CN106907845A - The air-out control method of top air-out structure, cabinet air-conditioner, air-conditioner and air-conditioner - Google Patents

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

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Publication number
CN106907845A
CN106907845A CN201710080456.7A CN201710080456A CN106907845A CN 106907845 A CN106907845 A CN 106907845A CN 201710080456 A CN201710080456 A CN 201710080456A CN 106907845 A CN106907845 A CN 106907845A
Authority
CN
China
Prior art keywords
air
top air
installing plate
conditioner
housing
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
CN201710080456.7A
Other languages
Chinese (zh)
Other versions
CN106907845B (en
Inventor
袁宏亮
陈良锐
闫长林
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
GD Midea Air Conditioning Equipment Co Ltd
Original Assignee
Midea Group Co Ltd
Guangdong Midea Refrigeration 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, Guangdong Midea Refrigeration Equipment Co Ltd filed Critical Midea Group Co Ltd
Priority to CN201710080456.7A priority Critical patent/CN106907845B/en
Publication of CN106907845A publication Critical patent/CN106907845A/en
Application granted granted Critical
Publication of CN106907845B publication Critical patent/CN106907845B/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
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • F24F13/06Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/10Temperature

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

Abstract

The present invention discloses the air-out control method of a kind of top air-out structure, cabinet air-conditioner, air-conditioner and air-conditioner, wherein, top air-out structure includes:Top air-out housing, top air-out housing is connected with the air channel of cabinet air-conditioner, and offers the ejection air port connected with air channel;And top air-out rotational structure, including actuator and rotatable positioning member, rotatable positioning member includes installation portion, rotation section and supporting part, installation portion is fixedly connected on actuator, rotary part is rotated with one end of the installation portion and is connected in rotation centerline, and one end of rotation section, and the other end is connected with supporting part, supporting part is fixedly connected with the end of top air-out housing, and actuator drives top air-out housing and supporting part to be rotated along the rotation centerline of rotation section.Technical solution of the present invention can reduce the rotary driving force of the top air-out structure, its rotation is more stablized.

Description

The air-out control method of top air-out structure, cabinet air-conditioner, air-conditioner and air-conditioner
Technical field
The present invention relates to air-conditioning device technical field, more particularly to a kind of top air-out structure, cabinet air-conditioner, air-conditioner and The air-out control method of air-conditioner.
Background technology
With the improvement of people ' s living standards, requirement more and more higher of the people to air-conditioner.In order that the top of air-conditioner Air-out, and air outlet angle can be adjusted, one rotatable top air-out structure can be set in the upper end of cabinet air-conditioner.In air-conditioning It is general directly to drive the top air-out housing of top air-out structure to be rotated using motor when the top air-out structure of cabinet-type air conditioner rotates, should Top air-out housing easily produces rotating deviation during rotation, that is, top air-out housing can not be carried out along rotation centerline Rotation, so that top air-out shell produces friction with the miscellaneous part in rotating mechanism, increases the driving power of motor, while The rotation of the top air-out structure is also unstable.
The content of the invention
The main object of the present invention is to provide a kind of top air-out structure, it is intended to reduce the rotation driving of the top air-out structure Power, makes its rotation more stablize.
To achieve the above object, top air-out structure proposed by the present invention, is installed on the upper end of cabinet air-conditioner, the top air-out knot Structure includes:
Top air-out housing, the top air-out housing is connected with the air channel of cabinet air-conditioner, and offers what is connected with the air channel Ejection air port;And
Top air-out rotational structure, the top air-out rotational structure includes actuator and rotatable positioning member, the rotatable positioning member bag Installation portion, rotation section and supporting part are included, the installation portion is fixedly connected on the actuator, and the rotary part is in rotation Heart line, and one end of the rotation section and the installation portion rotate and be connected, the other end is connected with the supporting part, the supporting part and institute The end for stating top air-out housing is fixedly connected, and the actuator drives the top air-out housing and supporting part along the rotation of the rotation section Turn center line rotation.
Alternatively, the supporting part includes:
First installing plate, first installing plate is connected with the rotation section;
Locating ring, the locating ring are fixedly connected with the lower end of the top air-out housing, and are fixedly connected with the actuator; And
Connecting rod, one end of the connecting rod is connected with first installing plate, and the other end is connected with locating ring.
Alternatively, the quantity of the connecting rod is multiple, and multiple head rod intervals are connected to first installing plate Circumference, and radially set.
Alternatively, the rotation section includes:
Second installing plate, second installing plate is fixedly connected with the first installing plate;And
Rotary shaft, one end of the rotary shaft is connected to second installing plate, and the other end is rotationally connected with the installation portion.
Alternatively, one of first installing plate and the second installing plate are provided with location hole, first installing plate Wherein another with the second installing plate is provided with locating dowel, and the locating dowel is inserted into the location hole, and described first is installed Plate is fixedly connected with the second installing plate.
Alternatively, the quantity of the locating dowel and location hole is multiple, and a locating dowel is inserted into a location hole, Duo Gesuo Circumferentially-spaced arrangement of the locating dowel along first installing plate or the second installing plate is stated, multiple location holes are along the described second peace The circumferentially-spaced arrangement of dress plate or the first installing plate.
Alternatively, second installing plate is provided with centre bore, and at least two reinforcements being radially arranged are provided with the centre bore Muscle, the rotary shaft is located at the intersection of reinforcement described in two.
Alternatively, the actuator includes rotary electric machine and rotational structure, and the rotational structure includes framework and the company of rotation Be connected to the gear ring of the framework, the end of the top air-out housing is located between the supporting part and gear ring, and with the supporting part with Gear ring is fixedly connected, and the framework is connected with the upper end of cabinet air-conditioner, and the rotary electric machine is installed on the framework, and drives institute Ring gear against rotation is stated, the supporting part and the rotation of top air-out housing is driven.
Alternatively, the top air-out housing includes:
Top air-out shell, the top air-out shell is connected with the air channel of the cabinet air-conditioner;
Top air-out inner casing, the top air-out inner casing is provided with ejection air port, and the top air-out inner shell sections are placed in the top air-out Shell, the ejection air port manifests the top air-out shell;
The top air-out structure also includes:
First rotational structure, first rotational structure is connected with the top air-out inner casing, drives shell phase in the top air-out Rotated for the top air-out shell, to drive the ejection air port to swing up and down.
Alternatively, the top air-out inner casing includes top cover and is connected to the side plate of the top cover lower surface, the side plate ring The top cover is around in, is enclosed with the top cover and is set to form appearance wind chamber, the inwall of the outer surface of the side plate and the top air-out shell Abut, the ejection air port is opened in the side plate.
Alternatively, the side plate has spherical structure.
Alternatively, the top air-out structure also includes the deep bead in the top air-out inner casing, deep bead connection There is the second rotational structure, second rotational structure drives deep bead the rotating in a circumferential direction along the top air-out inner casing, by institute State the closure of ejection air port or open.
The present invention also proposes a kind of cabinet air-conditioner, including:Housing, is formed with an at least air channel in the housing;
Positive air exhausting structure, the positive air exhausting structure is located at the housing, and with the positive air outlet connected with air channel described in; And
Top air-out structure, including:Top air-out housing, the top air-out housing is connected with the air channel of cabinet air-conditioner, and is offered The ejection air port connected with the air channel;And
Top air-out rotational structure, the top air-out rotational structure includes actuator and rotatable positioning member, the rotatable positioning member bag Installation portion, rotation section and supporting part are included, the installation portion is fixedly connected on the actuator, and the rotary part is in rotation Heart line, and one end of the rotation section and the installation portion rotate and be connected, the other end is connected with the supporting part, the supporting part and institute The end for stating top air-out housing is fixedly connected, and the actuator drives the top air-out housing and supporting part along the rotation of the rotation section Turn center line rotation.
The present invention also proposes a kind of air-conditioner, including cabinet air-conditioner and the outdoor unit that is connected with the cabinet air-conditioner, the sky Adjusting cabinet-type air conditioner includes:Housing, is formed with an at least air channel in the housing;Positive air exhausting structure, the positive air exhausting structure is located at the housing, And with the positive air outlet connected with air channel described in;And top air-out structure, including:Top air-out housing, the top air-out housing Connected with the air channel of cabinet air-conditioner, and offer the ejection air port connected with the air channel;And
Top air-out rotational structure, the top air-out rotational structure includes actuator and rotatable positioning member, the rotatable positioning member bag Installation portion, rotation section and supporting part are included, the installation portion is fixedly connected on the actuator, and the rotary part is in rotation Heart line, and one end of the rotation section and the installation portion rotate and be connected, the other end is connected with the supporting part, the supporting part and institute The end for stating top air-out housing is fixedly connected, and the actuator drives the top air-out housing and supporting part along the rotation of the rotation section Turn center line rotation.
The present invention also provides a kind of air-out control method of air-conditioner, including:
The temperature of environment is detected for the first time;
When the temperature of environment is higher than predetermined threshold value, open the positive air outlet of positive air exhausting structure;
The temperature for detecting environment second, when the temperature of environment is higher than predetermined threshold value, opens ejection air port.
Technical solution of the present invention drives top air-out housing to turn along the circumferential direction of cabinet air-conditioner by top air-out rotational structure It is dynamic, to adjust ejection air port in circumferential air outlet angle.By setting a rotatable positioning member, its installation portion is fixed with actuator and connected Connect, then supporting part is fixed on the end of top air-out housing, drive top air-out housing together along the rotation centerline of rotation section Rotated in a circumferential direction.Because rotary part is in rotation centerline, therefore the top air-out housing will not during circumferentially rotatable Deviate rotation centerline, so as to avoid the collision of top air-out shell and miscellaneous part, and then reduce top air-out rotational structure Driving force, and cause that the rotation of top air-out shell is more stablized.
Brief description of the drawings
In order to illustrate more clearly about the embodiment of the present invention or technical scheme of the prior art, below will be to embodiment or existing The accompanying drawing to be used needed for having technology description is briefly described, it should be apparent that, drawings in the following description are only this Some embodiments of invention, for those of ordinary skill in the art, on the premise of not paying creative work, can be with Structure according to these accompanying drawings obtains other accompanying drawings.
Fig. 1 is the structural representation of the embodiment of top air-out structure one of the present invention;
Fig. 2 is the decomposition texture schematic diagram of the embodiment of top air-out structure one;
Fig. 3 is the decomposition texture schematic diagram of the rotatable positioning member of top air-out structure of the present invention;
Fig. 4 is the front view of the embodiment of top air-out structure one of the present invention;
Fig. 5 be Fig. 4 in top air-out structure A-A to sectional view;
Fig. 6 is the partial enlarged drawing at A in Fig. 5;
Fig. 7 is the structural representation of the embodiment of cabinet air-conditioner of the present invention;
Fig. 8 is the sectional view of cabinet air-conditioner B-B direction in Fig. 7.
Drawing reference numeral explanation:
The realization of the object of the invention, functional characteristics and advantage will be described further referring to the drawings in conjunction with the embodiments.
Specific embodiment
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 Site preparation is described, it is clear that described embodiment is only a part of embodiment of the invention, rather than whole embodiments.Base Embodiment in the present invention, those of ordinary skill in the art obtained under the premise of creative work is not made it is all its His embodiment, belongs to the scope of protection of the invention.
It is to be appreciated that the directional instruction (such as up, down, left, right, before and after ...) of institute is only used in the embodiment of the present invention In relative position relation, motion conditions under a certain particular pose (as shown in drawings) between each part etc. are explained, if should When particular pose changes, then directionality indicates also correspondingly to change therewith.
In the present invention, unless otherwise clearly defined and limited, term " connection ", " fixation " etc. should be interpreted broadly, For example, " fixation " can be fixedly connected, or be detachably connected, or integrally;Can be mechanically connect, or Electrical connection;Can be joined directly together, it is also possible to be indirectly connected to by intermediary, can be two connections or two of element internal The interaction relationship of individual element, unless otherwise clearly restriction.For the ordinary skill in the art, can basis Concrete condition understands above-mentioned term concrete meaning in the present invention.
In addition, in the present invention such as relating to the description of " first ", " second " etc. be only used for describe purpose, and it is not intended that Indicate or imply its relative importance or the implicit quantity for indicating indicated technical characteristic.Thus, define " first ", At least one this feature can be expressed or be implicitly included to the feature of " second ".In addition, the technical side between each embodiment Case can be combined with each other, but must can be implemented as basis with those of ordinary skill in the art, when the combination of technical scheme It will be understood that the combination of this technical scheme does not exist when appearance is conflicting or cannot realize, also not in the guarantor of application claims Within the scope of shield.
The present invention proposes a kind of top air-out structure 10, is installed on the upper end of cabinet air-conditioner 100.
Referring to figs. 1 to Fig. 6, in one embodiment of this invention, the top air-out structure 10 includes:
Top air-out housing 101, the top air-out housing 101 is connected with the air channel 31 of cabinet air-conditioner 100, and is offered and air channel The ejection air port 13a of 31 connections;And
Top air-out rotational structure 18, the top air-out rotational structure 18 includes actuator 17 and rotatable positioning member 19, the rotation Keeper 19 includes installation portion 191, rotation section 193 and supporting part 195, and the installation portion 191 is fixedly connected on the driving Part, the rotation section 193 is located at rotation centerline, and one end of the rotation section 193 rotates with the installation portion 191 and is connected, another End is connected with the supporting part 195, and the supporting part 195 is fixedly connected with the end of the top air-out housing 101, the actuator 17 drive the top air-out housing 101 and supporting part 195 to be rotated along the rotation centerline of the rotation section 193.
Technical solution of the present invention drives top air-out housing 101 along the week of cabinet air-conditioner 100 by top air-out rotational structure 18 Rotated to direction, to adjust the air outlet angle in circumference of ejection air port 13a.By setting a rotatable positioning member 19, its installation Portion 191 is fixedly connected with actuator 17, and then supporting part 195 is fixed on the end of top air-out housing 101, drives the ejection crust of weathering Body 101 is rotated in a circumferential direction along the rotation centerline of rotation section 193 together.Because rotation section 193 is located at rotation centerline, therefore should Top air-out housing 101 does not deviate by rotation centerline during circumferentially rotatable, so as to avoid top air-out shell 11 with The collision of miscellaneous part, and then reduce the driving force of top air-out rotational structure 18 so that the rotation of top air-out shell 11 is more steady It is fixed.
To Fig. 5, in the present embodiment, the supporting part 195 includes reference picture 2:
First installing plate 1951, first installing plate 1951 is connected with the rotation section 193;
Locating ring 1953, the locating ring 1953 are fixedly connected with the lower end of the top air-out housing 101, and with the driving Part 17 is fixedly connected;And
Head rod 1955, one end of the head rod 1955 is connected with first installing plate 1951, the other end It is connected with locating ring 1953.
By the setting of installing plate and head rod 1955 so that the connection of locating ring 1953 and rotation section 193 is more Stabilization.The installing plate also can rounded plate setting.The shape of the locating ring 1953 is mutually fitted with the inner wall shape of top air-out housing 101 Match somebody with somebody.The locating ring 1953, the installing plate 1951 of head rod 1955 and first can be integrated, and shape also can be assembled Into.
Further, the quantity of the head rod 1955 is multiple, and the interval of multiple head rods 1955 is connected to The circumference of the first installing plate 1951, and radially set.Multiple head rods 1955 are distributed in aplysia punctata so that the positioning Ring 1953 is not likely to produce deformation, while so that locating ring 1953 is more stablized with the connection of top air-out housing 101.
With reference to reference picture 3, in the present embodiment, the rotation section 193 includes:Second installing plate 1931, second installation Plate 1931 is fixedly connected with the first installing plate 1951;And rotary shaft 1933, one end of the rotary shaft 1933 is connected to described Two installing plates 1931, the other end is rotationally connected with the installation portion 191.By the first installing plate 1951 and the second installing plate 1931 Be fixedly connected, further enhance the connective stability of rotation section 193 and abutting part.
With reference to reference picture 2 to Fig. 6, in the present embodiment, the installing plate 1931 of first installing plate 1951 and second its One of be provided with location hole 1951a, the wherein another of the installing plate 1931 of first installing plate 1951 and second is provided with positioning Post 1931a, the locating dowel 1931a are inserted into the location hole 1951a, by the installing plate of first installing plate 1951 and second 1931 are fixedly connected.
By the quick grafting of location hole 1951a and locating dowel 1931a so that rotation section 193 is quickly fixedly mounted on the On one installing plate 1951.During installation, the plate face of the first installing plate 1951 and the second installing plate 1931 is abutted, to further enhance; The stability of connection.Quickly be fixedly connected with the first installing plate 1951 by by rotation section 193 so that, rotation section 193 with support Socket part is quickly fixedly connected, and makes installation more simple and efficient.
Further, the quantity of the locating dowel 1931a and location hole 1951a is multiple, locating dowel 1931a insertions To location hole a 1951a, multiple locating dowel 1931a along the installing plate 1931 of first installing plate 1951 or second circumference Be intervally arranged, multiple location hole 1951a along the installing plate 1951 of second installing plate 1931 or first circumferentially-spaced row Cloth.In this way, the grafting of multiple locating dowel 1931a and multiple location hole 1951a so that the first installing plate 1951 and the second installing plate 1931 socket connection is more consolidated.
Reference picture 3, in the present embodiment, second installing plate 1931 is provided with centre bore 1931b, centre bore 1931b At least two reinforcement 1931c being radially arranged of intersection are inside provided with, the rotary shaft 1933 is located at reinforcement 1931c described in two Intersection.The reinforcement 1931c being radially arranged by two so that the installation positioning of rotary shaft 1933 is more convenient.
It is understood that in the present embodiment, the rotation section 193 is integrally formed, that is, the second installing plate 1931 and rotation The integrated injection molding of rotating shaft 1933.First installing plate 1951, head rod 1955 and abutting part are also integrally formed setting.When So, above-mentioned part can also be arranged to Split type structure.
With reference to reference picture 2, Fig. 5 and Fig. 6, in the present embodiment, the actuator 17 includes rotary electric machine 171 and rotates to tie Structure 173, the rotational structure 173 includes framework 1731 and is rotationally connected with the gear ring 1733 of the framework 1731, the top air-out The end of housing 101 is located between the supporting part 195 and gear ring 1733, and solid with the supporting part 195 and gear ring 1733 respectively Fixed connection, the framework 1731 is connected with the upper end of cabinet air-conditioner 100, and the rotary electric machine 171 is installed on the framework 1731, And drive the gear ring 1733 to rotate, drive the supporting part 195 and top air-out housing 101 to rotate.
The driven gear ring 1733 of rotary electric machine 171, so drive supporting part 195 and top air-out housing 101 common relative to Framework 1731 is rotated.Resigning hole can be set in the locating ring 1953, then by bolt through resigning hole from top to bottom successively By the common spacing fixation of locating ring 1953, top air-out housing 101 and gear ring 1733.Because of the setting of rotatable positioning member 19 so that Top air-out housing 101 will not touch framework 1731, and then reduce the motor driving force of rotary electric machine 171 so that the ejection crust of weathering The rotation of body 101 is more stablized.Further, bearing (sign), the bottom with gear ring 1733 also can be set in the framework 1731 Portion abuts, and further reduces the driving force of the rotation of gear ring 1733.It is understood that the actuator 17 is gear-wheel gear-ring 1733 Transmission, can also be driven using other modes.
With reference to reference picture 7 and Fig. 8, in the present embodiment, the top air-out housing 101 includes:
Top air-out shell 11, the top air-out shell 11 is connected with the air channel 31 of the cabinet air-conditioner 100;
Top air-out inner casing 13, the top air-out inner casing 13 is provided with ejection air port 13a, and the part of top air-out inner casing 13 is placed in institute Top air-out shell 11 is stated, the ejection air port 13a manifests the top air-out shell 11;
The top air-out structure 10 also includes:In first rotational structure 15, first rotational structure 15 and the top air-out Shell 13 is connected, and drives the top air-out inner casing 13 to be rotated relative to the top air-out shell 11, to drive the ejection air port 13a Swing up and down.
Technical solution of the present invention drives top air-out inner casing 13 by the first rotational structure 15 so that top air-out inner casing 13 is on top Swung up and down in air-out shell 11, drive ejection air port 13a to swing along the vertical direction, and then enable to eject air port 13a courts It is up or down square.When air-conditioner is in refrigeration mode, the rotation top air-out of the first rotational structure 15 inner casing 13 makes ejection air port 13a is swung up, and the cold air after heat exchange can all be blown to the oblique upper of cabinet air-conditioner 100 via ejection air port 13a, because Cold air is heavier, can decline because of gravity after flow of cold air stretch journey so that the interior away from ejection air port 13a also can quilt Fast-refrigerating.When air-conditioner is in heating mode, the rotation top air-out of the first rotational structure 15 inner casing 13 makes ejection air port 13a To lower swing, the hot-air after heat exchange can all be blown to the obliquely downward of cabinet air-conditioner 100 via ejection air port 13a, because of heat Air is lighter, can rise after hot-air flowing stretch journey so that the interior away from ejection air port 13a also can quickly be heated. In this way, using the top air-out structure 10 of this programme, by adjusting ejection air port 13a, the whole air quantity via ejection air port 13a are equal Default position can be flow to, it is possible to achieve indoor fast-refrigerating or the effect for heating so that room air being capable of velocity modulation soon Save suitable temperature.
Referring to figs. 1 to Fig. 5, in the present embodiment, the top air-out inner casing 13 includes top cover 131, is connected to the top cover The side plate 133 of 131 lower surface, the side plate 133 is surrounded on the top cover 131, is enclosed with the top cover 131 and sets to form appearance wind chamber 13b, the outer surface of the side plate 133 abuts with the inwall of the top air-out shell 11, and the ejection air port 13a is opened in described Side plate 133.The top cover 131 rounded can be set, and the cover plate of a circle forms top cover 131, and then the periphery of top cover 131 is downward again Projection side plate 133, side plate 133 encloses with top cover 131 and sets to form an appearance wind chamber 13b, the wind heat exchange in cabinet air-conditioner 100 in air channel 31 After first flow into appearance wind chamber 13b, then, from appearance wind chamber 13b outflows.The side plate 133 may include first for being detachably connected The junction of the side plate 133 of side plate 133 and second, the first side plate 133 and the second side plate 133 passes through to snap connection, then the first side The upper side edge of the side plate 133 of plate 133 and second snaps connection with top cover 131 and/or is spirally connected and/or bonds.Certainly, the side plate 133 Or integral structure, side plate 133 and the integrated injection molding of top cover 131.
Further, the side plate 133 has spherical structure.Side plate 133 is spherical so that what whole side plate 133 was surrounded A part substantially spherical in shape, substantially can be spherical middle part.Sphere is set to by by side plate 133, when the first rotation Structure 15 rotates top air-out inner casing about 13 during elevating movement, and the inwall that side plate 133 can be all the time with top air-out shell 11 is abutted, Prevent the air after heat exchange from being flowed out via the junction of top air-out inner casing 13 and top air-out shell 11.Meanwhile, side plate 133 is set It is spherical, windage can be also reduced, so as to reduce noise.The top air-out shell 11 can also set with the junction of top air-out inner casing 13 Sealing ring (not shown) is put, the sealing ring can be made up of sponge or foamed plastics, prevent air via flowing out herein.
To Fig. 5, in the present embodiment, the relative both sides of the top air-out shell 11 open up rotating shaft 1331 to reference picture 2 Or one of shaft hole 111, the relative both sides of the top air-out inner casing 13 open up rotating shaft 1331 or shaft hole 111 Wherein another, the rotating shaft 1331 is rotatably assorted with the shaft hole 111, and first rotational structure 15 drives the top air-out Inner casing 13 is rotated along the axis direction of the rotating shaft 1331.
In this way, forming pivot center direction, first with the line of the relative rotating shaft 1331 or the center of shaft hole 111 Rotating mechanism drives top air-out inner casing 13 to be rotated along the pivot center direction.Rotating shaft 1331 can be arranged on top air-out inner casing 13, Shaft hole 111 is arranged on the upper side edge of top air-out shell 11, after rotating shaft 1331 is installed on into the shaft hole 111, by one The pressing plate of annular is pressed in the upper side edge of top air-out shell 11, prevents the vibration of rotating shaft 1331.It is understood that in order to rotating shaft 1331 adaptations, the annular pressing plate also is provided with the rotation slot coordinated with rotating shaft 1331.
Reference picture 5, in one embodiment of this invention, first rotational structure 15 includes the first motor 151, mounting bracket 153rd, first gear 155 and second gear 157;
The inwall of the top air-out shell 11 is fixed in one end of the mounting bracket 153, and the other end stretches to the appearance wind In the 13b of chamber;
First motor 151 is installed on the mounting bracket 153, and in the appearance wind chamber 13b;
The first gear 155 is fixedly connected with the power transmission shaft of first motor 151, the second gear 157 and institute The inwall connection of top air-out inner casing 13 is stated, the first gear 155 is engaged with the second gear 157, the second gear 157 Pivot center overlapped with the pivot center of the rotating shaft 1331;
First motor 151 drives the first gear 155, drives the second gear 157 to rotate, second tooth Wheel 157 drives the top air-out inner casing 13 to be rotated along the rotating shaft 1331.
That is, driving first gear 155 by the first motor 151, second gear 157 is driven so that top air-out inner casing 13 Rotated relative to top air-out shell 11.It is, of course, understood that tooth can also be driven using the drive gear of the first motor 151 Circle, so as to drive top air-out inner casing 13 to be rotated relative to top air-out shell 11.
Referring to figs. 1 to Fig. 5, in the present embodiment, the ejection air port 13a is bordered by the top cover 131 and sets.By that will push up Air outlet 13a is bordered by setting, it is possible to increase the angle that ejection air port 13a swings up and down.Top cover 131 is adjacent with ejection air port 13a Part forms air dam, it is possible to reduce turbulent air flow, increases the transmitting range of air-flow.
Further, ejection air port 13a is additionally provided with horizontal wind deflector, and the horizontal wind deflector connects ejection air port 13a Both sides, and in above-below direction swing, with it is further adjustment eject air port 13a air outlet angle.By the second horizontal wind deflector Setting, it is possible to achieve the above-below direction of ejection air port 13a to sweep wind angle bigger.
Ejection air port 13a is additionally provided with longitudinal stator, and longitudinal stator forms air outlet grate with horizontal wind deflector.By vertical To the setting of stator, the left and right directions for being capable of achieving ejection air port 13a sweeps wind, and the present embodiment passes through horizontal wind deflector and longitudinal stator Cooperation so that top air-out structure 10 have various air-out modes, adapt to room air regulation various demands.
Reference picture 5, in the present embodiment, the top air-out structure 10 also includes the gear in the top air-out inner casing 13 Aerofoil 135, the deep bead 135 is connected with the second rotational structure 137, and second rotational structure 137 drives the deep bead 135 Along rotating in a circumferential direction for the top air-out inner casing 13, the ejection air port 13a is blocked or opened.
By the deep bead 135, by ejection air port 13a closure or can open, top cover 131 is bordered by ejecting air port 13a's Lower surface is convexly equipped with boss 1311, and the boss 1311 has guiding incline, and by the guiding incline, the deep bead 135 is correspondingly provided with leads Draw face.By the setting of guiding incline and guiding face so that the deep bead 135 is supported during rotation with side plate 133 Connect, and cause deep bead 135 to open or block and eject air port 13a.
Second rotational structure 137 includes installing crossbeam 1371, the second motor 1373 and the second connecting rod 1375, and this second Motor 1373 is installed on installs crossbeam 1371, the rotating in a circumferential direction along top air-out structure 10 of the power transmission shaft of the second motor 1373, the One end of two connecting rods 1375 is connected with the power transmission shaft of the second motor 1373, and the other end is connected to deep bead 135, the second motor 1373 power transmission shaft drives the second connecting rod 1375, orders about the rotating in a circumferential direction along top air-out structure 10 of deep bead 135, blocking or Open ejection air port 13a.
Second connecting rod 1375 can be one, or multiple.The second connecting rod 1375 that multiple is set so that keep out the wind Transmission between plate 135 and the power transmission shaft of second electrode is more stablized.Further set in the center of the lower surface of top cover 131 One is rotatably assorted groove, and a bearing is installed in this is rotatably assorted groove, and the end sleeve of the power transmission shaft of the second motor 1373 is accessed should In bearing so that the rotation of the second motor 1373 is more stablized.
With reference to reference picture 7 and Fig. 8, the present invention also proposes a kind of cabinet air-conditioner 100, including:Housing 30, shape in the housing 30 Into there is an at least air channel 31;
The air channel 31 is mainly formed in the inside of housing 30, and extraneous air is entered into air channel 31 via air inlet 33, by Blower fan 70 is driven, and is exchanged heat by heat exchanger 90, general, and air inlet 33, heat exchanger 90, blower fan 70 are arranged successively from the bottom to top Row, heat exchanger 90 is fixed in housing 30 by fixed mount, and the lower end of heat exchanger 90 is provided with drip tray, cold for receiving Solidifying water, the setting in the form of annular discs of the general drip tray.
Positive air exhausting structure 50, the positive air exhausting structure 50 is located at the housing 30, and with being connected with air channel described in one 31 Positive air outlet 51;And
Top air-out structure 10, concrete structure reference above-described embodiment of the top air-out structure 10, due to this cabinet air-conditioner 100 Employ whole technical schemes of above-mentioned all embodiments, therefore the institute that at least technical scheme with above-described embodiment is brought There is beneficial effect, this is no longer going to repeat them.
An air channel 31, positive air exhausting structure 50 and 10, top air-out structure are formed with the housing 30 of this cabinet air-conditioner 100 In in same air channel 31, accordingly, blower fan 70 is also equipped with one, and e.g., the upper and lower ends of positive air exhausting structure 50 are communicated with wind The openings (sign) in road 31, extraneous air is entered by air inlet 33, is driven via blower fan 70, by heat exchanger it is after 90s via The openings of lower end are entered into positive air exhausting structure 50, can be blown out via the positive air outlet 51 of the positive air exhausting structure 50.Meanwhile, Air after heat exchange via the openings of the upper end of positive air exhausting structure 50 to top air-out structure 10, can be via top air-out structure 10 Ejection air port 13a blowout.In the case of an air channel 31, the overall structure of this cabinet air-conditioner 100 is simple, compact, and Cost is relatively low.Certainly, in other embodiment, the positive air exhausting structure 50 and top air-out structure 10 can be located at different air channels 31, Two air channels 31 can be formed with housing 30, positive air exhausting structure 50 is connected with a wherein air channel 31, top air-out structure 10 and another wind Road 31 is connected, and in the case where air channel 31 is two, the blower fan 70 of this cabinet air-conditioner 100 can be set one or two, you can with Air flow in two air channels 31 is driven by a blower fan 70 simultaneously, each one blower fan of correspondence of air channel 31 is can also be 70.In the case of two air channels 31, the air output of positive air outlet 51 and ejection air port 13a is easy to control with wind velocity is gone out, then The air handling capacity of cabinet air-conditioner 100 is stronger.
Technical solution of the present invention is by using double air exhausting structures so that cabinet air-conditioner 100 has various air-out modes, can root According to indoor temperature and area selection air-out mode.Positive air exhausting structure 50 is located substantially at the middle part of housing 30, positive air exhausting structure 50 With positive air outlet 51, the area of the area more than ejection air port 13a of the positive air outlet 51.Therefore, positive air exhausting structure 50 goes out Wind energy power is stronger.Can be by adjusting the opening and closing of positive air exhausting structure 50 and top air-out structure 10, and then can be further real The purpose of air themperature in existing quick regulation room.
And it is possible to housing 30 is arranged into cylindrical shape, the housing 30 includes cylindrical sidewall and located at the cylindrical sidewall The bottom wall of lower end, the cylindrical sidewall is typically made up of the fore shell being detachably connected and rear shell, and the cross section of the fore shell and rear shell is in Semicircle shape is set.The lower end of the cylindrical sidewall offers the air inlet 33 connected with the air channel 31.First, outside air warp By the air channel 31 air inlet 33 when because the setting of cylindrical shell 30 can reduce windage, enable air to smoothly enter into Exchanged heat in air channel 31.General, the formation in the air channel 31 in housing 30 depends on the internal chamber wall of housing 30, the housing 30 to be in Cylindrical shape is set, the windage reduction in the air channel 31 for forming it into, and thus, may be such that the heat exchange efficiency lifting of cabinet air-conditioner 100.
The present invention also proposes a kind of air-conditioner (not shown), including cabinet air-conditioner 100 and is connected with the cabinet air-conditioner 100 Outdoor unit, whole technical schemes of above-mentioned all embodiments are employed due to this air-conditioner, therefore at least have above-described embodiment All beneficial effects for being brought of technical scheme, this is no longer going to repeat them.
The present invention also proposes a kind of air-out control method of air-conditioner, including:
The temperature of environment is detected for the first time;
When the temperature of environment exceeds preset temperature range value, open the positive air outlet of positive air exhausting structure;
The temperature for detecting environment second, when the temperature of environment still exceeds preset temperature range value, makes ejection air port Open.
In this way, technical solution of the present invention is by using double air outlets so that the cabinet air-conditioner of air-conditioner has three kinds of air-out Pattern, can be according to indoor temperature and area selection air-out mode.
For example under cryogenic conditions, under normal mode of operation, only by positive air exhausting structure air-out.When detecting interior When temperature is too high, can be opened with the ejection air port of top air-out structure, be gone out simultaneously by positive air exhausting structure and top air-out structure Wind.In this way, various air-out modes can be realized, the demand of air-out area and air output is met, enabling the temperature of room air has Effect is rapidly achieved the temperature for pre-setting.
Further, when environment temperature is in refrigeration mode higher than preset temperature range value, and air-conditioner, the first rotation The rotation top air-out of structure 15 structure 10, makes ejection air port 13a swing upward;
When environment temperature be less than preset temperature range value when, and air-conditioner be in heating mode when, the first rotational structure 15 Rotation top air-out structure 10, makes ejection air port 13a swing downward.
This cabinet air-conditioner 100 can set temperature sensor for detecting the temperature of indoor environment at air inlet 33, normally Livable environment temperature is 16 DEG C to 22 DEG C.Therefore, preset temperature range value is set to 16 DEG C to 22 DEG C.By TEMP Device carries out first time temperature detection, when the temperature of indoor environment is higher than preset temperature range value, can be by causing positive air outlet 51 open, and blower fan 70 starts, then during this, and after the work a period of time of cabinet air-conditioner 100, temperature sensor carries out the Secondary temperature detection, when the temperature of environment is higher than 22 DEG C, when air-conditioner is in refrigeration mode, the rotation of the first rotational structure 15 top Air exhausting structure 10, makes ejection air port 13a swing upward, positive air outlet 51 and ejection air port 13a simultaneously air-out, in accelerating chamber Air adjustment is so as to reach livable environment temperature.When the temperature of environment is less than 16 DEG C, when air-conditioner is in heating mode, the The rotation top air-out of one rotational structure 15 structure 10, makes ejection air port 13a swing downward, and air adjustment in accelerating chamber is so as to arrive Up to livable environment temperature.Certainly, the setting of preset temperature range value can be configured according to each Man's Demands.
The preferred embodiments of the present invention are the foregoing is only, the scope of the claims of the invention is not thereby limited, it is every at this Under the inventive concept of invention, the equivalent structure transformation made using description of the invention and accompanying drawing content, or directly/use indirectly It is included in scope of patent protection of the invention in other related technical fields.

Claims (15)

1. a kind of top air-out structure, is installed on the upper end of cabinet air-conditioner, it is characterised in that the top air-out structure includes:
Top air-out housing, the top air-out housing is connected with the air channel of cabinet air-conditioner, and offers the ejection connected with the air channel Air port;And
Top air-out rotational structure, the top air-out rotational structure includes actuator and rotatable positioning member, and the rotatable positioning member includes peace Dress portion, rotation section and supporting part, the installation portion are fixedly connected on the actuator, and the rotary part is in pivot Line, and one end of the rotation section and the installation portion rotate and be connected, the other end is connected with the supporting part, the supporting part with it is described The end of top air-out housing is fixedly connected, and the actuator drives the top air-out housing and supporting part along the rotation of the rotation section Center line is rotated.
2. top air-out structure as claimed in claim 1, it is characterised in that the supporting part includes:
First installing plate, first installing plate is connected with the rotation section;
Locating ring, the locating ring are fixedly connected with the lower end of the top air-out housing, and are fixedly connected with the actuator;And
Head rod, one end of the head rod is connected with first installing plate, and the other end is connected with locating ring.
3. top air-out structure as claimed in claim 2, it is characterised in that the quantity of the head rod is multiple, multiple Head rod interval is connected to the circumference of first installing plate, and radially sets.
4. top air-out structure as claimed in claim 2, it is characterised in that the rotation section includes:
Second installing plate, second installing plate is fixedly connected with the first installing plate;And
Rotary shaft, one end of the rotary shaft is connected to second installing plate, and the other end is rotationally connected with the installation portion.
5. top air-out structure as claimed in claim 4, it is characterised in that first installing plate and the second installing plate are wherein One of be provided with location hole, first installing plate and the wherein another of the second installing plate are provided with locating dowel, and the locating dowel is inserted Enter to the location hole, first installing plate is fixedly connected with the second installing plate.
6. top air-out structure as claimed in claim 5, it is characterised in that the quantity of the locating dowel and location hole is many Individual, a locating dowel is inserted between a location hole, circumference of multiple locating dowels along first installing plate or the second installing plate Every arrangement, multiple location holes along second installing plate or the first installing plate circumferentially-spaced arrangement.
7. top air-out structure as claimed in claim 4, it is characterised in that second installing plate is provided with centre bore, the center At least two reinforcements being radially arranged of intersection are provided with hole, the rotary shaft is located at the intersection of reinforcement described in two.
8. top air-out structure as claimed in claim 1, it is characterised in that the actuator includes rotary electric machine and rotate to tie Structure, the rotational structure includes framework and is rotationally connected with the gear ring of the framework, and the end of the top air-out housing is positioned at described Between supporting part and gear ring, and it is fixedly connected with the supporting part and gear ring respectively, the framework is connected with the upper end of cabinet air-conditioner, The rotary electric machine is installed on the framework, and drives the ring gear against rotation, drives the supporting part and the rotation of top air-out housing.
9. the top air-out structure as described in any in claim 1 to 8, it is characterised in that the top air-out housing includes:
Top air-out shell, the top air-out shell is connected with the air channel of the cabinet air-conditioner;
Top air-out inner casing, the top air-out inner casing is provided with the ejection air port, and the top air-out inner shell sections are placed in the top air-out Shell, the ejection air port manifests the top air-out shell;
The top air-out structure also includes:
First rotational structure, first rotational structure is connected with the top air-out inner casing, drive the top air-out inner casing relative to The top air-out shell is rotated, to drive the ejection air port to swing up and down.
10. top air-out structure as claimed in claim 9, it is characterised in that the top air-out inner casing includes top cover and is connected to The side plate of the top cover lower surface, the side plate is surrounded on the top cover, is enclosed with the top cover and sets to form appearance wind chamber, the side plate Outer surface abutted with the inwall of the top air-out shell, the ejection air port is opened in the side plate.
11. top air-out structures as claimed in claim 10, it is characterised in that the side plate has spherical structure.
12. top air-out structures as claimed in claim 10, it is characterised in that the top air-out structure also includes being located at the top Deep bead in air-out inner casing, the deep bead is connected with the second rotational structure, and second rotational structure drives the deep bead Along rotating in a circumferential direction for the top air-out inner casing, the ejection air port is blocked or opened.
A kind of 13. cabinet air-conditioners, it is characterised in that including:
Housing, is formed with an at least air channel in the housing;
Positive air exhausting structure, the positive air exhausting structure is located at the housing, and with the positive air outlet connected with air channel described in;And
Top air-out structure as described in any in claim 1 to 12, the top air-out structure is located at the upper end of the housing.
14. a kind of air-conditioners, it is characterised in that including cabinet air-conditioner as claimed in claim 13, and with the cabinet air-conditioner The outdoor unit of connection.
The air-out control method of the air-conditioner described in a kind of 15. claims 14, it is characterised in that including:
The temperature of environment is detected for the first time;
When the temperature of environment exceeds preset temperature range value, open the positive air outlet of positive air exhausting structure;
The temperature for detecting environment second, when the temperature of environment still exceeds preset temperature range value, opens ejection air port.
CN201710080456.7A 2017-02-14 2017-02-14 The air-out control method of top air-out structure, cabinet air-conditioner, air conditioner and air conditioner Active CN106907845B (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20130066195A (en) * 2011-12-12 2013-06-20 엘지전자 주식회사 Air-conditioner and method for controlling the air-conditioner
CN103486707A (en) * 2012-06-13 2014-01-01 珠海格力电器股份有限公司 Air conditioner
JP2015169389A (en) * 2014-03-07 2015-09-28 三菱重工業株式会社 air conditioner
CN105299862A (en) * 2014-06-26 2016-02-03 美的集团武汉制冷设备有限公司 Air conditioner and air outlet device thereof
CN106225081A (en) * 2016-08-31 2016-12-14 芜湖美智空调设备有限公司 The air-out control method of cabinet air-conditioner and cabinet air-conditioner
CN106287973A (en) * 2016-08-31 2017-01-04 芜湖美智空调设备有限公司 The air-out control method of cabinet air-conditioner and cabinet air-conditioner

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20130066195A (en) * 2011-12-12 2013-06-20 엘지전자 주식회사 Air-conditioner and method for controlling the air-conditioner
CN103486707A (en) * 2012-06-13 2014-01-01 珠海格力电器股份有限公司 Air conditioner
JP2015169389A (en) * 2014-03-07 2015-09-28 三菱重工業株式会社 air conditioner
CN105299862A (en) * 2014-06-26 2016-02-03 美的集团武汉制冷设备有限公司 Air conditioner and air outlet device thereof
CN106225081A (en) * 2016-08-31 2016-12-14 芜湖美智空调设备有限公司 The air-out control method of cabinet air-conditioner and cabinet air-conditioner
CN106287973A (en) * 2016-08-31 2017-01-04 芜湖美智空调设备有限公司 The air-out control method of cabinet air-conditioner and cabinet air-conditioner

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