One-way limiting type drying mechanism for wood board processing

By designing a one-way limit drying mechanism with built-in support seat, bevel guide and return spring, the existing drying mechanism's vibration and collision problems during the drying process are solved, and the rapid and orderly positioning of the plate and multi-layer drying are achieved.

CN120141074AActive Publication Date: 2025-06-13CHONGYI COUNTY HONGLIANG WOOD IND CO LTD
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Patent Information

Application Number
CN202510629848.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-06-13
Estimated Expiration
2045-05-16

AI Technical Summary

Technical Problem

The existing drying mechanism for wood board processing will cause large vibrations during the drying process and the collision state during the material stacking process, and it is impossible to effectively position the required plates quickly, resulting in an unordered drying process and the optimal multi-layer drying work cannot be achieved.

Method used

A one-way limit drying mechanism for wood board processing is designed, and the structures are adopted such as built-in support seats, inclined guides, movable guides and return springs. The board is subjected to one-way self-positioning and secondary positioning through auxiliary positioning structures and auxiliary locking structures to avoid vibration and collision.

Benefits of technology

It effectively avoids vibration and collisions during the drying process, and performs rapid and orderly one-way positioning of the plate, achieving the best multi-layer drying work, and improving the practicality of the device.

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Abstract

The invention discloses a one-way limiting type drying mechanism for wood board processing, and relates to the field of wood board drying, the one-way limiting type drying mechanism for wood board processing comprises a drying assembly body, the inner side of the drying assembly body is fixedly connected with built-in supporting seats, and the built-in supporting seats are uniformly distributed relative to the inner side of the drying assembly body; a plate to be treated is placed at the inner end of the built-in supporting seat; the outer side of the built-in supporting seat is fixedly connected with a slope guiding piece, and a movable guiding piece is installed on the outer side of the slope guiding piece in a nested mode. According to the one-way limiting type drying mechanism for wood board processing, one-way self-positioning treatment is conducted on the outer sides of the boards making contact with the one-way limiting type drying mechanism, the situation that the board processing process is affected by large vibration generated in the drying process and the collision state in the material stacking process is avoided, and one-way rapid positioning treatment is effectively conducted on the boards needing to be processed; therefore, the drying process is orderly treated, and the multi-layer drying work is carried out in the optimal state.
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Description

Technical Field

[0001] The invention relates to the technical field of wood board drying, in particular to a one-way limiting drying mechanism for wood board processing. Background Art

[0002] Wood boards need to go through multiple steps in the processing process, including the drying process of the processed wood boards. Therefore, the quality of the wood board drying equipment determines the quality of the formed board.

[0003] For example, a wood board drying device disclosed in the patent with announcement number CN208871979U includes a heat exchange chamber, a heating chamber, a drying chamber, an air duct, a heat exchange plate, an electric heating wire, a vacuum pump, a temperature sensor, a humidity sensor, a slide rail, a board placement rack, a cyclone separator, a blower, a condenser, a temperature controller, an air outlet pipe, and an air outlet hole; the right end of the heat exchange chamber is connected to the left end of the heating chamber through the air duct I, the right end of the heating chamber is connected to the left end of the drying chamber through the air duct II, a cyclone separator is also provided on the air duct II, the left end of the heat exchange chamber is connected to the blower, and the vacuum pump is connected to the heat exchange chamber through the air duct III; the device has a simple structure, is safe to use, has all-weather production capacity, is suitable for continuous drying of large quantities of wood boards, and improves production efficiency;

[0004] Another example is a solid wood board drying device disclosed in the patent with the announcement number CN206771889U, which includes a drying body, the drying body includes an inner drying chamber and an outer drying chamber, a partition is provided between the inner drying chamber and the outer drying chamber, a plurality of mounting seats are symmetrically provided on the partition, the mounting seats are composed of two fixed plates, an air inlet is provided between the two fixed plates, a plurality of electric heating wires are provided at the air inlet, the bottom of the inner drying chamber is connected to a boiler through a steam delivery pipeline, the structure is simple, and both ends of the solid wood board can be fully dried to ensure that the solid wood board can be dried evenly;

[0005] For example, the patent with publication number CN220062371U discloses a drying device for processing solid wood boards, including a drying seat and a drying mechanism; the drying mechanism includes several groups of drying devices detachably mounted on the inner side of the drying seat and a clamping assembly for fixing the drying seat; the drying mechanism also includes two groups of connecting seats symmetrically fixed on the inner side wall of the drying seat and an electric slide rail arranged inside the drying seat. The clamping seat and the clamping member cooperate to clamp and fix the solid wood board. The fixed screw and the rotating block can improve the stability of the connection between the clamping seat and the clamping member, and the position of the clamping member can be adjusted. The clamping member and several groups of drying devices can be used to dry the solid wood board on both sides. The electric slide rail and the slider cooperate to adjust the position of the solid wood board.

[0006] Most of the above-mentioned existing technologies improve their overall structures. However, during the operation of the existing drying mechanism for wood board processing, most of them are flat placement structures, which will generate relatively large vibrations and collision states during the material stacking process during drying. It cannot effectively perform rapid positioning processing on the boards to be processed, so that the drying process can be carried out in an orderly manner and the multi-layer drying work can be carried out in the best state, and there are certain limitations in use. Summary of the Invention

[0007] The purpose of the present invention is to provide a one-way limiting drying mechanism for wood board processing, so as to solve the problems proposed in the above background technology that most of them are flat placement structures, which will generate relatively large vibrations and collision states during the material stacking process during drying. It cannot effectively perform rapid positioning processing on the boards to be processed, so that the drying process can be carried out in an orderly manner and the multi-layer drying work can be carried out in the best state, and there are certain limitations in use.

[0008] To achieve the above purpose, the present invention provides the following technical solution: A one-way limiting drying mechanism for wood board processing, including the drying component body, an internal support seat is fixedly connected to the inner side of the drying component body, and the internal support seats are evenly distributed about the inner side of the drying component body, and the boards to be processed are placed at the inner ends of the internal support seats; an inclined surface guide is fixedly connected to the outer side of the internal support seat, and a movable guide is nested on the outer side of the inclined surface guide, and a first return spring is fixedly connected to the inner end of the movable guide, and at the same time the first return spring is mutually butted against the outer side of the internal support seat. An auxiliary positioning structure is arranged on the outer side of the internal support seat to limit the outer side of the contacted board through the auxiliary positioning structure.

[0009] Furthermore, the auxiliary positioning structure is provided with a second return spring, and the second return spring is butted at the lower end of the internal support seat. A contact butting member is nested at the lower end of the internal support seat, and the outer side of the contact butting member is mutually butted against the second return spring.

[0010] Furthermore, a nested contact member is nested on the outer side of the contact butting member, and an auxiliary limiting member is fixedly connected to the outer side of the nested contact member. A third return spring is fixedly connected to the outer end of the nested contact member, and the third return spring is mutually butted against the outer side of the contact butting member.

[0011] Furthermore, the contact butting member forms a sliding structure along the outer side of the internal support seat through the second return spring, and the contact butting member cooperates with the nested contact member to form a nested contact structure along the outer side of the inclined surface guide. The nested contact member forms a telescopic movable structure along the inner side of the contact butting member through the third return spring.

[0012] Furthermore, the movable guide member forms a sliding structure along the outer end of the inclined guide member through the first return spring; in the process of the abutment member being driven by the force to move the nested abutment member inward, the nested abutment member at its inner end moves along the outer side of the inclined guide member to its left end face to form a lateral engagement, and the nested abutment member drives the auxiliary limiting member on the outer side to leave the pressed state, and the nested abutment member drives the auxiliary limiting member on the outer side to move inward through the third return spring to contact the outer side of the plate to be positioned.

[0013] Furthermore, an auxiliary locking structure is provided between the drying component body and the built-in support seat, and the contacting plate is positioned secondary by the auxiliary locking structure; the auxiliary locking structure is provided with a fixed docking piece, and the outer side of the fixed docking piece is fixedly connected to the outer side of the auxiliary limiting piece, and the outer side of the fixed docking piece is nested with a rubber nesting piece, and the inner side of the rubber nesting piece is adhesively connected with a built-in reserved air bag, and the built-in reserved air bag and the outer side of the fixed docking piece are docked with each other.

[0014] Furthermore, the inner side of the fixed docking piece is adhesively connected to an external reserved airbag, and the outer side of the external reserved airbag is docked with an external nested elastic layer, and the external nested elastic layer and the inner side of the auxiliary limiting piece are docked with each other, and a supply hose passes through the inner side of the external reserved airbag, and the supply hose passes through the inner side of the auxiliary limiting piece, and the end of the supply hose is connected to the built-in reserved airbag.

[0015] Furthermore, during the inward movement of the auxiliary limiting member, the rubber nesting member inside the auxiliary limiting member is simultaneously pressurized, and the rubber nesting member slides along the outer side of the fixed docking member, and the built-in reserved airbag between the fixed docking member and the rubber nesting member is simultaneously pressurized.

[0016] Furthermore, when the built-in reserved airbag is pressurized, air is supplied to the inner side of the external reserved airbag at the end through the supply hose, and the external reserved airbag cooperates with the external nested elastic layer on the outside to be deformed synchronously under force.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] This one-way limit drying mechanism for wood board processing is provided with an auxiliary positioning structure. The outer side of the board in contact is limited through the auxiliary positioning structure. After simply placing the board to be processed along the surface of the built-in support base and then pushing the board inward, the nested contact member can be driven to move inward synchronously with the inward-moving contact docking member. Thus, the nested contact member moves along the outer side of the inclined plane guide member until it disengages from the pressed state. A horizontal clamping working state is formed between the left end face of the inward-moving nested contact member and the inclined plane guide member. Then, the nested contact member drives the auxiliary limiting member to move along the inner side of the contact docking member through the force of the third return spring, and then performs one-way self-positioning processing on the outer side of the board in contact, avoiding the influence of large vibrations generated during the drying process and collisions during the material stacking process on the processing process of the board, effectively performing one-way rapid positioning processing on the board to be processed, enabling the drying process to be carried out in an orderly manner, and performing multi-layer drying work in the best state, improving the practicability of the device;

[0019] Furthermore, an auxiliary locking structure is provided. The board in contact is subjected to secondary positioning processing through the auxiliary locking structure. As the auxiliary limiting member and the nested contact member move inward, the rubber inlay kit on its inner side is synchronously pressed along the outer side of the fixed docking member. The built-in reserved airbag in a negative pressure state supplies air to the inner side of the external reserved airbag at the end through the supply hose, enabling the external reserved airbag to cooperate with the external nested elastic layer on the outer side to be synchronously deformed under force, and then performing a fitting positioning process on the upper and lower end sides of the board in contact, effectively performing multi-faceted positioning work and effectively performing one-way limiting processing;

[0020] Furthermore, when the board in the positioning state needs to be taken out, simply press the outer end of the board inward again. The contact docking member in contact with it will continue to move inward along the outer side of the built-in support base, so that the nested contact member in an inclined plane state will synchronously move along the outer side of the movable guide member until the end side thereof contacts the outer side of the movable guide member. At this time, both sides of the board are in a state of disengaging from the positioning of the auxiliary limiting member, and it can be quickly taken out. At the same time, the end side of the nested contact member will drive it to move outward along the surface of the movable guide member until the opposite surface of the movable guide member contacts the inclined plane guide member, so that the nested contact member and the contact docking member are reset to the right and move to the waiting positioning working state, effectively performing the rapid positioning release work of the board. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a three-dimensional structural schematic diagram of the present invention;

[0022] Figure 2 is a three-dimensional structural schematic diagram of the auxiliary limiting member of the present invention;

[0023] Figure 3 is a three-dimensional structural schematic diagram of the contact docking member of the present invention;

[0024] Figure 4 It is a schematic diagram of the three-dimensional structure of the nested interference member of the present invention;

[0025] Figure 5 This is a schematic diagram of a half-cut three-dimensional structure of a built-in support seat of the present invention;

[0026] Figure 6 For the present invention Figure 5 A schematic diagram of the partially enlarged structure;

[0027] Figure 7 It is a schematic diagram of the three-dimensional structure of the fixed docking piece of the present invention;

[0028] Figure 8 It is a schematic diagram of the three-dimensional structure of the third return spring of the present invention;

[0029] Figure 9 It is a schematic diagram of the three-dimensional structure of the movable guide member of the present invention.

[0030] In the figure: 1. Drying component body; 2. Built-in support seat; 3. Inclined guide member; 4. Movable guide member; 5. First return spring; 6. Second return spring; 7. Resistance docking member; 8. Third return spring; 9. Nested resistance member; 10. Auxiliary limit member; 11. Fixed docking member; 12. Rubber nested member; 13. Built-in reserved air bag; 14. Supply hose; 15. External reserved air bag; 16. External nested elastic layer. DETAILED DESCRIPTION

[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0032] Example 1: Please refer to Figures 1-9, the present invention provides the following technical solution: a unidirectional limiting drying mechanism for wood board processing, including a drying component body 1, an internal support seat 2, an inclined surface guiding member 3, a movable guiding member 4, a first return spring 5, a second return spring 6, a contact docking member 7, a third return spring 8, a nested contact member 9, an auxiliary limiting member 10, a fixed docking member 11, a rubber inlay kit 12, an internal reserved airbag 13, a supply hose 14, an external reserved airbag and an external nested elastic layer 16; an internal support seat 2 is fixedly connected to the inner side of the drying component body 1, and the internal support seats 2 are evenly distributed about the inner side of the drying component body 1, and the inner ends of the internal support seats 2 place the boards to be processed; an inclined surface guiding member 3 is fixedly connected to the outer side of the internal support seat 2, and a movable guiding member 4 is nestedly installed on the outer side of the inclined surface guiding member 3, and a first return spring 5 is fixedly connected to the inner end of the movable guiding member 4, and at the same time the first return spring 5 is mutually docked with the outer side of the internal support seat 2, and an auxiliary positioning structure is arranged on the outer side of the internal support seat 2, and the outer side of the contacted board is limited by the auxiliary positioning structure.

[0033] The auxiliary positioning structure is provided with a second return spring 6, and the second return spring 6 is docked at the lower end of the built-in support seat 2, and a resistance docking member 7 is nested and installed at the lower end of the built-in support seat 2, and the outer side of the resistance docking member 7 is docked with the second return spring 6. A nested resistance member 9 is nested and installed on the outer side of the resistance docking member 7, and the outer side of the nested resistance member 9 is fixedly connected with an auxiliary limiting member 10, and the outer end of the nested resistance member 9 is fixedly connected with a third return spring 8, and the third return spring 8 is docked with the outer side of the resistance docking member 7. The resistance docking member 7 forms a sliding structure along the outer side of the built-in support seat 2 through the second return spring 6, and the resistance docking member 7 cooperates with the nested resistance member 9 to form a nested resistance structure along the outer side of the inclined guide member 3, and the nested resistance member 9 forms a telescopic movable structure along the inner side of the resistance docking member 7 through the third return spring 8. The movable guide member 4 forms a sliding structure along the outer end of the inclined guide member 3 through the first return spring 5; during the process of the resistance docking member 7 driving the nested resistance member 9 to move inward, the nested resistance member 9 at its inner end moves along the outer side of the inclined guide member 3 to its left end face to form a lateral engagement, and the nested resistance member 9 drives the auxiliary limiting member 10 on the outer side to break away from the pressed state, and the nested resistance member 9 drives the auxiliary limiting member 10 to move inward to contact the outer side of the plate to be positioned through the third return spring 8; it is only necessary to place the plate to be processed along the surface of the built-in support seat 2, and then push the plate inward to move, so that the inward-moving resistance docking member 7 can drive the nested resistance member 9 to move inward synchronously, so as to The nested resistance member 9 moves along the outer side of the inclined guide member 3 to a state of disengagement from the pressing, and the left end face of the inwardly moved nested resistance member 9 forms a transversely engaged working state with the inclined guide member 3, so that the nested resistance member 9 drives the auxiliary limiting member 10 to move along the inner side of the resistance docking member 7 through the force of the third return spring 8, and then performs a one-way self-positioning treatment on the outer side of the contacting plate, so as to avoid the large vibration generated during the drying process and the collision state during the material stacking process from affecting the processing process of the plate, and effectively performs a one-way rapid positioning treatment on the plate to be processed, so that the drying process can be handled in an orderly manner and multi-layer drying work can be carried out in the best state.

[0034] Embodiment 2: Based on Embodiment 1, an auxiliary locking structure is also disclosed, and its specific structure is as follows:

[0035] An auxiliary locking structure is provided between the drying component body 1 and the built-in support seat 2, and the contacting plate is secondary positioned by the auxiliary locking structure; the auxiliary locking structure is provided with a fixed docking piece 11, and the outer side of the fixed docking piece 11 is fixedly connected to the outer side of the auxiliary limiting piece 10, and the outer side of the fixed docking piece 11 is nested with a rubber nesting piece 12, and the inner side of the rubber nesting piece 12 is adhesively connected with a built-in reserved air bag 13, and the built-in reserved air bag 13 is docked with the outer side of the fixed docking piece 11.

[0036] The inner side of the fixed docking part 11 is bonded with an external reserved airbag 15, and the outer side of the external reserved airbag 15 is docked with an external nested elastic layer 16, and the external nested elastic layer 16 and the inner side of the auxiliary limiting part 10 are docked with each other, and the inner side of the external reserved airbag 15 is penetrated by a supply hose 14, and the supply hose 14 is penetrated along the inner side of the auxiliary limiting part 10, and the end of the supply hose 14 is connected with the internal reserved airbag 13. During the inward movement of the auxiliary limiting part 10, the rubber nested part 12 inside it is synchronously pressurized, and the rubber nested part 12 slides along the outer side of the fixed docking part 11, and the internal reserved airbag 13 between the fixed docking part 11 and the rubber nested part 12 is synchronously pressurized. During the process of the built-in reserved airbag 13 being pressurized, air is supplied to the inner side of the external reserved airbag 15 at the end through the supply hose 14, and the external reserved airbag 15 cooperates with the external nested elastic layer 16 on the outside to be deformed synchronously under stress; as the auxiliary limiting member 10 and the nested resistance member 9 move inward, the rubber nested member 12 on the inside is pressurized synchronously along the outside of the fixed docking member 11, and the built-in reserved airbag 13 in a negative pressure state supplies air to the inner side of the external reserved airbag 15 at the end through the supply hose 14, so that the external reserved airbag 15 cooperates with the external nested elastic layer 16 on the outside to be deformed synchronously under stress, thereby performing a fitting positioning treatment on the upper and lower end sides of the contacting plate, effectively performing multi-faceted positioning on it, and effectively performing a one-way limiting treatment; it is necessary When removing the plate in the positioned state, it is only necessary to press the outer end of the plate inward again, and the interference docking member 7 in contact with it will continue to move inward along the outer side of the built-in support seat 2, so that the nested interference member 9 in the inclined state can move synchronously along the outer side of the movable guide member 4 until its end side contacts the outer side of the movable guide member 4. At this time, both sides of the plate are in a positioned state that is detached from the auxiliary limit member 10, so it can be quickly taken out, and at the same time, the end side of the nested interference member 9 will be driven to move outward along the surface of the movable guide member 4 by the force until the movable guide member 4 contacts the opposite surface of the inclined guide member 3, so that the nested interference member 9 and the interference docking member 7 are reset to the right and move to the waiting positioning working state, effectively and quickly releasing the positioning of the plate.

[0037] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "connected" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0038] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A one-way limited drying mechanism for wood board processing, comprising a drying component body (1), the inner side of the drying component body (1) being fixedly connected with a built-in support seat (2), the built-in support seat (2) being evenly distributed with respect to the inner side of the drying component body (1), and a board to be processed is placed at the inner end of the built-in support seat (2); Features: The outer side of the built-in support seat (2) is fixedly connected to a bevel guide member (3), and the outer side of the bevel guide member (3) is nested with a movable guide member (4), and the inner end of the movable guide member (4) is fixedly connected to a first return spring (5), and the first return spring (5) and the outer side of the built-in support seat (2) are butted against each other. The outer side of the built-in support seat (2) is provided with an auxiliary positioning structure, and the outer side of the contacting plate is limited by the auxiliary positioning structure.

2. The one-way limiting drying mechanism for wood board processing according to claim 1 is characterized in that: The auxiliary positioning structure is provided with a second return spring (6), and the second return spring (6) is butted against the lower end of the built-in support seat (2), and a resisting butt joint piece (7) is nested and installed at the lower end of the built-in support seat (2), and the outer side of the resisting butt joint piece (7) is butted against the second return spring (6).

3. The one-way limiting drying mechanism for wood board processing according to claim 2 is characterized in that: A nested abutment member (9) is nested and installed on the outer side of the abutment member (7), and an auxiliary limiting member (10) is fixedly connected to the outer side of the nested abutment member (9). A third return spring (8) is fixedly connected to the outer end of the nested abutment member (9), and the third return spring (8) is butted against the outer side of the abutment member (7).

4. The one-way limiting drying mechanism for wood board processing according to claim 3 is characterized in that: The abutting docking member (7) forms a sliding structure along the outer side of the built-in support seat (2) through the second return spring (6), and the abutting docking member (7) cooperates with the nested abutting member (9) to form a nested abutting structure along the outer side of the inclined guide member (3), and the nested abutting member (9) forms a telescopic movable structure along the inner side of the abutting docking member (7) through the third return spring (8).

5. The one-way limiting drying mechanism for wood board processing according to claim 4 is characterized in that: The movable guide member (4) forms a sliding structure along the outer end of the inclined guide member (3) through the first return spring (5); During the process of the abutting member (7) being driven by the force to move the nested abutting member (9) inward, the nested abutting member (9) at its inner end moves along the outer side of the inclined guide member (3) to its left end face to form a transverse engagement, and the nested abutting member (9) drives the auxiliary limiting member (10) on the outer side to be released from the pressed state, and the nested abutting member (9) drives the auxiliary limiting member (10) to move inward through the third return spring (8) to contact the outer side of the plate to be positioned.

6. The one-way limiting drying mechanism for wood board processing according to claim 3 is characterized in that: An auxiliary locking structure is provided between the drying component body (1) and the built-in support seat (2), and a secondary positioning process is performed on the contacting plate through the auxiliary locking structure; The auxiliary locking structure is provided with a fixed docking piece (11), and the outer side of the fixed docking piece (11) is fixedly connected to the outer side of the auxiliary limiting piece (10), the outer side of the fixed docking piece (11) is nested with a rubber nesting piece (12), and the inner side of the rubber nesting piece (12) is bonded with a built-in reserved airbag (13), and the built-in reserved airbag (13) and the outer side of the fixed docking piece (11) are docked with each other.

7. The one-way limiting drying mechanism for wood board processing according to claim 6 is characterized in that: The inner side of the fixed docking member (11) is bonded to an external reserved airbag (15), and the outer side of the external reserved airbag (15) is docked with an external nested elastic layer (16), and the external nested elastic layer (16) and the inner side of the auxiliary limiting member (10) are docked with each other, and the inner side of the external reserved airbag (15) is penetrated by a supply hose (14), and the supply hose (14) is penetrated along the inner side of the auxiliary limiting member (10), and the end of the supply hose (14) is connected to the internal reserved airbag (13).

8. The one-way limiting drying mechanism for wood board processing according to claim 7 is characterized in that: During the inward movement of the auxiliary limiting member (10), the rubber nesting member (12) inside the auxiliary limiting member (10) is simultaneously pressurized, and the rubber nesting member (12) slides along the outer side of the fixed docking member (11), and the built-in reserved air bag (13) between the fixed docking member (11) and the rubber nesting member (12) is simultaneously pressurized.

9. The one-way limiting drying mechanism for wood board processing according to claim 8 is characterized in that: During the process of the internal reserved airbag (13) being pressurized, air is supplied to the inner side of the external reserved airbag (15) at the end through the supply hose (14), and the external reserved airbag (15) cooperates with the external nested elastic layer (16) on the outside to be deformed synchronously under force.

Citation Information

Patent Citations

  • Solid wood panel drying device

    CN206771889U

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    CN220062371U

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    BE1029615A1

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    CN106766783A