Printing ink storage tank

CN224752122UActive Publication Date: 2026-09-15SICHUAN DELIHE PRINTING CO LTD
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Patent Information

Application Number
CN202522008416.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2026-09-15
Estimated Expiration
2035-09-18

AI Technical Summary

Benefits of technology

[0007] The beneficial effects of this utility model are as follows: the device can drive the rotating shaft and stirring rod to stir the ink to prevent sedimentation by starting the motor. The control panel controls the temperature and detects the liquid level through temperature sensor, heating block and ultrasonic sensor. The internal ink is discharged through the back discharge pipe. The remaining ink slides down to the upper part of the sliding plate under gravity. After rinsing with water, the box and motor are disassembled by bolts, and the rotating shaft and stirring rod are pulled out. The segmented modular design makes it easy to put into a special cleaning equipment for centralized cleaning, reducing the cleaning difficulty and time.

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Abstract

The utility model relates to the technical field of storage box, especially printing ink storage box, including two symmetrical distribution's H type support, the top of two H type supports all are fixedly installed with cabinet body subassembly through bolt, and the outer wall front side middle of H type support is fixedly installed with reinforcing plate, the bottom of cabinet body subassembly is equipped with the reinforcing plate, and four right angle places of reinforcing plate are equipped with built -in hexagon nut, reinforcing plate is fixedly installed with stirring subassembly through hexagon bolt. The device can drive the rotating shaft and the stirring rod to stir the printing ink to prevent the deposition through the starting motor, the temperature detection liquid level is controlled by the temperature sensor, the electric heating block and the ultrasonic sensor, the internal printing ink is discharged through the back discharge pipe, the residual printing ink slides to the upper portion of the sliding plate under the gravity, after the water flow flush, the box body and the motor are disassembled through the bolt, the rotating shaft and the stirring rod are drawn out, the sectional modular design reduces the cleaning difficulty and time.
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Description

Technical Field

[0001] This utility model relates to the field of storage box technology, specifically to a printing ink storage box. Background Technology

[0002] A storage box is a container used to solve spatial disorder and achieve effective management of goods, serving the functions of holding, organizing, protecting, and transporting items. A printing ink storage box is a professional system that integrates storage, protection, management, and transportation functions, with the core objectives of maintaining the chemical stability and physical properties of inks, ensuring printing quality, and improving work efficiency and safety. It is an industrial container specifically designed for the safe and efficient storage of printing inks.

[0003] Chinese utility model patent CN211617023U discloses an ink storage box for printing machinery, which includes "the top side of the semi-cylinder is connected to the bottom side of the box body, the front and rear sides of the semi-cylinder are flush with the front and rear sides of the box body, a rotating motor is fixedly installed at the upper rear side of the semi-cylinder, the motor shaft of the rotating motor passes through the rear side of the semi-cylinder and the upper and lower ends of the shaft are fixedly installed with stirring rods, and the bottom end of the stirring rod on the lower side of the motor shaft is in contact with the inner wall of the bottom of the semi-cylinder"; however, after use, some ink will still remain on the inner wall and bottom of the container, increasing the risk of subsequent cross-contamination of oil. The one-piece structure makes it difficult and time-consuming to thoroughly clean the residual ink. Utility Model Content

[0004] The purpose of this invention is to provide a printing ink storage box to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a printing ink storage box, comprising two symmetrically distributed H-shaped supports, the tops of the two H-shaped supports being fixedly mounted with cabinet components by bolts, and a reinforcing plate being fixedly mounted in the middle of the front side of the outer wall of the H-shaped supports, the bottom of the cabinet components being provided with a reinforcing plate, and the four right angles of the reinforcing plate being provided with built-in hexagonal nuts, and the reinforcing plate being fixedly mounted with a stirring component by hexagonal bolts.

[0006] The stirring assembly includes a second housing, which is fixedly mounted on a reinforcing plate by hexagonal bolts at four right angles on the top. The top of the second housing is equipped with double-layer sealing gaskets. The bottom of the second housing has a discharge port, and a sliding plate is slidably inserted into the outer wall of the discharge port. A guide groove is slidably inserted into the bottom of the outer wall of the second housing. A motor is fixedly mounted at the rear center of the second housing by bolts, and an output pipe is provided at the front bottom of the second housing. A rotating shaft is fixedly mounted at the output end of the motor. One end of the rotating shaft movably passes through one side of the second housing and is movably inserted into the other side of the second housing. A stirring rod is movably sleeved on the outer wall of the rotating shaft. A temperature sensor is provided at the center of the inner wall of the second housing.

[0007] The beneficial effects of this utility model are as follows: the device can drive the rotating shaft and stirring rod to stir the ink to prevent sedimentation by starting the motor. The control panel controls the temperature and detects the liquid level through temperature sensor, heating block and ultrasonic sensor. The internal ink is discharged through the back discharge pipe. The remaining ink slides down to the upper part of the sliding plate under gravity. After rinsing with water, the box and motor are disassembled by bolts, and the rotating shaft and stirring rod are pulled out. The segmented modular design makes it easy to put into a special cleaning equipment for centralized cleaning, reducing the cleaning difficulty and time.

[0008] To maintain a suitable temperature for the ink within the first chamber and enhance ink flowability:

[0009] Further configuration: The cabinet assembly includes a first box, the bottom of the rectangular box of the first box is fixedly mounted on the top of the H-shaped bracket by bolts, and a control panel is provided on the rear of the outer wall of the first box. A top plate is fixedly mounted on the top of the first box by bolts, and a double-layer protruding block and a sealing gasket are provided sequentially from the outside to the inside of the bottom of the top plate. An input pipe is provided at the top center of the top plate, and a valve is provided on the outer wall of the input pipe. A top cover is threadedly connected to the top of the input pipe. An ultrasonic sensor is provided at the bottom of the top plate. Heating blocks are provided on all four sides of the funnel-shaped inner wall of the first box.

[0010] By adopting the above technical solution, the temperature sensor transmits data to the control panel. The control panel integrates a microprocessor, a display screen, and a switch. The control panel controls the power of the heating block to maintain a suitable temperature for the ink inside the first chamber, thereby enhancing ink flow and reducing equipment wear.

[0011] To enhance ink flow within the second chamber, sliding plate, and first chamber, and to prevent ink sticking:

[0012] Further configuration: The inner walls of the second housing, the sliding plate, and the first housing are all coated with Teflon nanomaterial.

[0013] By adopting the above technical solution, the inner walls of the second box, the sliding plate and the first box are all coated with Teflon nanomaterials. This coating has extremely low surface energy, making it difficult for viscous ink to adhere, thereby enhancing ink fluidity, greatly avoiding adhesion and reducing resource waste.

[0014] To prevent ink leakage from the junction of the discharge port and the sliding plate, and to ensure the airtightness of the second compartment:

[0015] A further feature is provided: an elastic sealing gasket is provided at the junction of the discharge port and the sliding plate.

[0016] By adopting the above technical solution, the sliding plate is inserted into the discharge port, and an elastic sealing gasket is provided at the junction of the two, which prevents ink from leaking from the junction of the discharge port and the sliding plate, thereby improving the storage sealing of the second box.

[0017] To ensure that the motor drives the rotating shaft to rotate without affecting the sealing of the second housing and to prevent ink leakage from the sealed bearing of the second housing:

[0018] The second housing is further configured such that: a sealed bearing is provided on the outer wall of the second housing, and a plug-in block is provided at the center of the sealed bearing; a groove with an inner wall size consistent with the outer wall size of the rotating shaft is provided at the center of the outer wall of the plug-in block; and an anti-overflow washer is provided at the junction of the rotating shaft and the plug-in block.

[0019] By adopting the above technical solution, when the rotating shaft is inserted into the plug block on the sealed bearing, the anti-overflow washer blocks the gaps from the internal ink to the outside, ensuring that the sealing performance of the second box is improved while not affecting the motor driving the rotating shaft to rotate and stir the internal ink, thereby improving the ink uniformity and reducing sedimentation.

[0020] To prevent ink from seeping out from the connection between the second enclosure and the reinforcing plate, thus affecting the overall seal and improving ink storage quality:

[0021] A further feature is provided: an elastic anti-overflow gasket is provided on the side of the second housing that is in contact with the reinforcing plate.

[0022] By adopting the above technical solution, the second box and the reinforcing plate are fixedly connected by bolts. The side where the two are connected and in contact is provided with an elastic anti-overflow gasket to prevent ink from seeping out from the connection between the second box and the reinforcing plate, thereby improving the overall sealing performance and thus improving the ink storage quality.

[0023] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the main view of this utility model;

[0025] Figure 2 This is a front view schematic diagram of the present utility model;

[0026] Figure 3 This is a schematic diagram of the cabinet components of this utility model;

[0027] Figure 4 This is a schematic diagram of the stirring assembly of this utility model.

[0028] In the diagram: 1. H-shaped bracket; 2. Cabinet assembly; 201. First cabinet; 202. Control panel; 203. Top plate; 204. Input pipe; 205. Ultrasonic sensor; 206. Heating block; 3. Reinforcing plate; 4. Strengthening plate; 5. Stirring assembly; 501. Second cabinet; 502. Discharge port; 503. Sliding plate; 504. Guide groove; 505. Motor; 506. Rotating shaft; 507. Stirring rod; 508. Temperature sensor. Detailed Implementation

[0029] To enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be described in detail below with reference to the accompanying drawings. The description in this part is only exemplary and explanatory, and should not be used to limit the scope of protection of the present invention in any way.

[0030] Please see Figures 1 to 4 The printing ink storage box includes two symmetrically distributed H-shaped brackets 1. The top of each H-shaped bracket 1 is fixedly mounted with a cabinet assembly 2 by bolts. A reinforcing plate 3 is fixedly mounted in the middle of the front side of the outer wall of the H-shaped bracket 1. A reinforcing plate 4 is provided at the bottom of the cabinet assembly 2. The four right angles of the reinforcing plate 4 are provided with built-in hexagonal nuts. A stirring assembly 5 is fixedly mounted on the reinforcing plate 4 by hexagonal bolts.

[0031] The mixing assembly 5 includes a second housing 501, which is fixedly mounted on the reinforcing plate 4 by hexagonal bolts at the four right angles of the top. The top of the second housing 501 is provided with double-layer sealing gaskets. The bottom of the second housing 501 is provided with a discharge port 502, and a sliding plate 503 is slidably inserted into the outer wall of the discharge port 502. A guide groove 504 is slidably inserted into the bottom of the outer wall of the second housing 501. A motor 505 is fixedly mounted on the rear center of the second housing 501 by bolts. An output pipe is provided at the front bottom of the second housing 501. A rotating shaft 506 is fixedly mounted on the output end of the motor 505. One end of the rotating shaft 506 movably passes through one side of the second housing 501 and is movably inserted into the other side of the second housing 501. A stirring rod 507 is movably sleeved on the outer wall of the rotating shaft 506. A temperature sensor 508 is provided at the center of the inner wall of the second housing 501.

[0032] In this embodiment, as Figure 1 , Figure 2 and Figure 3As shown, the cabinet assembly 2 includes a first box 201. The bottom of the rectangular box 201 is fixedly mounted on the top of the H-shaped bracket 1 by bolts. A control panel 202 is provided on the rear of the outer wall of the first box 201. A top plate 203 is fixedly mounted on the top of the first box 201 by bolts. The bottom of the top plate 203 is provided with a double-layer protrusion block and a sealing gasket from the outside to the inside. An input pipe 204 is provided at the top center of the top plate 203. A valve is provided on the outer wall of the input pipe 204. A top cover is threaded to the top of the input pipe 204. An ultrasonic sensor 205 is provided at the bottom of the top plate 203. Electric heating blocks 206 are provided on all four sides of the inner wall of the funnel-shaped box of the first box 201.

[0033] In this embodiment, as Figure 3 and Figure 4 As shown, the inner walls of the second box 501, the sliding plate 503, and the first box 201 are all coated with Teflon nanomaterial.

[0034] In this embodiment, as Figure 1 and Figure 4 As shown, an elastic sealing gasket is provided at the junction of the discharge port 502 and the sliding plate 503.

[0035] In this embodiment, as Figure 4 As shown, the outer wall of the second housing 501 is provided with a sealed bearing, and the center of the sealed bearing is provided with a plug-in block. The center of the outer wall of the plug-in block is provided with a groove whose inner wall is consistent with the outer wall structure size of the rotating shaft 506. An anti-overflow washer is provided at the junction of the rotating shaft 506 and the plug-in block.

[0036] In this embodiment, as Figure 4 As shown, the side of the second box 501 that is in contact with the reinforcing plate 4 is provided with an elastic anti-overflow gasket.

[0037] The computer software involved in the hardware carriers such as motors in the technical solution is software technology known to those skilled in the art. It is merely applied to the aforementioned hardware carriers. In other words, the computer software portion of the technical solution is an essential technical feature for solving the aforementioned technical problem, constituting a necessary technical feature for the technical problem solved by this application, but it is not a differentiating technical feature or a point of technical improvement. The applicant has not made any technical improvements to the computer software portion involved in the aforementioned related hardware carriers, nor is it a key technical point of the invention.

[0038] Therefore, the "motor" and other components mentioned in this application are physical functional modules that combine existing computer software programs or protocols with the hardware carrier of this application. The computer software programs involved in these physical functional modules are technologies known to those skilled in the art and are not improvements of this application. The improvement of this application should be the interaction between the various physical functional modules, that is, the improvement of the overall structure of the printing ink storage box of this application, in order to solve the corresponding technical problems to be solved by this application.

[0039] The working process of this printing ink storage box is as follows:

[0040] First, the operator screws on the top cover and valve of the input pipe 204 to feed the ink into the first housing 201. The ink then slides down the slope of the first housing 201 into the second housing 501. The ultrasonic sensor 205 at the bottom of the top plate 203 transmits the oil level data to the control panel 202. The ultrasonic sensor 205 can be of models including, but not limited to, SITRANS. LUT420, the temperature sensor 508 in the second chamber 501 transmits the oil temperature data to the control panel 202. The temperature sensor 508 model includes, but is not limited to, Pt100. The control panel 202 integrates a microprocessor, a display screen, and switches. The microprocessor model and operation mode have been disclosed in Chinese utility model patent CN211617023U, "An Ink Storage Box for Printing Machinery." The control panel 202 controls the power of the heating block 206 to maintain a suitable temperature for the ink inside the first chamber 201 and displays the temperature data and liquid level on the display screen. After reaching the maximum liquid level line, the valve of the input pipe 204 is closed, and the top cover is tightened to prevent evaporation leakage. The motor 505 drives the rotating shaft 506 to rotate, which in turn drives the stirring rod 507 to rotate and stir the oil to prevent sedimentation. The stirring rod 507, the second chamber 501, the sliding plate 503, and the inner wall of the first chamber 201 are all connected. All components are coated with Teflon nanomaterials, making it difficult for viscous ink to adhere and preventing corrosion of the three components. The ink is then gradually discharged by turning the output pipe valve at the bottom front of the second housing 501. When the equipment needs to be cleaned after emptying, the sliding plate 503 is pulled out from the discharge port 502 to discharge the remaining residual ink along the guide groove 504. After a rough wash with water, the wastewater is discharged from the guide groove 504 for centralized treatment. Then, by unscrewing multiple bolts, the motor 505, the second housing 501, the first housing 201, and the top plate 203 are removed from the two symmetrically distributed H-shaped brackets 1 and disassembled one by one. Then, the rotating shaft 506 and the stirring rod 507 are pulled out from the second housing 501 in sequence. The segmented modular design makes it easy to put the appropriate modules into a dedicated external cleaning device for centralized cleaning, reducing cleaning difficulty and time, and avoiding cross-contamination of ink storage due to ink residue.

[0041] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0042] It should be noted that, in this document, the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0043] This article uses specific examples to illustrate the principles and implementation methods of this utility model. The above examples are only for the purpose of helping to understand the method and core ideas of this utility model. The above description is only a preferred embodiment of this utility model. It should be noted that due to the limitations of textual expression, there are objectively infinite specific structures. For those skilled in the art, several improvements, modifications, or changes can be made without departing from the principles of this utility model, and the above technical features can also be combined in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the concept and technical solution of the utility model to other occasions without modification, should all be considered within the protection scope of this utility model.

Claims

1. A printing ink storage box, comprising two symmetrically distributed H-shaped supports (1), characterized in that: The top of each of the two H-shaped brackets (1) is fixedly installed with a cabinet assembly (2) by bolts, and a reinforcing plate (3) is fixedly installed in the middle of the front side of the outer wall of the H-shaped bracket (1). The bottom of the cabinet assembly (2) is provided with a reinforcing plate (4), and the four right angles of the reinforcing plate (4) are provided with built-in hexagonal nuts. The reinforcing plate (4) is fixedly installed with a stirring assembly (5) by hexagonal bolts. The stirring assembly (5) includes a second housing (501), which is fixedly mounted on the reinforcing plate (4) by hexagonal bolts at the four right angles at the top. The top of the second housing (501) is provided with a double-layer sealing gasket. The bottom of the second housing (501) is provided with a discharge port (502), and a sliding plate (503) is slidably inserted into the outer wall of the discharge port (502). A guide groove (504) is slidably inserted into the bottom of the outer wall of the second housing (501). The rear of the second housing (501)... A motor (505) is fixedly installed at the center of the second housing (501) by bolts. An output pipe is provided at the bottom front of the second housing (501). A rotating shaft (506) is fixedly installed at the output end of the motor (505). One end of the rotating shaft (506) movably passes through one side of the second housing (501) and is movably inserted into the other side of the second housing (501). A stirring rod (507) is movably sleeved on the outer wall of the rotating shaft (506). A temperature sensor (508) is provided at the center of the inner wall of the second housing (501).

2. The printing ink storage box as described in claim 1, characterized in that: The cabinet assembly (2) includes a first box (201). The bottom of the rectangular box of the first box (201) is fixedly mounted on the top of the H-shaped bracket (1) by bolts. A control panel (202) is provided on the rear of the outer wall of the first box (201). A top plate (203) is fixedly mounted on the top of the first box (201) by bolts. A double-layer protrusion and a sealing gasket are provided from the outside to the inside of the bottom of the top plate (203). An input pipe (204) is provided at the top center of the top of the top plate (203). A valve is provided on the outer wall of the input pipe (204). A top cover is threaded to the top of the input pipe (204). An ultrasonic sensor (205) is provided at the bottom of the top plate (203). Electric heating blocks (206) are provided on all four sides of the inner wall of the funnel-shaped box of the first box (201).

3. The printing ink storage box as described in claim 1, characterized in that: The inner walls of the second housing (501), the sliding plate (503), and the first housing (201) are all coated with Teflon nanomaterial.

4. The printing ink storage box as described in claim 1, characterized in that: An elastic sealing gasket is provided at the junction of the discharge port (502) and the sliding plate (503).

5. The printing ink storage box as described in claim 1, characterized in that: The outer wall of the second housing (501) is provided with a sealed bearing, and the center of the sealed bearing is provided with a plug-in block. The center of the outer wall of the plug-in block is provided with a groove whose inner wall is consistent with the outer wall structure size of the rotating shaft (506). An anti-overflow washer is provided at the junction of the rotating shaft (506) and the plug-in block.

6. The printing ink storage box as described in claim 1, characterized in that: The side of the second box (501) that is in contact with the reinforcing plate (4) is provided with an elastic anti-overflow gasket.

Citation Information

Patent Citations

  • Ink storage tank of printing machine

    CN211617023U