CN106287973A - The air-out control method of cabinet air-conditioner and cabinet air-conditioner - Google Patents

The air-out control method of cabinet air-conditioner and cabinet air-conditioner Download PDF

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Publication number
CN106287973A
CN106287973A CN201610793800.2A CN201610793800A CN106287973A CN 106287973 A CN106287973 A CN 106287973A CN 201610793800 A CN201610793800 A CN 201610793800A CN 106287973 A CN106287973 A CN 106287973A
Authority
CN
China
Prior art keywords
air
conditioner
housing
cabinet
outlet
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.)
Granted
Application number
CN201610793800.2A
Other languages
Chinese (zh)
Other versions
CN106287973B (en
Inventor
闫长林
陈良锐
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.)
Midea Group Co Ltd
Wuhu Meizhi Air Conditioning Equipment Co Ltd
Original Assignee
Midea Group Co Ltd
Wuhu Meizhi Air Conditioning Equipment Co Ltd
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 Midea Group Co Ltd, Wuhu Meizhi Air Conditioning Equipment Co Ltd filed Critical Midea Group Co Ltd
Priority to CN201610793800.2A priority Critical patent/CN106287973B/en
Publication of CN106287973A publication Critical patent/CN106287973A/en
Application granted granted Critical
Publication of CN106287973B publication Critical patent/CN106287973B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0011Indoor units, e.g. fan coil units characterised by air outlets
    • F24F1/0014Indoor units, e.g. fan coil units characterised by air outlets having two or more outlet openings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre
    • F24F13/1426Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means
    • F24F2013/1433Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means with electric motors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre
    • F24F13/1426Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means
    • F24F2013/1446Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means with gearings

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air-Flow Control Members (AREA)

Abstract

The present invention discloses the air-out control method of a kind of cabinet air-conditioner and cabinet air-conditioner, and wherein, described cabinet air-conditioner includes: housing, is formed with at least one air channel in this housing;Positive air exhausting structure, this positive air exhausting structure is located at described housing, and is had the first air outlet connected with air channel described in;And, top air-out structure, this top air-out structure is located at the upper end of described housing, and there is the second air outlet connected with air channel described in, this top air-out structure connects lifting structure, and this elevating mechanism is located at described housing, and connection has the first rotational structure, lifting structure drives top air-out structure to move up and down, and the first rotational structure drives rotating disk, lifting structure and top air-out structure to rotate relative to described housing.Technical solution of the present invention can expand the wind-out range of cabinet air-conditioner, enables the temperature of room air quickly and efficiently to reach the temperature value set, and realizes simply assembling structure, improves comfort.

Description

The air-out control method of cabinet air-conditioner and cabinet air-conditioner
Technical field
The present invention relates to air-conditioning technical field, particularly to the air-out controlling party of a kind of cabinet air-conditioner He this cabinet air-conditioner Method.
Background technology
Along with improving constantly of people's living standard, people are more and more higher to the requirement of air-conditioner.Existing air-conditioning cabinet Machine, the most only arranges an air outlet, but only arranges an air outlet, and air-out mode is the most single, it is impossible to meet outlet air surface The long-pending demand with air output, makes the temperature of room air cannot quickly and efficiently reach the temperature value set.To this end, some are empty Cabinet-type air conditioner is adjusted to be provided with liftable top air-out structure.But, the top air-out structure set by these cabinet air-conditioners rises the most only Fall, the scope of its air-out is limited to, and is generally had structure complexity, stability for controlling the lifting structure of top air-out structure The defects such as difference, thus affect the comfort of cabinet air-conditioner.
Summary of the invention
The main object of the present invention is to provide a kind of cabinet air-conditioner, it is intended to expands the wind-out range of cabinet air-conditioner, makes indoor The temperature of air can quickly and efficiently reach the temperature value set, and realizes simply assembling structure, improves use comfortable Degree.
For achieving the above object, the cabinet air-conditioner that the present invention proposes includes:
Housing, is formed with at least one air channel in this housing;
Positive air exhausting structure, this positive air exhausting structure is located at described housing, and is had the first air-out connected with air channel described in Mouthful;And,
Top air-out structure, this top air-out structure is located at the upper end of described housing, and is had connected with air channel described in Two air outlets, this top air-out structure connects has lifting structure, wherein:
Described lifting structure includes connecting portion, first connecting rod, second connecting rod and the first motor;
Described connecting portion is located at described top air-out structure, and one end of described first connecting rod is rotationally connected with described connecting portion, The other end of described first connecting rod is rotationally connected with one end of described second connecting rod, and the other end of described second connecting rod is sheathed on institute Stating the output shaft of the first motor, described housing is provided with rotating disk, and described first motor is fixedly arranged on described rotating disk, and drives described Top air-out structure moves up and down, and makes described second air outlet appear or be hidden in described housing;
Described rotating disk connects the first rotational structure, and this first rotational structure drives described rotating disk, described lifting knot Structure and described top air-out structure rotate relative to described housing.
Alternatively, described top air-out structure is provided with lamina tecti, and the center of described lamina tecti is convexly equipped with locating dowel, described fixed The end face of position post is formed with hole, location, and described rotating disk is provided with guide pillar, and described guide pillar inserts hole, described location.
Alternatively, described connecting portion is fixedly arranged on the lamina tecti of described top air-out structure.
Alternatively, described first rotational structure includes the second motor, the first gear and the second gear, described first gear Being sheathed on the output shaft of described second motor, described second gear is fixedly arranged on described rotating disk, and described second motor is fixed on institute Stating housing, described first gear engages with described second gear, drives described rotating disk to rotate relative to described housing.
Alternatively, the upper surface of described rotating disk is convexly equipped with set platform, and described first motor is inserted in described set platform.
Alternatively, the inwall of described housing is installed with multiple boss, and each described boss is provided with rotating mechanism, described rotation The outer rim of dish is connected with the plurality of rotating mechanism, so that described rotating disk is set up in described housing, and relative to described shell Body rotates.
Alternatively, being formed with an air channel in described housing, described positive air exhausting structure and top air-out structure are positioned at same air channel In;Or, it being formed with two air channels in described housing, described positive air exhausting structure connects with a wherein air channel, described top air-out structure Connect with another air channel.
Alternatively, described positive air exhausting structure includes the first outlet frame, and this first outlet frame has described first air outlet, institute Stating housing and be provided with the mouth of stepping down coordinated with described first air outlet, this first outlet frame connects the second rotational structure, and this is second years old Rotational structure drives described first outlet frame to rotate, and makes described first air outlet just to the described mouth or be hidden in described housing of stepping down In.
Alternatively, described first outlet frame has deep bead, this deep bead be bordered by described first air outlet arrange, described just When air exhausting structure is closed, described second rotational structure drives described first outlet frame to rotate and makes to step down described in the closure of described deep bead Mouthful.
Alternatively, described top air-out structure includes the second outlet frame, and this second outlet frame has described second air outlet, institute Stating lifting structure drives described second outlet frame to move up and down, and makes described second air outlet hide or manifest described housing.
The present invention also proposes the air-out control method of a kind of cabinet air-conditioner as above, including step:
Detect the temperature of environment for the first time;
When the temperature of environment is higher than predetermined threshold value, the first air outlet of positive air exhausting structure is made to open;
Second time detects the temperature of environment, when the temperature of environment is higher than predetermined threshold value, controls lifting structure rise and ejects Wind structure, and make the second air outlet of top air-out structure open, control the first rotational structure simultaneously and rotate top air-out structure.
Alternatively, after controlling the step that the first rotational structure rotates top air-out structure, also include:
Third time detects the temperature of environment, when the temperature of environment is less than predetermined threshold value, controls top air-out structure and stops turning Dynamic, and make the second air outlet of top air-out structure close, control lifting structure simultaneously and drive top air-out downward movement and hidden It is hidden in described housing.
Technical solution of the present invention is by arranging double air outlet so that cabinet air-conditioner is provided with three kinds of air-out modes, is available for using Family is according to temperature indoor under practical situation and area selection air-out mode rational, effective:
As under cryogenic conditions, normal mode of operation is only by positive air exhausting structure air-out.When indoor temperature being detected Time too high, top air-out structure can be opened, carry out air-out by positive air exhausting structure and top air-out structure, quickly to reduce indoor simultaneously Temperature.When detecting that indoor temperature is too low, positive air exhausting structure can be closed, only carry out air-out by top air-out structure.
So, the multiple air-out mode of cabinet air-conditioner can be realized, meet the demand of air-out area and air output, so that The temperature of room air can quickly and efficiently reach the temperature value pre-set.
Further, technical solution of the present invention, by arranging rotating disk and be connected first with rotating disk in housing Rotational structure, and the lifting structure being connected with top air-out structure is fixed on rotating disk, can need more rapidly user During regulation indoor air temperature, top air-out structure is risen and drives it to rotate relative to housing, it is achieved thereby that top air-out knot The rotation air-out of structure, expands the wind-out range of cabinet air-conditioner.Further, lifting structure uses motor connection lever transmission to coordinate and logical Crossing rotating disk and the first rotational structure, to be connected as one overall, on the one hand, Each part is simple, easy to operate, process stabilization and Reliably, facilitate lifting and the rotation of top air-out structure, can effectively reduce machinery loss of energy in dependency structure, improve air-conditioning cabinet The efficiency of machine.On the other hand, it is to avoid the labyrinth that the first rotational structure and lifting structure are fixing with top air-out structure respectively, The internal structure making cabinet air-conditioner more simplifies, compact and stable, thus simplified cabinet air-conditioner, added it stable Property and reliability, improve the comfort of cabinet air-conditioner.
Accompanying drawing explanation
In order to be illustrated more clearly that the embodiment of the present invention or technical scheme of the prior art, below will be to embodiment or existing In having technology to describe, the required accompanying drawing used is briefly described, it should be apparent that, the accompanying drawing in describing below is only this Some embodiments of invention, for those of ordinary skill in the art, on the premise of not paying creative work, it is also possible to Other accompanying drawing is obtained according to the structure shown in these accompanying drawings.
Fig. 1 is the structural representation of cabinet air-conditioner one embodiment of the present invention;
Fig. 2 is the explosive view of the part-structure of cabinet air-conditioner in Fig. 1;
Fig. 3 is the second outlet frame and the structure for amplifying schematic diagram of lifting structure in Fig. 2;
Fig. 4 is the structural representation at another visual angle of the second outlet frame in Fig. 3;
Fig. 5 is the assembling schematic diagram of guide pillar in Fig. 2, rotating disk and the first rotational structure;
Fig. 6 is the schematic flow sheet of air-out control method one embodiment of cabinet air-conditioner of the present invention.
Drawing reference numeral illustrates:
The realization of the object of the invention, functional characteristics and advantage will in conjunction with the embodiments, are described further referring to the drawings.
Detailed description of the invention
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is carried out clear, complete Describe, it is clear that described embodiment is only a part of embodiment of the present invention rather than whole embodiments wholely.Base Embodiment in the present invention, those of ordinary skill in the art obtained under not making creative work premise all its His embodiment, broadly falls into the scope of protection of the invention.
It is to be appreciated that directional instruction in the embodiment of the present invention (such as up, down, left, right, before and after ...) is only used In explaining relative position relation between each parts, motion conditions etc. under a certain particular pose (as shown in drawings), if should When particular pose changes, then directionality instruction changes the most therewith.
It addition, the description relating to " first ", " second " etc. in the present invention is only used for describing purpose, and it is not intended that refer to Show or imply its relative importance or the implicit quantity indicating indicated technical characteristic.Thus, define " first ", " Two " feature can express or implicitly include at least one this feature.It addition, the technical scheme between each embodiment can To be combined with each other, but must be based on those of ordinary skill in the art are capable of, when the combination of technical scheme occurs Conflicting will be understood that the combination of this technical scheme does not exists, the most not at the protection model of application claims when maybe cannot realize Within enclosing.
The present invention proposes a kind of cabinet air-conditioner 100.
Referring to Fig. 1 to Fig. 5, in cabinet air-conditioner 100 1 embodiment of the present invention, this cabinet air-conditioner 100 includes:
Housing 10, is formed with at least one air channel in this housing 10;Blower fan 70 and heat exchanger 90, this shell are installed in this air channel The lower end of body 10 is provided with the air inlet 17 connected with this air channel, and this air inlet 17 is arranged around described housing 10.
This air channel is mainly formed in the inside of housing 10, and extraneous air enters in air channel via air inlet 17, by blower fan 70 drive, and carry out heat exchange through heat exchanger 90, and air inlet 17, heat exchanger 90, blower fan 70 are arranged in order from the bottom to top, heat exchanger 90 Being fixed in housing 10 by installing rack 91, the lower end of heat exchanger 90 is provided with drip tray 80, is used for receiving condensed water, one As this drip tray 80 setting in the form of annular discs.
Positive air exhausting structure 20, this positive air exhausting structure 20 is located at housing 10, and is had the first air outlet connected with an air channel 22;And,
Top air-out structure 30, this top air-out structure 30 is located at the upper end of housing 10, and is had second connected with an air channel Air outlet 32, this top air-out structure 30 connects has lifting structure 40, wherein:
Lifting structure 40 includes connecting portion 41, first connecting rod 42, second connecting rod 43 and the first motor 44;
Connecting portion 41 is located at top air-out structure 30, the two ends of first connecting rod 42 respectively with connecting portion 41 and second connecting rod 43 One end is rotationally connected, and the other end of second connecting rod 43 is sheathed on the output shaft of the first motor 44, and housing 10 is provided with rotating disk 50, the One motor 44 is fixedly arranged on rotating disk 50, and drives top air-out structure 30 to move up and down;
Rotating disk 50 connects the first rotational structure 60, and this first rotational structure 60 drives lifting structure 40 relative to housing 10 rotate, and lifting structure 40 drives top air-out structure 30 to rotate relative to housing 10.
Specifically, an air channel, positive air exhausting structure 20 and top air-out structure 30 it are formed with in the housing 10 of cabinet air-conditioner 100 Being positioned at same air channel, accordingly, blower fan 70 is also equipped with one, and e.g., the two ends up and down of positive air exhausting structure 20 are communicated with wind The openings (sign) in road, extraneous air is entered by air inlet 17, drives via blower fan 70, through heat exchanger after 90s via under The openings of end enters in positive air exhausting structure 20, can blow out via the first air outlet 22 of this positive air exhausting structure 20.Meanwhile, Air after heat exchange via the openings of this positive air exhausting structure 20 upper end to top air-out structure 30, can be via top air-out structure 30 The second air outlet 32 blow out.In the case of an air channel, the overall structure of this cabinet air-conditioner 100 is simple, compact, and becomes This is relatively low.
Certainly, in other embodiments, this positive air exhausting structure 20 and top air-out structure 30 can be located at different air channels, housing Can be formed with two air channels in 10, positive air exhausting structure 20 connects with a wherein air channel, and top air-out structure 30 connects with another air channel, In the case of air channel is two, the blower fan 70 of this cabinet air-conditioner 100 can arrange one or two, i.e. can pass through a blower fan 70 Simultaneously drive air flowing in two air channels, it is also possible to be the corresponding blower fan 70 in each air channel.Situation in two air channels Under, the air output of the first air outlet 22 and the second air outlet 32 is easy to control with going out wind velocity, then the air of cabinet air-conditioner 100 is adjusted Energy-conservation power is higher.
Further, as it is shown on figure 3, the inwall of the top air-out structure 30 of cabinet air-conditioner 100 is convexly equipped with downwards connecting portion 41, connect Portion 41 offers the first through hole 411, and the axis horizontal of the first through hole 411 is arranged.One end of first connecting rod 42 is convexly equipped with and first The first articulated section 421 that through hole 411 matches, the first articulated section 421 inserts the first through hole 411, with realize first connecting rod 42 with Being rotationally connected of connecting portion 41 so that first connecting rod 42 can rotate around the first articulated section 421, and its movement locus is positioned at vertical plane In.
The other end of first connecting rod 42 offers the second through hole 422, parallel first through hole 411 of axis of the second through hole 422 Axis arrange.One end of second connecting rod 43 is convexly equipped with the second articulated section 431 matched with the second through hole 422, and second is hinged Portion 431 inserts the second through hole 422, to realize being rotationally connected of second connecting rod 43 and first connecting rod 42 so that second connecting rod 43 can Rotate around the second articulated section 431, and its movement locus is also positioned at vertical plane.
The other end of second connecting rod 43 is sheathed on the output shaft of the first motor 44, and the output shaft of the first motor 44 is the most parallel The axis of the first through hole 411 is arranged, and thus, when the first motor 44 runs, the rotation of its output shaft enables to second connecting rod The end away from the first motor 44 of 43 produces displacement, the displacement of the end away from the first motor 44 of second connecting rod 43 and then can Driving first connecting rod 42 to move, the motion of first connecting rod 42 can drive the connecting portion hinged with first connecting rod 42 end then 41 motions, finally make the top air-out structure 30 being fixed with connecting portion 41 complete motion up or down, i.e. achieve and eject The elevating function of wind structure 30.
It should be noted that in the present embodiment, be additionally provided with a rotating disk 50 (ginseng in the housing 10 of this cabinet air-conditioner 100 Fig. 2), the first motor 44 is fixed on the upper surface of this rotating disk 50, thus, can play a supporting role above-mentioned lifting structure 40, Improve the stability of lifting structure 40.Further, the lower surface of this rotating disk 50 is also associated with the first rotational structure 60, this first rotation Rotation structure 60 can drive rotating disk 50 to rotate relative to housing 10, and the rotation of rotating disk 50 then can drive and be fixedly arranged on its upper surface Lifting structure 40 rotate relative to housing 10, the rotation of lifting structure 40 and then top air-out structure 30 can be driven relative to housing 10 rotate, hereby it is achieved that the spinfunction of top air-out structure 30.Specifically, top air-out structure 30 is driven when lifting structure 40 When being exposed to housing 10, top air-out structure 30 also can rotate relative to housing 10, it is achieved that the multi-angle of top air-out structure 30 goes out Wind.
Further, in the present embodiment, for being further ensured that the elevating function of top air-out structure 30, above-mentioned lifting structure 40 is arranged There are two sets.Two set lifting structure 40 synergism, cooperate, jointly realize the elevating function of top air-out structure 30, have steady Qualitative higher, lift the advantages such as in hgher efficiency.
Technical solution of the present invention is by arranging double air outlet so that cabinet air-conditioner 100 is provided with three kinds of air-out modes, is available for User is according to temperature indoor under practical situation and area selection air-out mode rational, effective:
As under cryogenic conditions, normal mode of operation is only by the air-out of positive air exhausting structure 20.When Indoor Temperature being detected When spending high, top air-out structure 30 can be opened, carry out air-out, with quickly by positive air exhausting structure 20 and top air-out structure 30 simultaneously Reduce indoor temperature.When detecting that indoor temperature is too low, positive air exhausting structure 20 can be closed, only be carried out by top air-out structure 30 Air-out.
So, the multiple air-out mode of cabinet air-conditioner 100 can be realized, meet the demand of air-out area and air output, thus The temperature making room air can quickly and efficiently reach the temperature value pre-set.
Further, technical solution of the present invention, by arranging rotating disk 50 and being connected with rotating disk 50 in housing 10 The first rotational structure 60, and the lifting structure 40 being connected with top air-out structure 30 is fixed on rotating disk 50, can be user When needing more to rapidly adjust indoor air temperature, top air-out structure 30 is risen and drives it to rotate relative to housing 10, It is achieved thereby that the rotation air-out of top air-out structure 30, expand the wind-out range of cabinet air-conditioner 100.Further, lifting structure 40 Use motor connection lever transmission to coordinate and be connected as an entirety by rotating disk 50 and the first rotational structure 60, on the one hand, each several part Simple in construction, easy to operate, process stabilization and reliable, facilitate lifting and the rotation of top air-out structure 30, can effectively reduce phase Close machinery loss of energy in structure, improve the efficiency of cabinet air-conditioner 100.On the other hand, it is to avoid first rotational structure 60 and rising The labyrinth that fall structure 40 is fixed with top air-out structure 30 respectively, makes the internal structure of cabinet air-conditioner 100 more simplify, tightly Gather and stable, thus simplified cabinet air-conditioner 100, add its operation stability and reliability, improve cabinet air-conditioner 100 Comfort.
It addition, such structure is arranged, top air-out structure 30 can be prevented effectively from and easily amass because being revealed in housing 10 for a long time Tiring out dust and affect its air-out quality and the problem of normal operation, also can be prevented effectively from its situation suffering accidental damage occurs, Further, the most more attractive.
Additionally, the turning of the form that is rotationally connected of first connecting rod 42 and connecting portion 41 and first connecting rod 42 and second connecting rod 43 Be dynamically connected form, is not limited solely to above-mentioned form, and its concrete structure can make the appropriate adjustments according to practical situation, at this not Repeat the most one by one.
Referring to Fig. 4, it is preferable that top air-out structure 30 is provided with lamina tecti 311, the center projection of lamina tecti 311 Having locating dowel 3111, the end face of locating dowel 3111 to be formed with hole 3112, location, rotating disk 50 is provided with guide pillar 51, and guide pillar 51 inserts fixed Hole 3112, position.
In the present embodiment, guide pillar 51 can be completely accommodated in the hole, location 3112 of locating dowel 3111, and with top air-out structure The landing of 30 moves back and forth in hole 3112, location.Specifically,
When top air-out structure 30 is driven by lifting structure 40 and is gradually increasing, guide pillar 51 is with the rising of top air-out structure 30 And slowly detach hole 3112, location;When top air-out structure 30 rises completely, guide pillar 51 only end remaines in hole 3112, location.
When top air-out structure 30 is driven by lifting structure 40 and is gradually reduced, guide pillar 51 is with the decline of top air-out structure 30 And slowly insert hole 3112, location;When top air-out structure 30 is landed completely, guide pillar 51 is also completely accommodated in hole 3112, location.
It should be understood that such structure arrange, the up and down motion of top air-out structure 30 can be played auxiliary and location Effect, so that the lifting of top air-out structure 30 is more steady.
Preferably, connecting portion 41 is located at the lamina tecti 311 of top air-out structure 30.
In the present embodiment, connecting portion 41 is convexly equipped in the lamina tecti 311 of top air-out structure 30, and lifting structure 40 directly acts on The lamina tecti 311 of top air-out structure 30, drives top air-out structure 30 to move up and down by lamina tecti 311, and such setting can make Obtain the application point of lifting structure 40 with the center of gravity of top air-out structure 30 more closely, i.e. make to hinder top air-out structure 30 motion Resistance arm is less, thus, it is possible to decrease the load of the first motor 44, reduces the energy consumption of cabinet air-conditioner 100, the most also can improve lifting Structure 40 and the fitment stability of top air-out structure 30, improve the lifting stationarity of top air-out structure 30.
Referring to Fig. 5, the first rotational structure 60 includes the second motor the 61, first gear 62 and the second gear 63, the One gear 62 is sheathed on the output shaft of the second motor 61, and the second gear 63 is fixedly arranged on rotating disk 50, and the second motor 61 is fixed on shell Body 10, the first gear 62 engages with the second gear 63, drives rotating disk 50 to rotate relative to housing 10.
In the present embodiment, the second gear 63 is fixedly arranged on the lower surface center of rotating disk 50, and the second motor 61 is fixed on shell The inwall of body 10 also stretches to the lower surface center of rotating disk 50, so that the first gear 62 engages, then with the second gear 63 Drive rotating disk 50 to rotate relative to housing 10, thus utilize the rotation of rotating disk 50 to drive lifting structure 40 to revolve relative to housing 10 Turn, and then drive top air-out structure 30 to rotate relative to housing 10.Thus, the multi-angle rotary that can realize top air-out structure 30 goes out Wind, and structure arrange simple, reasonable and effectively.
Preferably, rotating disk 50 is convexly equipped with set platform (not shown), and the first motor 44 is inserted in set platform, so, can effectively carry High first motor 44 and the connective stability of rotating disk 50.
Thus, the most only elevating function of lifting structure 40 provides firm structure guarantee, but also enables to make More steady for rotating the rotation of the lifting structure 40 of transmission intermediate, and then the lifting of effective guarantee top air-out structure 30 and rotation Rotating function, meanwhile, such setting also can effectively reduce the load of the second motor 61, reduces the energy consumption of cabinet air-conditioner 100.
Preferably, the inwall of housing 10 is installed with multiple boss (not shown), and each boss is provided with rotating mechanism (does not schemes Show), the outer rim of rotating disk 50 is connected with multiple rotating mechanisms, so that rotating disk 50 is set up in housing 10, and relative to housing 10 rotate.
In the present embodiment, the multiple boss in housing 10 are positioned at same level height, rotating disk 50 can play support and make With, improve the rotational stabilization of rotating disk 50, and, multiple rotating mechanisms can effectively reduce in rotating disk 50 rotation process Resistance, and then reduce the load of the second motor 61, improve the efficiency of cabinet air-conditioner 100.
It should be understood that above-mentioned rotating mechanism can be ball and ball grooves with matching, it is also possible to be roller and Roller groove with matching, can also be some other rational structure.
It should be noted that an air channel, positive air exhausting structure 20 He can be formed in the housing 10 of cabinet air-conditioner 100 of the present invention Top air-out structure 30 is positioned at same air channel, and so, positive air exhausting structure 20 and top air-out structure 30 all can be obtained by same air channel Sufficient air quantity, housing 10 inner structure is arranged simply, space utilization is more efficient.
Certainly, also can be formed with two air channels in housing 10, positive air exhausting structure 20 connects with a wherein air channel, top air-out structure 30 connect with another air channel, so, can effectively reduce interfering between two air channels so that the air stream in each air channel Speed, air flow and air capacity all reach perfect condition, thus ensure that positive air exhausting structure 20 is the most relative with top air-out structure 30 Independent and effective air-out ability, finally makes the multiple air-out mode of cabinet air-conditioner 100 all can reach the air-out shape of excellence State.
Preferably, positive air exhausting structure 20 includes the first outlet frame 21, and this first outlet frame 21 has the first air outlet 22, shell Body 10 is provided with the mouth 11 of stepping down coordinated with the first air outlet 22, and this first outlet frame 21 connects has the second rotational structure (not scheme Show), this second rotational structure drives the first outlet frame 21 to rotate, and makes the first air outlet 22 just to stepping down mouth 11 or be hidden in housing In 10.
In actual application, when positive air exhausting structure 20 closed by needs, the second rotational structure can drive the first air-out Frame 21 rotates so that the first air outlet 22 is hidden in housing 10;And when positive air exhausting structure 20 opened by needs, the second rotational structure The first outlet frame 21 is driven to rotate again so that the first air outlet 22 is just to mouth 11 (being i.e. revealed in housing 10) of stepping down.
Thus it is possible, on the one hand, cabinet air-conditioner 100 sealing of housing 10 when positive air exhausting structure 20 is closed can be improved, make top The air-out ability of air exhausting structure 30 is interference-free, thus ensures the normal work of top air-out structure 30, reduces cabinet air-conditioner 100 Operating power consumption;On the other hand, ash is accumulated because being exposed to for a long time in air when positive air exhausting structure 20 also can be avoided to quit work Dirt, improve its normally-open time air-out quality.
Preferably, the first outlet frame 21 has deep bead (sign), and this deep bead is bordered by the first air outlet 22 and arranges, just When air exhausting structure 20 is closed, the second rotational structure drives the first outlet frame 21 to rotate, and makes deep bead block mouth 11 of stepping down.
Referring to Fig. 3, top air-out structure 30 includes the second outlet frame, and this second outlet frame has the second air outlet 32, the second outlet frame connects lifting structure 40, and this lifting structure 40 drives the second outlet frame to move up and down, and makes the second air outlet 32 hide or manifest housing 10.
Preferably, the second outlet frame includes the side that the lamina tecti 311 of circle and the periphery from lamina tecti 311 downwardly extend Plate, side plate offers the second air outlet 32.
In actual application, when top air-out structure 30 closed by needs, lifting structure 40 can drive under the second outlet frame Fall so that the second air outlet 32 is hidden in housing 10;When top air-out structure 30 opened by needs, lifting structure 40 can drive second Outlet frame rises so that the second air outlet 32 is revealed in housing 10.
Preferably, the second air outlet 32 is additionally provided with the second horizontal wind deflector, and this second horizontal wind deflector connects this and second goes out The both sides in air port 32, and swing in above-below direction, to adjust the air outlet angle of described second air outlet 32.
Further, this second air outlet 32 is additionally provided with second longitudinal stator, and this second longitudinal stator is laterally led with described second Aerofoil forms air outlet grate.So, top air-out structure 30 can be made more complete, air-out performance is more excellent, to meet people Use demand.
Referring to Fig. 6, the present invention also proposes the air-out control method of a kind of above-mentioned cabinet air-conditioner, including:
Step S10, detects the temperature of environment for the first time.
Step S20, when the temperature of environment is higher than predetermined threshold value, makes the first air outlet of positive air exhausting structure open.
Specifically, for the first time after detection, when the temperature of environment is higher than predetermined threshold value, control system controls the second rotation knot Structure drives the first outlet frame to rotate so that the first air outlet is just to mouth of stepping down, and the first air outlet controlling positive air exhausting structure is opened Open, start air-out, carry out the regulation of ambient temperature.
Step S30, second time detects the temperature of environment, when the temperature of environment is higher than predetermined threshold value, controls lifting structure Rise top air-out structure, and make the second air outlet of top air-out structure open, control the first rotational structure simultaneously and rotate top air-out Structure.
Specifically, after second time detection, when the temperature of environment is higher than predetermined threshold value, control system controls lifting structure top Going out top air-out structure, make the second air outlet be revealed in housing, the air outlet simultaneously controlling top air-out structure is opened.Afterwards, control System controls the first rotational structure and drives rotating disk to rotate, and the lifting structure being fixed on rotating disk starts to rotate immediately, is connected to The top air-out structure of lifting structure also starts to rotate.Now, top air-out structure and positive air exhausting structure operate simultaneously, and cabinet air-conditioner is same Time rely on top air-out structure and positive air exhausting structure to carry out the regulation of ambient temperature.
Step S40, third time detects the temperature of environment, when the temperature of environment is less than predetermined threshold value, controls top air-out knot Structure stops operating, and makes the second air outlet of top air-out structure close, and controls lifting structure simultaneously and drives top air-out structure downward Move and be hidden in described housing.
Specifically, after third time detection, when the temperature of environment is less than predetermined threshold value, control system controls the first rotation knot Structure stops the driving to rotating disk, and the lifting structure being fixed on rotating disk stops operating immediately, is connected to ejecting of lifting structure Wind structure also stops operating.Afterwards, control system controls the air outlet of top air-out structure and closes, and controls lifting structure simultaneously and drives Top air-out downward movement and be hidden in described housing.Now, top air-out structure decommissions, and cabinet air-conditioner relies on positive air-out Structure carries out the regulation of ambient temperature.
It should be understood that the air-out control method of above-mentioned cabinet air-conditioner, the ambient temperature in different time sections can be obtained, and According to the comparative result of acquired ambient temperature Yu predetermined threshold value, the air-out that cabinet air-conditioner carries out different mode controls, from And make the temperature of environment can quickly and efficiently reach the temperature value pre-set.
The foregoing is only the preferred embodiments of the present invention, not thereby limit the scope of the claims of the present invention, every at this Under the inventive concept of invention, utilize the equivalent structure transformation that description of the invention and accompanying drawing content are made, or directly/indirectly use The technical field relevant at other is included in the scope of patent protection of the present invention.

Claims (12)

1. a cabinet air-conditioner, it is characterised in that described cabinet air-conditioner includes:
Housing, is formed with at least one air channel in this housing;
Positive air exhausting structure, this positive air exhausting structure is located at described housing, and is had the first air outlet connected with air channel described in;With And,
Top air-out structure, this top air-out structure is located at the upper end of described housing, and has second connected with air channel described in and go out Air port, this top air-out structure connects has lifting structure, wherein:
Described lifting structure includes connecting portion, first connecting rod, second connecting rod and the first motor;
Described connecting portion is located at described top air-out structure, and one end of described first connecting rod is rotationally connected with described connecting portion, described The other end of first connecting rod is rotationally connected with one end of described second connecting rod, and the other end of described second connecting rod is sheathed on described The output shaft of one motor, described housing is provided with rotating disk, and described first motor is fixedly arranged on described rotating disk, and ejects described in driving Wind structure moves up and down, and makes described second air outlet appear or be hidden in described housing;
Described rotating disk connect have the first rotational structure, this first rotational structure drive described rotating disk, described lifting structure and Described top air-out structure rotates relative to described housing.
2. cabinet air-conditioner as claimed in claim 1, it is characterised in that described top air-out structure is provided with lamina tecti, described top cover The center of plate is convexly equipped with locating dowel, the end face of described locating dowel be formed location hole, described rotating disk is provided with guide pillar, described in lead Post inserts hole, described location.
3. cabinet air-conditioner as claimed in claim 2, it is characterised in that described connecting portion is fixedly arranged on the top of described top air-out structure Cover plate.
4. cabinet air-conditioner as claimed in claim 1, it is characterised in that described first rotational structure include the second motor, first Gear and the second gear, described first geared sleeve is located at the output shaft of described second motor, and described second gear is fixedly arranged on described Rotating disk, described second motor is fixed on described housing, and described first gear engages with described second gear, drives described rotation Dish rotates relative to described housing.
5. the cabinet air-conditioner as described in claim 1 or 4, it is characterised in that the upper surface of described rotating disk is convexly equipped with set platform, institute State the first motor and be inserted in described set platform.
6. cabinet air-conditioner as claimed in claim 1 or 2, it is characterised in that the inwall of described housing is installed with multiple boss, often Boss described in one is provided with rotating mechanism, and the outer rim of described rotating disk is connected with the plurality of rotating mechanism, so that described rotating disk It is set up in described housing, and rotates relative to described housing.
7. cabinet air-conditioner as claimed in claim 1, it is characterised in that be formed with an air channel, described positive air-out in described housing Structure and top air-out structure are positioned at same air channel;Or, be formed with two air channels in described housing, described positive air exhausting structure and its In one air channel connection, described top air-out structure connects with another air channel.
8. cabinet air-conditioner as claimed in claim 1, it is characterised in that described positive air exhausting structure includes the first outlet frame, this is the years old One outlet frame has described first air outlet, and described housing is provided with the mouth of stepping down coordinated with described first air outlet, and this first goes out Wind frame connects the second rotational structure, and this second rotational structure drives described first outlet frame to rotate, and makes described first air outlet Just to the described mouth or be hidden in described housing of stepping down.
9. cabinet air-conditioner as claimed in claim 8, it is characterised in that described first outlet frame has deep bead, this deep bead Being bordered by described first air outlet to arrange, when described positive air exhausting structure is closed, described second rotational structure drives described first air-out Frame rotates the mouth that makes to step down described in the closure of described deep bead.
10. the cabinet air-conditioner as described in claim 1 or 3, it is characterised in that described top air-out structure includes the second outlet frame, This second outlet frame has described second air outlet, and described lifting structure drives described second outlet frame to move up and down, and makes described Second air outlet is hidden or manifests described housing.
The air-out control method of 11. cabinet air-conditioners as described in any one of claim 1-10, it is characterised in that include step Rapid:
Detect the temperature of environment for the first time;
When the temperature of environment is higher than predetermined threshold value, the first air outlet of positive air exhausting structure is made to open;
Second time detects the temperature of environment, when the temperature of environment is higher than predetermined threshold value, controls lifting structure and rises top air-out knot Structure, and make the second air outlet of top air-out structure open, control the first rotational structure simultaneously and rotate top air-out structure.
The air-out control method of 12. cabinet air-conditioners as claimed in claim 11, it is characterised in that control the first rotational structure rotation After turning the step of top air-out structure, also include:
Third time detects the temperature of environment, when the temperature of environment is less than predetermined threshold value, controls top air-out structure and stops operating, and The second air outlet making top air-out structure is closed, and controls lifting structure simultaneously and drives top air-out downward movement to be hidden in institute State housing.
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