CN114352160B - Hidden timber structure - Google Patents

Hidden timber structure Download PDF

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Publication number
CN114352160B
CN114352160B CN202210017743.4A CN202210017743A CN114352160B CN 114352160 B CN114352160 B CN 114352160B CN 202210017743 A CN202210017743 A CN 202210017743A CN 114352160 B CN114352160 B CN 114352160B
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CN
China
Prior art keywords
wooden door
cavity
sliding
guide rail
closed cavity
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CN202210017743.4A
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Chinese (zh)
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CN114352160A (en
Inventor
潘为民
陈寒超
姚运然
陈磊
周小龙
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Quzhou Jiyu Network Technology Co ltd
ZHEJIANG JINKAI DOOR CO Ltd
Original Assignee
Quzhou Jiyu Network Technology Co ltd
ZHEJIANG JINKAI DOOR CO Ltd
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Priority to CN202210017743.4A priority Critical patent/CN114352160B/en
Publication of CN114352160A publication Critical patent/CN114352160A/en
Application granted granted Critical
Publication of CN114352160B publication Critical patent/CN114352160B/en
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Abstract

The invention discloses a hidden type wooden door structure, and belongs to the field of hidden type wooden doors. A hidden wooden door structure comprises a wall body, wooden doors, guide rails and a self-cleaning device; the wooden door is arranged in the wall body in a sliding manner, a space formed by sliding the wooden door in the wall body is a closed cavity, the wooden door slides above the guide rail, a functional cavity communicated with the outside is formed at the bottom of the wooden door, the guide rail is fixed in the ground, and a sliding groove is formed in the upper surface of the installation position of the guide rail; the self-cleaning device comprises a sealing adhesive strip fixed at one end of the wooden door at the closed cavity, and a ventilation channel and an air blowing port which are arranged in a wall body and communicated with the closed cavity, wherein the sealing adhesive strip is in sliding connection with the inner wall of the closed cavity, and the air at the joint cannot pass through.

Description

Hidden timber structure
Technical Field
The invention relates to the field of hidden wooden doors, in particular to a hidden wooden door structure.
Background
The door has the important position in family life, can be called as being indispensable at home, especially timber, wide application is in indoor room door, along with people's living standard's improvement, the timber is usually made to hide in the wall body when opening, the timber is integrated into one piece with the wall body when closing, improve whole pleasing to the eye degree, but traditional hidden timber is because hiding in the wall body, after long-time use, its surface can adhere to a large amount of dust, influence its aesthetic degree, also can have a large amount of dust in the guide rail spout that is used for sliding simultaneously, when the timber switch, raise the dust and pollute the indoor environment, if regularly clear up, increase user's intensity of labour for hidden timber's use experience is relatively poor.
Disclosure of Invention
The invention aims to provide a hidden type wooden door structure, which solves the problems that after the wooden door proposed in the background technology is used for a long time, a large amount of dust can be remained on the surface of the wooden door and in a guide rail chute for sliding the wooden door, and when a user opens and closes the door, the dust is very easy to raise, and the indoor environment is polluted.
In order to achieve the above purpose, the present invention provides the following technical solutions: a hidden wooden door structure comprises a wall body, wooden doors, guide rails and a self-cleaning device; the wooden door is arranged in the wall body in a sliding manner, a space formed by sliding the wooden door in the wall body is a closed cavity, the wooden door slides above the guide rail, a functional cavity communicated with the outside is formed at the bottom of the wooden door, the guide rail is fixed in the ground, and a sliding groove is formed in the upper surface of the installation position of the guide rail; the self-cleaning device comprises a sealing strip fixed at one end of the wooden door located in the closed cavity, and a ventilation channel and an air blowing port which are arranged in the wall body and communicated with the closed cavity, wherein the sealing strip is in sliding connection with the inner wall of the closed cavity, gas at the joint cannot pass through the sealing strip, the ventilation channel is communicated with the closed cavity through the end wall of one side of the closed cavity far away from the wooden door, the air blowing port is symmetrically distributed on the end walls of two sides of the closed cavity relative to the wooden door, and the air blowing port is communicated with the ventilation channel; the self-cleaning apparatus further includes a wiper assembly for wiping the sliding channel in the rail and a collection assembly for collecting dust in the rail.
Preferably, the functional cavity is internally fixed with a working box with a hollow interior, the wiping component is arranged in the working box and comprises a connecting frame, a first hinging rod, a scraping block, a second hinging rod and a driving piece; the scraping block is arranged in the sliding groove of the guide rail in a sliding way, one end of the first hinging rod is hinged with the upper side of the installation position of the scraping block, the other end of the first hinging rod extends into the second hinging rod and is in sliding connection with the second hinging rod, one end of the second hinging rod, which is far away from the scraping block, is hinged with one side of the connecting frame, which faces the scraping block, the connecting frame is rotationally connected with the driving piece, a connecting spring is installed at the joint of the first hinging rod and the second hinging rod, one end of the connecting spring is in butt joint with one side, which is far away from the scraping block, of the first hinging rod, and the other end of the connecting spring is in butt joint with the inner end wall of the second hinging rod; the driving piece is used for driving the connecting frame to move horizontally through the horizontal movement of the wooden door.
Preferably, the two sides of the working box are symmetrically provided with driving blocks fixedly connected with the functional cavity, the driving piece comprises a rotating wheel, a rotating shaft, a driven shaft, a rotary drum shaft, a sliding rod and a connecting rod, the rotating wheel is rotatably arranged in the driving block, the lower side of the rotating wheel is positioned in a sliding groove of the guide rail, the rotating shaft is fixed at the axle center of the rotating wheel, the rotating shaft is rotatably connected with the driving block, the driven shaft is arranged above the rotating shaft and is mutually perpendicular to the rotating shaft, one end of the driven shaft is connected with the rotating shaft through a gear pair, and the other end of the driven shaft extends into the working box and is rotatably connected with the working box; the rotary drum shaft is rotationally arranged in the working box and is positioned above the driven shaft, the rotary drum shaft and the driven shaft are mutually parallel and are connected through a group of belt pulleys, the rotary drum is fixed on the rotary drum shaft, a spiral groove is formed in the outer surface of the rotary drum, one end of the sliding rod is slidingly arranged in the groove, the other end of the sliding rod is fixedly connected with the connecting rod, and one end of the connecting rod, far away from the sliding rod, is rotationally connected with the connecting frame;
preferably, a baffle plate is vertically arranged between the connecting frame and the rotary drum, the baffle plate vertically separates the space where the connecting frame is positioned from the space where the rotary drum is positioned, the upper end of the baffle plate is fixedly connected with the working box, a communicating groove with the same width as the outer diameter of the connecting rod is arranged on the baffle plate, the connecting rod passes through the baffle plate through the communicating groove, and the connecting rod is in sliding connection with the linkage groove.
Preferably, the collecting assembly comprises an elastic sealing plate, a sealing sliding block, a reset spring, a pull rope and a dust collection piece; the wall body is internally provided with a collecting cavity positioned at one side of the closed cavity far away from the wooden door, the elastic sealing plates are symmetrically fixed on the end walls at the two sides of the middle part of the collecting cavity, the elastic sealing plates deform downwards only under the action of external force, the elastic sealing plates recover to an initial state after the external force is removed, the opposite end surfaces of the symmetrical elastic sealing plates prop against the gas and cannot pass through the elastic sealing plates, and the gas can pass through the elastic sealing plates after the elastic sealing plates deform; the sealing sliding block slides back and forth on the part above the elastic sealing plate in the collecting cavity, the sealing sliding block is fixedly connected with one end of the pull rope, the other end of the pull rope extends into the sealed cavity and is fixedly connected with the sealing strip, and the reset spring is arranged between the upper end face of the sealing sliding block and the upper end wall of the collecting cavity; the dust collection piece sucks dust in the guide rail into the collection cavity to collect the dust by utilizing the atmospheric pressure.
Preferably, the dust collection piece comprises an exhaust pipe, an air suction pipe, a one-way flow device and a dust collection opening, the dust collection opening is fixed at the lower side of the scraping block and is not contacted with the guide rail, the one-way flow device is arranged in the functional cavity, one end of the air suction pipe is connected with the dust collection opening, the other end of the air suction pipe is connected with the one-way flow device, one end of the exhaust pipe is connected with the one-way flow device, the other end of the exhaust pipe extends into the collecting cavity and is connected with the sealing sliding block, and one end of the exhaust pipe connected with the collecting cavity is communicated with the sealing sliding block.
Preferably, the timber is provided with the filling space that is located function chamber top in, and the filling space intussuseption is filled with the sound insulation material.
Preferably, the length of the vertical direction of the air blowing port is the same as that of the vertical direction of the wooden door, at least three air blowing ports are arranged on one side, and the length of the vertical direction of the communication part of the ventilation channel and the closed cavity is the same as that of the vertical direction of the closed cavity.
Compared with the prior art, the invention has the beneficial effects that:
1. By utilizing the air pressure principle, when the wooden door is opened, the hidden part of the wooden door is subjected to air blowing operation on the surface of the wooden door through air, so that dust cannot adhere to the surface of the wooden door, a user is not required to clean the wooden door, and the time of the user is saved.
2. When the user slides the timber, scrape the piece and the friction of guide rail sliding groove wall through scraping, scrape down the dust from the sliding groove wall, then utilize atmospheric pressure, inhale the collection chamber with the dust and store, reached self-cleaning's purpose, easily produced the problem of ash when having solved the user switch door.
3. When the user uses the timber, the timber can clean timber surface and guide rail spout in, makes the user need not regularly frequent clean the timber, has improved user's use experience, has also reduced user's intensity of labour simultaneously.
Drawings
FIG. 1 is a schematic diagram of the structure of the present invention;
FIG. 2 is a cross-sectional view of the structure of FIG. 1 A-A;
FIG. 3 is a cross-sectional view of the structure of FIG. 1B-B;
FIG. 4 is a cross-sectional view of the structure of FIG. 3C-C;
FIG. 5 is an enlarged view of the structure at D of FIG. 1;
fig. 6 is a schematic perspective view of the installation position of the present invention.
In the figure: 10. a wall body; 11. a wooden door; 12. a guide rail; 13. filling the space; 14. a closed cavity; 15. a functional cavity; 20. sealing and sticking strips; 21. a vent passage; 22. an air blowing port; 30. a collection chamber; 31. an elastic sealing plate; 32. a seal slider; 33. a return spring; 34. a pull rope; 35. an exhaust pipe; 36. an air suction pipe; 37. a unidirectional flow device; 40. a rotating wheel; 41. a driving block; 42. a working box; 43. a rotating shaft; 44. a driven shaft; 45. a rotating drum; 46. a rotor shaft; 47. a slide bar; 48. a connecting rod; 49. a baffle plate; 50. a connecting frame; 51. a first hinge lever; 52. a dust collection port; 53. scraping the block; 54. a connecting spring; 55. and a second hinge lever.
Detailed Description
Example 1:
Referring to fig. 1-6, the present invention provides a technical solution: a hidden wooden door structure comprises a wall body 10, wooden doors 11, a guide rail 12 and a self-cleaning device; the wooden door 11 is arranged in the wall body 10 in a sliding manner, a space formed by sliding the wooden door 11 in the wall body 10 is a closed cavity 14, the wooden door 11 slides above the guide rail 12, a functional cavity 15 communicated with the outside is formed in the bottom of the wooden door 11, the guide rail 12 is fixed in the ground, and a sliding groove is formed in the upper surface of the installation position of the guide rail 12; the self-cleaning device comprises a sealing strip 20 fixed at one end of the wooden door 11 positioned in the closed cavity 14, a ventilation channel 21 and an air blowing port 22 which are arranged in the wall body 10 and communicated with the closed cavity 14, wherein the sealing strip 20 is in sliding connection with the inner wall of the closed cavity 14, gas at the joint cannot pass through the sealing strip, the ventilation channel 21 is communicated with the closed cavity 14 through the end wall of one side of the closed cavity 14, which is far away from the wooden door 11, the air blowing port 22 is symmetrically distributed at the end walls of two sides of the closed cavity 14 relative to the wooden door 11, and the air blowing port 22 is communicated with the ventilation channel 21; the self-cleaning apparatus also includes a wiper assembly for wiping the sliding channel in the rail 12 and a collection assembly for collecting dust in the rail 12.
Referring to fig. 1 and 5, a working chamber 42 with a hollow interior is fixed in the functional cavity 15, and a wiping assembly is disposed in the working chamber 42, and the wiping assembly includes a connecting frame 50, a first hinge rod 51, a scraping block 53, a second hinge rod 55 and a driving member; the scraping block 53 is slidably arranged in the sliding groove of the guide rail 12, one end of the first hinging rod 51 is hinged with the upper side of the installation position of the scraping block 53, the other end of the first hinging rod 51 extends into the second hinging rod 55 and is slidably connected with the second hinging rod 55, one end of the second hinging rod 55 away from the scraping block 53 is hinged with one side of the connecting frame 50 facing the scraping block 53, the connecting frame 50 is rotationally connected with the driving piece, a connecting spring 54 is installed at the joint of the first hinging rod 51 and the second hinging rod 55, one end of the connecting spring 54 is in butt joint with one side of the first hinging rod 51 away from the scraping block 53, and the other end of the connecting spring 54 is in butt joint with the inner end wall of the second hinging rod 55; the driving member is used to drive the link 50 to move horizontally by the horizontal movement of the wooden door 11.
Referring to fig. 3 and 4, driving blocks 41 fixedly connected with the functional cavity 15 are symmetrically arranged on two sides of the working box 42, the driving parts comprise a rotating wheel 40, a rotating shaft 43, a driven shaft 44, a rotating drum 45, a rotating drum shaft 46, a sliding rod 47 and a connecting rod 48, the rotating wheel 40 is rotatably arranged in the driving blocks 41, the lower side of the rotating wheel is positioned in a sliding groove of the guide rail 12, the rotating shaft 43 is fixed at the axle center of the rotating wheel 40, the rotating shaft 43 is rotatably connected with the driving blocks 41, the driven shaft 44 is arranged above the rotating shaft 43 and is mutually perpendicular to the rotating shaft 43, one end of the driven shaft 44 is connected with the rotating shaft 43 through a gear pair, and the other end of the driven shaft 44 extends into the working box 42 and is rotatably connected with the working box 42; the rotary drum shaft 46 is rotatably arranged in the working box 42 and is positioned above the driven shaft 44, the rotary drum shaft 46 and the driven shaft 44 are mutually parallel and are connected through a group of belt pulleys, the rotary drum 45 is fixed on the rotary drum shaft 46, a spiral groove is formed in the outer surface of the rotary drum 45, one end of the sliding rod 47 is slidably arranged in the groove, the other end of the sliding rod 47 is fixedly connected with the connecting rod 48, and one end of the connecting rod 48 away from the sliding rod 47 is rotatably connected with the connecting frame 50;
Referring to fig. 4, a baffle plate 49 is vertically installed between the connecting frame 50 and the drum 45, the baffle plate 49 vertically separates the space where the connecting frame 50 is located from the space where the drum 45 is located, the upper end of the baffle plate 49 is fixedly connected with the working box 42, a communicating groove with the same width as the outer diameter of the connecting rod 48 is arranged on the baffle plate 49, the connecting rod 48 passes through the baffle plate 49 through the communicating groove, and the connecting rod 48 is slidably connected with the linking groove.
Referring to fig. 1, the collecting assembly includes an elastic sealing plate 31, a sealing sliding block 32, a return spring 33, a pull rope 34 and a dust suction member; the wall body 10 is internally provided with a collecting cavity 30 positioned at one side of the closed cavity 14 far away from the wooden door 11, elastic sealing plates 31 are symmetrically fixed on two side end walls of the middle part of the collecting cavity 30, the elastic sealing plates 31 are only deformed downwards at one side under the action of external force, the elastic sealing plates 31 recover to an initial state after the external force is removed, the opposite side end surfaces of the symmetrical elastic sealing plates 31 prop against gas and cannot pass through the elastic sealing plates 31, and the gas can pass through the elastic sealing plates 31 after the elastic sealing plates 31 are deformed; the sealing sliding block 32 slides reciprocally in the collecting cavity 30 above the elastic sealing plate 31, the sealing sliding block 32 is fixedly connected with one end of the pull rope 34, the other end of the pull rope 34 extends into the sealing cavity 14 and is fixedly connected with the sealing strip 20, and the reset spring 33 is arranged between the upper end face of the sealing sliding block 32 and the upper end wall of the collecting cavity 30; the dust suction member sucks the dust in the guide rail 12 into the collection chamber 30 by using atmospheric pressure to collect the dust.
Referring to fig. 1 and 5, the dust suction member includes an exhaust pipe 35, an air suction pipe 36, a unidirectional flow device 37 and a dust suction port 52, the dust suction port 52 is fixed at the lower side of the scraping block 53 and is not contacted with the guide rail 12, the unidirectional flow device 37 is arranged in the functional cavity 15, one end of the air suction pipe 36 is connected with the dust suction port 52, the other end is connected with the unidirectional flow device 37, one end of the exhaust pipe 35 is connected with the unidirectional flow device 37, the other end extends into the collecting cavity 30 and is connected with the sealing sliding block 32, and the exhaust pipe 35 is connected at one end of the sealing sliding block 32 and is communicated with the collecting cavity 30.
Referring to fig. 1, a filling space 13 is provided in the wooden door 11 above the functional cavity 15, and a sound insulation material is filled in the filling space 13.
Referring to fig. 1 and 2, the length of the air blowing opening 22 in the vertical direction is the same as that of the wooden door 11, at least three air blowing openings 22 are arranged on one side, and the length of the communication part between the ventilation channel 21 and the closed cavity 14 in the vertical direction is the same as that of the closed cavity 14 in the vertical direction.
In the initial state, the opposite side of the elastic sealing plate 31 can not pass through the gas, the wooden door 11 is in the open state, the space between the walls 10 is not closed, the sealing sliding block 32 is positioned at the position of the middle part of the collecting cavity 30, which is close to the elastic sealing plate 31, and the return spring 33 is not compressed.
When the wooden door 11 is closed by a user, the wooden door 11 moves towards the outside of the closed cavity 14, so that the sealing strip 20 is respectively driven to move to drive the rotating wheel 40 to rotate, and the space of the closed cavity 14 is enlarged and the air pressure is reduced at the moment because the sealing strip 20 and the inner wall of the closed cavity 14 are tightly attached with air, and the air is driven by external high air pressure to enter the closed cavity 14 through the air blowing port 22 and the ventilation channel 21, so that the closed cavity 14 is ensured to be the same as the external atmospheric pressure;
Simultaneously, the sealing strip 20 lifts the sealing sliding block 32 upwards through the pull rope 34, so that the reset spring 33 is gradually compressed, and because the space enclosed by the sealing sliding block 32 and the elastic sealing plate 31 is completely closed, when the sealing sliding block 32 moves upwards, the space is enlarged, the air pressure is reduced and is smaller than the external atmospheric pressure, and because the dust collection piece is communicated with the external air, the external air enters the space through the dust collection piece to balance the air pressure, and when the external air is sucked, dust in the sliding groove of the guide rail 12 is sucked through the dust collection opening 52 and then sequentially enters the collecting cavity 30 through the air suction pipe 36, the unidirectional flow device 37 and the exhaust pipe 35 for collection;
When the wooden door 11 moves, the rotating wheel 40 drives the rotating shaft 43 to rotate, so that the driven shaft 44 is driven to rotate through the pair of gear pairs, the driven shaft 44 drives the rotating drum shaft 46 to rotate through the pair of pulleys, the rotating drum 45 is driven to rotate, one end of the sliding rod 47 is arranged in the groove of the rotating drum 45 in a sliding mode, when the rotating drum 45 rotates, the sliding rod 47 slides in the groove, the sliding rod 47 drives the connecting rod 48 to horizontally reciprocate, the connecting rod 48 drives the connecting frame 50 to horizontally reciprocate, when the connecting frame 50 starts to move, the second hinging rod 55 and the first hinging rod 51 sequentially drive the scraping block 53 to slide in the sliding groove of the guide rail 12, so that the scraping block 53 sweeps off dust attached in the sliding groove, the swept dust is sucked in through the dust suction opening 52, and the cleaned sliding groove of the guide rail 12 is achieved;
When the user opens timber 11, slide timber 11 to airtight chamber 14 in, the space in airtight chamber 14 reduces fast this moment, because seal the effect of pasting strip 20, the gas in the sealed pasting strip 20 is pressed into in the passageway 21 of ventilating, discharge fast through the gas blow-out mouth 22, because gas velocity of gas blow-out mouth 22 blowout is faster, blow the dust on timber 11 surface to the ground this moment, thereby reach the clear purpose to timber 11 surface, stay cord 34 is lax gradually simultaneously, make seal slider 32 move downwards under reset spring's 33 elasticity effect, because unilateral flow device 37 only can one-way make the gas pass through, seal slider 32 and the space atmospheric pressure that elastic seal plate 31 encloses this moment is higher than the atmospheric pressure of elastic seal plate 31 below gradually, deformation takes place for elastic seal plate 31 under the atmospheric pressure effect, make the dust that is located in the space that elastic seal plate 31 and seal slider 32 enclose get into the collection chamber 30 bottom and collect, when atmospheric pressure is less than elastic seal plate 31's deformation reset force, one side that elastic seal plate 31 is relative is the butt again.

Claims (6)

1. A hidden timber structure, its characterized in that: comprises a wall body (10), a wooden door (11), a guide rail (12) and a self-cleaning device;
The wooden door (11) is arranged in the wall body (10) in a sliding mode, a space formed by sliding the wooden door (11) in the wall body (10) is a closed cavity (14), the wooden door (11) slides above the guide rail (12), a functional cavity (15) communicated with the outside is formed in the bottom of the wooden door (11), the guide rail (12) is fixed in the ground, and a sliding groove is formed in the upper surface of the installation position of the guide rail (12);
The self-cleaning device comprises a sealing adhesive strip (20) fixed at one end of a wooden door (11) and positioned at one end of a closed cavity (14), a ventilation channel (21) and an air blowing port (22), wherein the ventilation channel (21) is arranged in a wall body (10) and communicated with the closed cavity (14), the sealing adhesive strip (20) is in sliding connection with the inner wall of the closed cavity (14), gas at the joint cannot pass through the ventilation channel (21), one side end wall of the closed cavity (14) far away from the wooden door (11) is communicated with the closed cavity (14), the air blowing port (22) is symmetrically distributed at two side end walls of the closed cavity (14) relative to the wooden door (11), and the air blowing port (22) is communicated with the ventilation channel (21);
the self-cleaning device also comprises a wiping component for wiping the sliding groove in the guide rail (12) and a collecting component for collecting dust in the guide rail (12);
The functional cavity (15) is internally fixed with a working box (42) with a hollow interior, the wiping component is arranged in the working box (42) and comprises a connecting frame (50), a first hinging rod (51), a scraping block (53), a second hinging rod (55) and a driving piece;
the scraping block (53) is arranged in a sliding groove of the guide rail (12) in a sliding mode, one end of the first hinging rod (51) is hinged to the upper side of the installation position of the scraping block (53), the other end of the first hinging rod (51) extends into the second hinging rod (55) and is connected with the second hinging rod (55) in a sliding mode, one end of the second hinging rod (55) away from the scraping block (53) is hinged to one side, facing the scraping block (53), of the connecting frame (50), the connecting frame (50) is connected with the driving piece in a rotating mode, a connecting spring (54) is installed at the joint of the first hinging rod (51) and the second hinging rod (55), one end of the connecting spring (54) is in butt joint with one side, away from the scraping block (53), of the first hinging rod (51), and the other end of the connecting spring (54) is in butt joint with the inner end wall of the second hinging rod (55).
The driving piece is used for driving the connecting frame (50) to move horizontally through the horizontal movement of the wooden door (11);
the collecting assembly comprises an elastic sealing plate (31), a sealing sliding block (32), a return spring (33), a pull rope (34) and a dust collection piece;
The wall body (10) is internally provided with a collecting cavity (30) positioned at one side of the closed cavity (14) far away from the wooden door (11), the elastic sealing plates (31) are symmetrically fixed on the end walls at two sides of the middle part of the collecting cavity (30), the elastic sealing plates (31) deform downwards at one side only under the action of external force, the elastic sealing plates (31) recover to an initial state after the external force is removed, the opposite end surfaces of the symmetrical elastic sealing plates (31) prop against gas and cannot pass through the elastic sealing plates (31), and the gas can pass through the elastic sealing plates (31) after the elastic sealing plates (31) deform;
The sealing sliding block (32) slides reciprocally at the part above the elastic sealing plate (31) in the collecting cavity (30), the sealing sliding block (32) is fixedly connected with one end of the pull rope (34), the other end of the pull rope (34) extends into the sealing cavity (14) and is fixedly connected with the sealing adhesive strip (20), and the reset spring (33) is arranged between the upper end face of the sealing sliding block (32) and the upper end wall of the collecting cavity (30);
the dust suction member sucks dust in the guide rail (12) into the collection chamber (30) by using atmospheric pressure to collect the dust.
2. A hidden wood door structure according to claim 1, wherein: the two sides of the working box (42) are symmetrically provided with driving blocks (41) fixedly connected with the functional cavity (15), each driving piece comprises a rotating wheel (40), a rotating shaft (43), a driven shaft (44), a rotating drum (45), a rotating drum shaft (46), a sliding rod (47) and a connecting rod (48), the rotating wheels (40) are rotatably arranged in the driving blocks (41) and the lower sides of the rotating wheels are positioned in sliding grooves of the guide rails (12), the rotating shafts (43) are fixed at the axle centers of the rotating wheels (40), the rotating shafts (43) are rotatably connected with the driving blocks (41), the driven shafts (44) are arranged above the rotating shafts (43) and are mutually perpendicular to the rotating shafts (43), one ends of the driven shafts (44) are connected with the rotating shafts (43) through gear pairs, and the other ends of the driven shafts (44) extend into the working box (42) and are rotatably connected with the working box (42);
The rotary drum shaft (46) rotates and sets up in work box (42) and is located the top of driven shaft (44), rotary drum shaft (46) are parallel to each other with driven shaft (44) and are connected through a set of belt pulley, rotary drum (45) are fixed on rotary drum shaft (46), the surface of rotary drum (45) is provided with spiral recess, the one end slip setting of slide bar (47) is in the recess, the other end and the connecting rod (48) fixed connection of slide bar (47), the one end and link (50) rotation connection of slide bar (47) are kept away from to connecting rod (48).
3. A hidden wood door structure according to claim 2, wherein: a baffle plate (49) is vertically arranged between the connecting frame (50) and the rotary drum (45), the space where the connecting frame (50) is positioned and the space where the rotary drum (45) is positioned are vertically separated by the baffle plate (49), the upper end of the baffle plate (49) is fixedly connected with the working box (42), the baffle plate (49) is provided with a communicating groove with the same width as the outer diameter of the connecting rod (48), the connecting rod (48) passes through the baffle plate (49) through the communicating groove, and the connecting rod (48) is in sliding connection with the communicating groove.
4. A hidden wood door structure according to claim 3, wherein: the dust collection piece comprises an exhaust pipe (35), an air suction pipe (36), a one-way flow device (37) and a dust collection opening (52), the dust collection opening (52) is fixed at the lower side of a scraping block (53) and is not contacted with a guide rail (12), the one-way flow device (37) is arranged in a functional cavity (15), one end of the air suction pipe (36) is connected with the dust collection opening (52), the other end of the air suction pipe is connected with the one-way flow device (37), one end of the exhaust pipe (35) is connected with the one-way flow device (37), the other end of the exhaust pipe extends into a collecting cavity (30) to be connected with a sealing sliding block (32), and one end of the exhaust pipe (35) is connected with the collecting cavity (30) in a communicating mode.
5. A hidden wood door structure according to claim 1, wherein: a filling space (13) positioned above the functional cavity (15) is arranged in the wooden door (11), and a sound insulation material is filled in the filling space (13).
6. A hidden wood door structure according to claim 1, wherein: the length of the air blowing port (22) in the vertical direction is the same as that of the wooden door (11), at least three air blowing ports (22) on one side are arranged, and the length of the communication part of the ventilation channel (21) and the closed cavity (14) in the vertical direction is the same as that of the closed cavity (14).
CN202210017743.4A 2022-01-07 2022-01-07 Hidden timber structure Active CN114352160B (en)

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Application Number Priority Date Filing Date Title
CN202210017743.4A CN114352160B (en) 2022-01-07 2022-01-07 Hidden timber structure

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Application Number Priority Date Filing Date Title
CN202210017743.4A CN114352160B (en) 2022-01-07 2022-01-07 Hidden timber structure

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Publication Number Publication Date
CN114352160A CN114352160A (en) 2022-04-15
CN114352160B true CN114352160B (en) 2024-04-23

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