A laminated wood natural drying protection device

By designing a stacked wood natural drying and protection device, multiple groups of wood can be dried and folded at the same angle, solving the problems of low drying efficiency and insufficient protection. This improves wood drying efficiency and reduces the floor space required, while providing effective protection in inclement weather or at night.

CN116592593BActive Publication Date: 2026-02-03LANDIS JIANGSU FEIYA WOOD CO LTD
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Patent Information

Application Number
CN202310582478.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-23
Publication Date
2026-02-03
Estimated Expiration
2043-05-23

AI Technical Summary

Technical Problem

Existing wood drying methods suffer from drawbacks such as low drying efficiency, large footprint, and inability to provide timely protection, especially in severe weather or at night when wood cannot be effectively protected.

Method used

Design a stacked wood natural drying protection device, which uses telescopic components and flipping control components to enable multiple groups of wood to be dried at the same time, and to provide protection by flipping and folding at an angle in inclement weather or at night.

Benefits of technology

It improves timber drying efficiency, reduces floor space requirements, and provides effective protection for timber during sudden severe weather or at night.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of stacked wood natural drying protection devices, the side of the bottom plate is equipped with protection sheltering component, one end of the limiting plate is connected with the inner side wall of protection sheltering component, drive assembly is equipped on one end of the limiting plate, telescopic assembly is connected on the upper wall of the limiting plate, the lower end of the limiting plate is equipped with turnover control component, drive assembly is connected with telescopic assembly and turnover control component respectively, the telescopic assembly is movably connected with airing assembly, the lower end of the airing assembly is arranged in the turnover control component by penetrating the clamping groove, the airing assembly is equipped with multiple groups, and is arranged on telescopic assembly respectively.The application belongs to the technical field of wood processing, especially relates to a kind of stacked wood natural drying protection devices, which achieves the technical effect of simultaneously airing and air-drying multiple groups of wood in space, and when severe weather or night occurs, the wood can be folded, the angle can be turned over and folded, and the wood can be protected.
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Description

Technical Field

[0001] This invention belongs to the field of wood processing technology, and in particular relates to a composite wood natural drying protection device. Background Technology

[0002] Wood is the lignified tissue formed by plants capable of secondary growth, such as trees and shrubs. After the primary growth of these plants ends, the vascular cambium in the rootstock becomes active, developing phloem outwards and wood inwards. Depending on their different properties, wood is used for various purposes. Because wooden furniture is exquisitely crafted and has a good decorative effect, it is widely popular, thus requiring a large amount of wood for processing. However, wood needs to be dried before processing.

[0003] Currently, the existing methods for drying wood are mostly heating drying and natural air drying. Among them, heating drying is prone to causing significant deformation of wood and poor drying quality. Natural air drying has low drying efficiency, requires a large area, and some woods require a long time to air dry. It is also difficult to protect the wood in a timely and effective manner at night, and it is not possible to protect the wood in time when encountering sudden severe weather. Summary of the Invention

[0004] In view of the above situation and to overcome the defects of the prior art, the present invention provides a stacked wood natural drying and protection device, which realizes the technical effect of drying multiple groups of wood at the same time in space. At the same time, when encountering severe weather or at night and the wood needs to be gathered up, it can realize the angle flipping and folding to protect the wood.

[0005] The technical solution adopted in this invention is as follows: A composite wood natural drying and protection device includes a base plate, on which a support clip is provided. The base plate supports and fixes the support clip. A limiting plate is connected to the support clip. A slot is provided in the limiting plate. A protective shielding component is provided on the side of the base plate. One end of the limiting plate is connected to the inner wall of the protective shielding component. A driving component is provided on one end of the limiting plate. The driving component is located inside the protective shielding component. A telescopic component is connected to the upper wall of the limiting plate. A flip-adjustment component is provided at the lower end of the limiting plate. The flip-adjustment component is located between the limiting plate and the base plate. The driving component is connected to the telescopic component and the flip-adjustment component respectively. A drying component is movably connected to the telescopic component. The lower end of the drying component passes through the slot and is located inside the flip-adjustment component. Multiple drying components are provided, each located on the telescopic component. The driving component can drive the telescopic component to stretch or compress. The telescopic component drives the drying component to slide along the slot and the flip-adjustment component. The flip-adjustment component can drive the drying component to flip and adjust its angle.

[0006] Furthermore, the driving assembly includes an upper fixed frame and a lower fixed frame. The upper fixed frame is disposed on the upper wall of the limiting plate, and the lower fixed frame is disposed on the bottom wall of the limiting plate. The lower fixed frame is disposed on the bottom wall of the protective shielding assembly. The limiting plate and the protective shielding assembly support and fix the upper fixed frame and the lower fixed frame. A motor 1 is disposed in the upper fixed frame, and a motor 2 is disposed in the lower fixed frame. Both motor 1 and motor 2 are dual-rotation motors. The upper fixed frame supports and fixes motor 1, and the lower fixed frame supports and fixes motor 2. Motor 1 is connected to the telescopic assembly, and motor 2 is connected to the flipping control assembly.

[0007] In a preferred embodiment of the present invention, the telescopic assembly includes a first driving hinge, a second driving hinge, a third driving hinge, a fourth driving hinge, a fifth driving hinge, a first follower hinge, a second follower hinge, a third follower hinge, a fourth follower hinge, a fifth follower hinge, and a sliding block. The first driving rod is movably mounted on one end of the limiting plate. The output shaft end of the first motor is connected to the first driving rod. One end of the first driving hinge is fixedly connected to the first driving rod. One end of the first follower hinge is movably connected to the first driving rod. The first follower hinge is located at the lower end of the first driving hinge.

[0008] The middle position of the driving hinge 2 is movably connected to the middle position of the follower hinge 2. The driving hinge 2 is located at the lower end of the follower hinge 2. One end of the driving hinge 2 is movably connected to the other end of the driving hinge 1. One end of the follower hinge 2 is movably connected to the other end of the follower hinge 1.

[0009] The middle position of the driving hinge three is movably connected to the middle position of the follower hinge three. The driving hinge three is located at the upper end of the follower hinge three. One end of the driving hinge three is movably connected to the other end of the driving hinge two. One end of the follower hinge three is movably connected to the other end of the follower hinge two.

[0010] The middle position of the driving hinge four is movably connected to the middle position of the follower hinge four. The driving hinge four is located at the lower end of the follower hinge four. One end of the driving hinge four is movably connected to the other end of the driving hinge three. One end of the follower hinge four is movably connected to the other end of the follower hinge three.

[0011] The sliding block is movably engaged in the slot. One end of the driving hinge five is movably connected to the other end of the driving hinge four. One end of the following hinge five is movably connected to the other end of the following hinge four. The other end of the driving hinge five is movably connected to the sliding block. The other end of the following hinge five is movably connected to the sliding block. The driving hinge five is located at the upper end of the following hinge five.

[0012] The flip control assembly includes a second drive rod, a first actuating component, a flip plate, a connecting limit rod, another actuating component, and a fixed rod. The second drive rod is movably mounted on one end of the bottom wall of the limit plate, and the movable end of the second motor is connected to the second drive rod. The fixed rod is movably mounted on the other end of the bottom wall of the limit plate. The limit plate supports the second drive rod and the fixed rod. Both the first and second actuating components are V-shaped. The center of the first actuating component is located on the second drive rod, and the center of the second actuating component is located on the fixed rod. One end of the connecting limit rod is movably connected to one end of the first actuating component, and the other end of the connecting limit rod is movably connected to one end of the second actuating component. One end of the flip plate is movably connected to the other end of the first actuating component, and the other end of the flip plate is movably connected to the other end of the second actuating component.

[0013] When motor 2 is working, it drives drive rod 2 to rotate. Drive rod 2 drives toggle component 1 to rotate. Toggle component 1 pushes the connecting limit rod to move. The connecting limit rod pushes toggle component 2 to rotate. Toggle component 1 and toggle component 2 simultaneously drive the flip plate to make a fan-shaped movement.

[0014] Furthermore, the flip plate is provided with a flipping groove.

[0015] The drying assembly includes a drying board with drying rods on both opposite side walls. These rods support the wood to be dried. Several groups of ventilation holes are provided on each drying rod, passing through it. A connecting rod is located in the middle of the bottom wall of the drying board, passing through a telescopic assembly and a slot. The connecting rod is movably connected to the telescopic assembly and the slot. A toggle rod is connected to the connecting rod, positioned between a limiting plate and a flipping plate. An insert rod is connected to the toggle rod, which is movably engaged in a flipping groove. When the flipping plate performs a fan-shaped movement, it drives the insert rod to perform a fan-shaped movement, which in turn drives the toggle rod to rotate. The toggle rod then rotates the connecting rod, causing the drying board to rotate, changing its orientation from vertical inward to horizontal, or vice versa.

[0016] Furthermore, the length of the insert rod is the same as the length from the center of the first actuating element to the point where the first actuating element is connected to the flip plate, and the length of the insert rod is the same as the length from the center of the second actuating element to the point where the second actuating element is connected to the flip plate.

[0017] Preferably, the protective shielding assembly includes a protective shielding member, which is a hollow cavity structure with an opening on one side. One end of the limiting plate is disposed inside the protective shielding member and connected to the inner sidewall of the protective shielding member. The upper wall of the protective shielding member is provided with a protective member, which is a hollow cavity structure with an opening on one side.

[0018] Furthermore, the protective component is provided with a hydraulic rod, and the opening of the protective shield is provided with a slot. A frame-shaped component is movably connected in the slot. One end of the frame-shaped component is located in the slot, and the other end of the frame-shaped component is located outside the protective shield. A retaining element is provided on the upper wall of the frame-shaped component. The movable end of the hydraulic rod is connected to the retaining element. When the hydraulic rod works, it pushes the retaining element to move, and the retaining element causes the frame-shaped component to extend out of the protective shield.

[0019] The bottom wall of the slot is provided with a limiting groove, and the bottom wall of the frame component is provided with a ball bearing. The ball bearing is movably engaged in the limiting groove, and the ball bearing facilitates the movement of the frame component along the slot.

[0020] The beneficial effects of the present invention after adopting the above structure are as follows:

[0021] (1) The telescopic component is set up in the vertical space, with multiple drying rods, which makes it convenient to dry multiple groups of wood at the same time, solving the problem that the existing natural wind drying method has low drying efficiency and large area.

[0022] (2) The protective shielding components can be set up to protect the wood by flipping and folding the angle when encountering severe weather or at night. Attached Figure Description

[0023] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0024] Figure 1 This is a schematic diagram of the structure of the stacked wood natural drying protection device proposed in this invention when it is folded up;

[0025] Figure 2 This is a top view of a stacked wood natural drying and protection device proposed in this invention when it is folded up.

[0026] Figure 3 This is a schematic diagram of the structure of the telescopic component of a composite wood natural drying protection device proposed in this invention;

[0027] Figure 4 This is a schematic diagram of the drive assembly of a composite wood natural drying and protection device proposed in this invention;

[0028] Figure 5 This is a schematic diagram of the flipping control component of a composite wood natural drying protection device proposed in this invention;

[0029] Figure 6 This is an axonometric view of the flipping control component of a composite wood natural drying protection device proposed in this invention;

[0030] Figure 7 This is a schematic diagram of the drying component of a composite wood natural drying and protection device proposed in this invention;

[0031] Figure 8 This is a cross-sectional view of a composite wood natural drying protection device proposed in this invention;

[0032] Figure 9 This is a front view of the protective shielding component of a composite wood natural drying protection device proposed in this invention;

[0033] Figure 10 for Figure 9 A magnified view of a portion at point A;

[0034] Figure 11 for Figure 7 A magnified view of a portion at point B;

[0035] Figure 12 This is a diagram showing the unfolded state of a composite wood natural drying and protection device proposed in this invention during the drying process.

[0036] Figure 13 This is a bottom-view axonometric view of the overlapping wood natural drying and protection device proposed in this invention during the drying process.

[0037] In the attached diagram: 1. Base plate; 2. Support clip; 3. Limiting plate; 4. Slot; 5. Protective shielding assembly; 6. Drive assembly; 7. Telescopic assembly; 8. Tilting and adjusting assembly; 9. Drying assembly; 10. Upper fixed frame; 11. Lower fixed frame; 12. Motor 1; 13. Motor 2; 14. Drive hinge 1; 15. Drive hinge 2; 16. Drive hinge 3; 17. Drive hinge 4; 18. Drive hinge 5; 19. Follower hinge 1; 20. Follower hinge 2; 21. Follower hinge 3; 22. Follower... 23. Hinge 4, 24. Follow-up Hinge 5, 25. Sliding Block, 26. Drive Rod 2, 27. Actuating Component 1, 28. Flipping Plate, 29. Connecting Limiting Rod, 30. Actuating Component 2, 31. Fixing Rod, 32. Flipping Slide, 33. Drying Plate, 34. Drying Rod, 35. Ventilation Hole, 36. Connecting Rod, 37. Actuating Rod, 38. Insert Rod, 39. Protective Covering Component, 40. Protective Component, 41. Hydraulic Rod, 42. Slot Hole, 43. Frame-shaped Component, 44. Clip, 45. Limiting Slot, 46. Ball Bearing, 47. Drive Rod 1. Detailed Implementation

[0038] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0039] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0040] like Figures 1-13 As shown, a stacked wood natural drying protection device includes a base plate 1, a support clip 2 on the base plate 1, the base plate 1 supporting and fixing the support clip 2, a limiting plate 3 connected to the support clip 2, a slot 4 inside the limiting plate 3, a protective shielding component 5 on the side of the base plate 1, one end of the limiting plate 3 connected to the inner wall of the protective shielding component 5, a driving component 6 on one end of the limiting plate 3 located inside the protective shielding component 5, a telescopic component 7 connected to the upper wall of the limiting plate 3, and a flipping adjustment component 8 at the lower end of the limiting plate 3. The flip control component 8 is located between the limiting plate 3 and the base plate 1. The drive component 6 is connected to the telescopic component 7 and the flip control component 8 respectively. The drying component 9 is movably connected to the telescopic component 7. The lower end of the drying component 9 passes through the slot 4 and is located in the flip control component 8. There are multiple sets of drying components 9, which are respectively located on the telescopic component 7. The drive component 6 can drive the telescopic component 7 to stretch or compress. The telescopic component 7 drives the drying component 9 to slide along the slot 4 and the flip control component 8. The flip control component 8 can drive the drying component 9 to flip and adjust its angle.

[0041] The drive assembly 6 includes an upper fixed frame 10 and a lower fixed frame 11. The upper fixed frame 10 is located on the upper wall of the limiting plate 3, and the lower fixed frame 11 is located on the bottom wall of the limiting plate 3. The lower fixed frame 11 is located on the bottom wall of the protective shielding assembly 5. The limiting plate 3 and the protective shielding assembly 5 support and fix the upper fixed frame 10 and the lower fixed frame 11. The upper fixed frame 10 contains a motor 12, and the lower fixed frame 11 contains a motor 13. Both motor 12 and motor 13 are dual-rotation motors. The upper fixed frame 10 supports and fixes motor 12, and the lower fixed frame 11 supports and fixes motor 13. Motor 12 is connected to the telescopic assembly 7, and motor 13 is connected to the flipping control assembly 8.

[0042] The telescopic assembly 7 includes a drive rod 46, a drive hinge 14, a drive hinge 2 15, a drive hinge 3 16, a drive hinge 4 17, a drive hinge 5 18, a follower hinge 19, a follower hinge 20, a follower hinge 3 21, a follower hinge 4 22, a follower hinge 5 23, and a sliding block 24. The drive rod 46 is movably mounted on one end of the limiting plate 3. The output shaft of the motor 12 is connected to the drive rod 46. One end of the drive hinge 14 is fixedly connected to the drive rod 46. One end of the moving hinge 19 is movably connected to the drive rod 46, and the following hinge 19 is located at the lower end of the drive hinge 14; the middle position of the drive hinge 15 is movably connected to the middle position of the following hinge 20, and the drive hinge 15 is located at the lower end of the following hinge 20. One end of the drive hinge 15 is movably connected to the other end of the drive hinge 14, and one end of the following hinge 20 is movably connected to the other end of the following hinge 19; the middle position of the drive hinge 16 is connected to the following hinge... The middle position of component 3 21 is movably connected to the drive hinge component 3 16, which is located at the upper end of the follower hinge component 3 21. One end of the drive hinge component 3 16 is movably connected to the other end of the drive hinge component 2 15, and one end of the follower hinge component 3 21 is movably connected to the other end of the follower hinge component 2 20. The middle position of the drive hinge component 4 17 is movably connected to the middle position of the follower hinge component 4 22, which is located at the lower end of the follower hinge component 4 22. One end of the drive hinge component 4 17 is movably connected to the other end of the drive hinge component 3 16. The connection is as follows: one end of the follower hinge 4 22 is movably connected to the other end of the follower hinge 3 21; the sliding block 24 is movably engaged in the slot 4; one end of the drive hinge 5 18 is movably connected to the other end of the drive hinge 4 17; one end of the follower hinge 5 23 is movably connected to the other end of the follower hinge 4 22; the other end of the drive hinge 5 18 is movably connected to the sliding block 24; the other end of the follower hinge 5 23 is movably connected to the sliding block 24; and the drive hinge 5 18 is located at the upper end of the follower hinge 5 23.If the telescopic assembly 7 is in a compressed state and needs to be unfolded, motor 12 drives drive rod 46 to rotate clockwise. Drive rod 46 drives drive hinge 14 to rotate clockwise. The other end of drive hinge 14 drives drive hinge 2 15 to rotate counterclockwise around its center position. At the same time, drive hinge 14 unfolds along the limiting plate 3. Drive hinge 2 15 drives drive hinge 3 16 to rotate clockwise around its center position. At the same time, drive hinge 2 15 unfolds along the limiting plate 3. Drive hinge 3 16 drives drive hinge 4 1... 7 rotates counterclockwise around the center, while simultaneously driving hinge 3 16 to unfold along the limiting plate 3, driving hinge 4 17 to drive hinge 5 18 to rotate clockwise, while simultaneously driving hinge 5 18 to unfold along the limiting plate 3, sliding block 24 slides along slot 4, sliding block 24 drives follower hinge 5 23, follower hinge 4 22, follower hinge 3 21, follower hinge 2 20 and follower hinge 1 19 to unfold in sequence, telescopic component 7 is in a stretched state, driving the drying component 9 at its upper end to stretch and unfold, and the distance between each set of drying components 9 increases; If the telescopic component 7 is in a stretched state and compression is required, motor 12 drives drive rod 46 to rotate counterclockwise. Drive rod 46 drives drive hinge 14 to rotate counterclockwise. The other end of drive hinge 14 drives drive hinge 2 15 to rotate clockwise around its center position. Simultaneously, drive hinge 14 retracts along limit plate 3. Drive hinge 2 15 drives drive hinge 3 16 to rotate counterclockwise around its center position. Simultaneously, drive hinge 2 15 retracts along limit plate 3. Drive hinge 3 16 drives drive hinge 4 1... 7 rotates clockwise around its central position, simultaneously driving hinge 3 16 to retract along the limiting plate 3, and driving hinge 4 17 to rotate counterclockwise, simultaneously driving hinge 5 18 to retract along the limiting plate 3. Sliding block 24 slides in the opposite direction along the slot 4, causing follower hinges 5 23, 4 22, 3 21, 20, and 19 to compress sequentially. The telescopic assembly 7 is in a compressed state, causing the drying assembly 9 at its upper end to compress, reducing the distance between each set of drying assemblies 9.

[0043] The flip control assembly 8 includes a second drive rod 25, a first actuating element 26, a flip plate 27, a connecting limit rod 28, a second actuating element 29, and a fixed rod 30. The second drive rod 25 is movably mounted on one end of the bottom wall of the limit plate 3, and the movable end of the second motor 13 is connected to the second drive rod 25. The fixed rod 30 is movably mounted on the other end of the bottom wall of the limit plate 3. The limit plate 3 supports the second drive rod 25 and the fixed rod 30. Both the first actuating element 26 and the second actuating element 29 are V-shaped. The center of the first actuating element 26 is located on the second drive rod 25, and the center of the second actuating element 29 is located on the fixed rod 30. One end of the connecting limit rod 28 is connected to the second actuating element 29. One end of the moving part 26 is movably connected, and the other end of the connecting limit rod 28 is movably connected to one end of the second actuating part 29. One end of the flipping plate 27 is movably connected to the other end of the first actuating part 26, and the other end of the flipping plate 27 is movably connected to the other end of the second actuating part 29. The flipping plate 27 is provided with a flipping groove 31. The second motor 13 drives the second driving rod 25 to rotate, the second driving rod 25 drives the first actuating part 26 to rotate, the first actuating part 26 pushes the connecting limit rod 28 to move, the connecting limit rod 28 pushes the second actuating part 29 to rotate, and the first actuating part 26 and the second actuating part 29 simultaneously drive the flipping plate 27 to make a fan-shaped movement.

[0044] The drying assembly 9 includes a drying board 32, on which drying rods 33 are provided on opposite side walls. The drying rods 33 are used to support the wood to be dried. The drying rods 33 are provided with ventilation holes 34, and several sets of ventilation holes 34 are provided, which pass through the drying rods 33. A connecting rod 35 is provided at the middle of the bottom wall of the drying board 32. The connecting rod 35 passes through the telescopic assembly 7 and the slot 4, and is movably connected to the telescopic assembly 7 and the slot 4. A toggle rod 36 is connected to the connecting rod 35. The toggle rod 36 is located between the limiting plate 3 and the flip plate 27. An insert rod 37 is connected to the toggle rod 36. The insertion rod 37 is movably engaged in the flipping groove 31. The length of the insertion rod 37 is the same as the length between the center of the first actuating member 26 and the connection point between the first actuating member 26 and the flipping plate 27, and the length of the insertion rod 37 is the same as the length between the center of the second actuating member 29 and the connection point between the second actuating member 29 and the flipping plate 27. When the flipping plate 27 makes a fan-shaped movement, it drives the insertion rod 37 to make a fan-shaped movement. The insertion rod 37 drives the actuating rod 36 to move. The actuating rod 36 drives the connecting rod 35 to rotate. The connecting rod 35 drives the drying plate 32 to rotate, changing from a vertical inward state to a horizontal state, or from a horizontal state to a vertical inward state.

[0045] The protective shielding assembly 5 includes a protective shielding member 38, which is a hollow cavity structure with an opening on one side. One end of the limiting plate 3 is located inside the protective shielding member 38 and connected to the inner wall of the protective shielding member 38. A protective member 39 is provided on the upper wall of the protective shielding member 38, which is also a hollow cavity structure with an opening on one side. A hydraulic rod 40 is provided inside the protective member 39. A slot 41 is provided at the opening of the protective shielding member 38, and a frame-shaped member 42 is movably connected in the slot 41. One end of the frame-shaped member 42... The frame member 42 is located inside the slot 41, and the other end of the frame member 42 is located outside the protective shield 38. The upper wall of the frame member 42 is provided with a retainer 43. The movable end of the hydraulic rod 40 is connected to the retainer 43. When the hydraulic rod 40 works, it pushes the retainer 43 to move, and the retainer 43 drives the frame member 42 to extend out of the protective shield 38. The bottom wall of the slot 41 is provided with a limiting groove 44, and the bottom wall of the frame member 42 is provided with a ball bearing 45. The ball bearing 45 is movably engaged in the limiting groove 44. The setting of the ball bearing 45 facilitates the movement of the frame member 42 along the slot 41.

[0046] The specific usage is as follows:

[0047] Initially, the telescopic component 7 is in a compressed state. When it needs to be unfolded, motor 12 drives drive rod 46 to rotate clockwise. Drive rod 46 drives drive hinge 14 to rotate clockwise. The other end of drive hinge 14 drives drive hinge 2 15 to rotate counterclockwise around its center position. At the same time, drive hinge 14 unfolds along the limiting plate 3, and moves the drying component 9 on it. Connecting rod 35 slides along slot 4, and insert rod 37 slides along the flipping groove 31. Drive hinge 2 15 drives drive hinge 3 16 to rotate clockwise around its center position. At the same time, drive hinge 2 15 unfolds along the limiting plate 3, and moves the drying component 9 on it. Connecting rod 35 slides along slot 4, and insert rod 37 slides along the flipping groove 31. Drive hinge 3 16 drives drive hinge 4 16 to rotate clockwise around its center position. 17 rotates counterclockwise around the center, simultaneously driving hinge 3 16 to unfold along the limiting plate 3 and moving the drying assembly 9 on it. Connecting rod 35 slides along slot 4, insert rod 37 slides along flipping slide 31, driving hinge 4 17 to drive hinge 5 18 to rotate clockwise, simultaneously driving hinge 5 18 to unfold along the limiting plate 3 and moving the drying assembly 9 on it. Connecting rod 35 slides along slot 4, insert rod 37 slides along flipping slide 31, sliding block 24 slides along slot 4, sliding block 24 drives follower hinge 5 23, follower hinge 4 22, follower hinge 3 21, follower hinge 2 20 and follower hinge 1 19 to unfold in sequence, telescopic assembly 7 is in a stretched state, driving the drying assembly 9 at its upper end to stretch and unfold, increasing the distance between each set of drying assemblies 9;

[0048] Motor 213 drives drive rod 25 to rotate, drive rod 25 drives toggle 126 to rotate, toggle 126 pushes connecting limit rod 28 to move, connecting limit rod 28 pushes toggle 29 to rotate, toggle 126 and toggle 29 simultaneously drive flip plate 27 to make fan-shaped movement, flip plate 27 makes fan-shaped movement, insert rod 37 makes fan-shaped movement, insert rod 37 drives toggle rod 36 to move, toggle rod 36 drives connecting rod 35 to rotate, connecting rod 35 drives drying plate 32 to rotate, changing from a vertical inward state to a horizontal state;

[0049] The wood that needs to be dried is placed on the drying rod 33, and the ventilation holes 34 can air dry the wood, and the spacing between the drying rods 33 also facilitates ventilation.

[0050] When encountering sudden heavy rain, it is necessary to compress the telescopic component 7:

[0051] When motor 213 operates, it drives drive rod 25 to rotate in the opposite direction. Drive rod 25 drives toggle 126 to rotate in the opposite direction. Toggle 126 pushes connecting limit rod 28 to move. Connecting limit rod 28 pushes toggle 29 to rotate in the opposite direction. Toggle 126 and toggle 29 simultaneously drive flip plate 27 to make a reverse fan-shaped movement. When flip plate 27 makes a reverse fan-shaped movement, it drives insertion rod 37 to make a reverse fan-shaped movement. Insertion rod 37 drives toggle rod 36 to move. Toggle rod 36 drives connecting rod 35 to rotate in the opposite direction. Connecting rod 35 drives drying plate 32 to rotate, changing from a horizontal state to a vertical inward state.

[0052] Motor 12 drives drive rod 146 to rotate counterclockwise. Drive rod 146 drives drive hinge 14 to rotate counterclockwise. The other end of drive hinge 14 drives drive hinge 2 15 to rotate clockwise around its center position. Simultaneously, drive hinge 14 retracts along limit plate 3. Drive hinge 2 15 drives drive hinge 3 16 to rotate counterclockwise around its center position. Simultaneously, drive hinge 2 15 retracts along limit plate 3. Drive hinge 3 16 drives drive hinge 4 17 to rotate clockwise around its center position. The needle rotates, simultaneously driving hinge 3 16 to retract along the limiting plate 3, driving hinge 4 17 to drive hinge 5 18 to rotate counterclockwise, simultaneously driving hinge 5 18 to retract along the limiting plate 3, sliding block 24 slides in the opposite direction along the slot 4, sliding block 24 drives follower hinge 5 23, follower hinge 4 22, follower hinge 3 21, follower hinge 2 20 and follower hinge 1 19 to compress in sequence, telescopic component 7 is in a compressed state, driving the drying component 9 at its upper end to compress, the distance between each group of drying components 9 decreases until the compression ends;

[0053] The hydraulic rod 40 works to push the clamp 43 to move, and the clamp 43 drives the frame part 42 to extend the protective shield 38. The retractable telescopic component 7 and the drying component 9 are located inside the frame part 42, and the frame part 42 protects the wood.

[0054] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents. In conclusion, if those skilled in the art, inspired by this description, design similar structural methods and embodiments without departing from the inventive spirit of the invention, such designs should fall within the protection scope of the present invention.

Claims

1. A composite wood natural drying and protection device, comprising a base plate, wherein a support bracket is provided on the base plate, a limiting plate is connected to the support bracket, and a slot is provided in the limiting plate, characterized in that, The base plate is provided with a protective shielding component on its side. One end of the limiting plate is connected to the inner wall of the protective shielding component. A driving component is provided on one end of the limiting plate. The driving component is located inside the protective shielding component. A telescopic component is connected to the upper wall of the limiting plate. A flip-adjustment component is provided at the lower end of the limiting plate. The flip-adjustment component is located between the limiting plate and the base plate. The driving component is connected to the telescopic component and the flip-adjustment component respectively. A drying component is movably connected to the telescopic component. The lower end of the drying component is located in the flip-adjustment component through a slot. Multiple drying components are provided and are respectively located on the telescopic component. The drive assembly includes an upper fixed frame and a lower fixed frame. The upper fixed frame is located on the upper wall of the limiting plate, and the lower fixed frame is located on the bottom wall of the limiting plate. The lower fixed frame is located on the bottom wall of the protective shielding assembly. A motor is installed in the upper fixed frame, and a motor is installed in the lower fixed frame. Both motors are forward and reverse rotating motors. Motors are connected to the telescopic assembly, and motors are connected to the flipping control assembly. The telescopic assembly includes a drive rod 1, a drive hinge 1, a drive hinge 2, a drive hinge 3, a drive hinge 4, a drive hinge 5, a follower hinge 1, a follower hinge 2, a follower hinge 3, a follower hinge 4, a follower hinge 5, and a sliding block. The drive rod 1 is movably mounted on one end of the limiting plate. The output shaft end of the motor 1 is connected to the drive rod 1. One end of the drive hinge 1 is fixedly connected to the drive rod 1. One end of the follower hinge 1 is movably connected to the drive rod 1. The follower hinge 1 is located at the lower end of the drive hinge 1. The middle position of the driving hinge 2 is movably connected to the middle position of the follower hinge 2. The driving hinge 2 is located at the lower end of the follower hinge 2. One end of the driving hinge 2 is movably connected to the other end of the driving hinge 1. One end of the follower hinge 2 is movably connected to the other end of the follower hinge 1. The middle position of the driving hinge three is movably connected to the middle position of the follower hinge three. The driving hinge three is located at the upper end of the follower hinge three. One end of the driving hinge three is movably connected to the other end of the driving hinge two. One end of the follower hinge three is movably connected to the other end of the follower hinge two. The middle position of the driving hinge four is movably connected to the middle position of the follower hinge four. The driving hinge four is located at the lower end of the follower hinge four. One end of the driving hinge four is movably connected to the other end of the driving hinge three. One end of the follower hinge four is movably connected to the other end of the follower hinge three. The sliding block is movably engaged in the slot. One end of the driving hinge five is movably connected to the other end of the driving hinge four. One end of the following hinge five is movably connected to the other end of the following hinge four. The other end of the driving hinge five is movably connected to the sliding block. The other end of the following hinge five is movably connected to the sliding block. The driving hinge five is located at the upper end of the following hinge five. The flipping control assembly includes a second drive rod, a first actuating component, a flipping plate, a connecting limit rod, another actuating component, and a fixed rod. The second drive rod is movably mounted on one end of the bottom wall of the limit plate. The movable end of the second motor is connected to the second drive rod. The fixed rod is movably mounted on the other end of the bottom wall of the limit plate. Both the first and second actuating components are V-shaped. The center of the first actuating component is located on the second drive rod, and the center of the second actuating component is located on the fixed rod. One end of the connecting limit rod is movably connected to one end of the first actuating component, and the other end of the connecting limit rod is movably connected to one end of the second actuating component. One end of the flipping plate is movably connected to the other end of the first actuating component, and the other end of the flipping plate is movably connected to the other end of the second actuating component.

2. The composite wood natural drying and protection device according to claim 1, characterized in that, The flip plate is equipped with a flipping groove.

3. The composite wood natural drying and protection device according to claim 2, characterized in that, The drying assembly includes a drying board, on which drying rods are provided on opposite side walls. Each drying rod has ventilation holes, and several sets of ventilation holes are provided, with each set of ventilation holes penetrating through the drying rods. A connecting rod is provided at the middle of the bottom wall of the drying board, and the connecting rod passes through a telescopic assembly and a slot. The connecting rod is movably connected to the telescopic assembly and the slot. A toggle rod is connected to the connecting rod, and the toggle rod is located between a limiting plate and a flipping plate. An insert rod is connected to the toggle rod, and the insert rod is movably engaged in a flipping groove.

4. The composite wood natural drying and protection device according to claim 3, characterized in that, The length of the insert rod is the same as the length from the center of the first actuating element to the point where the first actuating element is connected to the flip plate, and the length of the insert rod is the same as the length from the center of the second actuating element to the point where the second actuating element is connected to the flip plate.

5. A composite wood natural drying and protection device according to claim 4, characterized in that, The protective shielding assembly includes a protective shielding component, which is a hollow cavity structure with an opening on one side. One end of the limiting plate is located inside the protective shielding component and connected to the inner wall of the protective shielding component. The upper wall of the protective shielding component is provided with a protective component, which is a hollow cavity structure with an opening on one side.

6. A composite wood natural drying and protection device according to claim 5, characterized in that, The protective component is equipped with a hydraulic rod, and the opening of the protective shield is provided with a slot. A frame-shaped component is movably connected in the slot. One end of the frame-shaped component is located in the slot, and the other end of the frame-shaped component is located outside the protective shield. A retaining element is provided on the upper wall of the frame-shaped component, and the movable end of the hydraulic rod is connected to the retaining element.

7. A composite wood natural drying and protection device according to claim 6, characterized in that, The bottom wall of the slot is provided with a limiting groove, and the bottom wall of the frame component is provided with a ball bearing, which is movably engaged in the limiting groove.

Citation Information

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