CN205351536U - Indoor tuber pipe machine - Google Patents
Indoor tuber pipe machine Download PDFInfo
- Publication number
- CN205351536U CN205351536U CN201620138567.XU CN201620138567U CN205351536U CN 205351536 U CN205351536 U CN 205351536U CN 201620138567 U CN201620138567 U CN 201620138567U CN 205351536 U CN205351536 U CN 205351536U
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- China
- Prior art keywords
- air
- cooled ducted
- air conditioner
- main body
- spiral case
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- Withdrawn - After Issue
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Abstract
The utility model discloses an indoor tuber pipe machine, it includes the tuber pipe owner body (1), the front side of the tuber pipe owner body (1) is equipped with first wind gap (101), the downside of the tuber pipe owner body (1) is equipped with second wind gap (102), be equipped with in the tuber pipe owner body (1) spiral case (2), be equipped with air intake (201) and air outlet (202) on spiral case (2), be equipped with fan (3) in spiral case (2), air outlet (202) of spiral case (2) are located to be equipped with and spiral case (2) fixed base plate (4), be equipped with the through -hole that link up with air outlet (202) on base plate (4), at least one of spiral case (2) left and right sides both ends are served to be equipped with and are used for driving base plate (4) pivoted actuating mechanism (5), the utility model has the advantages that no matter the indoor set is heating or is making under the cold die formula, the homoenergetic enough makes the user have better travelling comfort.
Description
Technical field
This utility model relates to a kind of indoor air-cooled ducted air conditioner.
Background technology
Existing air-conditioning generally comprises indoor set disposed within and is installed on the off-premises station of outdoor, and wherein, the set-up mode of indoor set mainly includes embedded, concealed type, wall-mounted and console model etc..
The main body of hidden type air conditioner indoor unit (i.e. indoor air-cooled ducted air conditioner) is generally overall in rectangular-shaped, the air port in order to supplied gas circulation is offered in the front side of cuboid or rear side, offer the air port in order to supplied gas circulation in the downside of cuboid, hidden type air conditioner indoor unit main body is provided with the exhaust air flue connected with this air outlet or the wind inlet channel connected with this air inlet.Its air supply pattern mainly adopts Lateral supply mode next time, and (air port that the front side of cuboid or rear side are opened is as air outlet, the air port of the downside of cuboid is as air inlet), this air supply mode is when refrigeration, cold air drops from top to bottom, and refrigeration air-supply is uniform, but Shortcomings part when heating, owing to hot-air is lighter, easily swim in top, room, but the range of activity of personnel is not or not top, room, causes that the comfortableness in space, personnel area is poor.Weak point for above-mentioned situation, (air port that the front side of cuboid or rear side are opened is as air inlet for the lower air-supply unit released on market, the air port of the downside of cuboid is as air outlet), although heating intermittent fever wind energy to deliver to personnel area, meet the comfortableness heated, its Shortcomings part: during refrigeration, cold wind is easily directly blown onto on the person, and human body comfort is poor.
Utility model content
The technical problems to be solved in the utility model is to provide a kind of indoor air-cooled ducted air conditioner, no matter is heating or under refrigeration mode, user all can made to have better comfortableness.
For solving above-mentioned technical problem, the technical scheme that this utility model provides is: a kind of indoor air-cooled ducted air conditioner, it includes air-cooled ducted air conditioner main body, the front side of described air-cooled ducted air conditioner main body is provided with the first air port, and the downside of described air-cooled ducted air conditioner main body is provided with the second air port, is provided with spiral case in described air-cooled ducted air conditioner main body, described spiral case is provided with air inlet and air outlet, being provided with blower fan in described spiral case, the air outlet place of described spiral case is provided with the substrate fixing with spiral case, and described substrate is provided with the through hole through with air outlet;At least one end at two ends, described spiral case left and right is provided with the driving mechanism for driving substrate rotating, makes air outlet and the connection of the second air port, air inlet and the connection of the first air port when air-cooled ducted air conditioner main body substrate in a heating mode drives spiral case to rotate;Air inlet and the connection of the second air port, air outlet and the connection of the first air port is made when air-cooled ducted air conditioner main body substrate in cooling mode drives spiral case to rotate.
As one preferably, the rotation axis of described spiral case and the rotation axis coincident of blower fan.
Preferred as one, described driving mechanism includes the mounting box being fixed on air-cooled ducted air conditioner main body medial wall, the motor being located between mounting box and air-cooled ducted air conditioner main body medial wall and the moving block being rotatably assorted with mounting box, the power transmission shaft of described motor stretches in mounting box and one end of moving block is rotationally connected, the other end of described moving block is fixing with substrate to be connected, wherein, the pivot center of moving block is parallel to each other with the axis of the power transmission shaft of motor.
Preferred as one, described driving mechanism also includes the driving gear that the power transmission shaft with motor is connected, described moving block is provided with the driven tooth engaged with driving gear, is provided with the first microswitch with moving block inconsistent power failure machine and the second microswitch with the inconsistent power failure machine of moving block in described mounting box.
Preferred as one, described mounting box is provided with mean for the opening that moving block rotates, described first microswitch and the second microswitch are respectively provided at the both sides of opening.
Preferred as one, described moving block is provided with the first projection for offseting with the first microswitch and the second projection for offseting with the second microswitch.
Preferred as one, deep bead, first time deep bead and second time deep bead it is provided with in described air-cooled ducted air conditioner main body, described first time deep bead and second time deep bead are located at the left and right sides in the second air port, described upper deep bead is located at the top of first time deep bead, when air-cooled ducted air conditioner main body driving mechanism in a heating mode drives substrate rotating to make substrate spacing between first time deep bead and second time deep bead;When air-cooled ducted air conditioner main body driving mechanism in cooling mode drives substrate rotating to make substrate spacing between upper deep bead and first time deep bead.
Preferred as one, described upper deep bead, first time deep bead and second time deep bead are provided with the flexible piece for offseting with the side of substrate.
Preferred as one, in a heating mode, the air supply direction of air-cooled ducted air conditioner main body and the plane at the second place, air port are acute angle to air-cooled ducted air conditioner main body, and in cooling mode, the air supply direction of air-cooled ducted air conditioner main body and the plane at the first place, air port are acute angle to air-cooled ducted air conditioner main body.
Preferred as one, described substrate and spiral case are integral type structure.
After adopting above structure, this utility model compared with prior art, has the advantage that and arranges the substrate fixing with spiral case at the air outlet place of spiral case, and substrate arranges the through hole through with air outlet;At least one end at two ends, spiral case left and right is arranged to drive the driving mechanism of substrate rotating, makes air outlet and the connection of the second air port, air inlet and the connection of the first air port when air-cooled ducted air conditioner main body substrate in a heating mode drives spiral case to rotate;Air inlet and the connection of the second air port, air outlet and the connection of the first air port is made when air-cooled ducted air conditioner main body substrate in cooling mode drives spiral case to rotate.By being under refrigeration mode when air-cooled ducted air conditioner main body so that air inlet and second air port of spiral case are through, air outlet and first air port of spiral case are through;When air-cooled ducted air conditioner main body is under heating mode so that air inlet and first air port of spiral case are through, air outlet and second air port of spiral case are through.It is exactly based on above-mentioned setting, it is possible to when air-cooled ducted air conditioner main body is under heating mode, adopts lower air-out, heat intermittent fever wind energy and deliver to personnel area, meet the comfortableness heated;Can under air-cooled ducted air conditioner main body is in refrigeration mode time, adopt side air-out (upper air-out), this air supply mode is when refrigeration, and cold air drops from top to bottom, and refrigeration air-supply uniformly, meets the comfortableness of refrigeration, and cold wind is not easy to be directly blown onto on the person.
Accompanying drawing explanation
Fig. 1 is this utility model inside overall structure schematic diagram in cooling mode.
Fig. 2 is this utility model inside overall structure schematic diagram in a heating mode.
Fig. 3 is this utility model planar structure schematic diagram in a heating mode.
Fig. 4 is this utility model planar structure schematic diagram in cooling mode.
Fig. 5 is the planar structure schematic diagram of driving mechanism of the present utility model.
Fig. 6 is the planar structure schematic diagram under another state of driving mechanism of the present utility model.
Fig. 7 is this utility model design sketch under refrigerating state.
Fig. 8 is this utility model design sketch under heating state.
Shown in figure: 1, air-cooled ducted air conditioner main body, the 101, first air port, the 102, second air port, 2, spiral case, 201, air inlet, 202, air outlet, 3, blower fan, 4, substrate, 5, driving mechanism, 501, mounting box, 502, motor, 503, moving block, 504, driving gear, 505, driven tooth, 506, the first projection, the 507, second projection, 508, opening, 601, the first microswitch, 602, the second microswitch, 701, upper deep bead, 702, first time deep bead, 703, second time deep bead, 8, opening.
Detailed description of the invention
Below in conjunction with accompanying drawing, this utility model is described in further detail.
This utility model one indoor air-cooled ducted air conditioner, such as accompanying drawing 1, accompanying drawing 2, accompanying drawing 3, accompanying drawing 4, shown in accompanying drawing 5 and accompanying drawing 6, it includes air-cooled ducted air conditioner main body 1, the front side of described air-cooled ducted air conditioner main body 1 is provided with the first air port 101, the downside of described air-cooled ducted air conditioner main body 1 is provided with the second air port 102, it is provided with spiral case 2 in described air-cooled ducted air conditioner main body 1, described spiral case 2 is provided with air inlet 201 and air outlet 202, it is provided with blower fan 3 in described spiral case 2, it is characterized in that: air outlet 202 place of described spiral case 2 is provided with the substrate 4 fixing with spiral case 2, described substrate 4 is provided with the through hole through with air outlet 202;At least one end at described spiral case about 2 two ends is provided with the driving mechanism 5 for driving substrate 4 to rotate, when air-cooled ducted air conditioner main body 1 substrate 4 in a heating mode drives spiral case 2 to rotate, air outlet 202 is connected with the second air port 102, air inlet 201 connects with the first air port 101;When air-cooled ducted air conditioner main body 1 substrate 4 in cooling mode drives spiral case 2 to rotate, air inlet 201 is connected with the second air port 102, air outlet 202 connects with the first air port 101.
The rotation axis of described spiral case 2 and the rotation axis coincident of blower fan 3.
Described driving mechanism includes the mounting box 501 being fixed on air-cooled ducted air conditioner main body 1 medial wall, the motor 502 being located between mounting box 501 and air-cooled ducted air conditioner main body 1 medial wall and the moving block 503 being rotatably assorted with mounting box 501, the power transmission shaft of described motor 502 stretches in mounting box 501 and one end of moving block 503 is rotationally connected, the other end of described moving block 503 is fixing with substrate 4 to be connected, wherein, the pivot center of moving block 503 is parallel to each other with the axis of the power transmission shaft of motor 502.
Described driving mechanism also includes the driving gear 504 being connected with the power transmission shaft of motor 502, described moving block 504 is provided with the driven tooth 505 engaged with driving gear 504, is provided with the first microswitch 601 with moving block 503 inconsistent power failure machine 502 and the second microswitch 602 with the inconsistent power failure machine 502 of moving block 503 in described mounting box 501.
Being provided with mean for the opening 508 that moving block 504 rotates on described mounting box 503, described first microswitch 601 and the second microswitch 602 are respectively provided at the both sides of opening 508.
Described moving block 503 is provided with the first projection 506 for offseting with the first microswitch 601 and the second projection 507 for offseting with the second microswitch 602.
701, first time deep bead 702 of deep bead and second time deep bead 703 it is provided with in described air-cooled ducted air conditioner main body 1, described first time deep bead 702 and second time deep bead 703 are located at the left and right sides in the second air port 102, described upper deep bead 701 is located at the top of first time deep bead 702, makes substrate 4 spacing between first time deep bead 702 and second time deep bead 703 when air-cooled ducted air conditioner main body 1 driving mechanism 5 in a heating mode drives substrate 4 to rotate;Make substrate 4 spacing between upper deep bead 701 and first time deep bead 702 when air-cooled ducted air conditioner main body 1 driving mechanism 5 in cooling mode drives substrate 4 to rotate.
701, first time deep bead 702 of described upper deep bead and second time deep bead 703 are provided with the flexible piece for offseting with the side of substrate 4.(accompanying drawing does not embody).
As shown in Figure 3, in a heating mode, the air supply direction of air-cooled ducted air conditioner main body 1 and the plane at the second place, air port 102 are acute angle to air-cooled ducted air conditioner main body 1, and this acute angle identifies with A in fig. 3 so that air-cooled ducted air conditioner main body 1 in a heating mode time, the lateral air-out of hot blast,
As shown in Figure 4, in cooling mode, the air supply direction of air-cooled ducted air conditioner main body 1 and the plane at the first place, air port 101 are acute angle to air-cooled ducted air conditioner main body 1.This acute angle identifies with B in fig. 3 so that air-cooled ducted air conditioner main body 1 in cooling mode time, the lateral air-out of cold wind,
Described substrate 4 is integral type structure with spiral case 2.
Wherein, indoor air-cooled ducted air conditioner design sketch under refrigerating state of the present utility model, as shown in Figure 7, indoor air-cooled ducted air conditioner design sketch under heating state of the present utility model, as shown in Figure 8.
It is described as far as most preferred embodiment of the present utility model above, but is not to be construed as limitations on claims.This utility model is not limited only to above example, and all various changes made in the protection domain of this utility model independent claims are all in protection domain of the present utility model.
Claims (10)
1. an indoor air-cooled ducted air conditioner, it includes air-cooled ducted air conditioner main body (1), the front side of described air-cooled ducted air conditioner main body (1) is provided with the first air port (101), the downside of described air-cooled ducted air conditioner main body (1) is provided with the second air port (102), it is provided with spiral case (2) in described air-cooled ducted air conditioner main body (1), described spiral case (2) is provided with air inlet (201) and air outlet (202), blower fan (3) it is provided with in described spiral case (2), it is characterized in that: air outlet (202) place of described spiral case (2) is provided with the substrate (4) fixing with spiral case (2), described substrate (4) is provided with the through hole through with air outlet (202);At least one end at described spiral case (2) two ends, left and right is provided with the driving mechanism (5) for driving substrate (4) to rotate, when air-cooled ducted air conditioner main body (1) substrate in a heating mode (4) drives spiral case (2) to rotate, air outlet (202) is connected with the second air port (102), air inlet (201) connects with the first air port (101);When air-cooled ducted air conditioner main body (1) substrate in cooling mode (4) drives spiral case (2) to rotate, air inlet (201) is connected with the second air port (102), air outlet (202) connects with the first air port (101).
2. a kind of indoor air-cooled ducted air conditioner according to claim 1, it is characterised in that: the rotation axis coincident of the rotation axis of described spiral case (2) and blower fan (3).
3. a kind of indoor air-cooled ducted air conditioner according to claim 1, it is characterized in that: described driving mechanism includes the mounting box (501) being fixed on air-cooled ducted air conditioner main body (1) medial wall, it is located at the motor (502) between mounting box (501) and air-cooled ducted air conditioner main body (1) medial wall and the moving block (503) being rotatably assorted with mounting box (501), the power transmission shaft of described motor (502) stretches in mounting box (501) and one end of moving block (503) is rotationally connected, the other end of described moving block (503) is fixing with substrate (4) to be connected, wherein, the axis of the power transmission shaft of the pivot center of moving block (503) and motor (502) is parallel to each other.
4. a kind of indoor air-cooled ducted air conditioner according to claim 3, it is characterized in that: described driving mechanism also includes the driving gear (504) being connected with the power transmission shaft of motor (502), described moving block (504) is provided with the driven tooth (505) engaged with driving gear (504), is provided with the first microswitch (601) with moving block (503) inconsistent power failure machine (502) and the second microswitch (602) with the inconsistent power failure machine (502) of moving block (503) in described mounting box (501).
5. a kind of indoor air-cooled ducted air conditioner according to claim 4, it is characterized in that: being provided with mean for the opening (508) that moving block (503) rotates on described mounting box (501), described first microswitch (601) and the second microswitch (602) are respectively provided at the both sides of opening (508).
6. a kind of indoor air-cooled ducted air conditioner according to claim 4, it is characterised in that: described moving block (503) is provided with the first projection (506) for offseting with the first microswitch (601) and the second projection (507) for offseting with the second microswitch (602).
7. a kind of indoor air-cooled ducted air conditioner according to claim 1, it is characterized in that: in described air-cooled ducted air conditioner main body (1), be provided with deep bead (701), first time deep bead (702) and second time deep bead (703), described first time deep bead (702) and second time deep bead (703) are located at the left and right sides of the second air port (102), described upper deep bead (701) is located at the top of first time deep bead (702), make substrate (4) spacing between first time deep bead (702) and second time deep bead (703) when air-cooled ducted air conditioner main body (1) driving mechanism in a heating mode (5) drives substrate (4) to rotate;Make substrate (4) spacing between upper deep bead (701) and first time deep bead (702) when air-cooled ducted air conditioner main body (1) driving mechanism in cooling mode (5) drives substrate (4) to rotate.
8. a kind of indoor air-cooled ducted air conditioner according to claim 7, it is characterised in that: described upper deep bead (701), first time deep bead (702) and second time deep bead (703) are provided with the flexible piece for offseting with the side of substrate (4).
9. a kind of indoor air-cooled ducted air conditioner according to claim 1, it is characterized in that: air-cooled ducted air conditioner main body (1) is in a heating mode, the air supply direction of air-cooled ducted air conditioner main body (1) and the plane at the second air port (102) place are acute angle, in cooling mode, the air supply direction of air-cooled ducted air conditioner main body (1) and the plane at the first air port (101) place are acute angle to air-cooled ducted air conditioner main body (1).
10. a kind of indoor air-cooled ducted air conditioner according to claim 1, it is characterised in that: described substrate (4) and spiral case (2) they are integral type structure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620138567.XU CN205351536U (en) | 2016-02-24 | 2016-02-24 | Indoor tuber pipe machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620138567.XU CN205351536U (en) | 2016-02-24 | 2016-02-24 | Indoor tuber pipe machine |
Publications (1)
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CN205351536U true CN205351536U (en) | 2016-06-29 |
Family
ID=56183400
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201620138567.XU Withdrawn - After Issue CN205351536U (en) | 2016-02-24 | 2016-02-24 | Indoor tuber pipe machine |
Country Status (1)
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CN (1) | CN205351536U (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105605682A (en) * | 2016-02-24 | 2016-05-25 | 宁波奥克斯电气股份有限公司 | Indoor air hose machine |
CN107289524A (en) * | 2017-06-27 | 2017-10-24 | 广东美的制冷设备有限公司 | Air conditioner |
CN107631353A (en) * | 2017-09-07 | 2018-01-26 | 宁波奥克斯电气股份有限公司 | Idle call air-cooled ducted air conditioner |
-
2016
- 2016-02-24 CN CN201620138567.XU patent/CN205351536U/en not_active Withdrawn - After Issue
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105605682A (en) * | 2016-02-24 | 2016-05-25 | 宁波奥克斯电气股份有限公司 | Indoor air hose machine |
CN105605682B (en) * | 2016-02-24 | 2018-08-24 | 宁波奥克斯电气股份有限公司 | A kind of interior air-cooled ducted air conditioner |
CN107289524A (en) * | 2017-06-27 | 2017-10-24 | 广东美的制冷设备有限公司 | Air conditioner |
CN107631353A (en) * | 2017-09-07 | 2018-01-26 | 宁波奥克斯电气股份有限公司 | Idle call air-cooled ducted air conditioner |
CN107631353B (en) * | 2017-09-07 | 2020-07-28 | 宁波奥克斯电气股份有限公司 | Air duct machine for air conditioner |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20160629 Effective date of abandoning: 20180824 |