CN212996701U - Heat dissipation integrated appearance that moults - Google Patents
Heat dissipation integrated appearance that moults Download PDFInfo
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- CN212996701U CN212996701U CN202021548095.8U CN202021548095U CN212996701U CN 212996701 U CN212996701 U CN 212996701U CN 202021548095 U CN202021548095 U CN 202021548095U CN 212996701 U CN212996701 U CN 212996701U
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Abstract
The utility model discloses a heat dissipation integrated depilating instrument, which comprises a first sub-shell, a second sub-shell and a machine core, wherein the first sub-shell and the second sub-shell are mutually embedded to form an accommodating cavity for placing the machine core, and the machine core comprises a control component, a depilating component, a heat dissipation component and a cold compress component; the control assembly comprises a control circuit board, a power supply interface and a power supply capacitor; the heat dissipation assembly comprises a fan and an integrally formed heat dissipation aluminum casting, and the unhairing assembly comprises an isolation assembly, a lamp tube assembly and a transparent crystal; the cold compress assembly comprises a refrigeration piece, a cold guide piece and a cold compress component; the side surface of the first sub-shell is also provided with a first air inlet mesh hole corresponding to the fan, and the upper parts of the first sub-shell and the second sub-shell are also provided with an air outlet mesh hole corresponding to the air outlet. The utility model discloses each functional unit is the modularized design, compact structure, and overall design is small and exquisite, portable, and radiator unit adopts the integrated design, combines transparent crystal's use to make the cold compress effect better.
Description
Technical Field
The utility model relates to a device field that moults specifically is a heat dissipation integrated appearance that moults.
Background
The appearance that moults on the current market is of a great variety, and the pattern is various, at the in-process that the appearance that moults the effect and cold compress effect design, in order to guarantee the maximize of its effect, often carry out great space design to cold compress and radiating part, and this often has brought inconvenience in the use of the appearance that moults, and the different subassemblies of fin constitute, often has on the heat energy conduction and descends, leads to the radiating effect limited, realization radiating effect that can not the maximize.
Therefore, how to reduce the volume of the depilating apparatus to the maximum and improve the portability and the heat dissipation effect is a problem which needs to be solved urgently at present.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a heat dissipation integration appearance that moults to the conventional appearance cold compress effect that moults that proposes in solving above-mentioned background is not good, and the heat dissipation is complete inadequately, and can't avoid completely losing hair the burning pain sense that the in-process brought skin.
In order to achieve the above object, the utility model provides a following technical scheme: a heat dissipation integrated depilating instrument comprises a first sub-shell, a second sub-shell and a machine core, wherein the first sub-shell and the second sub-shell are mutually embedded to form an accommodating cavity for placing the machine core, and the machine core comprises a control assembly, a depilating assembly, a heat dissipation assembly and a cold compress assembly;
the control assembly comprises a control circuit board, a power supply interface and a power supply capacitor, wherein the power supply interface and the power supply capacitor are respectively arranged at the tail part of the control circuit board;
the hair removal assembly comprises an isolation assembly, a lamp tube assembly and a transparent crystal, wherein two cavities are arranged in the isolation assembly, a front cavity is used for fixing the lamp tube assembly, a rear cavity is used for placing a heat dissipation aluminum casting, and the transparent crystal is sleeved at the outer position of the front end of the front cavity; the bottom of the rear cavity is communicated with the bottom of the front cavity, the top of the rear cavity is provided with an air outlet, the side edge of the rear cavity is provided with an opening, and the rear end of the rear cavity is provided with a fan air inlet;
the heat dissipation assembly comprises a fan and an integrally formed heat dissipation aluminum casting, the fan is installed at the rear end of the isolation assembly, a fan air outlet is connected with a fan air inlet, and the heat dissipation aluminum casting is embedded into the isolation assembly through an opening in the side edge of the rear cavity;
the cold compress assembly comprises a refrigerating piece, a cold guide piece and a cold compress part, wherein the heating surface of the refrigerating piece is attached to the heat dissipation aluminum casting, the refrigerating surface of the refrigerating piece is attached to one end of the cold guide piece, and the other end of the cold guide piece is sleeved on the periphery of the transparent crystal; the cold compress component fixes the transparent crystal to the periphery of the isolation component and is in contact with the cold guide sheet;
the first branch casing side still is equipped with the first air inlet mesh that corresponds with the fan, the upper portion that first branch casing and second divide the casing still is equipped with the air-out mesh that corresponds with the air outlet.
Furthermore, the tail part of the second sub-shell is also provided with a second air inlet mesh; the inner side edge of the second sub-shell is also provided with an embedded piece, and the embedded piece is used for connecting the first sub-shell and fixing the movement in the shell.
Furthermore, the side surface of the second sub-shell is also provided with a switch key electrically connected with the control circuit board.
Furthermore, the whole radiating aluminum casting is in a long strip shape, the laminating isolation assembly is placed, the front end face of the radiating aluminum casting is a smooth face, raised radiating fins are arranged on the middle portion and the tail portion of the radiating aluminum casting, and the raised radiating fins in the middle portion are contained in a rear cavity of the isolation assembly.
Further, the isolation component is composed of two mutually embedded shells, a fan placing position is further arranged at the tail of the isolation component, and the fan placing position is used for clamping and fixing the fan.
Furthermore, the cold guide sheet is a metal conduction piece, and the exposed end surface of the cold guide sheet is U-shaped or 'return' shaped.
Further, the transparent crystal is a sapphire, quartz or glass crystal; the transparent crystal is contacted with the cold guide sheet to convert the light irradiated on the transparent crystal by the lamp tube component into cold light.
Compared with the prior art, the beneficial effects of the utility model are that: each functional component is in a modular design, the structure is compact, the overall design is small and exquisite, and the carrying is convenient; the heat dissipation assembly is formed by integrally formed aluminum castings, the heat dissipation effect is improved, and the cold compress effect is better by combining the transparent crystal.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a schematic view of the split structure of the present invention;
fig. 3 is a schematic view of the movement mechanism of the present invention;
fig. 4 is a schematic diagram of the disassembly of the movement mechanism of the present invention;
FIG. 5 is a schematic structural view of the heat dissipation mechanism and the hair removal mechanism of the present invention;
fig. 6 is a schematic view of the detachable structure of the heat dissipation mechanism and the hair removal mechanism of the present invention;
fig. 7 is the structural schematic diagram of the heat dissipation aluminum casting of the present invention.
In the figure: 1. a first sub-housing; 11. a first air inlet mesh; 2. a movement; 21. a cold compress component; 22. A transparent crystal; 23. a control circuit board; 24. a power supply interface; 25. a power supply capacitor; 26. a fan; 27. an isolation component; 271. a fan placing position; 28. heat-dissipating aluminum castings; 281. a heat sink; 29. a refrigeration plate; 210. a cold conducting sheet; 211. an air outlet; 212. a lamp tube assembly; 3. a second sub-housing; 31. an engaging member; 32 air outlet meshes; 33. switching a key; 34. and a second air inlet mesh.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-7, the present invention provides an embodiment:
a heat dissipation integrated depilating instrument comprises a first sub-shell 1, a second sub-shell 3 and a machine core 2, wherein the first sub-shell 1 and the second sub-shell 3 are mutually embedded to form an accommodating cavity for placing the machine core 2, and the machine core 2 comprises a control assembly, a depilating assembly, a heat dissipation assembly and a cold compress assembly;
the control assembly comprises a control circuit board 23, a power supply interface 24 and a power supply capacitor 25, wherein the power supply interface 24 and the power supply capacitor 25 are respectively arranged at the tail part of the control circuit board 23;
the epilation assembly comprises an isolation assembly 27, a lamp tube assembly 212 and a transparent crystal 22, wherein two cavities are arranged inside the isolation assembly 27, a front cavity is used for fixing the lamp tube assembly 212, a rear cavity is used for placing a heat dissipation aluminum casting 28, and the transparent crystal 22 is sleeved at the outer position of the front end of the front cavity; the bottom of the rear cavity is communicated with the bottom of the front cavity, the top of the rear cavity is provided with an air outlet 211, the side edge of the rear cavity is provided with an opening, and the rear end of the rear cavity is provided with an air inlet of a fan 26;
the heat dissipation assembly comprises a fan 26 and an integrally formed heat dissipation aluminum casting 28, the fan 26 is installed at the rear end of the isolation assembly 27, an air outlet 211 of the fan 26 is connected with an air inlet of the fan 26, and the heat dissipation aluminum casting 28 is embedded into the isolation assembly 27 through an opening in the side edge of the rear cavity;
as shown in fig. 6, when the fan 26 is operated, the generated wind blows off to the front chamber through the rear chamber, and while cooling and radiating the heat-radiating aluminum casting 28, the wind also radiates the lamp tube assembly to a certain extent, and blows out the hot wind through the outlet 211.
The cold compress assembly comprises a refrigerating sheet 29, a cold guide sheet 210 and a cold compress part 21, wherein the heating surface of the refrigerating sheet 29 is attached to the heat dissipation aluminum casting 28, the refrigerating surface of the refrigerating sheet 29 is attached to one end of the cold guide sheet 210, and the other end of the cold guide sheet 210 is sleeved on the periphery of the transparent crystal 22; the cold compress part 21 fixes the transparent crystal 22 to the periphery of the isolation component 27 and contacts with the cold guide sheet 210;
first branch casing 1 side still is equipped with the first air inlet mesh 11 that corresponds with the fan, and the upper portion that first branch casing 1 and second divide casing 3 still is equipped with the air-out mesh 32 that corresponds with air outlet 211.
In this embodiment, the tail of the second sub-housing 3 is further provided with a second air inlet mesh 34; the inner edge of the second sub-housing 3 is further provided with a fitting member 31, and the fitting member 31 is used for connecting the first sub-housing 1 and fixing the movement 2 in the housing.
In this embodiment, the side of the second sub-housing 3 is further provided with a switch button 33 electrically connected to the control circuit board 23.
In this embodiment, the heat dissipation aluminum casting 28 is a strip shape as a whole, and is placed in close contact with the isolation component 27, the front end surface of the heat dissipation aluminum casting 28 is a smooth surface, and the middle and the tail are both provided with raised heat dissipation fins 281, wherein the raised heat dissipation fins 281 in the middle are accommodated in the rear cavity of the isolation component 27.
In this embodiment, the isolation component 27 is composed of two housings which are embedded with each other, a fan placing position 271 is further disposed at the tail of the isolation component 27, and the fan placing position 271 is used for clamping and fixing the fan 26.
In the present embodiment, the cold conducting plate 210 is a metal conducting member, and the exposed end surface of the cold conducting plate 210 is U-shaped or "return" shaped.
In this particular embodiment, transparent crystal 22 is a sapphire, quartz or glass crystal; transparent crystal 22 converts light from lamp tube assembly 212 impinging on transparent crystal 22 into cold light by contacting cold sink 210.
Working principle, during the use, insert the power through power supply interface 24, begin to charge for supply capacitor 25, supply capacitor 25 stores enough energy as energy storage after, the user controls the appearance that moults through switch button 33 and works, then supply capacitor 25 carries out energy supply for whole machine, control circuit board 23 control fan 26 and refrigeration piece 29 begin to work, make refrigeration piece 29 through the cooling guide piece 210 with transparent crystal 22 and cold compress part 21 cool down, control lamp assembly 212 sends the light of specific wavelength simultaneously, the light shines on transparent crystal 22, because transparent crystal 22 passes through the cooling of cooling guide piece 210, the work illumination that will shine on transparent crystal 22 is tentatively cooled down, shine on human skin again. The use of cooperation cold compress part 21 at this moment can reach the effect of dual cooling, and the appearance that moults that only reduces the temperature through the cold compress part and not handle illumination itself more conventional, its cooling effect is obvious improvement relatively, can fundamentally solve the burning pain sense that the appearance that moults brought the skin when using.
Structurally, this appearance that moults has carried out the optimal design with each subassembly module, and wherein heat dissipation aluminium foundry goods 28 forms through the integrated into one piece technology preparation, only need during the equipment with its bellied fin 281 insert isolation component 27 in the rear portion cavity can, fan 26 then places the position 271 through the fan of isolation component 28 afterbody and fixes, combines the gomphosis of first branch casing 1 and second branch casing 3, can firmly assemble each subassembly, and the integration degree is high. In conventional heat radiation structure subassembly, often adopt a plurality of radiator unit to assemble and form, and at the heat-conducting in-process of different radiator unit, heat energy often can't carry out complete conduction, for this reason, when dispelling the heat to the heat energy of cold compress structure, can't thoroughly carry out the heat dissipation operation. And integrated into one piece's aluminium casting structure has then avoided the not thorough problem of heat conduction inadequately, can realize better radiating effect to promote the appearance that moults at the during operation, the travelling comfort of contact skin.
In the actual use process, compared with other similar products, the modular design of each functional component can be found, the structure is compact, the overall design is small and exquisite, and the carrying is convenient; the radiating component is formed by an integrally formed aluminum casting, so that the radiating effect is improved, the cold compress effect is better by combining with the use of the transparent crystal, and the requirement of the market on the painless depilatory instrument is met.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Claims (7)
1. The utility model provides a heat dissipation integrated appearance that moults which characterized in that: the machine core comprises a control assembly, a hair removal assembly, a heat dissipation assembly and a cold compress assembly;
the control assembly comprises a control circuit board, a power supply interface and a power supply capacitor, wherein the power supply interface and the power supply capacitor are respectively arranged at the tail part of the control circuit board;
the hair removal assembly comprises an isolation assembly, a lamp tube assembly and a transparent crystal, wherein two cavities are arranged in the isolation assembly, a front cavity is used for fixing the lamp tube assembly, a rear cavity is used for placing a heat dissipation aluminum casting, and the transparent crystal is sleeved at the outer position of the front end of the front cavity; the bottom of the rear cavity is communicated with the bottom of the front cavity, the top of the rear cavity is provided with an air outlet, the side edge of the rear cavity is provided with an opening, and the rear end of the rear cavity is provided with a fan air inlet;
the heat dissipation assembly comprises a fan and an integrally formed heat dissipation aluminum casting, the fan is installed at the rear end of the isolation assembly, a fan air outlet is connected with a fan air inlet, and the heat dissipation aluminum casting is embedded into the isolation assembly through an opening in the side edge of the rear cavity;
the cold compress assembly comprises a refrigerating piece, a cold guide piece and a cold compress part, wherein the heating surface of the refrigerating piece is attached to the heat dissipation aluminum casting, the refrigerating surface of the refrigerating piece is attached to one end of the cold guide piece, and the other end of the cold guide piece is sleeved on the periphery of the transparent crystal; the cold compress component fixes the transparent crystal to the periphery of the isolation component and is in contact with the cold guide sheet;
the first branch casing side still is equipped with the first air inlet mesh that corresponds with the fan, the upper portion that first branch casing and second divide the casing still is equipped with the air-out mesh that corresponds with the air outlet.
2. An epilating apparatus as claimed in claim 1, characterized in that: the tail part of the second sub-shell is also provided with second air inlet meshes; the inner side edge of the second sub-shell is also provided with an embedded piece, and the embedded piece is used for connecting the first sub-shell and fixing the movement in the shell.
3. An epilating apparatus as claimed in claim 1 or 2, characterized in that: and a switch key electrically connected with the control circuit board is also arranged on the side surface of the second sub-shell.
4. An epilating apparatus as claimed in claim 1, characterized in that: the whole radiating aluminum casting is in a long strip shape, the laminating isolation assembly is placed, the front end face of the radiating aluminum casting is a smooth face, the middle part and the tail part of the radiating aluminum casting are provided with raised radiating fins, and the raised radiating fins in the middle part are accommodated in a rear cavity of the isolation assembly.
5. An epilating apparatus as claimed in claim 1, characterized in that: the isolation component is composed of two shells which are mutually embedded, the tail part of the isolation component is also provided with a fan placing position, and the fan placing position is used for clamping and fixing the fan.
6. An epilating apparatus as claimed in claim 1, characterized in that: the cold guide sheet is a metal conduction piece, and the exposed end surface of the cold guide sheet is U-shaped or 'return' shaped.
7. An epilating apparatus as claimed in claim 1, characterized in that: the transparent crystal is sapphire, quartz or glass crystal; the transparent crystal is contacted with the cold guide sheet to convert the light irradiated on the transparent crystal by the lamp tube component into cold light.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021548095.8U CN212996701U (en) | 2020-07-30 | 2020-07-30 | Heat dissipation integrated appearance that moults |
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CN202021548095.8U CN212996701U (en) | 2020-07-30 | 2020-07-30 | Heat dissipation integrated appearance that moults |
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CN212996701U true CN212996701U (en) | 2021-04-20 |
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CN202021548095.8U Active CN212996701U (en) | 2020-07-30 | 2020-07-30 | Heat dissipation integrated appearance that moults |
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- 2020-07-30 CN CN202021548095.8U patent/CN212996701U/en active Active
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