Heat radiation structure of TV set backplate
Technical Field
The utility model belongs to the technical field of household appliances, and particularly relates to a heat dissipation structure of a television backboard.
Background
At present, most of televisions on the market are intelligent ultrathin types, so that the ultrathin type televisions can dissipate heat, a heat dissipation structure can be installed on a television backboard, the heat dissipation structure suitable for the ultrathin televisions at present is more, and the following defects still exist in the practical use of the heat dissipation structure:
1. the existing television heat radiation structure has no good heat radiation effect, and great inconvenience exists when a user uses the television heat radiation structure;
2. the existing television heat radiation structure does not have a good protection effect, and is not convenient for a user to maintain and process when in use.
Therefore, the existing heat dissipation structure of the television cannot meet the requirements in practical use, so that an improved technology is urgently needed in the market to solve the problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a heat dissipation structure of a television backboard, which is characterized in that a heat conduction plate is abutted to the back of a backboard body, heat dissipation pieces are distributed on the heat conduction plate in a matrix shape, an air blowing structure is distributed on one side of each heat dissipation piece, and a humidity detector is detachably connected to the backboard body.
In order to solve the technical problems, the utility model is realized by the following technical scheme:
the utility model relates to a heat dissipation structure of a television backboard, which comprises a backboard body, an air blowing structure, a heat conducting plate, a connecting piece, a heat dissipation piece, a sliding chute and a humidity detector, wherein the connecting piece is fixedly connected to the back of the backboard body, the heat conducting plate and the air blowing structure can be detachably connected to the rear part of the backboard body through the connecting piece, the humidity detector can be detachably connected to the back of the backboard body above the connecting piece, the humidity detector can detect humid air on the backboard body, the air blowing structure and the heat conducting plate are inserted into the connecting piece, the heat dissipation piece is detachably connected to the front side of the heat conducting plate, the heat dissipation piece can uniformly dissipate heat on the heat conducting plate, the air blowing structure is matched with the sliding chute, a user can quickly detach the air blowing structure in the later period, the air blowing structure comprises a filter screen, a fan, a conduit and a branch pipe, the filter screen is detachably connected to the accommodating end of the fan, the air filtration that the filter screen can accomodate the fan, the discharge end threaded connection of pipe and fan, the pipe is the preparation of elasticity flexible material, normal work when can making the pipe bear certain pressure, the branch pipe is equidistant to be fixed at the discharge end of fan, can make the even heat to on the radiating piece of air-blast structure blow, the radiating piece includes pillar, buckle, branch and silica gel head, the use end fixedly connected with branch of pillar, the stiff end fixedly connected with buckle of pillar, the user can install and dismantle the pillar fast through the buckle, the use end fixedly connected with silica gel head of branch can avoid when the TV shell receives great impact force, and branch runs through the TV shell.
Further, the fan is mutually matched with the sliding groove, and the discharge end of the guide pipe is opposite to the heat dissipation piece.
Furthermore, the pillar is mutually clamped with the heat conducting plate through a buckle, and the silica gel heads are radially distributed at the use end of the pillar.
Furthermore, the heat dissipation pieces are distributed on the back of the heat conduction plate in a matrix shape, and the air blowing structures are distributed on the connecting piece and located on one side of the heat dissipation pieces.
Furthermore, the silica gel head is abutted against the shell of the television, and the silica gel head is of a columnar structure.
Further, the heat-conducting plate is in a rectangular block shape and is abutted against the back of the back plate body.
The utility model has the following beneficial effects:
1. when the heat dissipation structure is used, the heat conduction plate is inserted into the rear part of the back plate, the heat on the back plate can be accommodated by the heat conduction plate, the heat dissipation pieces are distributed on the heat conduction plate in a matrix shape, the heat on the heat conduction plate can be dissipated by the heat dissipation pieces, the air blowing structure works at the moment, the air blowing structure can blow the heat dissipation pieces, the back plate body can dissipate heat quickly at the moment, the supporting rods are distributed on the supporting columns in a radial shape, the heat on the supporting columns can be dissipated quickly, meanwhile, the supporting pipes are distributed on the guide pipe in an inclined mode at equal intervals, the air blowing structure can blow uniformly, the heat dissipation efficiency on the back plate body can be improved, and the problem that the existing television heat dissipation structure does not have a good heat dissipation effect is solved.
2. When the heat dissipation device is used, the humidity detector can detect the humidity of the accessory of the back plate body, the user connects the humidity detector with external equipment, the user can detect the humidity near the back plate body in real time according to the external equipment, and the silica gel head is abutted against the television rear shell when the heat dissipation device is used, so that the heat dissipation device can support the television rear shell, the television rear shell can be prevented from being damaged when the television rear shell is collided, and the problem that the existing television heat dissipation structure does not have a good protection effect is solved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic view of a connection structure between the present invention and a back plate body;
FIG. 2 is a diagram of the connection structure of the connecting member and the back plate body according to the present invention;
FIG. 3 is a schematic view of the heat sink of the present invention;
fig. 4 is a schematic end view of the air blowing structure of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a back plate body; 2. a blower structure; 21. a filter screen; 22. a fan; 23. a conduit; 24. a branch pipe; 3. a heat conducting plate; 4. a connecting member; 5. a heat sink; 51. a pillar; 52. buckling; 53. a strut; 54. a silica gel head; 6. a chute; 7. and a moisture detector.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Referring to fig. 1-4, the utility model is a heat dissipation structure of a tv backboard, comprising a backboard body 1, an air blowing structure 2, a heat conducting plate 3, a connecting piece 4, a heat dissipation piece 5, a chute 6 and a humidity detector 7, wherein the back of the backboard body 1 is fixedly connected with the connecting piece 4, the back of the backboard body 1 is positioned above the connecting piece 4 and is detachably connected with the humidity detector 7, the air blowing structure 2 and the heat conducting plate 3 are inserted on the connecting piece 4, the heat dissipation piece 5 is detachably connected with the front side of the heat conducting plate 3, the heat conducting plate 3 is in a rectangular block shape, the heat conducting plate 3 is abutted against the back of the backboard body 1, the heat dissipation piece 5 is distributed on the back of the heat conducting plate 3 in a matrix shape, the air blowing structure 2 is distributed on the connecting piece 4 and is positioned at one side of the heat dissipation piece 5, the air blowing structure 2 is matched with the chute 6, when the structure is used, a user firstly connects the structure on the back of the backboard body 1, peg graft on connecting piece 4 to heat-conducting plate 3 and air-blast structure 2, can be convenient for later stage user to install and dismantle heat-conducting plate 3 and air-blast structure 2 fast, heat sink 5 is the matrix form and distributes on heat-conducting plate 3, can make heat sink 5 give off heat-conducting plate 3's heat fast, air-blast structure 2 work this moment, can make air-blast structure 2 blow to heat sink 5, the wind that can make air-blast structure 2 blow takes away the heat on heat sink 5, moisture detector 7 is when using, moisture detector 7 can detect the air humidity around backplate body 1, moisture detector 7 is connected with external equipment simultaneously, can make the real-time data around the backplate body 1 of demonstration of external equipment, can make the timely TV machine maintenance of being of user.
As shown in fig. 1-4, the air blowing structure 2 includes a filter screen 21, a fan 22, a conduit 23 and a branch pipe 24, the filter screen 21 is detachably connected to a receiving end of the fan 22, the conduit 23 is in threaded connection with a discharge end of the fan 22, the discharge end of the conduit 23 is opposite to the heat dissipation member 5, the branch pipe 24 is fixed at the discharge end of the fan 22 at equal intervals, the fan 22 is matched with the chute 6, the heat dissipation member 5 includes a pillar 51, a buckle 52, a strut 53 and a silica gel head 54, a support rod 53 is fixedly connected to a using end of the pillar 51, the pillar 51 is fixedly connected with the buckle 52 through the buckle 52 and is clamped with the heat conduction plate 3, the silica gel head 54 is radially distributed at the using end of the pillar 51, the silica gel head 54 abuts against a housing of the television, the silica gel head 54 is in a columnar structure, the using end of the support rod 53 is fixedly connected with the silica gel head 54, and the structure is used, pillar 51 passes through buckle 52 and heat-conducting plate 3 joint, can make the user be quick to be connected heat dissipation piece 5 with heat-conducting plate 3, branch 53 is radially to be connected with pillar 51, can make branch 53 in the in-process of using with the even diffusion of heat on the heat-conducting plate 3, silica gel head 54 is at the in-process of using, the user is with silica gel head 54 butt on the TV shell, can avoid the TV shell to receive when colliding with, branch 53 runs through the damage to the TV shell, air blowing structure 2 is at the in-process of using, the air that fan 22 accomodate filters through filter screen 21, fan 22 blows air to heat dissipation piece 5 through pipe 23 and branch pipe 24 afterwards, can make the air in the in-process that flows take away the heat on heat dissipation piece 5, realize backplate body 1 quick heat dissipation.
One specific application of this embodiment is: firstly, a user connects the connecting piece 4 with the backboard body 1, then the user inserts the air blowing structure 2 and the heat conducting plate 3 on the connecting piece 4, which is convenient for the subsequent user to disassemble the air blowing structure 2 and the heat conducting plate 3, secondly, the user detachably connects the heat radiating pieces 5 on the heat conducting plate 3 in a matrix shape, which enables the heat conducting plate 3 to accommodate the heat on the backboard body 1 and transmit the heat to the heat radiating pieces 5, thirdly, the user detachably connects the moisture detector 7 on the backboard body 1, meanwhile, the user connects the humidity detector 7 with the external device, which can display the humidity data around the backboard body 1 in real time, and fourth, the user pushes the inner wall of the television housing against the silica gel head 54, simultaneously the work of air blast structure 2 can make the air current that air blast structure 2 blown blow to 5 the heat dissipation pieces, can realize that backplate body 1 dispels the heat fast.
The above are only preferred embodiments of the present invention, and the present invention is not limited thereto, and any modification, equivalent replacement, and improvement made to the technical solutions described in the above embodiments, and to some of the technical features thereof, are included in the scope of the present invention.