An electric drying room for rapid moisture removal

Through electric heating and air flow design, environmental pollution and temperature unevenness of fuel drying equipment are solved, rapid humidity exhaustion and uniform heating are achieved, and drying efficiency is improved.

CN117404877BActive Publication Date: 2025-08-26国网江苏省电力有限公司太仓市供电分公司
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Patent Information

Application Number
CN202311636403.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-01
Publication Date
2025-08-26
Estimated Expiration
2043-12-01

AI Technical Summary

Technical Problem

Existing drying equipment requires fuel as energy, which leads to environmental pollution and high energy consumption, and slow internal air circulation, resulting in water vapor convergence and uneven temperature, affecting drying efficiency.

Method used

The electric heating method is adopted, and the heating plate and inclined heating strip are combined with the moisture discharge port and the exhaust box. The Joule effect of the current is used to heat and actively promote the flow of air to quickly discharge water vapor to ensure uniform temperature rise.

Benefits of technology

It achieves rapid humidity exhaust and uniform temperature heating, reduces environmental pollution and energy consumption, and improves drying efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an electric drying room that is convenient for rapid dehumidification and relates to the technical field of electric drying rooms. It includes a drying room body, two inner side walls of the drying room body are fixedly installed with two heating plates, and two inner side walls of the drying room body on one side of the heating plate are provided with two dehumidification ports. A first fixed plate is movably installed on the top of the inner wall of the drying room body, and the side ends of the two first fixed plates are fixedly installed with the same mounting plate, and the bottom end of each of the first fixed plates is fixedly installed with a second fixed plate, and the two side ends of each of the second fixed plates are rotatably installed with a connecting plate, and the bottom end of each connecting plate is fixedly installed with two heating strips, and the bottom end of each connecting plate is fixedly installed with two splints, and the bottom end of each connecting plate is fixedly installed with two first U-shaped sleeves, and the two side ends of the mounting plate are fixedly installed with docking blocks.
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Description

Technical Field

[0001] The present invention belongs to the technical field of electric drying rooms, and more particularly, relates to an electric drying room that is convenient for rapid moisture removal. Background Art

[0002] Drying equipment refers to a combination of mechanical equipment that uses certain technical means to dry moisture or other liquids on the surface of objects. Popular drying technologies are mainly ultraviolet drying, infrared drying, electromagnetic drying and hot air drying. This type of drying equipment must be equipped with a fuel source and supporting protective devices. Using fuel as energy has the following shortcomings.

[0003] Drying equipment requires additional installation of fuel storage devices and fuel protection devices. At the same time, this type of drying equipment that uses fuel as energy will consume more fuel the longer the drying time is, and will continuously emit exhaust gas, causing environmental pollution and increasing energy consumption.

[0004] During the drying process, as the temperature rises, the water vapor on the surface of the material begins to evaporate, and the water vapor radiates from the surface of the material to the inside of the drying room. However, the air circulation inside the drying room is slow, and the evaporated water vapor will continue to gather inside the drying room and cannot be discharged in time.

[0005] In order to ensure the internal space of the drying room, the heating devices are fixed on the inner wall of the drying room. During the heating process, the heat first radiates from the side wall of the drying room. The materials in the middle of the drying room are far away from the heating device. During the drying process, it is easy to cause uneven temperature rise inside the drying room, resulting in a longer drying time. Summary of the Invention

[0006] In order to solve the above technical problems, the present invention provides an electric drying room that is convenient for rapid moisture removal to solve the above problems.

[0007] 18. The electric drying room as claimed in claim 17, wherein the two inner side walls of the drying room body are fixedly mounted with two heating plates, and the two inner side walls of the drying room body on one side of the heating plate are provided with two dehumidification ports, a first fixing plate is movably mounted on the top of the inner wall of the drying room body, the side ends of the two first fixing plates are fixedly mounted with the same mounting plate, a second fixing plate is fixedly mounted on the bottom end of each of the first fixing plates, a connecting plate is rotatably mounted on the two side ends of each of the second fixing plates, two heating strips are fixedly mounted on the bottom end of each of the connecting plates, two clamping plates are fixedly mounted on the bottom end of each of the connecting plates, two first U-shaped sleeves are fixedly mounted on the bottom end of each of the connecting plates, and docking blocks are fixedly mounted on the two side ends of the mounting plate;

[0008] Among them, two clamping plates are grouped together and fixed on both sides of the heating strip respectively. At the same time, every two connecting plates are symmetrically installed around the first fixed plate. At the same time, pipes are pre-installed inside the connecting plates to connect with multiple clamping plates.

[0009] Preferably, a driving wheel is rotatably mounted on the top of the mounting plate, and two closed rings are fixedly mounted on the top of the mounting plate on both sides of the driving wheel, and a third pipe is fixedly mounted on the top of each closed ring;

[0010] The top of the connecting plate is connected to the inner wall of the drying room body, and the connecting plate is designed in sections so that it can be stretched. An exhaust box is fixedly installed on the top of the drying room body, and two first pipes are fixedly installed on the side ends of each exhaust box.

[0011] Among them, a plurality of vertically equidistantly distributed adsorption plates are installed inside the exhaust box, and the top end of the first pipe is connected to the inside of the exhaust box, the end of the first pipe and the dehumidification port are connected to each other, and two drive rods are rotatably installed at the bottom end of each second fixed plate.

[0012] Preferably, two third fixing plates are fixedly mounted on the bottom end of each of the first fixing plates, a second telescopic rod is fixedly mounted on the bottom end of each of the third fixing plates, a bearing plate is slidably mounted on the bottom end of each of the third fixing plates, and two hydraulic rods are fixedly mounted on the top end of the first fixing plates;

[0013] The second telescopic rod is provided with a spring block inside, and the end of the second telescopic rod is connected to the supporting plate. A second slider is slidably installed on the outside of each supporting plate, a mounting bracket is fixedly installed on the inside of each second slider, a positioning block is fixedly installed on the top of each second slider, and a V-shaped plate is fixedly installed on the outside of each second slider;

[0014] The mounting bracket is rotatably connected to the end of the driving rod, the positioning block fits into the groove of the side end of the carrier plate, the top end of the V-shaped plate is rotatably connected to the side ends of the two connecting plates, the side end of each second slider is fixedly mounted with a second U-shaped sleeve, and the top end of each second U-shaped sleeve is fixedly mounted with a second pipe;

[0015] The interior of the second pipe is hollow, and the second pipe is interconnected with the closed loop through the pipe.

[0016] Preferably, an elastic tube is rotatably mounted on the side end portion of each second U-shaped sleeve;

[0017] The top end of the elastic tube is rotatably connected to the first U-shaped sleeve. The elastic tube itself is an elastic hose. Two support plates are fixedly installed on the side ends of the first fixed plate. A connecting shaft is slidably installed inside each support plate.

[0018] A first telescopic rod is fixedly mounted on the side end of each connecting shaft, and a first sliding block is rotatably mounted on the inner side of each connecting shaft;

[0019] The top end of the first sliding block is rotatably connected to the connecting plate, and a spring block is installed inside the first telescopic rod to allow the first telescopic rod to be extended and retracted to a certain extent.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] In the present invention, two docking blocks are installed on the side ends of the mounting plate, and connecting pipes are installed on the side ends of the docking blocks. Electricity is transmitted to the interior of the first fixed plate through one of the two connecting pipes. At this time, the electricity enters the interior of the first fixed plate and is connected to multiple heating strips through the first fixed plate. The Joule effect of the current is used to convert electrical energy into thermal energy to heat the object. At the same time, the interiors of the two heating plates are also resistively heated, and the connecting plate is used to heat the interior of the drying room body, so that multiple heating strips are heated at the bottom end of the connecting plate. The electric heating method can heat up faster, and at the same time, heating by fuel is eliminated, thereby reducing environmental pollution.

[0022] In the present invention, two heating strips are symmetrically distributed on both sides of the splint, and the heating strips themselves are inclined panels. At this time, the exhaust box transports flowing air to the interior of the first fixed plate through the connecting pipe, and diffuses it downward through multiple heating strips. At this time, the flowing air pushes the hot air generated around the heating strips, allowing the hot air to quickly diffuse inside the drying room body, pushing the internal water vapor to the interior of multiple dehumidification ports, actively promoting the internal water vapor to gather, and then connecting with the first pipe through the dehumidification port to discharge the moisture to the interior of the exhaust box, thereby accelerating the dehumidification process.

[0023] In the present invention, the second slider is allowed to continue to move downward for a distance, and at the same time, the second slider drives the V-shaped plate to apply downward pulling force to the two side ends of the connecting plate, and the end of the connecting plate slides downward along the side end of the second fixed plate. At the same time, the other end of the connecting plate rotates around the two connecting shafts, and the deflection angle of the connecting plate is adjusted, so that the connecting plate drives the connecting shaft to slide inside the support plate. The side end of the connecting shaft squeezes the top of the first telescopic rod, forcing the first telescopic rod to gradually compress inside the support plate, turning the connecting plate to a vertical state, and cooperating with the lifting and lowering of the first fixed plate, so that the position of the connecting plate can be adjusted, which is convenient for quickly heating up the interior of the drying room body, and also ensures the stable increase in temperature of various areas inside the drying room body.

[0024] In the present invention, the second slider drives the positioning block to slide on the side end of the supporting plate, and the positioning block reduces the downward pulling force on the supporting plate. At this time, under the action of the two second telescopic rods, the supporting plate synchronously follows the second slider to slide upward, and continues to rotate the driving rod to rotate the two driving rods to a horizontal state and hide in the bottom end of the second fixed plate. At the same time, the second slider and the supporting plate are aligned with each other. Through the sliding of the second slider and the extension and contraction of the supporting plate, the connecting plate is driven to deflect, thereby reducing the volume of the first fixed plate and the second fixed plate, and increasing the usable space of the drying room body.

[0025] In the present invention, by applying tension to the elastic tube, the end of the elastic tube is rotated inside the second U-shaped sleeve. At the same time, the elastic tube itself is an elastic hose and can be stretched when subjected to force. During the rotation of the connecting plate, the elastic tube and the second pipe cooperate to allow air to flow inside the first fixed plate and the connecting plate. During the adjustment of the connecting plate, the heat generated by the heating strip continues to be diffused through the clamping plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 This is a schematic diagram of the main structure of the drying room of the present invention;

[0027] Figure 2 It is a schematic diagram of the fixed plate structure of the present invention;

[0028] Figure 3 Schematic diagram of the support plate structure of the present invention;

[0029] Figure 4 2. It is a schematic diagram of the structure of the driving rod of the present invention;

[0030] Figure 5 It is a schematic diagram of the mounting plate structure of the present invention;

[0031] Figure 6 It is a schematic diagram of the hydraulic rod structure of the present invention;

[0032] Figure 7 It is a schematic structural diagram of the connecting plate of the present invention;

[0033] Figure 8 It is a schematic diagram of the U-shaped sleeve structure of the present invention;

[0034] Figure 9 It is a structural schematic diagram of the slider of the present invention.

[0035] In the figure, the correspondence between the component names and the drawing numbers is: 1. Drying room body; 11. Dehumidification port; 12. Heating plate; 13. First fixed plate; 14. Connecting plate; 15. Support plate; 16. Hydraulic rod; 17. Exhaust box; 18. First pipeline; 19. Second fixed plate; 21. Mounting plate; 22. Driving wheel; 23. Closed ring; 24. First slider; 25. Connecting shaft; 26. Driving rod; 27. Mounting frame; 28. Second slider; 29. ​​V-shaped plate; 31. Docking block; 32. First telescopic rod; 33. Clamp; 34. Heating strip; 35. First U-shaped sleeve; 36. Elastic tube; 37. Second U-shaped sleeve; 38. Second pipeline; 39. Load-bearing plate; 41. Third fixed plate; 42. Second telescopic rod; 43. Positioning block; 44. Third pipeline. DETAILED DESCRIPTION

[0036] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention but are not intended to limit the scope of the present invention. Example 1:

[0037] Please refer to the figure. The present invention provides a technical solution, including a drying room body 1. Two heating plates 12 are fixedly installed on the two inner side walls of the drying room body 1. Two moisture drainage ports 11 are provided on the two inner side walls of the drying room body 1 on one side of the heating plate 12. A first fixed plate 13 is movably installed on the top of the inner wall of the drying room body 1. The side ends of the two first fixed plates 13 are fixedly installed with the same mounting plate 21. The bottom end of each first fixed plate 13 is fixedly installed with a second fixed plate 19. The two side ends of each second fixed plate 19 are rotatably installed with a connecting plate 14. The bottom end of each connecting plate 14 is fixedly installed with two heating strips 34. Each connecting plate 14 has a bottom end fixed with two heating strips 34. The bottom ends of the connecting plates 14 are fixedly installed with two clamping plates 33, and the bottom ends of each connecting plate 14 are fixedly installed with two first U-shaped sleeves 35. The two side ends of the mounting plate 21 are fixedly installed with docking blocks 31. The two clamping plates 33 are grouped together and fixed on both sides of the heating strip 34 respectively. At the same time, every two connecting plates 14 are symmetrically installed around the first fixed plate 13. At the same time, the interior of the connecting plate 14 is pre-installed with pipes connected to multiple clamping plates 33. The top of the mounting plate 21 is rotatably installed with a driving wheel 22. Two closed rings 23 are fixedly installed on the top of the mounting plate 21 on both sides of the driving wheel 22. The top of each closed ring 23 is fixedly installed with a third pipe 44;

[0038] The top of the connecting plate 14 is connected to the inner wall of the drying room body 1, and the connecting plate 14 is a segmented design, which can be stretched. An exhaust box 17 is fixedly installed on the top of the drying room body 1, and two first pipes 18 are fixedly installed on the side ends of each exhaust box 17. A plurality of adsorption plates distributed vertically and equidistantly are installed inside the exhaust box 17, and the top of the first pipe 18 is connected to the inside of the exhaust box 17, and the end of the first pipe 18 is connected to the dehumidification port 11. The bottom end of each second fixed plate 19 is rotatably installed with two driving rods 26, and the bottom end of each first fixed plate 13 is fixed with two third fixed plates 41, and the bottom end of each third fixed plate 41 is fixed with a second telescopic rod 42, and the bottom end of each third fixed plate 41 is slidably installed with a bearing plate 39, and the top of the first fixed plate 13 is fixed with two hydraulic rods 16;

[0039] A spring block is installed inside the second telescopic rod 42 , and the end of the second telescopic rod 42 is connected to the supporting plate 39 .

[0040] Working principle: Two docking blocks 31 are installed on the side ends of the mounting plate 21, and connecting pipes are installed on the side ends of the docking blocks 31. The two connecting pipes transmit electricity to the inside of the first fixed plate 13 through one of the connecting pipes. At this time, the electricity enters the inside of the first fixed plate 13 and is connected to multiple heating strips 34 through the first fixed plate 13. The Joule effect of the current is used to convert electrical energy into thermal energy to heat the object. At the same time, the inside of the two heating plates 12 is also resistively heated, and the connecting plate 14 is used to heat the inside of the drying room body 1, so that the multiple heating strips 34 are heated at the bottom end of the connecting plate 14. The electric heating method heats up faster and eliminates the need for fuel heating, reducing environmental pollution. At the same time, another connecting tank on one side of the docking block 31 is connected to the heating strip 34. The two heating strips 34 are symmetrically distributed on both sides of the splint 33. The heating strip 34 itself is an inclined panel. At this time, the exhaust box 17 transports flowing air to the inside of the first fixed plate 13 through the connecting pipe, and diffuses it downward through multiple heating strips 34. At this time, the flowing air pushes the hot air generated around the heating strip 34, allowing the hot air to diffuse quickly inside the drying room body 1, and pushes the internal water vapor to the inside of multiple dehumidification ports 11, actively promoting the internal water vapor to gather, and then connecting to the first pipe 18 through the dehumidification port 11, discharging the moisture to the inside of the exhaust box 17, thereby accelerating the dehumidification process.

[0041] By driving the hydraulic rod 16 to extend and retract, the hydraulic rod 16 applies a directional thrust to the first fixed plate 13 at the inner side wall of the drying room body 1, so that the first fixed plate 13 slides downward inside the drying room body 1, and the two first fixed plates 13 drive the connecting plate 14 to push downward. At the same time, the internal driving rod 26 of the second fixed plate 19 rotates, and the top of the driving rod 26 is connected to the second fixed plate 19 through two rotating shafts, driving the two driving rods 26 to deflect each other around the bottom end of the second fixed plate 19. The deflection angles of the two driving rods 26 are opposite. The end of the driving rod 26 rotates inside the second slider 28, applying a force to the second slider 28, so that the second slider 28 drives the positioning block 43 to slide on the side end of the supporting plate 39. At the same time, the second slider 28 drives the positioning block 43 to slide to the bottom end of the supporting plate 39, applying a pulling force to the supporting plate 39, so that the supporting plate 39 slides on the side end of the second fixed plate 19, stretching the bottom ends of the two second telescopic rods 42, so that the second slider 28 can continue to move downward. The second slider 28 drives the V-shaped plate 29 to exert a downward pulling force on the two side ends of the connecting plate 14, and the end of the connecting plate 14 slides downward along the side end of the second fixed plate 19. At the same time, the other end of the connecting plate 14 rotates around the two connecting shafts 25 to adjust the deflection angle of the connecting plate 14, so that the connecting plate 14 drives the connecting shaft 25 to slide inside the support plate 15. The side end of the connecting shaft 25 squeezes the top of the first telescopic rod 32, forcing the first telescopic rod 32 to be gradually compressed inside the support plate 15, turning the connecting plate 14 to a vertical state. In conjunction with the lifting and lowering of the first fixed plate 13, the position of the connecting plate 14 can be adjusted, which is convenient for quickly heating the interior of the drying room body 1 and ensuring the stable rise of the temperature in various areas inside the drying room body 1. At the same time, the driving wheel 22 is driven to rotate at the top end of the mounting plate 21. The surface of the driving wheel 22 rubs against the two closed rings 23, driving the two closed rings 23 to rotate at the bottom end of the third pipe 44, which can adjust the space inside the third pipe 44 and adjust the flow rate of air. Example 2:

[0042] Please refer to the figure. Based on the first embodiment, the present invention provides a technical solution. A second slider 28 is slidably mounted on the outer side of each supporting plate 39. A mounting bracket 27 is fixedly mounted on the inner side of each second slider 28. A positioning block 43 is fixedly mounted on the top of each second slider 28. A V-shaped plate 29 is fixedly mounted on the outer side of each second slider 28. The mounting bracket 27 is rotatably connected to the end of the driving rod 26. The positioning block 43 fits into the groove at the side end of the supporting plate 39. The top of the V-shaped plate 29 is rotatably connected to the side ends of the two connecting plates 14. A second U-shaped sleeve 37 is fixedly mounted on the side end of each second slider 28. A second pipe 38 is fixedly mounted on the top of each second U-shaped sleeve 37.

[0043] The interior of the second pipe 38 is hollow, and the second pipe 38 is interconnected with the closed ring 23 through the pipe. The side end of each second U-shaped sleeve 37 is rotatably installed with an elastic tube 36, and the top end of the elastic tube 36 is rotatably connected to the first U-shaped sleeve 35. The elastic tube 36 itself is an elastic hose. The side end of the first fixed plate 13 is fixedly installed with two support plates 15, and the interior of each support plate 15 is slidably installed with a connecting shaft 25. The side end of each connecting shaft 25 is fixedly installed with a first telescopic rod 32, and the inner side of each connecting shaft 25 is rotatably installed with a first slider 24. The top end of the first slider 24 is rotatably connected to the connecting plate 14, and a spring block is installed inside the first telescopic rod 32 to allow the first telescopic rod 32 to be telescoped to a certain extent.

[0044] Working principle: When the second slider 28 is driven to move downward and the angle of the connecting plate 14 is adjusted, the side end of the second slider 28 drives the second U-shaped sleeve 37 to move upward synchronously. At the same time, the second U-shaped sleeve 37 pulls the bottom end of the second pipe 38. The top end of the second pipe 38 is fixedly connected to the first fixed plate 13, and the interior of the second pipe 38 is a hollow design. The tension of the second U-shaped sleeve 37 allows the second pipe 38 to expand and contract. At the same time, the connecting plate 14 deflects, driving the first U-shaped sleeve 35 to rotate to one side. The first U-shaped sleeve 35 drives the top end of the elastic tube 36 to deflect, exerting tension on the elastic tube 36, causing the end of the elastic tube 36 to rotate inside the second U-shaped sleeve 37. At the same time, the elastic tube 36 itself is an elastic hose and can be stretched under force. During the rotation of the connecting plate 14, the cooperation between the elastic tube 36 and the second pipe 38 allows air to continue to flow inside the first fixed plate 13 and the connecting plate 14. During the adjustment of the connecting plate 14, the heat generated by the heating strip 34 continues to be diffused through the clamping plate 33.

[0045] By driving the two driving rods 26 to rotate in opposite directions at the bottom end of the second fixed plate 19, the two driving rods 26 deflect at the bottom end of the second fixed plate 19 to apply an upward thrust to the mounting bracket 27, allowing the second slider 28 to drive the positioning block 43 to slide on the side end of the carrier plate 39, and the positioning block 43 reduces the downward pulling force on the carrier plate 39. At this time, under the action of the two second telescopic rods 42, the carrier plate 39 synchronously follows the second slider 28 to slide upward, and continues to rotate the driving rods 26 to rotate the two driving rods 26 to a horizontal state and hide in the bottom end of the second fixed plate 19. At the same time, the second slider 28 and the carrier plate 39 are aligned with each other, and the second slider 28 is used to rotate the two driving rods 26 to a horizontal state and hide in the bottom end of the second fixed plate 19. The sliding of the supporting plate 39 and the extension and retraction of the connecting plate 14 drive the deflection of the connecting plate 14, thereby reducing the volume of the first fixed plate 13 and the second fixed plate 19 and increasing the usable space of the drying room body 1. The second slider 28 slides upward, driving the end of the connecting plate 14 to move upward. At the same time, the first telescopic rod 32 pushes the connecting shaft 25, allowing the connecting shaft 25 to slide inside the supporting plate 15, pushing one end of the connecting plate 14 to slide horizontally, and adjusting the connecting plate 14 to a horizontal state. At this time, the second U-shaped sleeve 37 follows the second slider 28 to reset upward, pushing the second pipe 38 to retract. At the same time, the driving rod 26 also retracts and resets itself under its own elastic potential energy.

[0046] The embodiments of the present invention are presented for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described in order to better illustrate the principles of the invention and its practical application and to enable those skilled in the art to understand the invention and design various embodiments with various modifications as suited for specific applications.

Claims

1. An electric drying room for rapid moisture removal, comprising a drying room body (1), characterized in that: Two heating plates (12) are fixedly mounted on the two inner side walls of the drying room body (1), and two moisture drain ports (11) are provided on the two inner side walls of the drying room body (1) on one side of the heating plates (12). A first fixing plate (13) is movably mounted on the top of the inner wall of the drying room body (1), and the side ends of the two first fixing plates (13) are fixedly mounted with the same mounting plate (21). A second fixing plate (19) is fixedly mounted on the bottom end of each of the first fixing plates (13), and a connecting plate (14) is rotatably mounted on the two side ends of each of the second fixing plates (19), and two heating strips (34), two clamping plates (33) and two first U-shaped sleeves (35) are fixedly mounted on the bottom end of each of the connecting plates (14). Two clamping plates (33) are formed into a group and are fixed on both sides of the heating strip (34), respectively. Each two connecting plates (14) are symmetrically installed around the first fixed plate (13), and pipes are pre-installed inside the connecting plates (14) to connect with the multiple clamping plates (33); A driving wheel (22) is rotatably mounted on the top of the mounting plate (21), and two closed rings (23) are fixedly mounted on the top of the mounting plate (21). The two closed rings (23) are respectively located on both sides of the driving wheel (22), and a third pipe (44) is fixedly mounted on the top of each closed ring (23); The top end of the third pipe (44) is connected to the inner wall of the drying room body (1), and the third pipe (44) is designed in sections and can be stretched; Two driving rods (26) are rotatably mounted on the bottom end of each second fixing plate (19); Two third fixing plates (41) are fixedly mounted on the bottom end of each first fixing plate (13), a second telescopic rod (42) is fixedly mounted on the bottom end of each third fixing plate (41), a bearing plate (39) is slidably mounted on the bottom end of each third fixing plate (41), and two hydraulic rods (16) are fixedly mounted on the top end of the first fixing plate (13); A spring block is installed inside the second telescopic rod (42), and the end of the second telescopic rod (42) is connected to the bearing plate (39); A second slider (28) is slidably mounted on the outer side of each of the bearing plates (39), a mounting frame (27) is fixedly mounted on the inner side of each of the second sliders (28), a positioning block (43) is fixedly mounted on the top of each of the second sliders (28), and a V-shaped plate (29) is fixedly mounted on the outer side of each of the second sliders (28); The mounting frame (27) is rotatably connected to the end of the driving rod (26), the positioning block (43) is engaged with the groove of the side end of the bearing plate (39), and the top end of the V-shaped plate (29) is rotatably connected to the side ends of the two connecting plates (14); Two support plates (15) are fixedly mounted on the side ends of the first fixed plate (13), and a connecting shaft (25) is slidably mounted inside each of the support plates (15); A first telescopic rod (32) is fixedly mounted on the side end of each connecting shaft (25), and a first sliding block (24) is rotatably mounted on the inner side of each connecting shaft (25).

2. An electric drying room for rapid moisture removal as claimed in claim 1, characterized in that: An exhaust box (17) is fixedly mounted on the top of the drying room body (1), and two first pipes (18) are fixedly mounted on the side ends of each exhaust box (17); A plurality of adsorption plates distributed vertically and equidistantly are installed inside the exhaust box (17), and the top end of the first pipe (18) is connected to the inside of the exhaust box (17), and the end of the first pipe (18) is connected to the moisture outlet (11).

3. The electric drying room for rapid moisture removal according to claim 1, characterized in that: A second U-shaped sleeve (37) is fixedly mounted on the side end of each second slider (28), and a second pipe (38) is fixedly mounted on the top end of each second U-shaped sleeve (37); The interior of the second pipe (38) is of hollow design, and the second pipe (38) is interconnected with the closed loop (23) through the pipe.

4. An electric drying room for rapid moisture removal as claimed in claim 3, characterized in that: An elastic tube (36) is rotatably mounted on the side end portion of each second U-shaped sleeve (37); The top end of the elastic tube (36) is rotatably connected to the first U-shaped sleeve (35), and the elastic tube (36) itself is an elastic hose.

5. The electric drying room for rapid moisture removal according to claim 1, characterized in that: The top end of the first sliding block (24) is rotatably connected to the connecting plate (14), and a spring block is installed inside the first telescopic rod (32) to allow the first telescopic rod (32) to be telescoped to a certain extent.

Citation Information

Patent Citations

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