High-strength environment-friendly synthetic leather processing device
Through the combined structure of dehumidification box, oven and fan, the problem of difficult removal of moisture on the surface of synthetic leather is solved, efficient drying effect and equipment stability are achieved, and the efficiency of synthetic leather processing is improved.
Patent Information
- Application Number
- CN202410118058.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-29
- Publication Date
- 2025-07-29
AI Technical Summary
Existing synthetic leather processing devices are difficult to effectively remove moisture from the surface of synthetic leather, which increases the difficulty of the drying process.
The combined structure of the dehumidification box, the first oven, the second oven and the third oven is adopted, and the synergistic effect of high-pressure air, heating wire and fan is used to remove moisture from the surface and interior of the synthetic leather through multiple air ducts and exhaust fans, and the fixed structure of the moving wheel and the mounting block is combined to improve the stability of the equipment.
Effectively remove excess moisture from the surface and interior of the synthetic leather, improve drying efficiency, save time, and enhance equipment stability and flexibility.
Smart Images

Figure CN120381968A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of synthetic leather processing, and in particular to a high-strength environmental protection synthetic leather processing device. Background Art
[0002] The excellent properties of synthetic leather cannot be replaced by natural leather. Its wide application range, large quantity, and variety are beyond the reach of traditional natural leather, and it has been increasingly affirmed by the market. The patent with the application number CN202120798009.7 discloses a high-strength environmental protection synthetic leather processing device, including a drying device body. A drying mechanism is arranged inside the drying device body, and an extrusion mechanism is arranged inside the drying device body. An outlet and an inlet are respectively opened on the left side and the right side of the drying device body. Two symmetrically arranged L-shaped plates are fixedly connected to the inner wall of the drying device body. Fixed bars are fixedly connected to one ends of the two L-shaped plates away from the drying device body. A water outlet is opened at the corner of the drying device body below the inlet, and the water outlet penetrates through the drying device body. The drying mechanism includes two air inlet boxes and two groups of fixed rods. One side surfaces of the two air inlet boxes away from each other are respectively fixedly connected to the inner top wall and the inner bottom wall of the drying device body. Exhaust pipes arranged at equal distances are fixedly connected to one side surfaces of the two air inlet boxes close to each other. A blower is fixedly connected to the back surface of the drying device body. The output end of the blower is fixedly communicated with two symmetrically arranged shunt pipes. One ends of the two shunt pipes away from the blower penetrate through the drying device body. One ends of the two shunt pipes away from the blower are fixedly communicated with a communicating pipe. The two communicating pipes are respectively communicated with the interiors of the two air inlet boxes. One ends of the two groups of fixed rods away from each other are respectively fixedly connected to the inner top wall and the inner bottom wall of the drying device body. Two symmetrically arranged electric heating plates are arranged inside the drying device body. One ends of the two groups of fixed rods close to each other are respectively fixedly connected to the outer surfaces of the two electric heating plates. The extrusion mechanism includes two fixed frames. One ends of the two fixed frames away from each other are respectively fixedly connected to the inner top wall and the inner bottom wall of the drying device body. Springs are fixedly connected to one side surfaces of the two fixed frames close to each other. Clamping plates are fixedly connected to one ends of the two springs close to each other. Wind shielding plates are fixedly connected to one side surfaces of the two clamping plates away from each other. However, it is difficult to scrape off the moisture on the surface of the synthetic leather by relying on the two clamping plates, and a large amount of moisture still adheres to the upper surface and the lower surface of the synthetic leather, increasing the difficulty of the drying process. Summary of the Invention
[0003] The present invention aims to solve the above problems existing in the prior art, and provides a high-strength environmental protection synthetic leather processing device, which can remove excess moisture and reduce moisture adhesion, and multiple devices cooperate to enhance the drying effect, saving time and improving efficiency.
[0004] The technical solution adopted by the present invention to solve its technical problems: This high-strength environmental protection synthetic leather processing device includes a dehumidification box, a first drying oven, a second drying oven, and a third drying oven. The first drying oven is arranged on the side of the dehumidification box, the second drying oven is arranged on the side of the first drying oven, and the third drying oven is arranged on the side of the second drying oven. An inlet is provided on the side of the dehumidification box, and an outlet is provided on the side of the dehumidification box. Inlets and outlets are also provided on the first drying oven, the second drying oven, and the third drying oven. The synthetic leather sequentially passes through the dehumidification box, the first drying oven, the second drying oven, and the third drying oven. A transmission pipe is fixedly connected to the side of the dehumidification box, and the transmission pipe is connected to other equipment to convey high-pressure air. The transmission pipe reaches the inside of the dehumidification box, and an air chamber is fixedly connected to the end of the transmission pipe. A bronchus is fixedly connected to the side of the air chamber, and an air duct is fixedly connected to the side of the bronchus. There are multiple air chambers, bronchi, and air ducts. Multiple air ducts face the top of the synthetic leather, and multiple air ducts face the bottom of the synthetic leather. A drain pipe is provided at the bottom of the dehumidification box. A first fan is provided inside the first drying oven, a heating wire is provided on the top of the first fan, a second fan is provided inside the first drying oven, and a heating wire is provided at the bottom of the second fan. A moisture exhaust fan is provided inside the first drying oven. The structures of the first drying oven, the second drying oven, and the third drying oven are the same. The first fan, the heating wire, the second fan, and the moisture exhaust fan are also provided inside the second drying oven and the third drying oven. Movable wheels are installed at the bottom of the dehumidification box, and movable wheels are also installed at the bottoms of the first drying oven, the second drying oven, and the third drying oven. The synthetic leather sequentially passes through the inside of the dehumidification box, the first drying oven, the second drying oven, and the third drying oven by using the inlets and outlets. When the synthetic leather is inside the dehumidification box, the high-pressure air transmitted by the transmission pipe reaches multiple air chambers, multiple bronchi, and multiple air ducts. Multiple air ducts face the top of the synthetic leather, and the moisture on the top of the synthetic leather is blown away. Multiple air ducts face the bottom of the synthetic leather, and the moisture on the bottom of the synthetic leather is blown away. The moisture accumulates on the inner wall and the bottom of the dehumidification box. When too much moisture accumulates on the inner wall, it will also flow to the bottom and is discharged through the drain pipe. When the synthetic leather is inside the first drying oven, the second drying oven, and the third drying oven, heat is generated after the heating wire operates. The first fan blows hot air to the bottom of the synthetic leather, and the second fan blows hot air to the top of the synthetic leather. The top and bottom of the synthetic leather are heated and dried simultaneously. The synthetic leather is continuously dried inside the first drying oven, the second drying oven, and the third drying oven. During this period, the moisture exhaust fan is also operating, and the moisture exhaust fan continuously discharges the water vapor inside the first drying oven, the second drying oven, and the third drying oven respectively. Excess moisture is removed and water attachment is reduced during the whole process. Multiple devices cooperate to enhance the drying effect, save time and improve efficiency.
[0005] For further improvement, the air chamber is arranged at a certain angle. Multiple air ducts blow obliquely at the top and bottom of the synthetic leather. The oblique blowing increases the dropping of water droplets of moisture and reduces the accumulation of moisture on the top and bottom of the synthetic leather.
[0006] For further improvement, an installation block is fixedly connected to the side of the dehumidification box, and an installation groove is provided on the side of the first oven. The installation block and the installation groove are inserted into each other. The first oven is close to the dehumidification box. The insertion of the installation block and the installation groove realizes the position positioning of the first oven, and the first oven and the dehumidification box are arranged neatly with each other.
[0007] For further improvement, the first oven, the second oven and the third oven are also connected with installation blocks, and installation grooves are also provided on the second oven and the third oven. The second oven is neatly arranged on the side of the first oven by means of the installation block and the installation groove, and the third oven is neatly arranged on the side of the second oven by means of the installation block and the installation groove.
[0008] For further improvement, a through hole is provided on the side of the first oven, and the through hole extends from the side of the first oven to the inside of the installation groove. A first hand-tightening bolt is inserted into the through hole, and a first threaded hole is provided inside the installation block. The first hand-tightening bolt is connected to the first threaded hole. Through holes are also provided on the sides of the second oven and the third oven. The first hand-tightening bolt passes through the through hole and is threadedly connected to the inside of the first threaded hole, and the installation block is fixed in the installation groove, realizing the fixation of parts such as the dehumidification box, the first oven, the second oven and the third oven, and improving the overall stability between the devices.
[0009] For further improvement, a wheel frame is fixedly connected to the bottom of the dehumidification box. A moving wheel is arranged inside the wheel frame. An access hole is provided on the side of the wheel frame, and a second threaded hole is provided on the side of the wheel frame. A fixing hole is provided inside the moving wheel. The access hole and the second threaded hole are on the left and right sides of the fixing hole. A second hand-tightening bolt is inserted into the access hole, and the second hand-tightening bolt passes through the access hole and the fixing hole in sequence and is threadedly connected to the second threaded hole. The moving wheel is fixed inside the wheel frame by means of the access hole, the second threaded hole, the fixing hole and the second hand-tightening bolt, and the moving wheel is locked to complete the position fixation of the dehumidification box, avoiding the random movement of the dehumidification box.
[0010] For further improvement, there are multiple fixing holes, and the interval distances between the multiple fixing holes are equal. The multiple fixing holes reduce the adjustment time and the number of adjustments. Select the nearest fixing hole and slightly adjust the moving wheel to realize the insertion of the second hand-tightening bolt nearby.
[0011] For further improvement, there are four moving wheels and four wheel frames respectively at the bottoms of the dehumidification box, the first oven, the second oven and the third oven. The four moving wheels are evenly distributed, and the four moving wheels jointly bear the overall weight of the equipment. The moving wheels at the bottoms of the first oven, the second oven and the third oven are also locked to avoid the random movement of the first oven, the second oven and the third oven.
[0012] Further improvement: A thermometer and a hygrometer are provided on the surface of the first oven. A transmission line is fixedly connected to the side of the thermometer and hygrometer. There are multiple transmission lines. The end of the transmission line is fixedly connected to a temperature sensor probe and a humidity sensor probe. The humidity sensor probe and the temperature sensor probe reach the inside of the first oven. There are holes on the surface of the first oven to enable the insertion of the humidity sensor probe and the temperature sensor probe. The temperature sensor probe obtains the temperature information inside the first oven and transmits it through the transmission line. The humidity sensor probe obtains the humidity information inside the first oven and transmits it through the transmission line. The thermometer and hygrometer display the temperature and humidity values, presenting them intuitively for easy reference.
[0013] Further improvement: There are multiple humidity sensor probes and temperature sensor probes. The second oven and the third oven are also equipped with thermometers and hygrometers. The temperature and humidity conditions inside the first oven, the second oven, and the third oven can be accurately obtained and adjusted separately as needed, improving flexibility to meet more requirements.
[0014] The beneficial effects of the present invention are:
[0015] 1. The synthetic leather passes through the inside of the dehumidification box, the first oven, the second oven, and the third oven in sequence through the inlet and outlet. When the synthetic leather is inside the dehumidification box, the high-pressure air transmitted by the transmission pipe reaches multiple air chambers, multiple bronchial tubes, and multiple air ducts. Multiple air ducts face the top of the synthetic leather, and the moisture on the top of the synthetic leather is blown away. Multiple air ducts face the bottom of the synthetic leather, and the moisture on the bottom of the synthetic leather is blown away. The moisture accumulates on the inner wall and bottom of the dehumidification box. When too much moisture accumulates on the inner wall, it will also flow to the bottom and is discharged through the drain pipe. When the synthetic leather is inside the first oven, the second oven, and the third oven, the heating wire generates heat after operation. The first fan blows hot air to the bottom of the synthetic leather, and the second fan blows hot air to the top of the synthetic leather. The top and bottom of the synthetic leather are heated and dried simultaneously. The synthetic leather is continuously dried inside the first oven, the second oven, and the third oven. During this period, the moisture exhaust fan is also operating, and the moisture exhaust fan continuously discharges the water vapor inside the first oven, the second oven, and the third oven respectively. Excess moisture is removed and water adhesion is reduced throughout the process. The coordinated action of multiple devices enhances the drying effect, saving time and improving efficiency.
[0016] 2. Since the first oven is close to the dehumidification box, the installation block and the installation groove are inserted into each other to position the first oven. The first oven and the dehumidification box are arranged neatly. The second oven is neatly arranged on the side of the first oven with the help of the installation block and the installation groove. The third oven is neatly arranged on the side of the second oven with the help of the installation block and the installation groove. The first hand-tightening bolt passes through the through-hole and is threadedly connected to the inside of the first threaded hole, and the installation block is fixed in the installation groove, realizing the fixation of parts such as the dehumidification box, the first oven, the second oven, and the third oven, and improving the overall stability between the devices.
[0017] 3. The mobile wheels are fixed inside the wheel frame by using the access hole, the second threaded hole, the fixing hole and the second hand-tightening bolt. The mobile wheels are locked to fix the position of the dehumidification box, preventing the dehumidification box from moving randomly. Multiple fixing holes reduce the adjustment time and number of adjustments. Select the nearest fixing hole and slightly adjust the mobile wheel to enable the second hand-tightening bolt to be plugged in nearby. The four mobile wheels jointly bear the overall weight of the equipment. The mobile wheels at the bottoms of the first oven, the second oven and the third oven are also locked to prevent the first oven, the second oven and the third oven from moving randomly.
[0018] 4. The humidity sensor probe and the temperature sensor probe are plugged into the first oven through the holes on its surface. The temperature sensor probe obtains the temperature information inside the first oven and transmits it using the transmission line. The humidity sensor probe obtains the humidity information inside the first oven and transmits it using the transmission line. The thermometer and hygrometer display the temperature and humidity values, presenting them intuitively for easy reference. The temperature and humidity conditions inside the first oven, the second oven and the third oven are accurately obtained and adjusted separately as needed, improving flexibility to meet more requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic structural diagram of the present invention;
[0020] Figure 2 is a schematic structural diagram of the dehumidification box of the present invention;
[0021] Figure 3 is a left-side view of the dehumidification box of the present invention;
[0022] Figure 4 is an internal view of the dehumidification of the present invention;
[0023] Figure 5 is a top view of the internal dehumidification of the present invention;
[0024] Figure 6 is a schematic structural diagram of the air chamber of the present invention;
[0025] Figure 7 is a left-side view of the first oven of the present invention;
[0026] Figure 8 is an internal view of the first oven of the present invention;
[0027] Figure 9 is a right-side view of the first oven of the present invention;
[0028] Figure 10 is of the present invention Figure 9 enlarged view at A;
[0029] Figure 11 is a cross-sectional view of the wheel frame of the present invention.
[0030] Description of reference numerals: 1, dehumidification box; 2, first oven; 3, second oven; 4, third oven; 5, inlet; 6, outlet; 7, transfer pipe; 8, air chamber; 9, bronchus; 10, air duct; 11, drain pipe; 12, first fan; 13, heating wire; 14, second fan; 15, moisture exhaust fan; 16, moving wheel; 17, mounting block; 18, mounting groove; 19, through hole; 20, first hand-tightening bolt; 21, first threaded hole; 22, wheel frame; 23, entry hole; 24, second threaded hole; 25, fixing hole; 26, second hand-tightening bolt; 27, thermometer and hygrometer; 28, transmission line; 29, temperature sensor probe; 30, humidity sensor probe. Detailed implementation mode
[0031] The following is further described in conjunction with the attached Figures 1-11 drawings for this embodiment:
[0032] As Figures 1-11 shown: In this embodiment, a high-strength environmentally friendly synthetic leather processing device includes a dehumidification box 1, a first oven 2, a second oven 3, and a third oven 4. The first oven 2 is arranged on the side of the dehumidification box 1, the second oven 3 is arranged on the side of the first oven 2, and the third oven 4 is arranged on the side of the second oven 3. An inlet 5 is opened on the side of the dehumidification box 1, and an outlet 6 is opened on the side of the dehumidification box 1. Inlets 5 and outlets 6 are also opened in the first oven 2, the second oven 3, and the third oven 4. The synthetic leather sequentially passes through the dehumidification box 1, the first oven 2, the second oven 3, and the third oven 4. A transfer pipe 7 is fixedly connected to the side of the dehumidification box 1. The transfer pipe 7 connects to other equipment to convey high-pressure air. The transfer pipe 7 reaches the inside of the dehumidification box 1. The end of the transfer pipe 7 is fixedly connected to an air chamber 8. A bronchus 9 is fixedly connected to the side of the air chamber 8. An air duct 10 is fixedly connected to the side of the bronchus 9. There are multiple air chambers 8, bronchi 9, and air ducts 10. Multiple air ducts 10 face the top of the synthetic leather, and multiple air ducts 10 face the bottom of the synthetic leather. A drain pipe 11 is arranged at the bottom of the dehumidification box 1. A first fan 12 is arranged inside the first oven 2. A heating wire 13 is arranged on the top of the first fan 12. A second fan 14 is arranged inside the first oven 2. A heating wire 13 is arranged at the bottom of the second fan 14. A moisture exhaust fan 15 is arranged inside the first oven 2. The structures of the first oven 2, the second oven 3, and the third oven 4 are the same. The first fan 12, the heating wire 13, the second fan 14, and the moisture exhaust fan 15 are also arranged inside the second oven 3 and the third oven 4. Moving wheels 16 are installed at the bottom of the dehumidification box 1. Moving wheels 16 are also installed at the bottoms of the first oven 2, the second oven 3, and the third oven 4. The air chamber 8 is arranged at a certain angle. Multiple air ducts 10 blow obliquely against the top and bottom of the synthetic leather.
[0033] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 ,Figure 7 , Figure 8 and Figure 9 As shown in Figure 7 , Figure 8 , and Figure 9 : A mounting block 17 is fixedly connected to the side of the dehumidification box 1. An installation groove 18 is formed on the side of the first oven 2. The mounting block 17 and the installation groove 18 are inserted into each other. The first oven 2, the second oven 3, and the third oven 4 are also connected to the mounting block 17. The second oven 3 and the third oven 4 are also provided with installation grooves 18. A through hole 19 is formed on the side of the first oven 2. The through hole 19 extends from the side of the first oven 2 to the inside of the installation groove 18. A first hand-tightening bolt 20 is inserted into the through hole 19. A first threaded hole 21 is formed inside the mounting block 17. The first hand-tightening bolt 20 is connected to the first threaded hole 21. Through holes 19 are also formed on the sides of the second oven 3 and the third oven 4.
[0034] As Figure 4 , Figure 10 and Figure 11 As shown in Figure 4 , Figure 10 , and Figure 11 : A wheel frame 22 is fixedly connected to the bottom of the dehumidification box 1. A moving wheel 16 is arranged inside the wheel frame 22. An access hole 23 is arranged on the side of the wheel frame 22. A second threaded hole 24 is arranged on the side of the wheel frame 22. A fixing hole 25 is arranged inside the moving wheel 16. The access hole 23 and the second threaded hole 24 are on the left and right sides of the fixing hole 25. A second hand-tightening bolt 26 is inserted into the access hole 23. The second hand-tightening bolt 26 passes through the access hole 23 and the fixing hole 25 in sequence and is threadedly connected to the second threaded hole 24. There are multiple fixing holes 25, and the interval distances between the multiple fixing holes 25 are equal. There are four moving wheels 16 and four wheel frames 22 at the bottoms of the dehumidification box 1, the first oven 2, the second oven 3, and the third oven 4 respectively, and the four moving wheels 16 are evenly distributed.
[0035] As Figure 1 , Figure 7 and Figure 9 As shown in Figure 1 , Figure 7 , and Figure 9 : A thermometer and hygrometer 27 is arranged on the surface of the first oven 2. A transmission line 28 is fixedly connected to the side of the thermometer and hygrometer 27. There are multiple transmission lines 28. The end of the transmission line 28 is fixedly connected to a temperature sensor probe 29. The end of the transmission line 28 is fixedly connected to a humidity sensor probe 30. The humidity sensor probe 30 and the temperature sensor probe 29 reach the inside of the first oven 2. There are multiple humidity sensor probes 30 and temperature sensor probes 29. The second oven 3 and the third oven 4 are also provided with a thermometer and hygrometer 27.
[0036] When the present invention is in use: Push the first oven 2, and the first oven 2 moves by means of the moving wheels 16. The first oven 2 approaches the dehumidifying box 1, and the mounting groove 18 of the first oven 2 is inserted into the mounting block 17 of the dehumidifying box 1 to realize the position positioning of the first oven 2. Push the second oven 3, and the second oven 3 moves by means of the moving wheels 16. The second oven 3 approaches the first oven 2, and the mounting groove 18 of the second oven 3 is inserted into the mounting block 17 of the first oven 2 to realize the position positioning of the first oven 2. Push the third oven 4, and the third oven 4 moves by means of the moving wheels 16. The third oven 4 approaches the second oven 3, and the mounting groove 18 of the third oven 4 is inserted into the mounting block 17 of the second oven 3 to realize the position positioning of the third oven 4. A plurality of first hand-tightening bolts 20 respectively pass through the through holes 19 and are threadedly connected to the inside of the first threaded holes 21, and the mounting block 17 is fixed in the mounting groove 18, so as to fix parts such as the dehumidifying box 1, the first oven 2, the second oven 3, and the third oven 4, improving the overall stability between the devices. The moving wheels 16 are fixed inside the wheel frame 22 by means of the access holes 23, the second threaded holes 24, the fixing holes 25, and the second hand-tightening bolts 26. The moving wheels 16 are locked to prevent the dehumidifying box 1, the first oven 2, the second oven 3, and the third oven 4 from moving randomly. The synthetic leather passes through the inside of the dehumidifying box 1, the first oven 2, the second oven 3, and the third oven 4 in sequence through the inlet 5 and the outlet 6. When the synthetic leather is inside the dehumidifying box 1, the high-pressure air transmitted by the transmission pipe 7 reaches a plurality of air chambers 8, a plurality of bronchial tubes 9, and a plurality of air ducts 10. A plurality of air ducts 10 face the top of the synthetic leather, and the moisture on the top of the synthetic leather is blown away. A plurality of air ducts 10 face the bottom of the synthetic leather, and the moisture on the bottom of the synthetic leather is blown away. The moisture accumulates on the inner wall and the bottom of the dehumidifying box 1. When too much moisture accumulates on the inner wall, it will also flow to the bottom and is discharged by means of the drain pipe 11. When the synthetic leather is inside the first oven 2, the second oven 3, and the third oven 4, after the heating wires 13 operate, heat is generated. The first blower 12 blows hot air to the bottom of the synthetic leather, and the second blower 14 blows hot air to the top of the synthetic leather. The top and the bottom of the synthetic leather are heated and dried simultaneously. The synthetic leather is continuously dried inside the first oven 2, the second oven 3, and the third oven 4. During this period, the moisture exhaust blower 15 is also operating, and the moisture exhaust blower 15 continuously discharges the water vapor inside the first oven 2, the second oven 3, and the third oven 4 respectively. Excess moisture is removed and water attachment is reduced during the whole process. The cooperation of multiple devices enhances the drying effect, saves time and improves efficiency. The temperature sensor probe 29 obtains the temperature information inside the first oven 2, the second oven 3, and the third oven 4, and transmits it by means of the transmission line 28. The humidity sensor probe 30 obtains the temperature information inside the first oven 2, the second oven 3, and the third oven 4, and transmits it by means of the transmission line 28. The thermometer and hygrometer 27 displays the temperature and humidity values, visually presenting and facilitating reference. The temperature and humidity conditions inside the first oven 2, the second oven 3, and the third oven 4 are accurately obtained and adjusted respectively as needed, improving flexibility and meeting more needs.
[0037] While the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art will appreciate that various changes in form and detail may be made within the scope of the claims.
Claims
1. A high-strength environmental protection synthetic leather processing device, comprising a dehumidification box (1), a first drying oven (2), a second drying oven (3) and a third drying oven (4), characterized in that: The first oven (2) is arranged on the side of the dehumidification box (1), the second oven (3) is arranged on the side of the first oven (2), the third oven (4) is arranged on the side of the second oven (3), an inlet (5) is provided on the side of the dehumidification box (1), an outlet (6) is provided on the side of the dehumidification box (1), the first oven (2), the second oven (3) and the third oven (4) are also provided with an inlet (5) and an outlet (6), and the synthetic leather passes through the dehumidification box (1), the first oven (2), the second oven (3) and the third oven (4) in sequence. A transmission pipe (7) is fixedly connected to the side of the dehumidification box (1), and the transmission pipe (7) is connected to other equipment to convey high-pressure air. The transmission pipe (7) reaches the inside of the dehumidification box (1), and an air chamber (8) is fixedly connected to the end of the transmission pipe (7). A bronchus (9) is fixedly connected to the side of the air chamber (8), and an air duct (10) is fixedly connected to the side of the bronchus (9). There are multiple air chambers (8), bronchi (9) and air ducts (10). Multiple air ducts (10) face the top of the synthetic leather, and multiple air ducts (10) face the bottom of the synthetic leather. A drain pipe (11) is arranged at the bottom of the dehumidification box (1). A first fan (12) is arranged inside the first oven (2), a heating wire (13) is arranged on the top of the first fan (12), a second fan (14) is arranged inside the first oven (2), and a heating wire (13) is arranged at the bottom of the second fan (14). A moisture exhaust fan (15) is arranged inside the first oven (2). The first oven (2), the second oven (3) and the third oven (4) have the same structure, and the first fan (12), the heating wire (13), the second fan (14) and the moisture exhaust fan (15) are also arranged inside the second oven (3) and the third oven (4). Movable wheels (16) are installed at the bottom of the dehumidification box (1), and movable wheels (16) are also installed at the bottoms of the first oven (2), the second oven (3) and the third oven (4).
2. The high-strength environmental protection synthetic leather processing device according to claim 1, characterized in that: The air chamber (8) is arranged at a certain angle, and multiple air ducts (10) blow obliquely on the top and bottom of the synthetic leather.
3. The high-strength environment-friendly synthetic leather processing device according to claim 1, characterized in that: An installation block (17) is fixedly connected to the side of the dehumidification box (1), an installation groove (18) is provided on the side of the first oven (2), and the installation block (17) and the installation groove (18) are inserted into each other.
4. The high-strength environmental protection synthetic leather processing device according to claim 3, characterized in that: The first oven (2), the second oven (3) and the third oven (4) are also connected to the installation block (17), and the second oven (3) and the third oven (4) are also provided with installation grooves (18).
5. The high-strength environmental protection synthetic leather processing device according to claim 3, characterized in that: A through hole (19) is provided on the side of the first oven (2), and the through hole (19) extends from the side of the first oven (2) to the inside of the installation groove (18). A first hand-tightening bolt (20) is inserted into the through hole (19), a first threaded hole (21) is provided inside the installation block (17), and the first hand-tightening bolt (20) is connected to the first threaded hole (21). Through holes (19) are also provided on the sides of the second oven (3) and the third oven (4).
6. The high-strength environmental protection synthetic leather processing device according to claim 1, characterized in that: The bottom of the dehumidification box (1) is fixedly connected with a wheel frame (22), a moving wheel (16) is arranged inside the wheel frame (22), an access hole (23) is arranged on the side of the wheel frame (22), a second threaded hole (24) is arranged on the side of the wheel frame (22), a fixing hole (25) is arranged inside the moving wheel (16), the access hole (23) and the second threaded hole (24) are on the left and right sides of the fixing hole (25), a second hand-tightening bolt (26) is inserted into the access hole (23), and the second hand-tightening bolt (26) sequentially passes through the access hole (23) and the fixing hole (25) and is threadedly connected with the second threaded hole (24).
7. An apparatus for processing high-strength environmental protection synthetic leather according to claim 6, characterized in that: There are multiple fixing holes (25), and the distance between the multiple fixing holes (25) is equal.
8. The high-strength environmental protection synthetic leather processing device according to claim 6, characterized in that: The bottoms of the dehumidification box (1), the first oven (2), the second oven (3) and the third oven (4) are respectively provided with four moving wheels (16) and four wheel frames (22), and the four moving wheels (16) are evenly distributed.
9. The high-strength environmental protection synthetic leather processing device according to claim 1, characterized in that: A thermometer and hygrometer (27) is arranged on the surface of the first oven (2), a transmission line (28) is fixedly connected to the side of the thermometer and hygrometer (27), there are multiple transmission lines (28), the end of the transmission line (28) is fixedly connected with a temperature sensor probe (29), the end of the transmission line (28) is fixedly connected with a humidity sensor probe (30), and the humidity sensor probe (30) and the temperature sensor probe (29) reach the inside of the first oven (2).
10. A high-strength environmental protection synthetic leather processing device according to claim 9, characterized in that: There are multiple humidity sensor probes (30) and temperature sensor probes (29), and the second oven (3) and the third oven (4) are also provided with thermometers and hygrometers (27).
Citation Information
Patent Citations
High-strength environment-friendly synthetic leather processing device
CN216094644U