An environmentally friendly, multi-functional paper-faced gypsum board production device

CN117733986BActive Publication Date: 2026-09-01TAISHAN GYPSUM (NANTONG) CO LTD
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Patent Information

Application Number
CN202311661155.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-06
Publication Date
2026-09-01
Estimated Expiration
2043-12-06

AI Technical Summary

Technical Problem

[0004]现有技术中,在纸面石膏板进行生产的过程中,在石膏板浇筑成型后,往往需要进行统一堆放干燥,从而减少石膏板内部水分的存在,进而减少后续石膏板受潮、发霉情况的发生,而现有石膏板的堆放装置往往仅为一个放置平台,各个石膏板之间贴合放置,在进行干燥的过程中,石膏板贴合面和外部存在干燥速度不一的情况,进而增加干燥时间

Benefits of technology

1.本发明所述的一种环保多功能纸面石膏板生产装置,通过利用多组二号阻拦板之间对纸面石膏板的分隔效果,可以减少纸面石膏板相互贴合导致的烘干速度增加,同时,在进行搬运的过程中,翻转板的可转动性,可以减少工作人员手部和二号阻拦板中部一号滑槽的接触,对其进行阻拦,减少在移动过程中工作人员手部出现的卡顿情况,同时,在烘干过程中,风力的作用可以带动翻转板进行转动,增加空气流动。

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Abstract

This invention belongs to the field of paper-faced gypsum board technology, specifically an environmentally friendly multifunctional paper-faced gypsum board production device, comprising: a pallet frame; a first barrier plate, which is a pair fixed to both sides of the top surface of the pallet frame; and a second barrier plate, which is fixed to the top surface of the pallet frame, with multiple sets of second barrier plates located between the pair of first barrier plates. Through the separation effect of the multiple sets of second barrier plates on the paper-faced gypsum boards, the drying speed increase caused by the paper-faced gypsum boards sticking together can be reduced. Simultaneously, during handling, the rotatability of the flipping plate reduces contact between the worker's hands and the first sliding groove in the middle of the second barrier plate, preventing jamming of the worker's hands during movement. Furthermore, during the drying process, the wind force can drive the flipping plate to rotate, increasing airflow.
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Description

Technical Field

[0001] This invention belongs to the field of paper-faced gypsum board technology, specifically an environmentally friendly and multifunctional paper-faced gypsum board production device. Background Technology

[0002] Paper-faced gypsum board is a building material used in modern society. It is usually made of gypsum as the main material, with additives and limiting materials as the core. Compared with traditional gypsum board, it is lighter and easier to install. The external paper surface can increase the strength of the gypsum board and protect the gypsum board core, reducing the occurrence of scratches.

[0003] A patent application with publication number CN109366717A discloses a multifunctional paper-faced gypsum board production device. The material drying device, fluidized bed furnace, and baking chamber are respectively equipped with steam heating device A, steam heating device B, and steam heating device C. Each of the steam heating devices A, B, and C is equipped with a steam exhaust pipe and a condensate discharge pipe. The condensate discharge pipe is connected via a pipe to a condensate collection tank on the batching device. The steam exhaust pipe is connected via a pipe to a material pre-drying device in the material yard. The conveyor frame is equipped with a gypsum board sidewall bonding device and a cleaning and drying device for cleaning the circulating conveyor belt. This invention reduces costs, improves production efficiency, and optimizes the production structure.

[0004] In the existing technology, during the production of paper-faced gypsum board, after the gypsum board is cast and shaped, it is often necessary to stack and dry it uniformly to reduce the presence of moisture inside the gypsum board, thereby reducing the occurrence of subsequent dampness and mold growth. However, the existing gypsum board stacking device is often just a placement platform, with each gypsum board placed together. During the drying process, the drying speed of the gypsum board's bonding surface and the outside is different, which increases the drying time.

[0005] Therefore, the present invention provides an environmentally friendly and multifunctional paper-faced gypsum board production device. Summary of the Invention

[0006] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.

[0007] The technical solution adopted by this invention to solve its technical problem is: an environmentally friendly multifunctional paper-faced gypsum board production device, comprising: Pallet rack, The first barrier plate consists of a pair of barriers fixed to both sides of the top surface of the pallet frame. The second barrier plate is fixed to the top surface of the pallet frame, and there are multiple sets of the second barrier plates located between a pair of first barrier plates. The first chute is located on the side wall of the multiple sets of the second barrier plates; Second chute, which is opened on the side wall of the pair of first barrier plates; The flip-over plate is arranged in multiple sets inside the second slide groove; The first rotating shaft is rotatably connected to the middle of the flip plate, and both the upper and lower sides of the first rotating shaft are rotatably connected to the side wall of the second slide groove by torsion springs.

[0008] Preferably, each of the two side walls of the first barrier plate is rotatably connected to a first roller; the bottom of the first roller is rotatably connected to a fan on both sides of the tray frame; the second slide groove has a third slide groove on both its upper and lower sides; a push rod is slidably connected inside the third slide groove; the side wall of the first rotating shaft and the push rod are connected by gears and racks; a push plate is fixedly connected to the side wall of the first roller; magnetic plates are slidably connected to both sides of the first barrier plate at the position of the first roller; the magnetic plates and the push plates are magnetically attracted to each other.

[0009] Preferably, a compression plate is installed at the bottom of the tray frame by a spring; the bottom of the second slide groove is provided with positioning grooves at corresponding positions on the bottom of the flip plate and the bottom of the flip plate; a positioning pin is slidably connected inside the positioning groove; the bottom of the positioning pin is in contact with the top of the compression plate.

[0010] Preferably, multiple sets of placement racks are fixedly connected to the middle of the pallet frame at the location of multiple sets of No. 2 barrier plates; No. 2 rollers are rotatably connected to the top of the placement racks; deflection plates are rotatably connected to the side walls of the pallet frame between each pair of placement racks; counterweight columns are fixedly connected to the bottom of the deflection plates; and holes corresponding to the placement racks are opened on the top of the extrusion plate.

[0011] Preferably, the side wall of the tray frame is provided with a fourth sliding groove at the location of the fan; each pair of fan side walls is rotatably connected to a reciprocating screw via a bevel gear; a slider is slidably connected to the middle of the reciprocating screw; a lever is fixedly connected to the side wall of the slider; the fourth sliding groove is provided on the side near the placement rack; the lever slides inside.

[0012] Preferably, each set of the placement racks has a No. 5 slide groove in the middle; each set of the deflection plate has a No. 6 slide groove inside; and a rolling ball rolls inside the No. 6 slide groove.

[0013] Preferably, a spring rod is connected to the middle of the slider, and oil tanks are fixed to both sides of the slider; a sponge ring is fixed to the bottom of the oil tank; the sponge ring is fitted onto the reciprocating lead screw; and a protrusion is fixed to the side wall.

[0014] Preferably, the fan sidewall is slidably connected to an extension plate via a spring; the fan has a No. 7 sliding groove on both the upper and lower sides; a connecting plate is slidably connected inside the No. 7 sliding groove; and the end of the connecting plate is fixedly connected to the sidewall of the extension plate.

[0015] Preferably, magnets are fixed to both sides of the multiple sets of flip plates; the magnetic forces of the flip plates in each set are opposite to those of the corresponding side wall flip plates.

[0016] Preferably, multiple sets of connecting blocks are fixedly connected to the bottom of the third chute; a third roller is rotatably connected to the side wall of the connecting block; the third roller is in contact with the bottom of the push rod.

[0017] The beneficial effects of this invention are as follows: 1. The environmentally friendly multifunctional paper-faced gypsum board production device of the present invention utilizes the separation effect between multiple sets of No. 2 baffles to reduce the increase in drying speed caused by the mutual adhesion of paper-faced gypsum boards. At the same time, during the handling process, the rotatability of the flipping plate can reduce the contact between the worker's hands and the No. 1 slide groove in the middle of the No. 2 baffle, thus preventing the worker's hands from getting stuck during the movement. In addition, during the drying process, the wind force can drive the flipping plate to rotate, increasing airflow.

[0018] 2. The environmentally friendly multifunctional paper-faced gypsum board production device of the present invention utilizes the rotation effect of a fan to drive the first roller to rotate. During the drying process of the paper-faced gypsum board, the flipping plate rotates back and forth along the first rotating shaft, thereby changing the airflow angle, increasing the overall airflow on the pallet frame, increasing the drying speed of the paper-faced gypsum board, and at the same time reducing the rotation of the flipping plate during handling, thus increasing safety. Attached Figure Description

[0019] The invention will now be further described with reference to the accompanying drawings.

[0020] Figure 1 This is a perspective view of the present invention; Figure 2 This is a schematic diagram of the structure of the first barrier plate in this invention; Figure 3 This is a schematic diagram of the structure of the flip plate in this invention; Figure 4 This is a schematic diagram of the pallet rack in this invention; Figure 5 This is a schematic diagram of the placement rack in this invention; Figure 6 This is a schematic diagram of the structure of the fourth slide groove in this invention; Figure 7 This is a schematic diagram of the fan structure in this invention.

[0021] In the diagram: 1. Pallet rack; 11. Barrier plate 1; 12. Barrier plate 2; 13. Slide 1; 14. Slide 2; 15. Tilting plate; 16. Rotating shaft 1; 2. Roller 1; 21. Fan; 22. Slide 3; 23. Push rod; 24. Magnetic plate; 25. Push plate; 3. Squeezing plate; 31. Positioning slot; 32. Positioning pin; 4. Placement rack; 41. Roller 2; 42. Deflection plate; 43. Counterweight column; 5. Reciprocating screw; 51. No. 4 slide groove; 52. Actuating rod; 53. Slider; 54. No. 8 slide groove; 6. No. 5 slide groove; 61. No. 6 slide groove; 62. Rolling ball; 7. Oil tank; 71. Protrusion; 72. Sponge ring; 8. Extension plate; 81. Connecting plate; 82. No. 7 slide groove; 9. Magnet; 101. No. 3 roller; 102. Connecting block. Detailed Implementation

[0022] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0023] like Figures 1 to 7 As shown in the embodiment of the present invention, an environmentally friendly multifunctional paper-faced gypsum board production device includes a pallet frame 1. The device is characterized by comprising: Pallet rack 1, The first barrier plate 11 is a pair fixedly connected to both sides of the top surface of the pallet frame 1; Second barrier plate 12 is fixed to the top surface of the tray frame 1, and there are multiple sets of second barrier plates 12 located between a pair of first barrier plates 11. The first chute 13 is opened on the side wall of the multiple sets of the second barrier plates 12; Second slide 14, the second slide 14 is opened on the side wall of the pair of first barrier plates 11; The flip plate 15 is arranged in multiple sets inside the second slide groove 14; The first rotating shaft 16 is rotatably connected to the middle of the flipping plate 15, and both its upper and lower sides are rotatably connected to the side wall of the second sliding groove 14 via torsion springs. During operation, in the production process of paper-faced gypsum board, after the gypsum board is cast and shaped, it often needs to be stacked and then uniformly dried. At this time, the first barrier plate 11 and the second barrier plate 12 installed on the pallet frame 1 can hold and release the paper-faced gypsum board. The separation effect of the second barrier plate 12 reduces the adhesion between the paper-faced gypsum board panels. Simultaneously, during the blowing process, the multiple sets of flipping plates 15 installed on the side wall of the first barrier plate 11 can rotate along the first rotating shaft 16. The rotating mechanism opens and closes, allowing airflow to pass smoothly and increasing air circulation. After drying, the torsion spring drives the flip plate 15 to return to its original position, restoring it to a flat state. The separation effect between the multiple sets of second-level baffle plates 12 reduces the increase in drying speed caused by the paper-faced gypsum boards sticking together. At the same time, the rotatability of the flip plate 15 during handling reduces contact between the worker's hands and the first slide groove 13 in the middle of the second-level baffle plate 12, preventing the worker's hands from getting stuck during movement. In addition, during the drying process, the airflow drives the flip plate 15 to rotate, increasing air circulation.

[0024] like Figures 1 to 7As shown, rollers 2 are rotatably connected to both sides of the first barrier plate 11; fans 21 are rotatably connected to the bottom of the first rollers 2 on both sides of the tray frame 1; third slide grooves 22 are provided on both the upper and lower sides of the second slide groove 14; a push rod 23 is slidably connected inside the third slide groove 22; the side wall of the first rotating shaft 16 and the push rod 23 are connected by gears and racks; a push plate 25 is fixedly connected to the side wall of the first roller 2; magnetic plates 24 are slidably connected to both sides of the first barrier plate 11 at the position of the first roller 2; the magnetic plates 24 and the push plates 25 are magnetically attracted; during operation, after the tray frame 1 is in the drying position, under the high temperature and the blowing of the fan, the fan 21 will rotate, and the rotation of the fan 21 will drive the first roller 2 to rotate. At this time, as the first roller 2 rotates, the push plate 25 will continuously interact with the magnetic plates 25. 4. When they come into contact, the magnetic attraction between them allows the magnetic suction plate 24 to reset after being pushed by the push plate 25, ensuring a full pushing effect. During the movement of the magnetic suction plate 24, it will drive the push rod 23 to move inside the third slide groove 22. At this time, the gear and rack installed between the push rod 23 and the first rotating shaft 16 can drive the first rotating shaft 16 to rotate, thereby causing the flip plate 15 to rotate as well, leaving a gap for airflow. Utilizing the rotation effect of the fan 21, the first roller 2 can be driven to rotate. During the drying process of the paper-faced gypsum board, the flip plate 15 rotates back and forth along the first rotating shaft 16, thereby changing the airflow angle, increasing the overall airflow on the pallet frame 1, increasing the drying speed of the paper-faced gypsum board, and at the same time reducing the rotation of the flip plate 15 during the handling process, increasing safety.

[0025] like Figures 1 to 7As shown, the bottom of the pallet frame 1 is spring-loaded with a compression plate 3; the bottom of the second slide 14 is provided with positioning grooves 31 at corresponding positions on the bottom of the flip plate 15; a positioning pin 32 is slidably connected inside the positioning groove 31; the bottom of the positioning pin 32 is in contact with the top of the compression plate 3; during operation, after the worker places the poured gypsum board between multiple sets of second barrier plates 12, as the number of gypsum boards on the pallet frame 1 increases, its own weight will also increase synchronously. At this time, the pallet frame 1 can be moved as a whole with a forklift. At this time, when the forklift is in contact with the bottom of the pallet frame 1 and it is moved, the compression plate 3 will move under the pressure of the weight of the pallet frame 1, driving the positioning pin 32 in the positioning groove. The positioning pin 31 moves inside until it contacts the tilting plate 15, restricting the rotation of the tilting plate 15. Then, after being sent into the drying device, the forklift and pallet frame 1 disengage, and the pressing plate 3 resets under its own weight and spring action, causing the positioning pin 32 to disengage from the tilting plate 15, allowing the tilting plate 15 to rotate. By utilizing the movement of the positioning pin 32, the rotation of the tilting plate 15 can be restricted during the overall handling of the pallet frame 1, reducing the rotation angle of the tilting plate 15. This reduces the gap left after the tilting plate 15 rotates during overall handling, which could cause workers' hands to come into contact with the gap and get pinched, resulting in injury to workers' hands and creating a safety hazard.

[0026] like Figures 1 to 7 As shown, multiple sets of placement racks 4 are fixedly connected to the middle of the pallet frame 1 at the location of multiple sets of second-level barrier plates 12; the top of each placement rack 4 is rotatably connected to a second-level roller 41; a deflector plate 42 is rotatably connected to the side wall of the pallet frame 1 between each pair of placement racks 4; a counterweight column 43 is fixedly connected to the bottom of the deflector plate 42; the top of the extrusion plate 3 has holes corresponding to the placement racks 4; during operation, after the workers move and place the paper-faced gypsum board, the multiple sets of placement racks 4 installed in the middle of the pallet frame 1 utilize the gaps between the multiple sets of placement racks 4 to guide the upward airflow during the drying process, allowing it to smoothly interact with the multiple sets of second-level barrier plates 12. The paper-faced gypsum boards between the baffles 12 come into contact. At the same time, the shape of the deflector plate 42 itself can swing left and right under the wind. The counterweight column 43 installed below the deflector plate 42 can limit the swing amplitude. Using the multiple sets of placement racks 4 installed on the top of the tray frame 1, the gaps can be used to increase the contact area between the paper-faced gypsum boards and the air during the drying process. At the same time, with the rotatable No. 2 roller 41 installed on the top of the placement rack 4, it is convenient for workers to place and move the paper-faced gypsum boards. During the blowing process, the small swing of the deflector plate 42 increases the blowing angle of the wind and increases the contact area with the paper-faced gypsum boards, thereby increasing the drying speed.

[0027] like Figures 1 to 7 As shown, the side wall of the tray rack 1 has a fourth groove 51 located at the position of the fan 21; each of the side walls of the fan 21 is rotatably connected to a reciprocating screw 5 via a bevel gear; a slider 53 is slidably connected to the middle of the reciprocating screw 5; a lever 52 is fixedly connected to the side wall of the slider 53; a groove 54 is provided on the side of the fourth groove 51 near the placement rack 4; the lever 52 slides inside the groove 54; during operation, as the fan 21 rotates, the fan 21 drives the reciprocating screw 5 to rotate under the action of the bevel gear, and at this time, the rotation of the reciprocating screw 5 drives the lever 52 inside the groove 54. As the lever 52 moves, it comes into contact with the second roller 41, causing the deflector plate 42 to rotate. This pulls the upward airflow from the bottom back, causing the airflow to blow to both sides, increasing the direction and amplitude of the airflow. The rotation of the fan 21 can also move the lever 52 inside the 54. At this time, the movement of the lever 52 will come into contact with the deflector plate 42, which will then rotate through the contact effect, thereby changing the direction of the airflow, increasing the area of ​​airflow, and reducing the obstruction between the various gypsum boards.

[0028] like Figures 1 to 7 As shown, each set of placement racks 4 has a fifth slide groove 6 in the middle; each set of deflection plates 42 has a sixth slide groove 61 inside; a rolling ball 62 rolls inside the sixth slide groove 61; during operation, as the slider 53 moves, the contact between the actuating rod 52 and multiple sets of deflection plates 42 causes the deflection plates 42 to rotate. The rotation of the deflection plates 42 changes the upward airflow direction, allowing a large amount of airflow to enter the fifth slide groove 6 in the placement rack 4 and contact the paper-faced gypsum board, increasing the drying speed. Simultaneously, during the rotation of the deflection plates 42... During the process, the rolling ball 62 inside the deflection plate 42 can move inside the sixth slide 61, increasing the swing amplitude of the deflection plate 42 during its return rotation. By utilizing the sixth slide 61 inside the deflection plate 42, the rolling ball 62 can swing back and forth during the rotation of the deflection plate 42, increasing the swing amplitude according to the movement trajectory of the rolling ball 62. Combined with the fifth slide 6 in the middle of the placement rack 4, the movement trajectory of the airflow is changed, allowing the airflow to smoothly enter the fifth slide 6 and contact the paper-faced gypsum board, increasing the contact area and increasing the drying speed.

[0029] like Figures 1 to 7As shown, a spring rod is connected to the middle of the slider 53, and oil tanks 7 are fixed to both sides of the slider 53; a sponge ring 72 is fixed to the bottom of the oil tank 7; the sponge ring 72 is fitted onto the reciprocating screw 5; a protrusion 71 is fixed to the side wall of the slider 54; during operation, under the rotation of the fan 21, the slider 53 will reciprocate back and forth on the reciprocating screw 5. As the slider 53 moves, the actuating rod 52 will move inside the slider 54. At this time, the protrusion 71 installed on the slider 54 will block the actuating rod 52. Under the amplitude of the protrusion 71, the blocked actuating rod 52 will vibrate up and down. Through continuous contact, the middle of the slider 53 will move up and down. At this time, the oil reservoir 7 will cause the sponge ring 72 to continuously contact the reciprocating screw 5. The adsorption effect of the sponge ring 72 can adsorb the lubricating oil inside the oil reservoir 7 onto its surface. In the continuous contact with the reciprocating screw 5, the surface of the reciprocating screw 5 is lubricated. Utilizing the movement effect of the slider 53, the actuating rod 52 can generate up-and-down undulations through contact with the protrusion 71 during its movement, thereby causing the sponge ring 72 to contact the surface of the reciprocating screw 5. Through the lubrication effect of the sponge ring 72 on the reciprocating screw 5, the relatively dry environment between the reciprocating screw 5 and the slider 53 in the drying environment is reduced, which would cause the slider 53 to be obstructed and affect the movement of the actuating rod 52.

[0030] like Figures 1 to 7 As shown, the fan 21 has an extension plate 8 slidably connected to its side wall via a spring; the fan 21 has a No. 7 sliding groove 82 on both its upper and lower sides; a connecting plate 81 is slidably connected inside the No. 7 sliding groove 82; the end of the connecting plate 81 is fixed to the side wall of the extension plate 8; during operation, as the fan 21 rotates through the high-power air blowing device, with the increase of the fan 21's rotation speed, the extension plate 8 on the side wall of the fan 21 will extend outward under the combined action of centrifugal force and wind force. During the movement of the extension plate 8, it will drive the connecting plate 81 along the No. 7 sliding groove 82. The trajectory moves, and then during the rotation, the wind force becomes weaker the closer it gets to the inside of the fourth slide 51, causing the extension plate 8 to retract into the fan 21 under the action of the spring, thereby reducing the contact with the inner side wall of the fourth slide 51. The slidable extension plate 8 on the side wall of the fan 21 can move during the rotation, increasing the contact area with the wind force and increasing the rotation speed, thereby maintaining the stability of the first roller 2 during the rotation, so that the flip plate 15 rotates back and forth, and by constantly opening and closing, the airflow trajectory is changed, increasing the drying speed of the paper-faced gypsum board.

[0031] like Figures 1 to 7As shown, magnets 9 are fixed to both sides of the multiple sets of flip plates 15; the corresponding side wall flip plates 15 of each set of flip plates 15 are magnetically repelled; during operation, as the worker dries the paper-faced gypsum board, the rotation of the first roller 2 will drive the flip plates 15 to rotate. At this time, as the distance between the multiple sets of flip plates 15 continues to move away and inward, the magnets 9 between the multiple sets of flip plates 15 can generate a magnetic repulsion effect to assist the rotation of the multiple sets of flip plates 15. Using the magnets 9 installed on both sides of the flip plates 15, the magnetic repulsion effect of the magnets 9 can generate a reverse force between the flip plates 15 during the rotation of the multiple sets of flip plates 15, so that the flip plates 15 obtain a pushing effect during the rotation, increase the rotation opening and closing effect of the flip plates 15, so as to facilitate air flow and improve the drying effect of the paper-faced gypsum board.

[0032] like Figures 1 to 7 As shown, multiple sets of connecting blocks 102 are fixedly connected to the bottom of the above-mentioned No. 3 chute 22; No. 3 rollers 101 are rotatably connected to the side walls of the connecting blocks 102; No. 3 rollers 101 are in contact with the bottom of the push rod 23; during operation, as the push rod 23 moves, the connecting blocks 102 installed on the bottom of the No. 3 chute 22 and the rotating effect of the No. 3 rollers 101 assist the push rod 23 in completing its parallel movement, thereby driving the No. 1 rotating shaft 16 to rotate, so that the flip plate 15 opens and closes when the paper-faced gypsum board is dried, increasing airflow. The rotatable effect of the No. 3 rollers 101 can provide some support for the push rod 23, and at the same time, the rotation effect reduces friction, assisting the push rod 23 in completing the rotation of the No. 1 rotating shaft 16.

[0033] During the production of gypsum board, after the gypsum board is cast and shaped, it often needs to be stacked and dried uniformly. At this time, the first barrier plate 11 and the second barrier plate 12 installed on the pallet frame 1 can hold the gypsum board in and out. The separation effect of the second barrier plate 12 reduces the adhesion between the gypsum board sheets. At the same time, during the air blowing process, the multiple sets of flip plates 15 installed on the side wall of the first barrier plate 11 can open and close under the rotation of the first rotating shaft 16, allowing the air to pass through smoothly and increasing airflow. After drying, the torsion spring torsion drives the flip plates 15 to return to their original position, in a flat state. In the drying state, after the tray rack 1 is in the drying position, under the high temperature and the blowing of the fan, the fan 21 will rotate. The rotation of the fan 21 will drive the first roller 2 to rotate. At this time, as the first roller 2 rotates, the push plate 25 will continuously contact the magnetic plate 24. The magnetic attraction between the two allows the magnetic plate 24 to return to its original position after being pushed by the push plate 25, thus achieving a full pushing effect. During the movement of the magnetic plate 24, the push rod 23 will move inside the third slide groove 22. At this time, the gear and rack installed between the push rod 23 and the first rotating shaft 16 can drive the first rotating shaft 16 to rotate, thereby causing the flipping plate 15 to rotate accordingly. The process involves placing the poured gypsum board between multiple sets of No. 2 barrier plates 12, leaving gaps for airflow. As the number of gypsum boards on the pallet frame 1 increases, its weight also increases. At this point, the pallet frame 1 can be moved as a whole by a forklift. During this movement, the forklift and the bottom of the pallet frame 1 come into contact. The pressing plate 3 moves under the weight of the pallet frame 1, causing the positioning pin 32 to move within the positioning groove 31 until it contacts the tilting plate 15, restricting its rotation. Afterward, the pallet frame is fed into the drying device. 1. After disengaging from contact, the pressing plate 3 resets under its own weight and the action of the spring, causing the positioning pin 32 to disengage from the flip plate 15, allowing the flip plate 15 to rotate. After the workers move and place the paper-faced gypsum board, multiple sets of placement racks 4 are installed in the middle of the pallet frame 1. The gaps between the multiple sets of placement racks 4 can be used to guide the upward airflow during the drying process, so that it can smoothly contact the paper-faced gypsum board between the multiple sets of second-order barrier plates 12. At the same time, the shape of the deflection plate 42 can swing left and right under the wind, and the counterweight column 43 installed below the deflection plate 42 can limit the swing amplitude.

[0034] During the rotation of fan 21, the fan 21 drives the reciprocating screw 5 to rotate under the action of the bevel gear. At this time, the rotation of the reciprocating screw 5 drives the actuating rod 52 to move inside 54. As the actuating rod 52 moves, it comes into contact with the second roller 41, pushing the deflector plate 42 to rotate, causing the upward airflow at the bottom to swing back, thereby making the airflow blow to both sides, increasing the airflow direction and swing amplitude. During the movement of slider 53, as the actuating rod 52 comes into contact with multiple sets of deflector plates 42, it drives the deflector plates 42 to rotate. Utilizing the rotation effect of the deflector plates 42, the upward airflow direction is changed, allowing a large amount of airflow to enter the fifth slide groove 6 opened in the placement rack 4 and come into contact with the paper-faced gypsum board, increasing the drying speed. At the same time, during the rotation of the deflector plate 42, there is a flow of air inside the deflector plate 42. The rolling ball 62 can move inside the sixth slide groove 61, increasing the swing amplitude of the deflection plate 42 during its return rotation. Under the rotation of the fan 21, the slider 53 will reciprocate back and forth on the reciprocating screw 5. As the slider 53 moves, the actuating rod 52 will move inside 54. At this time, the protrusion 71 installed on 54 will block the actuating rod 52. At this time, the actuating rod 52, which is blocked, will vibrate up and down under the amplitude of the protrusion 71. In the continuous contact, it will drive the middle part of the slider 53 to move up and down. At this time, the oil tank 7 will drive the sponge ring 72 to continuously contact the reciprocating screw 5. The adsorption effect of the sponge ring 72 can adsorb the lubricating oil inside the oil tank 7 onto the surface, and lubricate the surface of the reciprocating screw 5 in the continuous contact with it.

[0035] As the fan 21 rotates via the high-powered air blowing device, its speed increases. Under the combined effects of centrifugal force and airflow, the extension plate 8 on the side wall of the fan 21 extends outwards. During this movement, the extension plate 8 drives the connecting plate 81 along the trajectory of the seventh slide groove 82. Subsequently, as the fan rotates, the airflow weakens as it approaches the interior of the fourth slide groove 51, causing the extension plate 8 to retract into the fan 21 under spring pressure. This reduces contact with the inner side wall of the fourth slide groove 51. This process is crucial during the drying of the gypsum board by the workers. As the first roller 2 rotates, it drives the flipping plate 15 to rotate. At this time, as the distance between the multiple sets of flipping plates 15 continues to move further apart and closer together, the magnets 9 between the multiple sets of flipping plates 15 can generate a magnetic repulsion effect to assist the multiple sets of flipping plates 15 in rotating. During the movement of the push rod 23, the connecting block 102 installed on the bottom of the third slide 22, together with the rotation effect of the third roller 101, assists the push rod 23 in completing its own parallel movement, thereby driving the first rotating shaft 16 to rotate, so that the flipping plate 15 opens and closes when the paper-faced gypsum board is being dried, increasing airflow.

[0036] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. An environmentally friendly, multifunctional paper-faced gypsum board production device, characterized in that: Including pallet rack (1), The first barrier plate (11) is a pair and is fixed to both sides of the top surface of the pallet frame (1); Second barrier plate (12) is fixed to the top surface of the pallet frame (1), and there are multiple sets of second barrier plates (12) located between a pair of first barrier plates (11); The first chute (13) is opened on the side wall of the multiple sets of the second barrier plates (12); Second slide (14), the second slide (14) is opened on the side wall of the pair of first barrier plates (11); The flip plate (15) is in multiple sets and is set inside the second slide groove (14); The first rotating shaft (16) is rotatably connected to the middle of the flip plate (15), and both the upper and lower sides of the first rotating shaft (16) are rotatably connected to the side wall of the second slide groove (14) by torsion springs; The first barrier plate (11) has a first roller (2) rotatably connected to both sides of its sidewalls; the first roller (2) has a fan (21) rotatably connected to both sides of the tray frame (1) at its bottom; the second slide groove (14) has a third slide groove (22) on both its upper and lower sides; a push rod (23) is slidably connected inside the third slide groove (22); the first rotating shaft (16) is connected to the push rod (23) by a gear and a rack; a push plate (25) is fixedly connected to the sidewall of the first roller (2); magnetic plates (24) are slidably connected to both sides of the first barrier plate (11) at the position of the first roller (2); the magnetic plates (24) and the push plates (25) are magnetically attracted to each other; The bottom of the pallet frame (1) is fitted with a compression plate (3) by a spring; the bottom of the second slide groove (14) is located at the corresponding position of the bottom of the flip plate (15) and the flip plate (15), and both are provided with positioning grooves (31); a positioning pin (32) is slidably connected inside the positioning groove (31); the bottom of the positioning pin (32) is in contact with the top of the compression plate (3); Magnets (9) are fixed to both sides of the multiple sets of flip plates (15); the flip plates (15) on the corresponding side walls of each set of flip plates (15) are magnetically repelled.

2. The environmentally friendly multifunctional paper-faced gypsum board production device according to claim 1, characterized in that: The pallet frame (1) is fixedly connected to multiple sets of placement racks (4) at the location of multiple sets of second-level barrier plates (12); the top of each placement rack (4) is rotatably connected to a second-level roller (41); the side wall of the pallet frame (1) is rotatably connected to a deflection plate (42) between each pair of placement racks (4); the bottom of the deflection plate (42) is fixedly connected to a counterweight column (43); the top of the extrusion plate (3) has holes corresponding to the placement racks (4).

3. The environmentally friendly multifunctional paper-faced gypsum board production device according to claim 1, characterized in that: The side wall of the tray frame (1) is provided with a fourth slide groove (51) at the location of the fan (21); a pair of fan (21) side walls are rotatably connected to a reciprocating screw (5) via bevel gears; a slider (53) is slidably connected in the middle of the reciprocating screw (5); a lever (52) is fixedly connected to the side wall of the slider (53); an eighth slide groove (54) is provided on the side of the fourth slide groove (51) near the placement rack (4); the lever (52) slides inside the eighth slide groove (54).

4. The environmentally friendly multifunctional paper-faced gypsum board production device according to claim 2, characterized in that: Each set of placement racks (4) has a fifth slide groove (6) in the middle; each set of deflection plates (42) has a sixth slide groove (61) inside; a rolling ball (62) rolls inside the sixth slide groove (61).

5. The environmentally friendly multifunctional paper-faced gypsum board production device according to claim 3, characterized in that: A spring rod is connected to the middle of the slider (53), and oil tanks (7) are fixed to both sides of the slider (53); a sponge ring (72) is fixed to the bottom of the oil tank (7); the sponge ring (72) is fitted onto the reciprocating screw (5); a protrusion (71) is fixed to the side wall of the No. 8 slide groove (54).

6. The environmentally friendly multifunctional paper-faced gypsum board production device according to claim 1, characterized in that: The fan (21) has an extension plate (8) slidably connected to its side wall via a spring; the fan (21) has a No. 7 slide groove (82) on both the upper and lower sides; a connecting plate (81) is slidably connected inside the No. 7 slide groove (82); the end of the connecting plate (81) is fixed to the side wall of the extension plate (8).

7. The environmentally friendly multifunctional paper-faced gypsum board production device according to claim 1, characterized in that: The bottom of the third slide (22) is fixed with multiple sets of connecting blocks (102); the side wall of the connecting block (102) is rotatably connected with a third roller (101); the third roller (101) is in contact with the bottom of the push rod (23).

Citation Information

Patent Citations

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