CN208238202U - Air inlet structure and air conditioner with same - Google Patents

Air inlet structure and air conditioner with same Download PDF

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Publication number
CN208238202U
CN208238202U CN201820624112.8U CN201820624112U CN208238202U CN 208238202 U CN208238202 U CN 208238202U CN 201820624112 U CN201820624112 U CN 201820624112U CN 208238202 U CN208238202 U CN 208238202U
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China
Prior art keywords
air inlet
air
inlet structure
stopper section
filter screen
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Active
Application number
CN201820624112.8U
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Chinese (zh)
Inventor
宁强延
孟智
黄煜鹏
杨永祥
李振华
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Priority to CN201820624112.8U priority Critical patent/CN208238202U/en
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Abstract

The utility model provides an air inlet structure and have its air conditioner, the air inlet structure includes: the air inlet part body is provided with an air inlet; the wind shielding part is arranged opposite to the air inlet, and at least part of the wind shielding part is used for stopping airflow from entering the air inlet. The utility model discloses an air inlet structure has solved the great problem of air inlet structure intake among the prior art.

Description

Air inlet structure and air conditioner with it
Technical field
The utility model relates to air-conditioner fields, in particular to a kind of air inlet structure and with its air conditioner.
Background technique
Wall hanging air-conditioning can produce a kind of hollow shell structure in sale, and such hollow shell structure is only for sales field function exhibition Show.It is conventionally used to the ghost type of sales field displaying, the knot such as does not often have evaporator part structure, but generally have motor, fan blade Structure and part, for use in simulation prototype in various ventilation states in actual work.
But since ghost type does not have evaporator, ghost type will appear a kind of phenomenon when operating: drive wind in motor When rotation, due to there is no evaporator to the barrier effect of air-flow, ghost machine is caused to have a large amount of sky in motor rotation process Gas enters in shell, and when air-out volume is less than intake volume, the intracorporal air-flow of shell is more and more, and motor rotation at this time is born Carry increasing, motor load caused to increase, acting is big inside motor, motor surface temperature rise it is fast, to influence the motor longevity Order and be easy to appear electrical safety problems.
Currently, the ghost machine in industry with blowing function, general service performance is preferable but the higher direct current generator of price, uses In the problem of temperature rise for solving the appearance of ghost machine.But the higher cost that seems for ghost machine goes out many, also some costs of idleness.
Utility model content
The main purpose of the utility model is to provide a kind of air inlet structure and with its air conditioner, to solve existing skill The larger problem of air inlet structure intake in art.
To achieve the goals above, one aspect according to the present utility model provides a kind of air inlet structure, comprising: into Wind portion ontology is provided with air inlet on the ontology of inlet section;Windshied part, windshied part are oppositely arranged with air inlet, and windshied part is at least Part enters air inlet for backstop air-flow.
Further, windshied part is filter screen.
Further, filter screen includes: filter screen ontology, stopper section is provided on filter screen ontology, stopper section is at least Partial occlusion enters the air inlet opposite with stopper section on the air inlet of part, to avoid air-flow.
Further, the area of the cross section of filter screen ontology is a, and the area of the cross section of stopper section is b, wherein 0.25≤b/a≤0.85。
Further, stopper section is multiple, multiple stopper section interval settings.
Further, filter screen ontology includes filter house, and filter house is used to be filtered through the air-flow of filter screen ontology, part Filter house surround stopper section at least partly.
Further, filter house is multiple, and the filter house of part has accommodating chamber, and stopper section is arranged in accommodating chamber.
Further, filter screen ontology includes: filter house;Braced frame, filter house and stopper section are arranged at support frame On frame.
Further, stopper section and braced frame integrated injection molding.
Further, filter house, stopper section and braced frame integrated injection molding.
Further, filter screen is multilayer.
Further, windshied part is air-inlet grille, and occlusion part is provided on air-inlet grille, and occlusion part at least partly blocks On the air inlet of part, enter in the air inlet opposite with occlusion part to avoid air-flow.
Further, occlusion part is baffle, and baffle is multiple, multiple baffle interval settings.
Another aspect according to the present utility model provides a kind of air conditioner, including air inlet structure and base component, air inlet Structure is connected with base component, and air inlet structure is above-mentioned air inlet structure.
Further, air conditioner is ghost model machine.
The air inlet structure of the utility model is provided with windshied part by the air inlet position in inlet section ontology, can reduce The throughput entered from air inlet.Wherein, windshied part is oppositely arranged with air inlet, and windshied part is at least partly used for backstop air-flow Into air inlet.When specifically used, according to air inlet structure for the demand of intake, by being provided with gear in air inlet position Wind portion, windshied part at least partly enter air inlet for backstop air-flow.The utility model air inlet structure passes through in inlet section sheet The air inlet position of body is provided with windshied part, can reduce from air inlet enter throughput, solve it is in the prior art into The larger problem of wind structure intake.
Detailed description of the invention
The accompanying drawings constituting a part of this application is used to provide a further understanding of the present invention, this is practical Novel illustrative embodiments and their description are not constituteed improper limits to the present invention for explaining the utility model. In the accompanying drawings:
Fig. 1 shows the structural schematic diagram of the filter screen of air inlet structure according to the present utility model;And
Fig. 2 shows the decomposition texture schematic diagrams of the embodiment of air conditioner according to the present utility model.
Wherein, the above drawings include the following reference numerals:
10, filter screen ontology;11, stopper section;12, filter house;13, braced frame;20, inlet section ontology;30, bottom case portion Part;40, fan blade;50, motor;60, shutter.
Specific embodiment
It should be noted that in the absence of conflict, the features in the embodiments and the embodiments of the present application can phase Mutually combination.The utility model will be described in detail below with reference to the accompanying drawings and embodiments.
It is noted that following detailed description is all illustrative, it is intended to provide further instruction to the application.Unless another It indicates, all technical and scientific terms used herein has usual with the application person of an ordinary skill in the technical field The identical meanings of understanding.
It should be noted that term used herein above is merely to describe specific embodiment, and be not intended to restricted root According to the illustrative embodiments of the application.As used herein, unless the context clearly indicates otherwise, otherwise singular Also it is intended to include plural form, additionally, it should be understood that, when in the present specification using term "comprising" and/or " packet Include " when, indicate existing characteristics, step, operation, device, component and/or their combination.
The utility model provides a kind of air inlet structure, please refers to Fig. 1 and Fig. 2, and air inlet structure includes: inlet section ontology 20, air inlet is provided on inlet section ontology 20;Windshied part, windshied part are oppositely arranged with air inlet, and windshied part is at least partly Enter air inlet for backstop air-flow.
The air inlet structure of the utility model is provided with windshied part by the air inlet position in inlet section ontology 20, can subtract Few throughput entered from air inlet.Wherein, windshied part is oppositely arranged with air inlet, and windshied part is at least partly used for backstop gas Stream enters air inlet.When specifically used, according to air inlet structure for the demand of intake, by being provided in air inlet position Windshied part, windshied part at least partly enter air inlet for backstop air-flow.The utility model air inlet structure passes through in inlet section The air inlet position of ontology 20 is provided with windshied part, can reduce the throughput entered from air inlet, solve in the prior art The larger problem of air inlet structure intake.
For a kind of specific embodiment of windshied part, windshied part is filter screen.
In the present embodiment, windshied part is filter screen, and filter screen is realized while being filtered to air-flow to air-flow Backstop, to reduce air-flow from air inlet.
For the specific structure of filter screen, as shown in Figure 1, filter screen includes: filter screen ontology 10, on filter screen ontology 10 It is provided with stopper section 11, stopper section 11 is at least partly blocked on the air inlet of part, to avoid air-flow entrance and stopper section 11 opposite air inlets.
In the present embodiment, by being provided with the stopper section 11 passed through for backstop air-flow on filter screen ontology 10, from And the backstop function of filter screen can be realized under the premise of filter screen has filtering function.When specifically used, for mistake The backstop demand of strainer realizes the backstop to air-flow by the stopper section 11 on filter screen ontology 10.
For the filtering and backstop function of balanced filter screen, the area of the cross section of filter screen ontology 10 is a, stopper section The area of 11 cross section is b, wherein 0.25≤b/a≤0.85.
Preferably, 0.3≤b/a≤0.8.
In the present embodiment, the area of the cross section of filter screen ontology 10 is a, and the area of the cross section of stopper section 11 is b, Wherein, 0.25≤b/a≤0.85, that is, the area of the fillter section for filtered airflow is greater than the backstop area of stopper section 11.
In order to realize stopper section 11 different location backstop effect, stopper section 11 be it is multiple, multiple stopper sections 11 are spaced Setting.
In the present embodiment, by setting multiple for stopper section 11, wherein the setting of multiple intervals of stopper section 11, thus Stopper section 11 may be implemented to the backstop action of different location.
For the specific structure of filter screen ontology 10, as shown in Figure 1, filter screen ontology 10 includes filter house 12, filter house 12 for being filtered through the air-flow of filter screen ontology 10, and the filter house 12 of part surrounds stopper section 11 at least partly.
In the present embodiment, filter screen ontology 10 is made of filter house 12 and stopper section 11, wherein filter house 12 was used for Filter passes through the air-flow of filter screen ontology 10, and the filter house 12 of part surrounds stopper section 11 at least partly.
In the present embodiment, filter house 12 and stopper section 11 form the main structure of filter screen ontology 10, are guaranteed with this The filtering function and backstop function of filter screen.
Preferably, filter house 12 is multiple, and the filter house 12 of part has accommodating chamber, and stopper section 11 is arranged in accommodating chamber It is interior.
For the specific structure of accommodating chamber, accommodating chamber is through-hole, and stopper section 11 is arranged in through-hole;And/or in accommodating chamber It is provided with opening, stopper section 11 is arranged in opening.
In the present embodiment, optionally, accommodating chamber is through-hole, and stopper section 11 is arranged in through-hole.
Optionally, opening is provided in accommodating chamber, stopper section 11 is arranged in opening.
For the overall structure of filter screen ontology 10, as shown in Figure 1, filter screen ontology 10 includes: filter house 12;Support frame Frame 13, filter house 12 and stopper section 11 are arranged in braced frame 13.
In the present embodiment, filter screen ontology 10 includes filter house 12, braced frame 13 and stopper section 11, wherein mistake Filter portion 12 and stopper section 11 are arranged in braced frame 13.
For the specific molding mode of stopper section 11 and braced frame 13, stopper section 11 and braced frame 13 are integrally formed.
Preferably, stopper section 11 and 13 integrated injection molding of braced frame.
For filter house 12, the specific molding mode of stopper section 11 and braced frame 13, filter house 12, stopper section 11 and branch Support frame frame 13 is integrally formed.
Preferably, filter house 12, stopper section 11 and 13 integrated injection molding of braced frame.
Filter house 12 is by being placed in mold in the present embodiment, be integrally formed with injection molding material with filter house 12 and The filter screen of braced frame 13.
Preferably, stopper section 11 is stop tab.
In the present embodiment, the filter house 12 of part is rectangular block, and the filter house 12 of part is hollow cuboid, hollow Part is provided with stopper section 11.
Partial filter house 12 is hollow cuboid, wherein open slot is offered on cuboid, hollow space is provided with Stopper section 11, and stopper section 11 is also equipped in open slot.
In order to realize that effective backstop action of filter screen, filter screen are multilayer.
For another specific embodiment of windshied part, windshied part is air-inlet grille, is provided with occlusion part on air-inlet grille, Occlusion part at least partly blocks on the air inlet of part, enters in the air inlet opposite with occlusion part to avoid air-flow.
In the present embodiment, windshied part is air-inlet grille, by being provided with occlusion part on air-inlet grille, wherein is blocked Portion is at least partly blocked on the air inlet of part, opposite with occlusion part so as to avoid air-flow from entering by occlusion part In air inlet.
Preferably, occlusion part is baffle, and baffle is multiple, multiple baffle interval settings.
The utility model additionally provides a kind of air conditioner, including air inlet structure and base component, air inlet structure and bottom case portion Part is connected, and air inlet structure is above-mentioned air inlet structure.
Preferably, air conditioner is ghost model machine.
Ghost model machine is only for the displaying of sales field function.Ghost model machine does not have evaporator part structure, but generally has wind Structures and the parts such as leaf 40, motor 50, for use in simulation prototype in various ventilation states in actual work.
Air conditioner is ghost model machine in the present embodiment, and ghost model machine includes base component 30, panel body (inlet section ontology 20), filter screen, panel (shutter 60), fan blade 40, motor 50 etc., but without evaporation structure.
In the present embodiment, a part of filter screen is blocked with baffle (stopper section 11), and baffle accounts for the area root of filter screen It is determined according to motor rotational speed, if the motor speed that ghost needs is bigger, the area of filter net ratio that baffle accounts for is bigger.Gear Piece area accounts for area of filter net ratio generally between 30%~80%.
After loading onto the filter screen for the effect of keeping out the wind, air-flow, which enters the speed of ghost model machine shell and air quantity, to be subtracted It is few.Air inlet and the air quantity of outlet air is set to reach in a basic balance, load suffered by motor 50 is smaller, and 50 stability of rotation of motor, inside is done Function is few, and the heat of generation is small.
It can be seen from the above description that the above embodiments of the utility model achieve the following technical effects:
The air inlet structure of the utility model is provided with windshied part by the air inlet position in inlet section ontology 20, can subtract Few throughput entered from air inlet.Wherein, windshied part is oppositely arranged with air inlet, and windshied part is at least partly used for backstop gas Stream enters air inlet.When specifically used, according to air inlet structure for the demand of intake, by being provided in air inlet position Windshied part, windshied part at least partly enter air inlet for backstop air-flow.The utility model air inlet structure passes through in inlet section The air inlet position of ontology 20 is provided with windshied part, can reduce the throughput entered from air inlet, solve in the prior art The larger problem of air inlet structure intake.
It should be noted that the description and claims of this application and term " first " in above-mentioned attached drawing, " Two " etc. be to be used to distinguish similar objects, without being used to describe a particular order or precedence order.It should be understood that using in this way Data be interchangeable under appropriate circumstances, so that presently filed embodiment described herein for example can be in addition to herein Sequence other than those of diagram or description is implemented.In addition, term " includes " and " having " and their any deformation, it is intended that Be to cover it is non-exclusive include, for example, containing the process, method, system, product or equipment of a series of steps or units not Those of be necessarily limited to be clearly listed step or unit, but may include be not clearly listed or for these processes, side The intrinsic other step or units of method, product or equipment.
For ease of description, spatially relative term can be used herein, as " ... on ", " ... top ", " ... upper surface ", " above " etc., for describing such as a device shown in the figure or feature and other devices or spy The spatial relation of sign.It should be understood that spatially relative term is intended to comprising the orientation in addition to device described in figure Except different direction in use or operation.For example, being described as if the device in attached drawing is squeezed " in other devices It will be positioned as " under other devices or construction after part or construction top " or the device of " on other devices or construction " Side " or " under other devices or construction ".Thus, exemplary term " ... top " may include " ... top " and " in ... lower section " two kinds of orientation.The device can also be positioned with other different modes and (is rotated by 90 ° or in other orientation), and And respective explanations are made to the opposite description in space used herein above.
The above descriptions are merely preferred embodiments of the present invention, is not intended to limit the utility model, for this For the technical staff in field, various modifications and changes may be made to the present invention.It is all in the spirit and principles of the utility model Within, any modification, equivalent replacement, improvement and so on should be included within the scope of protection of this utility model.

Claims (15)

1. a kind of air inlet structure characterized by comprising
Inlet section ontology (20) is provided with air inlet on the inlet section ontology (20);
Windshied part, the windshied part are oppositely arranged with the air inlet, the windshied part at least partly for backstop air-flow into Enter the air inlet.
2. air inlet structure according to claim 1, which is characterized in that the windshied part is filter screen.
3. air inlet structure according to claim 2, which is characterized in that the filter screen includes:
Filter screen ontology (10) is provided with stopper section (11) on the filter screen ontology (10), and the stopper section (11) is at least Partial occlusion enters the air inlet opposite with the stopper section (11) on the air inlet of part, to avoid the air-flow Mouthful.
4. air inlet structure according to claim 3, which is characterized in that the area of the cross section of the filter screen ontology (10) For a, the area of the cross section of the stopper section (11) is b, wherein 0.25≤b/a≤0.85.
5. air inlet structure according to claim 3, which is characterized in that the stopper section (11) be it is multiple, it is multiple it is described only The setting of stopper (11) interval.
6. air inlet structure according to claim 3, which is characterized in that the filter screen ontology (10) includes filter house (12), the filter house (12) is used to be filtered through the air-flow of the filter screen ontology (10), the filter house of part (12) stopper section (11) is surrounded at least partly.
7. air inlet structure according to claim 6, which is characterized in that the filter house (12) be it is multiple, part it is described Filter house (12) has accommodating chamber, and the stopper section (11) is arranged in the accommodating chamber.
8. air inlet structure according to claim 3, which is characterized in that the filter screen ontology (10) includes:
Filter house (12);
Braced frame (13), the filter house (12) and the stopper section (11) are arranged on the braced frame (13).
9. air inlet structure according to claim 8, which is characterized in that the stopper section (11) and the braced frame (13) Integrated injection molding.
10. air inlet structure according to claim 8, which is characterized in that the filter house (12), the stopper section (11) with Braced frame (13) integrated injection molding.
11. the air inlet structure according to any one of claim 2 to 10, which is characterized in that the filter screen is multilayer.
12. air inlet structure according to claim 1, which is characterized in that the windshied part is air-inlet grille, the air inlet lattice Occlusion part is provided on grid, the occlusion part at least partly blocks on the air inlet of part, to avoid the air-flow Into in the air inlet opposite with the occlusion part.
13. air inlet structure according to claim 12, which is characterized in that the occlusion part is baffle, and the baffle is more It is a, multiple baffle interval settings.
14. a kind of air conditioner, including air inlet structure and base component, the air inlet structure are connected with the base component, It is characterized in that, the air inlet structure is air inlet structure described in any one of claims 1 to 13.
15. air conditioner according to claim 14, which is characterized in that the air conditioner is ghost model machine.
CN201820624112.8U 2018-04-27 2018-04-27 Air inlet structure and air conditioner with same Active CN208238202U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820624112.8U CN208238202U (en) 2018-04-27 2018-04-27 Air inlet structure and air conditioner with same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820624112.8U CN208238202U (en) 2018-04-27 2018-04-27 Air inlet structure and air conditioner with same

Publications (1)

Publication Number Publication Date
CN208238202U true CN208238202U (en) 2018-12-14

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108518843A (en) * 2018-04-27 2018-09-11 珠海格力电器股份有限公司 Air inlet structure and air conditioner with same

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108518843A (en) * 2018-04-27 2018-09-11 珠海格力电器股份有限公司 Air inlet structure and air conditioner with same
CN108518843B (en) * 2018-04-27 2023-11-14 珠海格力电器股份有限公司 Air inlet structure and air conditioner with same

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