CN212211078U - Mobile terminal based on big data - Google Patents
Mobile terminal based on big data Download PDFInfo
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- CN212211078U CN212211078U CN202021150767.XU CN202021150767U CN212211078U CN 212211078 U CN212211078 U CN 212211078U CN 202021150767 U CN202021150767 U CN 202021150767U CN 212211078 U CN212211078 U CN 212211078U
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- mobile terminal
- semiconductor refrigeration
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Abstract
The utility model discloses a mobile terminal based on big data, a heat conduction shell can be connected with a mobile terminal body through a fixing clamp and is contacted with a rear shell, the heat conduction shell is convenient to be separated from the mobile terminal, a semiconductor refrigeration sheet, a heat collector and a radiator are arranged on the heat conduction shell, the surface of the heat absorption end of the semiconductor refrigeration sheet is contacted with the heat conduction shell and is fixed with the heat conduction shell, a heat collection shell is positioned above the semiconductor refrigeration sheet and is contacted with the surface of the heat release end of the semiconductor refrigeration sheet and is fixed with the heat conduction shell, the heat generated by the mobile terminal body is absorbed by the surface of the heat absorption end of the semiconductor refrigeration sheet, the heat is released from the surface of the heat release end of the semiconductor refrigeration sheet and is absorbed by a heat collection, the heat in the heat collecting medium is radiated to the air under the action of the radiator, the heat generated on the mobile terminal body can be accelerated to be transferred and transferred to the outside, thereby reach the cooling effect, make the temperature of mobile terminal body remain throughout in normal range.
Description
Technical Field
The utility model belongs to the mobile terminal field especially relates to a mobile terminal based on big data.
Background
The mobile terminal or called mobile communication terminal refers to a computer device which can be used in mobile, and broadly includes a mobile phone, a notebook, a tablet computer, a POS machine, and even a vehicle-mounted computer. But most often refer to cell phones or smart phones and tablets with multiple application functions. With the development of networks and technologies towards increasingly broader bands, the mobile communications industry will move towards a true mobile information age. On the other hand, with the rapid development of integrated circuit technology, the processing capability of the mobile terminal has already possessed strong processing capability, and the mobile terminal is changing from a simple conversation tool to an integrated information processing platform. This also adds more development space to mobile terminals.
The functions of the existing mobile terminal such as a mobile phone are more and more abundant, data interaction between the mobile terminal and other terminals is continuously realized through the Internet when the mobile terminal is used, people can basically not leave the mobile terminal in life and work, and the mobile terminal is slow in operation speed due to the heating phenomenon caused by long-time use of the mobile terminal, so that the life and the work of people are influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: a mobile terminal capable of having a temperature reduction performance is provided.
The utility model adopts the technical scheme as follows:
the utility model provides a mobile terminal based on big data, includes the mobile terminal body, the mobile terminal body has the backshell, its characterized in that: the solar heat collector also comprises a heat conduction shell, a semiconductor refrigeration piece, a heat collection shell, a radiator and a power supply; the heat conduction shell is provided with a fixing clamp for connecting and fixing the heat conduction shell with the mobile terminal body, and one surface of the heat conduction shell is contacted with the rear shell; the semiconductor refrigeration piece is fixed on the heat conduction shell, the semiconductor refrigeration piece is provided with a heat absorption end and a heat release end, and the surface where the heat absorption end is located is in contact with the heat conduction shell; the heat collection shell is positioned above the semiconductor refrigeration piece, is in contact with the surface where the heat release end of the semiconductor refrigeration piece is positioned, and is fixed with the heat conduction shell, a heat collection medium is arranged in the heat collection shell, a plurality of heat dissipation holes are formed in the part, extending out of the semiconductor refrigeration piece, of the heat collection shell, and the heat dissipation is arranged between the positions where the plurality of heat dissipation holes of the heat collection shell are positioned and the heat conduction shell; the power supply is respectively connected with the radiator and the semiconductor refrigerating sheet.
The further technical scheme is as follows: the fixing clip comprises four clips which are positioned at two sides of the heat conduction shell and are symmetrically arranged relative to the heat conduction shell, each clip comprises a clip rod and an elastic piece, one end of each clip rod is connected with the heat conduction shell through a rotating shaft, the other end of each clip rod is fixedly provided with a hasp, and the inner side of each hasp is in contact with the side edge of the mobile terminal body; the elastic member can apply a force to the clamping rod to rotate toward the heat conducting shell.
The further technical scheme is as follows: the elastic part is a torsion spring, the torsion spring is sleeved on the rotating shaft, and the torsion spring can apply force to the clamping rod to rotate the heat conducting shell.
The further technical scheme is as follows: the surface of the hasp facing the mobile terminal body is an arc-shaped surface.
The further technical scheme is as follows: the heat collecting medium is heat conducting oil or water.
The further technical scheme is as follows: the radiator comprises a motor and a radiating fan; the motor is fixed on the heat conduction shell, and the cooling fan is coaxially fixed on an output shaft of the motor.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
in the utility model, the heat conducting shell can be connected with the mobile terminal body through the fixing clamp and is contacted with the rear shell, which is convenient for separating the heat conducting shell from the mobile terminal, the heat conducting shell is provided with the semiconductor refrigeration piece, the heat collector and the radiator, the surface of the heat absorbing end of the semiconductor refrigeration piece is contacted with the heat conducting shell and is fixed with the heat conducting shell, the heat collecting shell is positioned above the semiconductor refrigeration piece, is contacted with the surface of the heat releasing end of the semiconductor refrigeration piece and is fixed with the heat conducting shell, the heat generated by the mobile terminal body is absorbed by the surface of the heat absorbing end of the semiconductor refrigeration piece, the heat is released from the surface of the heat releasing end of the semiconductor refrigeration piece and is then absorbed by, the heat in the heat collecting medium is radiated to the air under the action of the radiator, the heat generated on the mobile terminal body can be accelerated to be transferred and transferred to the outside, thereby achieving the effect of cooling and keeping the temperature of the mobile terminal body within a normal range all the time;
a plurality of radiating holes are formed in the part, extending out of the semiconductor refrigerating sheet, of the heat collecting shell, and heat on the heat collecting shell can be accelerated to be radiated into the air through the radiator.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments.
As shown in fig. 1, a mobile terminal based on big data comprises a mobile terminal body 1, wherein the mobile terminal body 1 is provided with a rear shell 2, and further comprises a heat conduction shell 3, a semiconductor refrigeration piece 4, a heat collection shell 5, a radiator and a power supply 6; a fixing clamp for connecting and fixing the heat conduction shell 3 with the mobile terminal body 1 is arranged on the heat conduction shell 3, and one surface of the heat conduction shell 3 is in contact with the rear shell 2; the semiconductor refrigeration sheet 4 is fixed on the heat conduction shell 3, the semiconductor refrigeration sheet 4 is provided with a heat absorption end and a heat release end, and the surface where the heat absorption end is located is in contact with the heat conduction shell 3; the heat collection shell 5 is positioned above the semiconductor refrigeration piece 4, is in contact with the surface where the heat release end of the semiconductor refrigeration piece is positioned, and is fixed with the heat conduction shell 3, a heat collection medium is arranged inside the heat collection shell 5, a plurality of heat dissipation holes 7 are formed in the part, extending out of the semiconductor refrigeration piece 4, of the heat collection shell 5, and the heat dissipation is arranged between the positions of the heat collection shell 5 where the plurality of heat dissipation holes 7 are positioned and the heat conduction shell 3; and the power supply 6 is respectively connected with the radiator and the semiconductor refrigerating sheet 4.
The heat conducting shell 3 can be connected with the mobile terminal body 1 through the fixing clamp and is contacted with the rear shell 2, the heat conducting shell 3 is convenient to be separated from the mobile terminal, the heat conducting shell 3 is provided with the semiconductor refrigerating sheet 4, the heat collector and the radiator, the surface of the heat absorbing end of the semiconductor refrigerating sheet 4 is contacted with the heat conducting shell 3 and is fixed with the heat conducting shell, the heat collecting shell 5 is positioned above the semiconductor refrigerating sheet 4 and is contacted with the surface of the heat releasing end of the semiconductor refrigerating sheet 4 and is fixed with the heat conducting shell 3, the heat generated by the mobile terminal body 1 is absorbed by the surface of the heat absorbing end of the semiconductor refrigerating sheet 4, the heat is released from the surface of the heat releasing end of the semiconductor refrigerating sheet 4 and is, the heat in the heat collecting medium is radiated to the air under the action of the radiator, the heat generated on the mobile terminal body 1 can be accelerated to be transferred and transferred to the outside, thereby achieving the effect of cooling and keeping the temperature of the mobile terminal body 1 within a normal range all the time; a plurality of radiating holes 7 are formed in the part, extending out of the semiconductor refrigerating piece 4, of the heat collection shell 5, heat on the heat collection shell 5 can be accelerated to be radiated to the air through the radiator, the power supply 6 is respectively connected with the radiator and the semiconductor refrigerating piece 4 to supply power to the radiator and the semiconductor refrigerating piece, and the power supply 6 is fixed on the heat conduction shell 3 for the battery shell.
The semiconductor refrigeration piece 4 is fixed on the heat conduction shell 3 by means of screws, and the heat collection shell is fixed on the heat conduction shell 3 by means of screws.
The fixing clip comprises four clips which are positioned at two sides of the heat conduction shell 3 and are symmetrically arranged relative to the heat conduction shell, each clip comprises a clip rod 8 and an elastic piece, one end of each clip rod 8 is connected with the heat conduction shell 3 through a rotating shaft, the other end of each clip rod is fixedly provided with a hasp 10, and the inner side of each hasp 10 is in contact with the side edge of the mobile terminal body 1; the elastic member can apply a force to the clamping lever 8 to rotate toward the heat conductive case 3.
The elastic element is a torsion spring 9, the torsion spring 9 is sleeved on the rotating shaft, and the torsion spring 9 can apply force to the clamping rod 8 to rotate the heat conducting shell 3.
The surface of the hasp 10 facing the mobile terminal body 1 is an arc surface, so that the connection stability of the fixing clip and the mobile terminal body 1 can be improved.
The heat collecting medium is heat conducting oil or water.
The radiator comprises a motor and a radiating fan 11; the motor is fixed on the heat conduction shell 3, the heat radiation fan 11 is coaxially fixed on an output shaft of the motor, and the power supply 6 supplies power to the motor.
The above description is only the preferred embodiment of the present invention.
Claims (6)
1. A mobile terminal based on big data, includes mobile terminal body (1), mobile terminal body (1) has backshell (2), its characterized in that: the solar heat collector also comprises a heat conduction shell (3), a semiconductor refrigeration piece (4), a heat collection shell (5), a radiator and a power supply (6); the heat conduction shell (3) is provided with a fixing clamp for connecting and fixing the heat conduction shell with the mobile terminal body (1), and one surface of the heat conduction shell (3) is in contact with the rear shell (2); the semiconductor refrigeration piece (4) is fixed on the heat conduction shell (3), the semiconductor refrigeration piece (4) is provided with a heat absorption end and a heat release end, and the surface where the heat absorption end is located is in contact with the heat conduction shell (3); the heat collection shell (5) is positioned above the semiconductor refrigeration piece (4), is in surface contact with the heat release end of the semiconductor refrigeration piece and is fixed with the heat conduction shell (3), a heat collection medium is arranged inside the heat collection shell (5), a plurality of heat dissipation holes (7) are formed in the part, extending out of the semiconductor refrigeration piece (4), of the heat collection shell (5), and the heat dissipation is arranged between the positions of the heat collection shell (5) where the plurality of heat dissipation holes (7) are located and the heat conduction shell (3); and the power supply (6) is respectively connected with the radiator and the semiconductor refrigerating sheet (4).
2. A big data based mobile terminal according to claim 1, wherein: the fixing clamp comprises four clamping buckles which are positioned at two sides of the heat conducting shell (3) and are symmetrically arranged relative to the heat conducting shell, each clamping buckle comprises a clamping rod (8) and an elastic piece, one end of each clamping rod (8) is connected with the heat conducting shell (3) through a rotating shaft, a buckle (10) is fixed at the other end of each clamping rod, and the inner side of each buckle (10) is in contact with the side edge of the mobile terminal body (1); the elastic piece can apply force to the clamping rod (8) to rotate towards the heat conducting shell (3).
3. A big data based mobile terminal according to claim 2, wherein: the elastic piece is a torsion spring (9), the torsion spring (9) is sleeved on the rotating shaft, and the torsion spring (9) can apply force to the clamping rod (8) to rotate the heat conducting shell (3).
4. A big data based mobile terminal according to claim 2 or 3, wherein: the surface of the hasp (10) facing the mobile terminal body (1) is an arc-shaped surface.
5. A big data based mobile terminal according to claim 1, wherein: the heat collecting medium is heat conducting oil or water.
6. A big data based mobile terminal according to claim 1, wherein: the heat sink comprises a motor and a heat dissipation fan (11); the motor is fixed on the heat conduction shell (3), and the heat radiation fan (11) is coaxially fixed on an output shaft of the motor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021150767.XU CN212211078U (en) | 2020-06-19 | 2020-06-19 | Mobile terminal based on big data |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021150767.XU CN212211078U (en) | 2020-06-19 | 2020-06-19 | Mobile terminal based on big data |
Publications (1)
Publication Number | Publication Date |
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CN212211078U true CN212211078U (en) | 2020-12-22 |
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Family Applications (1)
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CN202021150767.XU Active CN212211078U (en) | 2020-06-19 | 2020-06-19 | Mobile terminal based on big data |
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CN (1) | CN212211078U (en) |
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2020
- 2020-06-19 CN CN202021150767.XU patent/CN212211078U/en active Active
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