CN219972758U - Airing machine casing and airing machine - Google Patents
Airing machine casing and airing machine Download PDFInfo
- Publication number
- CN219972758U CN219972758U CN202320467757.6U CN202320467757U CN219972758U CN 219972758 U CN219972758 U CN 219972758U CN 202320467757 U CN202320467757 U CN 202320467757U CN 219972758 U CN219972758 U CN 219972758U
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- cavity
- separation
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- casing
- parts
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- 238000000926 separation method Methods 0.000 claims abstract description 88
- 238000009434 installation Methods 0.000 claims abstract description 28
- 238000001035 drying Methods 0.000 claims abstract description 11
- 238000005192 partition Methods 0.000 claims description 79
- 230000002452 interceptive effect Effects 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 238000000034 method Methods 0.000 description 3
- 230000009286 beneficial effect Effects 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 238000005286 illumination Methods 0.000 description 2
- 230000000149 penetrating effect Effects 0.000 description 2
- 238000004659 sterilization and disinfection Methods 0.000 description 2
- 238000004804 winding Methods 0.000 description 2
- 238000010276 construction Methods 0.000 description 1
- 230000000249 desinfective effect Effects 0.000 description 1
- 238000005457 optimization Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
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Abstract
The utility model discloses a casing of a clothes drying machine and a clothes drying machine, comprising a casing and a separation assembly, wherein the separation assembly is arranged in the casing, the inside of the casing is sequentially separated into an upper cavity, a separation cavity and a lower cavity from top to bottom, and the separation of the space between parts is realized by arranging the parts in different cavities, so that the space utilization rate of the casing is improved; in addition, a separation cavity is arranged between the upper cavity and the lower cavity, so that the upper cavity and the lower cavity are mutually separated, and an installation space is provided for installing parts in the upper cavity and parts in the lower cavity, thereby preventing damage to parts in the other cavity when the parts in the cavities are installed; compared with the existing airing machine, the inside structural design of the machine shell is optimized, the space utilization rate of the inside of the machine shell is improved, the installation space is provided for parts inside the cavity, and the parts inside the cavity are further protected from being interfered or damaged by parts of other cavities.
Description
Technical Field
The utility model relates to the field of airing machines, in particular to a shell of an airing machine and an airing machine.
Background
The airing machine is used as a tool for airing clothes, provides convenience for daily life of people, and along with the development of technology, the functions of the airing machine are continuously increased, and parts required to be installed in the airing machine are increased, so that the space utilization requirement of a shell is improved; the existing airing machine shell is of a single cavity structure formed by a bottom plate and side plates, all parts are arranged on the bottom plate of the shell, no space is reserved between the parts, and the space utilization rate of the shell is low; in addition, along with the increase of function, part airing machine sets up a mounting panel in the casing inside, pass through the mounting and install the both sides at the mounting panel with the spare part, and then install inside the airing machine casing, then the mounting means of this kind of structure, only separate each other by a board between the spare part, the spare part clearance between the mounting panel both sides is less, and at the in-process of actual installation, adopt connecting piece such as screw mostly as the part mounting, the mounting panel can be worn out to the screw when installing, then the spare part damage of installing in the opposite side is caused easily, present mostly prevents this problem through staggering the spare part that sets up the mounting panel both sides, but along with the increase of spare part, moreover because the error of manual installation leads to the actual mounted position deviation appointed mounted position of part mounting, and then cause the problem that the spare part of mounting panel opposite side damages to appear.
Disclosure of Invention
The machine shell is provided for solving the problems that the parts on one side are fixed and the parts on the other side are influenced when the intervals between the parts on the two sides are smaller and the parts on the other side are easy to fix.
The technical scheme adopted for solving the technical problems is as follows:
the utility model provides a airing machine casing, includes casing and separation subassembly, separation subassembly is arranged in the casing separates into cavity, separation chamber and lower cavity in proper order from last down with the casing inside, separate the chamber and arrange in go up the cavity with between the cavity down, so that the part mounting in the cavity and/or the part mounting in the cavity stretches into down.
In order to ensure that the parts in the other cavity are not affected when the parts are mounted by the part fixing piece, optionally, a plurality of mounting holes are formed in the separation assembly, and the mounting holes are opposite to the separation cavity.
In order to ensure that the separation assembly can divide the interior of the machine shell into a plurality of cavities and improve the space utilization rate of the machine shell, optionally, the separation assembly comprises a first partition plate and a second partition plate, the first partition plate is connected with the inner side wall of the machine shell to separate the upper cavity from the separation cavity, and the second partition plate is positioned at the lower side of the first partition plate to separate the lower cavity from the separation cavity.
In order to prevent the clothes rod from affecting the parts in the clothes drying machine, optionally, the partition piece comprises a third partition board which is vertically arranged relative to the second partition board, and the third partition board is arranged in the lower cavity to separate the lower cavity into a clothes rod cavity and a functional cavity.
In order to enable the clothes poles to be matched with parts in the clothes airing machine better, optionally, the third partition plates are two partition plates which are arranged opposite to each other, the clothes pole cavity is a cavity formed by separating the two partition plates, and the functional cavities are respectively located at two sides of the clothes pole cavity.
In order to improve the space utilization rate of the casing, optionally, the separation assembly comprises a fourth partition plate connected with the first partition plate and the second partition plate, a first opening is formed in the second partition plate, and the fourth partition plate is connected with the third partition plate through the first opening, so that the clothes pole cavity is communicated with the first partition plate.
In order to facilitate the better matching of the clothes poles and the parts in the clothes airing machine, optionally, the first baffle plate is provided with a second opening, and the clothes pole cavity is communicated with the upper cavity through the second opening
In order to enable the housing to be better matched with the separation assembly, optionally, the housing and the separation assembly are integrally formed.
Compared with the prior art, the utility model has the beneficial effects that:
1. the separation assembly is arranged in the shell, the interior of the shell is separated into the upper cavity, the separation cavity and the lower cavity through the separation assembly, and the space separation between the parts is realized by arranging the parts in different cavities; in addition, a separation cavity is arranged between the upper cavity and the lower cavity, so that the upper cavity and the lower cavity are mutually separated, and an installation space is provided for installing parts in the upper cavity and parts in the lower cavity, thereby preventing damage to parts in the other cavity when the parts in the cavities are installed; compared with the existing clothes airing machine, the structural design in the machine shell is optimized, the space utilization rate in the machine shell is improved, the installation space is provided for the parts in the cavity, and the parts in the cavity are further protected from being interfered or damaged by the parts in other cavities; from the perspective of an installer, the damage to other parts caused by position errors during installation is avoided, so that the airing machine cannot be used due to damage, and economic loss is caused.
2. According to the utility model, the lower cavity is divided into the clothes rod cavity and the functional cavity through the separation component, so that not only can the basic clothes-airing requirement of the clothes-airing machine be met, but also different functional modules can be installed according to the functional requirement of the clothes-airing machine.
The utility model further aims to provide a clothes airing machine, wherein the separation cavity can provide installation intervals for parts arranged in the upper cavity and parts arranged in the lower cavity, so that the parts in the lower cavity are not interfered when the parts in the upper cavity are installed, and the parts in the upper cavity are not interfered when the parts in the lower cavity are installed.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the airing machine comprises an upper cavity part, a lower cavity part, a part fixing part and the airing machine shell according to any one of the above, wherein the upper cavity part is installed in the upper cavity, the lower cavity part is installed in the lower cavity, and the separation cavity is used for providing an installation distance for the upper cavity part and the lower cavity part.
In order to ensure that the compartment provides a mounting distance for the upper cavity part and the lower cavity part, optionally the part holder length is smaller than the height of the compartment.
Compared with the prior art, the utility model has the beneficial effects that:
the utility model has the casing of the airing machine, the upper cavity part is installed in the upper cavity, the lower cavity part is installed in the lower cavity, when the upper cavity part is installed, the part fixing part can penetrate through the separation assembly to fix the upper cavity part, and the part fixing part is arranged in the separation cavity, so that the part fixing part is prevented from interfering or damaging the part in the lower cavity; when the lower cavity part is installed, the part fixing piece can penetrate through the separation assembly to fix the lower cavity part, and the part fixing piece is arranged in the separation cavity, so that the part fixing piece is prevented from interfering or damaging the part in the upper cavity; compared with the existing clothes airing machine, the separating cavity can provide an installation space for the upper cavity part and the lower cavity part when in installation, so that the lower cavity part is not interfered when the upper cavity part is installed, and the upper cavity part is not interfered when the lower cavity part is installed.
The utility model will be further described with reference to the drawings and detailed description.
Drawings
FIG. 1 is a schematic structural view of a casing of a clothes drying machine;
FIG. 2 is a schematic view of a construction of a machine housing at another angle;
FIG. 3 is a schematic structural view of a clothes airing machine;
fig. 4 is a schematic view of a structure of another angle of the airing machine.
Detailed Description
Embodiments of the present utility model will be described in detail below with reference to the accompanying drawings.
1-2, a casing of a clothes drying machine comprises a casing 1 and a separation assembly, wherein the separation assembly is arranged in the casing 1 and sequentially separates the interior of the casing 1 into an upper cavity 10, a separation cavity 30 and a lower cavity 20 from top to bottom, and the separation cavity 30 is arranged between the upper cavity 10 and the lower cavity 20 so as to allow part fixing pieces in the upper cavity 10 and/or part fixing pieces in the lower cavity 20 to extend in;
in order to improve the space utilization rate of the shell 1 and prevent the damage to parts in another cavity when the parts are arranged in the cavity, a separation assembly is arranged in the shell 1, the interior of the shell 1 is sequentially separated into an upper cavity 10, a separation cavity 30 and a lower cavity 20 from top to bottom through the separation assembly, and the parts are respectively arranged in different cavities according to actual use requirements, so that the separation of the space among the parts of the airing machine is realized, and the space utilization rate of the shell 1 is improved; in addition, a separation chamber 30 is provided between the upper cavity 10 and the lower cavity 20, so that the upper cavity 10 and the lower cavity 20 are separated from each other, and an installation space is provided for installing part fixing pieces in the upper cavity 10 and the lower cavity 20 so that the part fixing pieces extend in, thereby preventing the parts in the cavities from damaging the parts in the other cavity during installation; specifically, the inside of the casing 1 is sequentially divided into an upper cavity 10, a separation cavity 30 and a lower cavity 20 from top to bottom through the separation assembly, the upper cavity 10 can be used for accommodating parts such as a motor of a clothes drying machine, the lower cavity 20 can be used for accommodating lifting clothes poles or other functional parts of the clothes drying machine, space separation among the parts of the clothes drying machine is realized, and the space utilization rate of the casing 1 is further improved; when the motor is installed, the motor can be fixed by using a screw, and the screw is installed from the upper cavity 10 to the direction of the separation cavity 30, so that when the screw is installed fixedly, the screw body is arranged in the separation cavity 30, thereby ensuring that the screw body cannot enter the lower cavity 20 and damage parts in the lower cavity 20; similarly, when the parts inside the lower cavity 20 can be fixed by screws, the screws can be installed from the lower cavity 20 to the direction of the separation cavity 30, so that when the screws are fixed, the screw bodies are arranged in the separation cavity 30, the screw bodies are ensured not to enter the upper cavity 10 to damage the parts inside the upper cavity 10, the above parts are only one specific example of the utility model through the screw installation mode, and the same installation mode which needs to be fixedly installed through penetrating through the separation assembly is also applicable, such as the screw installation mode, the screw installation mode and the like.
As shown in fig. 2-3, the partition assembly is provided with a plurality of mounting holes 102, and the mounting holes 102 are opposite to the partition cavity 30; in order to ensure that the parts in the upper cavity 10 are not influenced when being installed, a plurality of installation holes 102 are formed in the separation assembly according to the installation requirements of the parts, when the parts are installed, workers can quickly identify the installation positions of the corresponding parts according to the positions of the first installation holes 102, and under the action of the first installation holes 102, the corresponding parts are installed in the upper cavity 10 through part fixing pieces, and the part fixing pieces are arranged in the separation cavities 30 after the installation is finished; the above structure makes the components fixed in the upper cavity 10 by the fixing member under the action of the first mounting hole 102 when being mounted, and the fixing member is arranged in the separation cavity 30, thereby ensuring that the components in the upper cavity 10 do not affect the components in the lower cavity 20 when being mounted.
As shown in fig. 1-2, the partition assembly includes a first partition board 101 and a second partition board 201, the first partition board 101 is connected with the inner side wall of the casing 1 to partition the upper cavity 10 and the partition cavity 30, and the second partition board 201 is located at the lower side of the first partition board 101 to partition the lower cavity 20 and the partition cavity 30;
in order to ensure that the separation assembly can divide the interior of the shell 1, the separation assembly adopts a partition plate structure, the interior of the shell is divided into an upper cavity 10, a separation cavity 30 and a lower cavity 20 by a first partition plate 101 and a second partition plate 201 which are arranged at two sides of the separation cavity 30, and because the separation assembly adopts a plate layer structure, parts in the cavity can be directly arranged on the partition plates, part fixing pieces are prevented from being directly arranged on the shell 1, and the mounting holes on the shell 1 are reduced, so that the shell 1 is more concise and attractive; the partition member described above is only one specific example of the present utility model, and the same structure having a partition function as described above is applicable, for example, a frame structure constituted by a plurality of brackets partitions the inside of the casing 1, and the like.
As shown in fig. 1-4, the partition member includes a third partition 301 disposed vertically with respect to the second partition 201, the third partition 301 being disposed in the lower cavity 20 to partition the lower cavity 20 into the clothes pole cavity 203 and the functional cavity 204; because the functions of the airing machine are gradually increased along with the development of science and technology, in order to meet the functional requirements of the airing machine in the market, the inside of the casing of the airing machine needs to be subjected to structural optimization, and the space utilization of the casing is improved, the lower cavity 20 is internally provided with the third partition 301 which is vertically arranged, so that the lower cavity 20 can be divided into the clothes rod cavity 203 and the functional cavity 204, the clothes rod cavity 203 can meet the basic airing function of the airing machine, and different functional modules such as illumination, disinfection and the like can be installed in the functional cavity 204 according to the functional requirements of the airing machine.
As shown in fig. 1-4, the third partition 301 is two partition boards arranged opposite to each other, the clothes pole cavity 203 is a cavity formed by separating two partition boards, and the functional cavities 204 are respectively located at two sides of the clothes pole cavity 203; because of the functional characteristics of the clothes airing machine, the most preferred scheme is that functional modules are arranged on two sides of clothes and matched with clothes poles for use, for example, illumination modules are arranged on two sides of the clothes poles for illuminating clothes and surrounding environment on the clothes poles, or disinfection modules are arranged on two sides of the clothes poles for disinfecting the clothes on the clothes poles; therefore, in order to better match the clothes poles with the parts in the clothes airing machine, the lower cavity 20 is divided into three cavities by the two third partition boards 301, the clothes pole cavity 203 for placing the clothes poles is arranged in the middle, and the functional cavities 204 are arranged on two sides of the clothes pole cavity 203, so that the functional parts can be distributed on two sides of the clothes poles, the use effect of the functional modules is improved, and the performance of the clothes airing machine is improved; the functional modules placed in the functional cavities 204 are not identical parts on both sides, and the functional modules can be set according to the actual requirements of the airing machine.
As shown in fig. 1-4, the partition assembly includes a fourth partition 401 connecting the first partition 101 and the second partition 201, the second partition 201 is provided with a first opening 202, and the fourth partition 401 is connected to the third partition 301 through the first opening 202, so that the clothes pole cavity 203 is communicated with the first partition 101; since the clothes-horse is fixed in the outer shell through the pulley seat in a lifting manner, the clothes-horse body is not required to be fixedly installed on the outer shell, so that the separation cavity 30 at the upper end of the clothes-horse cavity 203 does not exert the effect, and therefore, in order to improve the space utilization rate of the machine shell 1, the first opening 202 is arranged on the second partition 201, so that the clothes-horse cavity 203 can be connected with the first partition 101, and the first partition 101 is connected with the second partition 201 through the fourth partition 401, so that a channel for communicating the clothes-horse cavity 203 with the first partition 101 is formed in the separation cavity 30, and the volume of the clothes-horse cavity 203 is enlarged, so that the machine shell 1 can accommodate clothes-horse with larger size, and the space utilization rate of the machine shell 1 is improved.
As shown in fig. 1 to 4, the first partition 101 is provided with a second opening 103, and the clothes pole cavity 203 is connected with the upper cavity 10 through the second opening 103; since the clothes poles of most clothes airing machines are fixed in the casing 1 by the pulley seat through the winding ropes, the second opening 103 is needed to be arranged on the first partition board 101, so that the winding ropes can extend from the upper cavity 10 into the clothes pole cavity 203 to be connected with the clothes poles.
As shown in fig. 1-2, the casing 1 and the partition assembly are integrally formed; in order to enable the shell 1 and the separation assembly to be better matched, the shell 1 and the separation assembly can be directly manufactured by adopting an integrated forming process, and the separation assembly does not need to be additionally arranged in the shell 1, so that the structure can not only reduce the assembly time of workers, but also be relatively firm, not easy to fall off, reduce the arrangement of installation components, optimize the structure and enable the division of the internal functional areas of the shell 1 to be clearer compared with a split type connection mode.
Another object of the present utility model is to provide a clothes drying machine, as shown in fig. 3-4, including an upper cavity part, a lower cavity part, a part fixing part, and a casing of the clothes drying machine according to any one of the above, where the upper cavity part is installed in the upper cavity 10, the lower cavity part is installed in the lower cavity 20, and the separation cavity 30 is used to provide an installation space between the upper cavity part and the lower cavity part;
according to the utility model, the parts of the clothes airing machine can be divided into an upper cavity part and a lower cavity part according to the positions of the parts in the machine shell, when the upper cavity part needs to be installed in the upper cavity 10, the part fixing part can penetrate through the separation assembly to fix the upper cavity part, and the part fixing part is arranged in the separation cavity 30, so that the part fixing part is prevented from interfering or damaging the parts in the lower cavity 20; when the lower cavity 20 parts are installed, the part fixing pieces can penetrate through the separation assembly to fix the lower cavity parts, and the part fixing pieces are arranged in the separation cavity 30, so that the part fixing pieces are prevented from interfering or damaging the parts in the upper cavity 10; compared with the existing airing machine, the separation cavity 30 can provide an installation space for the upper cavity part and the lower cavity part when in installation, so that the lower cavity part is not interfered when the upper cavity part is installed, and the upper cavity part is not interfered when the lower cavity part is installed.
As shown in fig. 3-4, the part holder length is less than the height of the separation chamber 30; to further ensure that the part holder is placed in compartment 30, no effect is exerted on the parts in the other cavity; the length A of the part fixing piece is smaller than the height B of the separation cavity 30, so that the part fixing piece is ensured to be placed in the separation cavity 30 after penetrating through the separation assembly, and parts in the other cavity are not affected.
The embodiments provided above in connection with the specific disclosure are not intended to limit the practice of the utility model to those descriptions. The present utility model should be considered as the protection scope of the present utility model, if the structure of the method is similar to that of the present utility model, or if several technical deductions or substitutions are made on the premise of the present utility model.
Claims (10)
1. The utility model provides a airing machine casing, includes casing (1) and separation subassembly, its characterized in that: the separation assembly is arranged in the casing (1), the inside of the casing (1) is sequentially separated into an upper cavity (10), a separation cavity (30) and a lower cavity (20) from top to bottom, and the separation cavity (30) is arranged between the upper cavity (10) and the lower cavity (20) so as to enable part fixing pieces in the upper cavity (10) and/or part fixing pieces in the lower cavity (20) to extend in.
2. The machine shell according to claim 1, wherein the separation assembly is provided with a plurality of mounting holes (102), and the mounting holes (102) are opposite to the separation cavity (30).
3. The machine shell according to claim 1, wherein the separation assembly comprises a first separation plate (101) and a second separation plate (201), the first separation plate (101) is connected with the inner side wall of the machine shell (1) to separate the upper cavity (10) from the separation cavity (30), and the second separation plate (201) is located at the lower side of the first separation plate (101) to separate the lower cavity (20) from the separation cavity (30).
4. A machine casing according to claim 3, characterized in that said separation assembly comprises a third partition (301) placed vertically with respect to said second partition (201), said third partition (301) being placed inside said lower cavity (20), separating said lower cavity (20) into a clothes-staff cavity (203) and a functional cavity (204).
5. The casing of a clothes drying machine according to claim 4, wherein the third partition board (301) is two partition boards arranged opposite to each other, the clothes pole cavity (203) is a cavity formed by separating two partition boards, and the functional cavities (204) are respectively located at two sides of the clothes pole cavity (203).
6. The machine shell according to claim 5, characterized in that said separation assembly comprises a fourth partition (401) connecting said first partition (101) and said second partition (201), said second partition (201) being provided with a first opening (202), said fourth partition (401) being connected to said third partition (301) through said first opening (202) so that said clothes pole cavity (203) is in communication with said first partition (101).
7. The machine shell according to claim 6, characterized in that the first partition (101) is provided with a second opening (103), and the clothes pole cavity (203) is communicated with the upper cavity (10) through the second opening (103).
8. A casing for a laundry machine according to claim 1, characterized in that said casing (1) and said separation assembly are of an integral structure.
9. The airing machine is characterized by comprising an upper cavity part, a lower cavity part, a plurality of part fixing parts and the shell of the airing machine according to any one of claims 1-8, wherein the upper cavity part is arranged in the upper cavity (10), the lower cavity part is arranged in the lower cavity (20), and the separation cavity (30) is used for providing an installation interval for the upper cavity part and the lower cavity part.
10. A laundry machine according to claim 9, characterized in that the part holder length is smaller than the height of the separation chamber (30).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202320467757.6U CN219972758U (en) | 2023-03-10 | 2023-03-10 | Airing machine casing and airing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202320467757.6U CN219972758U (en) | 2023-03-10 | 2023-03-10 | Airing machine casing and airing machine |
Publications (1)
Publication Number | Publication Date |
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CN219972758U true CN219972758U (en) | 2023-11-07 |
Family
ID=88593498
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202320467757.6U Active CN219972758U (en) | 2023-03-10 | 2023-03-10 | Airing machine casing and airing machine |
Country Status (1)
Country | Link |
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CN (1) | CN219972758U (en) |
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2023
- 2023-03-10 CN CN202320467757.6U patent/CN219972758U/en active Active
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