Energy-saving multifunctional printing equipment
By introducing warm light lamps to heat the gas inside the serpentine tube in the printing equipment and utilizing a combination of multi-layer air extraction boxes and activated carbon adsorption nets, the problems of low drying efficiency and harmful gas overflow are solved, achieving efficient drying and environmentally friendly purification, and protecting the health of the staff.
Patent Information
- Application Number
- CN202422920076.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-11-28
AI Technical Summary
Existing printing equipment has shortcomings in drying efficiency and harmful gas treatment efficiency, resulting in poor drying effect and harmful gases easily overflowing from both sides of the fixed frame, which affects the energy-saving and environmental protection effect of the equipment.
The gas inside the serpentine tube is heated by a warm light lamp and blown onto the printed material through a blower. At the same time, a multi-layered air extraction box and an activated carbon adsorption screen are set up, and the size of the passage is controlled by a threaded rod adjustment plate to ensure that harmful gases are effectively drawn into the treatment box for purification.
It improved the drying efficiency of printed materials, reduced the emission of harmful gases, improved the working environment, protected the health of workers, and achieved the energy-saving and environmental protection goals of the equipment.
Smart Images

Figure CN223657836U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field, specifically relating to an energy-saving multifunctional printing equipment. Background Technology
[0002] Printing equipment is a general term for all kinds of machinery, equipment, and instruments used in the printing process. Modern printing presses generally consist of mechanisms for plate mounting, inking, printing, and paper feeding (including folding). These parts work together to complete the entire printing process.
[0003] A patent search revealed a novel energy-saving printing device, such as the one authorized by publication number CN216300494U, comprising a base, a first fixed frame, an exhaust fan, and a second fixed frame. The first fixed frame is located on the upper side of the base and on the right side of the printing machine. A conveyor belt runs through the interior of the first fixed frame. Insulation cotton is installed on the outer side of the first fixed frame, and a control box is located on the upper side of the insulation cotton. A warm light is installed on the lower interior side of the first fixed frame, positioned above the conveyor belt. This novel energy-saving printing device, equipped with insulation cotton, an activated carbon adsorption mesh, and an exhaust fan, effectively prevents heat loss from the first fixed frame by insulating it with the insulation cotton. Simultaneously, the exhaust fan draws harmful gases generated during the drying of printed materials inside the first fixed frame into a processing chamber, where the activated carbon adsorption mesh treats the harmful gases, thus achieving energy conservation and environmental protection.
[0004] Problems with existing technology:
[0005] The above method only uses warm light lamps to dry the printed materials on the conveyor belt, which reduces the drying efficiency and effect. In addition, although the exhaust pipe can treat harmful gases, the harmful gases still overflow in large quantities from the openings on both sides of the first fixed frame, thereby reducing the treatment effect and efficiency of harmful gases and also reducing the energy-saving and environmental protection function of the equipment. Utility Model Content
[0006] The purpose of this invention is to provide an energy-saving, multi-functional printing equipment that improves drying efficiency and reduces the emission of harmful gases, improves the working environment, protects the health of workers, and thus achieves energy conservation and environmental protection.
[0007] The specific technical solution adopted by this utility model is as follows:
[0008] An energy-saving multi-functional printing device includes a base plate, a printing machine mounted on one side of the top of the base plate, a conveyor belt mounted on the top of the base plate and on the side of the printing machine, a drying assembly mounted above the conveyor belt, the drying assembly including a fixed cover mounted above the conveyor belt, an opening at the bottom of the fixed cover, a through groove through one side of the fixed cover through which the conveyor belt passes, multiple warm light lamps mounted on the inner top of the fixed cover, a reflector mounted on the inner top of the fixed cover to reflect the heat of the warm light lamps, first air extraction boxes mounted on both inner sides of the fixed cover, each first air extraction box having a first air suction hole, and an air pump fixed on one side of the fixed cover, the air inlet of the air pump being connected to the first air extraction box via an air pipe;
[0009] A treatment box is provided on one side of the fixed cover and above the air pump. The interior of the treatment box is equipped with multiple detachable activated carbon adsorption nets. The air outlet of the air pump is connected to the air inlet of the treatment box through an air pipe. A serpentine tube is provided on the inner top of the fixed cover. One end of the serpentine tube is connected to the air outlet of the treatment box through an air pipe. Multiple blowers are provided through the bottom of the serpentine tube.
[0010] Fixing plates are fixed on both outer sides of the fixing cover and above the through groove. A threaded rod is screwed through the outer wall of the fixing plate. The bottom end of the threaded rod extends to the bottom of the fixing plate and is rotatably installed with an adjusting plate. Guide rods are fixed on the top of the adjusting plate and on both sides of the threaded rod, and the guide rods are slidably connected to the fixing plate.
[0011] A second suction box is fixed to one side of the adjusting plate and inside the fixed cover. The bottom side of the second suction box is provided with a downward inclined surface, and a plurality of second suction holes are opened through the outer wall of the inclined surface.
[0012] The second suction box is connected to the first suction box via a telescopic hose.
[0013] A cooling mechanism is provided above the conveyor belt and on one side of the drying assembly.
[0014] The technical effects achieved by this utility model are as follows:
[0015] The serpentine tube in this invention transports the treated harmful gases into it. A warm light lamp heats the gas inside the tube, which is then blown onto the printed material on the conveyor belt by a blower. The simultaneous drying by the warm light lamp and hot air improves drying efficiency and achieves energy conservation and environmental protection. An adjustable plate, with a threaded rod, can be adjusted to its height above the printed material to prevent excessive overflow of harmful gases generated during drying. Combined with a first and second extraction box, harmful gases from the fixed hood are drawn into the treatment chamber and filtered and purified by an activated carbon adsorption mesh, effectively reducing the overflow of harmful gases, improving the working environment, and protecting the health of workers. Attached Figure Description
[0016] Figure 1 This is a frontal three-dimensional structural schematic diagram of the present invention;
[0017] Figure 2 This is a frontal three-dimensional structural diagram of the fixing cover of this utility model;
[0018] Figure 3 This is a three-dimensional structural diagram of the fixed cover of this utility model from a bottom view;
[0019] Figure 4 This is a cross-sectional view of the fixed cover structure of this utility model.
[0020] The attached diagram lists the components represented by each number as follows:
[0021] 1. Base plate; 2. Printing machine; 3. Conveyor belt; 4. Fixing cover; 5. Cooling mechanism; 6. Warm light; 7. Air pump; 8. First air extraction box; 9. First air intake hole; 10. Processing box; 11. Activated carbon adsorption mesh; 12. Snake tube; 13. Blower head; 14. Through groove; 15. Adjusting plate; 16. Fixing plate; 17. Threaded rod; 18. Second air extraction box; 19. Reflector. Detailed Implementation
[0022] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.
[0023] like Figures 1-4As shown, an energy-saving multi-functional printing equipment includes a base plate 1, a printing machine 2 is arranged on the top side of the base plate 1, a conveyor belt 3 is arranged on the top of the base plate 1 and on the side of the printing machine 2, a drying component is arranged above the conveyor belt 3, the drying component includes a fixed cover 4 arranged above the conveyor belt 3, the bottom of the fixed cover 4 is provided with an opening, a through groove 14 is opened on one side of the fixed cover 4, and the conveyor belt 3 passes through the through groove 14, a plurality of warm light lamps 6 are arranged on the inner top of the fixed cover 4, a reflector 19 that can reflect the heat of the warm light lamps 6 is arranged on the inner top of the fixed cover 4, a first air extraction box 8 is arranged on both inner sides of the fixed cover 4, the first air extraction box 8 is provided with a first air suction hole 9, and an air pump 7 is fixed on one side of the fixed cover 4. The air inlet of the air pump 7 is connected to the first air extraction box 8 through an air pipe to facilitate the treatment of harmful gases generated during drying.
[0024] A processing box 10 is installed on one side of the fixed cover 4 and above the air pump 7. The processing box 10 contains multiple detachable activated carbon adsorption nets 11. The air outlet of the air pump 7 is connected to the air inlet of the processing box 10 through an air pipe. A serpentine tube 12 is installed at the top inside the fixed cover 4. One end of the serpentine tube 12 is connected to the air outlet of the processing box 10 through an air pipe. Multiple blowers 13 are installed through the bottom of the serpentine tube 12. The structure is simple. The gas inside the serpentine tube 12 can be heated by the warm light lamp 6. The heated gas is blown out from the blowers 13 and blown onto the printed materials on the conveyor belt 3, which improves the drying efficiency of the printed materials and facilitates the purification and filtration of harmful gases generated during the drying of the printed materials, avoiding pollution of the working environment, and thus achieving the effect of energy saving and environmental protection.
[0025] According to the above structure, when the printed material is moved to the fixed cover 4, it can be dried by the warm light lamp 6. At the same time, the air pump 7 is started. The air pump 7, through the cooperation of the first air extraction box 8 and the first air suction hole 9, can draw the harmful gas generated by the drying of the printed material into the treatment box 10. After purification and filtration by multiple activated carbon adsorption nets 11, the treated gas can be transported into the serpentine tube 12. While the warm light lamp 6 dries the printed material, it also heats the gas inside the serpentine tube 12. The heated gas is sprayed out from the blower head 13 and blown onto the printed material, which can further dry the printed material, improve the drying efficiency of the printed material, and thus achieve the effect of energy saving and environmental protection.
[0026] like Figures 2-4 As shown, a fixing plate 16 is fixed on both outer sides of the fixing cover 4 and above the through groove 14. A threaded rod 17 is screwed through the outer wall of the fixing plate 16. The bottom end of the threaded rod 17 extends to the bottom of the fixing plate 16 and is rotatably installed with an adjusting plate 15. A guide rod is fixed on the top of the adjusting plate 15 and on both sides of the threaded rod 17. The guide rod is slidably connected to the fixing plate 16, so as to adjust the adjusting plate 15 to the specific size of the printed material according to the thickness of the printed material, control the size of the through groove 14, and reduce the overflow of harmful gases from the through groove 14.
[0027] A second suction box 18 is fixed to one side of the adjusting plate 15 and inside the fixed cover 4. The bottom side of the second suction box 18 is provided with a downward inclined surface. Multiple second suction holes are opened through the outer wall of the inclined surface. The second suction box 18 is connected to the first suction box 8 through a telescopic hose, so that the connection of the equipment is more complete. This allows the harmful gases generated during the drying of printed materials to be sucked into the processing box 10 for treatment, thereby achieving the effect of energy saving and environmental protection.
[0028] According to the above structure, rotating the threaded rod 17 causes the adjusting plate 15 to move. The adjusting plate 15 can control the size of the through groove 14 according to the thickness of the printed material, reducing the escape of harmful gases from the through groove 14. The adjusting plate 15 causes the second suction box 18 to move. Through the second suction box 18 and the second suction hole, the harmful gases around the through groove 14 are sucked into the treatment box 10, further preventing the harmful gases from overflowing and treating the harmful gases, avoiding pollution of the working environment and protecting the health of the workers.
[0029] like Figure 1 As shown, a cooling mechanism 5 is provided above the conveyor belt 3 and on one side of the drying component. The cooling mechanism 5 is existing technology. For details, please refer to the authorization announcement CN216300494U for a new type of energy-saving printing equipment, which improves the processing efficiency of printed materials. The specific working principle will not be described in detail.
[0030] The working principle of this utility model is as follows: According to the thickness of the printed material, the threaded rod 17 is rotated, and the threaded rod 17 drives the adjusting plate 15 to move, thereby controlling the size of the through groove 14 and the height of the second suction box 18 from the conveyor belt 3. When the printed material moves to the fixed cover 4, the printed material can be dried by the warm light lamp 6. At the same time, the suction pump 7 is started. The suction pump 7, through the cooperation of the first suction box 8 and the first suction hole 9, can suck the harmful gas generated by the drying of the printed material into the processing box 10. Then, through the second suction box 18 and the second suction hole, the harmful gas around the through groove 14 is sucked into the processing box 10. After purification and filtration by multiple activated carbon adsorption nets 11, the treated gas can be transported into the serpentine tube 12. While the warm light lamp 6 dries the printed material, it also heats the gas inside the serpentine tube 12. The heated gas is sprayed out from the blower head 13 and blown onto the printed material, which can further dry the printed material.
[0031] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.
Claims
1. An energy-saving multifunctional printing device, comprising a base plate (1), a printing press (2) disposed on one side of the top of the base plate (1), a conveyor belt (3) disposed on the top of the base plate (1) and on one side of the printing press (2), and a drying assembly disposed above the conveyor belt (3), characterized in that: The drying assembly includes a fixed cover (4) above the conveyor belt (3), with an opening at the bottom of the fixed cover (4), a through groove (14) through one side of the fixed cover (4), through which the conveyor belt (3) passes. Multiple warm light lamps (6) are provided at the top inner part of the fixed cover (4), and a reflector (19) that can reflect the heat of the warm light lamps (6) is provided at the top inner part of the fixed cover (4). A first air extraction box (8) is provided on both inner sides of the fixed cover (4), and the first air extraction box (8) has a first air suction hole (9). A vacuum pump (7) is fixed on one side of the fixed cover (4), and the air inlet of the vacuum pump (7) is connected to the first air extraction box (8) through an air pipe. A processing box (10) is provided on one side of the fixed cover (4) and above the air pump (7). The processing box (10) is provided with multiple detachable activated carbon adsorption nets (11). The air outlet of the air pump (7) is connected to the air inlet of the processing box (10) through an air pipe. A serpentine tube (12) is provided on the inner top of the fixed cover (4). One end of the serpentine tube (12) is connected to the air outlet of the processing box (10) through an air pipe. Multiple blowers (13) are provided through the bottom of the serpentine tube (12).
2. The energy-saving multi-functional printing equipment according to claim 1, characterized in that: A fixing plate (16) is fixed on both sides of the fixing cover (4) and above the through groove (14). A threaded rod (17) is screwed through the outer wall of the fixing plate (16). An adjusting plate (15) is rotatably installed below the fixing plate (16) at the bottom end of the threaded rod (17). Guide rods are fixed on the top of the adjusting plate (15) and on both sides of the threaded rod (17), and the guide rods are slidably connected to the fixing plate (16).
3. The energy-saving multi-functional printing equipment according to claim 2, characterized in that: A second suction box (18) is fixed on one side of the adjustment plate (15) and inside the fixed cover (4). The bottom side of the second suction box (18) is provided with a downward inclined surface, and a plurality of second suction holes are opened through the outer wall of the inclined surface.
4. The energy-saving multifunctional printing equipment according to claim 3, characterized in that: The second air extraction box (18) is connected to the first air extraction box (8) through a telescopic hose.
5. The energy-saving multi-functional printing equipment according to claim 1, characterized in that: A cooling mechanism (5) is provided above the conveyor belt (3) and on one side of the drying assembly.
Citation Information
Patent Citations
Novel energy-saving printing equipment
CN216300494U