WO2017101671A1 - 用于空调器的导风板组件及空调器 - Google Patents

用于空调器的导风板组件及空调器 Download PDF

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Publication number
WO2017101671A1
WO2017101671A1 PCT/CN2016/107763 CN2016107763W WO2017101671A1 WO 2017101671 A1 WO2017101671 A1 WO 2017101671A1 CN 2016107763 W CN2016107763 W CN 2016107763W WO 2017101671 A1 WO2017101671 A1 WO 2017101671A1
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WO
WIPO (PCT)
Prior art keywords
air
wind
air conditioner
assembly
diffusing
Prior art date
Application number
PCT/CN2016/107763
Other languages
English (en)
French (fr)
Inventor
张�浩
刘奇伟
谭周衡
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
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
Priority claimed from CN201510971126.8A external-priority patent/CN105387594A/zh
Priority claimed from CN201521081304.1U external-priority patent/CN205842971U/zh
Priority claimed from CN201521077657.4U external-priority patent/CN205351685U/zh
Priority claimed from CN201521077855.0U external-priority patent/CN205351686U/zh
Priority claimed from CN201521077829.8U external-priority patent/CN205351696U/zh
Priority claimed from CN201521081357.3U external-priority patent/CN205351680U/zh
Priority claimed from CN201521075183.XU external-priority patent/CN205372947U/zh
Priority claimed from CN201510967586.3A external-priority patent/CN105402874B/zh
Priority claimed from CN201521075155.8U external-priority patent/CN205641417U/zh
Priority claimed from CN201510973778.5A external-priority patent/CN105387599A/zh
Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2017101671A1 publication Critical patent/WO2017101671A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre

Definitions

  • the present invention relates to the field of air conditioning technology, and in particular to an air deflector assembly and an air conditioner for an air conditioner.
  • the present invention aims to solve at least one of the technical problems in the related art to some extent.
  • the present invention proposes an air deflector assembly for an air conditioner, the wind deflector assembly for an air conditioner having a windless wind guiding effect.
  • the present invention also proposes an air conditioner having the wind deflector assembly for an air conditioner as described above.
  • An air deflector assembly for an air conditioner includes: an air deflector, the air deflector is pivotally disposed at an air outlet of the air conditioner, and the air deflector Having at least one mounting opening; at least one set of first air diffusing components, the first air diffusing component being of a single layer structure and rotatably disposed on the mounting opening for diffusing and flowing wind blown by the air outlet .
  • An air deflector assembly for an air conditioner by providing at least one set of first air diffusing components on the air deflector, whereby the wind blown through the first air diffusing component can be diffused
  • the wind can be prevented from being directly blown out from the air outlet in the same direction, thereby achieving the windless effect of the air conditioner and improving the comfort of use of the air conditioner.
  • the first blast assembly is in one-to-one correspondence with the mounting opening.
  • the inner peripheral wall of the mounting opening is provided with a windproof groove, and an outer circumference of the first air diffusing component is located in the wind shielding groove.
  • the first blast assembly is coupled to the wind deflector by a connecting bracket.
  • the connecting brackets are one and the connecting brackets extend along the length of the wind deflector, and the at least one set of first wind diffusing assemblies are all connected to the connecting brackets.
  • one end of the connecting bracket is connected to the first air diffusing component, and the other end is connected to the wind deflector.
  • each of the first blast assembly passes through a plurality of the connecting brackets and the guide The wind plates are connected, and a plurality of the connecting brackets on each of the first blast assemblies are evenly arranged along a circumferential direction of the rotation axis thereof.
  • each of the first blast assemblies is coupled to the wind deflector by one of the connecting brackets.
  • the connecting bracket is a metal bracket or a plastic bracket.
  • the connecting bracket is integrally formed with the wind deflector.
  • the first blast assembly includes: a diffuser body rotatably disposed on the mounting opening; a pivot shaft, the pivot shaft being disposed on the connecting bracket
  • the wind diffusing body is pivotally sleeved on the pivot shaft.
  • the first blast assembly further includes a bearing, an inner ring of the bearing mating with the pivot shaft, and an outer ring of the bearing mating with the venting body.
  • At least one of the plurality of wind diffusing bodies is a wind wheel.
  • the wind wheel comprises: a middle wind ring, a middle of the middle wind ring is provided with a pivot hole for the pivot shaft to pass through; a plurality of blades, a plurality of the blades are disposed at the The outer peripheral wall of the central wind ring is spaced apart along the circumferential direction of the central wind ring.
  • the number of blades is from 3 to 24.
  • the blade is 8 pieces, 12 pieces or 15 pieces.
  • an angle between a plane of the blade and an air outlet direction of the air outlet is 10°-80°.
  • the angle between the plane of the blade and the direction of the wind exit of the air outlet is 20° or 60°.
  • the wind wheel further includes: a wind guide ring connecting the free ends of at least two adjacent ones of the blades.
  • the air guiding ring is annular.
  • At least one of the plurality of venting bodies is a grid.
  • the grille includes: a spacer, the spacer is provided with a pivot hole through which the pivot shaft passes; a plurality of windshields, the plurality of windshield distribution An angle between each of the windshield and the air outlet direction of the air outlet is provided on both sides of the spacer, wherein the clip of at least one of the plurality of windshields The angles of the corners and the remaining windshields are not equal.
  • the angle between the windshield and the air outlet of the air outlet is 10°-80°.
  • the plurality of windshields extend substantially in the same direction.
  • the grille further includes a wind guide ring, the air guide ring is jacketed on the pivot shaft, and the spacer extends in a radial direction of the air guide ring, the plurality of One end of the windshield is connected to the inner peripheral wall of the air guiding ring, and the other end is connected to the spacer.
  • part of the wind diffusing body is a wind wheel and the rest is a grille.
  • the pivot shaft is threadedly coupled to the connecting bracket.
  • the method further includes: at least one set of second blast assembly, the second blast assembly is coupled to the air outlet by a fixing bracket, and the second blast assembly is at the air outlet
  • the wind is rotatable to diffusely flow the wind blown out by the air outlet.
  • the air deflector and the second air diffusing component are juxtaposed along an air outlet direction of the air outlet, and the second air diffusing component is located at the air deflector One side of the interior of the air conditioner.
  • the fixing bracket is one, one end of the fixing bracket is connected to the left end of the air outlet, and the other end is connected to the right end of the air outlet, and the second air distribution component is provided. On the fixed bracket.
  • the fixing bracket is in one-to-one correspondence with the second air diffusing component, one end of the fixing bracket is connected to the air outlet, and the other end is connected to the second air distributing component.
  • one end of the fixing bracket is connected to an upper end or a lower end of the air outlet.
  • the second wind diffusing component is formed as a single layer structure and is a wind wheel or a grill.
  • the second blast assembly is formed in a two-layer structure and is a wind wheel or grill or a combination of a wind wheel and a grill.
  • the second wind diffusing components are in groups and are evenly distributed.
  • the configuration of the first blast assembly is the same as the configuration of the second blast assembly.
  • an air conditioner is provided with an air outlet and includes an air deflector assembly for an air conditioner as described above.
  • the air conditioner of the embodiment of the present invention by providing at least one set of the first louver assembly on the air deflector, the wind blown through the first blast assembly can be diffused to prevent the wind from flowing in the same direction. It is directly blown out from the air outlet, and the airless effect of the air conditioner can be realized, and the use comfort of the air conditioner is improved.
  • FIG. 1 is a schematic structural view of an air deflector of an air conditioner according to an embodiment of the present invention
  • Figure 2 is a cross-sectional view taken along line A-A of Figure 1;
  • FIG. 3 is a front elevational view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 4 is a schematic perspective structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 5 is a perspective exploded view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 7 is a cross-sectional view taken along line B-B of Figure 6;
  • Figure 8 is a front elevational view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 9 is a schematic perspective structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 11 is a cross-sectional view taken along line C-C of Figure 10;
  • Figure 12 is a front elevational view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 13 is a schematic perspective structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 14 is a schematic structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 15 is a cross-sectional view taken along line D-D of Figure 14;
  • Figure 16 is a front elevational view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 17 is a perspective structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 18 is a front elevational view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 19 is a front elevational view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 20 is a front elevational view of an air conditioner according to an embodiment of the present invention, the air conditioner is an air conditioner hook;
  • 21 is a perspective view of a three-dimensional structure of an air conditioner according to an embodiment of the present invention, wherein the air deflector is in a state in which the air outlet is closed;
  • FIG. 22 is a schematic structural view of an air conditioner according to an embodiment of the present invention, wherein a wind deflector is in a state of opening an air outlet;
  • FIG. 23 is a schematic structural view of an air conditioner according to an embodiment of the present invention, wherein a wind deflector is in a state of opening an air outlet;
  • FIG. 24 is a schematic perspective structural view of an air conditioner according to an embodiment of the present invention, and the air conditioner is a mobile air conditioner;
  • Figure 25 is a perspective view showing the structure of an air conditioner according to an embodiment of the present invention, the air conditioner being an air conditioner cabinet;
  • Figure 26 is a perspective view showing the structure of an air conditioner according to an embodiment of the present invention.
  • Figure 27 is a schematic structural view of an air conditioner according to an embodiment of the present invention.
  • Figure 28 is an enlarged schematic view showing a partial structure of E in Figure 27;
  • FIG. 29 is a schematic perspective structural view of an air conditioner according to an embodiment of the present invention.
  • Figure 30 is a schematic structural view of an air conditioner according to an embodiment of the present invention.
  • Figure 31 is an enlarged schematic view showing a partial structure of the portion F in Figure 30;
  • Figure 32 is a cross-sectional view along line G-G of Figure 30;
  • Figure 33 is a perspective view showing the structure of an air conditioner according to an embodiment of the present invention.
  • Figure 34 is a schematic structural view of an air conditioner according to an embodiment of the present invention.
  • Figure 35 is a cross-sectional view taken along line H-H of Figure 34;
  • Figure 36 is an enlarged schematic view showing a partial structure of I in Figure 34;
  • FIG. 37 is a schematic perspective structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 38 is a schematic structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • 39 is a cross-sectional view showing an air deflector of an air conditioner according to an embodiment of the present invention.
  • FIG. 40 is a schematic perspective structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • 41 is a schematic structural view of an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 42 is a cross-sectional view showing an air deflector of an air conditioner according to an embodiment of the present invention.
  • Figure 43 is a schematic structural view of an air conditioner according to an embodiment of the present invention.
  • Figure 44 is a schematic structural view of an air conditioner according to an embodiment of the present invention.
  • Figure 45 is a partially enlarged schematic view showing a portion J in Figure 44;
  • Figure 46 is a schematic structural view of an air conditioner according to an embodiment of the present invention.
  • Air deflector assembly 1 Air deflector assembly 1,
  • a spherical diffuser 230 a diffuser outlet 231, and an elastic flange 232,
  • the swinging blade assembly 240, the pendulum blade 241, the fitting groove 242, the outer surface 243 of the pendulum blade assembly, the rotating ring 244, the connecting shaft 245, and the groove 246 are inserted.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, features defining “first” and “second” may include one or more of the features either explicitly or implicitly. In the description of the present invention, "a plurality” means two or more unless otherwise stated.
  • connection In the description of the present invention, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • the specific meaning of the above terms in the present invention can be understood in a specific case by those skilled in the art.
  • an air deflector assembly 1 for an air conditioner 2 includes a wind deflector 100 and at least one set of first wind diffusing assemblies 200.
  • the air deflector 100 is pivotally disposed at the air outlet 22 of the air conditioner 2, and the air deflector 100 is provided with at least one mounting port 110.
  • the first blast assembly 200 has a single-layer structure and is rotatably disposed on the mounting opening 110 to be adapted to diffuse and flow the wind blown out by the air outlet 22.
  • the air deflector 100 can change the state according to requirements. For example, when the air conditioner 2 is in a state of being stopped, the air deflector 100 can block the air outlet 22; when the air conditioner 2 needs to blow air into the environment When the air deflector 100 opens the air outlet 22, the wind can be directly blown out from the air outlet 22; when the air conditioner 2 needs to blow air into the environment, and the air deflector 100 closes the air outlet 22, the wind can pass through the first The wind diffusing assembly 200 is blown out.
  • the wind blown through the first wind diffusing assembly 200 flows in a diffused manner, so that the flow direction of the wind can be changed, the wind flows in different directions, the air supply distance is shortened, and the wind is directly blown to the human body, thereby realizing the air conditioner. 2 no wind effect.
  • the wind deflector assembly 1 for an air conditioner by providing at least one set of the first blast assembly 200 on the wind deflector 100, whereby the wind blown through the first blast assembly 200 can be presented
  • the flow in the manner of diffusion prevents the wind from being directly blown out from the air outlet 22 in the same direction, thereby achieving the windless effect of the air conditioner 2 and improving the comfort of use of the air conditioner.
  • an air conditioner 2 includes a housing 21, a wind deflector 100, and at least one set of first air diffusing assemblies 200.
  • the casing 21 has an air outlet 22 through which the wind can flow out when the air conditioner 2 needs to cool, heat or ventilate the environment in which it is located.
  • the air deflector 100 is pivotally disposed at the air outlet 22, and the air deflector 100 is provided with at least one mounting port 110.
  • the first air diffusing assembly 200 is disposed on the mounting port 110 to be adapted to be blown out from the air outlet 22. The wind spreads and flows. It can be understood that the wind can change in the original flow direction after passing through the first wind diffusing assembly 200 to flow in different directions.
  • the air deflector 100 can change the state according to requirements. For example, when the air conditioner 2 is in a state of being stopped, the air deflector 100 can block the air outlet 22; when the air conditioner 2 needs to blow air into the environment When the air deflector 100 opens the air outlet 22, the wind can be directly blown out from the air outlet 22; when the air conditioner 2 needs to blow air into the environment, and the air deflector 100 closes the air outlet 22, the wind can pass through the first The wind diffusing assembly 200 is blown out.
  • the wind blown through the first wind diffusing assembly 200 flows in a diffused manner, so that the flow direction of the wind can be changed, the wind flows in different directions, the air supply distance is shortened, and the wind is directly blown to the human body, thereby realizing the air conditioner. 2 no wind effect.
  • the air deflector 100 of the air conditioner 2 when the air deflector 100 of the air conditioner 2 is in a state of blocking the air outlet 22, it is empty.
  • the regulator 2 can be in a stop running state or in a windless running state; as shown in FIG. 22 and FIG. 23, when the air deflector 100 of the air conditioner 2 is in a state in which the air outlet 22 is opened, the airflow generated by the air conditioner 2 can be Blow directly from the air outlet 22.
  • the air blown through the first air diffusing module 200 can be diffused, so that the wind can be prevented from being directly blown out from the air outlet 22 in the same direction.
  • the windless effect of the air conditioner 2 is achieved, and the use comfort of the air conditioner is improved.
  • the first blast assembly 200 is rotatable at the air outlet 22, thereby facilitating the changing flow direction of the wind, causing the wind to flow in different directions, shortening the air supply distance, and preventing the wind from being directly blown to the human body. Further, the windless effect of the air conditioner 2 is further achieved.
  • the air conditioner 2 may be an air treatment device such as an air conditioner cabinet, an air conditioner hook, or a mobile air conditioner 2.
  • the air conditioner 2 is an air conditioner hook; as shown in Fig. 24, the air conditioner 2 is a mobile air conditioner 2; as shown in Fig. 25, the air conditioner 2 is an air conditioner cabinet.
  • the wind deflector 100 of the plurality of air conditioners 2 is provided with a first air diffusing assembly 200, and the wind generated by the air conditioner 2 can flow out from the air outlet 22 of the air conditioner 2 in a diffusing manner, so that the air conditioner 2 has No wind effect.
  • the first blast assembly 200 may be in one-to-one correspondence with the mounting opening 110.
  • the first wind diffusing assembly 200 is in one-to-one correspondence with the mounting port 110 .
  • the air deflector 100 has eight mounting openings 110.
  • the first air diffusing assembly 200 also has eight sets and corresponds one-to-one with the mounting opening 110; for example, In the example shown in FIG. 6, the air deflector 100 has six mounting openings 110. Accordingly, the first air diffusing assembly 200 also has six sets and corresponds one-to-one with the mounting opening 110.
  • the plurality of first blast assemblies 200 are evenly distributed. In the examples shown in FIGS. 1, 6, 10, 14, and 18, the spacing between any two adjacent first wind diffusing assemblies 200 is equal. It should be noted that the arrangement manner of the plurality of sets of the first blast assembly 200 is not limited thereto. For example, the plurality of sets of the first blast assemblies 200 may be arranged according to other rules.
  • the projections of the centers of the plurality of first blast assemblies 200 on the wind deflector 100 are on the same straight line or curve.
  • a plurality of first blast assemblies 200 are rotatably disposed at the mounting opening 110 and projections of the centers of rotation of the plurality of first blast assemblies 200 on the wind deflector 100 are on the same line or curve.
  • the “rotation center” refers to a point on the rotation axis of the first blast assembly 200.
  • the projections of the centers of rotation of the plurality of sets of first wind diffusing assemblies 200 on the wind deflector 100 are on the same line; In the example shown in FIG.
  • the projections of the center of rotation of the plurality of sets of first blast assemblies 200 on the wind deflector 100 are on a curve. Thereby, the structural diversity of the air deflector 100 can be increased, the use requirements of the air conditioners 2 of different models can be satisfied, and the effect of the windlessness of the air conditioner 2 can also be improved.
  • the inner peripheral wall of the mounting opening 110 is provided with a wind-shielding groove 111, and the outer peripheral edge of the first blast assembly 200 is located in the wind-shielding groove 111.
  • the air located at the rear side of the first blast assembly 200 is lower in temperature, and the temperature of the air located on the front side of the first blast assembly 200 is higher, when the cold air is along Flow in the direction indicated by the arrow a in Figures 2, 7, 11 and 15 when the temperature is higher
  • the first blast assembly is provided by providing the windproof groove 111 on the inner peripheral wall of the mounting opening 110.
  • the outer circumference of the 200 is located in the wind shield groove 111, so that the airflow can be blocked from being blown toward the first wind diffusing assembly 200 in the direction indicated by the arrow a, thereby effectively preventing the outer peripheral edge of the first wind diffusing assembly 200 from being generated.
  • the condensed water can thereby effectively improve the performance of the air conditioner 2.
  • the first blast assembly 200 is coupled to the wind deflector 100 through the connection bracket 120, thereby facilitating mounting of the first blast assembly 200 to the wind deflector 100.
  • the connecting bracket 120 may be one and the connecting bracket 120 extends along the length of the wind deflector 100, and at least one set of the first air diffusing assembly 200 is connected to the connecting bracket 120.
  • the connecting bracket 120 is disposed on the inner surface 113 of the wind deflector, and the connecting bracket 120 may extend from the left end of the wind deflector 100 (for example, the left end of the wind deflector 100 as shown in FIG. 1) to the wind deflector 100.
  • the right end (for example, the right end of the air deflector 100 is shown in FIG. 1), the left end of the connecting bracket 120 is connected to the left end of the wind deflector 100, and the right end of the connecting bracket 120 is connected to the right end of the wind deflector 100.
  • the wind assembly 200 is one
  • the first blast assembly 200 is mounted on the connection bracket 120.
  • the first blast assembly 200 can be spaced apart on the connection bracket 120.
  • one end of the connecting bracket 120 is connected to the first wind diffusing assembly 200 , and the other end is connected to the wind deflecting plate 100 , thereby
  • the connection strength between the first wind diffusing assembly 200 and the wind deflector 100 can be increased, and the service life of the wind deflector 100 can be extended.
  • each of the first blast assemblies 200 is connected to the wind deflector 100 through a connecting bracket 120, thereby simplifying the structure of the connecting bracket 120, saving production costs; In the example shown in FIGS.
  • each of the first blast assemblies 200 is coupled to the wind deflector 100 by a plurality of connecting brackets 120 , and a plurality of connecting brackets on each set of the first blast assembly 200 .
  • the 120 is evenly arranged along the circumferential direction of the rotation axis thereof, and the first blast assembly 200 is commonly connected to one end of the plurality of connection brackets 120, whereby the connection stability of the first blast assembly 200 and the wind guide 100 can be improved.
  • the connecting bracket 120 can be a metal bracket, thereby not only improving the structural strength of the connecting bracket 120, but also reducing the wind noise of the air deflector assembly 1, thereby facilitating the use of the air conditioner 2. performance.
  • the material of the connection bracket 120 is not limited thereto.
  • the connection bracket 120 may be a plastic bracket, whereby the production cost can be reduced.
  • the connection bracket 120 may be integrally formed with the wind guide plate 100.
  • the first wind diffusing assembly 200 includes a diffusing body 201.
  • the air diffusing body 201 is rotatably or slidably disposed on the mounting opening 110. Thereby, it is easy to realize that the wind passing through the first blast assembly 200 is diffused, so that the windless effect of the air conditioner 2 can be improved. It should be noted that the diffusion effect of the first blast assembly 200 on the wind can be improved by means of rotation or sliding, so that the windless effect of the air conditioner 2 can be improved.
  • the first blast assembly 200 may further include: a pivot shaft 203.
  • pivot The shaft 203 is disposed on the connecting bracket 120, and the air diffusing body 201 is pivotally sleeved on the pivot shaft 203.
  • the first blast assembly 200 can be pivotally disposed at the mounting opening 110.
  • the structure of the first wind diffusing assembly 200 can be simplified, and the production cost can be reduced.
  • one end of the pivot shaft 203 is provided with a thread
  • the connecting bracket 120 is provided with a mounting hole 121 through which one end of the pivot shaft 203 passes.
  • one end of the pivot shaft 203 and the mounting hole 121 are threaded.
  • one end of the pivot shaft 203 sequentially passes through the pivot hole 202 and the mounting hole 121 and then protrudes to the outside of the mounting hole 121, and a part of the thread on the pivot shaft 203 near the end thereof is located outside the mounting hole 121, and then the thread is tightly tightened.
  • the firmware 207 secures the pivot shaft 203 to the connection bracket 120.
  • the threaded fastener 207 is capped at one end of the pivot shaft 203; in the example shown in Figure 11, the threaded fastener 207 is looped
  • the sleeve is sleeved at one end of the pivot shaft 203, that is, one end of the pivot shaft 203 passes through the threaded fastener 207, and the outer peripheral wall of the pivot shaft 203 is screwed to the inner circumferential wall of the inner ring of the threaded fastener 207.
  • the first blast assembly 200 may further include a bearing 204, and the inner ring 205 of the bearing 204 is closely fitted with the pivot shaft 203, and the bearing 204 The outer ring 206 is in close cooperation with the diffuser body 201. Thereby, the friction between the wind diffusing body 201 and the pivot shaft 203 can be reduced, and at the same time, the wind diffusing body 201 can be rotatably provided on the mounting opening 110.
  • the wind diffusing body 201 is provided with a pivot hole 202 through which the pivot shaft 203 passes, the bearing 204 is disposed in the pivot hole 202, and the bearing 204 is The inner ring 205 is tightly engaged with the pivot shaft 203, and the outer ring 206 of the bearing 204 is engaged with the inner peripheral wall of the pivot hole 202, whereby the wind diffusing body 201 and the pivot shaft 203 can be effectively reduced when the first wind diffusing assembly 200 rotates.
  • the frictional resistance between them increases the flexibility of the rotation of the wind diffusing body 201, thereby effectively reducing the wear between the wind diffusing body 201 and the pivoting shaft 203, thereby effectively extending the service life of the first wind diffusing assembly 200.
  • At least one of the plurality of wind diffusing bodies 201 is a wind wheel 210.
  • the wind wheel 210 is provided with a pivot hole 202 through which the pivot shaft 203 passes, and the wind wheel 210 may include a plurality of blades 211 spaced apart in the circumferential direction of the pivot hole 202.
  • the wind when the wind passes through the first blast assembly 200, the wind can diffuse and flow under the action of the blade 211, that is, the flow direction of the wind can be changed, and the wind is blown in different directions, for example, the wind on the front side of the wind deflector 100. It spreads outward in a tapered shape along the directions indicated by arrows b in Figs. 2, 7, 11 and 15.
  • the number of the blades 211 of the wind wheel 210 may be determined according to a specific situation. Increasing the number of the blades 211 may be beneficial to improve the air distribution effect of the wind wheel 210 and shorten the air supply distance; It is beneficial to increase the air volume and improve the performance of the wind deflector assembly 1.
  • the number of the blades 211 may be 3 to 24, whereby the windless effect of the air conditioner 2 can be improved. It has been verified by experiments that when the number of blades 211 is 8, 12 or 15 pieces, the first wind diffusing component 200 has better air diffusing effect, and the air conditioner 2 has better windless effect.
  • the number of blades 211 of the wind wheel 210 is 15; as in the example shown in FIG. 6, the number of the blades 211 of the wind wheel 210 is 12; for example, In the example shown in FIG. 10, the number of blades 211 of the wind wheel 210 is eight.
  • the angle between the plane of the blade 211 and the air outlet direction of the air outlet 22 is 10°-80°.
  • the air blowing distance can be shortened, and the air diffusing effect of the first air diffusing module 200 and the windless feeling effect of the air conditioner 2 can be further improved.
  • the angle between the blade 211 and the air outlet 22 of the air outlet 22 is large, the wind can be diffused to improve the windless effect of the wind deflector assembly 1; the blade 211 and the air outlet
  • the angle of the wind direction of 22 is small, it is advantageous to increase the air volume of the first wind diffusing assembly 200, so that the performance of the air conditioner 2 can be improved. It has been verified by experiments that when the angle between the plane of the blade 211 and the air outlet direction of the air outlet 22 is 20° or 60°, the air diffusing effect of the first air diffusing component 200 and the windless feeling of the air conditioner 2 are better.
  • the wind wheel 210 may further include: a wind guide ring 212 connecting the free ends of at least two adjacent blades 211.
  • the structural strength of the wind wheel 210 can be enhanced, and the service life of the first blast assembly 200 can be extended.
  • the air guiding collar 212 is formed as an annular air guiding ring.
  • At least one of the plurality of wind diffusing bodies 201 is a grill 220.
  • the first air diffusing component 200 of the grill 220 has the advantages of simple structure, good wind spreading effect, low production cost, and the like, and the windproof effect of the air conditioner 2 can be improved by using the grill 220 structure.
  • the grille 220 may include a spacer 222 and a plurality of windshields 221 .
  • the spacer 222 is provided with a pivot hole 202 through which the pivot shaft 203 passes.
  • the plurality of windshields 221 are distributed on two sides of the spacer 222, and the wind direction of each of the windshield 221 and the air outlet 22 There is an angle between the angles of the at least one of the plurality of windshields 221 and the angles of the remaining windshields 221 .
  • the windshield 221 has a certain inclination angle to guide the wind blown through the grill 220 to different directions.
  • the angle between the at least one of the plurality of windshield 221 and the remaining windshield 221 is not equal, when the wind passes through the grill 220, the wind blocks the two sides of the spacer 222.
  • the force of the wind piece 221 is not equal, so that the rotation of the grill 220 is easily driven, so that the wind passing through the grill 220 can flow in a diffused manner, thereby achieving the windless air blowing effect of the air conditioner 2.
  • the windshield 221 is formed as a linear windshield 221 .
  • the position of the spacer 222 is not specifically limited.
  • the spacer 222 may be disposed at an intermediate position of the grill 220, and the number and length of the windshields 221 located on both sides of the spacer 222 may be equal.
  • the angle between the wind deflector 221 and the air outlet direction of the air outlet 22 may be 10°-80°. This makes it easy to realize the airless effect of the air conditioner 2.
  • the plurality of windshields 221 extend generally in a uniform direction. Thereby, the processing of the grid 220 can be simplified, and the production cost can be saved.
  • the grill 220 may further include: a wind guide 212, one end of the wind deflector 221 is connected to the spacer 222, and the other end is connected to the inner peripheral wall of the air guide 212. connection.
  • the structural strength of the wind wheel 210 can be enhanced, and the service life of the first blast assembly 200 can be extended.
  • the air guiding collar 212 is formed as an annular air guiding ring.
  • a part of the plurality of wind diffusing bodies 201 is the wind wheel 210, and the other part of the wind diffusing body 201 is the grill 220.
  • the arrangement manner of the grill 220 and the wind wheel 210 is not specifically limited.
  • the grill 220 and the wind wheel 210 are alternately spaced, that is, adjacent two.
  • a wind wheel 210 is disposed between the grills 220, and a grill 220 is disposed between the adjacent two wind wheels 210.
  • the arrangement of the grill 220 and the wind wheel 210 is not limited thereto as long as it can satisfy the diffused dispersion wind of the first wind diffusing assembly 200 and the windless effect of the air conditioner 2.
  • At least one of the plurality of wind diffusing bodies 201 includes a wind wheel 210 and a grill 220, and one of the wind wheel 210 and the grill 220 is located in the wind direction.
  • the upstream is upstream and the other is downstream of the wind direction. That is, the same first wind diffusing assembly 200 includes both the wind wheel 210 and the grill 220 structure.
  • each of the diffuser bodies 201 includes two layers, one of which is a structure of the wind wheel 210 and is located near the inner surface 113 of the wind deflector, and the other layer is a grid.
  • the grid 220 is structurally located and located adjacent the outer surface 112 of the wind deflector. Thereby, the wind can be diffused twice by the wind wheel 210 and the grille 220, whereby the wind diffusion effect can be improved, and the windless effect of the air conditioner 2 can be improved.
  • the positions of the wind wheel 210 and the grill 220 are not limited thereto.
  • the structure of the wind wheel 210 may be located at a position close to the outer surface 112 of the wind deflector.
  • the gate 220 structure may be located at a location near the inner surface 113 of the wind deflector.
  • At least one of the plurality of first wind diffusing assemblies 200 is a spherical diffusing member 230, and the spherical diffusing member 230 is rotatably mounted on the mounting opening 110.
  • the volute outlet 231 is disposed on the spherical diffuser 230. It should be noted that the wind at the air outlet 22 can be discharged from the air outlet 231.
  • the direction of the air outlet 231 can be arbitrarily adjusted, that is, the wind can be different from The air outlet 231 is discharged in different directions, whereby the wind can be discharged from the first air diffusing module 200 in a diffused manner, thereby realizing the windless effect of the air conditioner 2.
  • the mounting opening 110 may be provided with a resilient flange 232, and the elastic flange 232 is wrapped around a portion of the peripheral wall of the spherical diffuser 230 in the circumferential direction of the mounting opening 110.
  • the spherical first wind diffusing member 200 can be firmly mounted on the wind deflector 100, and the possibility that the spherical diffusing member 230 is accidentally detached from the wind deflector 100 can be reduced.
  • the spherical diffuser 230 is substantially spherical
  • the elastic flange 232 is annular and wrapped around the outer peripheral wall of the spherical diffuser 230 in the circumferential direction of the mounting opening 110.
  • the resilient flange 232 can be located on the outer surface 112 of the wind deflector and/or on the inner surface 113 of the wind deflector.
  • the "outer surface 112 of the air deflector” may direct the surface of the wind on the side of the outer side of the casing 21 when the air outlet 22 is closed, and the “inner surface 113 of the wind deflector” may direct the wind to close the air outlet 22.
  • a portion of the elastic flange 232 is located on the outer surface 112 of the wind deflector and extends toward the outer side of the wind deflector 100.
  • the surface of the elastic flange 232 facing the spherical diffuser 230 is scattered with the sphere.
  • the part 230 is attached; a part of the elastic flange 232 is located on the inner surface 113 of the wind deflector and extends toward the inner side of the wind deflector 100.
  • the surface of the elastic flange 232 facing the spherical diffuser 230 is attached to the spherical diffuser 230. Hehe.
  • At least one of the plurality of first wind diffusing assemblies 200 is a swinging blade assembly 240, and the swinging blade assembly 240 can be in a first state of the closed mounting opening 110 and Switching between the second states of the installation port 110 is opened.
  • the swinging blade assembly 240 closes the mounting opening 110, The wind cannot flow through the swinging blade assembly 240;
  • the swinging blade assembly 240 opens the mounting opening 110, and the wind can be diffused from the mounting opening 110 by the air guiding action of the swinging blade assembly 240.
  • the airflow is performed to realize the windless effect of the air conditioner 2.
  • the swinging blade assembly 240 when the swinging blade assembly 240 is in the second state, by adjusting the state of the swinging blade assembly 240, the flow direction and flow state of the wind blown from the mounting opening 110 can be changed, for example, as shown in FIG.
  • the swinging blade assembly 240 when the swinging blade assembly 240 is in the second state and when wind is blown from the mounting opening 110, the swinging blade assembly 240 can drive the wind to flow in a diffused manner, thereby facilitating the windless effect of the air conditioner 2.
  • the swinging blade assembly 240 can include two spaced apart swinging vanes 241, each of which is rotatably disposed on the mounting opening 110. This facilitates adjustment of the flow direction and flow pattern of the wind blown from the mounting port 110, and drives the wind to flow in a diffused manner.
  • portions of the two pendulum blades 241 overlap. For example, as shown in the rightmost set of swinging blade assemblies 240 in FIG. 41, the set of swinging blade assemblies 240 are in a first state, the two flapping vanes 241 enclose the corresponding mounting ports 110, and the two flapping vanes 241 Partial overlap.
  • one of the two pendulum blades 241 is provided with a fitting groove 242.
  • the pendulum blade assembly 240 When the pendulum blade assembly 240 is in the first state, the other of the two pendulum blades 241 and one of the The overlapping portions of the pendulum blades 241 fit within the fitting grooves 242. Thereby, the structural stability of the swinging blade assembly 240 can be improved.
  • the outer surface 243 of the swinging blade assembly is formed as a smooth surface. Thereby, the appearance of the swinging blade assembly 240 can be improved.
  • the "outer surface 243 of the swinging blade assembly” may mean a surface of the swinging blade assembly 240 facing the outer side of the casing 21 of the air conditioner 2 when the swinging blade assembly 240 is in the first state.
  • one of the two pendulum blades 241 is provided with a fitting groove 242.
  • the other of the two pendulum blades 241 is pendulum
  • the overlapping portion of the leaves 241 fits within the fitting groove 242, and the outer surface 243 of the pendulum assembly is formed as a smooth surface.
  • the swinging blade assembly 240 further includes a rotating ring 244 disposed on the inner peripheral wall of the mounting opening 110 and rotatable along the inner peripheral wall of the mounting opening 110.
  • the pendulum blade 241 is rotatably disposed on the rotating ring 244.
  • the inner peripheral wall of the mounting opening 110 is provided with an insertion groove 246.
  • the insertion groove 246 can extend in the circumferential direction of the mounting opening 110, and the rotating ring 244 is rotatably mounted in the insertion groove 246, on the pendulum blade 241.
  • a connecting shaft 245 is provided, and the connecting shaft 245 is rotatably disposed on the rotating ring 244, so that the swinging blade 241 can not only rotate itself, but also can rotate in the manner of diffusion flow as the rotating ring 244 rotates.
  • the mouth 110 is blown out to improve the windless effect of the air conditioner 2.
  • an air conditioner 2 includes a housing 21 and at least one set of second blast assemblies 200'.
  • the casing 21 has an air outlet 22, and when the air conditioner 2 needs to cool, heat, or ventilate the environment in which it is located, the wind can flow out from the air outlet 22.
  • the second blast assembly 200' is rotatable at the air outlet 22 to be adapted to diffuse and flow the wind blown out by the air outlet 22. It can be understood that the change of the original flow direction after the wind passes through the second blast assembly 200' can flow in different directions.
  • the air conditioner 2 is blown to the human body, thereby achieving the windless effect of the air conditioner 2.
  • the air conditioner 2 is normally ventilated.
  • the second blast assembly 200' is connected to the air outlet 22 through the fixing bracket 250.
  • the wind blows out from the air outlet 22
  • the wind can flow in a diffused manner, so that the flow direction of the wind can be changed, and the wind is directed in different directions.
  • the flow reduces the air supply distance and prevents the wind from being directly blown onto the human body, thereby realizing the windless effect of the air conditioner 2.
  • the air conditioner 2 of the embodiment of the present invention by providing the second air diffusing component 200' at the air outlet 22 and fixing the second air diffusing component through the fixing bracket 250, it is possible to pass the second air diffusing component 200'.
  • the blown air flows in a diffused manner, so that the wind can be prevented from being directly blown out from the air outlet 22 in the same direction, thereby achieving the windless effect of the air conditioner 2, and improving the comfort of use of the air conditioner.
  • the second blast assembly 200' is rotatable at the air outlet 22, thereby facilitating the changing flow direction of the wind, causing the wind to flow in different directions, shortening the air supply distance, and preventing the wind from being directly blown.
  • the windless effect of the air conditioner 2 is further achieved.
  • the air conditioner 2 may further include a wind deflector 100 disposed at the air outlet 22 to open or close the air outlet 22, and the air deflector 100 and the second air diffuser
  • the wind assembly 200' is juxtaposed along the air outlet direction of the air outlet 22, and the second air distribution assembly 200' is located on a side of the wind guide 100 facing the inside of the housing 21.
  • the air deflector 100 is pivotally disposed at the air outlet 22, and the second air diffusing assembly 200' is fixed to the housing 21 by the fixing bracket 250. on.
  • the fixing bracket 250 may be one. One end of the fixing bracket 250 is connected to the left end of the air outlet 22, the other end is connected to the right end of the air outlet 22, and the second air diffusing assembly 200' is fixed. On the bracket 250.
  • the air conditioner 2 is provided with eight sets of second air diffusing assemblies 200' spaced apart in the left-right direction, the fixing bracket 250 is one, and the left end of the fixing bracket 250 and the air outlet The left end of 22 is connected, the right end of the fixing bracket 250 is connected to the right end of the air outlet, and the eight sets of second air diffusing assemblies 200' are all mounted on the fixing bracket 250.
  • the second blast assembly 200' is located on a side of the wind deflector 100 facing the inside of the casing 21, and when the wind deflector 100 closes the air outlet 22, the wind deflector 100 further The second air diffusing component 200' can be used, so that the appearance of the air conditioner 2 can be improved.
  • the structure of the fixing bracket 250 is not limited thereto.
  • the fixing bracket 250 is in one-to-one correspondence with the second air diffusing assembly 200 ′, and one end of the fixing bracket 250 and the housing 21 company The other end is connected to the second blast assembly 200'. Further, the other end of the fixing bracket 250 is connected to the upper end or the lower end of the air outlet 22.
  • the fixing bracket 250 is in one-to-one correspondence with the second air diffusing assembly 200 ′, and one end of the fixing bracket 250 and the housing 21 company The other end is connected to the second blast assembly 200'.
  • the other end of the fixing bracket 250 is connected to the upper end or the lower end of the air outlet 22.
  • the air conditioner 2 is provided with eight sets of second air diffusing assemblies 200' spaced apart in the left-right direction, and the fixing bracket 250 is eight and the second air diffusing component One end of the 200' one-to-one correspondence, one end of the fixing bracket 250 is connected to the lower end of the air outlet 22, and the other end is connected to the second air diffusing assembly 200'.
  • the second blast assembly 200' includes a pivot shaft 203 and a venting body 201.
  • the pivoting shaft 203 can be fixedly connected to the fixing bracket 250, and the air diffusing body 201 can be pivotally disposed on the pivoting shaft 203. Therefore, the second air diffusing assembly 200 ′ is rotatably disposed at the air outlet 22 , thereby facilitating the changing flow direction of the wind, causing the wind to flow in different directions, shortening the air supply distance, and preventing the wind from being directly blown onto the human body. Further, the windless effect of the air conditioner 2 is achieved.
  • the wind diffusing body 201 may be formed in a single layer structure and is a wind wheel 210 or a grill 220. As shown in FIGS. 44-46, the wind diffusing body 201 is formed at the air outlet 22 Rotating wind wheel 210; as shown in Fig. 26, the wind diffusing body 201 is formed as a grill 220 rotatable at the air outlet 22; as shown in Fig.
  • the air conditioner 2 includes a plurality of second air diffusing assemblies 200'
  • the wind diffusing body 201 of the part of the second wind diffusing assembly 200' is formed as a wind wheel 210 rotatable at the air outlet 22, and the wind diffusing body 201 of the other part of the second wind diffusing component 200' is formed at the air outlet 22 Rotating grille 220.
  • the wind diffuser body 201 may be formed in a two-layer structure and is a combination of the wind wheel 210 or the grill 220 or the wind wheel 210 and the grill 220.
  • the wind diffusing body 201 may be formed in a two-layer structure in which one layer is the wind wheel 210 and the other layer is the grill 220; for example, the wind diffusing body 201 may be formed to have two layers of wind wheels.
  • the wind diffusing body 201 may be formed as a structure having two layers of the grid 220.
  • the second blast assembly 200' is in multiple sets and evenly distributed at the air outlet 22, whereby the windless effect of the air conditioner 2 can be optimized.
  • the configuration of the first blast assembly 200 is the same as that of the second blast assembly 200'.
  • wind deflector assembly 1 for the air conditioner 2 will be described in detail below with reference to specific embodiments. It is to be understood that the following description is only illustrative and not restrictive.
  • the air conditioner 2 includes a housing 21, a wind deflector 100, and eight sets of first air diffusing assemblies 200.
  • the casing 21 has an air outlet 22 through which the wind can flow out when the air conditioner 2 needs to cool, heat or ventilate the environment in which it is located.
  • the air deflector 100 is pivotally disposed at the air outlet 22, and the air deflector 100 is provided with eight mounting ports 110 and is in one-to-one correspondence with the eight first air diffusing assemblies 200.
  • the first blast assembly 200 is adapted to cause the wind blown from the air outlet 22 to flow in a diffuse flow manner. It can be understood that after the wind passes through the first wind diffusing assembly 200, the original flow direction is changed and flows in different directions.
  • the first blast assembly 200 is rotatably mounted at the mounting opening 110 and includes a louver body 201 pivoting shaft 203.
  • the air diffusing body 201 is connected to the air guiding plate 100 through the connecting bracket 120.
  • each of the mounting holes 110 is provided with a connecting bracket 120.
  • the middle portion of the connecting bracket 120 is provided with an end through which one end of the pivoting shaft 203 passes.
  • the hole 121 has a pivot hole 202 in the middle of the wind diffusing body 201, and the other end of the pivot shaft 203 passes through the pivot hole 202.
  • the air diffusing body 201 is pivotally engaged with the pivot shaft 203 through the pivot hole 202.
  • One end of the pivoting shaft 203 is provided with a thread.
  • one end of the pivoting shaft 203 can be screwed into the mounting hole 121, and one end of the pivoting shaft 203 sequentially passes through the pivoting hole 202 and the mounting hole 121 and then protrudes to the mounting hole 121.
  • the outer portion of the pivot shaft 203 near the end thereof is located outside the mounting hole 121, and then the pivot shaft 203 is fixed to the joint bracket 120 by the threaded fastener 207.
  • the threaded fastener 207 is provided at one end of the pivot shaft 203 in a cap shape.
  • the connecting bracket 120 may be a plastic bracket and may be integrally formed with the wind deflector 100, whereby the production cycle of the air conditioner 2 can be shortened and the production cost can be reduced.
  • the flexibility of the wind diffusing body 201 to rotate is improved, and the service life of the wind diffusing body 201 and the pivoting shaft 203 is extended, and the wind diffusing body 201 and A bearing 204 is disposed between the pivot shafts 203.
  • the inner ring 205 of the bearing 204 is in close contact with the outer peripheral wall of the pivot shaft 203, and the outer ring 206 of the bearing 204 is in close contact with the inner peripheral wall of the pivot hole 202 of the diffuser body 201.
  • the wind diffusing body 201 is the wind wheel 210, thereby facilitating the flow of the wind passing through the first wind diffusing assembly 200 in a diffused manner, so that the windless feeling effect of the air conditioner 2 can be improved.
  • the wind wheel 210 includes a middle wind ring 213, a wind guiding ring 212 and fifteen blades 211.
  • the air guiding ring 212 is jacketed on the outside of the central wind ring 213 and spaced apart from the central wind ring 213. Fifteen blades 211 are connected between the outer peripheral wall of the central wind ring 213 and the inner peripheral wall of the air guiding ring 212.
  • the inner peripheral wall of the central air ring 213 is configured as a pivot hole 202, and the fifteen blades 211 are along the central wind ring 213.
  • the circumferential direction is spaced apart.
  • the angle between the plane of each blade 211 and the air outlet direction of the air outlet 22 is 10°-80°.
  • the air diffusing effect of the first air diffusing module 200 and the windless feeling effect of the air conditioner 2 can be improved.
  • the end faces of the blades 211 facing the outside of the casing 21 are located on the same spherical surface. Thereby, the appearance of the appearance at the wind deflector 100 can be enhanced.
  • the air deflector 100 can change the state according to requirements. For example, when the air conditioner 2 is in a state of being stopped, the air deflector 100 can block the air outlet 22; when the air conditioner 2 needs to blow air into the environment When the air deflector 100 opens the air outlet 22, the wind can be directly blown out from the air outlet 22; when the air conditioner 2 needs to blow air into the environment, and the air deflector 100 closes the air outlet 22, the wind can pass through the first The wind diffusing assembly 200 is blown out.
  • the wind blown through the first wind diffusing assembly 200 flows in a diffused manner, so that the flow direction of the wind can be changed, and the wind flows in different directions, thereby preventing the wind from being directly blown to the human body, thereby realizing the absence of the air conditioner 2. Wind effect.
  • the air blown through the first air diffusing module 200 can be diffused, so that the wind can be prevented from being directly blown out from the air outlet 22 in the same direction.
  • the windless effect of the air conditioner 2 can be achieved, and the comfort of use of the air conditioner is improved.
  • the first wind diffusing assembly 200 has six groups, and the wind wheel 210 in each set of the first wind diffusing assembly 200 includes eight blades. 211.
  • the connection bracket 120 is three. One end of the three connecting brackets 120 intersects at one point, and at this point, a mounting hole 121 is formed, one of the pivoting shafts 203 The end is adapted to pass through the mounting hole 121.
  • the other ends of the three connecting brackets 120 are respectively connected to the air guiding plate 100, and the three connecting brackets 120 are evenly distributed along the circumferential direction of the central air ring 213, that is, the angle between any two adjacent connecting brackets 120 is equal.
  • the connection bracket 120 can be prevented from blocking the air outlet at the mounting opening 110, so that the performance of the wind deflector assembly 1 can be improved.
  • the end faces of the blades 211 facing the outside of the casing 21 and the end faces of the air guiding ring 212 facing the outside of the casing 21 are all located on the same plane. Thereby, the appearance of the appearance at the wind deflector 100 can be enhanced.
  • the first wind diffusing assembly 200 has six groups, and the wind wheel 210 in each group of the first wind diffusing assembly 200 includes twelve pieces.
  • the blade 211 and the connecting bracket 120 are one.
  • One end of the connecting bracket 120 is connected to the wind deflector 100, and the other end has a mounting hole 121 and is connected to the air diffusing body 201 through a pivot shaft 203.
  • the threaded fastener 207 is annularly sleeved on one end of the pivot shaft 203, whereby the structure of the wind deflector 100 can be simplified, the quality of the wind deflector 100 can be alleviated, and the production cost can be saved.
  • the end faces of the blades 211 facing the outside of the casing 21 and the end faces of the air guiding ring 212 facing the outside of the casing 21 are all located on the same plane. Thereby, the appearance of the appearance at the wind deflector 100 can be enhanced.
  • connection bracket 120 of one of the first blast assemblies 200 is connected to the connection bracket 120 in the other first blast assembly 200.
  • the ribs 122 are connected, whereby the structural strength of the connecting bracket 120 can be enhanced, and the structural strength of the wind deflector 100 can also be increased.
  • the wind wheel 210 in each set of first wind diffusing assemblies 200 includes fifteen blades 211.
  • the first louver assembly 200 has a total of twenty-three groups, whereby the windless effect of the air conditioner 2 can be improved.
  • the twenty-three sets of first wind diffusing assemblies 200 are evenly distributed on the wind deflector 100, and the projections of the center of rotation of the twenty-three sets of first wind diffusing assemblies 200 on the wind deflecting plate 100 are on the same straight line, thereby
  • the structural diversity of the air deflector 100 can be increased to meet the use requirements of different types of air conditioners 2, and the effect of windlessness can also be improved.
  • the first wind diffusing assembly 200 has a total of eighteen groups, and the eighteen first air diffusing assemblies 200 are randomly distributed on the wind deflector 100. Therefore, the structural diversity of the air deflector 100 can be increased, and the use requirements of the air conditioners 2 of different models can be satisfied, and the effect of the windless feeling can also be improved.
  • the wind diffusing body 201 is the grill 220.
  • the first air diffusing component 200 of the grill 220 has the advantages of simple structure, good wind spreading effect, low production cost, and the like, and the windproof effect of the air conditioner 2 can be improved by using the grill 220 structure.
  • the grill 220 includes a spacer 222 and a plurality of windshields 221 .
  • the spacer 222 is provided with a pivot hole 202 through which the pivot shaft 203 passes.
  • the plurality of windshields 221 are distributed on two sides of the spacer 222, and the wind direction of each of the windshield 221 and the air outlet 22 There is an angle between the angles of the at least one of the plurality of windshields 221 and the angles of the remaining windshields 221 . Therefore, when the wind passes through the grill 220, the force of the wind on the windshield 221 on both sides of the spacer 222 is not equal, so that the grill 220 is easily driven to rotate, so that the wind passing through the grill 220 can be diffused. By flowing, the windless air supply effect of the air conditioner 2 can be achieved.
  • the windshield 221 is formed as a linear windshield 221 .
  • the position of the spacer 222 is not specifically limited.
  • the spacer 222 may be disposed at an intermediate position of the grill 220, and the number and length of the windshields 221 located on both sides of the spacer 222 may be equal.
  • the angle between the wind deflector 221 and the air outlet direction of the air outlet 22 may be 10°-80°. This makes it easy to realize the airless effect of the air conditioner 2.
  • the extending directions of the plurality of windshields 221 are substantially uniform. Thereby, the processing of the grid 220 can be simplified, and the production cost can be saved.
  • the grille 220 may further include: a wind guide ring 212 and a middle air ring 213.
  • the air guide ring 212 is jacketed on the outside of the middle air ring 213 and spaced apart from the middle air ring 213, and the wind deflector 221 is disposed on the air guide ring 212 and the middle portion.
  • the inner peripheral wall of the central air ring 213 is configured as a pivot hole 202.
  • the central portion of the spacer 222 has a central air ring 213, and the central air ring 213 has a pivot hole 202 therethrough.
  • One end of the windshield 221 is connected to the spacer 222, and the other end is connected to the inner peripheral wall of the air guiding ring 212. Thereby, the structural strength of the wind wheel 210 can be enhanced, and the service life of the first blast assembly 200 can be extended.
  • a part of the plurality of air diffusing bodies 201 is the wind wheel 210, and the other part of the wind diffusing body 201 is a grille. 220.
  • the grille 220 and the wind wheel 210 are alternately spaced apart, that is, one wind wheel 210 is disposed between two adjacent grilles 220, and two adjacent wind wheels 210 are disposed. A grill 220 is provided between them.
  • At least one of the plurality of air diffusing bodies 201 includes a wind wheel 210 and a grill 220. That is to say, at least one of the plurality of wind diffusing bodies 201 has a two-layer structure, wherein one layer is the wind wheel 210 and the other layer is the grid 220. One of the wind wheel 210 and the grill 220 is located upstream of the wind direction and the other is located downstream of the wind direction.
  • the wind diffusing body 201 in the same first wind diffusing assembly 200, includes both the wind wheel 210 and the grill 220, and the wind wheel 210 is located near the inner surface 113 of the wind deflector.
  • the grill 220 structure is located close to the wind guide The position of the outer surface 112 of the panel. Thereby, the wind can be dissipated twice by the wind wheel 210 and the grille 220, thereby improving the wind diffusion effect, and further improving the windless effect of the air conditioner 2.
  • the first wind diffusing assembly 200 is a spherical diffusing member 230, and the spherical diffusing member 230 is rotatably mounted on the mounting opening 110.
  • the volute outlet 231 is disposed on the spherical diffuser 230. It should be noted that the wind at the air outlet 22 is discharged from the air outlet 231. Since the spherical air diffusing member 230 is rotatably disposed at the mounting opening 110, the direction of the air outlet 231 can be arbitrarily adjusted, that is, the wind can be differently dispersed.
  • the air outlets 231 are discharged in different directions, whereby the wind can be discharged from the first air diffusing module 200 in a diffused manner, thereby achieving the windless effect of the air conditioner 2.
  • the spherical diffuser 230 is generally spherical.
  • the mounting opening 110 may be provided with a resilient flange 232, and the elastic flange 232 is wrapped around a peripheral wall of the spherical diffuser 230 in the circumferential direction of the mounting opening 110.
  • the spherical first wind diffusing member 200 can be firmly mounted on the wind deflector 100, and the possibility that the spherical diffusing member 230 is accidentally detached from the wind deflector 100 can be reduced.
  • the elastic flange 232 is annular and wrapped on the outer peripheral wall thereof in the circumferential direction of the spherical diffuser 230.
  • the outer side and the inner side of the wind deflector 100 are provided with elastic flanges 232.
  • a part of the elastic flange 232 is located on the outer surface 112 of the wind deflector and extends toward the outer side of the wind deflector 100, and the elastic flange is extended.
  • a surface of the 232 facing the spherical diffuser 230 is attached to the spherical diffuser 230; a portion of the elastic flange 232 is located on the inner surface 113 of the wind deflector and extends toward the inner side of the wind deflector 100, and the orientation of the elastic flange 232
  • the surface of the spherical diffuser 230 is attached to the spherical diffuser 230.
  • the first wind diffusing assembly 200 is a swinging blade assembly 240.
  • the pendulum blade assembly 240 is switchable between a first state in which the mounting port 110 is closed and a second state in which the mounting port 110 is opened.
  • the swinging blade assembly 240 closes the mounting opening 110, and the wind cannot flow through the swinging blade assembly 240;
  • the swinging blade assembly 240 is in the second state, the swinging blade assembly 240 opens the mounting opening 110, The wind can flow out from the mounting port 110 by the air guiding action of the swinging blade assembly 240 in a diffused manner, thereby achieving the windless effect of the air conditioner 2.
  • the swinging blade assembly 240 when the swinging blade assembly 240 is in the second state, by adjusting the state of the swinging blade assembly 240, the flow direction and flow state of the wind blown from the mounting opening 110 can be changed, for example, as shown in FIG.
  • the swinging blade assembly 240 when the swinging blade assembly 240 is in the second state and when wind is blown from the mounting opening 110, the swinging blade assembly 240 can drive the wind to flow in a diffused manner, thereby facilitating the windless effect of the air conditioner 2.
  • the swinging blade assembly 240 can include a rotating ring 244 and two spaced apart pendulum blades 241.
  • the rotating ring 244 is disposed on the inner peripheral wall of the mounting opening 110 and rotatable along the inner peripheral wall of the mounting opening 110, and the swinging blade 241 is rotatably disposed on the rotating ring 244.
  • the inner peripheral wall of the mounting opening 110 is provided with an insertion groove 246 which is extendable in the circumferential direction of the mounting opening 110, and the rotating ring 244 is rotatably mounted in the insertion groove 246.
  • Each of the pendulum blades 241 is rotatably disposed on the rotating ring 244. Thereby, it is easy to adjust the wind blown from the mounting port 110.
  • the flow direction and flow pattern drive the wind to flow in a diffuse flow.
  • the swinging blade 241 is provided with a connecting shaft 245, and the connecting shaft 245 is rotatably provided on the rotating ring 244, whereby the swinging blade 241 can not only rotate itself, but also rotate with the rotating ring 244. Further, the wind can be blown out from the mounting port 110 in a diffused manner, and the airless effect of the air conditioner 2 is improved.
  • portions of the two pendulum blades 241 overlap.
  • the set of swinging blade assemblies 240 are in a first state, the two flapping vanes 241 enclose the corresponding mounting ports 110, and the two flapping vanes 241 Partial overlap.
  • one of the two pendulum blades 241 is provided with a fitting groove 242.
  • the pendulum blade assembly 240 When the pendulum blade assembly 240 is in the first state, the other of the two pendulum blades 241 and one of the The overlapping portions of the pendulum blades 241 fit within the fitting grooves 242. Thereby, the structural stability of the swinging blade assembly 240 can be improved.
  • the outer surface 243 of the swinging blade assembly is formed as a smooth surface. Thereby, the appearance of the swinging blade assembly 240 can be improved.
  • the "outer surface 243 of the swinging blade assembly” may mean a surface of the swinging blade assembly 240 facing the outer side of the casing 21 of the air conditioner 2 when the swinging blade assembly 240 is in the first state. That is, as shown in FIG.
  • an air deflector assembly 1 includes: a wind deflector 100 and at least one set of first wind diffusing assemblies 200 .
  • the air deflector assembly 1 can be used for an air treatment device such as an air conditioner cabinet, an air conditioner hook, or a mobile air conditioner 2.
  • the wind deflector assembly 1 can be located at the air outlet 22 of the above device.
  • the air deflector 100 is pivotally disposed at the air outlet 22 to open or close the air outlet 22, and the air deflector 100 is provided with at least one mounting port 110.
  • the first air diffusing assembly 200 is rotatably or slidably disposed. The wind that is blown out by the air outlet 22 is diffused and flowed on the mounting port 110.
  • the wind deflector assembly 1 can change state as needed.
  • the air deflector 100 when the air conditioner 2 is in a state of being stopped, the air deflector 100 can block the air outlet 22; when the air conditioner 2 needs to blow air into its environment, and the air deflector 100 opens the air outlet 22 At this time, the wind can be directly blown out from the air outlet 22; when the air conditioner 2 needs to blow air into its environment, and the air deflector 100 closes the air outlet 22, the wind can be blown out through the first wind diffusing assembly 200.
  • the wind blown through the first wind diffusing assembly 200 flows in a diffused manner, so that the flow direction of the wind can be changed, and the wind flows in different directions, thereby preventing the wind from being directly blown to the human body, and the air conditioner 2 can be easily realized. Wind effect.
  • the air conditioner 2 when the air deflector 100 of the air conditioner 2 is in a state of blocking the air outlet 22, the air conditioner 2 may be in a stop operation state or in a windless operation state; as shown in FIG. 22 and FIG. It is shown that when the air deflector 100 of the air conditioner 2 is in the state in which the air outlet 22 is opened, the airflow generated by the air conditioner 2 can be directly blown out from the air outlet 22.
  • the inner surface 113 of the air deflector may be provided with a plurality of left and right directions (left and right directions as shown in FIG. 14).
  • the ribs 101 are extended, whereby the structural strength of the wind deflector 100 can be enhanced.
  • the air deflector assembly 1 of the embodiment of the present invention by providing the first air diffusing component 200 on the air deflector 100, the wind blown through the first air diffusing component 200 can be diffused, so that the wind can be avoided along the same The direction is directly blown out from the air outlet 22, and the airless effect of the air conditioner 2 can be realized, and the use comfort of the air conditioner is improved.
  • the air conditioner 2 includes a casing 21, a wind deflector 100, and eight sets of second blast assemblies 200'.
  • the housing 21 has an air outlet 22, and the air deflector 100 is pivotally disposed at the air outlet 22 to open or close the air outlet 22, and the air deflecting plate 100 and the second air diffusing assembly 200' are disposed along the air outlet 22 Arranged in parallel, and the second air diffusing component 200' is located on a side of the wind deflector 100 facing the outside of the casing 21, and the eight sets of second air diffusing components 200' are along the length direction of the air outlet 22 (as shown in FIG. Direction) interval distribution.
  • the air conditioner 2 may further include a pivot bracket 260, the pivot bracket 260 is pivotable between the first position and the second position, and the pivot bracket 260 is coupled to the housing 21, and the eight sets of second air diffusing assemblies 200' are provided On the pivot bracket 260. That is, the eight sets of second diffuser assemblies 200' are movable by the pivot bracket 260 between a first position opposite the air outlet 22 and a second position offset from the air outlet 22.
  • the pivot bracket 260 includes a first pivoting lever, a second pivoting lever 262, and a connecting rod 263 extending in a straight line.
  • one end of the first pivoting lever is pivotally connected to the left end of the housing 21, and one end of the second pivoting lever 262 is pivotally connected to the right end of the housing 21, and one end of the connecting rod 263 and the first pivot The other end of the rotating rod is connected, the other end of the connecting rod 263 is connected to the other end of the second pivoting rod 262, and the eight sets of second diffusing assemblies 200' are spaced apart from the connecting rod 263.
  • the second blast assembly 200' includes a pivot shaft 203 and a wind diffusing body 201.
  • the pivoting shaft 203 can be fixedly connected to the connecting rod 263, and the wind diffusing body 201 can be pivotally disposed on the pivoting shaft 203.
  • the second blast assembly 200' is rotatably disposed on the pivot bracket 260, thereby facilitating the rotation of the second blast assembly 200' at the air outlet 22, thereby facilitating the changing direction of the wind flow, so that The wind flows in different directions, shortens the air supply distance, and prevents the wind from being directly blown onto the human body, thereby realizing the windless effect of the air conditioner 2.
  • the wind diffusing body 201 is formed in a single layer structure and is formed as a wind wheel 210.
  • the pivoting bracket 260 is rotated to position the second air diffusing assembly 200' at a second position offset from the air outlet 22, such as rotating the pivot bracket 260.
  • the second wind diffusing assembly 200' can be located near the bottom wall of the housing 21 (ie, near the lower end of the housing), and the wind deflector 100 is rotated to open the air deflector 100 to the air outlet 22, and the wind can be from the air outlet 22 Flow out.
  • the second air diffusing assembly 200' is maintained in the second position, the wind can be directly blown out from the air outlet 22, the air conditioner 2 can normally supply air; and the pivoting bracket 260 is rotated to position the second air diffusing assembly 200'
  • the second diffuser assembly 200' is adapted to diffuse the wind blown by the air outlet 22, and the wind may flow in different directions after the wind passes through the second diffuser assembly 200'. That is, the wind flows in a diffused manner, so that the flow direction of the wind can be changed, the wind flows in different directions, the air supply distance is shortened, and the wind is directly blown to the human body, thereby realizing the windless effect of the air conditioner 2.
  • the air conditioner 2 includes a casing 21, a wind deflector 100, and eight sets of second air diffusing assemblies 200'.
  • the housing 21 has an air outlet 22, and the air deflector 100 is pivotally disposed at the air outlet 22 to open or close the air outlet 22, and the air deflector 100 and the second air diffusing assembly 200'
  • the wind direction of the tuyes 22 is juxtaposed, and the second wind diffusing assembly 200' is located on the side of the wind deflector 100 facing the inside of the casing 21, and the eight sets of second wind diffusing assemblies 200' are along the length of the air outlet 22 (eg, The left-right direction shown in Fig. 44 is uniformly distributed.
  • the air conditioner 2 may further include eight fixing brackets 260.
  • the eight fixing brackets 260 are in one-to-one correspondence with the second air diffusing assembly 200'. One end of each fixing bracket 260 is connected to the corresponding second air diffusing assembly 200', and the other end is connected. Connected to the housing 21, that is, each set of second blast assembly 200' is fixedly coupled to the air outlet 22 of the housing 21 by a fixing bracket 260.
  • the second blast assembly 200' includes a pivot shaft 203 and a venting body 201.
  • the pivoting shaft 203 can be fixedly connected to the fixing bracket 250, and the air diffusing body 201 can be pivotally disposed on the pivoting shaft 203. Therefore, the second air diffusing assembly 200 ′ is rotatably disposed at the air outlet 22 , thereby facilitating the changing flow direction of the wind, causing the wind to flow in different directions, shortening the air supply distance, and preventing the wind from being directly blown onto the human body. Further, the windless effect of the air conditioner 2 is achieved.
  • the wind diffusing body 201 is formed in a single layer structure and is formed as a wind wheel 210.
  • the air deflector 100 opens the air outlet, and the second air diffusing assembly 200' is adapted to diffuse and flow the wind blown by the air outlet 22, and the wind passes through
  • the original flow direction may flow in different directions, that is, the wind flows through the second air diffusing assembly 200' and then diffuses, so that the flow direction of the wind can be changed, and the wind is directed in different directions.
  • the flow reduces the air supply distance and prevents the wind from being directly blown onto the human body, thereby realizing the windless effect of the air conditioner 2.
  • the air deflector 100 When the air deflector 100 closes the air outlet 22, the air deflector 100 can block not only the air outlet 22 but also the second air diffusing assembly 200'.
  • the air conditioner 2 may further include a fixing bracket 260.
  • the left end of the fixing bracket 250 is connected to the left end of the air outlet 22, and the fixing bracket 250 is fixed.
  • the right end is connected to the right end of the air outlet, and the eight sets of second air diffusing assemblies 200' are all mounted on the fixed bracket 250.
  • an air conditioner 2 is provided according to an embodiment of the present invention.
  • the air conditioner 2 is provided with an air outlet 22 and the air conditioner 2 includes: for the air conditioner 2 as described in the above embodiment.
  • Air deflector assembly 1 1.
  • the air deflector 100 is pivotally disposed at the air outlet 22 to open or close the air outlet 22, and the air deflector 100 is provided with at least one mounting port 110.
  • the first air diffusing assembly 200 is rotatably or slidably disposed. The wind that is blown out by the air outlet 22 is diffused and flowed on the mounting port 110.
  • the wind deflector assembly 1 can change state as needed.
  • the air deflector 100 can block the air outlet 22; when the air conditioner 2 needs to blow air into the environment, and the air deflector 100 opens the air outlet 22, the wind can directly exit from the air outlet 22 The tuyere 22 is blown out; when the air conditioner 2 needs to blow air into its environment, and the air deflector 100 closes the air outlet 22, the wind can be blown out through the first wind diffusing assembly 200.
  • the wind blown through the first wind diffusing assembly 200 flows in a diffused manner, so that the flow direction of the wind can be changed, and the wind flows in different directions, thereby preventing the wind from being directly blown to the human body, and the air conditioner 2 can be easily realized. Wind effect.
  • the air conditioner 2 when the air deflector 100 of the air conditioner 2 is in a state of blocking the air outlet 22, the air conditioner 2 may be in a stop operation state or in a windless operation state; as shown in FIG. 22 and FIG. It is shown that when the air deflector 100 of the air conditioner 2 is in the state in which the air outlet 22 is opened, the airflow generated by the air conditioner 2 can be directly blown out from the air outlet 22.
  • the inner surface 113 of the wind deflector may be provided with a plurality of ribs 101 extending in the left-right direction (the left-right direction as shown in FIG. 14), whereby the structural strength of the wind deflector 100 can be enhanced.
  • the air conditioner 2 of the embodiment of the present invention by providing at least one set of the first blast assembly 200 on the wind deflector 100, the wind blown through the first blast assembly 200 can be diffused and can be avoided.
  • the wind is directly blown out from the air outlet 22 in the same direction, thereby achieving the windless effect of the air conditioner 2, and improving the comfort of use of the air conditioner.

Abstract

一种用于空调器(2)的导风板组件(1)及空调器(2)。导风板组件(1)包括:导风板(100),导风板(100)可枢转地设在空调器(2)的出风口(22)处,导风板(100)上设有至少一个安装口(110);至少一组第一散风组件(200),第一散风组件(200)为单层结构且可转动地设在安装口(110)上以适于将出风口(22)吹出的风扩散流动。

Description

用于空调器的导风板组件及空调器 技术领域
本发明涉及空气调节技术领域,具体而言,尤其涉及一种用于空调器的导风板组件及空调器。
背景技术
用户常常开启空调制冷或制热功能,使室内环境温度维持在交舒服的范围内,如果带有冷气或热气的风吹到人的身上后,会感觉到风力强劲,使得空调器的舒适性差。尤其是在夏季,当空调器在制冷时,太冲的冷气会使一些老人、孕妇、小孩等体质偏弱群体容易患上空调病。
发明内容
本发明旨在至少在一定程度上解决相关技术中的技术问题之一。
为此,本发明提出一种用于空调器的导风板组件,所述用于空调器的导风板组件具有无风感导风的效果。
本发明还提出一种空调器,所述空调器具有如上所述的用于空调器的导风板组件。
根据本发明实施例提供的一种用于空调器的导风板组件,包括:导风板,所述导风板可枢转地设在所述空调器的出风口处,所述导风板上设有至少一个安装口;至少一组第一散风组件,所述第一散风组件为单层结构且可转动地设在所述安装口上适于将所述出风口吹出的风扩散流动。
根据本发明实施例的用于空调器的导风板组件,通过在导风板上设置至少一组第一散风组件,由此可以使经由第一散风组件吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口直接吹出,进而可以实现空调器的无风感效果,提高了空调器的使用舒适性。
根据本发明的一些实施例,所述第一散风组件与所述安装口一一对应。
根据本发明的一些实施例,所述安装口的内周壁上设有挡风凹槽,所述第一散风组件的外周缘位于所述挡风凹槽内。
根据本发明的一些实施例,所述第一散风组件通过连接支架与所述导风板连接。
根据本发明的一些实施例,所述连接支架为一个且所述连接支架沿所述导风板的长度方向延伸,所述至少一组第一散风组件均与所述连接支架连接。
根据本发明的一些实施例,所述连接支架的一端与所述第一散风组件连接,另一端与所述导风板连接。
根据本发明的一些实施例,每个所述第一散风组件通过多个所述连接支架与所述导 风板连接,每个所述第一散风组件上的多个所述连接支架沿其旋转轴线的周向方向均匀排布。
根据本发明的一些实施例,每个所述第一散风组件通过一个所述连接支架与所述导风板连接。
根据本发明的一些实施例,所述连接支架为金属支架或塑料支架。
根据本发明的一些实施例,所述连接支架与所述导风板一体成型。
根据本发明的一些实施例,所述第一散风组件包括:散风主体,所述散风主体可转动地设在所述安装口上;枢转轴,所述枢转轴设在所述连接支架上,所述散风主体可枢转地套设在所述枢转轴上。
根据本发明的一些实施例,所述第一散风组件还包括轴承,所述轴承的内圈与所述枢转轴紧密配合,所述轴承的外圈与所述散风主体紧密配合。
根据本发明的一些实施例,多个所述散风主体中的至少一个为风轮。
根据本发明的一些实施例,所述风轮包括:中部风圈,所述中部风圈中部设有供所述枢转轴穿过的枢转孔;多个叶片,多个所述叶片设在所述中部风圈的外周壁上且沿所述中部风圈的周向方向间隔分布。
根据本发明的一些实施例,所述叶片个数为3-24片。
根据本发明的一些实施例,所述叶片为8片、12片或15片。
根据本发明的一些实施例,所述叶片所在平面与所述出风口的出风方向的夹角为10°-80°。
根据本发明的一些实施例,所述叶片所在平面与所述出风口的出风方向的夹角为20°或60°。
根据本发明的一些实施例,所述风轮还包括:导风圈,所述导风圈连接至少两片相邻的所述叶片的自由端。
根据本发明的一些实施例,所述导风圈呈环状。
根据本发明的一些实施例,多个所述散风主体中的至少一个为格栅。
根据本发明的一些实施例,所述格栅包括:间隔件,所述间隔件上设有供所述枢转轴穿过的枢转孔;多个挡风片,所述多个挡风片分布在所述间隔件的两侧,每个所述挡风片与所述出风口的出风方向之间具有夹角,其中多个所述挡风片中的至少一个挡风片的所述夹角与其余挡风片的所述夹角不等。
根据本发明的一些实施例,所述挡风片与所述出风口的出风方向的夹角为10°-80°。
根据本发明的一些实施例,多个所述挡风片的延伸方向大体一致。
根据本发明的一些实施例,所述格栅还包括导风圈,所述导风圈外套在所述枢转轴上且所述间隔件沿所述导风圈的径向方向延伸,所述多个挡风片的一端与所述导风圈的内周壁连接,另一端与所述间隔件连接。
根据本发明的一些实施例,部分所述散风主体为风轮,其余为格栅。
根据本发明的一些实施例,所述枢转轴与所述连接支架螺纹连接。
根据本发明的一些实施例,还包括:至少一组第二散风组件,所述第二散风组件通过固定支架连接在所述出风口处,所述第二散风组件在所述出风口处可转动以适于将所述出风口吹出的风扩散流动。
根据本发明的一些实施例,所述导风板与所述第二散风组件沿所述出风口的出风方向并列设置,所述第二散风组件位于所述导风板的朝向所述空调器内部的一侧。
根据本发明的一些实施例,所述固定支架为一根,所述固定支架的一端与所述出风口的左端连接,另一端与所述出风口的右端连接,所述第二散风组件设在所述固定支架上。
根据本发明的一些实施例,所述固定支架与所述第二散风组件一一对应,所述固定支架的一端与所述出风口连接,另一端与所述第二散风组件连接。
根据本发明的一些实施例,所述固定支架的一端与所述出风口的上端或下端连接。
根据本发明的一些实施例,所述第二散风组件形成为单层结构且为风轮或格栅。
根据本发明的一些实施例,所述第二散风组件形成为双层结构且为风轮或格栅或风轮与格栅的组合。
根据本发明的一些实施例,所述第二散风组件为多组且均匀分布。
根据本发明的一些实施例,所述第一散风组件的构造与所述第二散风组件的构造相同。
根据本发明提供的一种空调器,所述空调器上设有出风口且包括如上所述的用于空调器的导风板组件。
根据本发明实施例的空调器,通过在导风板上设置至少一组第一散风组件,由此可以使经由第一散风组件吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口直接吹出,进而可以实现空调器的无风感效果,提高了空调器的使用舒适性。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本发明实施例的空调器的导风板的结构示意图;
图2是图1中沿A-A的剖视示意图;
图3是根据本发明实施例的空调器的导风板的主视图;
图4是根据本发明实施例的空调器的导风板的立体结构示意图;
图5是根据本发明实施例的空调器的导风板的立体分解示意图;
图6是根据本发明实施例的空调器的导风板的结构示意图;
图7是图6中沿B-B的剖视示意图;
图8是根据本发明实施例的空调器的导风板的主视图;
图9是根据本发明实施例的空调器的导风板的立体结构示意图;
图10是根据本发明实施例的空调器的导风板的结构示意图;
图11是图10中沿C-C的剖视示意图;
图12是根据本发明实施例的空调器的导风板的主视图;
图13是根据本发明实施例的空调器的导风板的立体结构示意图;
图14是根据本发明实施例的空调器的导风板的结构示意图;
图15是图14中沿D-D的剖视示意图;
图16是根据本发明实施例的空调器的导风板的主视图;
图17是根据本发明实施例的空调器的导风板的立体结构示意图;
图18是根据本发明实施例的空调器的导风板的主视图;
图19是根据本发明实施例的空调器的导风板的主视图;
图20是根据本发明实施例的空调器的主视图,空调器为空调挂机;
图21是根据本发明实施例的空调器的立体结构示意图,其中导风板处于关闭出风口的状态;
图22是根据本发明实施例的空调器的结构示意图,其中导风板处于打开出风口的状态;
图23是根据本发明实施例的空调器的结构示意图,其中导风板处于打开出风口的状态;
图24是根据本发明实施例的空调器的立体结构示意图,空调器为移动空调器;
图25是根据本发明实施例的空调器的立体结构示意图,空调器为空调柜机;
图26是根据本发明实施例的空调器的立体结构示意图;
图27是根据本发明实施例的空调器的结构示意图;
图28是图27中E处的局部结构放大示意图;
图29是根据本发明实施例的空调器的立体结构示意图;
图30是根据本发明实施例的空调器的结构示意图;
图31是图30中F处的局部结构放大示意图;
图32是图30中沿G-G的剖视示意图;
图33是根据本发明实施例的空调器的立体结构示意图;
图34是根据本发明实施例的空调器的结构示意图;
图35是图34中沿H-H的剖视示意图;
图36是图34中I处的局部结构放大示意图;
图37是根据本发明实施例的空调器的导风板的立体结构示意图;
图38是根据本发明实施例的空调器的导风板的结构示意图;
图39是根据本发明实施例的空调器的导风板的剖视示意图;
图40是根据本发明实施例的空调器的导风板的立体结构示意图;
图41是根据本发明实施例的空调器的导风板的结构示意图;
图42是根据本发明实施例的空调器的导风板的剖视示意图;
图43是根据本发明实施例的空调器的结构示意图;
图44是根据本发明实施例的空调器的结构示意图;
图45是图44中J处的局部放大示意图;
图46是根据本发明实施例的空调器的结构示意图。
附图标记:
导风板组件1,
导风板100,安装口110,挡风凹槽111,导风板的外表面112,导风板的内表面113,
连接支架120,安装孔121,连接筋122,
第一散风组件200,第二散风组件200’,
散风主体201,枢转孔202,
枢转轴203,螺纹紧固件207,
轴承204,内圈205,外圈206,
风轮210,叶片211,导风圈212,中部风圈213,
格栅220,挡风片221,间隔件222,
球体散风件230,散风出口231,弹性翻边232,
摆叶组件240,摆叶241,贴合槽242,摆叶组件的外表面243,转动环244,连接轴245,嵌入槽246,
空调器2,
壳体21,出风口22。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
下面参考图1-图25详细描述根据本发明实施例的用于空调器的导风板组件1。
如图1-图25所示,根据本发明实施例的用于空调器2的导风板组件1,包括:导风板100和至少一组第一散风组件200。
具体而言,导风板100可枢转地设在空调器2的出风口22处,导风板100上设有至少一个安装口110。第一散风组件200为单层结构且可转动地设在安装口110上以适于将出风口22吹出的风扩散流动。
需要说明的是,导风板100可以根据需求改变状态,例如,当空调器2处于停止运行的状态时,导风板100可以遮挡出风口22;当空调器2需要向其所在环境吹入气流、且导风板100打开出风口22时,风可以直接从出风口22吹出;当空调器2需要向其所在环境吹入气流、且导风板100关闭出风口22时,风可以经过第一散风组件200吹出。经由第一散风组件200吹出的风呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
根据本发明实施例的用于空调器的导风板组件1,通过在导风板100上设置至少一组第一散风组件200,由此可以使经由第一散风组件200吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口22直接吹出,进而可以实现空调器2的无风感效果,提高了空调器的使用舒适性。
如图1-图42所示,根据本发明的一个实施例,空调器2包括:壳体21、导风板100以及至少一组第一散风组件200。具体而言,壳体21上具有出风口22,当空调器2需要对其所在的环境进行制冷、制热或者换气时,风可以从出风口22流出。导风板100可枢转地设在出风口22处,导风板100上设有至少一个安装口110,第一散风组件200设在安装口110上以适于将从出风口22吹出的风扩散流动。可以理解的是,风经过第一散风组件200后改变原来的流动方向可以朝向不同的方向流动。
需要说明的是,导风板100可以根据需求改变状态,例如,当空调器2处于停止运行的状态时,导风板100可以遮挡出风口22;当空调器2需要向其所在环境吹入气流、且导风板100打开出风口22时,风可以直接从出风口22吹出;当空调器2需要向其所在环境吹入气流、且导风板100关闭出风口22时,风可以经过第一散风组件200吹出。经由第一散风组件200吹出的风呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
如图20、图21所示,当空调器2的导风板100处于遮挡出风口22的状态时,空 调器2可以处于停止运行状态或者处于无风感运行状态;如图22、图23所示,当空调器2的导风板100处于打开出风口22的状态时,空调器2产生的气流可以从出风口22直接吹出。
由此,通过在导风板100上设置第一散风组件200,可以使经由第一散风组件200吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口22直接吹出,进而实现了空调器2的无风感效果,提高空调器的使用舒适性。
根据本发明的一些实施例,第一散风组件200在出风口22处可转动,由此便于改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
根据本发明的一些实施例,空调器2可以为空调柜机、空调挂机或移动空调器2等空气处理设备。如图20所示,该空调器2为空调挂机;如图24所示,该空调器2为移动空调器2;如图25所示,该空调器2为空调柜机。上述多种空调器2的导风板100上均设置有第一散风组件200,空调器2产生的风均可以以扩散流动的方式从空调器2的出风口22流出,使空调器2具有无风感效果。
根据本发明的一个实施例,第一散风组件200可以与安装口110一一对应。例如,如图1、图6、图10、图14、图18、图29、图33、图37以及图40所示,第一散风组件200与安装口110一一对应。具体地,在如图1所示的示例中,导风板100上具有八个安装口110,相应地,第一散风组件200也具有八组且与安装口110一一对应;再如,在如图6所示的示例中,导风板100上具有六个安装口110,相应地,第一散风组件200也具有六组且与安装口110一一对应。
根据本发明的一些实施例,多个第一散风组件200均匀分布。在如图1、图6、图10、图14以及图18所示的示例中,任意相邻的两个第一散风组件200之间的间距相等。需要说明的是,多组第一散风组件200的排布方式并不限于此,例如,多组第一散风组件200还可以按照其他规律排布。
根据本发明的另一些实施例,多个第一散风组件200的中心在导风板100上的投影位于同一直线或曲线上。例如,多个第一散风组件200可转动地设在安装口110处且多个第一散风组件200的旋转中心在导风板100上的投影位于同一直线或曲线上。这里“旋转中心”是指第一散风组件200的旋转轴线上的点。在如图1、图6、图10、图14以及图18所示的示例中,多组第一散风组件200的旋转中心在导风板100上的投影位于同一直线上;再如,在如图19所示的示例中,多组第一散风组件200的旋转中心在导风板100上的投影位于曲线上。由此,可以增加导风板100的结构多样性,满足不同型号的空调器2的使用需求,同时还可以改善空调器2的无风感的效果。
根据本发明的一些实施例,安装口110的内周壁上设置挡风凹槽111,第一散风组件200的外周缘位于挡风凹槽111内。需要说明的是,空调器2在制冷状态下,位于第一散风组件200后侧的空气为温度较低,位于第一散风组件200前侧的空气温度较高,当冷空气沿着如图2、图7、图11以及图15中箭头a所示的方向流动,当温度较 高的空气与温度较低的空气交汇时,容易在第一散风组件200的外周缘处产生冷凝水,通过在安装口110的内周壁上设置挡风凹槽111,使第一散风组件200的外周缘位于挡风凹槽111内,从而可以阻挡气流沿着箭头a所示的方向吹向第一散风组件200,进而可以有效地防止在第一散风组件200的外周缘处产生冷凝水,由此可以有效地提高空调器2的使用性能。
根据本发明的一些实施例,如图1、图2所示,第一散风组件200通过连接支架120与导风板100连接,由此便于将第一散风组件200安装至导风板100上。在本发明的一些实施例中,连接支架120可以为一个且连接支架120沿导风板100的长度方向延伸,至少一组第一散风组件200与连接支架120连接。由此,不但可以简化第一散风组件200与导风板100的连接结构,还可以提高导风板100的结构强度。
例如,连接支架120设在导风板的内表面113上,连接支架120可以从导风板100的左端(例如如图1所示导风板100的左侧一端)延伸到导风板100的右端(例如如图1所示导风板100的右侧一端),连接支架120的左端与导风板100的左端连接,连接支架120的右端与导风板100的右端连接,当第一散风组件200为一个时,该第一散风组件200安装在连接支架120上,当第一散风组件200有多个时,第一散风组件200可以间隔地排布的连接支架120上。
如图1、图6、图10、图14所示,在本发明的另一些实施例中,连接支架120的一端与第一散风组件200连接,另一端与导风板100连接,由此可以提高第一散风组件200与导风板100之间的连接强度,延长导风板100的使用寿命。例如,在如图6所示的示例中,每个第一散风组件200通过一个连接支架120与导风板100连接,由此可以简化连接支架120的结构,节约生产成本;再如,在如图1、图10和图14所示的示例中,每个第一散风组件200通过多个连接支架120与导风板100连接,每组第一散风组件200上的多个连接支架120沿其旋转轴线的周向方向均匀排布,第一散风组件200与多个连接支架120的一端共同连接,由此可以提高第一散风组件200与导风板100的连接稳定性。
在本发明的一个示例中,连接支架120可以为金属支架,由此不但可以提高连接支架120的结构强度,还可以降低导风板组件1的出风噪音,从而有利于提升空调器2的使用性能。需要说明的是,连接支架120的材质并不限于此,例如,在本发明的另一个示例中,连接支架120可以为塑料支架,由此,可以降低生产成本。为进一步简化加工工序、提高空调器2的装配效率,连接支架120可以与导风板100一体成型。
根据本发明的一个实施例,如图2、图7、图11以及图15所示,第一散风组件200包括:散风主体201。其中,散风主体201可转动或可滑动地设在安装口110上。由此,便于实现经由第一散风组件200的风以扩散的方式流动,从而可以提高空调器2的无风感效果。需要说明的是,可以利用转动或滑动的方式提高第一散风组件200对风的扩散效果,从而可以提高空调器2的无风感效果。
根据本发明的一个示例,第一散风组件200还可以包括:枢转轴203。其中,枢转 轴203设在连接支架120上,散风主体201可枢转地套设在枢转轴203上。由此即可将第一散风组件200可枢转地设在安装口110处。由此,可以简化第一散风组件200的结构,降低生产成本。
例如,如图5所示,枢转轴203的一端设有螺纹,连接支架120上设有供枢转轴203的一端穿过的安装孔121,在装配时,枢转轴203的一端与安装孔121螺纹配合,枢转轴203的一端依次穿过枢转孔202、安装孔121后伸出至安装孔121的外部,且枢转轴203上靠近其端部的部分螺纹位于安装孔121外,然后利用螺纹紧固件207将枢转轴203固定在连接支架120上。在如图2、图6以及图15所示的示例中,螺纹紧固件207呈帽状罩设在枢转轴203的一端;在如图11所示的示例中,螺纹紧固件207呈环状套设在枢转轴203的一端,即枢转轴203的一端穿过螺纹紧固件207,枢转轴203的外周壁与螺纹紧固件207的内环内周壁通过螺纹连接。
如图2、图7、图11以及图15所示,根据本发明的一个实施例,第一散风组件200还可以包括轴承204,轴承204的内圈205与枢转轴203紧密配合,轴承204的外圈206与散风主体201紧密配合。由此可以降低散风主体201与枢转轴203之间的摩擦,同时也便于将散风主体201可转动地设在安装口110上。
例如,如图2、图7、图11以及图15所示,散风主体201上设有供枢转轴203穿过的枢转孔202,轴承204设在枢转孔202内,且轴承204的内圈205与枢转轴203紧密配合,轴承204的外圈206与枢转孔202的内周壁配合,由此当第一散风组件200转动时,可以有效地减少散风主体201与枢转轴203之间的摩擦阻力,提高散风主体201的转动的灵活性,从而有效地降低了散风主体201与枢转轴203之间的磨损,进而可以有效地延长第一散风组件200的使用寿命。
根据本发明的一些实施例,如图1-图25所示,多个散风主体201中的至少一个为风轮210。由此便于实现第一散风组件200对风的扩散效果,进而可以提高空调器2的无风感效果。进一步地,风轮210上设有供枢转轴203穿过的枢转孔202,且风轮210可以包括多个叶片211,多个叶片211沿枢转孔202的周向方向间隔分布。由此当风经过第一散风组件200时,在叶片211的作用下可以使风扩散流动,即可以改变风的流动方向,使风吹向不同的方向,例如在导风板100前侧风沿着图2、图7、图11以及图15中箭头b所示的方向呈锥状向外扩散。
需要说明的是,风轮210的叶片211的数量,可以根据具体情况而定,增加叶片211的数量可以有利于提高风轮210的散风效果,缩短送风距离;减少叶片211的数量可以有利于增大出风量,提升导风板组件1的使用性能。
在本发明的一个实施例中,叶片211个数可以为3-24片,由此可以提高空调器2的无风感效果。经试验验证,当叶片211个数为8片、12片或15片时,第一散风组件200的散风效果更好,空调器2的无风感效果更佳。例如,在如图1所示的示例中,风轮210的叶片211数为15片;再如,在如图6所示的示例中,风轮210的叶片211数为12片;又如,在如图10所示的示例中,风轮210的叶片211数为8片。
进一步地,叶片211所在平面与出风口22的出风方向的夹角为10°-80°。由此,可以缩短送风距离,进一步提高第一散风组件200的散风效果和空调器2的无风感效果。需要说明的是,叶片211与出风口22的出风方向的夹角较大时,可以有利于使风以扩散的方式流动,提高导风板组件1的无风感效果;叶片211与出风口22的出风方向的夹角较小时,有利于增大第一散风组件200的出风量,从而可以提升空调器2的性能。经试验验证,当叶片211所在平面与出风口22的出风方向的夹角为20°或60°时,第一散风组件200的散风效果、空调器2的无风感效果更佳。
根据本发明的一个实施例,如图3、图4所示,风轮210还可以包括:导风圈212,导风圈212连接至少两片相邻的叶片211的自由端。由此,可以增强风轮210的结构强度,延长第一散风组件200的使用寿命。在本发明的一个示例中,导风圈212形成为环形导风圈。
根据本发明的一些实施例,如图26-图32所示,多个散风主体201中的至少一个为格栅220。格栅220结构的第一散风组件200具有结构简单、散风效果好、生产成本低等优点,利用格栅220结构可以提高空调器2的无风感效果。
进一步地,如图26-图32所示,格栅220可以包括:间隔件222和多个挡风片221。具体地,间隔件222上设有供枢转轴203穿过的枢转孔202,多个挡风片221分布在间隔件222的两侧,每个挡风片221与出风口22的出风方向之间具有夹角,其中多个挡风片221中的至少一个挡风片221的夹角与其余挡风片221的夹角不等。需要说明的是,挡风片221具有一定的倾斜角度,以将经由格栅220吹出的风引导至不同的方向。另外,由于多个挡风片221中的至少一个挡风片221的夹角与其余挡风片221的夹角不等,当有风经过格栅220时,风对间隔件222两侧的挡风片221的作用力不相等,从而容易驱动格栅220转动,进而使得经过格栅220的风可以以扩散的方式流动,由此即可实现空调器2的无风感送风效果。
在如图25所示的示例中,挡风片221形成为直线型挡风片221。这里对间隔件222的设置位置不做具体限定,例如,间隔件222可以设在格栅220的中间位置处,位于间隔件222两侧的挡风片221的数量、长度均可以相等。在本发明的一个示例中,挡风片221与出风口22的出风方向的夹角可以为10°-80°。由此便于实现空调器2的无风感的送风效果。另外,在本发明的一些实施例中,多个挡风片221的延伸方向大体一致。由此,可以简化格栅220的加工过程,节约生产成本。
根据本发明的一个示例,如图3、图4所示,格栅220还可以包括:导风圈212,挡风片221的一端与间隔件222连接,另一端与导风圈212的内周壁连接。由此,可以增强风轮210的结构强度,延长第一散风组件200的使用寿命。在本发明的一个示例中,导风圈212形成为环形导风圈。
根据本发明的一些实施例,如图29-图32所示,多个散风主体201中的一部分散风主体201为风轮210,另一部分散风主体201为格栅220。可以理解的是,在同一空调器2的导风板100上,多个的散风主体201中存在至少一个风轮210,同时也存在至 少一个格栅220。这里,对格栅220与风轮210的排布方式不做具体限定,例如,在如图29-图30所示的示例中,格栅220与风轮210交替间隔分布,即相邻的两个格栅220之间设有一个风轮210,相邻的两个风轮210之间设有一个格栅220。当然,格栅220与风轮210的排布方式并不限于此,只要其可满足第一散风组件200的扩散式分散风、空调器2的无风感效果即可。
根据本发明的一些实施例,如图33-图36所示,多个散风主体201中的至少一个包括风轮210和格栅220,风轮210和格栅220中的一个位于出风方向的上游,另一个位于出风方向的下游。也就是说,同一个第一散风组件200同时包括有风轮210和格栅220结构。例如,在如图36所示的示例中,每个散风主体201中包括两层,其中一层为风轮210结构且位于靠近导风板的内表面113的位置处,另一层为格栅220结构且位于靠近导风板的外表面112的位置处。由此,可以利用风轮210、格栅220对风进行两次散风,由此可以提高风的扩散效果,进而可以提高空调器2的无风感效果。需要说明的是,在同一第一散风组件200内,风轮210和格栅220的位置并不限于此,例如,风轮210结构可以位于靠近导风板的外表面112的位置处,格栅220结构可以位于靠近导风板的内表面113的位置处。
根据本发明的一些实施例,如图37-图39所示,多个第一散风组件200中的至少一个为球体散风件230,球体散风件230可转动地安装在安装口110上且球体散风件230上设有散风出口231。需要说明的是,出风口22处的风可以从散风出口231排出,由于球体散风件230可转动设在安装口110处,散风出口231的朝向可以任意调整,即风可以从不同的散风出口231沿不同的方向排出,由此即可使风以扩散流动的方式从第一散风组件200排出,进而实现了空调器2的无风感效果。
根据本发明的一个实施例,安装口110上可以设有弹性翻边232,弹性翻边232沿安装口110的周向方向包裹在球体散风件230的部分外周壁上。由此,可以使球体第一散风组件200牢靠地安装在导风板100上,降低球体散风件230因意外从导风板100上脱落的可能性。例如,如图37-图39所示,球体散风件230大体呈球状,弹性翻边232呈环状且沿安装口110的周向方向包裹在球体散风件230的外周壁上。
进一步地,弹性翻边232可以位于导风板的外表面112上和/或导风板的内表面113上。这里的“导风板的外表面112”可以指导风在封闭出风口22时位于壳体21的外部的一侧的表面,“导风板的内表面113”可以指导风在封闭出风口22时位于壳体21的内部的一侧的表面。例如,如图39所示,部分弹性翻边232位于导风板的外表面112上且朝向导风板100的外侧延伸出,弹性翻边232的朝向球体散风件230的表面与球体散风件230贴合;部分弹性翻边232位于导风板的内表面113上且朝向导风板100的内侧延伸出,弹性翻边232的朝向球体散风件230的表面与球体散风件230贴合。
根据本发明的一个实施例,如图40-图42所示,多个第一散风组件200中的至少一个为摆叶组件240,摆叶组件240可在封闭安装口110的第一状态和打开安装口110的第二状态之间切换。当摆叶组件240处于第一状态时,摆叶组件240封闭安装口110, 风无法通过摆叶组件240而流动;当摆叶组件240处于第二状态时,摆叶组件240打开安装口110,风可以通过摆叶组件240的导风作用以扩散流动的方式从安装口110流出,进而实现空调器2的无风感效果。需要说明的是,摆叶组件240在处于第二状态时,通过调整摆叶组件240的状态,可以改变从安装口110吹出的风的流动方向、流动状态,例如,如图40所示,当摆叶组件240在处于第二状态、且当有风从安装口110吹出时,摆叶组件240可以驱使风以扩散流动的方式流动,由此便于实现空调器2的无风感效果。
在本发明的一个示例中,如图40-图42所示,摆叶组件240可以包括两片间隔开的摆叶241,每片摆叶241可转动地设在安装口110上。由此便于调整从安装口110吹出的风的流动方向和流动方式,驱使风以扩散流动的方式流动。为提高摆叶组件240的结构紧凑程度,当摆叶组件240位于第一状态时,两片摆叶241的部分重叠。例如,如图41中位于最右侧的一组摆叶组件240所示,该组摆叶组件240处于第一状态,两片摆叶241封闭相应的安装口110,且两片摆叶241的部分重叠。
进一步地,如图40所示,两片摆叶241的其中一个上设有贴合槽242,当摆叶组件240位于第一状态时,两片摆叶241中的另一个的、与其中一个摆叶241重叠的部分配合在贴合槽242内。由此,可以提高摆叶组件240的结构稳定性。更进一步地,当摆叶组件240位于第一状态时,摆叶组件的外表面243形成为光滑面。由此,可以提高摆叶组件240的外形美观性。这里“摆叶组件的外表面243”可以指当摆叶组件240处于第一状态时,摆叶组件240朝向空调器2的壳体21的外部一侧的表面。例如,如图41所示,两片摆叶241的其中一个上设有贴合槽242,当摆叶组件240位于第一状态时,两片摆叶241中的另一个的、与其中一个摆叶241重叠的部分配合在贴合槽242内,并且摆叶组件的外表面243形成为光滑面。
根据本发明的一个实施例,如图40、图42所示,摆叶组件240还包括转动环244,转动环244设在安装口110的内周壁上且沿安装口110的内周壁可转动,摆叶241可转动的设在转动环244上。如图42所示,安装口110的内周壁上设有嵌入槽246,嵌入槽246可以沿安装口110的周向方向延伸,转动环244可转动地安装在嵌入槽246内,摆叶241上设有连接轴245,连接轴245可转动地设在转动环244上,由此摆叶241不但可以实现自身旋转,还可以在随着转动环244转动,进而风可以以扩散流动的方式从安装口110吹出,提高空调器2的无风感效果。
下面参考图43-图46详细描述根据本发明实施例的空调器2。
如图43-图46所示,根据本发明实施例的空调器2,包括:壳体21、和至少一组第二散风组件200’。
具体而言,如图44、图46所示,壳体21上具有出风口22,当空调器2需要对其所在的环境进行制冷、制热或者换气时,风可以从出风口22流出。第二散风组件200’在出风口22处可转动以适于将出风口22吹出的风扩散流动。可以理解的是,风经过第二散风组件200’后改变原来的流动方向可以朝向不同的方向流动。在出风口22有 风吹出的情况下,当风经由第二散风组件200’吹出时,风呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果;当风不经由第二散风组件200’而直接从出风口22吹出时,空调器2正常出风。
第二散风组件200’通过固定支架250连接在出风口22处,当有风从出风口22吹出时,风可以呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
根据本发明实施例的空调器2,通过在出风口22处设置第二散风组件200’,并将第二散风组件通过固定支架250固定,由此可以使经由第二散风组件200’吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口22直接吹出,进而可以实现空调器2的无风感效果,提高了空调器的使用舒适性。
根据本发明的一些实施例,第二散风组件200’在出风口22处可转动,由此便于改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
如图43所示,根据本发明的一个实施例,空调器2还可以包括导风板100,导风板100设在出风口22处以打开或关闭出风口22,导风板100与第二散风组件200’沿出风口22的出风方向并列设置,第二散风组件200’位于导风板100的朝向壳体21内部的一侧。
可以理解的是,如图44所示,在第二散风组件200’位于导风板100的朝向壳体21内部的一侧的条件下,当导风板22遮挡出风口22时,第二散风组件200’被导风板22遮挡,风无法从出风口22被吹出;当导风板22打开出风口22时,风经由第二散风组件200’吹出时,风呈扩散的方式流动,风不经由第二散风组件200’而直接从出风口22吹出时,空调器2正常出风。
在本发明的一个实施例中,如图44-图46所示,导风板100可枢转地设在出风口22处,第二散风组件200’通过固定支架250固设在壳体21上。由此可以简化空调器2的结构。进一步地,如图46所示,固定支架250可以为一根,固定支架250的一端与出风口22的左端连接,另一端与出风口22的右端连接,第二散风组件200’设在固定支架250上。
例如,在如图46所示的示例中,空调器2上设有八组沿左右方向间隔分布的第二散风组件200’,固定支架250为一根,且固定支架250的左端与出风口22的左端相连,固定支架250的右端与出风口的右端相连,八组第二散风组件200’均安装在固定支架250上。另外,在如图45所示的示例中,第二散风组件200’位于导风板100的朝向壳体21内部的一侧,当导风板100关闭出风口22时,导风板100还可以第二散风组件200’,从而可以提高空调器2的外形美观性。
需要说明的是,固定支架250的结构并不限于此,例如,在本发明的另一个实施例中,固定支架250与第二散风组件200’一一对应,固定支架250的一端与壳体21连 接,另一端与第二散风组件200’连接。进一步地,固定支架250的另一端与出风口22的上端或下端连接。例如,在如图44-图45所示的示例中,空调器2上设有八组沿左右方向间隔分布的第二散风组件200’,固定支架250为八根且与第二散风组件200’一一对应,固定支架250的一端与出风口22的下端连接,另一端与第二散风组件200’连接。
如图44-图46所示,第二散风组件200’包括:枢转轴203和散风主体201。其中,枢转轴203可以与固定支架250固定连接,散风主体201可枢转地设在枢转轴203上。由此便于将第二散风组件200’可转动地设在出风口22处上,从而便于改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
在本发明的一些实施例中,散风主体201可以形成为单层结构且为风轮210或格栅220,如图44-图46所示,散风主体201形成为在出风口22处可转动的风轮210;如图26所示,散风主体201形成为在出风口22处可转动的格栅220;如图29所示,空调器2包括有多个第二散风组件200’,部分第二散风组件200’的散风主体201形成为在出风口22处可转动的风轮210,另一部分第二散风组件200’的散风主体201形成为在出风口22处可转动的格栅220。
在本发明的另一些实施例中,散风主体201可以形成为双层结构且为风轮210或格栅220或风轮210与格栅220的组合。例如,如图36所示,散风主体201可以形成为双层结构,其中一层为风轮210,另一层为格栅220;再如,散风主体201可以形成为具有两层风轮210的结构;又如,散风主体201可以形成为具有两层格栅220的结构。
根据本发明的一些实施例,第二散风组件200’为多组且均匀地分布在出风口22处,由此可以优化空调器2的无风感效果。为简化空调器2的加工工艺过程,缩短生产周期,在本发明的一些实施例中,第一散风组件200的构造与第二散风组件200’的构造相同。
下面参照具体实施例详细描述根据本发明实施例的用于空调器2的导风板组件1。值得理解的是,下述描述仅是示例性说明,而不是对本发明的具体限定。
实施例1
如图1-图5所示,在该实施例中,空调器2包括壳体21、导风板100以及八组第一散风组件200。壳体21上具有出风口22,当空调器2需要对其所在的环境进行制冷、制热或者换气时,风可以从出风口22流出。导风板100可枢转地设在出风口22处,导风板100上设有八个安装口110且与八个第一散风组件200一一对应。第一散风组件200适于使从出风口22吹出的风以扩散流动的方式流动。可以理解的是,风经过第一散风组件200后改变原来的流动方向且朝向不同的方向流动。
如图5所示,第一散风组件200可转动安装在安装口110处且包括:散风主体201枢转轴203。散风主体201通过连接支架120与导风板100连接,具体地,每个安装口110处设有一根连接支架120,连接支架120的中部设有供枢转轴203的一端穿过的安 装孔121,散风主体201的中部设有枢转孔202,枢转轴203的另一端穿过枢转孔202,散风主体201通过枢转孔202可枢转地与枢转轴203配合。
枢转轴203的一端设有螺纹,在装配时,枢转轴203的一端可以与安装孔121螺纹配合,且枢转轴203的一端依次穿过枢转孔202、安装孔121后伸出至安装孔121的外部,枢转轴203上靠近其端部的部分螺纹位于安装孔121外,然后利用螺纹紧固件207将枢转轴203固定在连接支架120上。如图2、图5所示,螺纹紧固件207呈帽状罩设在枢转轴203的一端。连接支架120可以为塑料支架且可以与导风板100为一体成型件,由此可以缩短空调器2的生产周期,降低生产成本。
如图2所示,为降低散风主体201与枢转轴203之间的摩擦阻力,提高散风主体201转动的灵活性,延长散风主体201与枢转轴203的使用寿命,散风主体201与枢转轴203之间设有轴承204,轴承204的内圈205与枢转轴203的外周壁紧密贴合,轴承204的外圈206与散风主体201的枢转孔202的内周壁紧密贴合。
散风主体201为风轮210,由此便于实现经由第一散风组件200的风以扩散的方式流动,从而可以提高空调器2的无风感效果。如图1-图5所示,风轮210包括中部风圈213、导风圈212和十五片叶片211,导风圈212外套在中部风圈213的外部且与中部风圈213间隔开,十五片叶片211连接在中部风圈213的外周壁和导风圈212的内周壁之间,中部风圈213的内周壁构造成枢转孔202,十五片叶片211沿中部风圈213的周向方向间隔分布。
另外,每片叶片211所在平面与出风口22的出风方向的夹角为10°-80°。由此,可以提高第一散风组件200的散风效果、空调器2的无风感效果。当导风板100封闭出风口22时,叶片211的朝向壳体21外部的端面位于同一球面上。由此可以增强导风板100处的外形美观性。
需要说明的是,导风板100可以根据需求改变状态,例如,当空调器2处于停止运行的状态时,导风板100可以遮挡出风口22;当空调器2需要向其所在环境吹入气流、且导风板100打开出风口22时,风可以直接从出风口22吹出;当空调器2需要向其所在环境吹入气流、且导风板100关闭出风口22时,风可以经过第一散风组件200吹出。经由第一散风组件200吹出的风呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,由此可以避免风直接吹向人体,从而实现了空调器2的无风感效果。
由此,通过在导风板100上设置第一散风组件200,可以使经由第一散风组件200吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口22直接吹出,进而可以实现空调器2的无风感效果,提高了空调器的使用舒适性。
实施例2
如图6-图9所示,与实施例1不同的是,在该实施例中,第一散风组件200共有六组,每组第一散风组件200中的风轮210包括八片叶片211、连接支架120为三根。三根连接支架120的一端相交于一点,并在该点处构造有安装孔121,枢转轴203的一 端适于穿过该安装孔121。三根连接支架120的另外一端分别与导风板100连接,且三根连接支架120沿中部风圈213的周向方向均匀分布,即任意相邻的两根连接支架120之间的夹角相等。由此,不但可以增强导风板100的结构强度,还可以避免连接支架120阻挡安装口110处的出风,从而有理由提升导风板组件1的使用性能。
另外,当导风板100封闭出风口22时,叶片211的朝向壳体21外部的端面、以及导风圈212的朝向壳体21外部的端面均位于同一平面上。由此可以增强导风板100处的外形美观性。
实施例3
如图10-图13所示,与实施例1不同的是,在该实施例中,第一散风组件200共有六组,每组第一散风组件200中的风轮210包括十二片片叶片211、连接支架120为一根。该连接支架120的一端与导风板100连接,另一端具有安装孔121并通过枢转轴203与散风主体201连接。另外,在该实施例中,螺纹紧固件207呈环状套设在枢转轴203的一端上,由此可以简化导风板100的结构、减轻导风板100的质量、节省生产成本。
当导风板100封闭出风口22时,叶片211的朝向壳体21外部的端面、以及导风圈212的朝向壳体21外部的端面均位于同一平面上。由此可以增强导风板100处的外形美观性。
另外,在该实施例中,在相邻的两个第一散风组件200中,其中一个第一散风组件200的连接支架120与另外一个第一散风组件200中的连接支架120通过连接筋122连接,由此可以增强连接支架120的结构强度,同时也可以增加导风板100的结构强度。
实施例4
如图14-图17所示,与实施例1不同的是,在该实施例中,每组第一散风组件200中的风轮210包括十五片叶片211。
实施例5
如图18所示,与实施例1不同的是,在该实施例中,第一散风组件200共有二十三组,由此可以改善空调器2的无风感效果。该二十三组第一散风组件200均匀分布在导风板100上,且该二十三组第一散风组件200的旋转中心在导风板100上的投影位于同一直线上,由此可以增加导风板100的结构多样性,满足不同型号的空调器2的使用需求,同时还可以改善无风感的效果。
实施例6
如图19所示,与实施例1不同的是,在该实施例中,第一散风组件200共有十八组,该十八组第一散风组件200无规则地分布在导风板100上,由此可以增加导风板100的结构多样性,满足不同型号的空调器2的使用需求,同时还可以改善无风感的效果。
实施例7
如图26-图28所示,与实施例1不同的是,在该实施例中,散风主体201为格栅220。需要说明的是,格栅220结构的第一散风组件200具有结构简单、散风效果好、生产成本低等优点,利用格栅220结构可以提高空调器2的无风感效果。
如图28所示,格栅220包括:间隔件222和多个挡风片221。具体地,间隔件222上设有供枢转轴203穿过的枢转孔202,多个挡风片221分布在间隔件222的两侧,每个挡风片221与出风口22的出风方向之间具有夹角,其中多个挡风片221中的至少一个挡风片221的夹角与其余挡风片221的夹角不等。由此当有风经过格栅220时,风对间隔件222两侧的挡风片221的作用力不相等,从而容易驱动格栅220转动,进而使得经过格栅220的风可以以扩散的方式流动,由此即可实现空调器2的无风感送风效果。
如图26所示,挡风片221形成为直线型挡风片221。这里对间隔件222的设置位置不做具体限定,例如,间隔件222可以设在格栅220的中间位置处,位于间隔件222两侧的挡风片221的数量、长度均可以相等。进一步地,挡风片221与出风口22的出风方向的夹角可以为10°-80°。由此便于实现空调器2的无风感的送风效果。另外,多个挡风片221的延伸方向大体一致。由此,可以简化格栅220的加工过程,节约生产成本。
格栅220还可以包括:导风圈212和中部风圈213,导风圈212外套在中部风圈213的外部且与中部风圈213间隔开,挡风片221设在导风圈212和中部风圈213之间,中部风圈213的内周壁构造成枢转孔202。如图26-图28所示,间隔件222的中部凸出构造呈中部风圈213,中部风圈213上设有贯通其的枢转孔202。挡风片221的一端与间隔件222连接,另一端与导风圈212的内周壁连接。由此,可以增强风轮210的结构强度,延长第一散风组件200的使用寿命。
实施例8
如图29-图32所示,与实施例1不同的是,在该实施例中,多个散风主体201中的一部分散风主体201为风轮210,另一部分散风主体201为格栅220。可以理解的是,在同一空调器2的导风板100上,多个的散风主体201中存在至少一个风轮210和至少一个格栅220。在如图29-图30所示的示例中,格栅220与风轮210交替间隔分布,即相邻的两个格栅220之间设有一个风轮210,相邻的两个风轮210之间设有一个格栅220。
实施例9
如图33-图36所示,与实施例1不同的是,在该实施例中,多个散风主体201中的至少一个散风主体201包括风轮210和格栅220。也就是说,多个散风主体201中存在至少一个散风主体201为双层结构,其中一层为风轮210,另一层为格栅220。风轮210和格栅220中的一个位于出风方向的上游,另一个位于出风方向的下游。例如,如图36所示,在同一个第一散风组件200中,散风主体201同时包括有风轮210和格栅220,风轮210结构位于靠近导风板的内表面113的位置,格栅220结构位于靠近导风 板的外表面112的位置。由此,可以利用风轮210、格栅220对风进行两次散风,从而提高风的扩散效果,进而可以提高空调器2的无风感效果。
实施例10
如图37-图39所示,与实施例1不同的是,在该实施例中,第一散风组件200为球体散风件230,球体散风件230可转动地安装在安装口110上且球体散风件230上设有散风出口231。需要说明的是,出风口22处的风从散风出口231排出,由于球体散风件230可转动设在安装口110处,散风出口231的朝向可以任意调整,即风可以从不同的散风出口231沿不同的方向排出,由此即可使风以扩散流动的方式从第一散风组件200排出,进而实现了空调器2的无风感效果。
如图37-图39所示,球体散风件230大体呈球状。如图39所示,安装口110上可以设有弹性翻边232,弹性翻边232沿安装口110的周向方向包裹在球体散风件230的部分外周壁上。由此,可以使球体第一散风组件200牢靠地安装在导风板100上,降低球体散风件230因意外从导风板100上脱落的可能性。
弹性翻边232呈环状且沿球体散风件230的周向方向包裹在其外周壁上。导风板100的外侧和内侧均设有弹性翻边232,如图39所示,部分弹性翻边232位于导风板的外表面112上且朝向导风板100的外侧延伸出,弹性翻边232的朝向球体散风件230的表面与球体散风件230贴合;部分弹性翻边232位于导风板的内表面113上且朝向导风板100的内侧延伸出,弹性翻边232的朝向球体散风件230的表面与球体散风件230贴合。
实施例11
如图40-图42所示,与实施例1不同的是,在该实施例中,第一散风组件200为摆叶组件240。摆叶组件240可在封闭安装口110的第一状态和打开安装口110的第二状态之间切换。当摆叶组件240处于第一状态时,摆叶组件240封闭安装口110,风无法通过摆叶组件240而流动;当摆叶组件240处于第二状态时,摆叶组件240打开安装口110,风可以通过摆叶组件240的导风作用以扩散流动的方式从安装口110流出,进而实现空调器2的无风感效果。需要说明的是,摆叶组件240在处于第二状态时,通过调整摆叶组件240的状态,可以改变从安装口110吹出的风的流动方向、流动状态,例如,如图40所示,当摆叶组件240在处于第二状态、且当有风从安装口110吹出时,摆叶组件240可以驱使风以扩散流动的方式流动,由此便于实现空调器2的无风感效果。
如图40-图42所示,摆叶组件240可以包括转动环244和两片间隔开的摆叶241。其中,转动环244设在安装口110的内周壁上且沿安装口110的内周壁可转动,摆叶241可转动的设在转动环244上。如图42所示,安装口110的内周壁上设有嵌入槽246,嵌入槽246可以沿安装口110的周向方向延伸,转动环244可转动地安装在嵌入槽246内。
每片摆叶241可转动地设在转动环244上。由此便于调整从安装口110吹出的风的 流动方向和流动方式,驱使风以扩散流动的方式流动。如图42所示,摆叶241上设有连接轴245,连接轴245可转动地设在转动环244上,由此摆叶241不但可以实现自身旋转,还可以在随着转动环244转动,进而风可以以扩散流动的方式从安装口110吹出,提高空调器2的无风感效果。
为提高摆叶组件240的结构紧凑程度,当摆叶组件240位于第一状态时,两片摆叶241的部分重叠。例如,如图41中位于最右侧的一组摆叶组件240所示,该组摆叶组件240处于第一状态,两片摆叶241封闭相应的安装口110,且两片摆叶241的部分重叠。
进一步地,如图40所示,两片摆叶241的其中一个上设有贴合槽242,当摆叶组件240位于第一状态时,两片摆叶241中的另一个的、与其中一个摆叶241重叠的部分配合在贴合槽242内。由此,可以提高摆叶组件240的结构稳定性。
当摆叶组件240位于第一状态时,摆叶组件的外表面243形成为光滑面。由此,可以提高摆叶组件240的外形美观性。这里“摆叶组件的外表面243”可以指当摆叶组件240处于第一状态时,摆叶组件240朝向空调器2的壳体21的外部一侧的表面。也就是说,如图41所示,当摆叶组件240位于第一状态时,两片摆叶241中的另一个的、与其中一个摆叶241重叠的部分配合在贴合槽242内,摆叶组件240朝向空调器2的壳体21的外部一侧的表面形成为光滑面。
如图1-图42所示,根据本发明实施例提供的一种导风板组件1,包括:导风板100和至少一组第一散风组件200。需要说明的是,导风板组件1可以用于空调柜机、空调挂机或者移动空调器2等空气处理设备上,具体地,导风板组件1可以可在上述设备的出风口22处。
其中,导风板100可枢转地设在出风口22处以打开或关闭出风口22,导风板100上设有至少一个安装口110,第一散风组件200可转动地或可滑动地设在安装口110上适于将出风口22吹出的风扩散流动。
可以理解的是,导风板组件1可以根据需求改变状态。以空调器2为例,当空调器2处于停止运行的状态时,导风板100可以遮挡出风口22;当空调器2需要向其所在环境吹入气流、且导风板100打开出风口22时,风可以直接从出风口22吹出;当空调器2需要向其所在环境吹入气流、且导风板100关闭出风口22时,风可以经过第一散风组件200吹出。经由第一散风组件200吹出的风呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,由此可以避免风直接吹到人体,便于实现了空调器2的无风感效果。
如图20、图21所示,当空调器2的导风板100处于遮挡出风口22的状态时,空调器2可以处于停止运行状态或者处于无风感运行状态;如图22、图23所示,当空调器2的导风板100处于打开出风口22的状态,空调器2产生的气流可以从出风口22直接吹出。
另外,导风板的内表面113上可以设有多条沿左右方向(如图14所示的左右方向) 延伸的筋条101,由此可以增强导风板100的结构强度。
根据本发明实施例的导风板组件1,通过在导风板100上设置第一散风组件200,可以使经由第一散风组件200吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口22直接吹出,进而可以实现空调器2的无风感效果,提高了空调器的使用舒适性。
实施例12
如图43所示,在该实施例中,空调器2包括:壳体21、导风板100、和八组第二散风组件200’。
壳体21上具有出风口22,导风板100可枢转地设在出风口22处以打开或关闭出风口22,导风板100与第二散风组件200’沿出风口22的出风方向并列设置,且第二散风组件200’位于导风板100的朝向壳体21外部的一侧,八组第二散风组件200’沿出风口22的长度方向(如图43所示的左右方向)间隔分布。
空调器2还可以包括枢转支架260,枢转支架260在第一位置和第二位置之间可枢转,且枢转支架260与壳体21连接,八组第二散风组件200’设在枢转支架260上。也就是说,八组第二散风组件200’通过枢转支架260在与出风口22相对的第一位置和偏离出风口22的第二位置之间可移动。如图43所示,枢转支架260包括:第一枢转杆、第二枢转杆262以及沿直线延伸的连接杆263。其中,第一枢转杆的一端可枢转地与壳体21的左端连接,第二枢转杆262的一端可枢转地与壳体21的右端连接,连接杆263的一端与第一枢转杆的另一端连接,连接杆263的另一端与第二枢转杆262的另一端连接,八组第二散风组件200’间隔地设在连接杆263上。
进一步地,第二散风组件200’包括:枢转轴203和散风主体201。其中,枢转轴203可以与连接杆263固定连接,散风主体201可枢转地设在枢转轴203上。由此便于将第二散风组件200’可转动地设在枢转支架260上,进而便于使第二散风组件200’在出风口22处可转动,从而便于改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。散风主体201形成为单层结构且形成为风轮210。
当空调器2需要对其所在的环境进行制冷、制热或者换气时,转动枢转支架260使第二散风组件200’位于偏离出风口22的第二位置处,例如转动枢转支架260可以使第二散风组件200’位于靠近壳体21的底壁(即靠近壳体下端的位置处)处,旋转导风板100使导风板100打开出风口22,风可以从出风口22流出。此时,使第二散风组件200’保持在第二位置,风可以直接从出风口22吹出,空调器2可以正常送风;转动枢转支架260使第二散风组件200’位于与出风口22相对的第一位置处,第二散风组件200’适于将出风口22吹出的风扩散流动,风经过第二散风组件200’后改变原来的流动方向可以朝向不同的方向流动,即风呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
实施例13
如图44-图45所示,在该实施例中,空调器2包括:壳体21、导风板100、和八组第二散风组件200’。
如图45所示,壳体21上具有出风口22,导风板100可枢转地设在出风口22处以打开或关闭出风口22,导风板100与第二散风组件200’沿出风口22的出风方向并列设置,且第二散风组件200’位于导风板100的朝向壳体21内部的一侧,八组第二散风组件200’沿出风口22的长度方向(如图44所示的左右方向)均匀分布。
空调器2还可以包括八根固定支架260,八根固定支架260与第二散风组件200’一一对应,每根固定支架260的一端与相应的第二散风组件200’连接,另一端与壳体21连接,即每组第二散风组件200’通过一根固定支架260固定连接在壳体21的出风口22处。
第二散风组件200’包括:枢转轴203和散风主体201。其中,枢转轴203可以与固定支架250固定连接,散风主体201可枢转地设在枢转轴203上。由此便于将第二散风组件200’可转动地设在出风口22处上,从而便于改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。散风主体201形成为单层结构且形成为风轮210。
当空调器2需要对其所在的环境进行制冷、制热或者换气时,导风板100打开出风口,第二散风组件200’适于将出风口22吹出的风扩散流动,风经过第二散风组件200’后改变原来的流动方向可以朝向不同的方向流动,即风经过第二散风组件200’后呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,缩短送风距离,避免风直接吹送到人体上,进而实现了空调器2的无风感效果。
当导风板100关闭出风口22时,导风板100不但可以遮挡出风口22,还可以遮挡第二散风组件200’。
实施例14
如图46所示,与实施例13不同的是,在该实施例中,空调器2还可以包括一根固定支架260,该固定支架250的左端与出风口22的左端相连,固定支架250的右端与出风口的右端相连,八组第二散风组件200’均安装在固定支架250上。由此可以简化空调器2的结构。
如图1-图42所示,根据本发明实施例提供的一种空调器2,空调器2上设有出风口22且空调器2包括:如上述实施例所述的用于空调器2的导风板组件1。
其中,导风板100可枢转地设在出风口22处以打开或关闭出风口22,导风板100上设有至少一个安装口110,第一散风组件200可转动地或可滑动地设在安装口110上适于将出风口22吹出的风扩散流动。
可以理解的是,导风板组件1可以根据需求改变状态。当空调器2处于停止运行的状态时,导风板100可以遮挡出风口22;当空调器2需要向其所在环境吹入气流、且导风板100打开出风口22时,风可以直接从出风口22吹出;当空调器2需要向其所在环境吹入气流、且导风板100关闭出风口22时,风可以经过第一散风组件200吹出。 经由第一散风组件200吹出的风呈扩散的方式流动,从而可以改变的风的流动方向,使风朝向不同方向流动,由此可以避免风直接吹到人体,便于实现了空调器2的无风感效果。
如图20、图21所示,当空调器2的导风板100处于遮挡出风口22的状态时,空调器2可以处于停止运行状态或者处于无风感运行状态;如图22、图23所示,当空调器2的导风板100处于打开出风口22的状态,空调器2产生的气流可以从出风口22直接吹出。
另外,导风板的内表面113上可以设有多条沿左右方向(如图14所示的左右方向)延伸的筋条101,由此可以增强导风板100的结构强度。
根据本发明实施例的空调器2,通过在导风板100上设置至少一组第一散风组件200,由此可以使经由第一散风组件200吹出的风呈扩散的方式流动,可避免风沿同一方向从出风口22直接吹出,进而可以实现空调器2的无风感效果,提高了空调器的使用舒适性。
本说明书公开提供了许多不同的实施例或例子用来实现本发明的不同结构。为了简化本发明的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本发明。此外,本发明可以在不同例子中重复参考数字和/或字母。这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施例和/或设置之间的关系。此外,本发明提供了的各种特定的工艺和材料的例子,但是本领域普通技术人员可以意识到其他工艺的可应用于性和/或其他材料的使用。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (37)

  1. 一种用于空调器的导风板组件,其特征在于,包括:
    导风板,所述导风板可枢转地设在所述空调器的出风口处,所述导风板上设有至少一个安装口;
    至少一组第一散风组件,所述第一散风组件为单层结构且可转动地设在所述安装口上以适于将所述出风口吹出的风扩散流动。
  2. 根据权利要求1所述的用于空调器的导风板组件,其特征在于,所述第一散风组件与所述安装口一一对应。
  3. 根据权利要求1或2所述的用于空调器的导风板组件,其特征在于,所述安装口的内周壁上设有挡风凹槽,所述第一散风组件的外周缘位于所述挡风凹槽内。
  4. 根据权利要求1-3中任一项所述的用于空调器的导风板组件,其特征在于,所述第一散风组件通过连接支架与所述导风板连接。
  5. 根据权利要求4所述的用于空调器的导风板组件,其特征在于,所述连接支架为一个且所述连接支架沿所述导风板的长度方向延伸,所述至少一组第一散风组件均与所述连接支架连接。
  6. 根据权利要求4所述的用于空调器的导风板组件,其特征在于,所述连接支架的一端与所述第一散风组件连接,另一端与所述导风板连接。
  7. 根据权利要求6所述的用于空调器的导风板组件,其特征在于,每个所述第一散风组件通过多个所述连接支架与所述导风板连接,每个所述第一散风组件上的多个所述连接支架沿其旋转轴线的周向方向均匀排布。
  8. 根据权利要求6所述的用于空调器的导风板组件,其特征在于,每个所述第一散风组件通过一个所述连接支架与所述导风板连接。
  9. 根据权利要求4所述的用于空调器的导风板组件,其特征在于,所述连接支架为金属支架或塑料支架。
  10. 根据权利要求4所述的用于空调器的导风板组件,其特征在于,所述连接支架与所述导风板一体成型。
  11. 根据权利要求4所述的用于空调器的导风板组件,其特征在于,所述第一散风组件包括:
    散风主体,所述散风主体可转动地设在所述安装口上;
    枢转轴,所述枢转轴设在所述连接支架上,所述散风主体可枢转地套设在所述枢转轴上。
  12. 根据权利要求11所述的用于空调器的导风板组件,其特征在于,所述第一散风组件还包括轴承,所述轴承的内圈与所述枢转轴紧密配合,所述轴承的外圈与所述 散风主体紧密配合。
  13. 根据权利要求11所述的用于空调器的导风板组件,其特征在于,多个所述散风主体中的至少一个为风轮。
  14. 根据权利要求13所述的用于空调器的导风板组件,其特征在于,所述风轮包括:
    中部风圈,所述中部风圈中部设有供所述枢转轴穿过的枢转孔;
    多个叶片,多个所述叶片设在所述中部风圈的外周壁上且沿所述中部风圈的周向方向间隔分布。
  15. 根据权利要求14所述的用于空调器的导风板组件,其特征在于,所述叶片个数为3-24片。
  16. 根据权利要求15所述的用于空调器的导风板组件,其特征在于,所述叶片为8片、12片或15片。
  17. 根据权利要求14所述的用于空调器的导风板组件,其特征在于,所述叶片所在平面与所述出风口的出风方向的夹角为10°-80°。
  18. 根据权利要求17所述的用于空调器的导风板组件,其特征在于,所述叶片所在平面与所述出风口的出风方向的夹角为20°或60°。
  19. 根据权利要求14所述的用于空调器的导风板组件,其特征在于,所述风轮还包括:导风圈,所述导风圈连接至少两片相邻的所述叶片的自由端。
  20. 根据权利要求19所述的用于空调器的导风板组件,其特征在于,所述导风圈呈环状。
  21. 根据权利要求11所述的用于空调器的导风板组件,其特征在于,多个所述散风主体中的至少一个为格栅。
  22. 根据权利要求21所述的用于空调器的导风板组件,其特征在于,所述格栅包括:
    间隔件,所述间隔件上设有供所述枢转轴穿过的枢转孔;
    多个挡风片,所述多个挡风片分布在所述间隔件的两侧,每个所述挡风片与所述出风口的出风方向之间具有夹角,其中多个所述挡风片中的至少一个挡风片的所述夹角与其余挡风片的所述夹角不等。
  23. 根据权利要求22所述的用于空调器的导风板组件,其特征在于,所述挡风片与所述出风口的出风方向的夹角为10°-80°。
  24. 根据权利要求22所述的用于空调器的导风板组件,其特征在于,多个所述挡风片的延伸方向大体一致。
  25. 根据权利要求22所述的用于空调器的导风板组件,其特征在于,所述格栅还包括导风圈,所述导风圈外套在所述枢转轴上且所述间隔件沿所述导风圈的径向方向 延伸,所述多个挡风片的一端与所述导风圈的内周壁连接,另一端与所述间隔件连接。
  26. 根据权利要求21所述的用于空调器的导风板组件,其特征在于,部分所述散风主体为风轮,其余为格栅。
  27. 根据权利要求11所述的用于空调器的导风板组件,其特征在于,所述枢转轴与所述连接支架螺纹连接。
  28. 根据权利要求1-27中任一项所述的用于空调器的导风板组件,其特征在于,还包括:
    至少一组第二散风组件,所述第二散风组件通过固定支架连接在所述出风口处,所述第二散风组件在所述出风口处可转动以适于将所述出风口吹出的风扩散流动。
  29. 根据权利要求28所述的用于空调器的导风板组件,其特征在于,所述导风板与所述第二散风组件沿所述出风口的出风方向并列设置,所述第二散风组件位于所述导风板的朝向所述空调器内部的一侧。
  30. 根据权利要求28所述的用于空调器的导风板组件,其特征在于,所述固定支架为一根,所述固定支架的一端与所述出风口的左端连接,另一端与所述出风口的右端连接,所述第二散风组件设在所述固定支架上。
  31. 根据权利要求28所述的用于空调器的导风板组件,其特征在于,所述固定支架与所述第二散风组件一一对应,所述固定支架的一端与所述出风口连接,另一端与所述第二散风组件连接。
  32. 根据权利要求31所述的用于空调器的导风板组件,其特征在于,所述固定支架的一端与所述出风口的上端或下端连接。
  33. 根据权利要求28所述的用于空调器的导风板组件,其特征在于,所述第二散风组件形成为单层结构且为风轮或格栅。
  34. 根据权利要求28所述的用于空调器的导风板组件,其特征在于,所述第二散风组件形成为双层结构且为风轮或格栅或风轮与格栅的组合。
  35. 根据权利要求28所述的用于空调器的导风板组件,其特征在于,所述第二散风组件为多组且均匀分布。
  36. 根据权利要求28所述的用于空调器的导风板组件,其特征在于,所述第一散风组件的构造与所述第二散风组件的构造相同。
  37. 一种空调器,其特征在于,所述空调器上设有出风口且包括根据权利要求1-36中任一项所述的用于空调器的导风板组件。
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