CN222366512U - A cooling device with adjustable wind direction - Google Patents
A cooling device with adjustable wind direction Download PDFInfo
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- CN222366512U CN222366512U CN202420181784.1U CN202420181784U CN222366512U CN 222366512 U CN222366512 U CN 222366512U CN 202420181784 U CN202420181784 U CN 202420181784U CN 222366512 U CN222366512 U CN 222366512U
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- 238000001816 cooling Methods 0.000 title claims abstract description 55
- 230000000694 effects Effects 0.000 abstract description 9
- 230000009286 beneficial effect Effects 0.000 description 1
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Abstract
The utility model provides cooling equipment capable of adjusting wind direction, relates to the technical field of cooling equipment, and aims to solve the problems that when the existing cooling equipment is used, the cooling equipment can only dissipate heat at a fixed position, equipment in a part of areas cannot receive cooling effect and is poor in practicability. The motor inside the fixing piece drives the top piece to rotate, and the swinging piece and the rotating piece are driven to swing left and right through the connecting piece to swing left and right through the rotating piece, so that the main body can be driven by the rotating piece to radiate heat of equipment at different positions, and the device can achieve better radiating effect and is more convenient to operate.
Description
Technical Field
The utility model belongs to the technical field of cooling equipment, and particularly relates to cooling equipment capable of adjusting wind direction.
Background
At present, the cooling equipment is widely applied, such as a distribution box, a control box, a switch cabinet and a computer case, can generate a large amount of heat when the equipment operates, and in order to enable electromechanical equipment to normally operate, the equipment such as the distribution box and the control box are guaranteed not to be damaged due to high temperature. Based on discovery among the prior art, current cooling equipment when using, cooling equipment can only dispel the heat to fixed position, and the effect of cooling can't be received to the equipment of partial region, and the practicality is relatively poor, and current cooling equipment when using, the stability of equipment can't be guaranteed to cooling equipment when rotating, and it is unable convenient fixed to cooling equipment.
Disclosure of utility model
In order to solve the technical problems, the utility model provides cooling equipment with adjustable wind direction, which solves the problems that the existing cooling equipment can only dissipate heat at a fixed position when in use, the equipment in a partial area cannot receive the cooling effect, the practicability is poor, and the stability of the equipment cannot be ensured when the existing cooling equipment rotates and the cooling equipment cannot be conveniently fixed when in use.
The utility model discloses cooling equipment capable of adjusting wind direction, which is achieved by the following specific technical means:
A cooling device capable of adjusting wind direction comprises a cooling mechanism, a bearing mechanism, a rotating mechanism and a fixing mechanism;
The cooling mechanism is a cooling equipment body and comprises a main body, wherein the main body is of a cylindrical structure, an air outlet is formed in the main body, the bearing mechanism is arranged at the bottom of the cooling mechanism and comprises a bearing piece, the bearing piece is of a cylindrical structure and is arranged at the top of the main body, the rotating mechanism is arranged at the bottom of the bearing mechanism and comprises a rotating piece, the rotating piece is of a cylindrical structure and is provided with an inner groove, the rotating piece is fixedly arranged at the bottom of the bearing piece, the fixing mechanism is arranged at the bottom of the rotating mechanism and comprises a fixing piece, the fixing piece is of a cylindrical structure and is arranged at the bottom of the rotating piece.
Further, the cooling mechanism also comprises a clamping piece;
The clamping piece is L-shaped structure, is equipped with the round hole on the clamping piece, and cylindrical protruding is installed to the clamping piece bottom, and clamping piece top fixed mounting has the arc protruding, and clamping piece and main part both sides contact each other.
Further, the bearing mechanism also comprises a chute and a slide bar;
The sliding groove is of a rectangular structure, the sliding groove is formed in the bearing part, the clamping part is slidably arranged in the sliding groove, the sliding rod is of a cylindrical structure, the sliding rod is fixedly arranged in the sliding groove, and the clamping part is slidably arranged on the sliding rod.
Further, the rotating mechanism also comprises a rotating piece and a rotating groove;
the rotating part is of a cylindrical structure, the rotating part is provided with a latch, the rotating part is rotatably arranged in an inner groove on the rotating part, the rotating groove is of an arc-shaped structure, the rotating groove is formed in the rotating part, and cylindrical protrusions on the clamping part are rotatably arranged in the rotating groove.
Further, the rotating mechanism also comprises a control piece;
The control piece is of a cylindrical structure, the control piece is provided with a latch, the control piece is connected with a motor inside the inner groove of the rotating piece, and the latch on the control piece is meshed with the latch on the rotating piece.
Further, the fixing mechanism also comprises a top piece and a connecting piece;
The top piece is of a rectangular structure and is arranged at the top end inside the fixing piece through the motor, and the connecting piece is of a rectangular structure and is rotationally connected with the top piece.
Further, the fixing mechanism also comprises a swinging piece;
The swinging piece is of a rectangular structure, the swinging piece is rotationally connected with the connecting piece, and the top of the swinging piece is connected with the bottom of the rotating piece.
Compared with the prior art, the utility model has the following beneficial effects:
1. In the device, the clamping piece and the rotating piece are arranged, the clamping piece is slidably arranged in the chute, the rotating piece is rotatably arranged in the rotating piece, and therefore, when the device is used, the motor in the rotating piece drives the control piece to rotate, the control piece is meshed with the rotating piece, so that the rotating piece is driven to rotate, the cylindrical bulge on the clamping piece is arranged in the rotary chute, and then the clamping piece is driven to move in the chute through the rotation of the rotating piece, and further, the arc-shaped bulge on the clamping piece is contacted with two sides of the main body, so that the main body can be stably clamped;
2. In this device, set up top piece and swinging member, here top piece be connected with the motor on the mounting, and the swinging member is connected with the rotating member, and then make when using, drive the top piece rotatory through the inside motor of mounting to through the effect that the connecting piece is connected, drive swinging member and rotating member swing about, and then swing about through the rotating member, thereby can drive the main part through the rotating member and dispel the heat to the equipment in different positions, thereby can play better radiating effect, the operation is more convenient.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is an exploded perspective view of the cooling mechanism and the carrying mechanism of the present utility model.
Fig. 3 is an exploded perspective view of the rotary mechanism of the present utility model.
Fig. 4 is an exploded perspective view of the fixing mechanism of the present utility model.
In the figure, the correspondence between the component names and the drawing numbers is:
1. the cooling mechanism comprises a cooling mechanism, a main body, a clamping piece and a cooling mechanism;
2. The device comprises a bearing mechanism, a bearing piece, 202, a sliding chute, 203 and a sliding rod;
3. The device comprises a rotating mechanism, 301, a rotating piece, 302, a rotating piece, 303, a rotating groove, 304 and a control piece;
4. Fixing mechanism, 401, fixing piece, 402, top piece, 403, connecting piece, 404 and swinging piece.
Detailed Description
Embodiments of the present utility model are described in further detail below with reference to the accompanying drawings and examples.
Examples:
As shown in fig. 1 to 4:
The utility model provides cooling equipment capable of adjusting wind direction, which comprises a cooling mechanism 1, a bearing mechanism 2, a rotating mechanism 3 and a fixing mechanism 4, wherein the cooling mechanism 1 is a cooling equipment body, the cooling mechanism 1 comprises a main body 101, the main body 101 is of a cylindrical structure, an air outlet is formed in the main body 101, the main body 101 is the cooling equipment body and is used for cooling equipment through the air outlet, the cooling equipment is of a mature prior art, the bearing mechanism 2 is arranged at the bottom of the cooling mechanism 1, the bearing mechanism 2 comprises a bearing piece 201, the bearing piece 201 is of a cylindrical structure, the bearing piece 201 is arranged at the top of the main body 101, the bearing piece 201 is used for bearing the main body 101, and is used for forming a chute 202, the rotating mechanism 3 is arranged at the bottom of the bearing mechanism 2, the rotating mechanism 3 comprises a rotating piece 301, the rotating piece 301 is of a cylindrical structure, an inner groove is formed in the rotating piece 301, the rotating piece 301 is fixedly arranged at the bottom of the bearing piece 201, the rotating piece 301 is used for driving the main body 101 to rotate, and therefore equipment at different positions can be processed, the fixing mechanism 4 is arranged at the bottom of the rotating mechanism 3, the bearing piece 201 is used for bearing the fixing piece 401, and the fixing piece 401 is arranged at the bottom of the fixing piece 401, and is connected with the fixing piece 401.
As shown in FIG. 2, the cooling mechanism 1 further includes a clamping member 102, the clamping member 102 has an L-shaped structure, a circular hole is formed in the clamping member 102, a cylindrical protrusion is mounted at the bottom of the clamping member 102, an arc-shaped protrusion is fixedly mounted at the top of the clamping member 102, and the clamping member 102 is in contact with two sides of the main body 101, wherein the clamping member 102 is used for driving the inside of the sliding groove 202 of the clamping member 102 to move through rotation of the rotating member 302, so that the arc-shaped protrusion on the clamping member 102 is in contact with two sides of the main body 101, and further an effect of fixing and clamping the main body 101 can be achieved.
The bearing mechanism 2 further comprises a sliding groove 202 and a sliding rod 203, wherein the sliding groove 202 is of a rectangular structure, the sliding groove 202 is formed in the bearing piece 201, the clamping piece 102 is slidably installed in the sliding groove 202, the sliding groove 202 is used for being slidably connected with the clamping piece 102, the sliding rod 203 is of a cylindrical structure, the sliding rod 203 is fixedly installed in the sliding groove 202, the clamping piece 102 is slidably installed on the sliding rod 203, and the sliding rod 203 is installed in a round hole in the clamping piece 102, so that an auxiliary fixing effect can be achieved on the clamping piece 102.
The rotating mechanism 3 further comprises a rotating member 302, a rotating groove 303 and a control member 304, wherein the rotating member 302 is of a cylindrical structure, a latch is arranged on the rotating member 302 and is rotatably installed inside an inner groove on the rotating member 301, the rotating member 302 is used for forming the rotating groove 303, the rotating groove 303 is of an arc-shaped structure, the rotating groove 303 is formed inside the rotating member 302, a cylindrical protrusion on the clamping member 102 is rotatably installed inside the rotating groove 303, the rotating groove 303 is used for being slidingly connected with the cylindrical protrusion on the clamping member 102, the control member 304 is of a cylindrical structure, the latch is arranged on the control member 304 and is connected with a motor inside the inner groove of the rotating member 301, the latch on the control member 304 is meshed with the latch on the rotating member 302, and the control member 304 is used for driving the rotating member 302 to rotate through the motor and is meshed with the rotating member 302.
As shown in FIG. 4, the fixing mechanism 4 further comprises a top piece 402, a connecting piece 403 and a swinging piece 404, wherein the top piece 402 is of a rectangular structure, the top piece 402 is installed at the top end inside the fixing piece 401 through a motor, the top piece 402 is used for driving the motor to rotate, the connecting piece 403 is of a rectangular structure, the connecting piece 403 is rotationally connected with the top piece 402, the connecting piece 403 is used for connecting the top piece 402 and the swinging piece 404, the swinging piece 404 is of a rectangular structure, the swinging piece 404 is rotationally connected with the connecting piece 403, the top of the swinging piece 404 is connected with the bottom of the rotating piece 301, and the swinging piece 404 is used for driving the connecting piece 403 to drive the swinging piece 404 to reciprocate left and right when the top piece 402 rotates, so that the rotating piece 301 and the main body 101 can be driven to swing, and equipment with different position angles can be cooled.
Specific use and action of the embodiment:
In the utility model, when the device is used, the main body 101 is placed on the top of the bearing piece 201, the motor in the rotating piece 301 drives the control piece 304 to rotate, the control piece 304 is meshed with the rotating piece 302 to drive the rotating piece 302 to rotate, the cylindrical protrusions on the clamping piece 102 are arranged in the rotating groove 303, the rotating piece 302 rotates to drive the clamping piece 102 to move in the sliding groove 202, the arc-shaped protrusions on the clamping piece 102 are contacted with two sides of the main body 101, so that the main body 101 can be stably clamped, the motor in the fixing piece 401 drives the top piece 402 to rotate, the swinging piece 404 and the rotating piece 301 are driven to swing left and right through the connecting piece 403, and the rotating piece 301 drives the main body 101 to radiate heat of equipment in different positions, so that a better radiating effect can be achieved, the operation is more convenient, the main body 101 is fixedly clamped through the clamping piece 102, and the situation that the main body 101 falls down during rotation is prevented.
Claims (7)
1. The cooling device capable of adjusting the wind direction is characterized by comprising a cooling mechanism (1), a bearing mechanism (2), a rotating mechanism (3) and a fixing mechanism (4);
The cooling mechanism (1) is a cooling equipment body, the cooling mechanism (1) comprises a main body (101), the main body (101) is of a cylindrical structure, an air outlet is formed in the main body (101), the bearing mechanism (2) is arranged at the bottom of the cooling mechanism (1), the bearing mechanism (2) comprises a bearing piece (201), the bearing piece (201) is of a cylindrical structure, the bearing piece (201) is arranged at the top of the main body (101), the rotating mechanism (3) is arranged at the bottom of the bearing mechanism (2), the rotating mechanism (3) comprises a rotating piece (301), the rotating piece (301) is of a cylindrical structure, an inner groove is formed in the rotating piece (301), the rotating piece (301) is fixedly arranged at the bottom of the bearing piece (201), the fixing mechanism (4) is arranged at the bottom of the rotating mechanism (3), and the fixing mechanism (4) comprises a fixing piece (401), the fixing piece (401) is of a cylindrical structure, and the fixing piece (401) is arranged at the bottom of the rotating piece (301).
2. The cooling device with adjustable wind direction according to claim 1, wherein the cooling mechanism (1) further comprises a clamping piece (102);
The clamping piece (102) is of an L-shaped structure, a round hole is formed in the clamping piece (102), a cylindrical bulge is arranged at the bottom of the clamping piece (102), an arc bulge is fixedly arranged at the top of the clamping piece (102), and the clamping piece (102) is in contact with two sides of the main body (101).
3. The cooling device with adjustable wind direction according to claim 2, wherein the bearing mechanism (2) further comprises a chute (202) and a slide bar (203);
The sliding groove (202) is of a rectangular structure, the sliding groove (202) is formed in the bearing piece (201), the clamping piece (102) is slidably mounted in the sliding groove (202), the sliding rod (203) is of a cylindrical structure, the sliding rod (203) is fixedly mounted in the sliding groove (202), and the clamping piece (102) is slidably mounted on the sliding rod (203).
4. A cooling apparatus with adjustable wind direction according to claim 3, wherein said rotating mechanism (3) further comprises a rotating member (302) and a rotating groove (303);
The rotating piece (302) is of a cylindrical structure, the rotating piece (302) is provided with a latch, the rotating piece (302) is rotatably arranged in an inner groove on the rotating piece (301), the rotating groove (303) is of an arc-shaped structure, the rotating groove (303) is formed in the rotating piece (302), and cylindrical protrusions on the clamping piece (102) are rotatably arranged in the rotating groove (303).
5. The cooling apparatus with adjustable wind direction according to claim 4, wherein the rotating mechanism (3) further comprises a control member (304);
The control piece (304) is of a cylindrical structure, the control piece (304) is provided with a latch, the control piece (304) is connected with a motor inside the inner groove of the rotating piece (301), and the latch on the control piece (304) is meshed with the latch on the rotating piece (302).
6. The cooling device with adjustable wind direction according to claim 5, wherein the fixing mechanism (4) further comprises a top piece (402) and a connecting piece (403);
The top piece (402) is of a rectangular structure, the top piece (402) is arranged at the top end inside the fixing piece (401) through a motor, the connecting piece (403) is of a rectangular structure, and the connecting piece (403) is rotationally connected with the top piece (402).
7. The cooling apparatus with adjustable wind direction according to claim 6, wherein the fixing mechanism (4) further comprises a swinging member (404);
The swinging piece (404) is of a rectangular structure, the swinging piece (404) is rotationally connected with the connecting piece (403), and the top of the swinging piece (404) is connected with the bottom of the rotating piece (301).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420181784.1U CN222366512U (en) | 2024-01-25 | 2024-01-25 | A cooling device with adjustable wind direction |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420181784.1U CN222366512U (en) | 2024-01-25 | 2024-01-25 | A cooling device with adjustable wind direction |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222366512U true CN222366512U (en) | 2025-01-17 |
Family
ID=94220620
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420181784.1U Active CN222366512U (en) | 2024-01-25 | 2024-01-25 | A cooling device with adjustable wind direction |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222366512U (en) |
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2024
- 2024-01-25 CN CN202420181784.1U patent/CN222366512U/en active Active
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