CN205156271U - Wind gap device and quick -witted including tuber pipe of this wind gap device - Google Patents

Wind gap device and quick -witted including tuber pipe of this wind gap device Download PDF

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Publication number
CN205156271U
CN205156271U CN201520920235.2U CN201520920235U CN205156271U CN 205156271 U CN205156271 U CN 205156271U CN 201520920235 U CN201520920235 U CN 201520920235U CN 205156271 U CN205156271 U CN 205156271U
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China
Prior art keywords
air
air port
port section
tuyere
tuyere device
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CN201520920235.2U
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Chinese (zh)
Inventor
朱江程
王云亮
杨亮
陈博强
林国游
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Priority to CN201520920235.2U priority Critical patent/CN205156271U/en
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Abstract

The utility model relates to a wind gap device and quick -witted including tuber pipe of this wind gap device. In in the aspect of one, provide a wind gap device (AP) that is used for the tuber pipe machine, wind gap device (AP) is including a plurality of wind gaps section (1), wind gap section (1) is including casing (20), casing (20) are injectd there are air intake (28) and air outlet (27), wherein, wind gap section (1) is provided with mosaic structure, makes wind gap section (1) is suitable for the concatenation together and constitute and have required length wind gap device (AP). According to the utility model discloses, the wind gap device can satisfy specific installation space to different needs of wind gap device length under the condition of lower manufacturing complexity and lower cost owing to adopt the concatenation mode to constitute, maintain from this or improved the aesthetic measure of decorateeing.

Description

Tuyere device and comprise the air-cooled ducted air conditioner of this tuyere device
Technical field
The utility model relates to air-conditioning technique field, is specifically related to a kind of tuyere device and a kind of relevant air-cooled ducted air conditioner.
Background technology
In the air-cooled ducted air conditioner (air-duct-type air-conditioner machine) of such as family expenses air-cooled ducted air conditioner, mostly adopt concealed installation form for consideration attractive in appearance.In this concealed air-cooled ducted air conditioner, by air port (tuyere device) air-out exposed, therefore the aesthetic measure in air port directly determines the overall appearance degree that air-cooled ducted air conditioner is installed.
The air port of air-cooled ducted air conditioner generally includes engineering air port and can automatic regulating tuyere.
Engineering air port is generally simple air outlet grate and the length in engineering air port is suitable for customization.But engineering air port arbitrarily can not regulate air-out (such as regulate air-out direction and sweep wind), and engineering air port can not close the air outlet of tuyere device thus air port can be caused easily to enter dust and cause IAQ deterioration simultaneously.
The adjustment function of air-out and the function of closing air outlet can be had by automatic regulating tuyere.But, automatically wind and closing structure is adjusted owing to being provided with, therefore, because the restriction of self structure etc. often can be formed into fixed length by automatic regulating tuyere, or be unsuitable for manufacturing and deposit the plurality of specifications with different length for the consideration of cost etc. can automatic regulating tuyere.Thus, can fail to adapt to various different specific installing space well by automatic regulating tuyere.Such as, when in a certain room with predetermined ceiling areas install can automatic regulating tuyere time, what its size (length) was fixed length can likely be merely able to be arranged in the local of whole ceiling areas by automatic regulating tuyere, thus have impact on overall finishing effect.
Here, it should be pointed out that the technology contents provided in this part is intended to contribute to those skilled in the art to understanding of the present utility model, and not necessarily form prior art.
Utility model content
In order to solve or partly solve at least one problem in the problems referred to above existing in correlation technique, the utility model provides a kind of tuyere device and a kind of air-cooled ducted air conditioner comprising this tuyere device, this tuyere device can meet the different needs of specific installing space to tuyere device length owing to adopting connecting method to form under the condition of lower manufacture complexity and lower cost, maintains or improve the aesthetic measure of finishing thus.
According to an aspect of the present utility model, a kind of tuyere device for air-cooled ducted air conditioner is provided, described tuyere device comprises multiple air port section, described air port section comprises housing, described housing is limited with air inlet and air outlet, wherein, described air port section is provided with splicing construction, makes described air port section be suitable for being stitched together and forming the described tuyere device with Len req.
Preferably, described splicing construction comprises electric splicing construction and/or mechanical splice structure.
Preferably, described electric splicing construction comprises grafting joint and grafting pedestal, thus in the described tuyere device spliced, the grafting joint of an air port section in two adjacent air port sections is engaged to the grafting pedestal of another air port section thus realizes the transmission of electric energy and the connection of control.
Preferably, described mechanical splice structure comprises protuberance and recess or jack, and thus in the described tuyere device spliced, the protuberance of an air port section in two adjacent air port sections is engaged to recess or the jack of another air port section.
Preferably, described air port section also comprises and is suitable for the air adjustment actuator regulated the air-out of described air port section and/or the close mechanism being suitable for closed described air outlet.
Preferably, described air adjustment actuator comprises wind guiding mechanism and/or sweeps wind mechanism.
Preferably, described wind guiding mechanism comprises the wind deflector being arranged at described air outlet place.
Preferably, described wind deflector can move between the open position and the closed position, in described open position, described wind deflector can relative to the planar tilt predetermined angular of described air outlet thus regulate air-out direction, and in described closed position, described wind deflector can close described air outlet, thus forms the close mechanism of described air outlet.
Preferably, described in sweep wind mechanism and comprise and sweep air blade, described in sweep air blade structure and can swing.
Preferably, described air port section also comprises control and driving mechanism.
Preferably, described control and driving mechanism comprise the automatically controlled and gear box of the motion being suitable for controlling described air adjustment actuator and/or described close mechanism.
Preferably, described automatically controlled and gear box is arranged in the inside of described housing, or described automatically controlled and gear box is arranged in the outside of described housing.
Preferably, described housing comprises relative the first side wall and the second sidewall, and when described automatically controlled and gear box is arranged in the inside of described housing, described automatically controlled and gear box is attached to the inner surface of described the first side wall or the second sidewall.
Preferably, described splicing construction comprises: the grafting joint stretched out from the aperture of described the first side wall or the second sidewall being arranged at described automatically controlled and gear box place; And being arranged at the grafting pedestal at described second sidewall or the first side wall place, the position of described grafting pedestal is corresponding with the position of described grafting joint.
Preferably, described housing comprises upper wall, lower wall and relative the first side wall and the second sidewall, and when described automatically controlled and gear box is arranged in the outside of described housing, described automatically controlled and gear box be attached to the outer surface of described upper wall with described the first side wall or the adjacent side of the second sidewall.
Preferably, described the first side wall or the second sidewall comprise the extension upwards extending beyond described upper wall, and described splicing construction comprises: the grafting joint stretched out from the aperture of described extension being arranged at described automatically controlled and gear box place; And being arranged at the grafting pedestal at side place of outer surface of described upper wall, the position of described grafting pedestal is corresponding with the position of described grafting joint.
Preferably, described air port section has equal length, or described air port section comprises the unequal multiple specification of length.
According to another aspect of the present utility model, provide a kind of air-cooled ducted air conditioner, wherein, described air-cooled ducted air conditioner comprises tuyere device as above.
According to the utility model, because tuyere device adopts connecting method and modular mode to form, therefore can by single specification or some specifications (especially, less several specifications) air port section form the tuyere device (namely achieving the length adjustment of tuyere device) with different length, thus meet the different needs of specific installing space to tuyere device length under the condition of lower manufacture complexity and lower cost, and then maintain or improve the aesthetic measure of finishing.
Especially, for there is the tuyere device of the adjustment function of air-out and/or the function of closing air outlet, adopt connecting method and modular mode, effectively can solve to be not easy to tuyere device to be made for because automatically adjusting the restriction of wind and closing structure etc. and there is length required arbitrarily and the problem that cannot adapt to various different specific installing space well.
In addition, by arranging special splicing construction (such as electric splicing construction) in air port section, easily each air port section can be stitched together and can realize the transmission of electric energy and the connection of control between each air port section easily simultaneously, realize easily thus controlling the running of each air port section and then the running of whole tuyere device.
Accompanying drawing explanation
By referring to the detailed description of accompanying drawing to the utility model embodiment, of the present utility model above-mentioned and other object, feature and advantage will be more clear, in the accompanying drawings:
Fig. 1 is the stereogram of the installment state of the tuyere device illustrated according to the utility model illustrative embodiments;
Fig. 2 is the front schematic view of the air port section illustrated according to the utility model illustrative embodiments;
Fig. 3 is the left rear side schematic diagram of the air port section illustrated according to the utility model illustrative embodiments;
Fig. 4 is the right lateral side schematic diagram of the air port section illustrated according to the utility model illustrative embodiments;
Fig. 5 is the left rear side schematic diagram of the modified example of the air port section illustrated according to the utility model illustrative embodiments; And
Fig. 6 is the right lateral side schematic diagram of the modified example of the air port section illustrated according to the utility model illustrative embodiments.
Description of reference numerals:
1-air port section; 2-wind deflector; The upper wind deflector of 2-1-; Wind deflector under 2-2-; 3-grafting pedestal; Automatically controlled and the gear box of 4-; 5-driving member; 6-sweeps air blade; 7-connecting rod; 8-cable; 9-grafting joint; 10-ceiling structure; 20-housing; 21-upper wall; 22-lower wall; The left wall of 23-; 23a-extension; The right wall of 24-; 25-upper flange; 26-lower flange; 27-open front; 28-after-opening; AP-tuyere device; CM-controls and driving mechanism; GM-wind guiding mechanism; SM-sweeps wind mechanism.
Detailed description of the invention
With reference to the accompanying drawings, by illustrative embodiments, the utility model is described in detail.Be only for purpose of explanation to following detailed description of the present utility model, and be never the restriction to the utility model and application or purposes.
With reference to Fig. 1 (Fig. 1 is the stereogram of the installment state of the tuyere device illustrated according to the utility model illustrative embodiments), tuyere device (spliced tuyere device or the modularization tuyere device) AP according to the utility model illustrative embodiments can be made up of a series of air port section 1 be stitched together.
In the example shown in the series of figures, the quantity of air port section 1 is four and the same length of each air port section 1.But it is contemplated that, the quantity of air port section 1 for other quantity being more than or equal to two, can it is also conceivable that tuyere device AP can be made up of multiple air port sections 1 with different length.
Such as, the air port section 1 of different size quantity can be made (preferably, less specification quantity---such as 2 to 4 specifications), the air port section 1 of each specification has different length, automatic tune wind and the closing structure of each length and air port section 1 adapt, in other words, each length is unlikely to automatically adjusting the setting of wind and closing structure to cause too much impact.Like this, because specification quantity is few, therefore excessive manufacture difficulty and stock risk can not be brought because of specification One's name is legion.On the other hand, owing to having the air port section 1 of different size, therefore best air port section combination can be selected to form tuyere device AP from the air port section 1 with different length, tuyere device AP is made to be adapted to specific installing space well (such as in length, when having air port section 1 of 1 meter and 1.5 meters two kinds of specifications, can form by the air port section of the air port section of splicing two 1 meter of specifications and 1.5 meters of specifications the tuyere device AP that total length is 3.5 meters, thus be adapted to the ceiling structure 10 that length is 3.5 meters well).
As shown in Figure 1, tuyere device AP is mounted to ceiling structure 10, and the total length of the tuyere device AP be made up of four air port sections 1 is adapted to the length of ceiling structure 10 well, make not exist in ceiling structure 10 not by the large region that tuyere device AP occupies, thus maintain the aesthetic measure of finishing.
Referring to Fig. 2 to Fig. 4, air port section 1 is described further, wherein, Fig. 2 is the front schematic view of the air port section illustrated according to the utility model illustrative embodiments, Fig. 3 is the left rear side schematic diagram of the air port section illustrated according to the utility model illustrative embodiments, and Fig. 4 is the right lateral side schematic diagram of the air port section illustrated according to the utility model illustrative embodiments.
Air port section 1 can have the adjustment function of air-out and/or the function of closing air outlet.
Air port section 1 can comprise: housing 20, wind guiding mechanism GM, sweep wind mechanism SM and control and driving mechanism CM.
Housing 20 limits the exterior contour (such as, exterior contour can in roughly cuboid) of air port section 1, and can comprise upper wall 21, lower wall 22, Zuo Bi (the first side wall) 23 and You Bi (the second sidewall) 24.Housing 20 can limit open front 27 and after-opening 28, and open front 27 can be used as the air outlet of air port section 1, and after-opening 28 can be used as the air inlet of air port section 1.In the example shown in the series of figures, housing 20 can also comprise the upper flange 25 that upwards extends from the front end of upper wall 21 and from the front end of lower wall 22 to the lower flange 26 of downward-extension, and upper flange 25 and lower flange 26 1 aspect are conducive to the aesthetic measure that the installation of air port section 1 and location then can improve air port on the other hand.
Wind guiding mechanism GM can be arranged on open front 27 place and can comprise wind deflector 2.Wind deflector 2 can comprise wind deflector 2-1 and lower wind deflector 2-2.Wind deflector 2 can control and driving mechanism CM control and under driving in the spaced winding basic horizontal axis pivotable of open position (as shown in Figure 1) and closing position.In open position, wind deflector 2 can relative to plane (such as vertical plane) the inclination certain angle residing for open front 27, thus realizes guiding to air-out (that is, regulate air-out direction).In closed position, wind deflector 2 can close the air outlet (open front 27) of air port section 1, thus dust etc. can be avoided to enter in air port section 1.Thus, on the one hand, wind guiding mechanism GM (wind deflector 2) plays the effect of the air adjustment actuator for regulating air-out (adjustment air-out direction), and on the other hand, wind guiding mechanism GM (wind deflector 2) plays the effect of the close mechanism of the air outlet for closed air port section 1.In other words, wind guiding mechanism GM can double as air adjustment actuator and close mechanism.
Sweep the inside that wind mechanism SM can be arranged on housing 20.Sweep wind mechanism SM can comprise and sweep air blade 6.Sweep air blade 6 and can sweep air blade 6 for bottom is connected to the multiple of same connecting rod (sign).Sweep air blade 6 can control and driving mechanism CM control and drive under along horizontal direction (being approximately perpendicular to the direction of air-out direction) swing thus realize sweep wind.Thus, the effect that wind mechanism SM (sweeping air blade 6) plays the air adjustment actuator for regulating air-out (sweeping wind) is swept.In other words, sweep wind mechanism SM and can form air adjustment actuator together with wind guiding mechanism GM.
Control and driving mechanism CM can comprise: automatically controlled and gear box 4, driving member 5 and connecting rod 7.Automatically controlled and gear box 4 can control wind deflector 2 via driving member 5 and connecting rod 7 and/or sweep the motion of air blade 6.
Control and driving mechanism CM, wind guiding mechanism GM and sweep the example of concrete structure of wind mechanism SM and control and the driving mechanism CM example to wind guiding mechanism GM and the concrete type of drive of sweeping wind mechanism SM can with reference to associated exemplary disclosed in Chinese patent application publication No. CN103363645A, CN103982996A and CN104296342A.The full content of these Chinese patent application is bonded to herein by reference at this.
As shown in Figure 3, automatically controlled and gear box 4 can be arranged in the enclosure interior of air port section 1.Such as, can be attached to the inner surface of sidewall, particularly, automatically controlled and gear box 4 can be attached to the inner surface of left wall 23, in other examples, also can be attached to the inner surface of right wall 24.
Automatically controlled and gear box 4 can comprise grafting joint 9, and grafting joint 9 can via being formed in the aperture at left wall 23 place outwardly.In addition, can at the opposite side of air port section 1 and right wall place, arrange grafting pedestal 3 (, the correspondence of position such as refers to the correspondence on fore-and-aft direction and left and right directions) here in the position corresponding with grafting joint 9.In the tuyere device AP spliced, the grafting joint 9 of a certain air port section 1 can be engaged to the grafting pedestal 3 of another adjacent air port section 1, makes grafting joint 9 and grafting pedestal 3 contact with each other thus realize the transmission of electric energy and the connection (transmission of control signal) of control.Here, it is pointed out that grafting joint 9 and grafting pedestal 3 are used as according to splicing construction of the present utility model (electric splicing construction).
In same air port section 1, grafting joint 9 and grafting pedestal 3 can link together via cable 8.
Referring to Fig. 5 and Fig. 6, the modified example according to the air port section 1 of the utility model illustrative embodiments is described, wherein, Fig. 5 is the left rear side schematic diagram of the modified example of the air port section illustrated according to the utility model illustrative embodiments, and Fig. 6 is the right lateral side schematic diagram of the modified example of the air port section illustrated according to the utility model illustrative embodiments.
According in the air port section 1 of this modified example, replace automatically controlled and gear box 4 to be arranged in the scheme of the enclosure interior of air port section 1, automatically controlled and gear box 4 is arranged in the hull outside of air port section 1.Such as, automatically controlled and gear box 4 can be attached to the outer surface of upper wall 21.
In the example shown in the series of figures, left wall 23 can comprise the extension 23a upwards extending beyond upper wall 21, and automatically controlled and gear box 4 can be positioned at the left end place of upper wall 21 and abut against extension 23a.Extension 23a can protect and be arranged in the automatically controlled of hull outside and gear box 4 and avoid such as being subject to lateral impact when splicing, and can contributing to stable position that is automatically controlled and gear box 4.
Automatically controlled and gear box 4 can comprise grafting joint 9, and grafting joint 9 can via be formed in left wall 23 extension 23a place aperture outwardly.In addition, can locate, grafting pedestal 3 is set in the position corresponding with grafting joint 9 on the opposite side of air port section 1 i.e. right side.In this variant, grafting pedestal 3 is also arranged in the hull outside of air port section 1, such as, is arranged on the outer surface of upper wall 21.
Here, it should be pointed out that and also can omit extension 23a, in this case, the left side entirety including grafting joint 9 that is automatically controlled and gear box 4 is exposed.
In use, according to specific installing space and actual installation demand, the air port section selecting the best combines (that is, select the multiple air port sections needing same specification or the different size be stitched together), then when mounted multiple air port section is stitched together, the grafting joint 9 of two adjacent air port sections and grafting pedestal 3 are combined together, form required tuyere device AP thus and complete the installation of tuyere device AP.
After the installation is complete, the control circuit between each air port section and power circuit mutual conduction.Thus, at the run duration of air-cooled ducted air conditioner, by specific control, side by side can start the wind deflector 2 of each air port section 1 and sweep the running of air blade 6, also can only open a part of air port section 1 according to user's request and mask the gauge tap of remainder air port section and all the other air port sections of stopping using.
According to the utility model, also provide the air-cooled ducted air conditioner comprising splicing tuyere device as above.
At least following Advantageous Effects can be obtained according to tuyere device of the present utility model.
Because tuyere device adopts connecting method and modular mode to form, therefore can by single specification or some specifications (especially, less several specifications) air port section form the tuyere device (namely achieving the length adjustment of tuyere device) with different length, thus meet the different needs of specific installing space to tuyere device length under the condition of lower manufacture complexity and lower cost, and then maintain or improve the aesthetic measure of finishing.
Especially, for there is the tuyere device of the adjustment function of air-out and/or the function of closing air outlet, adopt connecting method and modular mode, effectively can solve to be not easy to tuyere device to be made for because automatically adjusting the restriction of wind and closing structure etc. and there is length required arbitrarily and the problem that cannot adapt to various different specific installing space well.
In addition, by arranging special splicing construction (such as electric splicing construction) in air port section, easily each air port section can be stitched together and can realize the transmission of electric energy and the connection of control between each air port section easily simultaneously, realize easily thus controlling the running of each air port section and then the running of whole tuyere device.
Multiple different modification is allowed according to tuyere device of the present utility model.
Described above is tuyere device and there is the electric splicing construction be made up of grafting joint 9 and grafting pedestal 3.But, it is contemplated that, additionally or alternatively, can in air port section setting example as the mechanical splice structure of protuberance and recess (or jack) and so on, make in the tuyere device spliced, the protuberance of a certain air port section can be engaged to the recess (or jack) of another adjacent air port section, thus the stable position be conducive between each air port section so that be conducive to splice realization.
Described above is each air port section 1 forming tuyere device and there is the adjustment function of air-out and/or the function of closing air outlet.But, it is contemplated that, form the part in multiple air port sections of tuyere device or be even all that not there is the air port section (such as simple grille section) regulating the function of air-out and the function of closing air outlet.
The air adjustment actuator that described above is air port section 1 comprises wind guiding mechanism and sweeps wind mechanism, and wind guiding mechanism also doubles as close mechanism.But it is contemplated that, air adjustment actuator only comprises wind guiding mechanism and sweeps the one in wind mechanism, it is also conceivable that close mechanism is made up of another mechanism being specifically designed to closing air outlet being different from wind guiding mechanism.
It should be noted that in present specification, directional terminology " on ", D score, " left side " and " right side " etc. use only for the object being convenient to describe, and should not be considered as being restrictive.
Also should be noted that, in present specification, the such as relational terms of " first " and " second " etc. and so on is only used for certain entity or operation to separate with another entity or operating space, and not necessarily requires or imply the relation or order that there is any this reality between these entities or operation.In addition, term " comprises ", " comprising " or its other variant any are intended to contain comprising of nonexcludability, thus make to comprise the process of a series of key element, method, article or equipment and not only comprise those key elements, but also comprise other key element clearly do not listed, or also comprise by the intrinsic key element of this process, method, article or equipment.
Last it is noted that obviously, above-mentioned embodiment/example is only for the utility model example is clearly described, and the restriction not to embodiment/example.To those skilled in the art, can also make other changes in different forms on the basis of the above description.Here without the need to also giving exhaustive to all embodiment/examples.And thus the apparent change of amplifying out or variation be still among protection domain of the present utility model.

Claims (18)

1. a tuyere device (AP), described tuyere device (AP) comprises multiple air port section (1), described air port section (1) comprises housing (20), described housing (20) is limited with air inlet (28) and air outlet (27), wherein, described air port section (1) is provided with splicing construction, makes described air port section (1) be suitable for being stitched together and forming the described tuyere device (AP) with Len req.
2. tuyere device (AP) as claimed in claim 1, wherein, described splicing construction comprises electric splicing construction and/or mechanical splice structure.
3. tuyere device (AP) as claimed in claim 2, wherein, described electric splicing construction comprises grafting joint (9) and grafting pedestal (3), thus in the described tuyere device (AP) spliced, the grafting joint (9) of an air port section (1) in two adjacent air port sections (1) is engaged to the grafting pedestal (3) of another air port section (1) thus realizes the transmission of electric energy and the connection of control.
4. tuyere device (AP) as claimed in claim 2, wherein, described mechanical splice structure comprises protuberance and recess or jack, thus in the described tuyere device (AP) spliced, the protuberance of an air port section (1) in two adjacent air port sections (1) is engaged to recess or the jack of another air port section (1).
5. tuyere device (AP) as claimed in claim 1, wherein, described air port section (1) also comprises and is suitable for the air adjustment actuator regulated the air-out of described air port section (1) and/or the close mechanism being suitable for closed described air outlet.
6. tuyere device (AP) as claimed in claim 5, wherein, described air adjustment actuator comprises wind guiding mechanism (GM) and/or sweeps wind mechanism (SM).
7. tuyere device (AP) as claimed in claim 6, wherein, described wind guiding mechanism (GM) comprises the wind deflector (2) being arranged at described air outlet (27) place.
8. tuyere device (AP) as claimed in claim 7, wherein, described wind deflector (2) can move between the open position and the closed position, in described open position, described wind deflector (2) can relative to the planar tilt predetermined angular of described air outlet (27) thus regulate air-out direction, and in described closed position, described wind deflector (2) can close described air outlet (27), thus forms the close mechanism of described air outlet.
9. tuyere device (AP) as claimed in claim 6, wherein, described in sweep wind mechanism (SM) and comprise and sweep air blade (6), described in sweep air blade (6) and can swing.
10. tuyere device (AP) as claimed in claim 5, wherein, described air port section (1) also comprises control and driving mechanism (CM).
11. tuyere devices (AP) as claimed in claim 10, wherein, described control and driving mechanism (CM) comprise the automatically controlled and gear box (4) of the motion being suitable for controlling described air adjustment actuator and/or described close mechanism.
12. tuyere devices (AP) as claimed in claim 11, wherein, described automatically controlled and gear box (4) is arranged in the inside of described housing (20), or described automatically controlled and gear box (4) is arranged in the outside of described housing (20).
13. tuyere devices (AP) as claimed in claim 12, wherein:
Described housing (20) comprises relative the first side wall (23) and the second sidewall (24), and
When described automatically controlled and gear box (4) is arranged in the inside of described housing (20), described automatically controlled and gear box (4) is attached to the inner surface of described the first side wall (23) or the second sidewall (24).
14. tuyere devices (AP) as claimed in claim 13, wherein, described splicing construction comprises: the grafting joint (9) stretched out from the aperture of described the first side wall (23) or the second sidewall (24) being arranged at described automatically controlled and gear box (4) place; And being arranged at the grafting pedestal (3) at described second sidewall (24) or the first side wall (23) place, the position of described grafting pedestal (3) is corresponding with the position of described grafting joint (9).
15. tuyere devices (AP) as claimed in claim 12, wherein:
Described housing (20) comprises upper wall (21), lower wall (22) and relative the first side wall (23) and the second sidewall (24), and
When described automatically controlled and gear box (4) is arranged in the outside of described housing (20), described automatically controlled and gear box (4) be attached to the outer surface of described upper wall (21) with described the first side wall (23) or the adjacent side of the second sidewall (24).
16. tuyere devices (AP) as claimed in claim 15, wherein:
Described the first side wall (23) or the second sidewall (24) comprise the extension (23a) upwards extending beyond described upper wall (21), and
Described splicing construction comprises: the grafting joint (9) stretched out from the aperture of described extension (23a) being arranged at described automatically controlled and gear box (4) place; And being arranged at the grafting pedestal (3) at side place of outer surface of described upper wall (21), the position of described grafting pedestal (3) is corresponding with the position of described grafting joint (9).
17. tuyere devices (AP) according to any one of claim 1 to 16, wherein, described air port section (1) has equal length, or described air port section (1) comprises the unequal multiple specification of length.
18. 1 kinds of air-cooled ducted air conditioners, wherein, described air-cooled ducted air conditioner comprises the tuyere device (AP) according to any one of claim 1 to 17.
CN201520920235.2U 2015-11-17 2015-11-17 Wind gap device and quick -witted including tuber pipe of this wind gap device Active CN205156271U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105423515A (en) * 2015-11-17 2016-03-23 珠海格力电器股份有限公司 Air pipe and air pipe machine comprising same
WO2019119867A1 (en) * 2017-12-22 2019-06-27 格力电器(武汉)有限公司 Vent structure and air conditioning system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105423515A (en) * 2015-11-17 2016-03-23 珠海格力电器股份有限公司 Air pipe and air pipe machine comprising same
CN105423515B (en) * 2015-11-17 2018-09-21 珠海格力电器股份有限公司 Tuyere device and air-cooled ducted air conditioner including the tuyere device
WO2019119867A1 (en) * 2017-12-22 2019-06-27 格力电器(武汉)有限公司 Vent structure and air conditioning system

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