CN214463536U - Bridge cut-off heat insulation aluminum alloy window with ventilation device - Google Patents

Bridge cut-off heat insulation aluminum alloy window with ventilation device Download PDF

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Publication number
CN214463536U
CN214463536U CN202023165977.9U CN202023165977U CN214463536U CN 214463536 U CN214463536 U CN 214463536U CN 202023165977 U CN202023165977 U CN 202023165977U CN 214463536 U CN214463536 U CN 214463536U
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aluminum alloy
bridge cut
heat
indoor
window
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CN202023165977.9U
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王建强
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Wuxi Wangwei Metal Doors And Windows Co ltd
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Wuxi Wangwei Metal Doors And Windows Co ltd
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Abstract

The utility model belongs to the technical field of bridge cut-off aluminum alloy window and specifically relates to a bridge cut-off heat-insulating aluminum alloy window with ventilation unit relates to, and it includes window frame and glass, glass is fixed to be inlayed and is established in the window frame, it has the vent to open on the window frame, the vent in-connection has the chimney, the chimney is uncovered form towards indoor one side, the chimney is opened on the outdoor section of thick bamboo wall of orientation has a plurality of ventilation holes, the chimney is connected with the baffle towards indoor one side. This application has and makes indoor circulation of air under the condition that need not to open the window, improves the effect of indoor air quality.

Description

Bridge cut-off heat insulation aluminum alloy window with ventilation device
Technical Field
The application relates to the field of bridge cut-off aluminum alloy windows, in particular to a bridge cut-off heat insulation aluminum alloy window with a ventilation device.
Background
The broken bridge aluminum alloy window is an improved type which is pushed out on the basis of the old aluminum alloy window in order to improve the heat preservation performance of the window and door. The principle of the broken bridge type aluminum alloy window is that an indoor layer and an outdoor layer of aluminum alloy are separated and tightly connected into a whole by utilizing PA66 nylon to form a novel heat-insulation aluminum section.
At present, a chinese patent with publication number CN210422326U discloses a heat insulation bridge-cut-off casement aluminum alloy window, which comprises an outer frame and an inner frame, wherein the inner frame is movably connected to one side of the outer frame, the edge of the inner frame is in a hollow state and wraps glass, and a rolling mechanism is arranged at the hollow position of the top of the inner frame; one side of the surface is provided with a clamping groove, a blocking block A and a blocking block B; the rolling mechanism comprises a cloth rolling shaft, and a bearing A, a clockwork spring, a heat insulation curtain, a plastic connecting ring, a nut, a connecting rod and a heat insulation curtain handle which are respectively and symmetrically arranged at two ends of the cloth rolling shaft, wherein the bearing A is fixedly connected to one side of the inner frame through anaerobic adhesive, and the cloth rolling shaft is movably connected with an inner ring of the bearing A.
With respect to the related art in the above, the inventors consider that: indoor ventilation is mainly achieved by opening the inner frame, and when the inner frame is opened, wind force easily causes indoor articles or ornaments to be blown around. In addition, in rainy season, rainwater easily enters the room. If the inner frame is not opened, the indoor ventilation is affected, the indoor air quality is poor, and the health of people is affected.
SUMMERY OF THE UTILITY MODEL
In order to make indoor circulation of air under the condition that need not to open the window, and then improve indoor air quality, this application provides a bridge cut-off heat-insulating aluminum alloy window with ventilation unit.
The application provides a bridge cut-off heat-insulating aluminum alloy window with ventilation unit adopts following technical scheme:
the utility model provides a bridge cut-off aluminum alloy window that insulates against heat with ventilation unit, includes window frame and glass, glass is fixed to be inlayed and is established in the window frame, it has the vent to open on the window frame, the vent in-connection has the funnel, the funnel is uncovered form towards indoor one side, it has a plurality of ventilation holes to open on the outdoor section of thick bamboo wall of funnel orientation, the funnel is connected with the baffle towards indoor one side, it has the amortization cotton to glue on the internal perisporium of funnel.
Through adopting above-mentioned technical scheme, realize outdoor air current to indoor transport through air funnel and ventilation hole, make indoor circulation of air, and then improved indoor air quality, simultaneously, the noise that the amortization cotton produced when flowing the air current adsorbs, has improved the environment comfort level.
Optionally, the pivot subassembly is connected in the draft tube, the pivot subassembly includes connecting rod and blade, connecting rod fixed connection is in the inner wall of draft tube, the centre of a circle of the directional draft tube of connecting rod, the connecting rod is towards indoor one side fixedly connected with mount pad, it is equipped with the installation cover to rotate the cover on the mount pad, be connected with driving motor on the connecting rod, connecting rod and mount pad are worn to establish by driving motor's output shaft, driving motor's output shaft and the coaxial fixed of installation cover, blade fixed connection is in the installation cover, the blade is provided with two at least about installation cover rotational symmetry.
Through adopting above-mentioned technical scheme, the speed that the air current flows has been improved in the operation of runner assembly to the effect of circulation of air has been improved.
Optionally, a filter screen is arranged on the wall of the ventilation duct facing the outside.
By adopting the technical scheme, the filter screen filters the outdoor air flow entering the room, the possibility that the outdoor air flow is mixed with dust to enter the room is reduced, and the indoor cleanliness is ensured.
Optionally, a silencing plate is connected to one side of the ventilating duct, which faces the indoor space, through threads, and a plurality of air holes are formed in the silencing plate.
Through adopting above-mentioned technical scheme, the acoustical panel further adsorbs the noise, has improved the noise reduction effect.
Optionally, the ventilating duct is equipped with first magnetic stripe towards indoor terminal surface is fixed to be inlayed, the baffle is equipped with the second magnetic stripe towards one side of ventilating duct is fixed to be inlayed, first magnetic stripe and second magnetic stripe adsorb each other, the baffle is located the acoustical panel towards indoor one side, the acoustical panel is sheltered from to the baffle.
Through adopting above-mentioned technical scheme, through the absorption of first magnetic stripe and second magnetic stripe, realized the fastening of baffle, when the baffle was placed on the draft tube, carry out the separation to indoor and outdoor air current, when taking off the baffle, indoor and outdoor air current circulate mutually, have realized opening and close to the air current circulation.
Optionally, be connected with coupling assembling between funnel and the window frame, coupling assembling includes connecting strip and spacing pressure spring, connecting strip fixed connection is at the indoor lateral wall of window frame orientation, the connecting strip is located the border department of vent and the centre of a circle of directional funnel, the connecting strip is opened along its length direction has the spout, it has the slider to slide in the spout, fixedly connected with fixture block on the slider, spacing pressure spring is extruded between slider and spout, it has the inserted draw-in groove of confession fixture block to open on the outer wall of funnel.
Through adopting above-mentioned technical scheme, along with the increase of live time, adnexed dust quantity increases gradually on the filter screen, influences the filter effect, and coupling assembling has realized dismantling between funnel and the window frame and has been connected to be convenient for pull down the filter screen and wash, guarantee the filter effect.
Optionally, the chute is dovetail-shaped.
Through adopting above-mentioned technical scheme, the setting of dovetail carries on spacingly to the slider, has reduced the slider and has deviate from the possibility in the spout.
Optionally, the outer wall of the ventilation tube is glued and connected with a sealing sleeve.
Through adopting above-mentioned technical scheme, the seal cover is the rubber tube, has improved the compactness between vent and the draft tube.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the outdoor airflow is conveyed to the indoor space through the ventilating barrel and the ventilating holes, so that the indoor air is circulated, the indoor air quality is improved, and meanwhile, the noise generated when the airflow flows is absorbed by the silencing cotton, so that the environmental comfort level is improved;
2. the rotation of the rotating assembly increases the flowing speed of the airflow, so that the air circulation effect is improved;
3. the noise that the amortization cotton produced when flowing and the circulation subassembly operation adsorbs, has improved the environmental comfort level.
Drawings
Fig. 1 is a schematic structural view of a bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to an embodiment of the present application.
Fig. 2 is a cross-sectional view of a ventilation funnel according to an embodiment of the present application.
Fig. 3 is a schematic structural diagram of a rotating assembly according to an embodiment of the present application.
FIG. 4 is a schematic structural diagram of a connection assembly according to an embodiment of the present application
Description of reference numerals: 1. a window frame; 101. a vent; 2. glass; 3. a funnel; 301. sealing sleeves; 302. a vent hole; 303. a first magnetic block; 304. a card slot; 4. a filter frame; 401. a filter screen; 402. a second magnetic block; 5. a rotating assembly; 501. a connecting rod; 5011. a mounting seat; 502. a blade; 503. installing a sleeve; 504. mounting a plate; 505. a drive motor; 6. silencing cotton; 601. a protrusion; 7. a sound-absorbing panel; 701. air holes are formed; 702. a first magnetic stripe; 8. a baffle plate; 802. a second magnetic stripe; 9. a connecting assembly; 901. a connecting strip; 9011. a chute; 902. a limiting pressure spring; 903. a slider; 904. and (7) clamping blocks.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses bridge cut-off heat-insulating aluminum alloy window with ventilation unit. Referring to fig. 1, the bridge cut-off heat-insulating aluminum alloy window with the ventilation device comprises a window frame 1 and glass 2, wherein the window frame 1 is used for being connected with a wall body, and the length direction of the window frame 1 is vertically arranged. The glass 2 is fixedly embedded in the window frame 1, two pieces of glass 2 are arranged along the thickness direction of the window frame 1, and the glass 2 is arranged in parallel with the window frame 1.
Referring to fig. 1 and 2, the window frame 1 has three ventilation openings 101 formed in an upper portion thereof, the ventilation openings 101 having a circular hole shape and being formed along a width direction of the window frame 1. The ventilation ducts 3 are arranged in each ventilation opening 101, and the sealing sleeves 301 are fixedly connected to the outer walls of the ventilation ducts 3.
Referring to fig. 1 and 2, the sealing sleeve 301 is a rubber sleeve, the rubber has good flexibility, and when the funnel 3 is placed into the vent 101, the sealing sleeve 301 is extruded to deform, so that the sealing performance between the sealing sleeve 301 and the vent 101 is improved.
Referring to fig. 2, the funnel 3 is a cylinder with an open section, and one side of the funnel 3 facing the room is open. The wall of the ventilating duct 3 facing the outdoor is provided with a plurality of ventilation holes 302, and air enters the indoor from the outdoor through the ventilating duct 3 and the ventilation holes 302 to circulate the indoor air. The wall of the ventilating duct 3 facing the outdoor space is fixedly embedded with a first magnetic block 303, and the first magnetic block 303 is arranged along the circumferential direction of the ventilating duct 3.
Referring to fig. 2, a filter frame 4 is disposed on one side of the funnel 3 facing the outdoor, and a filter screen 401 is fixedly embedded in the filter frame 4. One side of the filter frame 4 facing the air funnel 3 is fixedly embedded with a second magnetic block 402, and the second magnetic block 402 is arranged along the circumferential direction of the filter frame 4. The first magnetic block 303 and the second magnetic block 402 are arranged in a one-to-one correspondence, and are attracted to each other.
The filter screen 401 filters the outdoor air flow entering the room, so that the cleanness degree of the air flow is improved, the indoor possibility that the air flow enters the room with dust is reduced, and the indoor cleanness is guaranteed.
Referring to fig. 2, a rotating assembly 5 is connected in the funnel 3, the rotating assembly 5 includes a connecting rod 501 and blades 502, and the connecting rod 501 is fixedly connected to the inner wall of the funnel 3 and is vertically disposed. The connecting rod 501 points to the center of the funnel 3.
Referring to fig. 3, a mounting seat 5011 is fixedly connected to one side of the connecting rod 501, which is away from the filter screen 401, and the mounting seat 5011 is cylindrical. The mounting base 5011 is rotatably sleeved with a mounting sleeve 503 through a bearing, and the axes of the mounting base 5011 and the mounting sleeve 503 are coaxial with the axis of the ventilation duct 3.
Referring to fig. 2 and 3, a horizontally disposed mounting plate 504 is fixedly connected to one side of the connecting rod 501 facing the filter screen 401, a driving motor 505 is bolted to the mounting plate 504, and the driving motor 505 is a micro motor. An output shaft of the driving motor 505 penetrates through the connecting rod 501 and the mounting base 5011, and the output shaft of the driving motor 505 is coaxially fixed with the mounting sleeve 503. The blades 502 are fixedly connected to the mounting sleeve 503, and three blades are arranged in rotational symmetry with respect to the mounting sleeve 503.
When the output shaft of driving motor 505 rotates, through the rotation of installation cover 503 linkage blade 502, drive the air and flow, improved the speed that the air flows, improved the effect of circulation of air.
Referring to fig. 2, the silencing cotton 6 is glued on the inner peripheral wall of the silencing barrel, the bulges 601 are integrally formed on the silencing cotton 6, the bulges 601 are hemispherical, the bulges 601 are matched with the silencing cotton 6 to adsorb noise, the noise generated when air flow flows is reduced, and the environment is quiet. One side threaded connection that the draft tube 3 is indoor has acoustical panel 7, and it has a plurality of bleeder vents 701 to open on acoustical panel 7, and acoustical panel 7 further adsorbs the noise, has improved the environmental comfort level.
Referring to fig. 2, a first magnetic stripe 702 is fixedly embedded on one side of the ventilating duct 3 facing the indoor space, and a baffle plate 8 is arranged on one side of the sound-absorbing plate 7 facing away from the ventilating duct 3. Baffle 8 is fixed towards one side of air funnel 3 and is inlayed second magnetic stripe 802, and first magnetic stripe 702 and second magnetic stripe 802 correspond the setting, and mutual absorption, placing and taking down of baffle 8 have realized opening and close indoor and outdoor air current flow.
Referring to fig. 4, a connection assembly 9 is connected between the air funnel 3 and the window frame 1, the connection assembly 9 includes a connection strip 901 and a limiting compression spring 902, the connection strip 901 is fixedly connected to an indoor side wall of the window frame 1, and the connection strip 901 is located at an edge of the vent 101 and points to a circle center of the air funnel 3. One side of the connecting strip 901, which faces away from the window frame 1, is provided with a sliding groove 9011, and the sliding groove 9011 is formed along the length direction of the connecting strip 901.
Referring to fig. 2 and 4, the sliding block 903 slides in the sliding groove 9011, and the sliding groove 9011 is a dovetail groove, so that the possibility that the sliding block 903 is separated from the sliding groove 9011 is reduced, and the stability of the sliding block 903 is improved. The limiting compression spring 902 is pressed between the sliding block 903 and the bottom wall of the sliding groove 9011. A clamping block 904 is fixedly connected to one side of the sliding block 903, which is away from the connecting strip 901, and a clamping groove 304 for inserting the clamping block 904 is formed in the outer wall of the ventilating duct 3. Two groups of connecting assemblies 9 are symmetrically arranged along the circumferential direction of the vent 101, so that the stability of the connecting cylinder is improved.
Along with the extension of live time, the dust that adheres to on the filter screen 401 increases thereupon, has influenced the filter effect, and at this moment, operating personnel slides slider 903 along the direction towards spout 9011 tank bottom, deviates from in fixture block 904 follow draw-in groove 304, can take out air funnel 3 to filter screen 401 piece washs.
After the cleaning is finished, an operator slides the sliding block 903 along the direction towards the bottom of the sliding groove, at the moment, the limiting pressure spring 902 elastically deforms, then the ventilating cylinder 3 is inserted into the ventilating hole 302, the sliding block 903 is loosened, the elastic potential energy of the limiting pressure spring 902 is released, the sliding block 903 is driven to slide, the clamping block 904 is linked, and the clamping block 904 is inserted into the clamping groove 304.
The implementation principle of the bridge cut-off heat-insulating aluminum alloy window with the ventilation device is as follows: when air circulation is required, the baffle plate 8 is removed from the sound-absorbing plate 7, and the outdoor air flow is filtered by the filter screen 401, passes through the vent hole 302, enters the funnel 3, and flows along the funnel 3. At this time, the rotating member 5, which operates, promotes the flow of the air current, and finally, the air current enters the room through the ventilation holes 701.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a bridge cut-off heat-insulating aluminum alloy window with ventilation unit, includes window frame (1) and glass (2), glass (2) are fixed to be inlayed and are established in window frame (1), its characterized in that: it has vent (101) to open on window frame (1), vent (101) in-connection has ventilating funnel (3), ventilating funnel (3) are uncovered form towards indoor one side, open on the outdoor section of thick bamboo wall of ventilating funnel (3) orientation has a plurality of ventilation holes (302), ventilating funnel (3) are connected with baffle (8) towards indoor one side, the rubberizing of the internal perisporium of ventilating funnel (3) has amortization cotton (6).
2. The bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to claim 1, characterized in that: the utility model discloses a fan, including ventilating duct (3), pivot subassembly (5) are connected in ventilating duct (3), pivot subassembly (5) include connecting rod (501) and blade (502), connecting rod (501) fixed connection is in the inner wall of ventilating duct (3), the centre of a circle of connecting rod (501) directional ventilating duct (3), connecting rod (501) are towards indoor one side fixedly connected with mount pad (5011), it is equipped with installation cover (503) to rotate the cover on mount pad (5011), be connected with driving motor (505) on connecting rod (501), connecting rod (501) and mount pad (5011) are worn to establish by the output shaft of driving motor (505), the output shaft and the installation cover (503) coaxial fixation of driving motor (505), blade (502) fixed connection is in installation cover (503), blade (502) are provided with two at least about installation cover (503) rotational symmetry.
3. The bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to claim 1, characterized in that: and a filter screen (401) is arranged on the wall of the ventilating duct (3) facing the outdoor.
4. The bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to claim 1, characterized in that: one side of the ventilating duct (3) facing the indoor is in threaded connection with a sound-absorbing plate (7), and a plurality of air holes (701) are formed in the sound-absorbing plate (7).
5. The bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to claim 4, wherein: the utility model discloses a silencer, including ventilating duct (3), baffle (8), first magnetic stripe (702) are fixed to be inlayed towards indoor terminal surface, baffle (8) are fixed to be inlayed towards one side of ventilating duct (3) and are equipped with second magnetic stripe (802), first magnetic stripe (702) and second magnetic stripe (802) adsorb each other, baffle (8) are located acoustical panel (7) towards indoor one side, baffle (8) shelter from acoustical panel (7).
6. The bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to claim 1, characterized in that: be connected with coupling assembling (9) between ventilation tube (3) and window frame (1), coupling assembling (9) are including connecting strip (901) and spacing pressure spring (902), connecting strip (901) fixed connection is in window frame (1) towards indoor lateral wall, connecting strip (901) are located the border department of vent (101) and point to the centre of a circle of ventilation tube (3), connecting strip (901) are opened along its length direction has spout (9011), it has slider (903) to slide in spout (9011), fixedly connected with fixture block (904) on slider (903), spacing pressure spring (902) are extruded between slider (903) and spout (9011), it has confession fixture block (904) male draw-in groove (304) to open on the outer wall of ventilation tube (3).
7. The bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to claim 6, wherein: the sliding chute (9011) is in a dovetail shape.
8. The bridge cut-off heat-insulating aluminum alloy window with a ventilation device according to claim 1, characterized in that: the outer wall of the ventilating duct (3) is glued and connected with a sealing sleeve (301).
CN202023165977.9U 2020-12-24 2020-12-24 Bridge cut-off heat insulation aluminum alloy window with ventilation device Active CN214463536U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023165977.9U CN214463536U (en) 2020-12-24 2020-12-24 Bridge cut-off heat insulation aluminum alloy window with ventilation device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023165977.9U CN214463536U (en) 2020-12-24 2020-12-24 Bridge cut-off heat insulation aluminum alloy window with ventilation device

Publications (1)

Publication Number Publication Date
CN214463536U true CN214463536U (en) 2021-10-22

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Application Number Title Priority Date Filing Date
CN202023165977.9U Active CN214463536U (en) 2020-12-24 2020-12-24 Bridge cut-off heat insulation aluminum alloy window with ventilation device

Country Status (1)

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CN (1) CN214463536U (en)

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