CN117699215B - Wooden pressfitting board case with dampproofing function of ventilating - Google Patents

Wooden pressfitting board case with dampproofing function of ventilating Download PDF

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Publication number
CN117699215B
CN117699215B CN202410169610.8A CN202410169610A CN117699215B CN 117699215 B CN117699215 B CN 117699215B CN 202410169610 A CN202410169610 A CN 202410169610A CN 117699215 B CN117699215 B CN 117699215B
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shell
adjacent
distributed
hole
support frame
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CN117699215A (en
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谭兵兵
谭琳琳
朱佳佳
商娟娟
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Zaozhuang Shunxing Wood Processing Co ltd
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Zaozhuang Shunxing Wood Processing Co ltd
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Abstract

The invention particularly relates to a wood pressfitting board storage box with a ventilation and moisture-proof function, which mainly aims at the technical field of storage. Including the shell, the shell rigid coupling has the support frame, the shell rigid coupling has airflow channel, airflow channel sets up and communicates there is the air exit, install the check valve in the airflow channel, the shell is provided with the vent with adjacent air exit intercommunication, be provided with the water conservancy diversion hole in the shell, the vent with it is adjacent water conservancy diversion hole intercommunication, the shell with be provided with the air current cavity with water conservancy diversion hole intercommunication between the support frame, the support frame rotates and is connected with the cylinder casing, the cylinder casing is provided with first hole, the cylinder casing is provided with the second hole. According to the invention, wind on the front side and the rear side is guided through the airflow channels, so that external wind around the wind guide channels enters the supporting frame through the ventilation openings, and ventilation in the storage process of the wood pressing plates is realized in environments with different wind directions.

Description

Wooden pressfitting board case with dampproofing function of ventilating
Technical Field
The invention relates to the technical field of storage, and particularly provides a wood pressfitting board storage box with ventilation and moisture-proof functions.
Background
The storage box of the wood laminated board is divided into a horizontal storage rack, a vertical storage rack and the like, the vertical storage rack is usually made of solid metal, the wood laminated board is stored in the vertical storage rack in a vertical arrangement and is placed in a linear array, the side faces of the wood laminated board face the front side and the rear side, the surface of the wood laminated board faces the left side and the right side, space can be saved, storage efficiency is improved, but because wind direction changes in coastal areas and the like are unusual, the vertically placed wood laminated board distributed in the linear array can be ventilated only between the side faces of the front side and the rear side, the other left side and the right side are surfaces of the wood laminated board, when wind direction comes from the left side and the right side, air cannot pass through the other wood laminated boards due to blocking of the leftmost side or the rightmost side, the wood laminated board cannot keep ventilation, and the vertical storage rack of the existing wood laminated board is exposed in air, and cannot isolate moisture in the outside air.
Disclosure of Invention
In order to overcome the defect that the ventilation cannot be kept when the source of wind direction is the surface side of the wood laminated plate, and the existing vertical storage rack of the wood laminated plate is exposed in the air and cannot isolate moisture in the outside air, the invention provides the wood laminated plate storage box with the ventilation and moisture-proof functions.
The technical implementation scheme of the invention is as follows: the utility model provides a wooden plywood deposit case with dampproofing function of ventilation, includes the shell, the rigid coupling has the support frame in the shell, the rigid coupling has the air current passageway of symmetric distribution on the shell, the air current passageway is close to one side of shell sets up and communicates there is the air exit that the linear array distributes, install the check valve of central symmetric distribution in the air current passageway, the shell is close to one side of air current passageway is provided with the vent with adjacent air exit intercommunication, be close to in the shell one side of vent is provided with the water conservancy diversion hole, the vent with be adjacent the water conservancy diversion hole intercommunication, the shell with be provided with the air current cavity that all communicates with the water conservancy diversion hole of symmetric distribution between the support frame, the support frame is close to one side rotation of air current cavity is connected with the cylindrical shell that the linear array distributes, the cylindrical shell is kept away from one side of air current cavity is provided with the first hole that the linear array distributes, the cylindrical shell is close to one side of air current cavity is provided with the second hole that the linear array and symmetric distribution, be provided with the active carbon in the cylindrical shell, the department of shell is provided with the water conservancy diversion hole, the casing is provided with the air vent in the cylindrical shell and is used for adjusting the shell circumference of the exhaust valve of the linear array, the exhaust valve is installed to the exhaust.
More preferably, symmetrically distributed diversion parts are arranged in the airflow channel, and the symmetrically distributed diversion parts are gradually close to the adjacent ventilation openings from the back side to the opposite sides of the symmetrically distributed diversion parts.
More preferably, the transmission assembly comprises motors which are distributed in a central symmetry manner, the motors which are distributed in a central symmetry manner are fixedly connected to the shell, the shell is provided with first chain transmission parts which are distributed in a linear array manner, an output shaft of the motor is in transmission connection with the adjacent first chain transmission parts, the first chain transmission parts are in transmission connection with the adjacent cylindrical shell, the shell is provided with second chain transmission parts which are distributed in a linear array manner, an output shaft of the motor is in transmission connection with the adjacent second chain transmission parts through a cone pulley group, and the transmission ratio of the cone pulley group is 2:1.
More preferably, a rotation shaft distributed in a linear array is rotatably connected to one side of the housing, which is close to the airflow channel, and the rotation shaft is in transmission connection with the adjacent second chain transmission piece, and a baffle is fixedly connected to the rotation shaft.
More preferably, a first limiting part and a second limiting part are respectively arranged on two sides of the baffle, and the first limiting part is in limiting fit with the adjacent second limiting part.
More preferably, the air heater is installed to the shell, the shell is close to the position of air heater installs the humidity monitor, the rigid coupling has the ventilating board in the shell, the air heater pass through the pipeline with the ventilating board intercommunication, the support frame be close to one side of air current cavity be provided with the same hole of cylinder casing group number, every group hole of support frame divide into the middle part hole that the straight line array distributes and the side hole of straight line array and symmetric distribution, the middle part hole of support frame with be adjacent first hole intercommunication cooperation, the side hole of support frame with be adjacent the second hole intercommunication cooperation, every group hole of support frame all with be adjacent the cylinder casing intercommunication cooperation, the middle part hole of support frame with the ventilating board intercommunication.
More preferably, the inner side of the shell, which is close to the airflow cavity, is provided with symmetrically distributed inclined planes, the side of the support frame, which is close to the airflow cavity, is provided with linearly distributed inclined planes, the position of the shell, which is close to the airflow cavity, is provided with a water flow channel, the inclined planes of the support frame, which are close to one side of the water flow channel, are in contact fit with the water flow channel, a collecting box is fixedly connected to one side of the shell, which is close to the water flow channel, and the water flow channel is communicated with the collecting box.
More preferably, the support frame is slidably connected with a linear array of racks, and the racks are provided with symmetrically distributed spring plates.
More preferably, the rack rigid coupling has the wedge of symmetric distribution, the shell is close to the linear array distribution one side rigid coupling of rack has linear array and symmetric distribution's fixed casing, sliding connection has the dead lever in the fixed casing, the dead lever with adjacent rigid coupling has the elastic component between the fixed casing, the dead lever is close to the adjacent one side of wedge is provided with wedge spacing portion, wedge spacing portion with adjacent wedge spacing cooperation.
More preferably, the device further comprises a symmetrically distributed fixing frame, wherein the symmetrically distributed fixing frames are fixedly connected to the shell, the rollers are rotationally connected to the fixing frames, the threaded rods are in threaded connection with the fixing frames, the threaded rods are rotationally connected with friction plates, and the friction plates are in friction fit with the adjacent rollers.
The beneficial effects obtained by the invention by adopting the structure are as follows: according to the invention, wind on the front side and the rear side is guided through the airflow channels, so that external wind around the wind guide channels enters the support frame through the ventilation openings, and ventilation in the storage process of the wood pressing plates is realized in environments with different wind directions; through the rotation of the cylindrical shell, the positions of the first hole and the second hole are changed up and down, when the first hole is positioned at the upper side, air flow with moisture enters the cylindrical shell through the first hole, the activated carbon is utilized to adsorb the moisture in the air flow, the ventilation of the wood laminated plate is kept, and the moisture in the air flow is prevented from entering the wood laminated plate in the supporting frame; the activated carbon is dried through the hot air blower, when the first hole is positioned at the lower side, the activated carbon is heated by hot air of the ventilation plate, moisture adsorbed in the activated carbon is dried, the recycling of the activated carbon is realized, and the influence of adsorption saturation of the activated carbon on adsorption efficiency in the long-term storage process of the wood laminated plate is avoided; the upper side of the support frame is obliquely arranged to guide the condensed water, so that water flow enters the collecting box along the water flow channel, the condensed water is collected, and the drying of the wood laminated board is kept; adjacent wood pressing plates are pressed by wedge-shaped limiting parts which are distributed vertically symmetrically, so that the wood pressing plates are prevented from being placed obliquely in the long-term storage process, and deformation damage caused by uneven stress of the wood pressing plates is avoided; through friction disc and gyro wheel frictional contact, prevent that the gyro wheel from removing, carry out temporary location to the device, after friction disc and gyro wheel lose contact, utilize the rotation of gyro wheel to the position that the adjusting device was put.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a perspective view of the housing of the present invention;
FIG. 3 is a schematic perspective view of a water flow channel according to the present invention;
FIG. 4 is a schematic perspective view of a support frame according to the present invention;
FIG. 5 is a cross-sectional view of a flow guiding portion of the present invention;
FIG. 6 is a schematic perspective view of a check valve according to the present invention;
FIG. 7 is a perspective view of a cylindrical housing of the present invention;
FIG. 8 is a schematic perspective view of a transmission assembly according to the present invention;
FIG. 9 is a schematic perspective view of a baffle plate according to the present invention;
FIG. 10 is a schematic perspective view of a ventilation board according to the present invention;
FIG. 11 is a schematic perspective view of a rack according to the present invention;
FIG. 12 is a schematic perspective view of a spring plate of the present invention;
FIG. 13 is a perspective view of a stationary housing of the present invention;
Fig. 14 is a perspective view of the holder of the present invention.
Meaning of reference numerals in the drawings: 11-shell, 101-support frame, 102-air flow channel, 103-exhaust outlet, 104-check valve, 105-ventilation opening, 1051-diversion hole, 1052-air flow cavity, 106-cylindrical shell, 107-first hole, 108-second hole, 109-activated carbon, 110-exhaust hole, 2-diversion part, 3-transmission component, 301-motor, 302-first chain transmission piece, 303-cone pulley group, 304-second chain transmission piece, 401-rotation shaft, 402-baffle, 501-first limit part, 502-second limit part, 601-hot air blower, 602-humidity monitor, 603-ventilation plate, 701-inclined plane, 702-water flow channel, 703-collection box, 801-placing frame, 802-spring plate, 901-wedge block, 902-fixed shell, 903-fixed rod, 904-wedge limit part, 1001-fixing frame, 1002-roller, 1003-threaded rod, 1004-friction plate.
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 apparent that the described embodiments are only some embodiments of the present invention, but not all embodiments of the present invention, and the present invention is mainly used for storing wood laminated boards, especially for storing in environments with changeable wind directions, and can better exert the storage advantages of the present device.
Example 1: 1-7, a wood pressing plate storage box with ventilation and moisture-proof functions comprises a shell 11, a control panel is arranged at the front side of the shell 11, a supporting frame 101 for storing the wood pressing plates is fixedly connected in the shell 11, air flow channels 102 which are symmetrically distributed on the left and right are fixedly connected on the shell 11, flow guiding parts 2 which are symmetrically distributed on the front and back are arranged in the air flow channels 102, the front side flow guiding parts 2 gradually approach to adjacent ventilation openings 105 from front to back, the rear side flow guiding parts 2 gradually approach to the adjacent ventilation openings 105 from back to front, a plurality of air outlet 103 which are linearly distributed are arranged and communicated with the right side of the left side air flow channel 102, a plurality of air outlet 103 which are linearly distributed are arranged and communicated with the left side of the right side air flow channel 102, two one-way valves 104 which are symmetrically distributed on the upper and lower centers are arranged in the air flow channel 102, when air flows from back to front, when the air flows from front to back, the lower one-way valve 104 circulates, the upper one-way valve 104 and the lower one-way valve 104 divide the adjacent air flow channel 102 into front and back two parts, the left side and the right side of the shell 11 are respectively provided with a vent 105 communicated with the adjacent air outlet 103, the air flow channel 102 is used for guiding the air flow at the front and back sides to enter the adjacent vent 105 through the air outlet 103, the left side and the right side of the shell 11 are respectively provided with a flow guiding hole 1051, the vent 105 is communicated with the adjacent flow guiding holes 1051, an air flow cavity 1052 communicated with the symmetrically distributed flow guiding holes 1051 is arranged between the shell 11 and the supporting frame 101, the upper side of the supporting frame 101 is rotationally connected with a plurality of cylindrical shells 106 distributed in a linear array, the lower side of the cylindrical shells 106 is provided with a plurality of first holes 107 distributed in a linear array, the upper side of the cylindrical shells 106 is provided with a plurality of second holes 108 distributed in a linear array and symmetrically, the inside of the cylindrical shell 106 is provided with activated carbon 109 for adsorbing moisture in the air flow, the circumferential position of the shell 11 is provided with a transmission assembly 3, the transmission assembly 3 is used for adjusting the cylindrical shell 106, the rear side of the shell 11 is provided with a plurality of exhaust holes 110 distributed in a linear array, the exhaust holes 110 are internally provided with one-way exhaust valves, when the air flow circulates outwards from the inside of the shell 11, the exhaust valves of the exhaust holes 110 circulate, and when the air flow circulates inwards from the outside of the shell 11, the exhaust valves of the exhaust holes 110 are closed.
As shown in fig. 5 and 8, the transmission assembly 3 includes two motors 301 symmetrically distributed around the center, the motors 301 are all fixedly connected to the housing 11, the motors 301 are electrically connected with the control panel, the housing 11 is provided with a plurality of first chain transmission members 302 distributed in a linear array, the output shaft of the motors 301 is in transmission connection with the adjacent first chain transmission members 302, the first chain transmission members 302 are composed of two transmission sprockets and chains, the output shaft of the motors 301 drives the adjacent transmission sprockets to rotate, the transmission sprockets drive the chains to rotate, all the transmission sprockets are sequentially driven to rotate, the first chain transmission members 302 are in transmission connection with the adjacent cylindrical shell 106, the cylindrical shell 106 is fixedly connected with the adjacent transmission sprockets on the first chain transmission members 302, the transmission sprockets respectively drive the adjacent cylindrical shell 106 to rotate, the housing 11 is provided with a plurality of second chain transmission members 304 distributed in a linear array, the output shaft of the motors 301 is in transmission connection with the adjacent second chain transmission members 304 through a cone pulley set 303, the second chain transmission members 304 are also composed of transmission sprockets and chains, the transmission ratio of the cone pulley set 303 is 2:1, the transmission gear ratio of the cone pulley set of the transmission gear wheel set of the cone pulley with the transmission gear set of the cone pulley 304 fixedly connected with the motor output shaft is the cone pulley set of the adjacent transmission sprocket gear set of the cone pulley, and the cone pulley is meshed with the transmission sprocket gear of the cone pulley set of the cone gear of the transmission gear of the cone gear set of the transmission gear is driven by the cone gear of the transmission gear of the cone gear, which is driven gear of the transmission gear is driven by the transmission gear, which is driven by 180 degrees, and the transmission gear is driven by the transmission gear, which is driven by the transmission gear, and the transmission gear is driven by rotation, and has rotation, and the transmission gear is driven.
As shown in fig. 2, 8 and 9, a plurality of rotating shafts 401 distributed in a linear array are rotatably connected to the left and right sides of the housing 11, the rotating shafts 401 are in transmission connection with the adjacent second chain transmission members 304, the rotating shafts 401 are fixedly connected with adjacent transmission chain wheels on the second chain transmission members 304, and the rotating shafts 401 are fixedly connected with baffles 402 for blocking air flow.
As shown in fig. 9, the front and rear sides of the baffle 402 are respectively provided with a first limiting portion 501 and a second limiting portion 502, the first limiting portion 501 is in limiting fit with the adjacent second limiting portion 502, and when the first limiting portion 501 is engaged with the adjacent second limiting portion 502, the plurality of baffles 402 distributed in a linear array block the air flow, so that the air flow is prevented from entering the support frame 101.
As shown in fig. 1, fig. 3, fig. 10 and fig. 11, the air heater 601 is installed to the shell 11, the air heater 601 is electrically connected with the control panel, the humidity monitor 602 is installed to the front side of the shell 11, the humidity monitor 602 is electrically connected with the control panel, the ventilation board 603 is fixedly connected in the shell 11, the ventilation board 603 is composed of a plurality of vertical boards on the upper side and hollow bases on the lower side, the number of the vertical boards of the ventilation board 603 is the same as that of the cylindrical shells 106, the air heater 601 is communicated with the ventilation board 603 through a pipeline, holes with the same number as that of the cylindrical shells 106 are arranged on the upper side of the support frame 101, each group of holes of the support frame 101 are uniformly divided into a middle hole distributed in a linear array and side holes distributed in a symmetrical manner, the middle hole of the support frame 101 is matched with the adjacent first holes 107 in a communicating manner, the side holes of the support frame 101 are matched with the adjacent second holes 108 in a communicating manner, when the first holes 107 are located on the lower side, the first holes 107 are aligned with the middle holes of the adjacent holes of the support frame 101, and when the second holes 108 are located on the lower side, the second holes 108 are located on the two sides of the support frame 101 aligned with the adjacent holes of the support frame 101.
As shown in fig. 3 and 9, an inclined plane 701 for guiding condensed water is symmetrically distributed on the upper side of the inside of the housing 11, a plurality of inclined planes are distributed on the upper side of the supporting frame 101 in a linear array, a water flow channel 702 is arranged on the rear side of the housing 11, the rear side of the inclined plane of the supporting frame 101 is in contact fit with the water flow channel 702, the condensed water flows back into an upper opening of the water flow channel 702 through the inclined plane of the supporting frame 101, a collecting box 703 is fixedly connected on the rear side of the housing 11, and the water flow channel 702 is communicated with the collecting box 703.
When an operator needs to store the wood laminated board, the operator places the wood laminated board in the support frame 101, so that the wood laminated board is in a vertical linear array and distributed in the support frame 101, then the operator opens the motors 301 on the front side and the rear side through the control panel, the output shafts of the motors 301 rotate to drive adjacent first chain driving pieces 302 to rotate, so that the first chain driving pieces 302 distributed in the linear array all rotate (the output shafts of the motors 301 drive adjacent driving sprockets to rotate, the driving sprockets drive chains to rotate, and sequentially drive all the driving sprockets to rotate), the first chain driving pieces 302 drive the cylindrical shell 106 to rotate 180 degrees, the cylindrical shell 106 rotates 180 degrees to drive the second holes 108 on the upper side of the cylindrical shell to rotate to the lower side (the initial positions of the first holes 107 and the second holes 108 are the lower sides of the adjacent cylindrical shell 106, the second holes 108 are located on the upper sides of the adjacent cylindrical shell 106), and the cylindrical shell 106 rotates 180 degrees to drive the first holes 107 on the lower sides to rotate to the upper sides, so that the second holes 108 align and circulate with the adjacent holes on the support frame 101.
When the output shaft of the front side motor 301 rotates, the output shaft of the motor 301 drives the second chain driving member 304 to rotate through the adjacent cone pulley group 303, so that the second chain driving members 304 distributed in a linear array all rotate, the second chain driving member 304 drives the adjacent rotating shaft 401 to rotate, the rotating shaft 401 drives the adjacent baffle 402 to rotate, the baffle 402 rotates by 90 degrees (the baffle 402 is in an initial state to block the adjacent ventilation opening 105), the first limiting part 501 and the adjacent second limiting part 502 gradually lose engagement, and the baffle 402 distributed in the linear array loses blocking to the adjacent ventilation opening 105.
When the baffle plate 402 loses the blocking of the adjacent ventilation openings 105, if the wind direction is blown from the left and right sides at this time, the external wind blown from the left and right sides enters the adjacent diversion holes 1051 through the ventilation openings 105, taking the case of the external wind blown from the left side as an example, the external wind at the left side enters the airflow cavity 1052 through the diversion holes 1051, then the airflow enters the adjacent cylindrical shell 106 through the first holes 107, the activated carbon 109 in the cylindrical shell 106 adsorbs the moisture contained in the airflow, the dried airflow enters the support frame 101 through the second holes 108, the ventilation of the wood laminated plate is maintained, and the moisture in the airflow is prevented from entering the wood laminated plate in the support frame 101, at this time, the exhaust valve of the exhaust hole 110 circulates, a part of the air is finally exhausted through the exhaust hole 110, and another part of the air is sequentially exhausted through the diversion holes 1051 at the right side and the ventilation openings 105, and the steps are the same as the steps described above if the external wind comes from the right side.
When external air blows from front and back sides, taking front side incoming air as an example, if front side air quantity is smaller, air flow directly enters the interior of the cylindrical shell through an opening at the front side of the air flow channel 102, then the air flow flows to the adjacent exhaust outlet 103 along the guide part 2 of the air flow channel 102, and the guide part 2 at the front half part of the air flow channel 102 gradually inclines to the adjacent ventilation opening 105 from front to back, so that the air flow flows to the ventilation opening 105 along the guide part 2, the air flow enters the adjacent guide holes 1051 through the ventilation opening 105, the steps are repeated, the air flow sequentially enters the cylindrical shell 106 through the air flow cavity 1052 and the first holes 107 and contacts with the activated carbon 109, the activated carbon 109 in the cylindrical shell 106 adsorbs moisture contained in the air flow, the dried air flow enters the support frame 101 through the second holes 108, ventilation of the wooden laminated board is kept, and the moisture in the air flow is prevented from entering the wooden laminated board in the support frame 101, when the front side air quantity is larger, the air flow passes through the adjacent one-way valve 104 at the lower side during extrusion, the air flow passes through the air flow channel 102, the air flow channel 102 is prevented from being discharged, and the air flow enters the cylindrical shell 106, and the excessive efficiency of the activated carbon 109 is prevented from being excessively adsorbed in the cylindrical shell, and the cylindrical shell is reduced.
When the humidity monitor 602 detects that the humidity of the activated carbon 109 is too high, the humidity monitor 602 sends out a command to control the opening of the air heater 601 through the control panel, and the control panel controls the output shaft of the motor 301 to reversely rotate and reset, the output shaft of the motor 301 drives the cylindrical shell 106 distributed in a linear array to rotate 180 degrees through the first chain transmission piece 302 distributed in the linear array, the first hole 107 rotates to the lower side of the adjacent cylindrical shell 106, the second hole 108 rotates to the upper side of the adjacent cylindrical shell 106, at the moment, the first hole 107 is aligned and communicated with the adjacent holes on the support frame 101, and the holes communicated with the first hole 107 are simultaneously communicated with the ventilation plate 603, so that the air heater 601 generates hot air and supplies the hot air into the ventilation plate 603 through a pipeline, and then the hot air enters the adjacent cylindrical shell 106 through the first hole 107 to heat the hot air, so that the activated carbon 109 is dried by adsorbed moisture, the activated carbon 109 is repeatedly used, and adsorption saturation of the activated carbon 109 is avoided in the process of long-term storage of the wooden compression plate, and adsorption efficiency is affected.
When the control panel controls the output shaft of the motor 301 to reversely rotate and reset, the output shaft of the motor 301 drives the second chain transmission part 304 to reversely rotate and reset through the adjacent cone pulley group 303, so that the second chain transmission parts 304 distributed in the linear array rotate and reset, the second chain transmission part 304 drives the adjacent rotating shaft 401 to rotate and reset, the rotating shaft 401 drives the adjacent baffle 402 to rotate and reset, the baffle 402 rotates for 90 DEG to reset, the baffle 402 distributed in the linear array blocks the adjacent ventilation opening 105, and when the baffle 402 rotates for 90 DEG to reset, the first limiting part 501 and the adjacent second limiting part 502 are gradually engaged and locked to seal the ventilation opening 105, the air flow is prevented from entering the ventilation opening 105, and the air flow with moisture is prevented from entering the ventilation opening 105 to influence the drying efficiency in the process of drying the activated carbon 109.
In the process of storing the wood laminated board, since the upper side of the supporting frame 101 is an inclined surface, moisture in the air current condenses and flows into the water flow channel 702 along the inclined surface of the upper side of the supporting frame 101, and air generated in the drying process of the activated carbon 109 ascends and condenses on the inclined surface 701 which is distributed in a bilateral symmetry manner, condensed water flows to the left and right sides along the inclined surface 701 which is distributed in a bilateral symmetry manner and drops onto the inclined surface of the supporting frame 101, after the condensed water flows into the water flow channel 702 along the inclined surface of the supporting frame 101, the water flow enters the collecting box 703 along the water flow channel 702 to collect the condensed water, the drying of the wood laminated board is kept, and hot air is discharged outwards to the air flow cavity 1052 through the adjacent second holes 108 after entering the cylindrical shell 106, and then the hot air is discharged from the collecting box 703 through the water flow channel 702.
After the activated carbon 109 is dried, the humidity monitor 602 turns off the air heater 601 through the control panel, and the output shaft of the motor 301 drives the second chain transmission member 304 to rotate again, so that the baffle 402 distributed in the linear array loses obstruction to the adjacent ventilation openings 105, the steps are repeated, ventilation is performed in the support frame 101 again, moisture in the air flow is adsorbed, after the device is stopped, an operator turns off the power supply of the device, then the wood pressing plate is taken out, the inside of the device is cleaned, and the device is kept dry, so that the next use is facilitated.
Example 2: on the basis of embodiment 1, as shown in fig. 4 and fig. 11-13, a plurality of racks 801 for storing wood press plates are slidably connected to the supporting frame 101, wherein the racks 801 are distributed in a linear array, each rack 801 is used for storing a plurality of wood press plates, two spring plates 802 are symmetrically distributed up and down, each rack 801 is provided with a spring, each spring plate 802 is composed of a spring and a rectangular plate, and after the wood press plates are placed in the racks 801, the two spring plates 802 press the adjacent wood press plates forward to fix the wood press plates.
As shown in fig. 11-13, two wedge blocks 901 which are vertically and symmetrically distributed are fixedly connected to a placing rack 801, a plurality of fixing shells 902 which are linearly arrayed and symmetrically distributed are fixedly connected to the rear side of the inside of a shell 11, fixing rods 903 which are used for pressing wood pressing plates are connected in a sliding manner in the fixing shells 902, elastic pieces are fixedly connected between the fixing rods 903 and the adjacent fixing shells 902, wedge limiting portions 904 are arranged on the rear side of the fixing rods 903, the wedge limiting portions 904 are in limiting fit with the adjacent wedge blocks 901, when the placing rack 801 moves backwards, the adjacent wedge blocks 901 are driven to move backwards, the wedge blocks 901 are enabled to contact with the wedge limiting portions 904 and then press the wedge limiting portions 904 to move rightwards, the wedge limiting portions 904 drive the fixing rods 903 to move rightwards, the adjacent wood pressing plates are prevented from being placed and deflected in a long-term storage process, and uneven stress of the wood pressing plates is prevented from deforming and damaging.
When an operator needs to fix the placed wood laminated plates, the operator pulls out the placing frame 801 forward (the initial position of the placing frame 801 is located in the supporting frame 101), then the operator places the wood laminated plates on the placing frame 801 in a vertical state in a linear array, the operator presses one wood laminated plate to compress the symmetrically distributed spring plates 802, the springs of the spring plates 802 are compressed and contracted, then the springs of the spring plates 802 pop out to compress the wood laminated plates, after the wood laminated plates are filled, the operator moves the placing frame 801 backwards to push into the supporting frame 101, when the placing frame 801 moves backwards, the adjacent wedge blocks 901 are driven to move backwards, after the wedge blocks 901 are contacted with the wedge limiting parts 904, the wedge limiting parts 904 are pressed by the wedge blocks 901 to move backwards, the wedge limiting parts 904 are driven to move rightwards, the fixing rods 903 are driven to move rightwards, the elastic pieces between the fixing rods 903 and the adjacent fixing shells 902 are stretched, the wedge limiting parts 904 which are distributed vertically symmetrically compress the adjacent wood laminated plates, and the wood laminated plates are prevented from being placed in a long-term storage process, and the wood laminated plates are prevented from being unevenly stressed and damaged.
Example 3: on the basis of embodiment 2, as shown in fig. 1,2 and 14, the device further comprises four symmetrically distributed fixing frames 1001, the four symmetrically distributed fixing frames 1001 are fixedly connected to the lower side of the shell 11, the fixing frames 1001 are rotationally connected with rollers 1002, the fixing frames 1001 are in threaded connection with threaded rods 1003, the threaded rods 1003 are rotationally connected with friction plates 1004, the friction plates 1004 are in friction fit with adjacent rollers 1002, the friction plates are in friction contact with the rollers to prevent the rollers from moving, the device is temporarily positioned, and when the friction plates lose contact with the rollers, the rollers are rotated to facilitate the adjustment of the placement position of the device.
When the device is required to be moved, an operator rotates the threaded rod 1003, the threaded rod 1003 moves upwards, the threaded rod 1003 drives the adjacent friction plate 1004 to move upwards, the friction plate 1004 loses contact with the adjacent roller 1002, the operator moves the shell 11 through external equipment, the roller 1002 rotates so as to adjust the placement position of the device, after the device moves to a required position, the operator reversely rotates the threaded rod 1003, the threaded rod 1003 drives the friction plate 1004 to reset, the friction plate 1004 is in friction contact with the roller 1002, the roller 1002 is prevented from moving, the device is temporarily positioned, and then the wooden laminated plate is stored by repeating the steps.
After the wooden pressfitting board is stored by stopping using the device, an operator turns off the power supply of the device, then takes out the wooden pressfitting board and cleans the inside of the device, so that the device is kept dry, and is convenient for the next use.
In summary, the above embodiments are only preferred embodiments of the present invention, and are not intended to limit the scope of the present invention.

Claims (5)

1. Wooden pressfitting board case of depositing with dampproofing function of ventilation, characterized by: the wood pressure plate is fixedly connected with a supporting frame (101) in the housing (11), the wood pressure plate is vertically linearly distributed in the supporting frame (101), an air flow channel (102) which is symmetrically distributed left and right is fixedly connected on the housing (11), an air outlet (103) which is linearly distributed in an array manner is arranged and communicated with one side of the air flow channel (102) close to the housing (11), a one-way valve (104) which is symmetrically distributed in the center is arranged in the air flow channel (102), a ventilation opening (105) which is communicated with the adjacent air outlet (103) is arranged on one side of the housing (11) close to the air flow channel (102), a diversion part (2) which is symmetrically distributed front and back is gradually close to the adjacent ventilation opening (105) from front to back, a diversion hole (1052) is arranged on one side of the housing (11) close to the ventilation opening (105), a diversion hole (105) which is symmetrically distributed with the adjacent ventilation opening (105) is communicated with the supporting frame (101) from front to back, the diversion part (2) is gradually distributed between the diversion hole (105) and the air flow channel (101), the support frame (101) is close to one side of the airflow cavity (1052) and is rotationally connected with a cylindrical shell (106) distributed in a linear array, a first hole (107) distributed in a linear array is formed in one side, away from the airflow cavity (1052), of the cylindrical shell (106), a second hole (108) which is in a linear array and is symmetrically distributed is formed in one side, close to the airflow cavity (1052), of the cylindrical shell (106), active carbon (109) is arranged in the cylindrical shell (106), a transmission assembly (3) for adjusting the cylindrical shell (106) is arranged at the circumferential position of the shell (11), exhaust holes (110) distributed in a linear array are formed in the shell (11), and exhaust valves are arranged in the exhaust holes (110);
The transmission assembly (3) comprises motors (301) which are distributed in a central symmetry mode, the motors (301) which are distributed in a central symmetry mode are fixedly connected to the shell (11), the shell (11) is provided with first chain transmission pieces (302) which are distributed in a linear array mode, an output shaft of each motor (301) is in transmission connection with the adjacent first chain transmission pieces (302), the first chain transmission pieces (302) are in transmission connection with the adjacent cylindrical shell (106), the shell (11) is provided with second chain transmission pieces (304) which are distributed in a linear array mode, an output shaft of each motor (301) is in transmission connection with the adjacent second chain transmission pieces (304) through a cone pulley set (303), and the transmission ratio of the cone pulley set (303) is 2:1;
A rotating shaft (401) which is distributed in a linear array is rotationally connected to one side, close to the airflow channel (102), of the shell (11), the rotating shaft (401) is in transmission connection with the adjacent second chain transmission piece (304), and a baffle plate (402) is fixedly connected to the rotating shaft (401);
a first limiting part (501) and a second limiting part (502) are respectively arranged on two sides of the baffle (402), and the first limiting part (501) is in limiting fit with the adjacent second limiting part (502);
The utility model discloses a fan heater, including shell (11), humidity monitor (602) is installed to the position that shell (11) is close to shell (601), rigid coupling has ventilation board (603) in shell (11), heat exchanger (601) pass through the pipeline with ventilation board (603) intercommunication, support frame (101) are close to one side of air current cavity (1052) be provided with the same hole of cylinder casing (106) group number, every group hole of support frame (101) divide into the middle hole and the side hole of sharp array and the symmetric distribution of sharp array distribution, the middle hole and the adjacent of support frame (101) first hole (107) intercommunication cooperation, the side hole of support frame (101) with adjacent second hole (108) intercommunication cooperation, every group hole of support frame (101) all with adjacent cylinder casing (106) intercommunication cooperation, the middle hole of support frame (101) with ventilation board (603) intercommunication.
2. The wood pressing plate storage box with ventilation and moisture-proof functions as claimed in claim 1, wherein: the utility model discloses a water-saving device for the air flow of the air conditioner, including shell (11), support frame (101), air current cavity (1052) and air current channel (702), shell (11) are inside be close to one side of air current cavity (1052) is provided with inclined plane (701) of symmetric distribution, support frame (101) are close to one side of air current cavity (1052) is provided with the inclined plane of linear array distribution, shell (11) are close to the position of air current cavity (1052) is provided with water current channel (702), the inclined plane of support frame (101) is close to one side of water current channel (702) rather than contact cooperation, shell (11) are close to one side rigid coupling of water current channel (702) has collection box (703), water current channel (702) with collection box (703) intercommunication.
3. The wooden laminated board storage box with ventilation and moisture-proof functions as claimed in claim 2, wherein: the support frame (101) is connected with a rack (801) distributed in a linear array in a sliding mode, and the rack (801) is provided with symmetrically distributed spring plates (802).
4. A wood laminated board storage box with ventilation and moisture-proof functions as claimed in claim 3, characterized in that: the utility model discloses a rack, including rack (801), shell (11), fixed casing (902), fixed casing (903) are connected with fixed casing (902), rack (801) rigid coupling has wedge (901) of symmetric distribution, shell (11) are close to the one side rigid coupling of rack (801) of linear array distribution has linear array and symmetric distribution, sliding connection has dead lever (903) in fixed casing (902), dead lever (903) and adjacent rigid coupling has the elastic component between fixed casing (902), dead lever (903) are close to adjacent one side of wedge (901) is provided with wedge spacing portion (904), wedge spacing portion (904) with adjacent wedge (901) spacing cooperation.
5. The wooden laminated board storage box with ventilation and moisture-proof functions as claimed in claim 2, wherein: the novel roller wheel is characterized by further comprising symmetrically distributed fixing frames (1001), wherein the symmetrically distributed fixing frames (1001) are fixedly connected to the outer shell (11), the roller wheels (1002) are rotationally connected to the fixing frames (1001), threaded rods (1003) are connected to the fixing frames (1001) in a threaded mode, friction plates (1004) are rotationally connected to the threaded rods (1003), and the friction plates (1004) are in friction fit with the adjacent roller wheels (1002).
CN202410169610.8A 2024-02-06 2024-02-06 Wooden pressfitting board case with dampproofing function of ventilating Active CN117699215B (en)

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CN118083331A (en) * 2024-04-28 2024-05-28 山东华帅包装有限公司 Paperboard preservation device for packaging cartons

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WO2016197239A1 (en) * 2015-06-11 2016-12-15 Hubert Gervais Autonomous air vent closure system
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CN117256671A (en) * 2023-10-16 2023-12-22 云南昆茂现代农业有限公司 Intelligent fruit and vegetable precooling equipment

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