CN207922407U - Air-conditioning equipment - Google Patents

Air-conditioning equipment Download PDF

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Publication number
CN207922407U
CN207922407U CN201721878334.4U CN201721878334U CN207922407U CN 207922407 U CN207922407 U CN 207922407U CN 201721878334 U CN201721878334 U CN 201721878334U CN 207922407 U CN207922407 U CN 207922407U
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CN
China
Prior art keywords
air
wind
component
conditioning equipment
shell
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Active
Application number
CN201721878334.4U
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Chinese (zh)
Inventor
唐清生
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
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Priority to CN201721878334.4U priority Critical patent/CN207922407U/en
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Publication of CN207922407U publication Critical patent/CN207922407U/en
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Abstract

The utility model proposes a kind of air-conditioning equipments, including:Shell, setting air inlet and air outlet on shell;At least two wind wheel components, at least two wind wheel components are respectively arranged at the opposite both ends of shell;At least two drive components, are set in shell, and at least two drive components are connected at least two wind wheel components respectively;First foam component, is set in shell, and the first foam component is located at side of the shell far from air outlet;Second foam component, is set at air outlet.Air-conditioning equipment provided by the utility model independently drives at least two wind wheel components by least two drive components, realize the asynchronous driving of at least two wind wheel components, it is cooperated by the first foam component and the second foam component, play the role of keeping the temperature and preventing condensation, and then promotes the applicability and performance of air-conditioning equipment.

Description

Air-conditioning equipment
Technical field
The utility model is related to household electrical appliance technical fields, in particular to a kind of air-conditioning equipment.
Background technology
Currently, with the continuous improvement of modern science and technology technology, air-conditioning equipment becomes increasingly popular, and existing air-conditioned work Effect is all not satisfactory, specifically, on the one hand, existing air-conditioned heat-insulating property is bad, and there are heat loss, wastes The phenomenon that resource;On the other hand, the wind effect of existing double drive formula air-conditioning equipment is bad, and double wind wheel can only synchronize driving, fits With the not high defect of property.
Utility model content
The utility model aims to solve at least one of the technical problems existing in the prior art.
For this purpose, the utility model provides a kind of air-conditioning equipment.
In view of this, the utility model proposes a kind of air-conditioning equipments, including:Shell setting air inlet and goes out on shell Air port;At least two wind wheel components, at least two wind wheel components are respectively arranged at the opposite both ends of shell;At least two driving groups Part is set in shell, and at least two drive components are connected at least two wind wheel components respectively;First foam component, if It is placed in shell, the first foam component is located at side of the shell far from air outlet;Second foam component, is set at air outlet.
Air-conditioning equipment provided by the utility model includes:Shell, at least two wind wheel components, at least two drive components, First foam component and the second foam component, wherein at least two wind wheel components are respectively arranged in the both ends of shell, and outlet air Mouth is set to the middle part of shell, realize both sides air inlet, intermediate outlet air the circulatory system, avoid that there is a phenomenon where suck-backs;Further Ground, at least two wind wheel components are driven by respective drive component, are mutually independent respectively, realize at least two wind The asynchronous driving of wheel assembly so that user can set the rotary speed of at least two wind wheel components according to actual needs, in turn Ensure that the intake of both sides meets user's actual need, promotes the applicability of air-conditioning equipment;Further, shell far from go out The side in air port is provided with the first foam component, and air outlet side is provided with the second foam component, passes through the first foam component And second foam component cooperate, play good insulation effect, avoid air-conditioning equipment internal heat scatter and disappear, reduce energy consumption, And second heat insulation module can play anti-condensation effect, avoid at the air outlet of air-conditioning equipment generate dew condensation phenomenon, in turn Promote the performance of air-conditioning equipment.
According to the above-mentioned air-conditioning equipment of the utility model, there can also be following additional technical feature:
In the above-mentioned technical solutions, it is preferable that the first foam component is extended towards air outlet side guide protrusions, The side wall of at least two wind wheel components towards guide protrusions is arranged.
In the technical scheme, being extended towards air outlet side in the first foam component has guide protrusions, and at least The air outlet of two wind wheel components towards guide protrusions side wall, when air-conditioning equipment works, at least two wind wheel component slave phases To both ends air-flow is blown into enclosure interior, the flow direction of air-flow is opposite at this time, and when both sides air-flow flow to be oriented to it is convex When rising, flow direction changes under the action of guide protrusions, towards air outlet at flow, on the one hand avoid two it is opposite Air-flow between contradict, influence air intake efficiency;On the other hand, it plays to be oriented to well by the setting of guide protrusions and make With, and then ensure the smooth circulation of air-flow inside housings, the work noise of air-conditioning equipment is reduced, and then improve air-conditioning equipment Working efficiency.
In any of the above-described technical solution, it is preferable that the second foam component position opposite with air outlet is provided with through-hole, Passed through with the air-flow ensured in shell.
In the technical scheme, the centre of the second foam component is provided with through-hole, and the size of the through-hole with go out The size in air port is mutually matched, and then on the basis of the second foam component of guarantee plays heat preservation, prevents condensation, ensures air-flow It is smooth to pass through, ensure the normal use of air-conditioning equipment.
In any of the above-described technical solution, it is preferable that at least two wind wheel components include the first wind wheel component and the second wind Wheel assembly;At least two drive components include the first drive component and the second drive component;Wherein, the first drive component and first Wind wheel component is connected, and the second drive component is connected with the second wind wheel component.
In the technical scheme, at least two wind wheel components specifically include the first wind wheel component and the second wind wheel component, until Few two drive components specifically include the first drive component and the second drive component, and drive the first wind by the first drive component Wheel assembly drives the second wind wheel component by the second drive component, realizes the asynchronous driving between two wind wheel components so that uses Family can set the rotary speed of at least two wind wheel components according to actual needs, and then ensure that the intake of both sides meets user Actual demand promotes the applicability of air-conditioning equipment.
In any of the above-described technical solution, it is preferable that air-conditioning equipment further includes:First wind guiding component, is set to air outlet Place;Second wind guiding component, is set at air outlet;Wherein, between the first wind guiding component and the second wind guiding component and air outlet Distance differs.
In the technical scheme, the first wind guiding component and the second wind guiding component, and the first wind-guiding are provided at air outlet Component and the second wind guiding component are away from being differed at a distance from air outlet, i.e., setting up and down along air outlet direction, on the one hand, to avoid first from leading Interfering between wind component and the second wind guiding component;On the other hand, the first wind-guiding is first passed through when air-flow passes through air outlet Then component passes through the second wind guiding component, by two layers of wind guiding component, wind effect is more preferable.
In any of the above-described technical solution, it is preferable that the first wind guiding component includes that first driving means and multiple first are led Aerofoil;Second wind guiding component includes the second driving device and multiple second wind deflectors;Wherein, multiple first wind deflectors and multiple Two wind deflectors are interspersed at air outlet.
In the technical scheme, the first wind guiding component and the second wind guiding component are respectively arranged with multiple first wind deflectors and more A second wind deflector, and multiple first wind deflectors are staggered with multiple second wind deflectors, air-flow passes through multiple first wind deflectors Between gap after the first wind guiding component using the gap multiple second wind deflectors pass through the second wind guiding component, into And it realizes and leads wind action;Further, multiple first wind-guidings are respectively driven by first driving means and the second driving device Plate and multiple second wind deflectors can control multiple first wind deflectors and multiple second wind-guidings respectively between the two independently of one another The opening and closing degree of plate, and then a variety of wind-guiding modes are provided, promote the performance of air-conditioning equipment.
In any of the above-described technical solution, it is preferable that first driving means and the second driving device are symmetrically disposed on first Wind guiding component and the opposite both ends of the second guidance set.
In the technical scheme, first driving means and the second driving device are symmetrically arranged in the first wind guiding component And the second opposite both ends of wind guiding component, on the one hand, the position of reasonable Arrangement first driving means and the second driving device avoids It interferes between the two;On the other hand, it by way of being arranged symmetrically, may be implemented to multiple first wind deflectors and multiple Symmetrical driving between two wind deflectors, so realize between multiple first wind deflectors and multiple second wind deflectors it is synchronous expand, It is synchronous to reduce, there is higher applicability.
In any of the above-described technical solution, it is preferable that be provided on multiple first wind deflectors and/or multiple second wind deflectors Multiple relieve heat holes.
In the technical scheme, multiple relieve heat holes are provided on the first wind deflector and/or the second wind deflector, i.e. air-flow can By the first wind deflector and/or the second wind deflector, and then to provide more wind-guiding modes to the user by multiple relieve heat holes by, The applicability of air-conditioning equipment is promoted, specifically, multiple relieve heat holes are on multiple first wind deflectors and/or multiple second wind deflectors It is evenly arranged.
In any of the above-described technical solution, it is preferable that air-conditioning equipment further includes:Surface frame is set on shell, and surface frame is located at At air outlet;Wherein, one end of multiple first wind deflectors is rotatably connect with surface frame, and the other end is connected with first driving means It connects, one end of multiple second wind deflectors is rotatably connect with surface frame, and the other end is connected with the second driving device.
In the technical scheme, air-conditioning equipment further includes surface frame, and multiple first wind deflectors and multiple second wind deflectors divide Both ends not opposite with surface frame are rotatably coupled, and then ensure that multiple first wind deflectors and stablizing for multiple second wind deflectors connect It connects and the rear end of multiple first wind deflectors is specifically rotatablely arranged in surface frame by position rotating, by multiple second wind-guidings The front end of plate is rotatablely arranged in surface frame, to realize the positioning rotation of multiple first wind deflectors and multiple second wind deflectors Turn, and when needing to drive multiple first wind deflectors or multiple second wind deflectors, it need to only be driven by first driving means multiple The front end of first wind deflector drives the rear end of multiple second wind deflectors by the second driving device, to realize that multiple first lead The independent driving of aerofoil and multiple second wind deflectors, the two is non-interference, promotes the applicability of air-conditioning equipment.
In any of the above-described technical solution, it is preferable that air-conditioning equipment further includes:Flow distribution plate is set to surface frame towards first The side of foam component;Panel is set at air outlet, and panel is located at side of the surface frame far from the first foam component.
In the technical scheme, flow distribution plate, flow distribution plate and guide protrusions phase interworking are additionally provided at the air outlet of shell It closes, after guide protrusions play the role of guiding to air-flow, when air-flow is flow at air outlet, flow distribution plate again carries out air-flow Shunting, and then ensure the smooth outflow of air-flow, promote the flowing velocity of air-flow;And panel is provided on the outside of air outlet, one Aspect plays the role of protecting internal structure, beautifying and decorating;On the other hand, the operations such as control button can be provided on panel The page, it is convenient for the user to operate.
In any of the above-described technical solution, it is preferable that air-conditioning equipment further includes:Evaporator assemblies are set in shell, are steamed Device assembly is sent out between at least two wind wheel components;Partition board is arranged in shell, and shell is separated into heat exchanging chamber and wind by partition board Take turns chamber;Wherein, at least two wind wheel components are located at wind wheel chamber, and evaporator assemblies and the first foam component are located at heat exchanging chamber.
In the technical scheme, it is provided with partition board in shell, shell is distinguished by heat exchanging chamber and wind wheel chamber, tool by partition board Body, there are two wind wheel chambers for setting, and heat exchanging chamber is located between two wind wheel chambers, and evaporator group is additionally provided in heat exchanging chamber Part, when air-conditioning equipment works, air-flow is blown in heat exchanging chamber by least two wind wheel components, real under the action of evaporator assemblies Existing cold and hot exchange, then shell is discharged by air outlet, it realizes the cycle of air-flow, and the setting of wind wheel chamber and heat exchanging chamber, can keep away Exempt from interfering with each other between wind wheel component and evaporator assemblies, ensure independence between the two, promotes the work of air-conditioning equipment Efficiency.
In any of the above-described technical solution, it is preferable that air-conditioning equipment further includes:At least two screen modules, at least two A screen modules are respectively arranged at at least two wind wheel components;At least two scroll assemblies, at least two scroll assemblies point It is not set to air inlet, at least two wind wheel components are located at least two scroll assemblies.
In the technical scheme, at least two screen modules are provided at least two wind wheel components, by least The setting of two screen modules is filtered it before gas is sucked into wind wheel component, avoids the entrance such as dust impurity To wind wheel component internal, ensure the clean level of air-conditioning equipment and its delivery air;Further, in each wind wheel component Outside is both provided with scroll assembly, plays a certain protective role, and avoids the high-speed rotating wind wheel of wind wheel component internal and other Part collides, and promotes stability and the safety of air-conditioning equipment.
In any of the above-described technical solution, it is preferable that air-conditioning equipment further includes:Cover board is set in shell;Display group Part is set on panel, the performance parameter for showing air-conditioning equipment.
In the technical scheme, it is provided with cover board in shell, is further ensured that its leakproofness and safety;It is set on panel It is equipped with display module, the performance parameter for showing air-conditioning equipment understands the working condition of air-conditioning equipment convenient for user, just in real time In user's operation.
In any of the above-described technical solution, it is preferable that the quantity of air inlet is two, and two air inlets are set to shell Left and right ends.
In the technical scheme, it is two in the quantity of air inlet, and is symmetrically distributed in the left and right ends of shell, specifically Ground is provided with air outlet in the left and right ends of shell, i.e., each wind wheel component corresponds to an air inlet, and then expands air intake surface Product, and then ensure the flow of air-flow, promote the working efficiency of air-conditioning equipment.
In any of the above-described technical solution, it is preferable that the quantity of air outlet is two, and two air outlets are set to shell bottom The center of wall.
In the technical scheme, the quantity of air outlet is two, is uniformly distributed in the center of gas lower face, and divide Flowing plate is located between two air outlets, plays the role of shunting, coordinates two air outlets and two air inlets, and then ensure gas Velocity of liquid assets, promote the working efficiency of air-conditioning equipment.
The additional aspect and advantage of the utility model will become apparent in following description section, or new by this practicality The practice of type is recognized.
Description of the drawings
The above-mentioned and/or additional aspect and advantage of the utility model will in the description from combination following accompanying drawings to embodiment Become apparent and is readily appreciated that, wherein:
Fig. 1 is the upward view of the air-conditioning equipment of the utility model one embodiment;
Fig. 2 is the front view of the air-conditioning equipment of embodiment illustrated in fig. 1;
Fig. 3 be embodiment illustrated in fig. 1 air-conditioning equipment along the sectional view of A-A;
Fig. 4 is the right view of the air-conditioning equipment of embodiment illustrated in fig. 1;
Fig. 5 is the left view of the air-conditioning equipment of embodiment illustrated in fig. 1;
Fig. 6 is sectional view of the air-conditioning equipment along B-B of embodiment illustrated in fig. 3;
Fig. 7 is sectional view of the air-conditioning equipment along C-C of embodiment illustrated in fig. 6;
Fig. 8 be embodiment illustrated in fig. 1 air-conditioning equipment in the first foam component structural schematic diagram;
Fig. 9 is the vertical view of the first foam component of embodiment illustrated in fig. 8;
Figure 10 is the left view of the first foam component of embodiment illustrated in fig. 8;
Figure 11 is the rearview of the first foam component of embodiment illustrated in fig. 8;
Figure 12 is sectional view of first foam component along D-D of embodiment illustrated in fig. 9;
Figure 13 be embodiment illustrated in fig. 1 air-conditioning equipment in the second foam component structural schematic diagram;
Figure 14 is the vertical view of the second foam component of embodiment illustrated in fig. 13;
Figure 15 is the front view of the second foam component of embodiment illustrated in fig. 13;
Figure 16 is sectional view of second foam component along E-E of embodiment illustrated in fig. 14;
Figure 17 is the second foam component side view of embodiment illustrated in fig. 13;
Figure 18 is the structural schematic diagram of the utility model one embodiment wind wheel Component driver part;
Figure 19 is the vertical view of structure shown in Figure 18;
Figure 20 is the structural schematic diagram of another embodiment wind wheel Component driver part of the utility model;
Figure 21 is the schematic diagram at another visual angle of structure shown in Figure 20;
Figure 22 is the vertical view of structure shown in Figure 20;
Figure 23 is the explosive view of the air-conditioning equipment of embodiment illustrated in fig. 1.
Wherein, the correspondence in Fig. 1 to Figure 23 between reference numeral and component names is:
1 air-conditioning equipment, 12 shells, 14a the first wind wheel components, 14b the second wind wheel components, the first drive components of 16a, 16b Second drive component, 162 motors, 164 short axles, 166 shaft couplings, 168 connectors, 170 driven wheels, 172 driving wheels, 18 first bubbles Foam component, 182 guide protrusions, 20 second foam components, 202 through-holes, 22 surface frames, 24 flow distribution plates, 26 panels, 28 evaporator groups Part, 30 partition boards, 32 screen modules, the first scroll assemblies of 34a, the second volutes of 34b rent part, 36 first wind guiding components, 362 first Driving device, 38 second wind guiding components, 382 second driving devices, 40 cover boards.
Specific implementation mode
In order to be more clearly understood that the above objects, features, and advantages of the utility model, below in conjunction with the accompanying drawings and have The utility model is further described in detail in body embodiment.It should be noted that in the absence of conflict, this Shen The feature in embodiment and embodiment please can be combined with each other.
Many details are elaborated in the following description in order to fully understand the utility model, still, this practicality It is novel to be implemented different from mode described here using other, therefore, the scope of protection of the utility model not by The limitation of following public specific embodiment.
It is described according to the offer of some embodiments of the utility model and air-conditioning equipment 1 referring to Fig. 1 to Figure 23.
The utility model proposes a kind of air-conditioning equipments 1, as shown in Fig. 1 to Fig. 7 and Figure 18 and Figure 19, including:Shell 12, Air inlet and air outlet are set on shell 12;Two wind wheel components, two wind wheel components are respectively arranged at opposite two of shell 12 End;Two drive components, are set in shell 12, and two drive components are connected with two wind wheel components respectively;First foam Component 18 is set in shell 12, and the first foam component 18 is located at side of the shell 12 far from air outlet;Second foam component 20, it is set at air outlet.
Air-conditioning equipment 1 provided by the utility model includes:12, two wind wheel components of shell, two drive components, the first bubble Foam component 18 and the second foam component 20, wherein two wind wheel components are respectively arranged in the both ends of shell 12, and air outlet is set Be placed in the middle part of shell 12, realize both sides air inlet, intermediate outlet air the circulatory system, avoid that there is a phenomenon where suck-backs;Further, As shown in Figure 18 and Figure 19, two wind wheel components are driven by respective drive component respectively, realize two wind wheel components Asynchronous driving so that user can set the rotary speed of two wind wheel components according to actual needs, and then ensure both sides Intake meets user's actual need, promotes the applicability of air-conditioning equipment 1;Further, in shell 12 far from air outlet Side is provided with the first foam component 18, and air outlet side is provided with the second foam component 20, passes through the first foam component 18 And second foam component 20 cooperate, play good insulation effect, avoid 1 internal heat of air-conditioning equipment scatter and disappear, reduce energy Consumption, and the second heat insulation module can play anti-condensation effect, avoid generating dew condensation phenomenon at the air outlet of air-conditioning equipment 1, And then promote the performance of air-conditioning equipment 1.
In one embodiment of the utility model, it is preferable that the first foam component 18 as shown in Fig. 8 to Figure 12 is towards going out Air port side, which is extended, guide protrusions 182, and the side wall of two wind wheel components towards guide protrusions 182 is arranged.
In this embodiment, being extended towards air outlet side in the first foam component 18 has guide protrusions 182, and two The air outlet of a wind wheel component is towards the side wall of guide protrusions 182, and when air-conditioning equipment 1 works, two wind wheel components are from opposite Both ends air-flow is blown inside shell 12, the flow direction of air-flow is opposite at this time, and when both sides air-flow flow to be oriented to it is convex Rise 182 when, flow direction changes under the action of guide protrusions 182, towards air outlet at flow, on the one hand avoid two It is contradicted between a opposite air-flow, influences air intake efficiency;On the other hand, it is played very well by the setting of guide protrusions 182 Guiding role, and then ensure smooth circulation of the air-flow shell 12 inside, the work noise of reduction air-conditioning equipment 1, Jin Erti The working efficiency of high air-conditioning equipment 1.
In one embodiment of the utility model, it is preferable that as shown in Figure 13 to Figure 17, the second foam component 20 with go out The opposite position in air port is provided with through-hole 202, to ensure that the air-flow in shell 12 passes through.
In this embodiment, the centre of the second foam component 20 is provided with through-hole 202, and the through-hole 202 is big The small size with air outlet is mutually matched, and then on the basis of the second foam component 20 of guarantee plays heat preservation, prevents condensation, is protected Card the smooth of air-flow passes through, and ensures that the normal use of air-conditioning equipment 1 specifically sets through-hole 202 to square hole.
In one embodiment of the utility model, it is preferable that as shown in Figure 18 and Figure 19, two wind wheel components include the One wind wheel component 14a and the second wind wheel component 14b;Two drive components include the first drive component 16a and the second drive component 16b;Wherein, the first drive component 16a is connected with the first wind wheel component 14a, the second drive component 16b and the second wind wheel component 14b is connected.
In this embodiment, two wind wheel components specifically include the first wind wheel component 14a and the second wind wheel component 14b, and two A drive component specifically includes the first drive component 16a and the second drive component 16b, and passes through the first drive component 16a drivings First wind wheel component 14a drives the second wind wheel component 14b by the second drive component 16b, realizes between two wind wheel components Asynchronous driving so that user can set the rotation speed of the first wind wheel component 14a and the second wind wheel component 14b according to actual needs Degree, and then ensure that the intake of both sides meets user's actual need, promote the applicability of air-conditioning equipment 1.
In one specific embodiment of the utility model, as shown in Figure 18 and Figure 19, the first wind wheel component 14a and the second wind Wheel assembly 14b is driven by the first drive component 16a and the second drive component 16b respectively, between the two independently of each other, can To ensure the asynchronous rotary between the first wind wheel component 14a and the second wind wheel component 14b, the applicability of air-conditioning equipment 1, tool are promoted Body, the first drive component 16a and the second drive component 16b include motor 162, short axle 164 and shaft coupling 166, respectively Independent driving.
In the utility model another specific embodiment, as shown in Figure 20 to Figure 22, wherein the first wind wheel component 14a with Second wind wheel component 14b is attached by connector 168, that is, a motor 162 is used to drive two wind wheel component rotations, and It is provided with driving wheel 172 on first wind wheel component 14a, is provided with driven wheel 170 on the second wind wheel component 14b, passes through connector 168 are attached, and ensure synchronous rotation between the two, promote the cooperation of the first wind wheel component 14a and the second wind wheel component 14b Degree, specifically, driving wheel 172 and driven wheel 170 can be gear, and connector 168 can be matched rack knot Structure or driving wheel 172 and driven wheel 170 are respectively synchronous pulley, and connector 168 is the synchronous belt being adapted to therewith.In this reality With in novel one embodiment, it is preferable that air-conditioning equipment 1 further includes:First wind guiding component 36, is set at air outlet;The Two wind guiding components 38, are set at air outlet;Wherein, between the first wind guiding component 36 and the second wind guiding component 38 and air outlet Distance differs.
In this embodiment, the first wind guiding component 36 and the second wind guiding component 38 are provided at air outlet, and first leads Wind component 36 and the second wind guiding component 38 are away from being differed at a distance from air outlet, i.e., setting up and down along air outlet direction, on the one hand, to avoid Interfering between the first wind guiding component 36 and the second wind guiding component 38;On the other hand, it is first passed through when air-flow passes through air outlet The first wind guiding component 36 is crossed, then passes through the second wind guiding component 38, by two layers of wind guiding component, wind effect is more preferable.
In one embodiment of the utility model, it is preferable that the first wind guiding component 36 include first driving means 362 and Multiple first wind deflectors;Second wind guiding component 38 includes the second driving device 382 and multiple second wind deflectors;Wherein, Duo Ge One wind deflector and multiple second wind deflectors are interspersed at air outlet.
In this embodiment, the first wind guiding component 36 and the second wind guiding component 38 be respectively arranged with multiple first wind deflectors and Multiple second wind deflectors, and multiple first wind deflectors are staggered with multiple second wind deflectors, air-flow passes through multiple first wind-guidings Gap between plate passes through the second wind-guiding group after the first wind guiding component 36 using the gap multiple second wind deflectors Part 38, and then realize and lead wind action;Further, it is respectively driven by first driving means 362 and the second driving device 382 Multiple first wind deflectors and multiple second wind deflectors, between the two independently of one another, can control respectively multiple first wind deflectors with The opening and closing degree of multiple second wind deflectors, and then a variety of wind-guiding modes are provided, promote the performance of air-conditioning equipment 1.
In one embodiment of the utility model, it is preferable that as shown in figure 23, first driving means 362 and second are driven Dynamic device 382 is symmetrically disposed on the first wind guiding component 36 and the opposite both ends of the second guidance set.
In this embodiment, first driving means 362 and the second driving device 382 are symmetrically arranged in the first wind-guiding Component 36 and the opposite both ends of the second wind guiding component 38, on the one hand, reasonable Arrangement first driving means 362 and the second driving device 382 position avoids interfering between the two;On the other hand, it by way of being arranged symmetrically, may be implemented to multiple first Symmetrical driving between wind deflector and multiple second wind deflectors, so realize multiple first wind deflectors and multiple second wind deflectors it Between synchronous expansion, it is synchronous reduce, there is higher applicability.
In specific embodiment, first driving means 362 include:First driving motor, the first transmission gear, the first rack and First driving motor is connected by the second transmission gear with the first transmission gear, and equal in one end of each the first wind deflector It is provided with the second transmission gear, and the first transmission gear is attached with the second transmission gear by the first rack, to ensure By whole the first wind deflector rotation of the first driving motor driving, and then realizes and the synchronous of multiple first wind deflectors is driven, Second driving device 382 includes:Second driving motor, third transmission gear, the second rack and the 4th transmission gear, and each One end of a second aerofoil is both provided with the 4th transmission gear, and third transmission gear and the 4th transmission gear pass through the second rack It is attached, to ensure through whole the second wind deflector rotation of the second driving motor driving, and then realizes to multiple second The synchronous driving of wind deflector, and then realize the synchronous expansion between multiple first wind deflectors and multiple second wind deflectors, synchronize and contract The small working efficiency for promoting air-conditioning equipment 1.
In specific embodiment, when the first wind guiding component 36 is in open state and the second wind guiding component 38 is closed When, by adjusting the angular adjustment wind direction and air output of multiple first wind deflectors, and then realize noninductive air-supply;It leads when first When wind component 36 and the second wind guiding component 38 are in open state, multiple first wind deflectors and multiple second wind deflectors are adjusted Angle so that multiple first wind deflectors cooperate with multiple second wind deflectors, increase wind-guiding area, to realize that Wind Volume recycles Formula is blown.
Specifically, when air-conditioning equipment 1 is under no-induction air supply pattern, when multiple first wind deflectors and multiple second are led When the angle of aerofoil is asynchronous, if the angle of the first wind deflector is more than the angle of the second wind deflector, the first wind deflector ensures Certain guide surface, and the second wind deflector provides the wind direction expanded outwardly, ensures air supplying distance;If the first wind deflector Angle be less than the second wind deflector angle, then the air output of the first wind deflector is smaller, and the second wind deflector correct air outlet angle, Outlet air is concentrated, and noninductive air-supply is realized in small range air-supply;And when air-conditioning equipment 1 is under the circulating air-supply of Wind Volume, Duo Ge One wind deflector rotates simultaneously with multiple second wind deflectors, and plurality of first wind deflector ensures that blowing range is constant, realizes interruption Property lasting natural wind, and multiple second wind deflectors ensure swipe air-supply, ensure that air-conditioning equipment 1 is shaken the head air-supply, and then realization A wide range of, remote, Wind Volume the swipe of air-conditioning equipment 1 is blown.
In one embodiment of the utility model, it is preferable that on multiple first wind deflectors and/or multiple second wind deflectors It is provided with multiple relieve heat holes.
In this embodiment, multiple relieve heat holes are provided on the first wind deflector and/or the second wind deflector, i.e. air-flow can be with It by the first wind deflector and/or the second wind deflector by multiple relieve heat holes, and then provides more wind-guiding modes to the user, carries The applicability of air-conditioning equipment 1 is risen, specifically, multiple relieve heat holes are on multiple first wind deflectors and/or multiple second wind deflectors It is evenly arranged.
In one embodiment of the utility model, it is preferable that as shown in figure 23, air-conditioning equipment 1 further includes:Surface frame 22, It is set on shell 12, surface frame 22 is located at air outlet;Wherein, one end of multiple first wind deflectors rotatably connects with surface frame 22 It connects, the other end is connected with first driving means 362, and one end of multiple second wind deflectors is rotatably connect with surface frame 22, separately One end is connected with the second driving device 382.
In this embodiment, air-conditioning equipment 1 further includes surface frame 22, and multiple first wind deflectors and multiple second wind deflectors divide The both ends opposite with surface frame 22 are not rotatably coupled, and then ensure the stabilization of multiple first wind deflectors and multiple second wind deflectors The rear end of multiple first wind deflectors is specifically rotatablely arranged in surface frame 22 by connection and position rotating, by multiple second The front end of wind deflector is rotatablely arranged in surface frame 22, to realize determining for multiple first wind deflectors and multiple second wind deflectors Position rotation, and when needing to drive multiple first wind deflectors or multiple second wind deflectors, it need to only be driven by first driving means 362 The front end for moving multiple first wind deflectors, the rear end of multiple second wind deflectors is driven by the second driving device 382, more to realize The independent driving of a first wind deflector and multiple second wind deflectors, the two is non-interference, promotes the applicability of air-conditioning equipment 1.
In one embodiment of the utility model, it is preferable that as shown in Fig. 3, Fig. 7 and Figure 23, air-conditioning equipment 1 also wraps It includes:Flow distribution plate 24 is set to surface frame 22 towards the side of the first foam component 18;Panel 26, is set at air outlet, panel 26 Positioned at side of the surface frame 22 far from the first foam component 18.
In this embodiment, flow distribution plate 24, flow distribution plate 24 and guide protrusions 182 are additionally provided at the air outlet of shell 12 It cooperates, after guide protrusions 182 play the role of guiding to air-flow, when air-flow is flow at air outlet, flow distribution plate 24 is again It is secondary that air-flow is shunted, and then ensure the smooth outflow of air-flow, promote the flowing velocity of air-flow;And it is set on the outside of air outlet It is equipped with panel 26, on the one hand plays the role of protecting internal structure, beautifying and decorating;On the other hand, can be arranged on panel 26 There are the operation pages such as control button, it is convenient for the user to operate.
In one embodiment of the utility model, it is preferable that as shown in Fig. 3, Fig. 7 and Figure 23, air-conditioning equipment 1 also wraps It includes:Evaporator assemblies 28 are set in shell 12, and evaporator assemblies 28 are located at the first wind wheel component 14a and the second wind wheel component Between 14b;Partition board 30 is arranged in shell 12, and shell 12 is separated into heat exchanging chamber and wind wheel chamber by partition board 30;Wherein, the first wind Wheel assembly 14a and the second wind wheel component 14b is located at wind wheel chamber, and evaporator assemblies 28 and the first foam component 18 are located at heat exchanging chamber.
In this embodiment, it is provided with partition board 30 in shell 12, shell 12 is distinguished by heat exchanging chamber and wind by partition board 30 Chamber is taken turns, specifically, there are two wind wheel chambers for setting, and heat exchanging chamber is located between two wind wheel chambers, and steaming is additionally provided in heat exchanging chamber Device assembly 28 is sent out, when air-conditioning equipment 1 works, air-flow is blown to heat exchanging chamber by the first wind wheel component 14a and the second wind wheel component 14b It is interior, cold and hot exchange is realized under the action of evaporator assemblies 28, then shell 12 is discharged by air outlet, realize the cycle of air-flow, And the setting of wind wheel chamber and heat exchanging chamber, it can ensure the two to avoid interfering with each other between wind wheel component and evaporator assemblies 28 Between independence, promoted air-conditioning equipment 1 working efficiency.
In one embodiment of the utility model, it is preferable that as shown in Fig. 5, Fig. 6 and Figure 23, air-conditioning equipment 1 also wraps It includes:Two screen modules 32, two screen modules 32 are respectively arranged at the first wind wheel component 14a and the second wind wheel component At 14b;Two scroll assemblies, two scroll assemblies are respectively arranged at air inlet, the first wind wheel component 14a and the second wind wheel group Part 14b is located in two scroll assemblies.
In this embodiment, filter screen group is being provided at the first wind wheel component 14a and the second wind wheel component 14b respectively Part 32 is filtered it before gas is sucked into wind wheel component, avoids dust impurity by the setting of screen modules 32 Etc. the clean level for entering to wind wheel component internal, guarantee air-conditioning equipment 1 and its delivery air;Further, two volute groups Part specifically includes the first scroll assembly 34a and the second scroll assembly 34b, and the outside of the first wind wheel component 14a is provided with first Scroll assembly 34a is provided with the second scroll assembly 34b in the outside of the second wind wheel component 14b, plays a certain protective role, It avoids the high-speed rotating wind wheel of wind wheel component internal from colliding with other parts, promotes the stability and safety of air-conditioning equipment 1 Property.
In one embodiment of the utility model, it is preferable that as shown in figure 23, air-conditioning equipment 1 further includes:Cover board 40, It is set in shell 12;Display module is set on panel 26, the performance parameter for showing air-conditioning equipment 1.
In this embodiment, it is provided with cover board 40 in shell 12, is further ensured that its leakproofness and safety;In panel 26 On be provided with display module, the performance parameter for showing air-conditioning equipment 1 understands the work of air-conditioning equipment 1 convenient for user in real time State, it is convenient for the user to operate.
In one embodiment of the utility model, it is preferable that the quantity of air inlet is two, and two air inlets are set to The left and right ends of shell 12.
In this embodiment, be two in the quantity of air inlet, and be symmetrically distributed in the left and right ends of shell 12, i.e., it is each A wind wheel component corresponds to an air inlet, and then expands incoming air area, and then ensures the flow of air-flow, promotes air-conditioning equipment 1 Working efficiency.
In one embodiment of the utility model, it is preferable that the quantity of air outlet is two, and two air outlets are set to The center of 12 bottom wall of shell.
In this embodiment, the quantity of air outlet is two, is uniformly distributed in the center of gas lower face, and shunt Plate 24 is located between two air outlets, plays the role of shunting, coordinates two air outlets and two air inlets, and then ensure gas Velocity of liquid assets, promoted air-conditioning equipment 1 working efficiency.
In specific embodiment, air-conditioning equipment 1 provided by the utility model shell 12 left and right ends setting there are two into Air port, in lower end, there are two air inlets for setting, and the first wind wheel component 14a and the second wind wheel component 14b are respectively arranged in shell The air inlet at 12 both ends, and driven respectively by the first drive component 16a and the second drive component 16b, between the two Independently of each other, the asynchronous driving of two wind wheel components is realized so that user can set two wind wheel components according to actual needs Rotary speed, and then ensure that the intake of both sides meets user's actual need, promote the applicability of air-conditioning equipment 1;Further Ground, the first foam component 18 is provided in the roof of shell 12, and air outlet side is provided with the second foam component 20, passes through One foam component 18 and the second foam component 20 cooperate, and play good insulation effect, avoid 1 internal heat of air-conditioning equipment It scatters and disappears, reduces energy consumption, and the second heat insulation module can play anti-condensation effect, avoid producing at the air outlet of air-conditioning equipment 1 Raw dew condensation phenomenon, and the first foam component 18 has guide protrusions 182 towards air outlet side is extended, is provided at air outlet Flow distribution plate 24, cooperates between the two, and when air-conditioning equipment 1 works, two wind wheel components blow air-flow from opposite both ends Inside shell 12, the flow direction of air-flow is opposite at this time, and when the air-flow of both sides flow to guide protrusions 182, it is being oriented to Protrusion 182 under the action of flow direction change, towards air outlet at flow, when air-flow is flow at air outlet, shunting Plate 24 again shunts air-flow, and then shell 12 is discharged by two air outlets with ensureing airflow smooth, to realize two Face is entered the wind, the airflow circulating of intermediate outlet air, ensures the smooth outflow of air-flow, is reduced work noise, is prevented reflux, suck-back etc. Situation;Further, the first wind guiding component 36 and the second wind guiding component 38, the first wind-guiding group are vertically disposed at air outlet Part 36 and the second wind guiding component 38 are respectively arranged with multiple first wind deflectors and multiple second wind deflectors, and are filled by the first driving Set 362 and second driving device 382 respectively drive, between the two independently of one another, can control respectively multiple first wind deflectors with The opening and closing degree of multiple second wind deflectors, and then a variety of wind-guiding modes are provided, and first driving means 362 and the second driving device 382 are symmetric at the opposite both ends of the first wind guiding component 36 and the second wind guiding component 38, may be implemented to lead to multiple first Symmetrical driving between aerofoil and multiple second wind deflectors, and then realize between multiple first wind deflectors and multiple second wind deflectors Synchronous expansion, it is synchronous reduce, there is higher applicability;Further, it is provided with display module on panel 26, be used for The performance parameter for showing air-conditioning equipment 1, the working condition of air-conditioning equipment 1 is understood convenient for user in real time, convenient for the user to operate.
In specific embodiment, air-conditioning equipment 1 provided by the utility model shell 12 left and right ends setting there are two into Air port, in lower end, there are two air inlets for setting, and the first wind wheel component 14a and the second wind wheel component 14b are respectively arranged in shell The air inlet at 12 both ends, and driving wheel 172 is provided on the first wind wheel component 14a, it is provided on the second wind wheel component 14b Both driven wheel 170 is attached by connector 168, and two wind wheel component rotations are driven using a motor 162, ensure Between synchronous rotation, promoted the first wind wheel component 14a and the second wind wheel component 14b degree of cooperation;Further, in shell 12 roof is provided with the first foam component 18, and air outlet side is provided with the second foam component 20, passes through the first foam group Part 18 and the second foam component 20 cooperate, and play good insulation effect, and 1 internal heat of air-conditioning equipment is avoided to scatter and disappear, drop Low energy consumption, and the second heat insulation module can play anti-condensation effect, avoid the generation condensation at the air outlet of air-conditioning equipment 1 existing As, and the first foam component 18 has guide protrusions 182 towards air outlet side is extended, air inlet is provided with flow distribution plate 24, it cooperates between the two, when air-conditioning equipment 1 works, air-flow is blown shell 12 by two wind wheel components from opposite both ends Inside, the flow direction of air-flow is opposite at this time, and when the air-flow of both sides flow to guide protrusions 182, in guide protrusions 182 Under the action of flow direction change, towards air outlet at flow, when air-flow is flow at air outlet, flow distribution plate 24 is again Air-flow is shunted, and then shell 12 is discharged by two air outlets with ensureing airflow smooth, to realize that two sides is entered the wind, in Between outlet air airflow circulating, situations such as ensureing the smooth outflow of air-flow, reduce work noise, prevent reflux, suck-back;More into One step, the first wind guiding component 36 and the second wind guiding component 38, the first wind guiding component 36 and are vertically disposed at air outlet Two wind guiding components 38 are respectively arranged with multiple first wind deflectors and multiple second wind deflectors, and by first driving means 362 and Second driving device 382 respectively drives, and between the two independently of one another, can control multiple first wind deflectors and multiple second respectively The opening and closing degree of wind deflector, and then a variety of wind-guiding modes are provided, and first driving means 362 and the second driving device 382 are the One wind guiding component 36 and the opposite both ends of the second wind guiding component 38 are symmetric, and may be implemented to multiple first wind deflectors and more Symmetrical driving between a second wind deflector, and then realize the synchronous expansion between multiple first wind deflectors and multiple second wind deflectors It opens, synchronous diminution, there is higher applicability;Further, it is provided with display module on panel 26, for showing air-conditioning The performance parameter of equipment 1 understands the working condition of air-conditioning equipment 1 convenient for user in real time, convenient for the user to operate.
Term " multiple " then refers to two or more in the description of the present invention, unless otherwise restricted clearly, The orientation or positional relationship of the instructions such as term "upper", "lower" is to be based on the orientation or positional relationship shown in the drawings, merely to just In description the utility model and simplify description, specific side must be had by not indicating or implying the indicated device or element Position, with specific azimuth configuration and operation, therefore should not be understood as limiting the present invention;Term " connection ", " installation ", " fixation " etc. shall be understood in a broad sense, for example, " connection " may be a fixed connection, may be a detachable connection, or integrally Connection;It can be directly connected, it can also be indirectly connected through an intermediary.For the ordinary skill in the art, The concrete meaning of above-mentioned term in the present invention can be understood as the case may be.
In the description of this specification, the description of term " one embodiment ", " some embodiments ", " specific embodiment " etc. Mean that particular features, structures, materials, or characteristics described in conjunction with this embodiment or example are contained at least the one of the utility model In a embodiment or example.In the present specification, schematic expression of the above terms are not necessarily referring to identical embodiment Or example.Moreover, the particular features, structures, materials, or characteristics of description can be in any one or more embodiments or example In can be combined in any suitable manner.
The preferred embodiment that these are only the utility model, is not intended to limit the utility model, for this field Technical staff for, various modifications and changes may be made to the present invention.Within the spirit and principle of the utility model, Any modification, equivalent replacement, improvement and so on should be included within the scope of protection of this utility model.

Claims (15)

1. a kind of air-conditioning equipment, which is characterized in that including:
Shell, setting air inlet and air outlet on the shell;
At least two wind wheel components, at least two wind wheels component are respectively arranged at the opposite both ends of the shell;
At least two drive components are set in the shell, and at least two drive component is respectively with described at least two Wind wheel component is connected;
First foam component is set in the shell, and first foam component is located at the shell far from the air outlet Side;
Second foam component is set at the air outlet.
2. air-conditioning equipment according to claim 1, which is characterized in that
First foam component is extended towards the air outlet side guide protrusions, at least two wind wheels component It is arranged towards the side wall of the guide protrusions.
3. air-conditioning equipment according to claim 1, which is characterized in that
Second foam component position opposite with the air outlet is provided with through-hole, to ensure that the air-flow in the shell is logical It crosses.
4. air-conditioning equipment according to claim 1, which is characterized in that
At least two wind wheels component includes the first wind wheel component and the second wind wheel component;
At least two drive component includes the first drive component and the second drive component;
Wherein, first drive component is connected with the first wind wheel component, second drive component and described second Wind wheel component is connected.
5. air-conditioning equipment according to claim 1, which is characterized in that further include:
First wind guiding component is set at the air outlet;
Second wind guiding component is set at the air outlet;
Wherein, first wind guiding component and the distance between second wind guiding component and the air outlet differ.
6. air-conditioning equipment according to claim 5, which is characterized in that
First wind guiding component includes first driving means and multiple first wind deflectors;
Second wind guiding component includes the second driving device and multiple second wind deflectors;
Wherein, the multiple first wind deflector and the multiple second wind deflector are interspersed at the air outlet.
7. air-conditioning equipment according to claim 6, which is characterized in that
The first driving means and second driving device are symmetrically disposed on first wind guiding component and described second lead The both ends opposite to component.
8. air-conditioning equipment according to claim 6, which is characterized in that
It is provided with multiple relieve heat holes on the multiple first wind deflector and/or the multiple second wind deflector.
9. air-conditioning equipment according to claim 6, which is characterized in that further include:
Surface frame is set on the shell, and the surface frame is located at the air outlet;
Wherein, one end of the multiple first wind deflector is rotatably connect with the surface frame, and the other end drives with described first Device is connected, and one end of the multiple second wind deflector is rotatably connect with the surface frame, and the other end drives with described second Dynamic device is connected.
10. air-conditioning equipment according to claim 9, which is characterized in that further include:
Flow distribution plate is set to the surface frame towards the side of first foam component;
Panel is set at the air outlet, and the panel is located at side of the surface frame far from first foam component.
11. air-conditioning equipment according to claim 1, which is characterized in that further include:
Evaporator assemblies are set in the shell, and the evaporator assemblies are between at least two wind wheels component;
Partition board is arranged in the shell, and the shell is separated into heat exchanging chamber and wind wheel chamber by the partition board;
Wherein, at least two wind wheels component is located at the wind wheel chamber, the evaporator assemblies and first foam component Positioned at the heat exchanging chamber.
12. air-conditioning equipment according to claim 1, which is characterized in that further include:
At least two screen modules, at least two screen modules are respectively arranged at at least two wind wheels component Place;
At least two scroll assemblies, at least two scroll assembly are respectively arranged at the air inlet, and described at least two Wind wheel component is located at least two scroll assembly.
13. air-conditioning equipment according to claim 10, which is characterized in that further include:
Cover board is set in the shell;
Display module is set on the panel, the performance parameter for showing the air-conditioning equipment.
14. air-conditioning equipment according to any one of claim 1 to 13, which is characterized in that
The quantity of the air inlet is two, and two air inlets are set to the left and right ends of the shell.
15. air-conditioning equipment according to any one of claim 1 to 13, which is characterized in that
The quantity of the air outlet is two, and two air outlets are set to the center of the shell bottom wall.
CN201721878334.4U 2017-12-28 2017-12-28 Air-conditioning equipment Active CN207922407U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721878334.4U CN207922407U (en) 2017-12-28 2017-12-28 Air-conditioning equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721878334.4U CN207922407U (en) 2017-12-28 2017-12-28 Air-conditioning equipment

Publications (1)

Publication Number Publication Date
CN207922407U true CN207922407U (en) 2018-09-28

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721878334.4U Active CN207922407U (en) 2017-12-28 2017-12-28 Air-conditioning equipment

Country Status (1)

Country Link
CN (1) CN207922407U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108006848A (en) * 2017-12-28 2018-05-08 广东美的制冷设备有限公司 Air-conditioning equipment
CN109297090A (en) * 2018-11-19 2019-02-01 宁波奥克斯电气股份有限公司 A kind of air-cooled ducted air conditioner, air conditioner and electric-controlled box

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108006848A (en) * 2017-12-28 2018-05-08 广东美的制冷设备有限公司 Air-conditioning equipment
CN109297090A (en) * 2018-11-19 2019-02-01 宁波奥克斯电气股份有限公司 A kind of air-cooled ducted air conditioner, air conditioner and electric-controlled box

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