A highly adaptable wooden door and window structure

The wood window structure automatically adjusts layers to control environmental factors, addressing the issue of weather adaptation and interior comfort.

CN119843972BActive Publication Date: 2025-07-15FUJIAN ZHANGPING D ROAD FORESTRY
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Patent Information

Application Number
CN202510343292.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2025-07-15
Estimated Expiration
2045-03-21

AI Technical Summary

Technical Problem

The existing wooden door and window structure cannot effectively reduce rain, wind, and dust when the window sash is opened, and cannot adapt quickly under different weather conditions, resulting in moisture, messy, dust falling or light and heat discomfort in the house.

Method used

The rotor is controlled by sunlight sensor, rainfall detection sensor and wind direction sensor, which drives the rolling and placement of the translucent thermal insulation layer and the waterproof and windproof dustproof layer. Combined with the adsorption and fixation of the movable ring plate, it realizes automatic adjustment of rainwater, wind, dust and sunlight.

Benefits of technology

When the window sash is opened, it effectively reduces the entry of rain, wind and dust, keeps the house dry and clean, and at the same time, it automatically adjusts the light and temperature under different weather conditions to improve adaptability and reduce manual intervention.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a highly adaptable wooden door and window structure, comprising: a window frame, on which a pair of window sashes are rotatably arranged, and a sunlight sensor, a rainfall detection sensor, and a wind direction sensor are arranged on the window frame. The top end of the window frame is provided with a storage and protection box, and the bottom end of the storage and protection box is provided with a retraction groove; a self-rotating disk is rotatably arranged at the right end inside the storage and protection box. When the window sash is opened, the rainfall amount in the environment where the window frame is located exceeds a predetermined value, and the wind direction in the environment where the window frame is located is towards the interior of the house, it can reduce the entry of rainwater, wind, and dust into the house during the opening of the window sash, so as to reduce the humidity, mess, and dust accumulation in the house during the opening of the window sash; when the window sash is opened and the light intensity of the sunlight in the environment where the window frame is located exceeds a predetermined value, it can allow sunlight to penetrate into the house during the opening of the window sash and reduce the heat entering the house, so as to make the house bright and cool during the opening of the window sash.
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Description

Technical Field

[0001] The present invention relates to the field of wooden doors and windows, and specifically refers to a highly adaptable wooden door and window structure. Background Art

[0002] The wooden door and window structure refers to the door and window frames made of wood and their related components, mainly used for the entrances, exits, ventilation, and lighting in buildings. Due to its natural beauty and environmental protection characteristics, the wooden door and window structure is widely used in residential and commercial buildings.

[0003] The existing wooden door and window structures cannot reduce the entry of rain, wind, and dust into the room during the opening of the window sash when the amount of rainwater in the environment where the window frame is located exceeds a predetermined value or the wind direction in the environment where the window frame is located faces into the room. Therefore, it is impossible to reduce the humidity, mess, and dust in the room during the opening of the window sash; when the light intensity of the sunlight in the environment where the window frame is located exceeds a predetermined value during the opening of the window sash, it is impossible to make the sunlight penetrate into the room and reduce the heat entering the room during the opening of the window sash. Therefore, it is impossible to make the room bright and cool during the opening of the window sash; during the opening of the window sash, it is impossible to quickly respond to the changes in the above two different weathers, and the adaptability is poor. Therefore, during the opening of the window sash, manual presence and interference are required at all times to respond to the changes in the above two different weathers, so it is impossible to protect the room in time or meet the needs of the room.

[0004] Designing a highly adaptable wooden door and window structure to solve the problems existing in the above-mentioned prior art is the purpose of the research of the present invention. Summary of the Invention

[0005] Aiming at the problems existing in the above-mentioned prior art, the present invention provides a highly adaptable wooden door and window structure, which can effectively solve at least one of the problems existing in the above-mentioned prior art.

[0006] The technical solution of the present invention is as follows:

[0007] A highly adaptable wooden door and window structure, comprising:

[0008] A window frame, on which a pair of window sashes are rotatably arranged. A sunlight sensor, a rain amount detection sensor, and a wind direction sensor are arranged on the window frame. A storage and protection box is arranged at the top end of the window frame, and a storage and release groove is arranged at the bottom end of the storage and protection box;

[0009] A self-rotating disk is rotatably arranged at the right end inside the storage and protection box. A first forward-receiving and reverse-releasing roller is horizontally arranged at the left end of the self-rotating disk. A second forward-receiving and reverse-releasing roller is horizontally arranged at the left end of the self-rotating disk. The first forward-receiving and reverse-releasing roller is directly below the second forward-receiving and reverse-releasing roller. The storage and release groove is directly below the first forward-receiving and reverse-releasing roller. A light-transmitting and heat-insulating layer is arranged on the first forward-receiving and reverse-releasing roller. A waterproof, windproof, and dustproof layer is arranged on the second forward-receiving and reverse-releasing roller. A movable ring plate is movably arranged back and forth on the window frame;

[0010] The storage and protection box is connected to the self-rotating disc through a self-rotation driving member, so that the self-rotating disc rotates counterclockwise. The self-rotating disc is connected to the first forward-reverse winding roller through a first forward-reverse winding driving member, and the self-rotating disc is connected to the second forward-reverse winding roller through a second forward-reverse winding driving member. The window frame is connected to the movable ring plate through a movable driving member;

[0011] After the self-rotating disc rotates counterclockwise according to the values of the sunlight sensor, rain detection sensor, and wind direction sensor, the first forward-reverse winding roller or the second forward-reverse winding roller is corresponding to the winding and unwinding groove, so that the light-transmitting and heat-insulating layer or the waterproof, windproof and dust-proof layer is unwound to the bottom end of the window frame;

[0012] The movable ring plate adsorbs and fixes when the light-transmitting and heat-insulating layer or the waterproof, windproof and dust-proof layer is unwound to the bottom end of the window frame, and the movable ring plate moves back and forth before the light-transmitting and heat-insulating layer or the waterproof, windproof and dust-proof layer is wound up to shake off the attached objects.

[0013] Further, a first common stable anti-wrinkle winding member is arranged among the first forward-reverse winding roller, the second forward-reverse winding roller, and the storage and protection box, and the first common stable anti-wrinkle winding member is located to the left of the winding and unwinding groove; a second common stable anti-wrinkle winding member is arranged among the first forward-reverse winding roller, the second forward-reverse winding roller, the storage and protection box, and the self-rotating disc, and the second common stable anti-wrinkle winding member is located to the right of the winding and unwinding groove.

[0014] Further, the first common stable anti-wrinkle winding member includes a first common stable anti-wrinkle winding ring disc, which is arranged among the first forward-reverse winding roller, the second forward-reverse winding roller, and the storage and protection box. The first common stable anti-wrinkle winding ring disc is located to the left of the winding and unwinding groove. A first limiting guide disc is arranged between the first forward-reverse winding roller and the second forward-reverse winding roller and inside the first common stable anti-wrinkle winding ring disc. The first limiting guide disc is connected to the inner left end of the storage and protection box through a first connecting rod. A first limiting guide ring groove is formed between the first common stable anti-wrinkle winding ring disc and the first limiting guide disc. The first forward-reverse winding roller and the second forward-reverse winding roller both penetrate through the first limiting guide ring groove;

[0015] The second public stability anti-wrinkle rolling part includes a second public stability anti-wrinkle rolling ring plate, which is arranged among the first forward-reverse winding roller, the second forward-reverse winding roller, and the storage and protection box. The second public stability anti-wrinkle rolling ring plate is located to the right of the winding and unwinding groove. A second limit guiding plate is arranged between the first forward-reverse winding roller and the second forward-reverse winding roller and inside the second public stability anti-wrinkle rolling ring plate. The second limit guiding plate is connected to the self-rotating plate through a second connecting rod. A second limit guiding ring groove is formed between the second public stability anti-wrinkle rolling ring plate and the second limit guiding plate. The first forward-reverse winding roller and the second forward-reverse winding roller both penetrate through the second limit guiding ring groove.

[0016] Further, the first forward-reverse driving part includes a first rotating motor, which is arranged between the self-rotating plate and the first forward-reverse winding roller.

[0017] Further, the second forward-reverse driving part includes a second rotating motor, which is arranged between the self-rotating plate and the second forward-reverse winding roller.

[0018] Further, the self-rotating driving part includes a third rotating motor, which is arranged between the storage and protection box and the self-rotating plate.

[0019] Further, the movable driving part includes a square groove, which is arranged on the window frame. A plurality of telescopic motors are arranged between the window frame and the movable ring plate and inside the square groove.

[0020] Further, the movable ring plate includes a square magnet block, which is movably arranged on the window frame. An isolation layer is arranged between the square magnet block and the window frame.

[0021] Further, the light-transmitting and heat-insulating layer includes a first square belt, which is arranged on the first forward-reverse winding roller. A plurality of first iron sheets adsorbed by the square magnet block are arranged inside the first square belt. Two layers of transparent nylon fiber layers are arranged on the inner side of the first square belt. A polytetrafluoroethylene layer is arranged between the two transparent nylon fiber layers.

[0022] Further, the waterproof, windproof and dustproof layer includes a second square belt, which is arranged on the second forward-reverse winding roller. A plurality of second iron sheets adsorbed by the square magnet block are arranged inside the second square belt. Two layers of double-layer oilcloth layers are arranged on the inner side of the second square belt. A polyethylene terephthalate layer is arranged between the two double-layer oilcloth layers.

[0023] Therefore, the present invention provides the following effects and / or advantages:

[0024] 1.1) The window frame is used to cooperate with the wall to be fixed on the wall. The window sash is used to rotate to a predetermined angle when subjected to a predetermined force to achieve opening or closing. The sunlight sensor is used to detect in real time the light intensity of the environment where the window frame is located irradiated by sunlight. The rain detection sensor is used to detect in real time the amount of rainwater in the environment where the window frame is located. The wind direction sensor is used to detect in real time the wind direction of the environment where the window frame is located. The storage and protection box is used to carry, store and protect components at the same time. The storage and protection box is used to cooperate with the wall. The storage and retrieval slot is used for components to enter and exit the storage and protection box.

[0025] The self-rotating disk is used to be driven to rotate counterclockwise when the window sash is opened, the amount of rainwater detected by the rain detection sensor in the environment where the window frame is located exceeds a predetermined value, and the wind direction detected by the wind direction sensor in the environment where the window frame is located is towards the inside of the house, so that the first forward-receiving and reverse-releasing roller and the second forward-receiving and reverse-releasing roller rotate counterclockwise around the center at the same time until the first forward-receiving and reverse-releasing roller is directly above the second forward-receiving and reverse-releasing roller.

[0026] The first forward-receiving and reverse-releasing roller is used to be driven to rotate clockwise during each counterclockwise rotation of the self-rotating disk to keep the light-transmitting and heat-insulating layer in a retracted state, prevent the light-transmitting and heat-insulating layer from being unreeled and interfering with the inner wall of the storage and protection box, and prevent the light-transmitting and heat-insulating layer from being unreeled and piling up on the inner wall of the storage and protection box when it needs to pass through the storage and retrieval slot of the storage and protection box, so that the light-transmitting and heat-insulating layer can smoothly and fluently pass through the storage and retrieval slot of the storage and protection box during the period when it needs to be unreeled to the bottom end of the window frame; The second forward-receiving and reverse-releasing roller is used to be driven to rotate clockwise during each counterclockwise rotation of the self-rotating disk to keep the waterproof, windproof and dustproof layer in a retracted state, prevent the waterproof, windproof and dustproof layer from being unreeled and interfering with the inner wall of the storage and protection box, and prevent the waterproof, windproof and dustproof layer from being unreeled and piling up on the inner wall of the storage and protection box when it needs to pass through the storage and retrieval slot of the storage and protection box, so that the waterproof, windproof and dustproof layer can smoothly and fluently pass through the storage and retrieval slot of the storage and protection box during the period when it needs to be unreeled to the bottom end of the window frame.

[0027] The second forward-receiving and reverse-releasing roller is used to be driven to rotate counterclockwise when the self-rotating disk rotates counterclockwise and is directly below the first forward-receiving and reverse-releasing roller to unreel the waterproof, windproof and dustproof layer, so that the waterproof, windproof and dustproof layer passes through the storage and retrieval slot of the storage and protection box until the bottom end of the window frame.

[0028] The movable ring plate is used to be driven to fit the waterproof, windproof and dustproof layer when the waterproof, windproof and dustproof layer is unreeled to the bottom end of the window frame, so as to adsorb and fix the waterproof, windproof and dustproof layer, thereby reducing the entry of rain, wind and dust into the room during the opening of the window sash, and thus reducing the humidity, mess and dust accumulation in the room during the opening of the window sash; the movable ring plate is used to be driven to reciprocate for a predetermined time and then reset to the initial position when the window sash is opened, the rain volume detection sensor detects that the rain volume in the environment where the window frame is located does not exceed a predetermined value, and the wind direction sensor detects that the wind direction in the environment where the window frame is located is not towards the room, so as to shake off the rain and dust on the waterproof, windproof and dustproof layer, thereby preventing the waterproof, windproof and dustproof layer from getting moldy after being rewound.

[0029] The second forward-reeling and reverse-unreeling roller is used to be driven to rotate clockwise to wind up the waterproof, windproof and dustproof layer during the period when the rain volume detection sensor detects that the rain volume in the environment where the window frame is located does not exceed a predetermined value, the wind direction sensor detects that the wind direction in the environment where the window frame is located is not towards the room and the movable ring plate resets to the initial position, so that the waterproof, windproof and dustproof layer is first separated from the movable ring plate and then passes through the winding and unwinding slot of the storage and protection box until it is completely wound up.

[0030] 1.2) The self-rotating disk is used to be driven to rotate counterclockwise when the window sash is opened and the sunlight sensor detects that the light intensity of the environment where the window frame is located irradiated by sunlight exceeds a predetermined value, so that the first forward-reeling and reverse-unreeling roller and the second forward-reeling and reverse-unreeling roller rotate counterclockwise around the center at the same time until the second forward-reeling and reverse-unreeling roller is directly above the first forward-reeling and reverse-unreeling roller.

[0031] The first forward-reeling and reverse-unreeling roller is used to be driven to rotate counterclockwise to unwind the light-transmitting and heat-insulating layer when the self-rotating disk rotates counterclockwise and is directly below the second forward-reeling and reverse-unreeling roller, so that the light-transmitting and heat-insulating layer passes through the winding and unwinding slot of the storage and protection box until the bottom end of the window frame.

[0032] The movable ring plate is used to be driven to fit the light-transmitting and heat-insulating layer to adsorb and fix the light-transmitting and heat-insulating layer when the light-transmitting and heat-insulating layer is unreeled to the bottom end of the window frame, so that the window sash allows sunlight to penetrate into the room and reduces the heat entering the room during the opening, and thus makes the room bright and cool during the opening of the window sash; the movable ring plate is used to be driven to reciprocate for a predetermined time and then reset to the initial position when the window sash is opened and the sunlight sensor detects that the light intensity of the environment where the window frame is located irradiated by sunlight does not exceed a predetermined value, so as to shake off the impurities on the light-transmitting and heat-insulating layer and dissipate the heat, thereby preventing the light-transmitting and heat-insulating layer from being unable to let sunlight through due to the attachment of impurities next time and preventing the service life of the light-transmitting and heat-insulating layer from decreasing due to poor heat dissipation after being rewound.

[0033] The first clockwise winding and counterclockwise unwinding roller is used to be driven to rotate clockwise during the period when the sunlight sensor detects that the light intensity of the environment where the window frame is located irradiated by sunlight is not greater than a predetermined value and the movable ring plate is reset to the initial position to wind up the light-transmitting and heat-insulating layer, so that the light-transmitting and heat-insulating layer is first separated from the movable ring plate, and then passes through the winding and unwinding groove of the storage and protection box until it is completely wound up.

[0034] In summary: when the window sash is opened, the amount of rainwater in the environment where the window frame is located exceeds a predetermined value, and the wind direction of the environment where the window frame is located is towards the interior of the house, it can reduce the entry of rainwater, wind, and dust into the house during the opening of the window sash, so as to reduce the humidity, mess, and dust accumulation in the house during the opening of the window sash; when the window sash is opened and the light intensity of the environment where the window frame is located irradiated by sunlight exceeds a predetermined value, it can make the window sash let sunlight penetrate into the house and reduce heat entry into the house during the opening of the window sash, so that the house is bright and cool during the opening of the window sash; during the opening of the window sash, it can quickly respond to the changes in the above two different weathers, with high adaptability, so that during the opening of the window sash, it is not necessary for people to be present and interfere at all times to respond to the changes in the above two different weathers, so as to be able to protect the interior of the house in time or meet the needs of the house.

[0035] 2) The cooperation of the first common stability and anti-wrinkle winding member and the second common stability and anti-wrinkle winding member is used to improve the stability of the simultaneous counterclockwise revolution of the first clockwise winding and counterclockwise unwinding roller and the second clockwise winding and counterclockwise unwinding roller when they revolve counterclockwise simultaneously; the cooperation of the first common stability and anti-wrinkle winding member and the second common stability and anti-wrinkle winding member is used to limit and guide the light-transmitting and heat-insulating layer simultaneously when the first clockwise winding and counterclockwise unwinding roller rotates, preventing the light-transmitting and heat-insulating layer from wrinkling and curling; the cooperation of the first common stability and anti-wrinkle winding member and the second common stability and anti-wrinkle winding member is used to limit and guide the waterproof, windproof, and dustproof layer simultaneously when the second clockwise winding and counterclockwise unwinding roller rotates, preventing the waterproof, windproof, and dustproof layer from wrinkling and curling.

[0036] 3) The isolation layer is used to prevent rainwater, wind, and dust from entering the house from the space between the movable ring plate and the window frame when the movable ring plate cooperates with the waterproof, windproof, and dustproof layer, so that the window sash greatly reduces the entry of rainwater, wind, and dust into the house during the opening of the window sash, so as to greatly reduce the humidity, mess, and dust accumulation in the house during the opening of the window sash; the isolation layer is used to prevent heat from entering the house from the space between the movable ring plate and the window frame when the movable ring plate cooperates with the light-transmitting and heat-insulating layer, so that the window sash greatly reduces the heat entry into the house during the opening of the window sash, so that the house is cool during the opening of the window sash.

[0037] Other features and advantages of the present invention will be described in the following specification, and part of them will be obvious from the specification or understood by implementing the present invention. The objectives and other advantages of the present invention are achieved and obtained by the structures specifically pointed out in the specification and the drawings.

[0038] It should be understood that the foregoing summary and the following detailed description of the present invention are exemplary and explanatory and are intended to provide further explanation of the present invention as claimed. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] Figure 1 FIG. is a schematic structural view of the light-transmitting and heat-insulating layer of the present invention in cooperation with the movable ring plate.

[0040] Figure 2 Corresponding to Figure 1 a schematic structural view of another perspective.

[0041] Figure 3 Corresponding to Figure 1 a partial cross-sectional view after hiding the light-transmitting and heat-insulating layer.

[0042] Figure 4 FIG. is a schematic structural view of the storage and protection box, the retractable slot, the first male stable anti-wrinkle winding member, and the second male stable anti-wrinkle winding member of the present invention.

[0043] Figure 5 Corresponding to Figure 4 a schematic structural view of another perspective.

[0044] Figure 6 FIG. is a schematic structural view of the window frame, the square slot, and the telescopic motor of the present invention.

[0045] Figure 7 FIG. is a schematic structural view of the first square band, the first iron sheet, the transparent nylon fiber layer, and the polytetrafluoroethylene layer of the present invention.

[0046] Figure 8 FIG. is a schematic structural view of the second square band, the second iron sheet, the double-layer oilcloth layer, and the polyethylene terephthalate layer of the present invention.

[0047] DESCRIPTION OF THE REFERENCE NUMERALS:

[0048] Window frame 11, window sash 12, sunlight sensor 13, rain detection sensor 14, wind direction sensor 15, storage and protection box 16, retractable slot 17, self-rotating disk 18, first forward-reverse winding roller 19, second forward-reverse winding roller 20, first male stable anti-wrinkle winding ring disk 21, first limiting and guiding ring groove 22, first rotating motor 23, second rotating motor 24, third rotating motor 25, square slot 26, telescopic motor 27, square magnet block 28, isolation layer 29, first square band 30, first iron sheet 31, transparent nylon fiber layer 32, polytetrafluoroethylene layer 33, second square band 34, second iron sheet 35, double-layer oilcloth layer 36, polyethylene terephthalate layer 37, first limiting and guiding disk 38, first connecting rod 39, second male stable anti-wrinkle winding ring disk 40, second limiting and guiding disk 41, second connecting rod 42, second limiting and guiding ring groove 43. DETAILED DESCRIPTION OF THE INVENTION

[0049] For the convenience of those skilled in the art to understand, the structure of the present invention will now be further described in detail with reference to the accompanying drawings:

[0050] Reference Figures 1-8 , a highly adaptable wooden door and window structure, comprising:

[0051] A window frame 11, on which a pair of window sashes 12 are rotatably arranged. A sunlight sensor 13, a rain detection sensor 14, and a wind direction sensor 15 are arranged on the window frame 11. A storage and protection box 16 is arranged at the top end of the window frame 11, and a storage and release groove 17 is arranged at the bottom end of the storage and protection box 16;

[0052] A self-rotating disc 18 is rotatably arranged at the right end inside the storage and protection box 16. A first forward-reverse winding roller 19 is horizontally arranged at the left end of the self-rotating disc 18. A second forward-reverse winding roller 20 is horizontally arranged at the left end of the self-rotating disc 18. The first forward-reverse winding roller 19 is directly below the second forward-reverse winding roller 20. The storage and release groove 17 is directly below the first forward-reverse winding roller 19. A light-transmitting and heat-insulating layer is arranged on the first forward-reverse winding roller 19. A waterproof, windproof and dustproof layer is arranged on the second forward-reverse winding roller 20. An activity ring plate is movably arranged back and forth on the window frame 11;

[0053] The storage and protection box 16 is connected to the self-rotating disc 18 through a self-rotation driving member so that the self-rotating disc 18 rotates counterclockwise. The self-rotating disc 18 is connected to the first forward-reverse winding roller 19 through a first forward-reverse winding driving member. The self-rotating disc 18 is connected to the second forward-reverse winding roller 20 through a second forward-reverse winding driving member. The window frame 11 is connected to the activity ring plate through an activity driving member;

[0054] After the self-rotating disc 18 rotates counterclockwise according to the values of the sunlight sensor 13, the rain detection sensor 14, and the wind direction sensor 15, the first forward-reverse winding roller 19 or the second forward-reverse winding roller 20 is aligned with the storage and release groove 17, so that the light-transmitting and heat-insulating layer or the waterproof, windproof and dustproof layer is unrolled to the bottom end of the window frame 11;

[0055] The activity ring plate is adsorbed and fixed when the light-transmitting and heat-insulating layer or the waterproof, windproof and dustproof layer is unrolled to the bottom end of the window frame 11. The activity ring plate moves back and forth before the light-transmitting and heat-insulating layer or the waterproof, windproof and dustproof layer is wound up to shake off the attached objects.

[0056] The window frame 11 and the wall can be fixed to the wall by bolts, building materials adhesion or other cooperation. The window sash 12 and the window frame 11 are connected by a pin shaft or other structures. The material of the window frame 11 is wood, and the material of the window sash 12 is wood.

[0057] The window frame 11 is used to cooperate with the wall to be fixed on the wall. The window sash 12 is used to rotate to a predetermined angle when subjected to a predetermined force to achieve opening or closing. The sunlight sensor 13 is used to detect in real time the light intensity of the environment where the window frame 11 is located irradiated by sunlight. The rain detection sensor 14 is used to detect in real time the amount of rainwater in the environment where the window frame 11 is located. The wind direction sensor 15 is used to detect in real time the wind direction of the environment where the window frame 11 is located. The storage and protection box 16 is used to carry, store, and protect components at the same time. The storage and protection box 16 is used to cooperate with the wall. The storage and release slot 17 is used for components to enter and exit the storage and protection box 16.

[0058] The self-rotating disk 18 is used to be driven to rotate counterclockwise when the window sash 12 is opened, the amount of rainwater detected by the rain detection sensor 14 in the environment where the window frame 11 is located exceeds a predetermined value, and the wind direction detected by the wind direction sensor 15 in the environment where the window frame 11 is located is towards the interior of the house, so that the first forward-receiving and reverse-releasing roller 19 and the second forward-receiving and reverse-releasing roller 20 rotate counterclockwise around the center at the same time until the first forward-receiving and reverse-releasing roller 19 is directly above the second forward-receiving and reverse-releasing roller 20.

[0059] The first forward-receiving and reverse-releasing roller 19 is used to be driven to rotate clockwise during each counterclockwise rotation of the self-rotating disk 18 to keep the light-transmitting and heat-insulating layer in a state of being wound up, prevent the light-transmitting and heat-insulating layer from being unwound and interfering with the inner wall of the storage and protection box 16, and prevent the light-transmitting and heat-insulating layer from being unwound and piling up on the inner wall of the storage and protection box 16 when it needs to pass through the storage and release slot 17 of the storage and protection box 16, so that the light-transmitting and heat-insulating layer can smoothly and smoothly pass through the storage and release slot 17 of the storage and protection box 16 during the period when the light-transmitting and heat-insulating layer needs to be unwound to the bottom end of the window frame 11; The second forward-receiving and reverse-releasing roller 20 is used to be driven to rotate clockwise during each counterclockwise rotation of the self-rotating disk 18 to keep the waterproof, windproof, and dustproof layer in a state of being wound up, prevent the waterproof, windproof, and dustproof layer from being unwound and interfering with the inner wall of the storage and protection box 16, and prevent the waterproof, windproof, and dustproof layer from being unwound and piling up on the inner wall of the storage and protection box 16 when it needs to pass through the storage and release slot 17 of the storage and protection box 16, so that the waterproof, windproof, and dustproof layer can smoothly and smoothly pass through the storage and release slot 17 of the storage and protection box 16 during the period when the waterproof, windproof, and dustproof layer needs to be unwound to the bottom end of the window frame 11.

[0060] The second forward-receiving and reverse-releasing roller 20 is used to be driven to rotate counterclockwise when the self-rotating disk 18 rotates counterclockwise and is directly below the first forward-receiving and reverse-releasing roller 19 to unwind the waterproof, windproof, and dustproof layer, so that the waterproof, windproof, and dustproof layer passes through the storage and release slot 17 of the storage and protection box 16 until the bottom end of the window frame 11.

[0061] The movable ring plate is used to be driven to fit the waterproof, windproof and dustproof layer when the waterproof, windproof and dustproof layer is unreeled to the bottom end of the window frame 11, so as to adsorb and fix the waterproof, windproof and dustproof layer, so that when the window sash 12 is opened, rain, wind and dust entering the room are reduced, and thus the humidity, mess and dust falling in the room are reduced during the opening of the window sash 12; the movable ring plate is used to be driven to reciprocate for a predetermined time and then reset to the initial position when the window sash 12 is opened, the rain sensor 14 detects that the amount of rainwater in the environment where the window frame 11 is located does not exceed a predetermined value, and the wind direction sensor 15 detects that the wind direction in the environment where the window frame 11 is located is not towards the room, so that the rainwater and dust on the waterproof, windproof and dustproof layer are shaken off, thus preventing the waterproof, windproof and dustproof layer from getting moldy after being reeled up.

[0062] The second forward-reeling and reverse-unreeling roller 20 is used to be driven to rotate clockwise to reel up the waterproof, windproof and dustproof layer during the period when the rain sensor 14 detects that the amount of rainwater in the environment where the window frame 11 is located does not exceed a predetermined value, the wind direction sensor 15 detects that the wind direction in the environment where the window frame 11 is located is not towards the room and the movable ring plate resets to the initial position, so that the waterproof, windproof and dustproof layer is first separated from the movable ring plate, and then passes through the winding and unwinding groove 17 of the storage and protection box 16 until it is completely reeled up.

[0063] The self-rotating disc 18 is used to be driven to rotate counterclockwise when the window sash 12 is opened and the sunlight sensor 13 detects that the light intensity of the environment where the window frame 11 is located irradiated by sunlight exceeds a predetermined value, so that the first forward-reeling and reverse-unreeling roller 19 and the second forward-reeling and reverse-unreeling roller 20 rotate counterclockwise around the sun simultaneously until the second forward-reeling and reverse-unreeling roller 20 is directly above the first forward-reeling and reverse-unreeling roller 19.

[0064] The first forward-reeling and reverse-unreeling roller 19 is used to be driven to rotate counterclockwise to unreel the light-transmitting and heat-insulating layer when the self-rotating disc 18 rotates counterclockwise and is directly below the second forward-reeling and reverse-unreeling roller 20, so that the light-transmitting and heat-insulating layer passes through the winding and unwinding groove 17 of the storage and protection box 16 until the bottom end of the window frame 11.

[0065] The movable ring plate is used to be driven to fit the light-transmitting and heat-insulating layer to adsorb and fix the light-transmitting and heat-insulating layer when the light-transmitting and heat-insulating layer is unreeled to the bottom end of the window frame 11, so that when the window sash 12 is opened, sunlight can penetrate into the room and heat entering the room is reduced, so that the room is bright and cool during the opening of the window sash 12; the movable ring plate is used to be driven to reciprocate for a predetermined time and then reset to the initial position when the window sash 12 is opened and the sunlight sensor 13 detects that the light intensity of the environment where the window frame 11 is located irradiated by sunlight does not exceed a predetermined value, so that the impurities on the light-transmitting and heat-insulating layer are shaken off and the heat is dissipated, thus preventing the light-transmitting and heat-insulating layer from being unable to transmit sunlight next time due to the attachment of impurities and preventing the service life of the light-transmitting and heat-insulating layer from decreasing due to poor heat dissipation after being reeled up.

[0066] The first clockwise-winding and counterclockwise-unwinding roller 19 is used to be driven to rotate clockwise during the period when the sunlight sensor 13 detects that the light intensity of the environment where the window frame 11 is located irradiated by sunlight is not greater than a predetermined value and the movable ring plate is reset to the initial position, so as to wind up the light-transmitting and heat-insulating layer, so that the light-transmitting and heat-insulating layer is first separated from the movable ring plate, and then passes through the winding and unwinding groove 17 of the storage and protection box 16 until it is completely wound up.

[0067] A first common-stability and anti-wrinkle winding member is provided among the first clockwise-winding and counterclockwise-unwinding roller 19, the second clockwise-winding and counterclockwise-unwinding roller 20, and the storage and protection box 16, and the first common-stability and anti-wrinkle winding member is located to the left of the winding and unwinding groove 17; a second common-stability and anti-wrinkle winding member is provided among the first clockwise-winding and counterclockwise-unwinding roller 19, the second clockwise-winding and counterclockwise-unwinding roller 20, the storage and protection box 16, and the self-rotating disc 18, and the second common-stability and anti-wrinkle winding member is located to the right of the winding and unwinding groove 17.

[0068] The cooperation of the first common-stability and anti-wrinkle winding member and the second common-stability and anti-wrinkle winding member is used to improve the stability of the simultaneous counterclockwise revolution of the first clockwise-winding and counterclockwise-unwinding roller 19 and the second clockwise-winding and counterclockwise-unwinding roller 20 when they revolve counterclockwise simultaneously; the cooperation of the first common-stability and anti-wrinkle winding member and the second common-stability and anti-wrinkle winding member is used to limit and guide the light-transmitting and heat-insulating layer simultaneously when the first clockwise-winding and counterclockwise-unwinding roller 19 rotates, so as to prevent the light-transmitting and heat-insulating layer from wrinkling and curling; the cooperation of the first common-stability and anti-wrinkle winding member and the second common-stability and anti-wrinkle winding member is used to limit and guide the waterproof, windproof and dustproof layer simultaneously when the second clockwise-winding and counterclockwise-unwinding roller 20 rotates, so as to prevent the waterproof, windproof and dustproof layer from wrinkling and curling.

[0069] The first common-stability and anti-wrinkle winding member includes a first common-stability and anti-wrinkle winding ring plate 21, which is arranged among the first clockwise-winding and counterclockwise-unwinding roller 19, the second clockwise-winding and counterclockwise-unwinding roller 20, and the storage and protection box 16. The first common-stability and anti-wrinkle winding ring plate 21 is located to the left of the winding and unwinding groove 17. A first limiting and guiding disc 38 is arranged between the first clockwise-winding and counterclockwise-unwinding roller 19 and the second clockwise-winding and counterclockwise-unwinding roller 20 and inside the first common-stability and anti-wrinkle winding ring plate 21. The first limiting and guiding disc 38 is connected to the inner left end of the storage and protection box 16 through a first connecting rod 39. A first limiting and guiding ring groove 22 is formed between the first common-stability and anti-wrinkle winding ring plate 21 and the first limiting and guiding disc 38. Both the first clockwise-winding and counterclockwise-unwinding roller 19 and the second clockwise-winding and counterclockwise-unwinding roller 20 penetrate through the first limiting and guiding ring groove 22;

[0070] The second public stability anti-wrinkle rolling part includes a second public stability anti-wrinkle rolling ring plate 40, which is arranged among the first forward and reverse winding roller 19, the second forward and reverse winding roller 20, and the storage and protection box 16. The second public stability anti-wrinkle rolling ring plate 40 is located to the right of the winding and unwinding groove 17. A second limiting and guiding disk 41 is arranged between the first forward and reverse winding roller 19 and the second forward and reverse winding roller 20 and inside the second public stability anti-wrinkle rolling ring plate 40. The second limiting and guiding disk 41 is connected to the self-rotating disk 18 through a second connecting rod 42. A second limiting and guiding ring groove 43 is formed between the second public stability anti-wrinkle rolling ring plate 40 and the second limiting and guiding disk 41. The first forward and reverse winding roller 19 and the second forward and reverse winding roller 20 both penetrate through the second limiting and guiding ring groove 43.

[0071] The first forward and reverse winding driving part includes a first rotating motor 23, which is arranged between the self-rotating disk 18 and the first forward and reverse winding roller 19.

[0072] The second forward and reverse winding driving part includes a second rotating motor 24, which is arranged between the self-rotating disk 18 and the second forward and reverse winding roller 20.

[0073] The self-rotating driving part includes a third rotating motor 25, which is arranged between the storage and protection box 16 and the self-rotating disk 18.

[0074] The movable driving part includes a square groove 26, which is arranged on the window frame 11. A number of telescopic motors 27 are arranged between the window frame 11 and the movable ring plate and inside the square groove 26.

[0075] The movable ring plate includes a square magnet block 28, which is movably arranged on the window frame 11. An isolation layer 29 is arranged between the square magnet block 28 and the window frame 11. The isolation layer 29 is a polyamide fiber layer or a polyvinyl chloride layer or an expanded polypropylene layer.

[0076] The isolation layer 29 is used to prevent rain, wind, and dust from entering the house through the space between the movable ring plate and the window frame 11 when the movable ring plate cooperates with the waterproof, windproof, and dustproof layer, so that when the window sash 12 is opened, the entry of rain, wind, and dust into the house is greatly reduced, and thus the humidity, mess, and dust accumulation inside the house are greatly reduced during the opening of the window sash 12; the isolation layer 29 is used to prevent heat from entering the house through the space between the movable ring plate and the window frame 11 when the movable ring plate cooperates with the light-transmitting and heat-insulating layer, so that when the window sash 12 is opened, the entry of heat into the house is greatly reduced, and thus the house is kept cool during the opening of the window sash 12.

[0077] The light-transmitting and heat-insulating layer includes a first square belt 30 disposed on the first forward-reverse winding roller 19. A number of first iron sheets 31 adsorbed by square magnet blocks 28 are arranged inside the first square belt 30. Two layers of transparent nylon fiber layers 32 are arranged on the inner side of the first square belt 30, and a polytetrafluoroethylene layer 33 is arranged between the two transparent nylon fiber layers 32.

[0078] The waterproof, windproof and dustproof layer includes a second square belt 34 disposed on the second forward-reverse winding roller 20. A number of second iron sheets 35 adsorbed by square magnet blocks 28 are arranged inside the second square belt 34. Two layers of double-layer oilcloth layers 36 are arranged on the inner side of the second square belt 34, and a polyethylene terephthalate layer 37 is arranged between the two double-layer oilcloth layers 36.

[0079] It should be noted that in the claims, any reference signs placed between parentheses shall not be construed as limiting the claim. The word "comprising" does not exclude the presence of elements or steps not listed in a claim. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The present invention can be implemented by means of hardware including several different elements and by means of a suitably programmed computer. In a unit claim listing several devices, several of these devices may be embodied by the same item of hardware. The use of the words first, second, and third, etc. does not denote any order. These words may be interpreted as names.

[0080] Although the preferred embodiments of the present invention have been described, those skilled in the art can make additional changes and modifications once they learn the basic creative concept. Therefore, the appended claims are intended to be construed to include the preferred embodiments and all changes and modifications falling within the scope of the present invention.

[0081] In the present invention, unless otherwise clearly defined and limited, terms such as "installation", "connection", "connection", "fixation", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0082] In the description of this specification, the description referring to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms should not be understood as necessarily referring to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

Claims

1. A high-adaptability wooden door and window structure, characterized in that: Comprising: A window frame (11), on which a pair of window sashes (12) are rotatably arranged. A sunlight sensor (13), a rain detection sensor (14), and a wind direction sensor (15) are arranged on the window frame (11). A storage and protection box (16) is arranged at the top end of the window frame (11), and a storage and release groove (17) is arranged at the bottom end of the storage and protection box (16); At the inner right end of the storage and protection box (16), a self-rotating disc (18) is rotatably arranged. A first forward-receiving and reverse-releasing roller (19) is horizontally arranged at the left end of the self-rotating disc (18), and a second forward-receiving and reverse-releasing roller (20) is horizontally arranged at the left end of the self-rotating disc (18). The first forward-receiving and reverse-releasing roller (19) is directly below the second forward-receiving and reverse-releasing roller (20), and the storage and release groove (17) is directly below the first forward-receiving and reverse-releasing roller (19). A light-transmitting and heat-insulating layer is arranged on the first forward-receiving and reverse-releasing roller (19), and a waterproof, windproof, and dustproof layer is arranged on the second forward-receiving and reverse-releasing roller (20). An activity ring plate is movably arranged back and forth on the window frame (11); The storage and protection box (16) and the self-rotating disc (18) are connected by a self-rotation driving member so that the self-rotating disc (18) rotates counterclockwise. The self-rotating disc (18) and the first forward-receiving and reverse-releasing roller (19) are connected by a first forward-receiving and reverse-releasing driving member, the self-rotating disc (18) and the second forward-receiving and reverse-releasing roller (20) are connected by a second forward-receiving and reverse-releasing driving member, and the window frame (11) and the activity ring plate are connected by an activity driving member; After the self-rotating disc (18) rotates counterclockwise according to the values of the sunlight sensor (13), the rain detection sensor (14), and the wind direction sensor (15), the first forward-receiving and reverse-releasing roller (19) or the second forward-receiving and reverse-releasing roller (20) is aligned with the storage and release groove (17), so that the light-transmitting and heat-insulating layer or the waterproof, windproof, and dustproof layer is unrolled to the bottom end of the window frame (11); The activity ring plate adsorbs and fixes when the light-transmitting and heat-insulating layer or the waterproof, windproof, and dustproof layer is unrolled to the bottom end of the window frame (11), and the activity ring plate moves back and forth before the light-transmitting and heat-insulating layer or the waterproof, windproof, and dustproof layer is rolled up to shake off the attached objects; The activity driving member includes a square groove (26) arranged on the window frame (11), and a plurality of telescopic motors (27) are arranged between the window frame (11) and the activity ring plate and within the square groove (26).

2. The high-adaptability wooden door and window structure according to claim 1, characterized in that: A first common-stability and anti-wrinkle rolling member is arranged among the first forward-receiving and reverse-releasing roller (19), the second forward-receiving and reverse-releasing roller (20), and the storage and protection box (16), and the first common-stability and anti-wrinkle rolling member is located to the left of the storage and release groove (17); A second common-stability and anti-wrinkle rolling member is arranged among the first forward-receiving and reverse-releasing roller (19), the second forward-receiving and reverse-releasing roller (20), the storage and protection box (16), and the self-rotating disc (18), and the second common-stability and anti-wrinkle rolling member is located to the right of the storage and release groove (17).

3. The high-adaptability wooden door and window structure according to claim 2, characterized in that: The first public-stable anti-wrinkle winding member includes a first public-stable anti-wrinkle winding ring plate (21), which is arranged among the first forward-reverse winding roller (19), the second forward-reverse winding roller (20), and the storage and protection box (16). The first public-stable anti-wrinkle winding ring plate (21) is located to the left of the winding and unwinding groove (17). A first limiting and guiding disk (38) is arranged between the first forward-reverse winding roller (19) and the second forward-reverse winding roller (20) and within the first public-stable anti-wrinkle winding ring plate (21). The first limiting and guiding disk (38) is connected to the inner left end of the storage and protection box (16) through a first connecting rod (39). A first limiting and guiding ring groove (22) is formed between the first public-stable anti-wrinkle winding ring plate (21) and the first limiting and guiding disk (38). The first forward-reverse winding roller (19) and the second forward-reverse winding roller (20) both penetrate through the first limiting and guiding ring groove (22). The second public-stable anti-wrinkle winding member includes a second public-stable anti-wrinkle winding ring plate (40), which is arranged among the first forward-reverse winding roller (19), the second forward-reverse winding roller (20), and the storage and protection box (16). The second public-stable anti-wrinkle winding ring plate (40) is located to the right of the winding and unwinding groove (17). A second limiting and guiding disk (41) is arranged between the first forward-reverse winding roller (19) and the second forward-reverse winding roller (20) and within the second public-stable anti-wrinkle winding ring plate (40). The second limiting and guiding disk (41) is connected to the self-rotating disk (18) through a second connecting rod (42). A second limiting and guiding ring groove (43) is formed between the second public-stable anti-wrinkle winding ring plate (40) and the second limiting and guiding disk (41). The first forward-reverse winding roller (19) and the second forward-reverse winding roller (20) both penetrate through the second limiting and guiding ring groove (43).

4. A high-adaptability wooden door and window structure according to claim 1, characterized in that: The first forward-reverse driving member includes a first rotating motor (23), which is arranged between the self-rotating disk (18) and the first forward-reverse winding roller (19).

5. A highly adaptable wooden door and window structure according to claim 1, characterized in that: The second forward-reverse driving member includes a second rotating motor (24), which is arranged between the self-rotating disk (18) and the second forward-reverse winding roller (20).

6. The high-adaptability wooden door and window structure according to claim 1, characterized in that: The self-rotating driving member includes a third rotating motor (25), which is arranged between the storage and protection box (16) and the self-rotating disk (18).

7. A high-adaptability wooden door and window structure according to claim 1, characterized in that: The movable ring plate includes a square magnet block (28), which is movably arranged on the window frame (11). An isolation layer (29) is arranged between the square magnet block (28) and the window frame (11).

8. A highly adaptable wooden door and window structure according to claim 7, characterized in that: The light-transmitting and heat-insulating layer includes a first square belt (30), which is arranged on the first forward-reverse winding roller (19). A number of first iron sheets (31) adsorbed by the square magnet block (28) are arranged within the first square belt (30). Two transparent nylon fiber layers (32) are arranged on the inner side of the first square belt (30). A polytetrafluoroethylene layer (33) is arranged between the two transparent nylon fiber layers (32).

9. A high-adaptability wooden door and window structure according to claim 7, characterized in that: The waterproof, windproof and dustproof layer includes a second square belt (34) disposed on the second forward-receiving and reverse-releasing roller (20). A plurality of second iron sheets (35) adsorbed by square magnet blocks (28) are arranged inside the second square belt (34). Two layers of double-layer oilcloth layers (36) are arranged on the inner side of the second square belt (34), and a polyethylene terephthalate layer (37) is arranged between the two double-layer oilcloth layers (36).

Citation Information

Patent Citations

  • Window shading curtain

    CN104510320A

  • Combined curtain

    CN210195633U

  • Integrated sunshade curtain convenient to clean

    CN210276827U