Printing trough equipment with constant-temperature material stirring and circulating function
Through the combination of components such as mold temperature machine, temperature-controlled water tank and pneumatic stirrer, the problems of unstable temperature, uneven stirring and poor material circulation in traditional printing processes are solved, and the constant temperature control and uniform stirring of printing materials are achieved, and the printing quality and production efficiency are improved.
Patent Information
- Application Number
- CN202422413934.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-10-08
AI Technical Summary
In traditional printing processes, unstable temperature control, uneven stirring and poor material circulation lead to unstable printing quality and low production efficiency.
The mold temperature machine, temperature-controlled water tank, pneumatic stirrer and diaphragm pump are used to combine the controller to achieve precise temperature control, uniform stirring and circulation of materials, and the printed materials and temperature-controlled water tank are isolated through waterproof partitions, and the thermometer and liquid level detector are used for automated management.
The constant temperature control of printing materials is achieved to ensure stable printing quality, improved material uniformity, improved production efficiency and increased automation.
Smart Images

Figure CN223116063U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of printing equipment, in particular to a printing material tank device with a constant-temperature material stirring and circulating function. Background Art
[0002] Traditional printing processes are usually operated in a relatively simple manner. Generally, the printing material is directly poured into an ordinary material tank, and then the printing material is mixed by manual stirring or simple mechanical stirring. During the printing process, mainly relying on the experience of workers to judge the state of the printing material and carry out operations. Traditional printing processes have played an important role in pattern decoration in industries such as textiles for a long time in the past. It can print on various materials, such as fabrics, papers, etc. Through the combination of different printing dies and colors, a rich variety of patterns and colors can be created.
[0003] With the development of the times and the progress of technology, the deficiencies of traditional printing processes have become increasingly prominent: First, there is a serious lack of temperature control. Due to the absence of special temperature control equipment, the temperature of the printing material is completely affected by the environment, resulting in extremely unstable performance. When the environmental temperature is high, the printing material may become thinner, affecting the clarity and accuracy of the printed pattern; when the environmental temperature is low, the printing material may become viscous, with poor fluidity, hindering the smooth progress of printing, and even possibly clogging the printing tools. Second, the stirring effect is not good. Traditional manual stirring or simple mechanical stirring is difficult to ensure the uniformity of stirring, resulting in uneven distribution of components in the printing material, thus leading to problems such as inconsistent printing colors and different pattern clarities. Finally, there is a lack of an effective material circulation system. The printing material in the material tank is prone to precipitation and accumulation, which not only affects the uniformity of printing, but also causes waste and increases production costs. Moreover, once there is a problem with the printing material in the material tank, it is difficult to adjust and replace it in a timely manner, affecting the continuity of production. Summary of the Utility Model
[0004] In order to solve the problems of unstable temperature control, uneven stirring, and lack of effective material circulation of the material in traditional printing, and improve the printing quality and production efficiency. The utility model proposes the following technical solutions:
[0005] A printing material tank device with a constant-temperature material stirring and circulating function, including a controller, a mold temperature machine, and is characterized in that it includes a printing material tank, and a printing material compartment and a temperature control water compartment are provided in the printing material tank;
[0006] The printing material compartment is provided with a feed port and a discharge port, both the feed port and the discharge port are communicated with a stirring barrel through a feeding pipeline, a pneumatic diaphragm pump is installed on the feeding pipeline between the feed port and the stirring barrel, and a pneumatic stirrer is installed in the stirring barrel;
[0007] The described temperature-controlled water tank is provided with a water inlet and a water outlet. The water inlet is connected to the water outlet of the mold temperature controller through a water supply pipeline. The water outlet is connected to the water storage bucket through a water supply pipeline. The water storage bucket is also connected to an external water source and the water inlet of the mold temperature controller through water supply pipelines.
[0008] Preferably, a waterproof partition is further provided in the printing material tank. The printing material compartment and the temperature-controlled water tank are formed by separating the internal space of the printing material tank with the waterproof partition. The waterproof partition is made of aluminum material.
[0009] Preferably, the stirring barrel is located below the printing material compartment. A front overflow tank is further provided in the printing material compartment. The front overflow tank is communicated with the discharge port. When the material in the printing material compartment exceeds the height of the front overflow tank, it flows into the discharge port from the front overflow tank and then naturally flows into the stirring barrel from the discharge port.
[0010] Preferably, a temperature measuring instrument is installed in the printing material compartment.
[0011] Preferably, the water storage bucket is provided with a water injection port (15), a water filling port, and a water supply port. The water injection port is connected to the water outlet through a water supply pipeline. The water filling port is connected to an external water source through a water supply pipeline. The water supply port is connected to the water inlet of the mold temperature controller through a water supply pipeline.
[0012] Preferably, electromagnetic valves are provided at the water injection port, the water filling port, and the water supply port. A liquid level detector is installed in the temperature-controlled water tank.
[0013] Preferably, the electromagnetic valves at the water filling port and the water supply port, the temperature measuring instrument, and the liquid level detector are all connected to a controller.
[0014] Preferably, water pumps are installed on all the water supply pipelines, and the water pumps are all connected to the controller.
[0015] Preferably, the temperature measuring instrument continuously detects the temperature in the printing material compartment. When the temperature in the printing material compartment exceeds the set temperature range, the controller controls the electromagnetic valves at the water injection port and the water supply port to open, and introduces the water in the temperature-controlled water tank into the mold temperature controller for heating. The mold temperature controller introduces the heated water into the temperature-controlled water tank.
[0016] When the temperature in the printing material compartment does not exceed the set temperature range, the controller activates the liquid level detector. The liquid level detector detects the water level in the temperature-controlled water tank. When the water level in the temperature-controlled water tank is lower than the set water level, the controller controls the electromagnetic valves at the water filling port and the water supply port to open, introduces the external water source into the water storage bucket, and then introduces the water from the water storage bucket into the mold temperature controller for heating. The mold temperature controller introduces the heated water into the temperature-controlled water tank.
[0017] The beneficial effects of the present utility model are as follows:
[0018] 1. Through the cooperation of a mold temperature controller, a temperature control water tank, and a temperature measuring instrument, the present utility model can accurately control the temperature inside the printing material tank. The temperature measuring instrument is connected to the controller to monitor the temperature in real time, and the mold temperature controller adjusts the temperature precisely according to the feedback, ensuring that the printing material is always at an appropriate temperature, which is beneficial to improving the stability of printing quality.
[0019] 2. The temperature control water tank of the present utility model is separated from the printing material tank by a waterproof partition. The waterproof partition is made of aluminum material, which has good heat conduction performance and can transfer heat efficiently to achieve constant temperature control of the printing material.
[0020] 3. The setting of the pneumatic agitator and the pneumatic diaphragm pump in the present utility model enables the efficient circulation and stirring of materials between the stirring barrel and the printing material tank. The pneumatic agitator fully stirs the materials in the stirring barrel, and the pneumatic diaphragm pump quickly transports the stirred materials to the printing material tank, ensuring the uniformity of the printing material.
[0021] 4. When the materials in the printing material tank exceed the height of the front overflow tank, they can naturally flow into the discharge port from the front overflow tank and then flow back to the stirring barrel, forming a natural circulation path, which further improves the circulation efficiency of the materials.
[0022] 5. The water inlet and the water supply port of the water storage bucket of the present utility model are both equipped with electromagnetic valves, and are connected to the controller together with the liquid level detector. When the water level in the temperature control water tank is lower than the set water level, the controller automatically controls the electromagnetic valve at the water inlet to open and introduce external water source; when the water level in the water storage bucket reaches the set water level, the controller can automatically control the water inlet valve to close and the water supply port valve to open. The whole process requires no manual intervention, greatly improving the automation degree of the equipment.
[0023] 6. Water pumps are installed on the water supply pipelines of the present utility model to ensure the stable and reliable circulation of water, further improving the operation efficiency and stability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic structural diagram of the present utility model.
[0025] In the figure: 2. Mold temperature controller; 3. Printing material trough; 4. Printing material tank; 5. Temperature control water tank; 6. Feed inlet; 7. Discharge port; 8. Stirring barrel; 9. Pneumatic diaphragm pump; 10. Pneumatic agitator; 11. Water inlet; 12. Water outlet; 13. Water storage bucket; 14. Waterproof partition; 15. Water injection port; 16. Water inlet; 17. Water supply port. DETAILED DESCRIPTION OF THE INVENTION
[0026] A printing material tank device with a constant-temperature material stirring and circulating function, including a controller and a mold temperature controller 2, is characterized by including a printing material tank 3. Inside the printing material tank, there is a printing material chamber 4 and a temperature control water chamber 5. There is also a waterproof partition 14 inside the printing material tank 3. The printing material chamber 4 and the temperature control water chamber 5 are formed by the waterproof partition 14 separating the internal space of the printing material tank 3, and the waterproof partition 14 is made of aluminum material.
[0027] The printing material chamber 4 is provided with a feed inlet 6 and a discharge outlet 7. Both the feed inlet 6 and the discharge outlet 7 are connected to the stirring barrel 8 through a feeding pipeline. An air-operated diaphragm pump 9 is installed on the feeding pipeline between the feed inlet 6 and the stirring barrel 8, and an air-operated stirrer 10 is installed inside the stirring barrel 8.
[0028] The stirring barrel 8 is located below the printing material chamber 4. There is also a front overflow tank inside the printing material chamber 4, and the front overflow tank is connected to the discharge outlet. When the material in the printing material chamber 4 exceeds the height of the front overflow tank, it flows into the discharge outlet from the front overflow tank and then naturally flows into the stirring barrel 8 from the discharge outlet.
[0029] The temperature control water chamber 5 is provided with a water inlet 11 and a water outlet 12. The water inlet 11 is connected to the water outlet of the mold temperature controller 2 through a water supply pipeline, and the water outlet 12 is connected to the water storage bucket 13 through a water supply pipeline. The water storage bucket 13 is also connected to the external water source and the water inlet of the mold temperature controller 2 through a water supply pipeline. The water storage bucket 13 is provided with a water injection port 15, a water filling port 16, and a water supply port 17. The water injection port 15 is connected to the water outlet 12 through a water supply pipeline, the water filling port 16 is connected to the external water source through a water supply pipeline, and the water supply port 17 is connected to the water inlet of the mold temperature controller 2 through a water supply pipeline.
[0030] A temperature measuring instrument is installed inside the printing material chamber 4. Electromagnetic valves are installed at the water injection port 15, the water filling port 16, and the water supply port 17. A liquid level detector is installed inside the temperature control water chamber 5. The electromagnetic valves at the water filling port 16 and the water supply port 17, the temperature measuring instrument, and the liquid level detector are all connected to the controller. Water pumps are installed on all the water supply pipelines, and the water pumps are all connected to the controller. The temperature measuring instrument continuously detects the temperature inside the printing material chamber 4. When the temperature inside the printing material chamber 4 exceeds the set temperature range, the controller controls the electromagnetic valves at the water injection port 15 and the water supply port 17 to open, introducing the water in the temperature control water chamber 5 into the mold temperature controller 2 for heating, and the mold temperature controller 2 introduces the heated water into the temperature control water chamber 5. When the temperature inside the printing material chamber 4 does not exceed the set temperature range, the controller activates the liquid level detector. The liquid level detector detects the water level in the temperature control water chamber 5. When the water level in the temperature control water chamber 5 is lower than the set water level, the controller controls the electromagnetic valves at the water filling port 16 and the water supply port 17 to open, introducing the external water source into the water storage bucket 13, and then introducing it into the mold temperature controller 2 for heating, and the mold temperature controller 2 introduces the heated water into the temperature control water chamber 5.
Claims
1. A printing material tank device with a constant-temperature material stirring and circulating function, comprising a controller and a mold temperature machine (2), characterized in that, It includes a printing material tank (3), and a printing material chamber (4) and a temperature-controlled water chamber (5) are arranged in the printing material tank; The printing material chamber (4) is provided with a feed inlet (6) and a discharge outlet (7). Both the feed inlet (6) and the discharge outlet (7) are communicated with a stirring barrel (8) through a feeding pipeline. An air-operated diaphragm pump (9) is installed on the feeding pipeline between the feed inlet (6) and the stirring barrel (8), and an air-operated stirrer (10) is installed in the stirring barrel (8); The temperature-controlled water chamber (5) is provided with a water inlet (11) and a water outlet (12). The water inlet (11) is connected with the water outlet of a mold temperature controller (2) through a water supply pipeline, and the water outlet (12) is connected with a water storage bucket (13) through a water supply pipeline. The water storage bucket (13) is also connected with an external water source and the water inlet of the mold temperature controller (2) through a water supply pipeline.
2. The printing material tank device with a constant temperature material stirring and circulating function according to claim 1, wherein, A waterproof partition board (14) is further arranged in the printing material tank (3). The printing material chamber (4) and the temperature-controlled water chamber (5) are formed by the waterproof partition board (14) separating the internal space of the printing material tank (3). The waterproof partition board (14) is made of aluminum material.
3. The printing material tank device with a constant temperature material stirring and circulating function according to claim 1, characterized in that, The stirring barrel (8) is located below the printing material chamber (4). A front overflow tank is further arranged in the printing material chamber (4), and the front overflow tank is communicated with the discharge outlet; when the material in the printing material chamber (4) exceeds the height of the front overflow tank, it flows into the discharge outlet from the front overflow tank, and then naturally flows into the stirring barrel (8) from the discharge outlet.
4. A printing material tank device with a constant-temperature material stirring and circulating function according to claim 1, characterized in that, A thermometer is installed in the printing material chamber (4).
5. The printing material tank device with a constant-temperature material stirring and circulating function according to claim 1, characterized in that, The water storage bucket (13) is provided with a water injection port (15), a water filling port (16), and a water supply port (17). The water injection port (15) is connected with the water outlet (12) through a water supply pipeline, the water filling port (16) is connected with an external water source through a water supply pipeline, and the water supply port (17) is connected with the water inlet of the mold temperature controller (2) through a water supply pipeline.
6. The printing material tank device with a constant-temperature material stirring and circulating function according to claim 5, characterized in that, Electromagnetic valves are arranged at the water injection port (15), the water filling port (16), and the water supply port (17), and a liquid level detector is installed in the temperature-controlled water chamber (5).
7. The printing material tank device with a constant temperature material stirring and circulating function according to claim 6, characterized in that, The electromagnetic valves at the water filling port (16) and the water supply port (17), the thermometer, and the liquid level detector are all connected to a controller (1).
8. A printing material tank device with a constant temperature material stirring and circulating function according to claim 1, characterized in that, Water pumps are installed on all the water supply pipelines, and the water pumps are all connected to the controller.
9. The printing material tank device with a constant-temperature material stirring and circulating function according to claim 7, characterized in that, The thermometer detects the temperature in the printing material chamber (4) in real time. When the temperature in the printing material chamber (4) exceeds the set temperature range, the controller (1) controls the electromagnetic valves at the water injection port (15) and the water supply port (17) to open, introduces the water in the temperature-controlled water chamber (5) into the mold temperature controller (2) for heating, and the mold temperature controller (2) introduces the heated water into the temperature-controlled water chamber (5); When the temperature in the printing material tank (4) is within the set temperature range, the controller (1) turns on the liquid level detector, and the liquid level detector detects the water level in the temperature control water tank (5). When the water level in the temperature control water tank (5) is lower than the set water level, the controller (1) controls the electromagnetic valves of the water filling port (16) and the water supply port (17) to open, introducing external water source into the water storage bucket (13), and then introducing it from the water storage bucket (13) into the mold temperature machine (2) for heating. The heated water is introduced by the mold temperature machine (2) into the temperature control water tank (5).