CN112392383A - Ventilation unit and intelligent adjusting door and window thereof - Google Patents

Ventilation unit and intelligent adjusting door and window thereof Download PDF

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Publication number
CN112392383A
CN112392383A CN202011279341.9A CN202011279341A CN112392383A CN 112392383 A CN112392383 A CN 112392383A CN 202011279341 A CN202011279341 A CN 202011279341A CN 112392383 A CN112392383 A CN 112392383A
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CN
China
Prior art keywords
wind
ventilation
conveying
conveying device
movable baffle
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CN202011279341.9A
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Chinese (zh)
Inventor
不公告发明人
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Cen Tuxiu
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Cen Tuxiu
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Priority to CN202011279341.9A priority Critical patent/CN112392383A/en
Publication of CN112392383A publication Critical patent/CN112392383A/en
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    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/02Special arrangements or measures in connection with doors or windows for providing ventilation, e.g. through double windows; Arrangement of ventilation roses
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F15/00Power-operated mechanisms for wings
    • E05F15/70Power-operated mechanisms for wings with automatic actuation
    • E05F15/71Power-operated mechanisms for wings with automatic actuation responsive to temperature changes, rain, wind or noise
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/28Other arrangements on doors or windows, e.g. door-plates, windows adapted to carry plants, hooks for window cleaners

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Abstract

The invention provides a ventilation unit and an intelligent adjusting door window thereof, wherein the ventilation unit comprises a square first ventilation area arranged on a vertical door window, four equal-height supporting plates respectively extend into a room along four edges of the first ventilation area and are perpendicular to the door window, first sliding grooves which are matched and arranged left and right are respectively arranged in an upper supporting plate and a lower supporting plate, and a movable baffle is in sliding connection with the two first sliding grooves; this movable baffle is provided with transport mechanism towards the front side of indoor one side, the front side butt of wind dispelling mechanism and four backup pads, wind dispelling mechanism includes square frame construction, be provided with the block rubber in frame construction, both sides respectively with frame construction about both sides fixed connection about the block rubber, still be provided with the ventilation hole on the block rubber, movable baffle drives wind dispelling mechanism through this transport mechanism and controls and remove, guarantee among the wind dispelling mechanism that frame construction's center is unanimous with movable baffle left side allowwing the regional center of actual ventilation that wind passes through all the time.

Description

Ventilation unit and intelligent adjusting door and window thereof
Technical Field
The invention belongs to the field of intelligent doors and windows, and particularly relates to a ventilation unit and an intelligent adjusting door and window thereof.
Background
At present, door and window sets up the ventilation window and sets up the first baffle of leanin on the ventilation window in order to realize the ventilation, so on the one hand can realize the ventilation, and on the other hand can avoid wind-force too much wind current to pour into indoor when too big. Although the ventilation window on the existing door and window can realize ventilation and avoid overlarge wind power to a certain extent, the inclined first baffle on the ventilation window is fixed, and indoor objects can be blown when the wind power is very large, so that the objects stored in the room just to the ventilation opening are disorderly.
Disclosure of Invention
The invention provides a ventilation unit and an intelligent adjusting door and window thereof, which aim to solve the problem that articles stored in a room right opposite to a ventilation opening are easily blown disorderly when the wind power is too large at present.
According to a first aspect of the embodiments of the present invention, there is provided a ventilation unit, comprising a first ventilation area of a square shape formed on a vertical door and window, four support plates of equal height respectively extending along four sides of the first ventilation area, perpendicular to the door and window, into the room, four first sliding grooves are respectively formed in the upper and lower support plates, the upper and lower ends of a movable baffle are respectively connected with the two first sliding grooves in a sliding manner, the movable baffle can slide between the left and right support plates, the upper and lower sides of the movable baffle extend to be abutted against the upper and lower support plates, one side facing the outdoor is extended to the first ventilation area, one side facing the right support plate is fixedly connected with a sliding plate vertically arranged, the right side of the right support plate is fixedly connected with a solid square block in an abutting manner, the sliding plate is inserted into a groove formed in the solid square block through the right support plate, the sliding plate can slide along the left and right directions under the driving of the movable baffle plate, the vertical length of the sliding plate is equal to that of the movable baffle plate, and the horizontal length of the sliding plate is equal to that of the first ventilation area;
this movable baffle is provided with transport mechanism towards the front side of indoor one side, wind dispelling mechanism is located the front side of four backup pads and with these four backup pads butt, this wind dispelling mechanism includes square frame construction, be provided with the block rubber in frame construction, both sides respectively with this frame construction about this block rubber is the quadrangle that matches with this frame construction and controls both sides fixed connection, still be provided with the ventilation hole on this block rubber, this movable baffle passes through this transport mechanism and drives this wind dispelling mechanism and remove about, guarantee that this wind dispelling mechanism middle frame construction's center remains unanimous with the regional center of actual ventilation that this movable baffle left side allowwed wind to pass through all the time.
In an optional implementation mode, the conveying mechanism comprises a first conveying device and a second conveying device which are sequentially arranged from back to front, the first conveying device and the second conveying device are two and can convey along the left-right direction, conveying surfaces of the two first conveying devices and conveying surfaces of the two second conveying devices are respectively located on the corresponding same vertical surfaces, conveying wheels in the two first conveying devices are respectively fixed on the upper supporting plate and the lower supporting plate, the lower side surfaces of the conveying belts are respectively fixedly connected with the movable baffle through a first connecting block, conveying wheels in the two second conveying devices are also respectively fixed on the upper supporting plate and the lower supporting plate, and the upper sides of the conveying belts are respectively fixedly connected with the wind dispelling mechanism through a second connecting block;
for the first conveying device and the second conveying device on the upper supporting plate, gears are respectively arranged on conveying wheels of the first conveying device and the second conveying device, wherein the gears on each corresponding two conveying wheels are meshed; similarly, for the first conveying device and the second conveying device on the lower supporting plate, gears are respectively arranged on the conveying wheels of the first conveying device and the second conveying device, and the gears on each corresponding two conveying wheels are meshed.
In another optional implementation manner, the movable baffle moves left and right to drive the sliding plate to move left and right, the sliding plate can prevent wind from blowing into a room from a first ventilation area right below the sliding plate, so that an actual ventilation area of the first ventilation area is adjusted, the movable baffle moves left and right while driving the first conveying device to convey through the first connecting block, the first conveying device drives the upper side surface of the second conveying device to convey towards the same direction as the movable baffle through a matching gear, and the conveying distance of the second conveying device is only half of the moving distance of the movable baffle by designing gears meshed with the first conveying device and the second conveying device, so that the center of a frame structure in the wind dispersing mechanism is always consistent with the center of the actual ventilation area on the left side of the movable baffle, which allows wind to pass through.
In another optional implementation mode, when the rubber block is blown by wind, the rubber block can be blown indoors to deform, at the moment, the wind blows into the room from all directions through the upper side and the lower side of the second rubber block and the through holes in the second rubber block, and therefore the problem that the wind force is too large to blow articles placed at positions over against the wind ports is avoided.
The invention also provides an intelligent adjusting door and window, which comprises the ventilation unit and an adjusting unit, wherein the adjusting unit is used for detecting the wind power and adjusting the size of an actual ventilation area in the ventilation unit according to the detected wind power, so that the ventilation stability of the door and window is ensured.
The invention has the beneficial effects that:
1. for the left actual ventilation area of the first ventilation area separated by the movable baffle, after wind blows from the actual ventilation area, the wind force changes randomly, and the articles placed in the area opposite to the ventilation area can still be blown disorderly when the wind force is overlarge, therefore, the invention arranges a wind-dispersing mechanism above the indoor side of the actual ventilation area, the wind-dispersing mechanism comprises a square frame structure, a rubber block is arranged in the frame structure, the rubber block is a quadrangle matched with the frame structure, the left side and the right side of the rubber block are respectively fixedly connected with the left side and the right side of the frame structure, the rubber block is also provided with a ventilation hole, when the wind blows the rubber block, the rubber block can be blown to the indoor to be deformed, at the moment, the wind can blow into the indoor from all directions through the upper side and the lower side of the second rubber block and the through hole on the upper side and the lower side of the second rubber block, and can, therefore, articles placed at the position right opposite to the air opening can be prevented from being blown disorderly due to overlarge wind power, and in addition, the size of an actual ventilation area can be adjusted by arranging the movable baffle plate, so that the ventilation quantity is adjusted;
2. the invention also designs a conveying mechanism comprising a first conveying device, a second conveying device and a gear, so that the conveying mechanism drives the wind dispersing mechanism to move when the movable baffle moves left and right, and the moving distance of the wind dispersing mechanism is only half of that of the movable baffle, so that the center of a frame structure in the wind dispersing mechanism is always consistent with the center of an actual ventilation area allowing wind to pass through on the left side of the movable baffle, and the deformation of the rubber block can be always in a semi-arc shape when the rubber block is blown by wind, thereby ensuring the uniformity of the wind blown into the room from all directions;
3. according to the invention, by arranging the ventilation unit and the adjusting unit, the size of the actual ventilation area in the ventilation unit can be adjusted according to the wind power, so that the ventilation stability of the door and the window is ensured.
Drawings
FIG. 1 is a front view of one embodiment of a ventilation unit and its smart doors and windows of the present invention;
FIG. 2 is a front view of the ventilation unit;
FIG. 3 is a front view of the ventilation unit of FIG. 2 with the wind-dispersing mechanism removed;
FIG. 4 is a front view of the conditioning unit of FIG. 3 with the first conveyor and the second conveyor removed;
FIG. 5 is a bottom view of the ventilation unit;
FIG. 6 is a front view of the wind dispersing mechanism;
fig. 7 is a front view of the adjusting unit;
FIG. 8 is a right side view of the second runner of FIG. 7;
FIG. 9 is a schematic diagram of a left side view and a front view in comparison of a staging structure in an adjustment unit;
FIG. 10 is a front view of another embodiment of an adjustment unit;
fig. 11 is a schematic spatial position diagram of each first cross bar arrangement in the level adjustment structure.
Detailed Description
In order to make the technical solutions in the embodiments of the present invention better understood and make the above objects, features and advantages of the embodiments of the present invention more comprehensible, the technical solutions in the embodiments of the present invention are described in further detail below with reference to the accompanying drawings.
In the description of the present invention, unless otherwise specified and limited, it is to be noted that the term "connected" is to be interpreted broadly, and may be, for example, a mechanical connection or an electrical connection, or a communication between two elements, or may be a direct connection or an indirect connection through an intermediate medium, and a specific meaning of the term may be understood by those skilled in the art according to specific situations.
Although the ventilation window on the existing door window can avoid overlarge wind power to a certain extent while realizing ventilation, the inclined first baffle on the ventilation window is fixed, and the defect of poor ventilation effect can exist when the wind power is small. It can be seen that the current doors and windows cannot adapt to wind to maintain the ventilation stability (the amount of ventilation blown in per unit time is almost constant during the stable ventilation period). As shown in fig. 1, the present invention provides a ventilation unit and an intelligent adjusting door window thereof, which may include a ventilation unit 1 and an adjusting unit 2, wherein the adjusting unit 2 is configured to detect a wind power, and adjust a size of an actual ventilation area in the ventilation unit 1 according to the detected wind power, so as to ensure a ventilation stability of the door window.
Referring to fig. 2 to 6, the ventilation unit 1 may include a square first ventilation area 11 formed on a vertical door window, four support plates 13 with the same height respectively extending along four sides of the first ventilation area 11 perpendicularly to the door window to the indoor, first sliding grooves 14 respectively disposed in the upper and lower support plates 13 and matching with each other and disposed on the left and right, upper and lower ends of a movable baffle 15 are respectively slidably connected to the two first sliding grooves 14 and can slide between the left and right support plates 13, upper and lower sides of the movable baffle 15 extend to abut against the upper and lower support plates 13, one side thereof facing the outdoor extends to the first ventilation area 11, and one side thereof facing the right support plate 13 is fixedly connected to a vertically disposed sliding plate 17, a right side of the right support plate 13 is fixedly connected to a solid block 16, the sliding plate 17 penetrates through the right support plate 13 and is inserted into a groove formed in the solid block 16, the movable baffle plate can slide along the left and right direction under the driving of the movable baffle plate 15, the vertical length of the sliding plate 17 is equal to that of the movable baffle plate 15, and the horizontal length of the sliding plate is equal to that of the first ventilation area 11.
As shown in fig. 3 and 5, a conveying mechanism is disposed on the front side of the indoor side of the movable baffle 15, and the wind dispersing mechanism 20 is located on the front side of the four support plates 13 and abuts against the four support plates 13, as shown in fig. 6, the wind dispersing mechanism 20 includes a square frame structure 201, a rubber block 202 is disposed in the frame structure 201, the rubber block 202 is a quadrangle matched with the frame structure 201, the left side and the right side of the rubber block 202 are respectively fixedly connected with the left side and the right side of the frame structure 201, and a ventilation hole 203 is further disposed on the rubber block 202. The movable baffle 15 drives the wind dispersing mechanism 20 to move left and right through the conveying mechanism, so that the center of the frame structure in the wind dispersing mechanism 20 is always consistent with the center of the actual ventilation area which is allowed to pass through by the left side of the movable baffle 15.
The conveying mechanism comprises a first conveying device 181 and a second conveying device 182 which are sequentially arranged from back to front, the first conveying device 181 and the second conveying device 182 are two and can convey along the left-right direction, conveying surfaces of the first conveying device 181 and conveying surfaces of the second conveying device 182 are respectively located on the same corresponding vertical surfaces, conveying wheels in the first conveying device 181 are respectively fixed on the upper supporting plate 13 and the lower supporting plate 13, the lower side surfaces of the conveying belts are respectively fixedly connected with the movable baffle 15 through a first connecting block 191, conveying wheels in the second conveying device 182 are also respectively fixed on the upper supporting plate 13 and the lower supporting plate 13, and the upper sides of the conveying belts are respectively fixedly connected with the air dispersing mechanism 20 through a second connecting block 192. For the first conveying device 181 and the second conveying device 182 on the upper support plate 13, the conveying wheels of the two conveying devices are respectively provided with a gear 183, wherein the gears on each corresponding two conveying wheels are meshed; also for the first conveying device 181 and the second conveying device 182 on the lower support plate 13, the conveying wheels of the two conveying devices are respectively provided with a gear 183, wherein the gears on each corresponding two conveying wheels are meshed.
The movable baffle 15 moves left and right to drive the sliding plate 17 to move left and right, the sliding plate 17 can prevent wind from blowing into the room from the first ventilation area 11 right below the sliding plate 17, thereby adjusting the actual ventilation area of the first ventilation area 11, the moving baffle 15 moves left and right and drives the first conveyer 181 to convey through the first connecting block 191, the first transfer unit 181 transfers the upper side of the second transfer unit 182 in the same direction as the moving barrier 15 by means of the mating gears, and by designing the gears with which the first and second conveyors 181 and 182 mesh, so that the conveying distance of the second conveyor 182 is only half of the moving distance of the moving barrier 15, thereby ensuring that the centre of the frame structure 201 in the wind dispersing mechanism 20 always coincides with the centre of the actual ventilation area to the left of the moving blind 15 through which wind is allowed.
In this embodiment, the upper and lower sides of the movable baffle 15 extend to abut against the upper and lower support plates 13, the side facing the outside extends to the first ventilation area 11, and the side facing the right support plate 13 is fixedly connected to the vertically arranged sliding plate 17, the sliding plate 17 can slide in the left-right direction under the driving of the movable baffle 15, and the vertical length of the sliding plate 17 is equal to that of the movable baffle 15, so that the space surrounded by the corresponding parts of the movable baffle 15, the sliding plate 17, the right support plate 13, and the upper and lower support plates 13 is a closed space, and the air flow blown in from the ventilation holes in the closed space cannot flow into the room.
For the left actual ventilation area of the first ventilation area 11 separated by the movable baffle 15, after the wind blows from the actual ventilation area, the wind force changes randomly, when the wind force is too large, the articles placed in the area facing the ventilation area can still be blown disorderly, therefore, the invention arranges the wind-dispersing mechanism 20 above the indoor side of the actual ventilation area, the wind-dispersing mechanism 20 comprises a square frame structure 201, a rubber block 202 is arranged in the frame structure 201, the rubber block 202 is a quadrangle matched with the frame structure 201, the left and right sides of the rubber block 202 are respectively fixedly connected with the left and right sides of the frame structure 201, the rubber block 202 is also provided with a ventilation hole 203, when the wind blows the rubber block, the rubber block can be blown to the indoor to deform, at the moment, the wind can blow into the indoor from all directions through the upper and lower sides of the second rubber block 17 and the through hole on the rubber block, the air blowing device can not blow air to a certain position in the room, so that the condition that the articles placed at the position opposite to the air opening are blown disorderly due to overlarge wind power can be avoided. In addition, the invention also designs a conveying mechanism comprising a first conveying device, a second conveying device and a gear, so that the wind dispelling mechanism is driven to move by the conveying mechanism when the movable baffle 15 moves left and right, and the moving distance of the wind dispelling mechanism is only half of the moving distance of the movable baffle 15, so that the center of the frame structure 201 in the wind dispelling mechanism 20 is always consistent with the center of an actual ventilation area allowing wind to pass through on the left side of the movable baffle 15, and the deformation of the rubber block can be always in a semi-arc shape when the rubber block is blown by the wind, thereby ensuring the uniformity of the wind blown into the room from all directions.
In addition, as shown in fig. 7 to 9, the adjusting unit 2 may include a second ventilation area 21 formed on the door window, a second sliding groove 22 fixed on the indoor side of the door window and having the same length as the horizontal side of the second ventilation area 21 is disposed right above the second ventilation area 21, a sliding shaft 23 capable of sliding horizontally along the second sliding groove 22 is disposed in the second sliding groove 22, the sliding shaft 23 is fixedly connected to a square wind measurement plate 24, the wind measurement plate 24 can drive the sliding shaft 23 to rotate along the direction close to and away from the door window, and the vertical length of the wind measurement plate 24 when the wind measurement plate 24 is vertically disposed is greater than the vertical length of the second ventilation area 21. As shown in fig. 8, the left and right ends of the second chute 22 are respectively provided with a first baffle 28 for blocking the sliding shaft 23 from sliding out of the left and right sides of the second chute 22, and the first baffle 28 only blocks a part of the sliding shaft 23, so that the sliding shaft 23 is attracted by the first electromagnet 25 and the second electromagnet 26. The section of the second sliding chute 22 perpendicular to the door window may be an arc, the radian is greater than 180 degrees and less than or equal to 270 degrees, the sliding shaft 23 may be a cylinder matched with the arc section of the second sliding chute 22, the centers of the second sliding chute 22 and the sliding shaft 23 are the same, so that the wind measuring plate 24 can drive the sliding shaft 23 to rotate around the circular center shaft of the second sliding chute 22 along the direction close to and away from the door window, the sliding shaft 23 can be prevented from sliding out of the second sliding chute 22 in the rotating process, and the sliding shaft 23 can also slide along the second sliding chute 22 in the left-right direction.
The right end of the sliding shaft 23 is axially and fixedly connected with a first connecting rod 271, the right side of the horizontal first connecting rod 271 is fixedly connected with a second connecting rod 272, the second connecting rod 272 sequentially passes through the left supporting plate 13 in the ventilation unit 1 and the through hole formed in the movable baffle 15, and is fixedly connected with the stopper 29 positioned on the right side of the movable baffle 15, the sectional areas of the first connecting rod 271 and the stopper 29 are larger than the sectional area of the through hole in the movable baffle 15, so as to prevent the first connecting rod 271 from moving out of the through hole in the movable baffle 15 when moving left and right, and the sectional area of the second connecting rod 272 is smaller than the sectional area of the through hole in the movable baffle 15, so that the first connecting rod 271 and the second connecting rod 272 can rotate along with the sliding shaft 23. A first electromagnet 25 and a second electromagnet 26 are respectively arranged on the left side and the right side of the second sliding chute 22, and under the combined action of the first electromagnet 25 and the second electromagnet 26, the sliding shaft 23 can slide left and right in the second sliding chute 22, so as to drive the movable baffle 15 to move left and right. In addition, as shown in fig. 8, the first blocking plate 28 at the right end of the second sliding chute 22 may block only a portion of the sliding shaft 23 except for the connection portion of the first connecting rod 271, so that the second electromagnet 26 attracts the sliding shaft 23, and the sliding shaft 23 moves rightward along the second sliding chute 22.
As shown in fig. 7 and 9, a staging structure 3 is also provided in the second ventilation zone 21, the staging structure 3 may include a plurality of first cross bars 31 parallel to the second runner 22, wherein each first cross bar 31 is distributed according to the sequence from left to right and the height is gradually reduced, the opposite ends of every two adjacent upper and lower first cross bars 31 are positioned on the same vertical plane vertical to the door and window, the right end of the upper first cross bar 31 is fixedly connected with the left end of the lower first cross bar 31 through a first connecting rod 32, the right end of the rightmost first cross bar 31 is connected with one point on the door and window through the first connecting rod 32, and the right end of the rightmost first cross bar 31 and the point are positioned on the same vertical plane vertical to the door and window, the left end of the leftmost first cross bar 31 is fixedly connected with a vertical rod 34 vertical to the leftmost first cross bar 31, the upper end of the vertical rod 34 is higher than the horizontal plane when the anemometer plate 24 is rotated to the horizontal state. The distance between each first cross bar 31 and the central axis of the second sliding chute 22 is smaller than the vertical length of the wind measuring plate 24, and the right side of each first link 32 is smooth. The upper surface of each first cross bar 31 is provided with a pressure sensor for detecting whether the wind measuring plate 24 abuts against the corresponding first cross bar 31, the controller is respectively connected with the first electromagnet 25, the second electromagnet 26 and each pressure sensor, the controller controls the first electromagnet 25 and the second electromagnet 26 to be switched on and off according to the pressure information detected by each pressure sensor, so that the sliding shaft 23 drives the wind measuring plate 24 to move leftwards and rightwards along the second chute 22, wind blows the wind measuring plate 24 to enable the wind measuring plate 24 to rotate towards the direction far away from and close to the door and window, in the initial state, the first electromagnet 25 is in the switched-on state, under the action of the attraction force of the first electromagnet 25, the wind measuring plate 24 is limited by the grading structure 3, the wind measuring plate 24 moves leftwards step by step, so as to drive the movable baffle 15 to move leftwards, and in the process of moving leftwards, if the wind power is reduced, the wind measuring plate is abutted against a corresponding first cross bar 31, a pressure sensor on the first cross bar 31 detects the pressure and then sends a pressure signal to the controller, then the controller controls the first electromagnet 25 to be powered off and the second electromagnet 26 to be powered on for a corresponding time length so that the wind measuring plate 24 moves rightwards to the right side of the current first cross bar 31, the current first cross bar 31 is the first cross bar provided with the pressure sensor detecting the pressure signal, the controller controls the first electromagnet 25 to be powered on and the second electromagnet 26 to be powered off after controlling the first electromagnet 25 to be powered off and the second electromagnet 26 to be powered on for the corresponding time length, the wind measuring plate 24 moves leftwards until being abutted against a first connecting bar 32, the left and right movement of the wind measuring plate 24 drives a movable baffle 15 in the ventilation unit 1 to move leftwards and rightwards, and the actual ventilation area communicated with the indoor space in the first ventilation area is adjusted, therefore, the ventilation stability of the door and window is adjusted based on the wind power, and the ventilation stability of the door and window is still kept when the wind power changes.
Specifically, in the initial state, the sliding shaft 23 contacts with the right end of the second sliding groove 22, and the stage structure 3 is located on the left side of the wind measuring plate 24. The working principle of the invention comprises the following steps:
step S101, the controller controls the first electromagnet 25 to be electrified and detects whether pressure information detected by each pressure sensor is received in real time, wherein a plane formed by each first cross bar 31 and a central shaft of the second chute 22 is a wind measuring surface, an included angle between the wind measuring surface and a door window is a first included angle, an included angle between the wind measuring plate 24 and the door window is a second included angle, under the action of wind power, the wind measuring plate 24 rotates towards a direction away from the door window, the first cross bars 31 in the hierarchical structure 3 are numbered according to a sequence from right to left, first included angles corresponding to 1 to N first cross bars 31 from right to left are sequentially the 1 to N first included angles, the 1 to N first included angles are gradually increased, pressure sensors arranged on the 1 to N first cross bars 31 are sequentially the 1 to N pressure sensors, and a first connecting rod correspondingly connected with the right end of the ith first cross bar 31 is the ith first connecting rod, i is an integer greater than 0 and less than or equal to N, which represents the number of the first rails 31. When the second included angle of the wind measuring plate is equal to the ith first included angle, the detected ventilation amount is equal to the first unit ventilation amount i, namely, the wind measuring plate moves one first cross rod 31 leftwards when detecting that the total ventilation amount is increased by the first unit ventilation amount, and at the moment, the lengths of the first cross rods 31 can be equal.
Step S102, setting the anemometer plate 24 to be in butt joint with the ith first connecting rod 32 currently, and when the second included angle is larger than the ith first included angle, under the action of the suction force of the first electromagnet 25, the anemometer plate 24 moves leftwards to be in butt joint with the (i + 1) th first connecting rod 32 through the ith first cross rod 31, and because the right side surface of each first connecting rod 32 is a smooth surface, the friction between the first connecting rod 32 and the anemometer plate 24 can be ignored, and the anemometer plate 24 can still detect the change of the wind power. After the wind vane 24 moves to abut against the (i + 1) th first link 32, the wind force may be increased or decreased. When wind power increases, if wind power impels the second contained angle that anemometer plate 24 corresponds to be greater than the first contained angle of ith, be less than the first contained angle of i +1, then anemometer plate 24 can not move left under the blockking of the first connecting rod 32 of i +1, if wind power impels anemometer plate 24 corresponding second contained angle to be greater than or equal to the first contained angle of i +1, then under the suction effect of first electro-magnet 25, anemometer plate 24 passes through first horizontal pole 31 of i +1, move left to with the butt of first connecting rod 32 of i + 2. When the wind power is reduced, the wind measuring plate 24 applies pressure to the ith first cross rod 31, at this time, the pressure sensor on the ith first cross rod 31 detects the pressure and transmits a pressure signal to the controller, the controller counts the time length of the pressure signal detected by the ith pressure sensor after receiving the pressure signal detected by the ith pressure sensor, when the counted time length is longer than the preset time length, the first electromagnet 25 is controlled to be powered off, the second electromagnet 26 is controlled to be powered on for a corresponding time length, so that the sliding shaft 23 drives the wind measuring plate 24 to move rightwards to the right side of the ith first connecting rod 32, after the second electromagnet 26 is controlled to be powered on for a corresponding time length, the first electromagnet 25 is controlled to be powered off, the second electromagnet 26 is powered off, under the suction effect of the first electromagnet 25, the sliding shaft 23 drives the wind measuring plate 24 to move leftwards, if the corresponding second included angle of the wind measuring plate 24 is smaller than the ith first included angle, the wind measuring plate 24 is blocked by the ith first connecting rod 32, and if the second included angle corresponding to the wind measuring plate 24 is larger than the ith first included angle, the wind measuring plate 24 moves leftwards to abut against the (i + 1) th first connecting rod.
In order to avoid wind from blowing into the room from the second ventilation area 21 in the adjusting unit, a square box body covering the adjusting unit 2 is further arranged on the door and window, and the distance between one side of the box body facing the room and the door and window is larger than or equal to the vertical length of the wind measuring plate 24, so that the wind measuring plate 24 can be in a horizontal state under the action of wind power.
Although the ventilation performance of the door and window can be kept approximately consistent to a certain extent regardless of the change of the wind power in the above embodiment, the ventilation performance of the door and window (which can be expressed by the amount of the blown air in a unit time) cannot be adjusted by the user, for this reason, the invention further designs the hierarchical structure 3, the ventilation performance of the door and window is adjusted by moving the hierarchical structure 3 up and down, as shown in fig. 10, two fixing plates 4 are arranged on two sides of the free end of the 1 st first connecting rod 32 from right to left in the hierarchical structure 3, a fourth sliding slot 5 is opened on the side of the door and window facing the indoor, two fixing plates 4 are positioned in the fourth sliding slot 5 and can slide up and down in the fourth sliding slot 5, when the two fixing plates 4 slide to the top end of the fourth sliding slot 5, the hierarchical structure 3 slides to the uppermost end, and the screws sequentially pass through holes on the fourth sliding slot 5 and the through holes on the corresponding fixing plates 4, fixing the two fixing plates 4, thereby fixing the staging structure 3; when the two fixing plates 4 slide to the bottom end of the fourth sliding chute 5, the grading structure 3 slides to the lowest end, and similarly, the screws sequentially pass through the through holes on the fourth sliding chute 5 and the through holes on the corresponding fixing plates 4 at this time to fix the two fixing plates 4, so as to fix the grading structure 3. In addition, the spatial position of each first cross rod 31 in the level adjustment structure 3 is designed, when the level adjustment structure slides to the uppermost end, the first included angle corresponding to each first cross rod 31 is used as a first included angle before adjustment, the first included angles before adjustment gradually increase in the order from right to left, and when the level adjustment structure slides to the lowermost end, the first included angle corresponding to each first cross rod 31 is used as a first included angle after adjustment, the first included angles after adjustment gradually increase in the order from right to left, the first included angle before i-th adjustment from right to left is greater than the first included angle after i-th adjustment, i is an integer greater than 0 and less than or equal to N, and N represents the number of the first cross rods. When the second included angle of the wind measuring plate is equal to the first included angle before the ith adjustment, the detected ventilation volume is equal to the first unit ventilation volume i, when the second included angle of the wind measuring plate is equal to the first included angle after the ith adjustment, the detected ventilation volume is equal to the second unit ventilation volume i, the second unit ventilation volume is smaller than the first unit ventilation volume, and the lengths of the first cross rods 31 can be equal. When this hierarchical structure slides to the top and the bottom, the distance between each first diaphragm and the second spout all is less than this vertical length of surveying the aerofoil.
In order to satisfy the requirement that when this hierarchical structure slides to the top, the first contained angle that each first horizontal pole 31 corresponds is as the first contained angle before adjusting, according to the order from the right side to left, each first contained angle before adjusting crescent, and when this hierarchical structure slides to the bottom, the first contained angle that each first horizontal pole 31 corresponds is as the first contained angle after adjusting, according to the order from the right side to left, each first contained angle after adjusting crescent, and the first contained angle before the ith of following right side to left is adjusted is greater than the first contained angle after the ith is adjusted, combine and fig. 11 to show, can follow the following step and confirm the spatial position of each first horizontal pole 31:
step S201, with a central axis of the second chute 22 as a Z axis, a horizontal direction perpendicular to the Z axis as an X axis, and a vertical direction as a Y axis, drawing, through a central point of an XYZ coordinate system, first straight lines having an included angle with the Y axis respectively equal to each first included angle before adjustment, and drawing N first straight lines (as shown by solid lines in fig. 11) up to the first straight lines, where the N first straight lines are respectively marked as 1 st to N first straight lines before adjustment according to a sequence from small to large included angles with the Y axis;
step S202, drawing first straight lines with included angles with the Y axis respectively equal to the adjusted first included angles through a central point of an XYZ coordinate system, and drawing N first straight lines (shown as dotted lines in FIG. 11) up to the first straight lines, wherein the N first straight lines are respectively marked as 1 st to N first straight lines after adjustment according to the sequence that included angles with the Y axis are from small to large;
step S203, determining the sliding distance L from the uppermost end to the lowermost end of the hierarchical structure, aiming at each point on the ith first straight line before adjustment, making a vertical line intersected with the ith first straight line after adjustment, judging whether the vertical line is equal to the sliding distance L, and if so, enabling the ith first cross rod from right to left to pass through the point and be parallel to the Z axis. After the spatial positions of the first cross bars are determined, as shown in fig. 11, when the hierarchical structure slides to the lowest end, the first cross bars intersect with the corresponding adjusted first straight lines, so that the adjustment of the ventilation performance can be realized.
Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the invention following, in general, the principles of the invention and including such departures from the present disclosure as come within known or customary practice within the art to which the invention pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the invention being indicated by the following claims.
It will be understood that the invention is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the invention is to be controlled solely by the appended claims.

Claims (5)

1. A ventilation unit is characterized by comprising a square first ventilation area arranged on a vertical door window, four supporting plates with the same height are respectively extended indoors along four sides of the first ventilation area and are respectively perpendicular to the door window, the upper supporting plate and the lower supporting plate are respectively provided with a matched first sliding chute arranged on the left and the right, the upper end and the lower end of a movable baffle are respectively connected with the two first sliding chutes in a sliding way and can slide between the left supporting plate and the right supporting plate, the upper side and the lower side of the movable baffle extend to be abutted against the upper supporting plate and the lower supporting plate, the side facing outdoors extends to the first ventilation area, the side facing the right supporting plate is fixedly connected with a sliding plate arranged vertically, the right side of the right supporting plate is fixedly connected with a solid square block in a clinging way, the sliding plate penetrates through the right supporting plate and is inserted into a groove arranged in the solid square block and can slide along the left and right directions under the driving, the vertical length of the sliding plate is equal to that of the movable baffle, and the horizontal length of the sliding plate is equal to that of the first ventilation area;
this movable baffle is provided with transport mechanism towards the front side of indoor one side, wind dispelling mechanism is located the front side of four backup pads and with these four backup pads butt, this wind dispelling mechanism includes square frame construction, be provided with the block rubber in frame construction, both sides respectively with this frame construction about this block rubber is the quadrangle that matches with this frame construction and controls both sides fixed connection, still be provided with the ventilation hole on this block rubber, this movable baffle passes through this transport mechanism and drives this wind dispelling mechanism and remove about, guarantee that this wind dispelling mechanism middle frame construction's center remains unanimous with the regional center of actual ventilation that this movable baffle left side allowwed wind to pass through all the time.
2. The ventilation unit of claim 1, wherein the conveying mechanism comprises a first conveying device and a second conveying device which are arranged in sequence from back to front, the first conveying device and the second conveying device are two and can convey along the left-right direction, the conveying surfaces of the two first conveying devices and the conveying surfaces of the two second conveying devices are respectively positioned on the same corresponding vertical surface, the conveying wheels of the two first conveying devices are respectively fixed on the upper supporting plate and the lower supporting plate, the lower side surfaces of the conveying belts are respectively fixedly connected with the movable baffle through a first connecting block, the conveying wheels of the two second conveying devices are also respectively fixed on the upper supporting plate and the lower supporting plate, and the upper sides of the conveying belts are respectively fixedly connected with the wind dispelling mechanism through a second connecting block;
for the first conveying device and the second conveying device on the upper supporting plate, gears are respectively arranged on conveying wheels of the first conveying device and the second conveying device, wherein the gears on each corresponding two conveying wheels are meshed; similarly, for the first conveying device and the second conveying device on the lower supporting plate, gears are respectively arranged on the conveying wheels of the first conveying device and the second conveying device, and the gears on each corresponding two conveying wheels are meshed.
3. The ventilation unit of claim 2, wherein the movable baffle moves left and right to move the slider left and right, the sliding plate prevents wind from blowing into the room from the first ventilation area right below the sliding plate, thereby adjusting the actual ventilation area of the first ventilation area, the movable baffle plate moves left and right and drives the first conveying device to convey through the first connecting block, the first conveying device drives the upper side surface of the second conveying device to convey towards the same direction with the movable baffle plate through the matching gear, and by designing the gears of the first conveying device and the second conveying device to be meshed, the conveying distance of the second conveying device is only half of the moving distance of the moving baffle, thereby ensuring that the centre of the frame structure in the wind dispersing mechanism always coincides with the centre of the actual ventilating area to the left of the moving baffle, through which wind is allowed.
4. The ventilation unit of claim 1, wherein when wind blows the rubber blocks, the rubber blocks are blown up and deformed into the room, and then wind blows into the room from all directions through the upper and lower sides of the second rubber block and the through holes on the second rubber block, thereby preventing the wind from being too strong and causing articles placed at the position opposite to the wind port to be blown out of order.
5. An intelligent adjusting door and window, characterized in that, includes the ventilation unit of any one of claims 1 to 4, and further includes an adjusting unit, the adjusting unit is used for detecting the wind power, and according to the detected wind power, the size of the actual ventilation area in the ventilation unit is adjusted, thereby ensuring the ventilation stability of the door and window.
CN202011279341.9A 2020-11-16 2020-11-16 Ventilation unit and intelligent adjusting door and window thereof Withdrawn CN112392383A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011279341.9A CN112392383A (en) 2020-11-16 2020-11-16 Ventilation unit and intelligent adjusting door and window thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202011279341.9A CN112392383A (en) 2020-11-16 2020-11-16 Ventilation unit and intelligent adjusting door and window thereof

Publications (1)

Publication Number Publication Date
CN112392383A true CN112392383A (en) 2021-02-23

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Application Number Title Priority Date Filing Date
CN202011279341.9A Withdrawn CN112392383A (en) 2020-11-16 2020-11-16 Ventilation unit and intelligent adjusting door and window thereof

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Country Link
CN (1) CN112392383A (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN206205693U (en) * 2016-11-28 2017-05-31 王细根 A kind of multi-functional automatic sliding window
CN107724881A (en) * 2017-11-20 2018-02-23 胡东英 A kind of sliding window
CN207063829U (en) * 2017-07-28 2018-03-02 荣阳铝业(中国)有限公司 A kind of sliding door by transmitting V belt translation
CN108222773A (en) * 2018-02-09 2018-06-29 陕西专壹知识产权运营有限公司 A kind of Electronic control window that can filter haze
CN207829722U (en) * 2017-11-13 2018-09-07 佛山市华的金属制品有限公司 A kind of linkage buffering sliding door
CN109372377A (en) * 2018-12-20 2019-02-22 合肥学院 A kind of intelligent window

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN206205693U (en) * 2016-11-28 2017-05-31 王细根 A kind of multi-functional automatic sliding window
CN207063829U (en) * 2017-07-28 2018-03-02 荣阳铝业(中国)有限公司 A kind of sliding door by transmitting V belt translation
CN207829722U (en) * 2017-11-13 2018-09-07 佛山市华的金属制品有限公司 A kind of linkage buffering sliding door
CN107724881A (en) * 2017-11-20 2018-02-23 胡东英 A kind of sliding window
CN108222773A (en) * 2018-02-09 2018-06-29 陕西专壹知识产权运营有限公司 A kind of Electronic control window that can filter haze
CN109372377A (en) * 2018-12-20 2019-02-22 合肥学院 A kind of intelligent window

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