CN114739156A - Dampproofing pathological change device of preventing of fitment decorative board - Google Patents

Dampproofing pathological change device of preventing of fitment decorative board Download PDF

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Publication number
CN114739156A
CN114739156A CN202210248395.1A CN202210248395A CN114739156A CN 114739156 A CN114739156 A CN 114739156A CN 202210248395 A CN202210248395 A CN 202210248395A CN 114739156 A CN114739156 A CN 114739156A
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China
Prior art keywords
rotating
plate
fixed
rod
wall
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Granted
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CN202210248395.1A
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Chinese (zh)
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CN114739156B (en
Inventor
耿福振
王文
吕冉
王宇飞
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China Construction Eighth Engineering Division Decoration Engineering Co Ltd
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China Construction Eighth Engineering Division Decoration Engineering Co Ltd
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Priority to CN202210248395.1A priority Critical patent/CN114739156B/en
Publication of CN114739156A publication Critical patent/CN114739156A/en
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Publication of CN114739156B publication Critical patent/CN114739156B/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/004Nozzle assemblies; Air knives; Air distributors; Blow boxes
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/072Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of specially adapted, structured or shaped covering or lining elements

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Drying Of Solid Materials (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)

Abstract

The invention relates to a moisture-proof and disease-preventing device for a decoration veneer, which comprises: the first mounting frame with the hole is mounted on the panel and movably connected to the wall; the second mounting frame with the hole is positioned outside the second mounting frame and is fixed between the panel and the wall body; an air supply hole arranged on the wall body; the air supply assembly is arranged on the wall body and corresponds to the air supply hole; the rotating fan blades are rotatably arranged on the wall body through the rotating shaft and correspond to the air supply holes; the pushing pin is elastically connected with the rotating shaft; the linkage rod is slidably arranged on the wall body and is in driving connection with the pushing pin; the drying plate is fixed on the linkage rod and corresponds to the air supply hole; one end of the connecting rod is fixed on the first mounting frame, the other end of the connecting rod is in driving connection with the linkage rod, and a sliding hole for the connecting rod to move is formed in the second mounting frame. The invention solves the technical problem that no dehumidification and anti-mildew mechanism is arranged in the decoration panel. The interior of the decorative panel of the invention directly removes moisture in the air, thus prolonging the service life of the decorative panel.

Description

Dampproofing pathological change device of preventing of fitment decorative board
Technical Field
The invention relates to the field of decoration and fitment construction, in particular to a moisture-proof and disease-preventing device for a fitment veneer.
Background
Decorative panels are commonly referred to as panels. The decorative plate with single-side decoration function is prepared by precisely slicing a solid wood board into micro veneer with the thickness of about 0.2mm, taking a clamping plate as a base material and performing an adhesive process.
In order to prevent the color change and mildew of the surface of the decorative back panel, attention should be paid to moisture protection, excessive humidity in a room is avoided, water immersion and rain are prevented, paint construction must be thorough and correct, a wooden frame is nailed when the decorative wall surface is constructed, and the veneer is prevented from being directly installed on cement and brick walls and being prevented from being damp and mildewed.
When installing the decoration panel on the wall body through wooden installation frame, there is the installation clearance between wooden installation frame and the wall body, outside humid gas enters into the inside of decoration panel through the clearance, lacks dehumidification anti-mildew mechanism on the decoration panel on the present fitment panel, and humid gas on the wooden installation frame is difficult to get rid of, and further easy emergence that causes the decoration panel mildenes and rot the damage, has reduced the life of decoration panel.
Disclosure of Invention
Aiming at the defects existing in the prior art, the invention provides a moisture-proof and mildew-proof device for a decoration veneer, which solves the technical problem that no moisture-proof and mildew-proof mechanism exists in the decoration veneer in the prior art.
The invention discloses a moisture-proof and disease-proof device for a decoration veneer, which comprises:
the first mounting frame with the hole is mounted on the panel and movably connected to the wall;
the second mounting frame with the hole is positioned outside the second mounting frame and is fixed between the panel and the wall body;
an air supply hole arranged on the wall body;
the air supply assembly is arranged on the wall and corresponds to the air supply hole;
the rotating fan blades are rotatably arranged on the wall body through the rotating shaft and correspond to the air supply holes;
the pushing pin is elastically connected to the rotating shaft;
the linkage rod is slidably arranged on the wall body and is in driving connection with the pushing pin;
the drying plate is fixed on the linkage rod and corresponds to the air supply hole;
one end of the connecting rod is fixed on the first mounting frame, the other end of the connecting rod is in driving connection with the linkage rod, and a sliding hole for the connecting rod to move is formed in the second mounting frame.
The moisture-proof and disease-proof device for the decoration veneer is further improved in that the rotating shaft comprises a first rotating rod and a second rotating rod, the rotating fan blades are fixed at the first end of the first rotating rod, the pushing pin is connected with the second end of the second rotating rod, and the second end of the first rotating rod is connected with the first end of the second rotating rod through a one-way limiting component.
The moisture-proof and disease-proof device for the decoration veneer is further improved in that the one-way limiting assembly comprises a first rotating plate fixed at the second end of the first rotating rod and a second rotating plate fixed at the first end of the second rotating rod, a plurality of limiting blocks are elastically connected on the end surface, close to the second rotating plate, of the first rotating plate in a diffused mode, limiting grooves corresponding to the limiting blocks one by one are formed in the second rotating plate, and the limiting blocks are provided with inclined planes enabling the second rotating plate to rotate towards one direction.
The moisture-proof and disease-proof device for the decoration veneer is further improved in that a first slide bar is fixed on the linkage rod, the first slide bar is connected to the wall body in a sliding mode through a strip-shaped plate, a first return spring is connected between the strip-shaped plate and the linkage rod, and the first return spring is wound on the periphery of the first slide bar.
The dampproof and disease-proof device for the decoration veneer is further improved in that a square box is movably connected to the wall body and corresponds to the first rotating plate, the square box is connected with an operation block driving the connecting rod to move in a driving mode, and the operation block is movably connected to the wall body and located below the connecting rod.
The moisture-proof and disease-proof device for the decoration veneer is further improved in that the operation block is vertically and slidably connected to the wall body through a third slide bar, one end of a push rod is movably connected to the operation block, and the other end of the push rod is fixed to the square box.
The dampproof and anti-pathological change device of the decoration veneer is further improved in that one side of the square box close to the wall body is connected with one end of a second slide bar in a sliding mode, the other end of the second slide bar is fixed on the wall body, a second return spring is connected between the square box and the wall body, and the second return spring is wound on the periphery of the second slide bar.
The dampproof and disease-proof device for the decoration veneer is further improved in that a mounting pipe filled with expansion liquid is fixed on the wall body, a pushing pipe is slidably mounted in the mounting pipe, the pushing pipe is positioned below the linkage rod and is in contact with the linkage rod, a pushing plate is fixed on the pushing pipe, a plurality of convex blocks are fixed on the outer peripheral surface of the first rotating plate, a limiting plate matched with the convex blocks is elastically connected on the square box, and the pushing plate is connected on the square box and drives the limiting plate to be far away from the first rotating plate.
The moisture-proof and disease-proof device for the decoration veneer is further improved in that the air supply assembly comprises an air inlet arranged on the wall body, an exhaust fan fixed on the back surface of the wall body corresponding to the position of the air inlet, and an air supply pipe communicated between the exhaust fan and the air supply outlet.
The moisture-proof and disease-proof device for the decoration veneer is further improved in that a plurality of sleeves are fixed on the second end of the second rotating rod in the circumferential direction, and the pushing pins are slidably arranged in the sleeves.
Compared with the prior art, the invention has positive and obvious effect. According to the invention, the dehumidifying mechanism is arranged between the decoration panel and the wall body, so that the technical problem that the dehumidifying and anti-mildew mechanism is not arranged inside the decoration panel in the prior art is solved. The invention directly removes moisture in air from the interior of the decoration panel, prolongs the service life of the decoration panel, and installs the resetting device on the decoration panel, thereby preventing external moist air from directly entering the panel, ensuring the interior of the decoration panel to be dry, and simultaneously, the invention is also provided with the heat dissipation mechanism to reduce the temperature in the decoration panel, thereby playing the role of protecting the decoration panel.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
Fig. 1 is a schematic view of the overall external structure of the moisture and disease prevention device for a finishing veneer according to the present invention.
Fig. 2 is a schematic view of the back surface structure of the wall of the moisture-proof and disease-proof device of the finishing veneer of the invention.
Fig. 3 is a schematic view illustrating the inner back structure of the moisture-proof and disease-preventing device for the decorated panel according to the present invention.
Fig. 4 is a schematic view showing the inner front structure of the moisture-proof and disease-proof device for the decoration veneer of the invention.
Fig. 5 is a schematic view of the inner front structure of the moisture-proof and disease-proof device for the decoration veneer of the invention.
FIG. 6 is an enlarged view of the structure of the fan blade of the moisture-proof and disease-resistant decoration board of the present invention.
Fig. 7 is an enlarged view of fig. 3 at B.
Fig. 8 is an enlarged view of fig. 4 at C.
Fig. 9 is an enlarged view of fig. 5 at D.
FIG. 10 is an enlarged view of the right side structure of the square box of the moisture-proof and disease-proof device for the finishing board of the present invention.
FIG. 11 is an enlarged view of the back structure of the square box of the moisture and disease preventing device for the finishing board of the present invention.
FIG. 12 is a left side perspective view of a square box of the finishing panel moisture and disease protection device of the present invention.
FIG. 13 is a schematic view showing the positional relationship between the square box and the pushing plate of the moisture-proof and disease-proof device for the decorated panel of the present invention.
In the figure: 1. a wall body; 2. a connecting plate; 3. a decorative panel; 4. a first mounting frame; 5. a vent hole; 6. a second mounting frame; 701. mounting a plate; 702. a connecting rod; 801. an air inlet; 802. an exhaust fan; 803. a connecting pipe; 804. a first rotating lever; 805. rotating the fan blades; 806. a first rotating plate; 807. a second rotating lever; 808. a sleeve; 809. pushing the pin; 810. a U-shaped frame; 811. a drying oven; 812. a linkage rod; 813. a limiting groove; 814. a limiting block; 901. a square box; 902. a square plate; 903. a limiting plate; (ii) a 905. A push rod; 906. an operation block; 904. a chute; 907. a bump; 1001. installing a pipe; 1002. pushing the pipe; 1003. a push plate; 1101. a strip plate; 1102. a first slide bar; 1103. a first return spring; 1201. a second slide bar; 1202. a second return spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1 to 5, the present invention provides a moisture-proof and disease-proof device for decoration panels, wherein a plurality of panels are installed on a wall body 1, a connecting plate 2 is arranged in each panel, the panels are fixed on the wall body 1 through the connecting plates 2, and the moisture-proof and disease-proof device comprises: the first mounting frame 4 is mounted on the panel and movably connected to the wall body 1; the second mounting frame 6 is positioned outside the second mounting frame 6 and fixed between the panel and the wall body 1; the first mounting frame 4 is connected to the wall 1 by a spring, so that the first mounting frame 4 can move up and down. The first mounting frame 4 and the second mounting frame 6 are respectively provided with a plurality of rows of vent holes 5 which are transversely arranged, the vent holes 5 on the two mounting frames are not aligned with each other, and after the first mounting frame 4 moves towards the wall body 1, the vent holes 5 on the two mounting frames are aligned with each other and are arranged on the air supply holes on the wall body 1; the air supply assembly is arranged on the wall body 1 and corresponds to the air supply hole; as shown in fig. 6, the rotary fan 805 is rotatably mounted on the wall 1 through a rotating shaft and corresponds to the air supply hole; as shown in fig. 7 and 8, the pushing pin 809 is elastically connected to the rotating shaft, and the pushing pin 809 can be connected to the rotating shaft by a spring; a linkage 812, slidably mounted on the wall 1 and drivingly connected to the pushing pin 809, wherein a distance between the linkage 812 and the pushing pin 809 is smaller than a longest distance between the pushing pin 809 and the spring, and is greater than a length between the pushing pin 809 and the spring, which is shortened to the shortest length, and the linkage 812 is L-shaped; the drying plate is fixed on the linkage rod 812 and corresponds to the air supply hole, a plurality of holes are formed in the drying plate, the drying plate is slidably mounted in the U-shaped frame 810, the upper end face of the drying plate is fixed on the lower end face of the linkage rod 812, the drying plate can be directly aligned to the air supply hole after the linkage rod 812 moves upwards, the drying plate directly falls into the U-shaped frame 810 after being reset, air discharged from the air supply hole is dried, the drying plate can be replaced by a drying box 811 with holes, and a drying agent is placed in the drying box 811; one end of the connecting rod 702 is fixed to the first mounting frame 4, the other end of the connecting rod 702 is in driving connection with the linkage 812, a sliding hole for the connecting rod 702 to move is formed in the second mounting frame 6, a mounting plate 701 is mounted on the side wall of the linkage 812, an inclined surface is arranged on the mounting plate 701, and the other end of the connecting rod 702 is located above the inclined surface of the mounting plate 701. According to the invention, the air in the panel is dried through the drying plate, and then the vent holes 5 of the first mounting frame 4 and the vent holes 5 of the second mounting frame 6 are aligned through the linkage effect of the rotating fan blades 805, so that the dry air between the panel and the wall is sent out, the air around the panel is dried, and the inside and the outside of the panel are effectively prevented from being corroded and damaged by moisture.
Preferably, as shown in fig. 8, the rotating shaft includes a first rotating rod 804 and a second rotating rod 807, the first end of the first rotating rod 804 is fixed with the rotating fan 805, the second end of the second rotating rod 807 is connected with the pushing pin 809, and the second end of the first rotating rod 804 is connected with the first end of the second rotating rod 807 through a one-way limiting component, so that the first rotating rod 804 and the second rotating rod 807 can rotate together or only one of them under different conditions.
Specifically, the one-way limiting assembly includes a first rotating plate 806 fixed to the second end of the first rotating rod 804 and a second rotating plate fixed to the first end of the second rotating rod 807, a plurality of limiting blocks 814 are elastically connected to an end surface of the first rotating plate 806 close to the second rotating plate in a diffused manner, limiting grooves 813 corresponding to the limiting blocks 814 are formed in the second rotating plate, and the limiting blocks 814 are provided with inclined surfaces for rotating the second rotating plate in one direction. Further, the limiting groove 813 has an inner wall matching with the inclined plane, and each limiting block 814 is elastically connected with the rotating plate, and can be connected with a spring selectively. The distance between the first rotating plate 806 and the second rotating plate is smaller than the original length of the spring and the width of the limiting block 814, and is larger than the width of the limiting block 814 when the spring is compressed to the shortest, so that when the limiting block 814 corresponds to the limiting groove 813, the limiting block 814 can be directly clamped into the limiting groove 813 by the spring force. The inclined surface on the stop block 814 enables the first rotating plate 806 to be driven by the second rotating plate in the forward rotating process, and is difficult to be driven by the second rotating plate in the reverse rotating process.
Preferably, a first sliding bar 1102 is fixed on the linkage 812, the first sliding bar 1102 is slidably connected to the wall 1 through a strip 1101, a first return spring 1103 is connected between the strip 1101 and the linkage 812, and the first return spring 1103 is wound around the outer periphery of the first sliding bar 1102. In this embodiment, two first sliding bars 1102 are slidably connected to the strip 1101, and springs are fixedly wound on the two first sliding bars 1102, so that when the linkage 812 moves upward, the linkage 812 is reset downward.
Preferably, as shown in fig. 8 to 12, a square box 901 is movably connected to the wall 1, the square box 901 corresponds to the first rotating plate 806, an operation block 906 for driving the connecting rod 702 to move is connected to the square box 901 in a driving manner, and the operation block 906 is movably connected to the wall 1 and located below the connecting rod 702. Further, the operation block 906 is vertically slidably connected to the wall 1 through a third sliding rod, the operation block 906 is movably connected to one end of a push rod 905, and the other end of the push rod 905 is fixed to the square box 901. Furthermore, an installation pipe 1001 with an expansion liquid therein is fixed to the wall body 1, a push tube 1002 is slidably mounted in the mounting tube 1001, the push tube 1002 is located below the linkage 812 and contacts with the linkage 812, a push plate 1003 is fixed to the push pipe 1002, a plurality of protrusions 907 are fixed to the outer circumferential surface of the first rotation plate 806, a limiting plate 903 matched with the bump 907 is elastically connected to the square box 901, the pushing plate 1003 is connected to the square box 901 and drives the limiting plate 903 to move away from the first rotating plate 806, as shown in fig. 13, one end of the pushing plate 1003 extends to the position below the bottommost limiting plate 903, and because the inclined plane of the limiting plate 903 is arranged upwards, when the pushing plate 1003 moves upwards, the pushing plate 1003 applies force to slide on the inclined plane, therefore, the limiting plate 903 gradually retracts inwards, and the square box 901 is driven to move towards the wall 1. Specifically, there is square board 902 through spring sliding connection on the square case 901, the distance of square board 902 to square case 901 backplate is shorter, install a plurality of limiting plates 903 on the square board 902, be equipped with the inclined plane on each limiting plate 903, this inclined plane is the slope upwards, the flabellum carries out antiport, because the orientation reason on inclined plane on the limiting plate 903, lug 907 card under this condition is great on limiting plate 903 application of force, make square board 902 remove in the square case 901, and square case 901 receives the elasticity influence of the spring at the back of square board 902 simultaneously, square case 901 will move towards 1 direction of wall body, thereby drive connecting rod 702 and remove towards wall body 1. Be fixed with catch bar 905 on the square case 901, sliding connection should operate block 906 on wall body 1, be equipped with the fourth inclined plane on the operation block 906, the fourth inclined plane is located the below of trace 812, the chute has been seted up on the operation block 906, catch bar 905 sliding connection is in the chute, it sets up with limiting plate 903 counterbalance to install a plurality of lugs 907 on first rotation board 806, form the canceling release mechanical system after first installing frame 4 removes, it is incomplete to reset after avoiding first installing frame 4 to dehumidify to accomplish, cause outside humid gas to pass the clearance entering of each first venthole and second venthole to the inside of second installing frame 6, make the inside of decoration panel 3 take place to milden and rot, further play the guard action to decoration panel 3. Simultaneously, the expansion liquid arranged inside the mounting pipe 1001 dissipates heat inside the decoration panel 3, so that the decoration panel 3 is cooled inside, and the protection effect on the decoration panel 3 is achieved.
Preferably, as shown in fig. 9 to 12, one end of a second sliding rod 1201 is slidably connected to one side of the square box 901 close to the wall 1, the other end of the second sliding rod 1201 is fixed to the wall 1, a second return spring 1202 is connected between the square box 901 and the wall 1, and the second return spring 1202 is wound around the outer periphery of the second sliding rod 1201. The number of the second sliding bars 1201 is two, and the second return spring 1202 can return the square box 901 after moving towards the wall 1.
Preferably, as shown in fig. 2, the air supply assembly includes an air inlet 801 opened on the wall 1, an air extractor 802 fixed on the back of the wall 1 corresponding to the position of the air inlet 801, and an air supply pipe communicated between the air extractor 802 and the air supply outlet. The exhaust fan 802 draws air around the decorative panel 3 into and sends the air to the air supply opening of each decorative panel 3 through the air supply pipe, and the mechanism inside the decorative panel 3 is provided with driving power while the moist air is dried.
Preferably, as shown in fig. 8, a plurality of sleeves are fixed to the second end of the second rotating rod 807 in the circumferential direction, and the pushing pins 809 are slidably fitted in the sleeves. The sleeve can effectively control the extension and retraction direction of the push pin 809.
The working principle is as follows: as shown in fig. 1 to 12, during operation, firstly, when the humidity of the external air environment is high, the exhaust fan 802 is activated, part of air is sucked from the air inlet 801 by the operation of the exhaust fan 802, and then is conveyed to the air supply opening through the air supply pipe, and enters the inside of each second mounting frame 6, when the air enters the inside of the second mounting frame 6, the fan blades are pushed to rotate in the forward direction under the action of air pressure, during the rotation of the rotating fan blades 805, the first rotating plate 806 is synchronously driven to rotate, during the rotation of the first rotating plate 806, each bump 907 on the first rotating plate 806 abuts against the inclined surface of the limiting plate 903 on the square box 901, the whole square plate 902 is pushed to slide inside the square box 901, and due to the orientation of the inclined surface on the limiting plate 903, the bump 907 exerts less force on the square plate 902, so that the whole square box 901 is difficult to be pushed backwards, and in the process of rotating the first rotating plate 806, each limiting groove 813 is pushed by each limiting block 814 on the first rotating plate 806, so that the second rotating rod 807 rotates, in the process of rotating the second rotating rod 807, the pushing pins 809 in each sleeve 808 on the second rotating rod 807 are enabled to slide outwards under the action of centrifugal force, in the process of sliding each pushing pin 809, each pushing pin 809 pushes the linkage 812 to move downwards, the drying plate is driven to slide in the U-shaped frame 810 through the movement of the linkage 812, along with the sliding of the drying plate, the drying plate slides to be aligned with the air supply outlet, in the process of air supply of the air supply pipe, the dried air is enabled to be emitted from each hole on the drying plate, so as to perform dehumidification and drying treatment on the inside of the second mounting frame 6, and in the process of moving the linkage 812, the mounting plates 701 on the linkage 812 are driven to perform synchronous motion, at the in-process of mounting panel 701 motion, the inclined plane that makes on the mounting panel 701 offsets with connecting rod 702, under the effect of power, promote connecting rod 702 and slide, at the gliding in-process of connecting rod 702, drive first installing frame 4 towards 1 direction removal of wall body in step, further ventilation hole 5 on each first installing frame 4 of messenger and the second installing frame 6 is linked together, discharge the moist gas of the inside entering of second installing frame 6, be convenient for more to the inside dehumidification operation of second installing frame 6 framves, the life of decoration panel 3 has been improved.
Then, after the ventilation holes 5 on the first mounting frame 4 and the second mounting frame 6 are communicated, the exhaust fan 802 is turned off to stop blowing, so that the first mounting frame 4 is reset (reset through the spring connected with the first mounting frame 4, that is, moved away from the wall 1), but the first mounting frame 4 is susceptible to external blocking during resetting to cause incomplete resetting (due to the fact that part of sundries existing during the blowing process are left to cause deviation in resetting of the first mounting frame 4, so that the ventilation holes 5 on the first mounting frame 4 and the second mounting frame 6 have intervals), so that the ventilation holes 5 on the first mounting frame 4 and the second mounting frame 6 are still communicated, external wind can pass through the ventilation holes 5 to enter the inside of the second mounting frame 6, and when the external wind passes through the second mounting frame 6 and enters the inside of the connecting pipe 803, the rotating fan 805 on the shaft is reversely rotated and pushed, in the process of the reverse rotation of the rotating fan 805, the inclined surface of each limit block 814 on the rotating plate is abutted against the limit groove 813, so that each limit block 814 is stressed to contract and cannot drive the rotating rod to rotate, in the process of the reverse rotation of the rotating fan 805, each bump 907 on the periphery of the first rotating plate 806 is abutted against each limit plate 903 on the square plate 902, due to the orientation of the inclined surface on the limit plate 903, the bump 907 in this case is clamped on the limit plate 903 to apply a large force, so that the square plate 902 moves towards the square box 901, and simultaneously the square box 901 is influenced by the elastic force of the spring on the back of the square plate 902 to push the whole square box 901 to move towards the wall 1, the push rod 905 is driven to move towards the wall 1 in the process of the movement of the square box 901, and under the interaction between the push rod 905 and the chute on the operation block 906, the whole operation block 906 is pushed to slide upwards, in the sliding process of the operation block 906, the inclined surface on the operation block 906 is abutted against the transmission rod above the operation block 906, so that the transmission rod is pushed to move in the direction away from the wall body 1, the first installation frame 4 on the transmission rod is pushed to reset under the pushing action of the fourth inclined surface and the transmission rod, a reset mechanism of the first installation frame 4 after use can be formed, incomplete reset after dehumidification of the first installation frame 4 is avoided, external wet gas penetrates through gaps of the first air outlet holes and the second air outlet holes 7 and enters the second installation frame 6, the interior of the decoration panel 3 body is mildewed, and the protection effect on the decoration panel 3 is further achieved;
finally, when the temperature inside the second mounting frame 6 is too high, the expansion liquid inside the mounting tube 1001 is heated to expand, the pushing tube 1002 is pushed to move, in the process of moving the pushing tube 1002, the mounting plate 701 is pushed by the pushing tube 1002 to extrude the first mounting frame 4, each first air outlet hole is communicated with each second air outlet hole, hot air inside the second mounting frame 6 is exhausted, in the process of moving the pushing tube 1002, as shown in fig. 13, the L-shaped pushing plate 1003 slides on the square box 901, through the interaction between the L-shaped pushing plate 1003 and each third inclined surface, one end of the pushing plate extends to the position below the bottommost limiting plate 903, because the inclined surface of the limiting plate 903 is arranged upwards, when the pushing plate 1003 moves upwards, the pushing plate 1003 applies force to slide on the inclined surface 1003, so that the limiting plate 903 gradually retracts inwards, the square plate 902 is pushed to slide to the inside the square box 901, and then drive square case 901 and remove to the direction of wall body 1, avoid carminative in-process to promote to rotate flabellum 805 and rotate and drive first installing frame 4 and reset, further be convenient for to the inside cooling operation of decoration panel 3 body, played the guard action to decoration panel 3.
According to the invention, the dehumidifying mechanism is arranged between the decoration panel and the wall body, so that the technical problem that the dehumidifying and anti-mildew mechanism is not arranged inside the decoration panel in the prior art is solved. The invention directly removes moisture in air from the interior of the decoration panel, prolongs the service life of the decoration panel, and installs the resetting device on the decoration panel, thereby preventing external moist air from directly entering the panel, ensuring the interior of the decoration panel to be dry, and simultaneously, the invention is also provided with the heat dissipation mechanism to reduce the temperature in the decoration panel, thereby playing the role of protecting the decoration panel.
The parts not involved in the present invention are the same as or can be implemented by the prior art. Although the present invention has been described with reference to a preferred embodiment, it should be understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. The utility model provides a dampproofing disease of fitment decorative board prevents becoming device which characterized in that includes: spring
The first mounting frame with the hole is mounted on the panel and movably connected to the wall;
the second mounting frame with the hole is positioned outside the second mounting frame and is fixed between the panel and the wall body;
an air supply hole arranged on the wall body;
the air supply assembly is arranged on the wall and corresponds to the air supply hole;
the rotating fan blades are rotatably arranged on the wall body through rotating shafts and correspond to the air supply holes;
the pushing pin is elastically connected to the rotating shaft;
the linkage rod is slidably mounted on the wall body and is in driving connection with the pushing pin;
the drying plate is fixed on the linkage rod and corresponds to the air supply hole;
one end of the connecting rod is fixed on the first mounting frame, the other end of the connecting rod is in driving connection with the linkage rod, and a sliding hole for the connecting rod to move is formed in the second mounting frame.
2. The moisture-proof disease-preventing device for the decoration veneer according to claim 1, wherein the rotating shaft comprises a first rotating rod and a second rotating rod, the first end of the first rotating rod is fixed with the rotating fan blade, the second end of the second rotating rod is connected with the pushing pin, and the second end of the first rotating rod is connected with the first end of the second rotating rod through a one-way limiting component.
3. The finishing panel moisture and disease prevention device as claimed in claim 2, wherein the one-way limiting assembly comprises a first rotating plate fixed to the second end of the first rotating rod and a second rotating plate fixed to the first end of the second rotating rod, a plurality of limiting blocks are elastically connected to an end surface of the first rotating plate close to the second rotating plate in a diffused manner, limiting grooves corresponding to the limiting blocks one by one are formed in the second rotating plate, and the limiting blocks are provided with inclined surfaces for rotating the second rotating plate in one direction.
4. The moisture-proof and disease-preventing device for the decoration veneer as claimed in claim 1, wherein a first slide bar is fixed on the linkage bar, the first slide bar is slidably connected to the wall body through a strip-shaped plate, a first return spring is connected between the strip-shaped plate and the linkage bar, and the first return spring is wound around the periphery of the first slide bar.
5. The finishing board moisture and disease prevention device as claimed in claim 3, wherein a square box is movably connected to the wall and corresponds to the first rotation plate, the square box is drivingly connected with an operation block for moving the connecting rod, and the operation block is movably connected to the wall and located on a spring below the connecting rod.
6. The finishing board moisture and disease prevention device as claimed in claim 5, wherein the operation block is vertically slidably connected to the wall body by a third slide bar, one end of a push rod is movably connected to the operation block, and the other end of the push rod is fixed to the square box.
7. The finishing board moisture and disease prevention device as claimed in claim 5, wherein one end of a second slide bar is slidably connected to one side of the square box near the wall, the other end of the second slide bar is fixed to the wall, and a second return spring is connected between the square box and the wall and wound around the periphery of the second slide bar.
8. The finishing board moisture-proof disease-prevention device as claimed in claim 5, wherein a mounting tube with an expansion liquid inside is fixed on the wall, a pushing tube is slidably mounted in the mounting tube, the pushing tube is located below the linkage rod and contacts with the linkage rod, a pushing plate is fixed on the pushing tube, a plurality of bumps are fixed on the outer circumferential surface of the first rotating plate, a limiting plate matched with the bumps is elastically connected to the square box, and the pushing plate is connected to the square box and drives the limiting plate to be away from the first rotating plate.
9. The finishing board moisture and disease prevention device of claim 1, wherein the air supply assembly comprises an air inlet provided on the wall, an exhaust fan fixed on the back of the wall corresponding to the air inlet, and an air supply pipe communicated between the exhaust fan and the air supply outlet.
10. The finishing panel moisture and disease prevention apparatus as claimed in claim 1, wherein a plurality of sleeves are fixed to a circumference of the second end of the second rotating shaft, and the pushing pins are slidably installed in the sleeves.
CN202210248395.1A 2022-03-14 2022-03-14 Dampproofing anti-pathological change device of fitment decorative panel Active CN114739156B (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1113167A (en) * 1997-06-25 1999-01-19 Fukuvi Chem Ind Co Ltd Wall panel and building using it
KR200300708Y1 (en) * 2002-09-27 2003-01-14 박철웅 Dual dampproof panel assembly for inner wall of structure
CN211372962U (en) * 2019-12-10 2020-08-28 中交第四公路工程局有限公司第七分公司 Dampproofing pathological change device of preventing of fitment decorative board
CN212431547U (en) * 2020-06-08 2021-01-29 中钊建设集团有限公司 Dampproofing pathological change device of preventing of fitment decorative board
CN215167455U (en) * 2020-12-30 2021-12-14 江苏理想空间装饰工程股份有限公司 Green building decorative plate with heat preservation effect
CN216007617U (en) * 2021-09-03 2022-03-11 浙江尚居环保科技股份有限公司 Dampproofing mould-proof wood-plastic decorative wallboard

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1113167A (en) * 1997-06-25 1999-01-19 Fukuvi Chem Ind Co Ltd Wall panel and building using it
KR200300708Y1 (en) * 2002-09-27 2003-01-14 박철웅 Dual dampproof panel assembly for inner wall of structure
CN211372962U (en) * 2019-12-10 2020-08-28 中交第四公路工程局有限公司第七分公司 Dampproofing pathological change device of preventing of fitment decorative board
CN212431547U (en) * 2020-06-08 2021-01-29 中钊建设集团有限公司 Dampproofing pathological change device of preventing of fitment decorative board
CN215167455U (en) * 2020-12-30 2021-12-14 江苏理想空间装饰工程股份有限公司 Green building decorative plate with heat preservation effect
CN216007617U (en) * 2021-09-03 2022-03-11 浙江尚居环保科技股份有限公司 Dampproofing mould-proof wood-plastic decorative wallboard

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