CN205897474U - Terminal wind -guiding structure of suspension type air conditioner and air conditioner - Google Patents

Terminal wind -guiding structure of suspension type air conditioner and air conditioner Download PDF

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Publication number
CN205897474U
CN205897474U CN201620878670.8U CN201620878670U CN205897474U CN 205897474 U CN205897474 U CN 205897474U CN 201620878670 U CN201620878670 U CN 201620878670U CN 205897474 U CN205897474 U CN 205897474U
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CN
China
Prior art keywords
air conditioner
baffle plate
lower baffle
overhead gage
ceiling type
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620878670.8U
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Chinese (zh)
Inventor
刘汉
李大伟
李双堇
彭勃
赵万东
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gree Electric Appliances Inc of Zhuhai
Original Assignee
Gree Electric Appliances Inc of Zhuhai
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Gree Electric Appliances Inc of Zhuhai filed Critical Gree Electric Appliances Inc of Zhuhai
Priority to CN201620878670.8U priority Critical patent/CN205897474U/en
Application granted granted Critical
Publication of CN205897474U publication Critical patent/CN205897474U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a terminal wind -guiding structure of suspension type air conditioner and air conditioner. The terminal wind -guiding structure of this suspension type air conditioner includes casing (1) and lower casing (2), goes up air outlet (3) that form 360 degrees circumference air -out between casing (1) and lower casing (2). According to the utility model discloses a terminal wind -guiding structure of suspension type air conditioner, can solve prior art in the suspension type air conditioner dead angle of blowing has between adjacent two air outlets for the problem that indoor portion bloied in the region and to reach.

Description

Ceiling type air conditioner end air guide structure and air-conditioner
Technical field
This utility model is related to air-conditioning technical field, in particular to a kind of ceiling type air conditioner end air guide structure and Air-conditioner.
Background technology
Split-type air conditioner is mainly wall hanging machine and cabinet-type air conditioner at present, for the split type sky using similar ceiling unit mounting means For tune, because type mount point is ceiling, therefore air supply mode is different from general wall hanging machine and cabinet-type air conditioner, but and ceiling mounting type Air-conditioning is similar to.General ceiling type air conditioner is four straight type air outlets, have between two neighboring air outlet dry dead angle so that The blowing of indoor section region cannot reach, and leads to indoor temperature distribution uneven, the use feeling of impact human body.
Utility model content
In view of this, the purpose of this utility model is to provide a kind of ceiling type air conditioner end air guide structure and air-conditioner, with Solve ceiling type air conditioner in prior art and there is between two neighboring air outlet blowing dead angle so that drying in indoor section region The problem that cannot reach.
For achieving the above object, according to one side of the present utility model, there is provided a kind of ceiling type air conditioner end wind-guiding Structure, including upper shell and lower house, forms the air outlet of 360 degree of circumferential air-out between upper shell and lower house.
Preferably, upper shell is provided with overhead gage, overhead gage extends obliquely along the air outlet edge of upper shell, upper gear Plate is slidably disposed on the upside of air outlet up and down.
Preferably, the downside of air outlet is slidably provided with lower baffle plate in the horizontal direction.
Preferably, lower house is internally provided with drip tray, and lower baffle plate is slidably arranged in water receiving tray bottom.
Preferably, upper shell have the first vertically arranged slide rail and the first drive mechanism, overhead gage is slideably positioned in On first slide rail, the first drive mechanism and overhead gage drive connection, drive overhead gage to slide up and down.
Preferably, the first drive mechanism includes the first driving gear being meshed and the first tooth bar, and the first driving gear sets Put on one of upper shell and overhead gage, the first tooth bar is arranged on upper shell and the another one of overhead gage.
Preferably, overhead gage includes at least two, circumferentially distributed along upper shell, the upper shell corresponding to each overhead gage Part is provided with the first drive mechanism and at least one first slide rail.
Preferably, each overhead gage independent control.
Preferably, water receiving tray bottom is provided with the second slide rail and second drive mechanism of horizontal direction extension, and lower baffle plate is slided Dynamic be arranged on the second slide rail, the second drive mechanism and lower baffle plate drive connection, drive lower baffle plate along the radial level of lower house Slide.
Preferably, lower baffle plate includes at least two, circumferentially disposed along drip tray, between each lower baffle plate and drip tray all It is provided with the second drive mechanism and at least one second slide rail.
Preferably, each lower baffle plate independent control.
Preferably, when overhead gage is moved downwardly to extreme position and lower baffle plate moves to extreme position, overhead gage laterally Matched closing air outlet with lower baffle plate.
Preferably, when lower baffle plate is in contraction state, the edge of adjacent lower baffle plate is stacked.
According to another aspect of the present utility model, there is provided a kind of air-conditioner, including ceiling type air conditioner end air guide structure, This ceiling type air conditioner end air guide structure is above-mentioned ceiling type air conditioner end air guide structure.
Apply ceiling type air conditioner end of the present utility model air guide structure, including upper shell and lower house, upper shell and under Form the air outlet of 360 degree of circumferential air-out between housing.By being provided with 360 degree of circumferential air-out between upper shell and lower house Air outlet, ceiling type air conditioner end can be made to realize 360 degree of circumference no dead angle annular airs so that the circumferential air-out of air-conditioning is not deposited In dead angle area, the air-out efficiency of air-conditioning can be improved so that air conditioning exhausting can more quickly and evenly be distributed indoors, carry High air-conditioning is to the regulation efficiency of indoor temperature and regulating effect.
Described above is only the general introduction of technical solutions of the utility model, in order to better understand skill of the present utility model Art means, and being practiced according to the content of description, below with preferred embodiment of the present utility model and coordinate accompanying drawing detailed Describe in detail bright as after.
Brief description
The accompanying drawing constituting a part of the present utility model is used for providing further understanding to of the present utility model, and this practicality is new The schematic description and description of type is used for explaining this utility model, does not constitute to improper restriction of the present utility model.? In accompanying drawing:
Fig. 1 is the sectional structure during air outlet closure of the ceiling type air conditioner end air guide structure of this utility model embodiment Schematic diagram;
Fig. 2 is that the ceiling type air conditioner end air guide structure of this utility model embodiment is in sectional structure when heating state Schematic diagram;
Fig. 3 is that the ceiling type air conditioner end air guide structure of this utility model embodiment is in sectional structure during refrigerating state Schematic diagram;
Fig. 4 is that the first of the lower baffle plate of ceiling type air conditioner end air guide structure of this utility model embodiment is slidably matched Structure chart;
Fig. 5 is that the second of the lower baffle plate of ceiling type air conditioner end air guide structure of this utility model embodiment is slidably matched Structure chart;
Fig. 6 is the mplifying structure schematic diagram at the q of Fig. 5;
Fig. 7 is the sliding matching structure of the overhead gage of ceiling type air conditioner end air guide structure of this utility model embodiment Figure.
Description of reference numerals: 1, upper shell;2nd, lower house;3rd, air outlet;4th, overhead gage;5th, lower baffle plate;6th, baffle liner;7、 First slide rail;8th, the first driving gear;9th, the first tooth bar;10th, the second slide rail;11st, the second driving gear;12nd, the second tooth bar; 13rd, drip tray.
Specific embodiment
For making the purpose of this utility model, technical scheme and advantage clearer, concrete below in conjunction with this utility model Embodiment and corresponding accompanying drawing are clearly and completely described to technical solutions of the utility model.Obviously, described embodiment It is only a part of embodiment of this utility model, rather than whole embodiments.Based on the embodiment in this utility model, this area The every other embodiment that those of ordinary skill is obtained under the premise of not making creative work, broadly falls into this utility model The scope of protection.
The in figure direction of arrow is air-flow direction.
In conjunction with referring to shown in Fig. 1 to Fig. 7, according to embodiment of the present utility model, ceiling type air conditioner end air guide structure bag Include upper shell 1 and lower house 2, between upper shell 1 and lower house 2, form the air outlet 3 of 360 degree of circumferential air-out.
By being provided with the air outlet of 360 degree of circumferential air-out between upper shell 1 and lower house 2, ceiling mounting type can be made empty Adjust end to realize 360 degree of circumference no dead angle annular air so that air-conditioning circumference air-out does not have dead angle area, air-conditioning can be improved Air-out efficiency so that air conditioning exhausting can more quickly and evenly be distributed indoors, improve the regulation to indoor temperature for the air-conditioning Efficiency and regulating effect.
In conjunction with shown in Figure 2 it is preferable that overhead gage 4 is provided with upper shell 1, overhead gage 4 is along the air-out of upper shell 1 Mouth 3 edges extend obliquely, and overhead gage is slidably disposed on the upside of air outlet 3 about 4.Overhead gage 4 upward sliding is supreme During extreme position, overhead gage 4 does not form impact to the air-out of air outlet 3, and air-out is along the guiding air-out of air outlet 3.When upper gear When plate 4 slides down to lower limit position, overhead gage 4 extends downwardly along the lower limb of upper shell 1, the air-out shape to air outlet 3 Become downward guide effect, in air conditioner heat-production, hot blast is under the guide effect of overhead gage 4 and lower house 2 from annular air At mouthfuls 3 vertical under blow, hot-air directly falls and earthward spreads afterwards, realizes blanket type and heats, and improves comfortableness when human body heats.
The first vertically arranged slide rail 7 and the first drive mechanism are had on upper shell 1, overhead gage 4 is slideably positioned in first On slide rail 7, the first drive mechanism and overhead gage 4 drive connection, drive overhead gage 4 to slide up and down.First slide rail 7 can be to upper gear Guide effect is played in the slip of plate 4, prevents overhead gage 4 from off normal occurring in sliding process, improves the standard of overhead gage 4 motor control Really property and reliability.The first slide rail herein can be the track being formed by guide rail, and the track alternatively being formed by guide groove also may be used To be replaced with the translation such as roller is secondary, as long as that can smoothly realize overhead gage 4 slides up and down displacement.
First drive mechanism includes the first driving gear 8 being meshed and the first tooth bar 9, and the first driving gear 8 is arranged on On one of upper shell 1 and overhead gage 4, the first tooth bar 9 is arranged on upper shell 1 and the another one of overhead gage 4.In this reality Apply in example, the first driving gear 8 is arranged on the lateral wall of upper shell 1, the first tooth bar 9 is fixedly installed on overhead gage 4, first Engagement, the first driving gear 8 and the first motor drive connection between driving gear 8 and the first tooth bar 9, drive by first Motor-driven rotation, drives the first tooth bar 9 to drive overhead gage 4 to slide up and down with respect to upper shell 1.The driving machine of this up and down motion Structure can also be crank mechanism, chute guiding driving mechanism or Worm and worm-wheel gearing etc..
Preferably, overhead gage 4 includes at least two, circumferentially distributed along upper shell 1, (preferably equal in the circumference of upper shell 1 Even distribution), each upper shell 1 part corresponding to overhead gage 4 is provided with the first drive mechanism and at least one first slide rail 7.In the present embodiment, each overhead gage 4 is provided with two slideways being parallel to each other, be adapted to the first slide rail 7 respectively it is ensured that Identical to the up and down motion guiding of overhead gage 4.Preferably, two slideways are separately positioned on the circumferential two ends of overhead gage 4, so as to Enough cooperate with two the first slide rails 7, the motion to overhead gage 4 forms more preferable constraint it is ensured that overhead gage 4 is along vertical side To sliding up and down.Preferably, the number of overhead gage 4 is four, corresponds respectively to the position all around of air outlet 3, this four The motion of overhead gage 4 can control it is also possible to independent operating by controller is same.When the equal independent operating of four overhead gages 4 When, the position of overhead gage 4 can be adjusted so that the air-out of air-conditioning is more diversified according to practical situation.
In conjunction with shown in Figure 3 it is preferable that the downside of air outlet 3 is slidably provided with lower baffle plate 5 in the horizontal direction. Lower baffle plate 5 extends laterally from the lower horizontal of air outlet 3, can extend the horizontal blast distance of air conditioning exhausting, be in air-conditioning During refrigerating state, round wind outlet level blowout that cold wind formed from air outlet 3 and lower baffle plate 5 can be made so that cold air Fall after spreading all over room top, realize shower type refrigeration so that temperature can be more equally distributed in interior, improve human body in sky Comfort level when modulating cold.
Overhead gage 4 and lower baffle plate 5 can only arrange one of them it is also possible to two kinds of baffle plates are respectively provided with, in the present embodiment, Overhead gage 4 and lower baffle plate 5 are respectively provided with, and match between the two and can close air-conditioner air outlet when air-conditioning is in off-mode 3.
Preferably, lower house 2 is internally provided with drip tray 13, and lower baffle plate 5 is slidably arranged in drip tray 13 bottom.Due to hanging The bottom of the drip tray 13 of top formula air-conditioning is generally horizontally disposed with, and therefore lower baffle plate 5 is slidably arranged on drip tray 13, can More easily realize protruding horizontally up or retracting of lower baffle plate 5, structure is simpler, and make lower baffle plate 5 and drip tray 13 Between sliding matching structure can also be simpler, reduce processing technique difficulty, reduce processing cost.Certainly, lower baffle plate 5 Can also be slidably arranged in other structures, the lower mounting seat bottom of such as heat exchanger or the top of lower house 2 etc..
Drip tray 13 bottom is provided with the second slide rail 10 and second drive mechanism of horizontal direction extension, and lower baffle plate 5 slides It is arranged on the second slide rail 10, the second drive mechanism and lower baffle plate 5 drive connection, drive lower baffle plate 5 along the radial water of baffle liner 6 Smooth dynamic.Second slide rail 10 can play guide effect to the slip of lower baffle plate 5, prevents lower baffle plate 5 from occurring in sliding process Off normal, improves accuracy and the reliability of lower baffle plate 5 motor control.The second slide rail 10 herein can be the rail being formed by guide rail Road, the track alternatively being formed by guide groove, can also be replaced with the translation such as roller is secondary, as long as lower baffle plate 5 can smoothly be realized Horizontal slide displacement.
Second drive mechanism includes the second driving gear 11 being meshed and the second tooth bar 12, and the second driving gear 11 is arranged On one of drip tray 13 and lower baffle plate 5, the second tooth bar 12 is arranged on the another one in drip tray 13 and lower baffle plate 5 On.In the present embodiment, the second driving gear 11 is arranged on the lateral wall of drip tray 13, and the second tooth bar 12 is fixedly installed on down On baffle plate 5, engage between the second driving gear 11 and the second tooth bar 12, the second driving gear 11 and the second motor drive even Connect, driven by the second motor and rotate, drive the second tooth bar 12 to drive lower baffle plate 5 to slide with respect to inside and outside lower house 2.Should The drive mechanism of horizontal movement can also be crank mechanism, chute guiding driving mechanism or Worm and worm-wheel gearing etc..
In the present embodiment, the bottom of drip tray 13 is additionally provided with mounting groove, is embedded with baffle liner 6, water conservancy diversion in mounting groove The bottom of circle 6 is flushed with the bottom of drip tray 13, to avoid the slip of lower baffle plate 5 being caused hinder.It should be noted that due to Baffle liner 6 is embedded at the mounting groove of drip tray 13 and the bottom of baffle liner 6 is flushed with the bottom of drip tray 13, therefore, lower baffle plate 5 The bottom being slidably arranged in drip tray 13 includes the situation that lower baffle plate 5 is slidably arranged in the bottom of baffle liner 6, also falls into this Bright protection domain.
Preferably, lower baffle plate 5 includes at least two, circumferentially distributed along drip tray 13, preferably along the circumference of drip tray 13 It is uniformly arranged, between each lower baffle plate 5 and drip tray 13, be provided with the second drive mechanism and at least one the second slide rail 10.? In the present embodiment, each lower baffle plate 5 is provided with two slideways being parallel to each other, is adapted to the second slide rail 10 respectively, two cunnings Road is separately positioned on the circumferential two ends of lower baffle plate 5 such that it is able to cooperate with two the second slide rails 10 respectively, to lower baffle plate 5 Motion form more preferable constraint it is ensured that lower baffle plate 5 slides along inside and outside horizontal direction.Preferably, the number of lower baffle plate 5 is four Individual, correspond respectively to the position all around of air outlet 3, the motion of this four lower baffle plates 5 can be by the same control of controller System is it is also possible to independent operating.When four lower baffle plate 5 equal independent operatings, according to practical situation, the position of lower baffle plate 5 can be entered Row is adjusted so that the air-out of air-conditioning is more diversified.
Preferably, when overhead gage 4 is moved downwardly to extreme position and lower baffle plate 5 moves to extreme position laterally, upper gear Plate 4 is matched with lower baffle plate 5 and closes air outlet 3.When air-conditioner works, if physical activity scope is detected, control the party Overhead gage 4 upwards and lower baffle plate 5 close, and prevent the air outlet of the direction, prevent air from directly blowing people and cause not relax Suitable.
In conjunction with shown in Figure 4, between multiple lower baffle plates 5 of this in figure when being in the position at the center of being contracted to, adjacent Two lower baffle plates 5 between edge flush, there is preferable cooperation.
In conjunction with shown in Figure 5, it is different from the structure of Fig. 4, is embodied in, when lower baffle plate 5 is in contraction state, phase Adjacent lower baffle plate 5 has spacing in vertical direction, and the edge of adjacent lower baffle plate 5 is stacked.Consequently, it is possible to can be effectively increased each Width between the air-supply of individual lower baffle plate 5, it is to avoid cause Lou due to there is gap between adjacent lower baffle plate 5 when lower baffle plate 5 stretches out Wind phenomenon.Preferably, when lower baffle plate 5 reaches extreme position, justified margin between adjacent lower baffle plate 5 such that it is able to Form more complete air-supply structure, improve air-supply efficiency.
According to embodiment of the present utility model, air-conditioner includes ceiling type air conditioner end air guide structure, this ceiling type air conditioner End air guide structure is above-mentioned ceiling type air conditioner end air guide structure.
It should be noted that in the case of not conflicting, the embodiment in this utility model and the feature in embodiment can To be mutually combined.
The above, be only preferred embodiment of the present utility model, not this utility model is made any formal Restriction, any simple modification, equivalent variations and modification above example made according to technical spirit of the present utility model, All still fall within the range of technical solutions of the utility model.

Claims (14)

1. a kind of ceiling type air conditioner end air guide structure is it is characterised in that include upper shell (1) and lower house (2), described upper casing Form the air outlet (3) of 360 degree of circumferential air-out between body (1) and described lower house (2).
2. ceiling type air conditioner end air guide structure according to claim 1 is it is characterised in that set on described upper shell (1) It is equipped with overhead gage (4), described overhead gage (4) extends obliquely along air outlet (3) edge of described upper shell (1), described upper gear Plate (4) is slidably disposed on the upside of described air outlet (3) up and down.
3. ceiling type air conditioner end air guide structure according to claim 2 is it is characterised in that under described air outlet (3) Side is slidably provided with lower baffle plate (5) in the horizontal direction.
4. ceiling type air conditioner end air guide structure according to claim 3 is it is characterised in that described lower house (2) is internal It is provided with drip tray (13), described lower baffle plate (5) is slidably arranged in described drip tray (13) bottom.
5. ceiling type air conditioner end air guide structure according to claim 2 is it is characterised in that described upper shell (1) above has There are vertically arranged the first slide rail (7) and the first drive mechanism, described overhead gage (4) is slideably positioned in described first slide rail (7) On, described first drive mechanism and described overhead gage (4) drive connection, drive described overhead gage (4) to slide up and down.
6. ceiling type air conditioner end air guide structure according to claim 5 is it is characterised in that described first drive mechanism bag Include the first driving gear (8) being meshed and the first tooth bar (9), described first driving gear (8) is arranged on described upper shell (1) With described overhead gage (4) on one of them, described first tooth bar (9) is arranged on described upper shell (1) and described overhead gage (4) In another one.
7. ceiling type air conditioner end air guide structure according to claim 5 is it is characterised in that described overhead gage (4) includes At least two, each described upper shell (1) part described overhead gage (4) corresponding to circumferentially distributed along described upper shell (1) It is provided with described first drive mechanism and at least one described first slide rail (7).
8. ceiling type air conditioner end air guide structure according to claim 7 is it is characterised in that each described overhead gage (4) is only Vertical control.
9. ceiling type air conditioner end air guide structure according to claim 4 is it is characterised in that described drip tray (13) bottom It is provided with the second slide rail (10) and second drive mechanism of horizontal direction extension, described lower baffle plate (5) is slideably positioned in described the On two slide rails (10), described second drive mechanism and described lower baffle plate (5) drive connection, drive described lower baffle plate (5) along described The radial level of lower house (2) slides.
10. ceiling type air conditioner end air guide structure according to claim 9 is it is characterised in that described lower baffle plate (5) includes At least two, circumferentially disposed along described drip tray (13), it is all provided between each described lower baffle plate (5) and described drip tray (13) It is equipped with described second drive mechanism and at least one described second slide rail (10).
11. ceiling type air conditioner end air guide structures according to claim 10 are it is characterised in that each described lower baffle plate (5) Independent control.
12. ceiling type air conditioner end air guide structures according to claim 3 it is characterised in that when described overhead gage (4) to Under move to extreme position and described lower baffle plate (5) moves to extreme position laterally, described overhead gage (4) and described lower baffle plate (5) match the described air outlet of closing (3).
13. ceiling type air conditioner end air guide structures according to claim 10 are it is characterised in that described lower baffle plate (5) place When contraction state, the edge of adjacent described lower baffle plate (5) is stacked.
A kind of 14. air-conditioners, including ceiling type air conditioner end air guide structure it is characterised in that described ceiling type air conditioner end is led Wind structure is the ceiling type air conditioner end air guide structure any one of claim 1 to 13.
CN201620878670.8U 2016-08-12 2016-08-12 Terminal wind -guiding structure of suspension type air conditioner and air conditioner Expired - Fee Related CN205897474U (en)

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Application Number Priority Date Filing Date Title
CN201620878670.8U CN205897474U (en) 2016-08-12 2016-08-12 Terminal wind -guiding structure of suspension type air conditioner and air conditioner

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Application Number Priority Date Filing Date Title
CN201620878670.8U CN205897474U (en) 2016-08-12 2016-08-12 Terminal wind -guiding structure of suspension type air conditioner and air conditioner

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106168406A (en) * 2016-08-12 2016-11-30 珠海格力电器股份有限公司 Ceiling type air conditioner end air guide structure and air-conditioner
WO2019107823A1 (en) * 2017-11-28 2019-06-06 삼성전자주식회사 Air conditioner

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106168406A (en) * 2016-08-12 2016-11-30 珠海格力电器股份有限公司 Ceiling type air conditioner end air guide structure and air-conditioner
WO2018028160A1 (en) * 2016-08-12 2018-02-15 珠海格力电器股份有限公司 Air flow guiding structure of overhead air conditioning terminal and air conditioner
CN106168406B (en) * 2016-08-12 2019-03-19 珠海格力电器股份有限公司 Ceiling type air conditioner end air guide structure and air conditioner
WO2019107823A1 (en) * 2017-11-28 2019-06-06 삼성전자주식회사 Air conditioner
US11635229B2 (en) 2017-11-28 2023-04-25 Samsung Electronics Co., Ltd. Air conditioner

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170118

Termination date: 20210812

CF01 Termination of patent right due to non-payment of annual fee