint include film-forming substances, fillers, solvents, and additives. Film-forming substances are the main components that form the coating film. Fillers are used to increase the volume of the paint and reduce costs. Solvents are used to adjust the viscosity of the paint, and additives are used to improve the performance of the paint.
[0003] Patent No. 202321903554.3 discloses a mixing tank for paint processing. The device activates a telescopic rod, which, together with a fixed block, a connecting block, and a connecting rod, causes the connecting plate to rotate on its shaft and the valve to be turned, allowing the paint to flow into the mixing tank. By observing the scale line, the telescopic rod controls the valve to close, thus eliminating the need for manual mixing by workers. This facilitates control over the amount of paint used, avoids errors in the mixed color, and does not affect the subsequent use.
[0004] However, when using existing paint mixing tanks, the paint material in the storage tank is fed into the mixing tank through the first discharge pipe and valve for paint mixing. However, when the external temperature is low, the viscosity of the paint material increases and its fluidity decreases, making it difficult for the paint material to flow smoothly into the mixing tank, which has a certain impact on the paint processing efficiency. Therefore, a new paint mixing tank is designed. Utility Model Content
[0005] The main purpose of this utility model is to provide a mixing tank for paint processing. This utility model solves the problem that when the external temperature is low, the paint material cannot flow smoothly into the mixing tank, which affects the paint processing efficiency. This is achieved by setting a drive rod, a support sleeve, a support rod, a spring, an arc plate, a shell, and an electric heating plate.
[0006] The technical solution adopted by this utility model to solve its technical problem is a paint mixing tank, including a mixing tank, a branch pipe for conveying paint material is inserted into the top of the mixing tank, and a flow valve for controlling the flow of paint material is provided on one side of the branch pipe. A material bucket for storing paint material is bolted to the end of the branch pipe away from the mixing tank. A shell is fitted over the material bucket, and an electric heating plate for heating the material bucket is screwed on the inside of the shell. A bracket is bolted to the top of the mixing tank, and a servo motor for providing power is clamped inside the bracket. The power output end of the servo motor is keyed to a drive rod for agitating the paint in the mixing tank. A support sleeve is fitted over the drive rod, and support rods are symmetrically welded to the outside of the support sleeve. An arc plate is rotatably connected to the end of the support rod away from the support sleeve. A spring for sometimes restoring the arc plate is welded to the outside of the support rod. A base frame is bolted to the outside of the mixing tank, and a controller is screwed to the outside of the base frame.
[0007] By adopting the above technical solution, when the paint needs to be processed, the controller outside the base frame opens the flow valve outside the branch pipe, and then the paint in the material bucket enters the mixing tank through the branch pipe. Then, the servo motor on the support is controlled by the controller to convert the received electrical energy into mechanical energy. The servo motor drives the drive rod to stir and mix the paint in the mixing tank.
[0008] When the paint material in the bucket enters the mixing tank through the branch pipe, the heating plate in the outer shell of the bucket is heated by the controller. The heat generated is then transferred into the inside of the bucket. At the same time, the drive rod rotates, causing the support rod on the support sleeve to rotate. Then, the arc plate on one side of the support rod contacts the outer shell of the bucket. The shell then transmits the force to the inner bucket, causing the bucket to vibrate. This facilitates the smooth entry of the paint material in the bucket into the mixing tank, improving the paint processing efficiency.
[0009] When the support rod drives the arc plate to contact the housing, the arc plate rotates. Then, the arc plate presses the spring outside the support rod, and the spring is compressed. Then, the support rod drives the arc plate to move to the other side of the material bucket. Then, the spring drives the arc plate to pop outward, so that the arc plate resets, which facilitates continuous vibration treatment of the material bucket.
[0010] Specifically, the surface of the material bucket is screwed with a scale bar that displays the amount of paint.
[0011] By adopting the above technical solution, when the paint in the bucket enters the mixing tank through the branch pipe, the bucket is made of transparent material, and the scale bar on the outside of the bucket displays the paint in the bucket, and paint is added to the bucket in a timely manner.
[0012] Specifically, a glass plate for observing the scale strip is snapped onto one side of the housing.
[0013] By adopting the above technical solution, the glass plate screwed on one side of the shell coincides with the scale strip on the material barrel, making it easier to observe the scale strip.
[0014] Specifically, a fixed pipe is inserted into one side of the mixing tank to discharge the mixed paint.
[0015] By adopting the above technical solution, after the paint is mixed in the mixing tank, the valve on the fixed pipe is opened, and then the mixed paint is discharged from the fixed pipe.
[0016] Specifically, the input terminals of the servo motor, controller, and heating plate are all electrically connected to the power supply terminal of an external power source.
[0017] By adopting the above technical solution and connecting to an external power source, the electrical equipment can operate normally.
[0018] The beneficial effects of this utility model are:
[0019] (1) The paint mixing tank of this utility model, when the paint material in the material bucket enters the mixing tank through the branch pipe, the electric heating plate in the outer shell of the material bucket is heated by the controller, and the heat generated is transferred into the inside of the material bucket. At the same time, the drive rod rotates and drives the support rod on the support sleeve to rotate. Then the arc plate on one side of the support rod contacts the outer shell of the material bucket. Then the shell transmits the force received to the inner material bucket, causing the material bucket to vibrate, thereby facilitating the smooth entry of the paint material in the material bucket into the mixing tank and improving the paint processing efficiency.
[0020] (2) The paint mixing tank of this utility model, when the support rod drives the arc plate to contact the shell, the arc plate rotates, and then the arc plate presses the spring outside the support rod, the spring is compressed, and then the support rod drives the arc plate to move to the other side of the material tank, and then the spring drives the arc plate to pop outward, so that the arc plate is reset, which facilitates continuous vibration treatment of the material tank. Attached Figure Description
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Figure 1 This is a schematic diagram of the overall structure of a paint mixing tank according to the present invention;
[0023] Figure 2 This is a partial structural diagram (A) of a paint mixing tank according to the present invention.
[0024] Figure 3 This is a top view of the internal structure of the shell of a paint mixing tank according to the present invention;
[0025] Figure 4 This is a schematic diagram of the surface structure of the mixing tank for paint processing according to this utility model;
[0026] In the diagram: 1. Servo motor; 2. Support frame; 3. Material bucket; 4. Housing; 5. Mixing tank; 6. Glass plate; 7. Base frame; 8. Fixing pipe; 9. Flow valve; 10. Branch pipe; 11. Controller; 12. Spring; 13. Drive rod; 14. Support sleeve; 15. Arc plate; 16. Support rod; 17. Heating plate; 18. Scale bar. Detailed Implementation
[0027] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0028] To improve the processing efficiency of paint, as one embodiment of this utility model, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the paint mixing tank of this utility model includes a mixing tank 5. A branch pipe 10 for conveying paint is inserted into the top of the mixing tank 5, and a flow valve 9 for controlling the paint flow is provided on one side of the branch pipe 10. A material container 3 for storing paint is bolted to the end of the branch pipe 10 away from the mixing tank 5. A shell 4 is fitted over the outside of the material container 3, and an electric heating plate 17 for heating the material container 3 is screwed to the inside of the shell 4. A bracket 2 is bolted to the top of the mixing tank 5, and the bracket 2 is secured inside. A servo motor 1 is connected to provide power. The power output end of the servo motor 1 is keyed to a drive rod 13 that agitates the paint in the mixing tank 5. A support sleeve 14 is sleeved on the outside of the drive rod 13, and support rods 16 are symmetrically welded to the outside of the support sleeve 14. An arc plate 15 is rotatably connected to the end of the support rod 16 away from the support sleeve 14. A spring 12 is welded to the outside of the support rod 16 to reset the arc plate 15. A base frame 7 is bolted to the outside of the mixing tank 5, and a controller 11 is fixed to the outside of the base frame 7 with screws.
[0029] When in use, when the paint needs to be processed, the controller 11 outside the base frame 7 causes the flow valve 9 outside the branch pipe 10 to open. Then the paint in the material bucket 3 enters the mixing tank 5 through the branch pipe 10. Then the servo motor 1 on the bracket 2 converts the received electrical energy into mechanical energy under the action of the controller 11. The servo motor 1 drives the drive rod 13 to stir and mix the paint in the mixing tank 5.
[0030] When the paint material in the material bucket 3 enters the mixing tank 5 through the branch pipe 10, the electric heating plate 17 in the outer shell 4 of the material bucket 3 is heated by the controller 11. The heat generated is then transferred into the interior of the material bucket 3. At the same time, the drive rod 13 rotates, causing the support rod 16 on the support sleeve 14 to rotate. Then, the arc plate 15 on one side of the support rod 16 contacts the outer shell 4 of the material bucket 3. The shell 4 then transmits the force received to the inner material bucket 3, causing the material bucket 3 to vibrate. This facilitates the smooth entry of the paint material in the material bucket 3 into the mixing tank 5, thereby improving the paint processing efficiency.
[0031] When the support rod 16 drives the arc plate 15 to contact the housing 4, the arc plate 15 rotates. Then the arc plate 15 presses the spring 12 outside the support rod 16, and the spring 12 is compressed. Then the support rod 16 drives the arc plate 15 to move to the other side of the material bucket 3. Then the spring 12 drives the arc plate 15 to pop outward, so that the arc plate 15 is reset, which facilitates continuous vibration treatment of the material bucket 3.
[0032] To display the paint in container 3, for example, as shown... Figure 4 As shown, the present invention also includes a scale bar 18 for displaying the amount of paint material fixed to the surface of the material bucket 3 by screws.
[0033] When in use, when the paint in the material bucket 3 enters the mixing tank 5 through the branch pipe 10, the material bucket 3 is made of transparent material, and the scale bar 18 on the outside of the material bucket 3 displays the paint in the material bucket 3, and paint is added to the material bucket 3 in a timely manner.
[0034] To observe the scale bar 18, for example, as shown... Figure 1 As shown, the present invention also includes a glass plate 6 for observing the scale bar 18, which is snapped onto one side of the housing 4.
[0035] When in use, the glass plate 6, which is screwed on one side of the housing 4, coincides with the scale strip 18 on the material barrel 3, making it easy to observe the scale strip 18.
[0036] To drain the mixed paint, for example, such as Figure 1 As shown, the present invention also includes a fixed pipe 8 for discharging the mixed paint by inserting it into one side of the mixing tank 5.
[0037] When in use, after the paint has been mixed in the mixing tank 5, open the valve on the fixed pipe 8, and then the mixed paint will be discharged from the fixed pipe 8.
[0038] For electrical equipment to function properly, for example, such as Figure 1 , Figure 3 As shown, the present invention also includes that the input terminals of the servo motor 1, the controller 11, and the heating plate 17 are all electrically connected to the power supply terminal of an external power source.
[0039] When in use, the electrical equipment works normally by connecting to an external power source.
[0040] In use, when painting is required, the controller 11 outside the base frame 7 opens the flow valve 9 outside the branch pipe 10. The paint in the material bucket 3 then enters the mixing tank 5 through the branch pipe 10. The servo motor 1 on the support 2, under the action of the controller 11, converts the received electrical energy into mechanical energy. The servo motor 1 drives the drive rod 13 to agitate and mix the paint in the mixing tank 5. When the paint in the material bucket 3 enters the mixing tank 5 through the branch pipe 10, the heating plate 17 in the outer shell 4 of the material bucket 3 is heated by the controller 11. The generated heat is then transferred into the interior of the material bucket 3. Simultaneously, the drive rod 13 rotates... The support rod 16 on the support sleeve 14 rotates, and then the arc plate 15 on one side of the support rod 16 contacts the outer shell 4 of the material barrel 3. The shell 4 then transmits the force it receives to the inner material barrel 3, causing the material barrel 3 to vibrate. This facilitates the smooth entry of the paint material in the material barrel 3 into the mixing tank 5, improving the paint processing efficiency. Then the arc plate 15 rotates, and then the arc plate 15 presses the spring 12 outside the support rod 16. The spring 12 is compressed, and then the support rod 16 drives the arc plate 15 to move to the other side of the material barrel 3. Then the spring 12 drives the arc plate 15 to pop outward, so that the arc plate 15 returns to its original position, which facilitates continuous vibration treatment of the material barrel 3.
[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A mixing container for paint processing, characterized in that, The system includes a mixing tank (5), to which a branch pipe (10) for conveying paint is inserted at the top. A flow valve (9) for controlling the paint flow is installed on one side of the branch pipe (10). A material bucket (3) for storing paint is bolted to the end of the branch pipe (10) away from the mixing tank (5). A shell (4) is fitted over the material bucket (3), and an electric heating plate (17) for heating the material bucket (3) is screwed onto the inside of the shell (4). A bracket (2) is bolted to the top of the mixing tank (5), and a servo motor (1) for providing power is clamped inside the bracket (2). The power output end of the servo motor (1) is keyed to a drive rod (13) for agitating the paint in the mixing tank (5). A support sleeve (14) is sleeved on the outside of the drive rod (13), and a support rod (16) is symmetrically welded on the outside of the support sleeve (14). An arc plate (15) is rotatably connected to the end of the support rod (16) away from the support sleeve (14). A spring (12) is welded on the outside of the support rod (16) to reset the arc plate (15). A base frame (7) is bolted to the outside of the mixing tank (5), and a controller (11) is fixed to the outside of the base frame (7) with screws.
2. The paint mixing can according to claim 1, characterized in that, The paint bucket (3) has a scale bar (18) for displaying the amount of paint fixed to its surface by screws.
3. A mixing can for paint processing according to claim 2, characterized in that, A glass plate (6) for observing the scale strip (18) is snapped onto one side of the housing (4).
4. A mixing can for paint processing according to claim 1, characterized in that, A fixed pipe (8) is inserted into one side of the mixing tank (5) to discharge the mixed paint.
5. A mixing can for paint processing according to claim 1, characterized in that, The input terminals of the servo motor (1), controller (11), and heating plate (17) are all electrically connected to the power supply terminal of an external power source.
Citation Information
Patent Citations
Blending tank for paint processing
CN220609943U