CN112796615A - Sound-insulation heat-preservation narrow-frame intelligent window capable of running quietly and refuge and rescue using method thereof - Google Patents

Sound-insulation heat-preservation narrow-frame intelligent window capable of running quietly and refuge and rescue using method thereof Download PDF

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Publication number
CN112796615A
CN112796615A CN202110101697.1A CN202110101697A CN112796615A CN 112796615 A CN112796615 A CN 112796615A CN 202110101697 A CN202110101697 A CN 202110101697A CN 112796615 A CN112796615 A CN 112796615A
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China
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window
fixed
winding
detector
movable
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CN202110101697.1A
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CN112796615B (en
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白亮
朱文辉
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Individual
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    • 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
    • E05F15/72Power-operated mechanisms for wings with automatic actuation responsive to emergency conditions, e.g. fire
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62BDEVICES, APPARATUS OR METHODS FOR LIFE-SAVING
    • A62B3/00Devices or single parts for facilitating escape from buildings or the like, e.g. protection shields, protection screens; Portable devices for preventing smoke penetrating into distinct parts of buildings
    • 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
    • E05F15/60Power-operated mechanisms for wings using electrical actuators
    • E05F15/603Power-operated mechanisms for wings using electrical actuators using rotary electromotors
    • E05F15/665Power-operated mechanisms for wings using electrical actuators using rotary electromotors for vertically-sliding wings
    • 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
    • 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
    • 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
    • E05F3/00Closers or openers with braking devices, e.g. checks; Construction of pneumatic or liquid braking devices
    • E05F3/02Closers or openers with braking devices, e.g. checks; Construction of pneumatic or liquid braking devices with pneumatic piston brakes
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Application of doors, windows, wings or fittings thereof for buildings or parts thereof characterised by the type of wing
    • E05Y2900/148Windows

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  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Power-Operated Mechanisms For Wings (AREA)

Abstract

The invention discloses a sound-proof heat-preservation narrow-frame intelligent window with quiet running, which relates to the technical field of electric external windows and comprises a window frame, a movable window, a fixed window, a power supply, a controller, a power shell, a power device, first movable pulleys, two-way pull ropes, one-way pull ropes, a rope connector, a sliding assembly and a sliding track, wherein the movable window is connected in the window frame in a sliding manner, the fixed window is fixed in the window frame, the power shell is fixed in the window frame, the two first movable pulleys are respectively positioned at two sides of the power shell, the two-way pull ropes are respectively wound on the two first movable pulleys, the first ends of the two-way pull ropes are fixed on the power shell, the second ends of the two-way pull ropes are wound on the power device, the first ends of the one-way pull ropes are fixed on the first movable pulleys, the second ends of the one-way pull ropes are fixed on the rope, the power device and the power supply are electrically connected with the controller. The invention can electrically control the movable window to lift.

Description

Sound-insulation heat-preservation narrow-frame intelligent window capable of running quietly and refuge and rescue using method thereof
Technical Field
The invention relates to the technical field of electric external windows, in particular to a sound-insulation and heat-preservation narrow-frame intelligent window capable of running quietly and a refuge and rescue using method thereof.
Background
An outer window: one facing outdoors and the other facing indoors. The existing external window has a manual external window and also has a plurality of electric external windows. The existing electric external window generally has the following problems:
1. most of the existing electric windows can generate operation noise in the electric opening and closing process, so that the user experience of a user is greatly reduced;
2. the existing electric window driven by the driving principle of the steel wire rope and the winding reel has the advantages that the steel wire rope can be seriously abraded, the abrasion severity is increased along with the increase of the load of the steel wire rope, when the rope winding speed is increased or the movable window is influenced by wind pressure during rope winding to have uneven speed and generate vibration during mechanical operation, the probability of winding the steel wire rope is increased, and therefore the working reliability of the whole system is reduced;
3. in the existing electric lifting window, the movable window is arranged above the fixed window, and in a closed state, the movable window is not effectively kept in a sealed state, the sound insulation performance and the heat insulation performance cannot reach the national energy-saving standard, and if the sound insulation performance and the heat insulation performance of the electric window are not strong, cold air can enter from a gap of the electric window indoors in winter, and road noise cannot be effectively blocked;
4. the existing large-scale electric window has large specification of the motor because the movable window is large and heavy, thus causing that the motor can not be hidden in the window frame section bar or the window frame section bar is too wide and thick, and simultaneously the power consumption and the operation noise are also large;
5. many of the existing power windows have driving parts exposed outside the window frame, which is not very beautiful. The frame sectional materials on two sides of some electric windows are very wide and thick, and other electric windows are not on the same plane with the fixed window in the closed state or are not on the same plane with the glass curtain wall in the closed state, so that the outer window is not attractive and is not sealed. When some electric windows are opened, the movable windows extend out to the outside or the inside, and the electric windows influence the attractiveness of the outer windows of the places for indoor viewing and influence the attractiveness of the outer facades of urban buildings;
6. most of the existing power windows need to be maintained regularly, because some power windows are arranged in places which are high in position and inconvenient for people to reach, the regular maintenance is very high in overhead operation cost, and the operation of using places is influenced.
For specific examples the following are:
the technical scheme of application number CN202010635274.3 has the following defects: 1. the fixed window is arranged at the upper part of the opening of the outer window, the movable window is arranged at the lower part of the opening of the outer window, and the opening position of the outer window is too low after the movable window is lifted and opened, so that indoor children can fall from the opening of the outer window or articles can fall from a high-rise building carelessly; 2. according to the national building engineering standard, the distance between the lower part of the outer window opening and the indoor ground is more than 1.1 m, namely the technical scheme of CN202010635274.3, the whole product is arranged at the position which is more than 1.1 m away from the indoor ground, and the fixed window of the product is arranged above the product, so that the area of the movable window which can be opened is small, and the movable window is not beneficial to indoor ventilation of places and smoke discharge in case of fire; 3. fire smoke starts to accumulate from the upper part of a place, the fire smoke is high-temperature toxic and lighter than air, the fire smoke naturally has the property of diffusing upwards at a high speed towards a window, the smoke exhaust efficiency of the fire smoke is higher as a movable window of a movable window is closer to the upper part, and the smoke exhaust of a fire is not facilitated by the fixing window of the technical scheme; 4. the fixed window is arranged at the upper part, and the movable window is arranged at the lower part in the technical scheme, namely when the movable window is large and heavy, the movable window needs to support the dead weight of the movable window by a window frame at the lower part so as to keep the closed state of the outer window for a long time; 5. according to the technical scheme, the power-assisted mechanism and the driving mechanism are too bulky, so that the frame above the movable window is too high, the attractiveness is influenced, and meanwhile, if one part fails, the whole intelligent outer window cannot be opened or closed due to too many parts; 6. when the technical scheme is in a closed state, the movable window and the fixed window are not on the same vertical surface, so that the attractiveness of the outer vertical surface of a building is influenced, and the attractiveness of the outer window for indoor viewing is also influenced; 7. according to the technical scheme, the movable window and the fixed window are not on the same vertical surface when the movable window is closed, and the movable window does not have an inward pressing and sealing action when the movable window is closed, so that the key performance indexes of the external window such as sealing property, water tightness, air tightness, sound insulation and heat insulation cannot be excellent; the lack of sealing performance can also cause dust and salt mist at sea to invade the driving mechanism and the power assisting mechanism through the open slot, so that parts need to be maintained regularly; 8. the sight line of the eyes of people is horizontally unfolded at the height of 1.6 meters from the ground, the height is the position of a fixed window, and indoor people watch outdoor landscapes through glass and dirt on the glass.
The technical solution of application No. 201310036583.9 has the following disadvantages: 1. the rope winding method is characterized in that a traditional spiral rope groove winding drum rope winding mode is adopted, the principle of orderly winding of the steel wire rope is that the steel wire rope slides into a preset track by means of sliding friction of the steel wire rope and a spiral concave rope groove (the concave rope groove refers to a concave groove channel which is wound and contacted with the steel wire rope on a winding drum, and the concave groove channel is the same as the concave groove channel), although a winding drum cover (1309) is additionally arranged outside the winding drum, if the steel wire rope jumps, the winding drum cover can forcibly block the steel wire rope, so that the steel wire rope is not easy to jump, and the steel wire rope and the winding drum cover are in sliding friction at the moment; the steel wire rope slides into a preset channel by the pressure of the concave rope grooves on the winding drum to the steel wire rope in the rope winding process, sliding friction exists between the steel wire rope and the preset channel, the pressure of the concave rope grooves to the steel wire rope (the pressure which is not vertical to the axis of the winding drum) is mainly concentrated at the tangent point position of the steel wire rope and the winding drum (the tangent point position of the steel wire rope pulled into a straight line and the circular winding drum) when the steel wire rope is guided (orderly wound) by the concave rope grooves, the steel wire rope slides to generate the sliding friction when the tangent point area bears huge pressure (the steel wire rope can slightly rotate when the sliding friction occurs, the steel wire rope needs to resist self torsion), when the friction coefficient of the steel wire rope and the winding drum is fixed, the friction resistance of the steel wire rope at the tangent point position is the largest, and when the pulling force of the steel wire rope is larger, the greater the pressure acting on the reel, the greater the frictional resistance generated and the greater the degree of wear on the steel cord. Although the traditional spiral rope groove or broken line rope groove winding reel is simple in structure, the traditional spiral rope groove or broken line rope groove winding reel has many limitations in systems which have higher safety factor requirements or are used for years without replacing parts, meanwhile, along with the increase of the service life of machinery, wear-resistant materials on the surface of a steel wire rope are worn, the friction coefficient between the steel wire rope and the wall surface of the rope groove of the winding reel is increased, when the speed of winding the rope is increased or when a movable window is influenced by wind pressure during rope winding and the speed is uneven and vibration is generated, the probability of winding the steel wire rope is increased, and therefore the working reliability of the whole system is reduced; 2. the axial distance between a winding reel (1308) and a fixed pulley (14) of the product is very small, when the winding reel is used for winding or paying off a rope, a steel wire rope (15) can move back and forth in the axial direction of the winding reel, the smaller the axial distance between the winding reel and the fixed pulley is, the larger the deviation angle of the steel wire rope (15) on the fixed pulley (14) is, the abrasion of the steel wire rope can be accelerated, and meanwhile, the larger the deviation angle is, the lower the transmission efficiency is, and the reliability of mechanical work and the service life can be reduced; 3. due to the working principle and the design layout of the product, the direct power for providing the up-and-down motion of the movable window comes from the winding drums (1308) and the fixed pulleys (14) at the tops of the two sides of the window, so that the frames at the two sides of the whole window cannot be very narrow, the sectional materials at the two sides of the whole window are too thick, the frame of the outer window is very large, and the attractiveness is very poor; 4. this technical scheme does not have booster unit, and when the movable window weight was great, this requirement to the motor was very high, and is higher to the intensity requirement of wire rope and relevant spare part simultaneously.
Therefore, a novel electric window is urgently needed, and the problems are solved.
Disclosure of Invention
The invention aims to provide a sound-insulation and heat-preservation narrow-frame intelligent window which runs quietly and a refuge and rescue using method thereof, which are used for solving the technical problems in the prior art, can electrically control the opening or closing of a movable window and can hover at any time.
In order to achieve the purpose, the invention provides the following scheme:
the invention discloses a silent-running sound-insulation and heat-preservation narrow-frame intelligent window which comprises a window frame, a movable window, a fixed window, a power supply, a controller, a power shell, a power device, two first movable pulleys, two double-stroke pull ropes, two single-stroke pull ropes, two rope connectors, two sets of sliding assemblies and two sets of sliding rails, wherein the movable window is connected in the window frame in a sliding manner, the fixed window is fixed in the window frame, the power shell is fixed in the window frame, the controller and the power device are both fixed in the power shell, the two first movable pulleys are respectively positioned on two sides of the power shell, the two double-stroke pull ropes are respectively wound on the two first movable pulleys, the first ends of the double-stroke pull ropes are fixed on the power shell, the second ends of the double-stroke pull ropes are wound on the power device, and the power device is used for winding and unwinding the double-stroke pull ropes, the first end of the single-way pull rope is fixed on the first movable pulley, the second end of the single-way pull rope is fixed on the rope connector, the two groups of sliding assemblies are respectively positioned on two sides of the movable window, the rope connector is fixed with the movable window through the sliding assemblies, the two groups of sliding rails are respectively fixed on two sides of the window frame, the sliding assemblies slide in the sliding rails, and the power device and the power supply are electrically connected with the controller.
Preferably, the power device comprises a motor, a speed reducer, a driving wheel, two winding wheels, two transition wheels, two guide wheels, two winding drums and two guide drums, the power shell is divided into an upper cavity and a lower cavity by a supporting plate, the speed reducer and the motor are fixed in the upper cavity, the driving wheel, the two winding wheels, the two transition wheels, the two guide wheels, the two winding drums and the two guide drums are all positioned in the lower cavity, an output shaft of the motor is fixed on an input shaft of the speed reducer, an output shaft of the speed reducer is fixed on the driving wheel, two sides of the driving wheel are respectively meshed with the two winding wheels, the winding drums are fixed on the surfaces of the two winding wheels far away from the supporting plate, winding threads are arranged on the winding drums, and second ends of the two-way pull ropes are fixed on the winding drums, one side of the winding wheel, which is far away from the driving wheel, is meshed with the transition wheel, one side of the transition wheel, which is far away from the winding wheel, is meshed with the guide wheel, one side of the guide wheel, which is far away from the supporting plate, is fixed with the guide cylinder, the side wall of the guide cylinder is provided with guide threads, and the double-stroke pull rope bypasses the guide threads.
Preferably, two winding rotation shafts, two transition rotation shafts and two guide rotation shafts are further included, the winding wire rotating shaft sequentially penetrates through and fixes the winding wire wheel and the winding reel, the upper end and the lower end of the winding wire rotating shaft are respectively fixed at the lower ends of the supporting plate and the power shell through bearings, the transition rotating shaft penetrates through and is fixed with the transition wheel, the upper end and the lower end of the transition rotating shaft are respectively fixed at the lower ends of the supporting plate and the power shell through bearings, the guide rotating shaft penetrates through and fixes the guide wheel and the guide cylinder in sequence, the upper end and the lower end of the guide rotating shaft are fixed at the lower ends of the support plate and the power shell through bearings respectively, the output shaft of reduction gear is towards the below, spiral rotation axis, the transition rotation axis with the direction rotation axis all with the output shaft of reduction gear has the contained angle.
Preferably, a stop block is arranged on one side, away from the supporting plate, of the driving wheel, the stop block is located between the two winding reels, and arc surfaces are arranged on two sides of the stop block.
Preferably, the driving wheel, the winding wheel, the transition wheel and the guide wheel are all bevel gears, and the helix angle of the driving wheel, the winding wheel, the transition wheel and the guide wheel is 10 °.
Preferably, the window frame further comprises two power assisting devices, each power assisting device comprises a tension gas spring, a power assisting pull rope and a second movable pulley, fixed ends of the two tension gas springs are fixed to two sides of the power shell respectively, the second movable pulley is fixed to a telescopic end of the tension gas spring, the power assisting pull rope bypasses the second movable pulley, a first end of the power assisting pull rope is fixed to the inner side of the window frame, and a second end of the power assisting pull rope is fixed to the rope connector.
Preferably, the sliding rail is a single-sided sliding rail or a double-sided sliding rail;
when the sliding rail is a single-side sliding rail, the group of single-side sliding rails comprises a vertical sliding rail, and the sliding assembly slides in the vertical sliding rail;
work as when the slip track is two side slide rails, a set of two side slide rails include two slide rails of buckling, two the slide rail of buckling distributes from top to bottom, the slide rail of buckling includes vertical section and slope section, and is a set of the slip subassembly includes two track pulleys, two the track pulley is located respectively the upper and lower both ends of activity window one side are located the below the downside of slope section is fixed with electromagnetic clutch's driving part, the lower extreme of activity window is fixed with electromagnetic clutch's follower.
Preferably, the intelligent fire-fighting water heater further comprises a temperature control release device, a smoke detector, a fire detector, a gas leakage detector, an outdoor air quality detector, an outdoor rainwater detector, an indoor air quality detector, an indoor carbon dioxide concentration detector, an indoor oxygen content detector, a Bluetooth detector and an infrared detector, wherein the controller is respectively electrically connected with the temperature control release device, the smoke detector, the fire detector, the gas leakage detector, the outdoor temperature air quality detector, the outdoor rainwater detector, the indoor air quality detector, the indoor carbon dioxide concentration detector, the indoor oxygen content detector, the Bluetooth detector and the infrared detector.
Preferably, the upper surface of backup pad still is equipped with the control box, the controller is fixed in the control box, still be equipped with stand-by power supply in the control box.
The invention also discloses a refuge and rescue using method of the sound-insulation and heat-preservation narrow-frame intelligent window which runs quietly, which comprises the following steps:
the method comprises the following steps: when a fire disaster happens in a residential living room or a kitchen at night, a fire detector in the residential living room gives out an alarm;
step two: the signal sent by the fire detector is transmitted to an intelligent outer window in a bedroom of a residential building in a wired or wireless way;
step three: the intelligent window is positioned in a bedroom of the residential building, and sends out fire alarm sound and refuge and rescue method step prompts to the indoor;
step four: the movable window of the intelligent window in the bedroom of the residential building is automatically opened, the movable window of the intelligent window is automatically opened by a main power supply, when the main power supply is powered off due to a fire disaster, the movable window is automatically opened by a standby power supply, and when a standby battery is not managed well at ordinary times, the movable window can be manually opened;
step five: people trapped in a bedroom of a house by a fire climb out of the movable window hole and stand in an escape frame on the back side of the intelligent window, the escape frame is fixed on an outer vertical surface of a building, the escape frame is similar to an equipment platform of an air conditioner outdoor unit or a flower bed, and six people can stand on the escape frame;
step six: the personnel escaping into the escape frame are controlled to close and seal by a mobile phone or a manual operation at the moment, the personnel escaping into the escape frame are safe at the moment and cannot be burnt by high-temperature toxic smoke and flame in a room, and the movable window cannot be automatically opened under the condition that a sensor on the intelligent window senses that the escape frame is occupied, and needs to be unlocked and opened by fire rescue personnel or the mobile phone;
step seven: waiting for rescue in the escape frame.
Compared with the prior art, the invention has the following technical effects:
1. the movable window is arranged at the upper part of the outer window, the fixed window is arranged at the lower part of the outer window, and the fixed window has the effect of a glass fence, so that children cannot fall from a high building and articles cannot fall from the high building carelessly;
2. the movable window is arranged above the outer window, so that the characteristic that high-temperature smoke of a fire disaster spreads upwards to the window is met, and the smoke exhaust efficiency is high;
3. the fixed window is arranged below the outer window, and the movable window is arranged above the outer window, so that the openable area of the movable window can be maximized, and ventilation and smoke exhaust are facilitated;
4. when the movable window is closed, the movable window goes deep into a window frame window, is matched with an electromagnetic clutch lock plunger or an electromagnet, is matched with the bearing of the window frame window, is matched with the self-locking function of a speed reducer, and is matched with the auxiliary tension of an air spring, so that the large heavy movable window can also keep a closed sealing state for a long time and is firm when closed;
5. when the movable window is in a closed state, the movable window and the fixed window are on a vertical plane, so that the whole electric window is a vertical surface no matter the electric window is seen from the indoor or the outdoor, and the electric window is also a whole vertical surface if combined with a glass curtain wall, so that the electric window is very attractive;
6. the winding reel and the guide reel synchronously rotate in the same direction, the guide reel has a guide effect on the double-stroke pull rope, and the guide reel enables the winding reel to stably wind and smoothly unwind the rope, so that the reliability of the driving mechanism is improved, and the probability of winding the double-stroke pull rope is reduced; the guide cylinder only has the side wall of the guide thread to rub the double-stroke stay cord, the winding cylinder and the guide cylinder incline for 1.5 degrees, the inclination angle is equal to the spiral angle of the winding thread, the double-stroke stay cord is made to be horizontal to the first movable pulley, the friction force of the double-stroke stay cord is reduced, the pressure of the double-stroke stay cord, the inner wall of the winding cylinder and the inner wall of the guide cylinder is smaller, the friction of the double-stroke stay cord is reduced, the transmission efficiency is increased, the heavier the movable window is, the larger the load of the double-stroke stay cord is, and the more the importance of the double-stroke stay cord can; the stopper has the function of preventing the double-stroke pull rope from jumping and winding in a loose state; the helical angle of 10 degrees is set for the gears, so that the meshing area between the gears is increased, the transmission noise can be reduced, and the transmission stability can be improved;
7. the power assisting device is arranged, the movable window descending tension gas spring stores power, the movable window ascending tension gas spring releases the stored power, and when the movable window is heavy, the quiet small motor can also drive the movable window to stably descend and ascend.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
FIG. 1 is an appearance diagram of a sound-insulating and heat-preserving narrow-border smart window with quiet operation according to the embodiment;
FIG. 2 is an internal view of the quiet sound-insulating and heat-insulating narrow-frame smart window of the present embodiment without a power assisting device;
FIG. 3 is an internal view of the power assisting device of the sound-insulation and heat-preservation narrow-frame smart window with quiet operation according to the embodiment;
FIG. 4 is a connection diagram of the rope connectors in the sound-proof and heat-insulating narrow-frame smart window with quiet operation according to the present embodiment;
FIG. 5 is a view showing the internal structure of the power housing in the sound-proof and heat-insulating narrow-frame smart window with quiet operation according to the present embodiment;
FIG. 6 is a schematic structural view of double-sided sliding rails in a silent sound-insulation and heat-preservation narrow-frame smart window;
FIG. 7 is a schematic structural view of a single-side slide rail of the sound-insulation and heat-preservation narrow-frame smart window which runs quietly in the embodiment;
FIG. 8 is a partial structure view of the sliding components of the double-sided sliding rails in the silent sound-proof and heat-insulating narrow-frame smart window;
in the figure: 1-a window frame; 2-a movable window; 3-fixing the window; 4-a power housing; 5-a first movable pulley; 6-double-stroke pull rope; 7-single-pass pull rope; 8-a fixed pulley; 9-a tension gas spring; 10-a second movable pulley; 11-an assistance pull rope; 12-a rope connector; 13-a control box; 14-a reducer; 15-a motor; 16-a support plate; 17-a driving wheel; 18-a take-up reel; 19-a transition wheel; 20-a guide wheel; 21-a spool; 22-a guide cylinder; 23-a stopper; 24-electromagnetic clutch.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The invention aims to provide a sound-insulation and heat-preservation narrow-frame intelligent window which runs quietly and a refuge and rescue using method thereof, which are used for solving the technical problems in the prior art, can electrically control the opening or closing of a movable window and can hover at any time.
In order to make the aforementioned objects, features and advantages of the present invention comprehensible, embodiments accompanied with figures are described in further detail below.
As shown in fig. 1 to 7, the present embodiment provides a quiet-running sound-insulation and heat-insulation narrow-frame smart window, which includes a window frame 1, a movable window 2, a fixed window 3, a power supply, a controller, a power housing 4, a power device, two first movable pulleys 5, two double-pass pull ropes 6, two single-pass pull ropes 7, two rope connectors 12, two sets of sliding assemblies, and two sets of sliding rails. The movable window 2 is connected in the window frame 1 in a sliding manner, the fixed window 3 is fixed in the window frame 1, the power shell 4 is fixed in the window frame 1, further, the window frame 1 is of an approximate structure in a shape like the Chinese character 'ri', the movable window comprises an upper window frame 1 and a lower window frame 1, the area of the upper window frame 1 is far smaller than that of the lower window frame 1, the power shell 4 is positioned in the upper window frame 1, the movable window 2 and the fixed window 3 are both positioned in the lower window frame 1, and the upper window frame 1 plays a role in sealing and dust prevention on the power shell. Controller and power device all are fixed in power shell 4, and two first movable pulleys 5 are located the both sides of power shell 4 respectively, and two first movable pulleys 5 are twined respectively to two double-stroke stay cords 6, and on the first end of double-stroke stay cord 6 was fixed in power shell 4, the second end of double-stroke stay cord 6 twined on power device, and double-stroke stay cord 6 uses wire rope, and intensity is high, and power device is used for receiving and releasing double-stroke stay cord 6. A first end of the one-way pulling rope 7 is fixed to the first movable pulley 5, and a second end of the one-way pulling rope 7 is fixed to the rope connector 12. Two sides of the upper end of the window frame 1 are respectively provided with a fixed pulley 8, and the fixed pulleys 8 are used for supporting the single-pass pull rope 7 to reduce friction. Two sets of sliding assembly are located the both sides of activity window 2 respectively, and rope connector 12 is fixed mutually with activity window 2 through sliding assembly, reciprocates through rope connector 12 and drives activity window 2 and reciprocate. Two sets of sliding rails are respectively fixed on two sides of the window frame 1, the sliding components slide in the sliding rails, and the power device and the power supply are electrically connected with the controller.
As for the power device, in the present embodiment, the power device includes a motor 15, a speed reducer 14, a drive pulley 17, two winding rollers 18, two transition wheels 19, two guide wheels 20, two winding reels 21, and two guide reels 22. The power housing 4 is divided into an upper cavity and a lower cavity by the support plate 16, and the upper cavity and the lower cavity are respectively located at the upper side and the lower side of the support plate 16. The speed reducer 14 and the motor 15 are fixed in the upper cavity, and the driving wheel 17, the two winding wheels 18, the two transition wheels 19, the two guide wheels 20, the two winding reels 21 and the two guide drums 22 are located in the lower cavity. An output shaft of the motor 15 is fixed to an input shaft of the reduction gear 14, an output shaft of the reduction gear 14 penetrates the support plate 16, and an output shaft of the reduction gear 14 is fixed to the drive pulley 17. The two sides of the driving wheel 17 are respectively engaged with the two winding rollers 18, the winding reel 21 is fixed on one surface of the two winding rollers 18 far away from the supporting plate 16, the winding reel 21 and the winding rollers 18 are of an integrated structure, winding threads are arranged on the winding reel 21, the second end of the double-stroke pull rope 6 is fixed on the winding reel 21, and the double-stroke pull rope 6 is wound on the winding reel 21. The side of the winding wheel 18 remote from the driving wheel 17 is engaged with a transition wheel 19, and the transition wheel 19 rotates in the same direction as the driving wheel 17. The side of the transition wheel 19, which is far away from the winding wheel 18, is engaged with a guide wheel 20, one side of the guide wheel 20, which is far away from the support plate 16, is fixed with a guide cylinder 22, the guide wheel 20 and the guide cylinder 22 are of an integrated structure, the side wall of the guide cylinder 22 is provided with guide threads, and the double-stroke pull rope 6 bypasses the guide threads. When the double-stroke rope drawing machine works, the motor 15 and the speed reducer 14 drive the driving wheel 17 to rotate in the forward direction, the winding wheel 18 rotates in the reverse direction to drive the winding reel 21 to rotate in the reverse direction, the winding reel 21 starts to wind and unwind the double-stroke rope 6, and the double-stroke rope 6 passes through the guide drum 22, so that the rope connector 12 is driven to ascend or descend.
In order to achieve the rotation of the two winding wheels 18, the two transition wheels 19, the two guide wheels 20, the two winding reels 21 and the two guide reels 22, two winding rotation shafts, two transition rotation shafts and two guide rotation shafts are also included in the present embodiment. The winding rotation shaft penetrates the fixed winding wheel 18 and the winding reel 21 in sequence, and the upper and lower ends of the winding rotation shaft are fixed to the support plate 16 and the lower end of the power housing 4 through bearings, respectively. The transition rotating shaft penetrates through and fixes the transition wheel 19, and the upper end and the lower end of the transition rotating shaft are respectively fixed at the lower ends of the support plate 16 and the power shell 4 through bearings. The guide rotating shaft penetrates through the fixed guide wheel 20 and the guide cylinder 22 in sequence, and the upper end and the lower end of the guide rotating shaft are fixed to the support plate 16 and the lower end of the power housing 4 through bearings respectively. The output shaft of reduction gear 14 is towards the below, and spiral rotation axis, transition rotation axis and direction rotation axis all have the contained angle with the output shaft of reduction gear 14, promptly have the contained angle with the vertical axis. Specifically, the contained angle is 1.5 degrees, and this is because the helix angle of wire screw thread and spiral thread is 1.5 degrees, if not with spiral rotation axis, transition rotation axis and direction rotation axis slope setting, then double-stroke stay cord 6 can have the angle of 1.5 degrees with the horizontal plane at the removal in-process, makes double-stroke stay cord 6 can produce the friction with the lateral wall of spiral thread and guide thread like this, not only can increase the 15 burdens of motor, still can damage double-stroke stay cord 6. Therefore, the winding rotation axis, the transition rotation axis, and the guide rotation axis are inclined to compensate for the spiral angle, so that the two-way cord 6 is always kept in a horizontal state.
In this embodiment, one side of the driving wheel 17 away from the supporting plate 16 is provided with a stopper 23, the stopper 23 is located under the driving wheel 17, the stopper 23 is located between the two winding reels 21, two sides of the stopper 23 are provided with arc surfaces, and the arc surfaces are matched with the shapes of the winding reels 21. The arc surface and the winding reel 21 have a small gap, so that the condition that the two-way pull rope 6 jumps (runs from one thread to another thread) on the winding reel 21 can be effectively prevented.
Further, in this embodiment, the driving wheel 17, the winding wheel 18, the transition wheel 19 and the guide wheel 20 are all bevel gears, and the helix angles of the driving wheel 17, the winding wheel 18, the transition wheel 19 and the guide wheel 20 are all 10 °. Thus, the meshing area between the gears is increased, the transmission noise can be reduced, and the transmission stability can be improved.
In order to further reduce the burden of the motor 15, in the present embodiment, two power assisting devices are further included, and the two power assisting devices are respectively fixed on two sides of the power housing 4. The power assisting device comprises tension gas springs 9, a power assisting stay cord 11 and a second movable pulley 10, the fixed ends of the two tension gas springs 9 are respectively fixed at two sides of the power shell 4, the second movable pulley 10 is fixed at the telescopic end of the tension gas springs 9, the power assisting stay cord 11 bypasses the second movable pulley 10, the first end of the power assisting stay cord 11 is fixed at the inner side of the upper window frame 1, and the second end of the power assisting stay cord 11 is fixed on a cord connector 12. When the movable window 2 descends, the tension gas spring 9 extends to store force. When the motor 15 is started to pull up the movable window 2, the tension gas spring 9 releases energy to apply an upward tension to the rope connector 12 through the power-assisted pulling rope 11, thereby reducing the burden of the motor 15.
To the slip track, in this embodiment, the slip track is two side slide rails, a set of two side slide rails includes two slide rails of buckling, two slide rails of buckling distribute from top to bottom, the slide rail of buckling includes vertical section and slope section, a set of slip subassembly includes two track pulleys, the both sides of activity window 2 are equipped with protruding axle, 2 every sides of activity window are equipped with two protruding axles, be located the upper and lower both ends of activity window 2 respectively, the other end that is located the protruding axle of upper end is fixed in on rope connector 12, the track pulley is also fixed on protruding epaxially, it can only to connect the track pulley to be located the protruding axle of lower extreme. The two track pulleys are respectively positioned at the upper end and the lower end of one side of the movable window 2, a driving part of the electromagnetic clutch 24 is fixed at the lower side of the inclined section positioned below the two track pulleys, a driven part of the electromagnetic clutch 24 is fixed at the lower end of the movable window 2, the working process of the electromagnetic clutch 24 is similar to the working principle of an electromagnet, and a person skilled in the art can replace the electromagnetic clutch 24 with the electromagnet. Two 45 relative inclined planes are arranged on the upper end of the inclined section below and below the frame of the movable window 2, the inclined plane block on the upper end of the inclined section below is fixed on the window frame 1, and when the movable window 2 is in a closed state, the upper and lower 45 inclined planes are attached to each other, so that the movable window 2 and the fixed window 3 can be located in the same vertical plane, and the sealing performance is effectively improved. The two-side sliding rails can be replaced by single-side sliding rails, the single-side sliding rails comprise a vertical sliding rail, and the sliding assembly slides up and down in the vertical sliding rail.
In order to realize multifunctional control, the intelligent controller further comprises a temperature control release device, a smoke detector, a fire detector, a gas leakage detector, an outdoor temperature and air quality detector, an outdoor rainwater detector, an indoor air quality detector, an indoor carbon dioxide concentration detector, an indoor oxygen content detector, a Bluetooth detector and an infrared detector, wherein the controller is respectively electrically connected with the temperature control release device, the smoke detector, the fire detector, the gas leakage detector, the outdoor temperature and air quality detector, the outdoor rainwater detector, the indoor air quality detector, the indoor carbon dioxide concentration detector, the indoor oxygen content detector, the Bluetooth detector and the infrared detector, the environment is detected through the sensors, and data can be transmitted to the controller in real time. The controller transmits data to the cloud server, the mobile phone end, the fire rescue mechanism, the building fire system, the property and the like in real time. The opening and closing instruction received by the controller can be sent by manual remote control, and the controller can also receive the control instruction and send a signal for opening and closing the window through various forms of field switches, mobile phones, software analysis, data algorithms or fire-fighting system triggering and the like. The fingerprint recognizer is connected with the controller to realize the control of fixed people, and only a designated person can decide whether to open or close the movable window 2. The emergency button is electrically connected with the controller, so that the controller can not be controlled in time when a fire disaster happens, and the movable window 2 is opened by pressing the emergency button, so that a resident can conveniently escape. The mobile phone is electrically connected with the controller, so that remote control of the resident can be realized, and when the resident wants to go home, the movable window 2 can be remotely controlled to open for ventilation by the mobile phone if ventilation needs to be carried out in advance. The camera is electrically connected with the controller, so that the window can be closed and the alarm can be given in time and property and owners can be informed when abnormal movement exists outside the window.
In this embodiment, the upper surface of the supporting plate 16 is further provided with a control box 13, the controller and related electrical components are fixed in the control box 13, and the control box 13 is further provided with a standby power supply which can be started when power is off.
The using process is as follows:
the active window 2 is opened when the power state is lowered: the controller controls the electromagnetic clutch 24 to be electrified, the electromagnetic attraction force enables the spring to contract, the lock bolt retreats from the bolt opening corresponding to the window frame 1 and the movable window 2, the movable window 2 completes unlocking, meanwhile, the controller controls the motor 15 and the speed reducer 14 to reversely rotate, the driving wheel 17 on the output shaft of the speed reducer motor 15 synchronously drives other four bevel gears to rotate, the bevel gears drive the winding reel 21 and the guide reel 22 to synchronously rotate, the guide reel 22 enables the winding reel 21 to orderly release ropes, when the movable window 2 descends, the dead weight of the movable window 2 enables the push rod of the tension gas spring 9 to stretch out, namely the tension gas spring 9 stores force, the compression force of the tension gas spring 9 is about 80% of the dead weight of the movable window 2, the rope connector 12 slowly moves downwards, the protruding shafts on the two sides of the movable window 2 penetrate through the pulley sliding rails to be rotatably connected with the rope connector, the movable window 2 is lowered to be opened. The lower end of the outer side of the section bar of the movable window 2 is provided with a damping strip, and the corresponding position of the inner side of the lower end of the window frame 1 is also provided with a damping strip.
Active window 2 position hover with electrical state: the controller controls the motor 15 to stop rotating, and the speed reducing motor 15 has a self-locking function.
The active window 2 is closed when the power state rises: the controller controls the speed reducing motor 15 to rotate in the forward direction, the bevel gears on the output shaft of the speed reducing motor 15 synchronously drive other four bevel gears to rotate, the bevel gears drive the winding reel 21 and the guide reel 22 to rotate synchronously, the guide reel 22 enables the winding reel 21 to wind ropes orderly, the movable window 2 rises, meanwhile, the tension gas spring 9 generates tension on the power-assisted pull rope 11, the rope connector 12 is pulled to rise together by matching with the single-way pull rope 7, so that the technical effect of rising of the movable window 2 is realized, the controller controls the electromagnetic clutch 24 to be electrified, the lock bolt of the electromagnetic clutch 24 is in a withdrawing state, the movable window 2 slides into the window prepared by the window frame 1 for the movable window 2, the peripheral section bars of the movable window 2 are 45-degree inclined planes, the window frame 1 is also a 45-degree inclined plane for the movable window 2, elastic sealing strips are arranged on the 45-degree inclined planes of the peripheral, when the movable window 2 is closed at last, the sealing strips are pressed tightly, the controller controls the electromagnetic clutch 24 to be powered off, and the spring enables the lock bolt to be inserted into the bolt corresponding to the movable window 2 and the window frame 1.
The embodiment also provides a refuge and rescue using method of the sound-insulation and heat-preservation narrow-frame intelligent window which runs quietly, which comprises the following steps:
the method comprises the following steps: when a fire disaster occurs in a residential living room or a kitchen at night or in a first floor of a small shop, a fire detector in the residential living room gives an alarm or a fire detector in the first floor of the small shop gives a signal.
Step two: the signal that fire detector sent is transmitted to the intelligent outer window that is located the resident's house bedroom through wired or wireless transmission, perhaps transmits to the intelligent bill-board that is located the second floor of small shop (intelligent bill-board is the same structure with intelligent outer window, and intelligent bill-board has only changed the glass in movable window 2 and fixed window 3 into the bill-board).
Step three: the intelligent window positioned in the bedroom of the residential building or the intelligent billboard positioned in the second floor of the small shop sends fire alarm sound and refuge and rescue method step prompts to the indoor.
Step four: the movable window 2 that is located the intelligent window of resident's house bedroom is automatic to be opened, or the movable window 2 that is located the intelligent billboard of little shop second floor is automatic to be opened, the movable window 2 of intelligent window and intelligent billboard leans on main electricity automatic to open, main electricity also can lean on backup battery automatic to open because movable window 2 when conflagration outage, backup battery also can lean on hand cranking device manual opening when the bad electricity of management at ordinary times, hand cranking device uses the rocker structure of current lift window can.
Step five: people trapped in a bedroom of a house by a fire climb out from the hole 2 of the movable window, the people stand in the escape frame on the reverse side of the intelligent window, the escape frame is fixed on the outer vertical surface of the building, the escape frame is similar to an equipment platform of an air conditioner outdoor unit or a flower bed, six people can stand on the escape frame, the escape frame and the outer vertical surface of the building are made of the same material and color for the purpose of beautifying the outer vertical surface, the escape frame outside the intelligent advertising board can be made of transparent tempered fireproof glass, the escape frame outside the intelligent advertising board can be integrally made into the advertising board, the advertising board faces the first layer in the second shop of a building and is the movable window 2, the movable window 2 is made of fireproof glass, and people trapped in the second shop of the fire can enter the intelligent advertising board from the movable window 2 to wait for refuge and rescue.
Step six: the personnel who flee into the frame of fleing, perhaps flee into the inside personnel of intelligent billboard, can close sealedly by cell-phone or manual control intelligence window movable window 2 this moment, and movable window 2 and the fixed window 3 of intelligence window all are fire-resistant more than 1 hour fire prevention glass, and the personnel that flee into the frame of fleing are safe this moment, can not receive the burn of indoor high temperature poisonous flue gas and flame.
Step seven: because the intelligent window transmits data to the cloud server, the mobile phone end, the fire rescue mechanism, the building fire system, the property and the like in real time, a fire brigade can timely receive alarm information and timely position a disaster position, a large number of fire rescue personnel and various fire vehicles can be accurately navigated to a disaster place by adjusting the position at one time, and personnel escaping into the escape frame are rescued by the aerial ladder fire truck or are rescued by firefighters attacking fire-starting places within 1 hour.
The principle and the implementation mode of the present invention are explained by applying specific examples in the present specification, and the above descriptions of the examples are only used to help understanding the method and the core idea of the present invention; meanwhile, for a person skilled in the art, according to the idea of the present invention, the specific embodiments and the application range may be changed. In view of the above, the present disclosure should not be construed as limiting the invention.

Claims (10)

1. The utility model provides a narrow frame intelligence window that keeps warm that gives sound insulation that operates quietly which characterized in that: the window comprises a window frame, a movable window, a fixed window, a power supply, a controller, a power shell, a power device, two first movable pulleys, two double-stroke pull ropes, two single-stroke pull ropes, two rope connectors, two sets of sliding assemblies and two sets of sliding rails, wherein the movable window is connected in the window frame in a sliding manner, the fixed window is fixed in the window frame, the power shell is fixed in the window frame, the controller and the power device are fixed in the power shell, the two first movable pulleys are respectively positioned on two sides of the power shell, the two double-stroke pull ropes are respectively wound on the two first movable pulleys, the first ends of the double-stroke pull ropes are fixed on the power shell, the second ends of the double-stroke pull ropes are wound on the power device, the power device is used for retracting the double-stroke pull ropes, and the first ends of the single-stroke pull ropes are fixed on the first movable pulleys, the second end of the single-pass pull rope is fixed on the rope connector, the two groups of sliding assemblies are respectively positioned on two sides of the movable window, the rope connector is fixed with the movable window through the sliding assemblies, the two groups of sliding rails are respectively fixed on two sides of the window frame, the sliding assemblies slide in the sliding rails, and the power device and the power supply are electrically connected with the controller.
2. The quiet running sound and heat insulating narrow frame smart window of claim 1, wherein: the power device comprises a motor, a speed reducer, a driving wheel, two winding wheels, two transition wheels, two guide wheels, two winding drums and two guide drums, wherein the power shell is divided into an upper cavity and a lower cavity through a supporting plate, the speed reducer and the motor are fixed in the upper cavity, the driving wheel, the two winding wheels, the two transition wheels, the two guide wheels, the two winding drums and the two guide drums are all positioned in the lower cavity, an output shaft of the motor is fixed on an input shaft of the speed reducer, an output shaft of the speed reducer is fixed on the driving wheel, two sides of the driving wheel are respectively meshed with the two winding wheels, the winding drums are fixed on one surfaces of the two winding wheels, which are far away from the supporting plate, winding threads are arranged on the winding drums, and second ends of the two-way stay ropes are fixed on the winding drums, one side of the winding wheel, which is far away from the driving wheel, is meshed with the transition wheel, one side of the transition wheel, which is far away from the winding wheel, is meshed with the guide wheel, one side of the guide wheel, which is far away from the supporting plate, is fixed with the guide cylinder, the side wall of the guide cylinder is provided with guide threads, and the double-stroke pull rope bypasses the guide threads.
3. The quiet running sound and heat insulating narrow frame smart window of claim 2, wherein: the winding machine also comprises two winding rotating shafts, two transition rotating shafts and two guide rotating shafts, the winding rotating shafts sequentially penetrate through and fix the winding wheel and the winding reel, the upper end and the lower end of the winding rotating shaft are respectively fixed at the lower ends of the supporting plate and the power shell through bearings, the transition rotating shaft penetrates through and is fixed with the transition wheel, the upper end and the lower end of the transition rotating shaft are respectively fixed at the lower ends of the supporting plate and the power shell through bearings, the guide rotating shaft penetrates through and fixes the guide wheel and the guide cylinder in sequence, the upper end and the lower end of the guide rotating shaft are fixed at the lower ends of the support plate and the power shell through bearings respectively, the output shaft of reduction gear is towards the below, spiral rotation axis, the transition rotation axis with the direction rotation axis all with the output shaft of reduction gear has the contained angle.
4. The quiet running sound and heat insulating narrow frame smart window of claim 2, wherein: one side of the driving wheel, which is far away from the supporting plate, is provided with a stop block, the stop block is positioned between the two winding reels, and two sides of the stop block are provided with arc surfaces.
5. The quiet running sound and heat insulating narrow frame smart window of claim 2, wherein: the driving wheel, the winding wheel, the transition wheel and the guide wheel are all bevel gears, and the spiral angles of the driving wheel, the winding wheel, the transition wheel and the guide wheel are all 10 degrees.
6. The quiet running sound and heat insulating narrow frame smart window of claim 1, wherein: the power assisting device comprises a tension gas spring, a power assisting pull rope and a second movable pulley, fixed ends of the tension gas spring are fixed to two sides of the power shell respectively, the second movable pulley is fixed to a telescopic end of the tension gas spring, the power assisting pull rope bypasses the second movable pulley, a first end of the power assisting pull rope is fixed to the inner side of the window frame, and a second end of the power assisting pull rope is fixed to the rope connector.
7. The quiet-running sound-insulating and heat-insulating narrow-border smart window of claim 1, wherein: the sliding rail is a single-side sliding rail or a double-side sliding rail;
when the sliding rail is a single-side sliding rail, the group of single-side sliding rails comprises a vertical sliding rail, and the sliding assembly slides in the vertical sliding rail;
work as when the slip track is two side slide rails, a set of two side slide rails include two slide rails of buckling, two the slide rail of buckling distributes from top to bottom, the slide rail of buckling includes vertical section and slope section, and is a set of the slip subassembly includes two track pulleys, two the track pulley is located respectively the upper and lower both ends of activity window one side are located the below the downside of slope section is fixed with electromagnetic clutch's driving part, the lower extreme of activity window is fixed with electromagnetic clutch's follower.
8. The quiet-running sound-insulating and heat-insulating narrow-border smart window of claim 1, wherein: the smoke detector is characterized by further comprising a temperature control release device, a smoke detector, a fire detector, a gas leakage detector, an outdoor air quality detector, an outdoor rainwater detector, an indoor air quality detector, an indoor carbon dioxide concentration detector, an indoor oxygen content detector, a Bluetooth detector and an infrared detector, wherein the controller is respectively connected with the temperature control release device, the smoke detector, the fire detector, the gas leakage detector, the outdoor temperature air quality detector, the outdoor rainwater detector, the indoor air quality detector, the indoor carbon dioxide concentration detector, the indoor oxygen content detector, the Bluetooth detector and the infrared detector are electrically connected.
9. The quiet-running sound-insulating and heat-insulating narrow-border smart window of claim 2, wherein: the upper surface of backup pad still is equipped with the control box, the controller is fixed in the control box, still be equipped with stand-by power supply in the control box.
10. A refuge and rescue using method of a quiet sound-insulation and heat-preservation narrow-frame intelligent window is characterized by comprising the following steps:
the method comprises the following steps: when a fire disaster happens in a residential living room or a kitchen at night, a fire detector in the residential living room gives out an alarm;
step two: the signal sent by the fire detector is transmitted to an intelligent outer window in a bedroom of a residential building in a wired or wireless way;
step three: the intelligent window is positioned in a bedroom of the residential building, and sends out fire alarm sound and refuge and rescue method step prompts to the indoor;
step four: the movable window of the intelligent window in the bedroom of the residential building is automatically opened, the movable window of the intelligent window is automatically opened by a main power supply, when the main power supply is powered off due to a fire disaster, the movable window is automatically opened by a standby power supply, and when a standby battery is not managed well at ordinary times, the movable window can be manually opened;
step five: people trapped in a bedroom of the house by a fire climb out of the movable window opening and stand in the escape frame on the reverse side of the intelligent window, the escape frame is fixed on the outer vertical surface of the building, and six people can stand on the escape frame;
step six: the personnel escaping into the escape frame are controlled to close and seal by a mobile phone or a manual operation at the moment, the personnel escaping into the escape frame are safe at the moment and cannot be burnt by high-temperature toxic smoke and flame in a room, and the movable window cannot be automatically opened under the condition that a sensor on the intelligent window senses that the escape frame is occupied, and needs to be unlocked and opened by fire rescue personnel or the mobile phone;
step seven: waiting for rescue in the escape frame.
CN202110101697.1A 2021-01-26 2021-01-26 Sound-insulation and heat-preservation narrow-frame intelligent window capable of running quietly and refuge and rescue using method thereof Active CN112796615B (en)

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000314268A (en) * 1999-04-30 2000-11-14 Nikken Kogyo Kk Vertically movable window
CN201738753U (en) * 2010-06-30 2011-02-09 湖北汽车工业学院 Escape window of passenger car
CN205976880U (en) * 2016-07-05 2017-02-22 大连冷冻机股份有限公司 Storehouse is with electronic door that moves on whole
CN109898975A (en) * 2017-12-08 2019-06-18 谢小燕 A kind of emergency escape window
CN111779431A (en) * 2020-07-03 2020-10-16 四川喜泽丽智能科技有限公司 Portable self-balancing lifting window
CN111779413A (en) * 2020-07-03 2020-10-16 四川喜泽丽智能科技有限公司 Light automatic lifting window based on large sector
CN112049544A (en) * 2020-09-29 2020-12-08 白亮 Outer window capable of being automatically opened without any manual action and external force during power failure

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000314268A (en) * 1999-04-30 2000-11-14 Nikken Kogyo Kk Vertically movable window
CN201738753U (en) * 2010-06-30 2011-02-09 湖北汽车工业学院 Escape window of passenger car
CN205976880U (en) * 2016-07-05 2017-02-22 大连冷冻机股份有限公司 Storehouse is with electronic door that moves on whole
CN109898975A (en) * 2017-12-08 2019-06-18 谢小燕 A kind of emergency escape window
CN111779431A (en) * 2020-07-03 2020-10-16 四川喜泽丽智能科技有限公司 Portable self-balancing lifting window
CN111779413A (en) * 2020-07-03 2020-10-16 四川喜泽丽智能科技有限公司 Light automatic lifting window based on large sector
CN112049544A (en) * 2020-09-29 2020-12-08 白亮 Outer window capable of being automatically opened without any manual action and external force during power failure

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