CN106152292B - Organism subassembly and have air purifier of this organism subassembly - Google Patents

Organism subassembly and have air purifier of this organism subassembly Download PDF

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Publication number
CN106152292B
CN106152292B CN201510150260.1A CN201510150260A CN106152292B CN 106152292 B CN106152292 B CN 106152292B CN 201510150260 A CN201510150260 A CN 201510150260A CN 106152292 B CN106152292 B CN 106152292B
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China
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plate
frame
frame plate
plates
assembly
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CN106152292A (en
Inventor
周枢
代南海
冯志群
吴剑
费兆军
刘子靖
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Qingdao Haigao Design and Manufacturing Co Ltd
Qingdao Haier Innovation Technology Co Ltd
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Qingdao Haigao Design and Manufacturing Co Ltd
Qingdao Haier Innovation Technology Co Ltd
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Publication of CN106152292A publication Critical patent/CN106152292A/en
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Abstract

The invention relates to a machine body assembly and an air purifier with the same. Specifically, the present invention provides a body assembly comprising: a plurality of frame plates configured to be detachably inserted into a body frame, an inner side of the body frame defining an accommodation space for accommodating the cleaning assembly and the fan; and a plurality of cover plates, each cover plate is configured to be parallel to one frame plate and detachably inserted to the outer side of the machine body frame; and at least two of the cover plates are provided with ventilation holes for air to flow into and flow out of the air purifier respectively. In addition, the invention also provides an air purifier with the machine body assembly. The machine body assembly and the air purifier with the machine body assembly are detachably connected with the plurality of frame plates and the plurality of cover plates, so that a user can exert the spirit of doing by himself, enjoy the fun of DIY assembly and improve the operation ability and the space imagination of a maker.

Description

Organism subassembly and have air purifier of this organism subassembly
Technical Field
The invention relates to the technical field of air purification, in particular to a machine body assembly and an air purifier with the same.
Background
An air purifier, also known as an air cleaner, an air freshener, and a purifier, refers to a product capable of adsorbing, decomposing, or converting various air pollutants (generally including PM2.5, dust, pollen, odor, formaldehyde, and other decoration pollutants, bacteria, allergens, and the like), and effectively improving air cleanliness, and is mainly classified into household, commercial, industrial, and building. The air purifier may generally include a blower and a purifying assembly, the blower being configured to cause air from the room to enter the air purifier through an air inlet of the air purifier, to be purified by the purifying assembly, and to exit the air purifier into the room through an air outlet of the air purifier. However, the existing air purifiers are all assembled complete machines by manufacturers, and consumers directly purchase the complete machines when purchasing the air purifiers. The whole machine not only occupies a large space during storage, but also is not beneficial to transportation. Moreover, the whole structure is single, and cannot meet the requirements of interests and hobbies of consumers and individual DIY.
Disclosure of Invention
An object of the first aspect of the present invention is to overcome at least one of the disadvantages of the existing air cleaner, and to provide a body assembly for an air cleaner, which can be manually assembled by a user, to improve the DIY fun of the user.
It is an object of the second aspect of the present invention to provide an air cleaner having the above-described body assembly.
According to a first aspect of the present invention, there is provided a housing assembly for an air cleaner. This organism subassembly includes:
a plurality of frame plates configured to be detachably inserted into a body frame, an inner side of the body frame defining an accommodation space for accommodating a purification assembly and a fan of the air purifier; and
a plurality of cover plates, each of which is configured to be parallel to one of the frame plates and detachably inserted to the outside of the body frame; and at least two of the cover plates are provided with ventilation holes for air to flow into and flow out of the air purifier respectively.
Optionally, each two interconnected frame plates are configured to be detachably connected by a tongue-and-groove structure; each frame plate and the cover plate directly connected with the frame plate are detachably spliced and connected through a tongue-and-groove structure; each frame plate and the cover plate indirectly connected with the frame plate are connected through one or more insertion blocks, and each insertion block and the cover plate or the frame plate connected with the insertion block are detachably connected through a mortise and tenon structure.
Optionally, a plurality of the frame plates, a plurality of the cover plates, and a plurality of the insertion blocks are preset in a plate blank by a laser cutting process and are detached from the plate blank before assembly to be detachably inserted.
Optionally, the body assembly further comprises: the mounting plates are detachably inserted into the inner side of the machine body frame and extend into the accommodating space, so that the purifying assembly is clamped and fixed among the mounting plates.
Optionally, one of the frame plates has an access opening formed therein, configured to allow the cleaning assembly to be operatively extracted outwardly and inserted inwardly into the accommodating space through the access opening.
Optionally, at least one of the mounting plates between the cleaning assembly and the fan is further configured to cooperate with one of the frame plates to clampingly fix the fan between the at least one mounting plate and the frame plate, and the cover plate parallel to the frame plate is provided with the ventilation hole.
Optionally, the number of the frame plates is 6, and the frame plates are configured to be respectively located in the plane of each surface of a regular hexahedron, and 3 adjacent frame plates are provided with inclined edges, and 3 of the inclined edges are configured to be located in an inclined plane cutting off one corner of the regular hexahedron and form the mounting feet of the machine body frame.
Optionally, the 6 frame plates include: a first frame plate, a second frame plate configured to be disposed in parallel with the first frame plate, and four connecting frame plates configured to be mounted between the first frame plate and the second frame plate, wherein each of the connecting frame plates has: a plate-type body; two first inserting parts respectively extending outwards from two edges of the plate-type body parallel to the first frame plate and respectively configured to be detachably inserted into the first frame plate and the second frame plate; and the second inserting part extends outwards from one edge of the plate-type body, which is perpendicular to the first frame plate, and is configured to be detachably inserted into another connecting frame plate adjacent to the connecting frame plate, and the second inserting part of the other connecting frame plate is detachably inserted into the connecting frame plate parallel to the connecting frame plate.
Optionally, the first frame plate has a first plate-type body, and four third insertion portions respectively extending outward from four edges of the first plate-type body; the second frame plate is provided with the inclined edge, a second plate type body and four third inserting parts which respectively extend outwards from four edges of the second plate type body, which are respectively parallel to the four edges of the first plate type body; each connecting frame plate is also provided with a third inserting part extending outwards from the other edge of the plate type body, which is perpendicular to the first frame plate; and the first frame plate, the second frame plate and the third insertion portion of each of the connecting frame plates are arranged such that the outer side of each of the connecting frame plates has three third insertion portions for detachably inserting to a cover plate parallel to the connecting frame plate.
Optionally, the first frame plate is configured to be detachably plugged into a cover plate parallel to the first frame plate through 4 plugging blocks, and the 4 plugging blocks are configured to be plugged into the first frame plate and respectively located in the same plane with the four connecting frame plates; the second frame plate is configured to be detachably plugged into a cover plate parallel to the second frame plate through 4 other plugging blocks, and the 4 other plugging blocks are configured to be plugged into the second frame plate and are respectively positioned in the same plane with the four connecting frame plates; each of the connection frame plates is further configured to be detachably inserted in a cover plate parallel to the connection frame plate by 1 insertion block, and the 1 insertion block is configured to be inserted in the connection frame plate and to be in the same plane as another connection frame plate inserted in the connection frame plate.
Optionally, each of the first plugging part and the second plugging part is one or more plugging convex blocks arranged at intervals; each third plugging part comprises a rectangular block and one or more plugging bulges which are arranged at intervals and extend outwards from the tail end of the rectangular block; each of the insertion blocks includes a rectangular block portion, an insertion projection portion extending from one length edge of the rectangular block and adapted to be inserted into one of the frame plates, and an insertion projection portion extending from the other length edge of the rectangular block and adapted to be inserted into one of the cover plates.
According to a second aspect of the present invention, there is provided an air cleaner comprising: in any of the above machine body assemblies, the plurality of frame plates of the machine body assembly are configured to be detachably spliced into a machine body frame, and an accommodating space is defined inside the machine body frame; a blower configured to be installed in the accommodating space; and the purification assembly is arranged in the accommodating space and positioned on an air inlet path of the fan, so that the fan sucks purified air and blows out the air purifier
The machine body assembly and the air purifier with the machine body assembly are detachably connected with the plurality of frame plates and the plurality of cover plates, and are disassembled and stacked during storage or transportation operation, so that the machine body assembly not only occupies small space, but also enables users to play the spirit of doing the work by themselves, enjoy the fun of DIY assembly, and improves the working ability and the space imagination of manufacturers.
Furthermore, as every two parts in the machine body assembly and the air purifier with the machine body assembly are detachably spliced and connected through the tongue-and-groove structure, the assembled machine body frame and the connection between the machine body frame and the cover plate are firmer.
Furthermore, as the machine body assembly and the air purifier with the machine body assembly are provided with a plurality of frame plates, a plurality of cover plates and a plurality of inserting blocks which are preset in the plate blank, the machine body assembly has small occupied space and is convenient to store and transport.
The above and other objects, advantages and features of the present invention will become more apparent to those skilled in the art from the following detailed description of specific embodiments thereof, taken in conjunction with the accompanying drawings.
Drawings
Some specific embodiments of the invention will be described in detail hereinafter, by way of illustration and not limitation, with reference to the accompanying drawings. The same reference numbers in the drawings identify the same or similar elements or components. Those skilled in the art will appreciate that the drawings are not necessarily drawn to scale. In the drawings:
FIG. 1 is a schematic block diagram of a body assembly according to one embodiment of the present invention;
FIG. 2 is a schematic partial block diagram of a body assembly according to one embodiment of the invention;
FIG. 3 is a schematic partial block diagram of a body assembly according to one embodiment of the invention;
fig. 4 is a schematic structural view of one frame plate in the body assembly according to one embodiment of the present invention;
fig. 5 is a schematic structural view of one frame plate in the body assembly according to one embodiment of the present invention;
FIG. 6 is a schematic block diagram of a plug-in block in the body assembly according to one embodiment of the present invention;
FIG. 7 is a schematic block diagram of an air purifier according to one embodiment of the present invention;
fig. 8 is a schematic cross-sectional view of an air purifier according to one embodiment of the present invention.
Detailed Description
Fig. 1 is a schematic configuration diagram of a body assembly according to an embodiment of the present invention. As shown in fig. 1, an embodiment of the present invention provides a body assembly for an air purifier for a user's manual operation to enjoy DIY. Specifically, the body assembly may include a plurality of frame plates 100 and a plurality of cover plates 200. The plurality of frame plates 100 may be configured to be detachably inserted into a body frame, and the body frame defines an accommodating space for accommodating the cleaning assembly 300 of the air cleaner and the blower 400 at an inner side thereof. Each cover plate 200 is configured to be parallel to one frame plate 100 and detachably inserted to the outside of the body frame; and at least two cover plates 200 of the plurality of cover plates 200 are provided with ventilation holes for air to flow into and flow out of the air purifier respectively. Further, at least one cover plate 200 of the plurality of cover plates 200 is opened with a switch through hole for the switch device 500 of the air purifier to extend out of the air purifying housing. For example, the switch through-holes and the ventilation holes for air to flow out of the air purifier may be located on the same cover plate 200. In the embodiment of the present invention, each cover plate 200 may be formed with a plurality of holes, some of the holes of the cover plate 200 may be used as ventilation holes, and the other holes of the cover plate 200 may be used as decoration holes.
In some embodiments of the present invention, as shown in fig. 2 to 4, each two interconnected frame panels 100 are configured to be detachably connected by a tongue and groove structure. Each frame plate 100 and the cover plate 200 directly connected thereto are configured to be detachably connected thereto by a tongue and groove structure. Each frame plate 100 is configured to be coupled to the cover plate 200 indirectly coupled thereto by one or more insert blocks 50, and each insert block 50 is configured to be detachably inserted to the cover plate 200 or the frame plate 100 coupled thereto by a tongue and groove structure. The joggle structure can make the connection simple, safe and firm, and is convenient for the manual operation of the user. Preferably, the plurality of frame plates 100, the plurality of cover plates 200, and the plurality of insert blocks 50 are preset in the plate blank by a laser cutting process and are separated from the plate blank before assembly to be detachably inserted for the storage and transportation of the body assembly.
In some embodiments of the present invention, as shown in fig. 2 and 3, in the body assembly of the embodiments of the present invention, the number of the frame plates 100 is 6, which are arranged to be respectively in the plane where the respective surfaces of a regular hexahedron are located. That is, 6 frame plates 100 are arranged in the same plane as each surface of the regular hexahedron, respectively. Each of the 3 adjacent frame plates 100 has inclined edges, and the 3 inclined edges are arranged in an inclined plane cutting off a corner of the regular hexahedron and form mounting feet of the body frame. In the embodiment of the present invention, the inclined edge of the frame plate 100 refers to an edge which does not include a right angle with any adjacent edge among the respective edges of the frame plate 100.
As shown in fig. 2 to 5, the 6 frame plates 100 include: a first frame plate 10, a second frame plate 20 configured to be disposed in parallel with the first frame plate 10, and four coupling frame plates 30 configured to be mounted between the first frame plate 10 and the second frame plate 20. The first frame plate 10 has a first plate-like body, and four third insertion portions extending outward from four edges of the first plate-like body, respectively. The second frame plate 20 has an inclined edge, and also has a second plate-like body, and four third insertion portions extending outward from four edges of the second plate-like body, which are parallel to the four edges of the first plate-like body, respectively.
Each of the connection frame plates 30 has a plate-type body, two first insertion portions, a second insertion portion, and a third insertion portion. Each first inserting part and each second inserting part are one or more inserting convex blocks arranged at intervals. Each third plugging part comprises a rectangular block and one or more plugging bulges which are arranged at intervals and extend outwards from the tail end of the rectangular block. Specifically, in each of the connection frame plates 30, two first insertion portions are respectively extended outwardly from two edges of the plate-type body parallel to the first frame plate 10, and are respectively configured to be detachably inserted into the first frame plate 10 and the second frame plate 20. In each of the coupling frame plates 30, a second insertion portion is extended outwardly from one edge of the panel body perpendicular to the first frame plate 10, and is configured to be detachably inserted into another coupling frame plate 30 adjacent to the coupling frame plate 30, and the second insertion portion of another coupling frame plate 30 is detachably inserted into the coupling frame plate 30 parallel to the coupling frame plate 30. That is, the four coupling frame plates 30 are sequentially inserted to constitute an approximately annular structure. Each connecting frame plate 30 also has a third spigot portion extending outwardly from the other edge of the plate body perpendicular to the first frame plate 10.
In some embodiments of the present invention, the first frame plate 10, the second frame plate 20 and the third insertion part of each coupling frame plate 30 are configured such that the outer side of each coupling frame plate 30 has three third insertion parts for detachably inserting to the cover plate 200 parallel to the coupling frame plate 30. Further, in order to improve the firmness of the insertion of the cover plate 200, which is parallel to each of the coupling frame plates 30, into the body frame. Each coupling frame plate 30 is further configured to be detachably inserted in parallel to the cover plate 200 of the coupling frame plate 30 by 1 insertion block 50, and 1 insertion block 50 is configured to be inserted in the coupling frame plate 30 and in the same plane as another coupling frame plate 30 inserted in the coupling frame plate 30.
In some embodiments of the present invention, the first frame plate 10 is configured to be detachably inserted to the cover plate 200 parallel to the first frame plate 10 by 4 insertion blocks 50, and the 4 insertion blocks 50 are configured to be inserted to the first frame plate 10 and are respectively in the same plane as the four connection frame plates 30. The second frame plate 20 is configured to be detachably inserted to the cover plate 200 parallel to the second frame plate 20 by means of another 4 insertion blocks 50, and the other 4 insertion blocks 50 are configured to be inserted to the second frame plate 20 and are respectively in the same plane as the four coupling frame plates 30. As shown in fig. 6, each of the insert blocks 50 includes a rectangular block portion, an insert projection portion extending from one length edge of the rectangular block for being inserted into one frame plate 100, and an insert projection portion extending from the other length edge of the rectangular block for being inserted into one cover plate 200.
In some embodiments of the present invention, in order to facilitate the installation of the blower 400 and the purification assembly 300, the housing assembly in embodiments of the present invention may further include a plurality of mounting plates 40 configured to be detachably inserted into the inner side of the housing frame, extending into the receiving space, for clampingly fixing the purification assembly 300 between the plurality of mounting plates 40. At least one of the mounting plates 40 between the purification assembly 300 and the fan 400 is further configured to cooperate with one of the frame plates 100 to clampingly fix the fan 400 between the at least one mounting plate 40 and the frame plate 100, and the cover plate 200 parallel to the frame plate 100 is opened with ventilation holes. An access opening 11 is formed in one frame plate 100, and is configured such that the purification module 300 is operatively drawn out and inserted into the accommodation space through the access opening 11.
In an embodiment of the present invention, the four connection frame plates 30 may include: a third frame plate 31, a fourth frame plate 32, a fifth frame plate 33 arranged in parallel with the third frame plate 31 and having said inclined edge, and a sixth frame plate 34 arranged in parallel with the fourth frame plate 32 and having said inclined edge. The cover plate 200 parallel to the third frame plate 31 has ventilation holes and opening and closing through holes for air to flow out of the air cleaner. At least the cover plate 200 parallel to the fifth frame plate 33 has ventilation holes for air to flow into the air cleaner. The first frame plate 10 is provided with a pick-and-place port 11.
In an embodiment of the present invention, the plurality of mounting plates 40 may be divided into an upper mounting plate group above the purification assembly 300 and a lower mounting plate group below the purification assembly 300. All the mounting plates of the upper mounting plate group are in the same plane. All the mounting plates of the lower mounting plate group are in the same plane and are parallel to the mounting plates of the upper mounting plate group. The upper mounting plate group may include: a first upper mounting plate configured to be vertically plugged to the second frame plate 20 and the fourth frame plate 32; a second upper mounting plate configured to be vertically plugged to the second frame plate 20 and the sixth frame plate 34; a third upper mounting plate configured to be vertically inserted into the first frame plate 10 and the sixth frame plate 34; and a fourth upper mounting plate configured to be vertically inserted into the first frame plate 10 and the fourth frame plate 32. The lower set of mounting plates may include: a first lower mounting plate configured to be vertically plugged to the second frame plate 20, the fourth frame plate 32 and the sixth frame plate 34; and a second lower mounting plate configured to be vertically inserted into the fourth frame plate 32 and the sixth frame plate 34 and disposed in parallel spaced relation to the first lower mounting plate. The purification assembly 300 of the air purifier is configured to be installed between the upper barrier group and the lower barrier group. The blower 400 of the air cleaner is configured to be installed between the upper partition plate group and the third frame plate 31 so that the purified air is blown out of the air cleaner.
Fig. 7 is a schematic structural view of an air purifier according to an embodiment of the present invention. As shown in fig. 7 and referring to fig. 8, an embodiment of the present invention further provides an air purifier, which may include a blower 400, a purifying assembly 300, and a body assembly in any of the above embodiments. A plurality of piece together picture peg of organism subassembly are configured to detachably piece into the organism frame, and the inboard of organism frame is injectd there is accommodation space. The fan 400 is generally an axial fan 400 configured to be mounted in the receiving space. The cleaning assembly 300 may include a plurality of filter panels arranged in parallel and spaced apart to be installed in the receiving space and in an air intake path of the blower 400 so that the blower 400 sucks in the cleaned air and blows it out of the air cleaner. The air purifier in the embodiment of the invention needs to be assembled by a user manually before the user uses the air purifier, so that the DIY pleasure of the user is improved.
Thus, it should be appreciated by those skilled in the art that while a number of exemplary embodiments of the invention have been illustrated and described in detail herein, many other variations or modifications consistent with the principles of the invention may be directly determined or derived from the disclosure of the present invention without departing from the spirit and scope of the invention. Accordingly, the scope of the invention should be understood and interpreted to cover all such other variations or modifications.

Claims (7)

1. A housing assembly for an air purifier, comprising:
a plurality of frame plates configured to be detachably inserted into a body frame, an inner side of the body frame defining an accommodation space for accommodating a purification assembly and a fan of the air purifier; and
a plurality of cover plates, each of which is configured to be parallel to one of the frame plates and detachably inserted to the outside of the body frame; at least two cover plates of the plurality of cover plates are provided with ventilation holes for air to flow into and flow out of the air purifier respectively;
each two mutually connected frame plates are detachably spliced and connected through a tongue-and-groove structure;
each frame plate and the cover plate directly connected with the frame plate are detachably spliced and connected through a tongue-and-groove structure;
each frame plate and the cover plate indirectly connected with the frame plate are connected through one or more insertion blocks, and each insertion block and the cover plate or the frame plate connected with the insertion block are detachably connected through a mortise and tenon structure;
the frame plates, the cover plates and the insertion blocks are preset in a plate blank through a laser cutting process and are separated from the plate blank before assembly so as to be detachably inserted;
the number of the frame plates is 6, the frame plates are configured to be respectively positioned in the plane of each surface of a regular hexahedron, 3 adjacent frame plates are provided with inclined edges, and 3 inclined edges are configured to be positioned in an inclined plane cutting off one corner of the regular hexahedron and form a mounting foot of the machine body frame;
the 6 frame plates include: a first frame plate, a second frame plate configured to be disposed in parallel with the first frame plate, and four connecting frame plates configured to be mounted between the first frame plate and the second frame plate, wherein each of the connecting frame plates has:
a plate-type body;
two first inserting parts respectively extending outwards from two edges of the plate-type body parallel to the first frame plate and respectively configured to be detachably inserted into the first frame plate and the second frame plate;
a second insertion part extending outward from one edge of the plate body perpendicular to the first frame plate and configured to be detachably inserted into another connecting frame plate adjacent to the connecting frame plate, and the second insertion part of the other connecting frame plate is detachably inserted into the connecting frame plate parallel to the connecting frame plate;
the first frame plate is provided with a first plate type body and four third inserting parts which respectively extend outwards from four edges of the first plate type body;
the second frame plate is provided with the inclined edge, a second plate type body and four third inserting parts which respectively extend outwards from four edges of the second plate type body, which are respectively parallel to the four edges of the first plate type body;
each connecting frame plate is also provided with a third inserting part extending outwards from the other edge of the plate type body, which is perpendicular to the first frame plate; and is
The first frame plate, the second frame plate and the third insertion portion of each of the connecting frame plates are configured such that the outer side of each of the connecting frame plates has three third insertion portions for detachably inserting to a cover plate parallel to the connecting frame plate.
2. The airframe assembly as recited in claim 1, further comprising:
the mounting plates are detachably inserted into the inner side of the machine body frame and extend into the accommodating space, so that the purifying assembly is clamped and fixed among the mounting plates.
3. The airframe assembly as recited in claim 2, wherein
One of the frame plates has an access opening formed therein configured to allow the cleaning assembly to be operatively withdrawn outwardly and inserted inwardly into the receiving space through the access opening.
4. The airframe assembly as recited in claim 2, wherein
At least one mounting plate between the purification assembly and the fan among the plurality of mounting plates is also configured to be matched with one frame plate so as to fix the fan between the at least one mounting plate and the frame plate in a clamping manner, and the ventilation hole is formed in a cover plate parallel to the frame plate.
5. The airframe assembly as recited in claim 1, wherein
The first frame plate is configured to be detachably plugged in a cover plate parallel to the first frame plate through 4 plugging blocks, and the 4 plugging blocks are configured to be plugged in the first frame plate and are respectively positioned in the same plane with the four connecting frame plates;
the second frame plate is configured to be detachably plugged into a cover plate parallel to the second frame plate through 4 other plugging blocks, and the 4 other plugging blocks are configured to be plugged into the second frame plate and are respectively positioned in the same plane with the four connecting frame plates;
each of the connection frame plates is further configured to be detachably inserted in a cover plate parallel to the connection frame plate by 1 insertion block, and the 1 insertion block is configured to be inserted in the connection frame plate and to be in the same plane as another connection frame plate inserted in the connection frame plate.
6. The airframe assembly as recited in claim 5, wherein
Each of the first plugging part and the second plugging part is one or more plugging convex blocks arranged at intervals;
each third plugging part comprises a rectangular block and one or more plugging bulges which are arranged at intervals and extend outwards from the tail end of the rectangular block;
each of the insertion blocks includes a rectangular block portion, an insertion projection portion extending from one length edge of the rectangular block and adapted to be inserted into one of the frame plates, and an insertion projection portion extending from the other length edge of the rectangular block and adapted to be inserted into one of the cover plates.
7. An air purifier, comprising:
the body assembly of any one of claims 1 to 6, a plurality of frame plates of the body assembly configured to be removably inserted into a body frame, an inner side of the body frame defining a receiving space;
a blower configured to be installed in the accommodating space; and
and the purification assembly is configured to be arranged in the accommodating space and positioned on an air inlet path of the fan, so that the fan sucks purified air and blows the air out of the air purifier.
CN201510150260.1A 2015-03-31 2015-03-31 Organism subassembly and have air purifier of this organism subassembly Active CN106152292B (en)

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CN201510150260.1A CN106152292B (en) 2015-03-31 2015-03-31 Organism subassembly and have air purifier of this organism subassembly

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Application Number Priority Date Filing Date Title
CN201510150260.1A CN106152292B (en) 2015-03-31 2015-03-31 Organism subassembly and have air purifier of this organism subassembly

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CN106152292B true CN106152292B (en) 2021-11-05

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103495313A (en) * 2013-10-20 2014-01-08 刘宏志 High-performance air purifying device
CN203468018U (en) * 2013-07-23 2014-03-12 姚东江 Assembled cabinet body
CN103712286A (en) * 2013-12-31 2014-04-09 安徽桑乐金股份有限公司 Wood air purifier
CN203907949U (en) * 2014-06-06 2014-10-29 北京博尚信科技有限公司 Main device assembling type case of fresh air system
CN204629798U (en) * 2015-03-31 2015-09-09 青岛海高设计制造有限公司 Cylinder block set and there is the air purifier of this cylinder block set

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203468018U (en) * 2013-07-23 2014-03-12 姚东江 Assembled cabinet body
CN103495313A (en) * 2013-10-20 2014-01-08 刘宏志 High-performance air purifying device
CN103712286A (en) * 2013-12-31 2014-04-09 安徽桑乐金股份有限公司 Wood air purifier
CN203907949U (en) * 2014-06-06 2014-10-29 北京博尚信科技有限公司 Main device assembling type case of fresh air system
CN204629798U (en) * 2015-03-31 2015-09-09 青岛海高设计制造有限公司 Cylinder block set and there is the air purifier of this cylinder block set

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