A cooling and stacking device for artificial boards and a method of using the same
By designing the artificial plate cooling stacking device, the support plate movement is driven by rotating discs and electric telescopic rods, combined with the fan and air guide mechanism, the problem of poor cooling of the artificial plate is solved, and faster cooling time and higher efficiency are achieved.
Patent Information
- Application Number
- CN202310278368.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-21
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2043-03-21
AI Technical Summary
In the existing artificial board stacking device, multiple artificial boards are closely attached to each other, resulting in poor cooling, extending cooling time and reducing production efficiency.
A cooling stacking device for artificial plates is designed, using a horizontally arranged base and rotary disk to drive the electric telescopic rod to drive the support plate movement. Combined with the fan blower and air guide mechanism design, multiple artificial plates can be separated and uniformly cooled.
By distributing artificial boards, the cooling time is shortened, the cooling efficiency is improved, the production efficiency is improved, and the quality of artificial boards is improved.
Smart Images

Figure CN116280824B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of artificial board stacking, and in particular to an artificial board cooling stacking device and a use method thereof. Background Art
[0002] Artificial boards are made of wood or other non-wood plants as raw materials, separated into various unit materials through certain mechanical processing, and then glued together with or without adhesives and other additives. They mainly include three categories of products: plywood, particleboard (chipboard) and fiberboard, and there are hundreds of extended products and deep-processed products. The birth of artificial boards marks the beginning of the modernization of wood processing.
[0003] Chinese patent CN216583028U discloses a stacking device for artificial boards, including a bottom plate, a support frame fixedly connected to the top surface of the bottom plate, a slide rail 2 fixedly connected to both sides of the top of one side wall of the support frame, a slide rail 1 fixedly connected to both sides of the top surface of the bottom plate, and a receiving mechanism provided on one side of the support frame, wherein the receiving mechanism includes a flat plate. In the present invention, through the provision of the vertical plate and the guide plate, the electric push rod drives the vertical plate to tilt, the conveyor belt feeds the plate to the top of the elevator, and the plate moves to a right angle position where the previous plate contacts the vertical plate under the action of inertia, and the other end of the plate is separated from the transmission roller, and the other end of the plate falls and is restricted by the guide plate so as to be aligned to the middle, and the inclination of the vertical plate makes one end of the plate aligned with the vertical plate when falling for stacking, and the two sides of the plate are aligned to the middle piece through the guide plate, thereby realizing the aligned stacking of multiple plates.
[0004] However, the above scheme has the following disadvantages: multiple artificial boards are stacked closely together, which is not conducive to the cooling of the artificial boards, prolongs the cooling time, occupies a long time of the stacking device, and reduces the production efficiency. Summary of the invention
[0005] The present invention aims to provide a cooling and stacking device for artificial boards and a method of using the device, which overcomes the above-mentioned problems or at least partially solves the above-mentioned problems, so as to solve the problem that a plurality of artificial boards are stacked closely together, which is not conducive to the cooling of the artificial boards, prolongs the cooling time, occupies a long time of the stacking device, and reduces the production efficiency.
[0006] To achieve the above object, the technical solution of the present invention is specifically implemented as follows:
[0007] The present invention provides a cooling and stacking device for artificial boards, comprising a horizontally arranged base, wherein rollers are rotatably arranged at the four corners of the bottom surface of the base, a rotating disk and a driving mechanism are arranged on the top surface of the base, wherein the driving mechanism is used to drive the rotating disk to rotate relative to the base, an electric telescopic rod is vertically arranged on the top surface of the rotating disk, an installation box is arranged on the top of the electric telescopic rod, and a plurality of supporting plates are respectively arranged on both sides of the installation box, and the plurality of supporting plates located on the same side of the installation box are evenly spaced.
[0008] The support plate is provided with three ventilation slots, a fan is installed on the rear side of the installation box, and both sides of the installation box are provided with a first air outlet, multiple second air outlets and a third air outlet, the first air outlet is located on the top end of the side wall of the installation box, and the bottom end of the first air outlet is tilted downward, the second air outlet is located between two adjacent support plates, and the cross-section of the second air outlet is a conical structure, the third air outlet is located on the bottom end of the side wall of the installation box, and the top end of the third air outlet is tilted upward.
[0009] Preferably, an air guiding mechanism is provided on the bottom surface of the supporting plate, and the air guiding mechanism is used to guide the wind blown out from the second air outlet into the interior of the three ventilation slots at the same time.
[0010] Preferably, the air guide mechanism includes a first air guide member, a second air guide member and a third air guide member, the bottom ends of the first air guide member, the second air guide member and the third air guide member are all inclined toward the second air outlet, the heights of the bottom ends of the first air guide member, the second air guide member and the third air guide member decrease successively, and the first air guide member, the second air guide member and the third air guide member correspond to three ventilation slots respectively.
[0011] Preferably, the first air guide member, the second air guide member and the third air guide member have the same structure, the first air guide member includes an inclined section, a connecting section and a horizontal section, the top end of the inclined section is fixed on the bottom surface of the support plate, the bottom end of the inclined section is connected to the horizontal section through the connecting section, and the connecting section is an arc-shaped structure.
[0012] Preferably, support strips are provided in the grooves at both ends of the top surface of the support plate, an electromagnet is provided on the inner bottom surface of the groove, a support spring is provided between the bottom surface of the support strip and the inner bottom surface of the groove, and the support strip is made of iron material.
[0013] Preferably, the driving mechanism includes a motor and a gear, the motor is vertically mounted on the top surface of the base, the gear is mounted on the output shaft of the motor, a plurality of teeth are provided in the circumference of the rotating disk, the gear and the teeth are meshed with each other, a rotating shaft is provided at the bottom end of the rotating disk, and the rotating shaft is rotatably arranged in a rotating groove on the top surface of the base.
[0014] Preferably, an introduction piece is provided at the outer end of the support plate, and the introduction piece is used to guide the artificial board on the conveyor belt onto the support plate, a photoelectric transmitter is provided on the mounting frame of the conveyor belt, and a photoelectric receiver is provided on the outer end of the bottom surface of the support plate.
[0015] Preferably, it further comprises a control center, a counting module and a timing module, and the photoelectric transmitter, the photoelectric receiver, the motor, the electromagnet, the electric telescopic rod, the counting module and the timing module are all electrically connected to the control center.
[0016] In addition, the present invention also provides a method for using the artificial board cooling and stacking device, comprising the following steps:
[0017] S1: Start and extend the electric telescopic rod upward, and the top end of the electric telescopic rod drives multiple supporting plates to move upward simultaneously through the installation box;
[0018] S2: When the artificial board enters above the supporting plate, the electromagnet is turned off, and the top of the supporting spring drives the supporting strip to move upward to support the artificial board;
[0019] S3: starting the fan, the wind blown by the fan is blown to the air guide mechanism through a first air outlet, a plurality of second air outlets and a third air outlet, and the air guide mechanism guides the wind into three ventilation slots;
[0020] S4: Start the motor, the output shaft of the motor drives the gear to rotate 180 degrees, then turn off the motor, and the gear drives the rotating disk to rotate 180 degrees.
[0021] The present invention provides a cooling and stacking device for artificial panels and a method for using the same, which has the following beneficial effects:
[0022] 1. During use, when the electric telescopic rod is started and extended upward, the top of the electric telescopic rod drives the installation box to move upward, and the installation box drives multiple support plates to move upward at the same time to change the height position of the support plate. When it is necessary to import the artificial board onto the predetermined support plate, the staff adjusts the height of the support plate through the electric telescopic rod so that the support plate can smoothly catch the artificial board on the conveyor belt. Among them, multiple support plates are used to support multiple artificial boards respectively. Multiple artificial boards are placed separately, which is conducive to air flow around the artificial boards, which can shorten the cooling time of the artificial boards and improve the cooling efficiency;
[0023] 2. During use, the fan is started, and the fan blows air into the internal space of the installation box, and the air inside the installation box flows outward from a first air outlet, multiple second air outlets and a third air outlet at the same time, wherein the air flowing out from the first air outlet is blown to the top surface of the artificial board on the topmost supporting board, a part of the air blown out from the second air outlet flows into the three ventilation slots above it to blow to the bottom surface of the artificial board, and another part of the air blown out from the second air outlet is blown to the top surface of the artificial board below it. In addition, the air blown from the third air outlet is blown to the top surface of the artificial board on the supporting board at the lowest end, and the air on the top and bottom surfaces of all the artificial boards flows through the first air outlet, multiple second air outlets and a third air outlet, thereby shortening the cooling time of the artificial boards and improving the cooling efficiency. The artificial boards can also be cooled while being stacked, and the functions are diversified.
[0024] 3. During use, the upper wind blown out from the second air outlet enters the ventilation slot at the right end through the first air guide, the middle wind blown out from the second air outlet enters the middle ventilation slot through the second air guide, and the lower wind blown out from the second air outlet enters the ventilation slot at the left end through the third air guide, so that air flows into the insides of the three ventilation slots, so that the bottom surface of the artificial board is evenly blown by the wind, thereby improving the uniformity of cooling of the artificial board and improving the quality of the artificial board;
[0025] Fourth, when the artificial board enters the support plate and stabilizes, the electromagnet is turned off, the magnetism of the electromagnet disappears, and the supporting strip moves upward under the action of the supporting spring. The two supporting strips jointly support the artificial board upward, thereby forming a gap between the bottom surface of the artificial board and the top surface of the support plate, so that the air in the three ventilation slots can smoothly contact the bottom surface of the artificial board, increase the area of the bottom surface of the artificial board blown by the wind, and further improve the uniformity and efficiency of the cooling of the artificial board;
[0026] Fifth, during use, the staff can turn on and off the motor through the control center, and can also turn on and off the electromagnet through the control center, and control the length of the electric telescopic rod through the control center, so as to automatically control the operation, improve the operation efficiency and reduce the labor intensity. In the present invention, each time the motor rotates, the height of the electric telescopic rod extending upward each time is equal to the distance between two adjacent supporting plates. Through the alternating operation of the motor and the electric telescopic rod, multiple artificial boards on the conveyor belt can be sequentially introduced into multiple supporting plates, so that the device can stack and cool multiple artificial boards at the same time and improve the efficiency. In addition, there are a total of supporting plates in the device. After each artificial board is introduced, the counting module counts times. When the counting module is accumulated, the staff can remove the device from the conveyor belt. Finally, the staff can calculate the time required to import each artificial board according to the distance between the artificial boards in advance on the conveyor belt, so that the control center can regularly open and close the motor and the electric telescopic rod through the timing module, realize fully automated operation, and improve the operation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other accompanying drawings can be obtained based on these accompanying drawings without paying creative work.
[0028] Figure 1 It is a stereogram of an embodiment of the present invention.
[0029] Figure 2 It is a front view of an embodiment of the present invention.
[0030] Figure 3 It is a main cross-sectional view of an embodiment of the present invention.
[0031] Figure 4 It is a three-dimensional diagram of the position of the supporting plate in an embodiment of the present invention.
[0032] Figure 5 It is a three-dimensional view (from another perspective) of the position of the supporting plate in an embodiment of the present invention.
[0033] Figure 6 It is a main cross-sectional view at the position of the supporting plate in an embodiment of the present invention.
[0034] Figure 7 It is an enlarged view of the position of the supporting strip in the embodiment of the present invention.
[0035] Figure 8 It is an enlarged view of the location of the ventilation slot in the embodiment of the present invention.
[0036] Fig. 9 It is a block diagram in an embodiment of the present invention. DETAILED DESCRIPTION
[0037] The exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although the exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.
[0038] See also Figure 1-3 An embodiment of the present invention provides a cooling and stacking device for artificial boards, comprising a horizontally arranged base 1, wherein rollers are rotatably arranged at the four corners of the bottom surface of the base 1, a rotating disk 2 and a driving mechanism are arranged on the top surface of the base 1, and the driving mechanism is used to drive the rotating disk 2 to rotate relative to the base 1. Specifically, the driving mechanism comprises a motor 21 and a gear 22, wherein the motor 21 is vertically mounted on the top surface of the base 1, and the gear 22 is mounted on the output shaft of the motor 21. A plurality of teeth are arranged in the circumference of the rotating disk 2, and the gear 22 and the teeth are meshed with each other. A rotating shaft 23 is arranged at the bottom end of the rotating disk 2, and the rotating shaft 23 is rotatably arranged in a rotating groove on the top surface of the base 1.
[0039] During use, the staff pushes the base 1, and the base 1 moves under the action of the rolling of the rollers. When the base 1 is moved to a position below the right end of the conveyor belt 6, the staff stops pushing the base 1. The staff starts the motor 21, and the output shaft of the motor 21 drives the gear 22 to rotate. The gear 22 drives the rotating disk 2 to rotate under the action of mutual meshing with the teeth. The rotating disk 2 drives the installation box 4 to rotate a predetermined angle through the electric telescopic rod 3, and the installation box 4 drives the supporting plate 5 to rotate a predetermined angle, wherein the rotating shaft 23 rotates in the rotating groove, and the bottom surface of the rotating disk 2 is provided with a plurality of balls, which roll on the top surface of the base 1, and the balls are used to assist in supporting the rotating disk 2 and improve the stability of the rotating disk 2 during rotation.
[0040] See also Figure 1-3 An electric telescopic rod 3 is vertically provided on the top surface of the rotating disk 2, and a mounting box 4 is provided on the top of the electric telescopic rod 3. A plurality of supporting plates 5 are respectively provided on both sides of the mounting box 4, and the plurality of supporting plates 5 located on the same side of the mounting box 4 are distributed at equal intervals.
[0041] During use, when the electric telescopic rod 3 is started and extended upward, the top of the electric telescopic rod 3 drives the installation box 4 to move upward, and the installation box 4 drives the multiple supporting plates 5 to move upward at the same time to change the height position of the supporting plates 5. When it is necessary to introduce the artificial board onto the predetermined supporting plate 5, the staff adjusts the height of the supporting plate 5 through the electric telescopic rod 3 so that the supporting plate 5 can smoothly catch the artificial board on the conveyor belt 6. Among them, the multiple supporting plates 5 are used to support the multiple artificial boards respectively. The multiple artificial boards are placed separately, which is conducive to the air flow around the artificial boards, which can shorten the cooling time of the artificial boards and improve the cooling efficiency.
[0042] See also Figure 2-6 , three ventilation slots 51 are provided on the supporting plate 5, a fan is installed on the rear side of the installation box 4, and a first air outlet 41, multiple second air outlets 42 and a third air outlet 41 are provided on both sides of the installation box 4, the first air outlet 41 is located on the top of the side wall of the installation box 4, the bottom end of the first air outlet 41 is tilted downward, the second air outlet 42 is located between two adjacent supporting plates 5, the cross-section of the second air outlet 42 is a conical structure, the third air outlet 41 is located on the bottom of the side wall of the installation box 4, and the top end of the third air outlet 41 is tilted upward.
[0043] During use, the fan is started, and the fan blows air into the internal space of the installation box 4. The air inside the installation box 4 flows outward from a first air outlet 41, multiple second air outlets 42 and a third air outlet 41 at the same time, wherein the air flowing out from the first air outlet 41 is blown to the top surface of the artificial board on the topmost supporting plate 5, a part of the air blown out from the second air outlet 42 flows into the three ventilation slots 51 above it to blow to the bottom surface of the artificial board, and another part of the air blown out from the second air outlet 42 is blown to the top surface of the artificial board below it. In addition, the air blown from the third air outlet 41 is blown to the top surface of the artificial board on the lowest supporting plate 5, and the air on the top and bottom surfaces of all the artificial boards flows through a first air outlet 41, multiple second air outlets 42 and a third air outlet 41, thereby shortening the cooling time of the artificial boards and improving the cooling efficiency. The artificial boards can be cooled while being stacked, and the functions are diversified.
[0044] See also Figure 5-7, an air guide mechanism is provided on the bottom surface of the supporting plate 5, and the air guide mechanism is used to guide the wind blown out from the second air outlet 42 into the inside of the three ventilation slots 51 at the same time. Specifically, the air guide mechanism includes a first air guide 521, a second air guide 522 and a third air guide 523, the bottom ends of the first air guide 521, the second air guide 522 and the third air guide 523 are all tilted toward the second air outlet 42, the bottom ends of the first air guide 521, the second air guide 522 and the third air guide 523 are successively lowered, and the first air guide 521, the second air guide 522 and the third air guide 523 are respectively distributed corresponding to the three ventilation slots 51.
[0045] During use, the upper wind blown out from the second air outlet 42 enters into the ventilation slot 51 at the right end through the first air guide 521, the middle wind blown out from the second air outlet 42 enters into the middle ventilation slot 51 through the second air guide 522, and the lower wind blown out from the second air outlet 42 enters into the ventilation slot 51 at the left end through the third air guide 523, so that air flows into the insides of the three ventilation slots 51, so that the bottom surface of the artificial board is evenly blown by the wind, thereby improving the uniformity of cooling of the artificial board and improving the quality of the artificial board.
[0046] See also Figure 8 The first air guide member 521, the second air guide member 522 and the third air guide member 523 have the same structure. The first air guide member 521 includes an inclined section 71, a connecting section 72 and a horizontal section 73. The top end of the inclined section 71 is fixed on the bottom surface of the supporting plate 5, and the bottom end of the inclined section 71 is connected to the horizontal section 73 through the connecting section 72. The connecting section 72 is an arc-shaped structure.
[0047] In this device, the bottom surface of the support plate 5 fixes the top of the inclined section 71, the inclined section 71 fixes and supports the connecting section 72, and the connecting section 72 fixes and supports the horizontal section 73. During use, the flowing air first flows into the upper position of the horizontal section 73, and then under the effect of the connecting section 72 of the arc structure, the air flows into the inner side of the inclined section 71, and finally, the air is introduced into the inside of the ventilation slot 51 and blows toward the bottom surface of the artificial board. Wherein, the height of the horizontal section 73 on the first air guide 521, the second air guide 522 and the third air guide 523 is successively reduced, so that a height difference gap is formed between the three horizontal sections 73, and the air flows from the height difference gap to the ventilation slot 51 to improve the uniformity of cooling of the artificial board.
[0048] See also Figure 6 , 7 A support strip 553 is provided in the grooves at both ends of the top surface of the supporting plate 5, an electromagnet 551 is provided on the inner bottom surface of the groove, a support spring 552 is provided between the bottom surface of the support strip 553 and the inner bottom surface of the groove, and the support strip 553 is made of iron material.
[0049] In the present device, the support strips 553 are distributed along the front-to-back direction of the supporting plate 5, and the two support strips 553 are distributed parallel to each other. Before the artificial board enters the supporting plate 5, the electromagnet 551 is in an open state, and the electromagnet 551 generates magnetism to adsorb the support strips 553, so that the support strips 553 are adsorbed downward and enter the groove, so that the top surface of the support strips 553 is lower than the top surface of the supporting plate 5, so as to facilitate the artificial board to enter the supporting plate 5; when the artificial board enters the supporting plate 5 and stabilizes, the electromagnet 551 is turned off, the magnetism of the electromagnet 551 disappears, and the support strips 553 move upward under the action of the support spring 552, and the two support strips 553 jointly support the artificial board upward, thereby forming a gap between the bottom surface of the artificial board and the top surface of the supporting plate 5, so that the air in the three ventilation slots 51 can smoothly contact the bottom surface of the artificial board, increase the area of the bottom surface of the artificial board blown by the wind, and further improve the uniformity and efficiency of the cooling of the artificial board.
[0050] See also Figure 1 , 6 7. The outer end of the support plate 5 is provided with an introduction member 54, which is used to introduce the artificial board on the conveyor belt 6 onto the support plate 5. The mounting frame of the conveyor belt 6 is provided with a photoelectric transmitter, and the outer end of the bottom surface of the support plate 5 is provided with a photoelectric receiver 53. Fig. 9 , also includes a control center, a counting module and a timing module, and the photoelectric transmitter, the photoelectric receiver 53, the motor 21, the electromagnet 551, the electric telescopic rod 3, the counting module, and the timing module are all electrically connected to the control center.
[0051] In this device, the top surface of the introduction member 54 is an arc surface, which is conducive to introducing the artificial board on the conveyor belt 6 into the supporting plate 5. When a certain photoelectric receiver 53 receives the signal of the photoelectric transmitter, it means that the supporting plate 5 corresponding to the photoelectric receiver 53 and the right end of the conveyor belt 6 are docked, so that the artificial board can be smoothly introduced into the supporting plate 5. In use, the staff can turn on and off the motor 21 through the control center, and can also turn on and off the electromagnet 551 through the control center, and control the length of the electric telescopic rod 3 through the control center, and the automatic control operation can improve the operation efficiency and reduce the labor intensity. In the present invention, the motor 21 rotates 180 degrees each time, and the height of the electric telescopic rod 3 extending upward each time is equal to the distance between two adjacent supporting plates 5. Through the alternating operation of the motor 21 and the electric telescopic rod 3, multiple artificial boards on the conveyor belt 6 can be introduced into multiple supporting plates 5 in sequence, respectively, so that the device can stack and cool multiple artificial boards at the same time and improve efficiency. In addition, there are a total of 10 supporting plates 5 in the device. Each time a man-made board is introduced, the count of the counting module increases by 1. When the count of the counting module reaches 10, the staff can move the device away from the conveyor belt 6. Finally, the staff can calculate the time required to introduce each man-made board according to the distance between the man-made boards on the conveyor belt 6, so that the control center can turn on and off the motor 21 and the electric telescopic rod 3 at a fixed time through the timing module, so as to realize fully automated operation and improve operation efficiency.
[0052] In addition, the present invention also provides a method for using the artificial board cooling and stacking device, comprising the following steps:
[0053] S1: Start and extend the electric telescopic rod 3 upward, the top of the electric telescopic rod 3 drives multiple supporting plates 5 to move upward at the same time through the installation box 4, and when the predetermined supporting plate 5 moves to the same height as the conveyor belt 6, the electric telescopic rod 3 is stopped to facilitate the smooth entry of the artificial board on the conveyor belt 6 onto the supporting plate 5;
[0054] S2: When the artificial board enters above the supporting plate 5, the electromagnet 551 is turned off, and the top of the supporting spring 552 drives the supporting strip 553 to move upward to support the artificial board, so that a gap is formed between the bottom surface of the artificial board and the top surface of the supporting plate 5;
[0055] S3: The fan is started, and the wind blown by the fan is blown to the air guide mechanism through a first air outlet 41, a plurality of second air outlets 42 and a third air outlet 41, and the air guide mechanism guides the wind into three ventilation slots 51;
[0056] S4: Start the motor, the output shaft of the motor drives the gear 22 to rotate 180 degrees and then turns off the motor, the gear 22 drives the rotating disk 2 to rotate 180 degrees, and the rotating disk 2 drives the supporting plate 5 to rotate 180 degrees through the electric telescopic rod 3 and the installation box 4 to guide the artificial board behind the conveyor belt 6 to the supporting plate 5 on the other side of the installation box 4.
[0057] The above are only embodiments of the present application and are not intended to limit the present application. For those skilled in the art, the present application may have various changes and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included within the scope of the claims of the present application.
Claims
1. A cooling and stacking device for artificial boards, comprising a horizontally arranged base (1), wherein rollers are rotatably arranged at four corners of the bottom surface of the base (1), characterized in that: A rotating disk (2) and a driving mechanism are provided on the top surface of the base (1), the driving mechanism being used to drive the rotating disk (2) to rotate relative to the base (1), an electric telescopic rod (3) is vertically provided on the top surface of the rotating disk (2), a mounting box (4) is provided on the top end of the electric telescopic rod (3), a plurality of supporting plates (5) are respectively provided on both sides of the mounting box (4), and the plurality of supporting plates (5) located on the same side of the mounting box (4) are distributed at equal intervals; The support plate (5) is provided with three ventilation slots (51), a fan is installed on the rear side of the installation box (4), and both sides of the installation box (4) are provided with a first air outlet (41), a plurality of second air outlets (42) and a third air outlet, the first air outlet (41) is located on the top of the side wall of the installation box (4), the bottom end of the first air outlet (41) is tilted downward, the second air outlet (42) is located between two adjacent support plates (5), the cross section of the second air outlet (42) is a conical structure, the third air outlet is located on the bottom of the side wall of the installation box (4), and the top end of the third air outlet is tilted upward; An air guide mechanism is provided on the bottom surface of the support plate (5), and the air guide mechanism is used to guide the air blown out from the second air outlet (42) into the interior of the three ventilation slots (51) at the same time; The air guide mechanism comprises a first air guide member (521), a second air guide member (522) and a third air guide member (523); the bottom ends of the first air guide member (521), the second air guide member (522) and the third air guide member (523) are all inclined toward the second air outlet (42); the bottom ends of the first air guide member (521), the second air guide member (522) and the third air guide member (523) are successively lowered in height; the first air guide member (521), the second air guide member (522) and the third air guide member (523) are respectively distributed corresponding to the three ventilation slots (51); The first air guide member (521), the second air guide member (522) and the third air guide member (523) have the same structure. The first air guide member (521) comprises an inclined section (71), a connecting section (72) and a horizontal section (73). The top end of the inclined section (71) is fixed on the bottom surface of the supporting plate (5). The bottom end of the inclined section (71) is connected to the horizontal section (73) via the connecting section (72). The connecting section (72) is an arc-shaped structure. Support strips (553) are provided in the grooves at both ends of the top surface of the support plate (5), an electromagnet (551) is provided on the inner bottom surface of the groove, a support spring (552) is provided between the bottom surface of the support strip (553) and the inner bottom surface of the groove, and the support strip (553) is made of iron material; The support strips (553) are distributed along the front-rear direction of the support plate (5), and the two support strips (553) are distributed parallel to each other. Before the artificial board enters the support plate (5), the electromagnet (551) is in an on state, and the electromagnet (551) generates magnetism to adsorb the support strips (553), so that the support strips (553) are adsorbed downward and enter the groove, so that the top surface of the support strips (553) is lower than the top surface of the support plate (5), which is conducive to the artificial board entering the support plate (5). 5); when the artificial board enters onto the supporting plate (5), the electromagnet (551) is turned off, the magnetism of the electromagnet (551) disappears, the supporting strip (553) moves upward under the action of the supporting spring (552), and the two supporting strips (553) jointly support the artificial board upward, thereby forming a gap between the bottom surface of the artificial board and the top surface of the supporting plate (5), so that the air in the three ventilation slots (51) can smoothly contact the bottom surface of the artificial board, thereby increasing the area of the bottom surface of the artificial board blown by the wind.
2. The artificial board cooling and stacking device according to claim 1, characterized in that: The driving mechanism comprises a motor (21) and a gear (22); the motor (21) is vertically mounted on the top surface of the base (1); the gear (22) is mounted on the output shaft of the motor (21); a plurality of teeth are provided in the circumferential direction of the rotating disk (2); the gear (22) and the teeth are meshed with each other; a rotating shaft (23) is provided at the bottom end of the rotating disk (2); and the rotating shaft (23) is rotatably arranged in a rotating groove on the top surface of the base (1).
3. The artificial board cooling and stacking device according to claim 2, characterized in that: The outer end of the support plate (5) is provided with an introduction piece (54), and the introduction piece (54) is used to introduce the artificial board on the conveyor belt (6) onto the support plate (5). The mounting frame of the conveyor belt (6) is provided with a photoelectric transmitter, and the outer end of the bottom surface of the support plate (5) is provided with a photoelectric receiver (53).
4. The artificial board cooling and stacking device according to claim 3, characterized in that: It also includes a control center, a counting module and a timing module, and the photoelectric transmitter, the photoelectric receiver (53), the motor (21), the electromagnet (551), the electric telescopic rod (3), the counting module and the timing module are all electrically connected to the control center.
5. A method for using the artificial board cooling and stacking device according to claim 4, characterized in that: The steps include: S1: starting and extending the electric telescopic rod (3) upward, wherein the top end of the electric telescopic rod (3) drives a plurality of supporting plates (5) to move upward simultaneously through the mounting box (4); S2: When the artificial board enters above the supporting plate (5), the electromagnet (551) is turned off, and the top end of the supporting spring (552) drives the supporting strip (553) to move upward to support the artificial board; S3: starting the fan, the wind blown by the fan is blown to the wind guide mechanism through a first air outlet (41), a plurality of second air outlets (42) and a third air outlet, and the wind guide mechanism guides the wind into three ventilation slots (51); S4: starting the motor, the output shaft of the motor drives the gear (22) to rotate 180 degrees, and then turning off the motor, and the gear (22) drives the rotating disk (2) to rotate 180 degrees.
Citation Information
Patent Citations
Artificial board stacking device
CN216583028U
Tempered glass cooling device with good heat dissipation effect
CN209685588U
Plate cooling frame
CN216481773U