Wash lamp heat dissipation device and wash lamp

By adopting a vertically installed cooling fan design in the dyeing lamp, the problem of the long length of the existing stage lamp heat dissipation device and poor heat dissipation effect are solved, and efficient heat dissipation effect and compact dyeing lamps are achieved.

CN119333797BActive Publication Date: 2025-09-02FOSHAN NANHAI MINGTIAN PHOTOELECTRIC CO LTD
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Patent Information

Application Number
CN202411686207.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-09-02
Estimated Expiration
2044-11-25

AI Technical Summary

Technical Problem

The heat dissipation device of the existing stage lamp adopts a flat fan installation method, resulting in a longer length and poor heat dissipation effect.

Method used

The vertically installed cooling fan design adopts a vertically installed cooling fan, including a front radiator, a rear radiator and a cooling fan. The front radiator has an air inlet and an air outlet, and a heat dissipation chamber is provided in the rear radiator. The air enters through the air inlet and takes away heat and is discharged through the air outlet to achieve vertical heat dissipation.

Benefits of technology

The overall length of the dyeing lamp is shortened, while improving the heat dissipation effect, ensuring efficient heat dissipation of the dyeing lamp.

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Abstract

The present invention discloses a heat dissipation device for a dyeing lamp, comprising: a heat dissipation device body, the heat dissipation device body comprising a front heat dissipation cover, a rear heat dissipation cover, and a heat dissipation fan, the front heat dissipation cover is provided with an air inlet and an air outlet, the heat dissipation fan is vertically arranged in the air inlet, the rear heat dissipation cover is arranged on the front heat dissipation cover, and the rear heat dissipation cover has a heat dissipation cavity, and the heat dissipation cavity is respectively connected to the air inlet and the air outlet. The present invention provides a heat dissipation device for a dyeing lamp, when the heat dissipation device body is used, the heat dissipation fan is started and sucks external air into the heat dissipation device body through the air inlet, and then the heat dissipation fan blows the sucked air into the heat dissipation cavity of the rear heat dissipation cover, the air takes away the heat generated by the dyeing lamp body in the heat dissipation cavity, and then blows the hot air out through the air outlet. The vertical structural design of the heat dissipation fan makes the overall length of the dyeing lamp body smaller and has a better heat dissipation effect.
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Description

Technical Field

[0001] The present invention relates to the technical field of wash lamps, and more particularly to a wash lamp heat dissipation device and a wash lamp. Background Art

[0002] LED lights have been applied in many fields, and stage lights also use LEDs for lighting. However, stage lights have the function of focusing light, which requires that the LED light be refracted and focused when passing through a curved surface of the lens (a double convex lens has a curved surface). Focusing light requires adjusting the focal length of the lamp bead and the lens to produce uniform light.

[0003] Chinese invention patent application number CN201921347422.0 discloses a focusing system with a heat dissipation function and a stage light including the system, comprising a fin group, a fan, a heat pipe, a guide mechanism, an LED driver, an LED lamp, a focusing device, and a power unit; the LED driver is connected to the LED lamp, which is disposed within the focusing device; the heat pipe is provided with a first heat conduction portion for contacting the LED driver and a second heat conduction portion penetrating the fin group; the fin group is provided with a fan; the guide mechanism is connected to the fin group, and the power unit is connected to the guide mechanism to drive the fin group to move along the guide mechanism and drive the LED lamp to move and focus. The solution disclosed in the present invention achieves the technical effects of a large heat dissipation area, flexible installation, and suitability for focusing.

[0004] However, the fan in the above technical solution is installed horizontally in the stage light, which makes the stage light longer and has poor heat dissipation effect. Therefore, it is necessary to provide a wash lamp heat dissipation device and a wash lamp to at least partially solve the problems existing in the prior art. Summary of the Invention

[0005] The Summary of the Invention introduces a series of simplified concepts that will be further described in the Detailed Description of the Invention. The Summary of the Invention is not intended to limit the key features and essential features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0006] In order to at least partially solve the above problems, on the one hand, the present invention provides a heat dissipation device for a dyeing lamp, comprising: a heat dissipation device body, the heat dissipation device body comprising a front heat dissipation cover, a rear heat dissipation cover, and a heat dissipation fan, the front heat dissipation cover is provided with an air inlet and an air outlet, the heat dissipation fan is vertically arranged in the air inlet, the rear heat dissipation cover is arranged on the front heat dissipation cover, and the rear heat dissipation cover has a heat dissipation cavity, and the heat dissipation cavity is respectively connected to the air inlet and the air outlet.

[0007] According to the heat dissipation device of the dyeing lamp according to the embodiment of the present invention, the top and bottom of the front heat dissipation cover are respectively provided with an upper air inlet and a lower air inlet corresponding to the air inlet part, the air inlet part includes a plurality of oblique air inlet channels, and the middle part of the oblique air inlet channel is provided with a fan slot, and the heat dissipation fan is arranged in the fan slot.

[0008] According to the heat dissipation device for a dyeing lamp according to an embodiment of the present invention, two air outlets are configured and are respectively located on both sides of the air inlet. Upper air outlets and lower air outlets corresponding to the air outlets are respectively provided on the top and bottom of the front heat dissipation cover. The air outlet includes multiple oblique air outlet channels.

[0009] According to the heat dissipation device of the dyeing lamp according to the embodiment of the present invention, an air outlet guide plate is arranged in the rear heat dissipation cover, the heat dissipation cavity is located between the air outlet guide plate and the inner bottom of the rear heat dissipation cover, and the air outlet guide plate is provided with fan guide holes corresponding to the heat dissipation fan and multiple air outlet guide holes corresponding to the air outlet part.

[0010] On the other hand, the present invention also provides a dyeing lamp, comprising: a dyeing lamp main body, the dyeing lamp main body comprising a lamp body, a rear seat, and the above-mentioned heat dissipation device main body, the lamp body being arranged at the front end of the front heat dissipation cover in the heat dissipation device main body, the rear seat being arranged at the rear end of the rear heat dissipation cover in the heat dissipation device main body, a control part being arranged in the rear seat, and the control part being electrically connected to the lamp body.

[0011] According to the dyeing lamp of the embodiment of the present invention, the lamp body includes a lampshade, a light guide, a focusing lens portion, and a movable support portion. The lampshade is arranged at the front end of the front heat dissipation cover, the light guide and the movable support portion are arranged on the front plate of the front heat dissipation cover, the focusing lens portion is arranged on the movable support portion and is located in front of the light guide, and the light guide and the movable support portion are electrically connected to the control portion respectively.

[0012] According to the dyeing lamp of an embodiment of the present invention, the focusing lens part includes a lens frame and a plurality of lens bodies, and the plurality of lens bodies are evenly distributed on the lens frame. Two movable support parts are provided and are respectively located on both sides of the light guide, and the lens frame is movably configured on the movable support part.

[0013] According to the dyeing lamp of an embodiment of the present invention, the light guide member includes a light guide pressure plate and a plurality of light guide columns. The light guide pressure plate is arranged on the front plate of the front heat dissipation cover. The plurality of light guide columns are evenly distributed on the light guide pressure plate. The light guide columns are electrically connected to the control unit.

[0014] According to the dyeing lamp of the embodiment of the present invention, the movable support part includes a motor body and a screw. The motor body is arranged on one side of the light guide, the screw is arranged on the output shaft of the motor body, and the lens frame is provided with a side seat corresponding to the screw.

[0015] According to the dyeing lamp of the embodiment of the present invention, the control part includes a power supply, a constant current board, and a control display board. The power supply is electrically connected to the constant current board, and the constant current board is electrically connected to the control display board. The constant current board and the control display board are electrically connected to the light guide and the movable support part, respectively.

[0016] Compared with the prior art, the present invention has at least the following beneficial effects:

[0017] The present invention provides a heat dissipation device for a dyeing lamp, which includes a heat dissipation device main body, which is installed in the dyeing lamp main body and can dissipate heat therein, and the heat dissipation device main body includes a front heat dissipation cover, a rear heat dissipation cover, and a heat dissipation fan, wherein the rear heat dissipation cover is installed on the front heat dissipation cover, and the heat dissipation fan is installed inside the two. Specifically, an air inlet and an air outlet are installed in the front heat dissipation cover, and the above-mentioned heat dissipation fan can be vertically installed in the air inlet, and the rear heat dissipation cover has a heat dissipation cavity, which is connected to the air inlet and the air outlet respectively. Therefore, when the heat dissipation device main body is used, the heat dissipation fan is started to suck external air into the heat dissipation device main body through the air inlet, and then the heat dissipation fan blows the sucked air into the heat dissipation cavity of the rear heat dissipation cover. The air takes away the heat generated by the dyeing lamp main body in the heat dissipation cavity, and then blows the hot air out through the air outlet. The vertical structural design of the above-mentioned heat dissipation fan makes the overall length of the dyeing lamp main body smaller and has better heat dissipation effect.

[0018] The heat dissipation device and the wash lamp of the present invention, and other advantages, objectives and features of the present invention will be reflected in part through the following description, and will also be understood by those skilled in the art through research and practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0020] Figure 1 It is a schematic diagram of the exploded structure of the heat dissipation device body in the present invention.

[0021] Figure 2 It is a schematic diagram of the exploded structure of the heat dissipation device body in the present invention.

[0022] Figure 3 It is a structural schematic diagram of the front heat dissipation cover in the present invention.

[0023] Figure 4 It is a structural schematic diagram of the rear heat dissipation cover in the present invention.

[0024] Figure 5 It is a structural schematic diagram of the wash lamp main body in the present invention.

[0025] Figure 6 This is a schematic diagram of the exploded structure of the wash lamp body of the present invention.

[0026] Figure 7 It is a structural schematic diagram of the light guide cylinder in the present invention.

[0027] Figure 8 Schematic diagram of the internal structure of the light guide cylinder in the present invention.

[0028] Figure 9 Schematic diagram of the structure of the locking clamp assembly in the present invention.

[0029] Figure 10 Schematic diagram of the exploded structure of the locking clamp assembly in the present invention.

[0030] Figure 11 Schematic diagram of the exploded structure of the locking sandwich component in the present invention.

[0031] Figure 12 It is a structural schematic diagram of the rear seat portion in the present invention. DETAILED DESCRIPTION

[0032] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments so that those skilled in the art can implement the invention with reference to the description.

[0033] It should be understood that terms such as “having”, “including” and “comprising” used herein do not preclude the existence or addition of one or more other elements or combinations thereof.

[0034] like Figure 1-Figure 5 As shown, the present invention provides a heat dissipation device for a wash lamp, comprising: a heat dissipation device body 100, which is installed in a wash lamp body 200 to dissipate heat therein, and the heat dissipation device body 100 comprises a front heat dissipation cover 1, a rear heat dissipation cover 2, and a heat dissipation fan 3, wherein the rear heat dissipation cover 2 is installed on the front heat dissipation cover 1, and the heat dissipation fan 3 is installed inside the front heat dissipation cover 1. Specifically, an air inlet 11 and an air outlet 12 are installed in the front heat dissipation cover 1, and the heat dissipation fan 3 can be vertically installed in the air inlet 11, and a heat dissipation cavity 20 is provided in the rear heat dissipation cover 2. The heat dissipation cavity 20 is respectively connected with the air inlet 11 and the air outlet 12, so when the heat dissipation device main body 100 is used, the heat dissipation fan 3 is started and the external air is sucked into the heat dissipation device main body 100 through the air inlet 11, and then the heat dissipation fan 3 blows the sucked air into the heat dissipation cavity 20 of the rear heat dissipation cover 2. The air takes away the heat generated by the dyeing lamp main body 200 in the heat dissipation cavity 20, and then blows the hot air out through the air outlet 12. Through the vertical structural design of the above-mentioned heat dissipation fan 3, the overall length of the dyeing lamp main body 200 is smaller and has a better heat dissipation effect.

[0035] Example front radiator shroud

[0036] like Figure 2-Figure 3 As shown, further, some embodiments of the present invention provide a specific structure of the above-mentioned front heat dissipation cover 1, and the top and bottom of the front heat dissipation cover 1 of the structure are respectively provided with an upper air inlet 101 and a lower air inlet 102 corresponding to the air inlet portion 11, so as to facilitate the external air to enter the interior of the air inlet portion 11 through the upper air inlet 101 and the lower air inlet 102, wherein the air inlet portion 11 here includes a plurality of oblique air inlet channels 111, and the plurality of oblique air inlet channels 111 here are of an upper and lower structure, so as to correspond to the upper The air inlet 101 and the lower air inlet 102 correspond to each other. The oblique air inlet channel 111 here can increase the air entry distance, and a fan slot 13 is also provided in the middle of the oblique air inlet channel 111. The cooling fan 3 is installed in the fan slot 13 here, so when the cooling fan 3 is started, it can drive the air flow, so that the external air is sucked into the oblique air inlet channel 111 through the upper air inlet 101 and the lower air inlet 102 respectively, and then enters the heat dissipation cavity 20 to dissipate heat for the dyeing lamp body 200.

[0037] Exemplary air outlet

[0038] like Figure 1-Figure 3 As shown, further, some embodiments of the present invention provide a specific structure of the above-mentioned air outlet 12, in which two air outlets 12 are provided and are respectively located on both sides of the air inlet 11. Correspondingly, an upper air outlet 103 and a lower air outlet 104 corresponding to the air outlet 12 are respectively provided on the top and bottom of the front heat dissipation cover 1, and the above-mentioned air outlet 12 includes a plurality of oblique air outlet channels 121, and the plurality of oblique air outlet channels 121 also have an upper and lower structure. The oblique air outlet channels 121 can increase the travel of hot air, so that more heat is discharged outward from the upper air outlet 103 and the lower air outlet 104 along the oblique air outlet channels 121, thereby achieving a better heat dissipation effect.

[0039] Exemplary rear radiator shroud

[0040] like Figure 4As shown, further, some embodiments of the present invention provide a specific structure of the above-mentioned rear heat dissipation cover 2, where an air outlet guide plate 21 is installed in the rear heat dissipation cover 2, and the above-mentioned heat dissipation cavity 20 is located between the air outlet guide plate 21 and the inner bottom of the rear heat dissipation cover 2, and the heat of the dyeing lamp body 200 is conducted to the heat dissipation cavity 20 through the inner bottom of the rear heat dissipation cover 2, and a fan guide hole 211 corresponding to the heat dissipation fan 3 and a plurality of air outlet guide holes 212 corresponding to the air outlet part 12 are provided on the air outlet guide plate 21, so the external air enters the heat dissipation cavity 20 through the fan guide hole 211 after being blown by the heat dissipation fan 3, and the air blows the heat in the heat dissipation cavity 20 into the plurality of oblique air outlet channels 121 through the plurality of air outlet guide holes 212 and discharges it outward, thereby achieving a better heat dissipation effect.

[0041] like Figure 5-Figure 7 As shown, further, the present invention also provides a dyeing lamp, including: a dyeing lamp main body 200, wherein the dyeing lamp main body 200 includes a lamp body 4, a rear seat 5, and the above-mentioned heat dissipation device main body 100, specifically, the lamp body 4 is installed at the front end of the front heat dissipation cover 1 in the heat dissipation device main body 100, and the rear seat 5 is installed at the rear end of the rear heat dissipation cover 2 in the heat dissipation device main body 100, wherein the rear seat 5 has a control part 51, and the control part 51 is electrically connected to the lamp body 4, and the lamp body 4 can be controlled to focus through the control part 51 to achieve the effect of a dyeing lamp, and further, the heat generated during the operation of the control part 5 and the lamp body 4 is dissipated through the heat dissipation device main body 100, so as to facilitate the use of the dyeing lamp.

[0042] Exemplary lamp body

[0043] like Figure 6 As shown, further, some embodiments of the present invention provide a specific structure of the lamp body 4, the lamp body 4 of the structure includes a lampshade 41, a light guide 42, a focusing lens portion 43, and a movable support portion 44, wherein the lampshade 41 is mounted on the front end of the front heat dissipation cover 1, and the light guide 42 and the movable support portion 44 are mounted on the front plate 10 of the front heat dissipation cover 1, and the focusing lens portion 43 is mounted on the movable support portion 44 and is located in front of the light guide 42, and the light guide 42 and the movable support portion 44 are respectively connected to the control The part 51 is electrically connected, so when the control part 51 is started, the movable support part 44 can be started, and then the movable support part 44 can drive the focusing lens part 43 to move back and forth in the lampshade 41, so as to realize the light focusing of the dyeing lamp; wherein, tempered glass 410 is also installed at the front end of the lampshade 41 to provide protection for the focusing lens part 43; and a support frame 110 is also installed on the front heat dissipation cover 1 of the heat dissipation device main body 100, so that the dyeing lamp main body 200 can swing up and down on the support frame 110.

[0044] Exemplary Focusing Lens Section

[0045] like Figure 6 As shown, further, some embodiments of the present invention provide a specific structure of the above-mentioned focusing lens part 43, and the focusing lens part 43 of this structure includes a lens frame 431 and a plurality of lens bodies 432, wherein the plurality of lens bodies 432 are evenly distributed on the lens frame 431, and the above-mentioned movable support parts 44 are provided with two and are respectively located on both sides of the light guide 42, and then the lens frame 431 is movably installed on the movable support part 44, so the movable support part 44 can drive the lens frame 431 to move back and forth, thereby realizing the movement of the plurality of lens bodies 432 back and forth to realize the focusing action.

[0046] Exemplary movable support

[0047] like Figure 6 As shown, further, some embodiments of the present invention provide a specific structure of the above-mentioned movable support part 44, and the movable support part 44 of this structure includes a motor body 441 and a screw 442, wherein the motor body 441 is installed on one side of the light guide 42, and the screw 442 is installed on the output shaft of the motor body 441, and a side seat 433 corresponding to the screw 442 is installed on the lens frame 431, so when the motor body 441 is started, the screw 442 can be driven to rotate, and then under the rotation action of the two screws 442, the lens frame 431 is moved back and forth, thereby realizing the focusing action of the dyeing lamp.

[0048] Exemplary Light Guides

[0049] like Figure 6 As shown, further, some embodiments of the present invention provide a specific structure of the above-mentioned light guide 42, and the light guide 42 of this structure includes a light guide pressure plate 421 and a plurality of light guide columns 422, wherein the light guide pressure plate 421 is installed on the front plate 10 of the front heat dissipation cover 1, and the plurality of light guide columns 422 are evenly distributed on the light guide pressure plate 421 and correspond to the lens body 432, and the light guide column 422 is electrically connected to the control unit 51, and then the light guide column 422 emits light and transmits the light to the lens body 432, thereby realizing the use of the dyeing lamp.

[0050] Exemplary light guide tube

[0051] like Figure 7-11 As shown, further, in some embodiments of the present invention, a light guide tube member 6 corresponding to the light guide column 422 is also configured on the light guide pressure plate 421. Here, the light guide tube member 6 provides protection for the light guide column 422 and can effectively prevent dust from adhering to the light guide column 422 and affecting the effect of the dyeing lamp.

[0052] The light guide tube member 6 of this structure includes a transparent tube cap 61 and a tube body 62, wherein the tube body 62 is installed on the light guide pressure plate 421, and the transparent tube cap 61 has a first convex ring 611, and correspondingly, the tube body 62 has a second convex ring 621, and the first convex ring 611 and the second convex ring 621 can be fixedly connected by multiple locking clamp assemblies 63, so that the first convex ring 611 and the second convex ring 621 play a sealing role.

[0053] Exemplary Locking Clip Assembly

[0054] Furthermore, some embodiments of the present invention also provide a specific structure of a locking clamp assembly 63, wherein the locking clamp assembly 63 of this structure includes a first locking clamp body 64, a second locking clamp body 65 and a locking clamp handle body 66, wherein a plurality of through holes 612 are provided on the first convex ring 611, and correspondingly, a locking groove 622 corresponding to the through holes 612 is provided on the second convex ring 621, and the above-mentioned first locking clamp body 64 is located on the first convex ring 611, and the first locking clamp body 64 is also partially installed in the through hole 612 and extends into the locking groove 622, and the second locking clamp body 65 is rotatably connected to the first locking clamp body 64, and then the second locking clamp body 65 can be rotated to the second convex ring 621 and resist the second convex ring 621, and then the locking clamp handle body 66 can be used to connect the first locking clamp body 64 and the second locking clamp body 65.

[0055] Exemplary first locking clip body

[0056] Furthermore, some embodiments of the present invention provide a specific structure of the above-mentioned first locking clamp body 64, wherein the first locking clamp body 64 of this structure includes a first locking clamp plate 641 and a locking clamp cylinder 642, wherein the locking clamp cylinder 642 is installed on the inner side of the first locking clamp plate 641, and the locking clamp cylinder 642 can be passed through the through hole 612 and extend into the locking groove 622, and the connection between the first convex ring 611 and the second convex ring 621 is achieved through the locking clamp cylinder 642 inside. Furthermore, a first locking clamp seat 643 is installed on the first locking clamp plate 641, and a first shaft body 644 is provided on both sides of the first locking clamp seat 643. A first locking clamp block 645 is provided, and a locking clamp strip hole 646 is provided in the first locking clamp block 645, so that the second locking clamp body 65 can be rotatably connected to the two first shaft bodies 644, so that the second locking clamp body 65 can be rotated on the first shaft body 644, so that the second locking clamp body 65 is rotated from one side of the first convex ring 611 to one side of the second convex ring 621, and presses against the second convex ring 621, and the locking clamp handle body 66 is movably connected to the locking clamp strip hole 646, and can be rotated in the locking clamp strip hole 646 to be locked and connected with the second locking clamp body 65, and a fastening connection between the first locking clamp body 64 and the second locking clamp body 65 is realized through the locking clamp handle body 66.

[0057] Exemplary Second Lock Clip Body

[0058] Furthermore, some embodiments of the present invention provide a specific structure of the second locking clamp body 65. Here, the second locking clamp body 65 of the structure includes a second locking clamp plate 651. Specifically, the second locking clamp plate 651 has a second locking clamp seat 652. The second locking clamp seat 652 has movable arms 654 on both sides. The movable arms 654 are rotatably connected to the first shaft 644, and the movable arms 654 are extendable. Therefore, when the first convex ring 611 and the second convex ring 621 are fixed, The movable arm 654 can be moved to extend it, and then the second locking clamp body 65 can be rotated. The movable arm 654 can be rotated on the first shaft 644 to the second protruding ring 621. Then the movable arm 654 is pushed, and the length of the movable arm 654 is contracted to hit the second protruding ring 621. There is a semicircular block 653 on the second locking clamp seat 652, so when the locking clamp handle body 66 is rotated to the second locking clamp body 65, it can be connected with the semicircular block 653 to fix the second locking clamp body 65.

[0059] Exemplary Locking Clamp Handle Body

[0060] Furthermore, some embodiments of the present invention provide a specific structure of the above-mentioned locking clamp handle body 66, where the locking clamp handle body 66 of this structure includes a third locking clamp plate 661, wherein a second shaft body 662 is installed on the third locking clamp plate 661, and the second shaft body 662 can be passed through the locking clamp bar hole 646, and the second shaft body 662 is also rotatably connected to a U-shaped locking clamp frame 663, so that the U-shaped locking clamp frame 663 can be rotated on the third locking clamp plate 661 and rotated to the semicircular block 653; in addition, the third locking clamp plate 661 can be rotated to the first locking clamp plate 641, thereby realizing the fixation of the first locking clamp body 64 and the second locking clamp body 65.

[0061] Exemplary Lock Insert

[0062] Furthermore, in some embodiments of the present invention, a specific structure of a lock core member 67 is provided in the above-mentioned lock clamp assembly 63, and the lock core member 67 is used to increase the degree of fixation between the first lock clamp body 64 and the first convex ring 611 and the second convex ring 621. Specifically, the lock core member 67 of this structure includes a lock core rod 671 and an outer cap plate 672. The lock core rod 671 can be inserted into the lock clamp cylinder 642. The outer cap plate 672 is installed at the outer end of the lock core rod 671, and the inner end of the lock core rod 671 has a dovetail block 673, and a first hinge block 674 is provided on both sides of the dovetail block 673. The first hinge block 674 is installed with a first bite block 676 through a hinge frame 675. The first bite block 676 has a second hinge block 677 corresponding to the hinge frame 675. The two ends of the first bite block 676 respectively have a guide shaft 678, and correspondingly, the locking groove 622 has a second bite block 623, and the inner end of the lock clamp 642 has an opening 647 corresponding to the first bite block 676. Therefore, when the lock clamp core rod 671 enters the lock clamp 642, the hinge frame 675 supports the first bite block 676, so that the first bite block 676 passes through the opening 647 to engage with the second bite block 623, thereby increasing the fixing firmness of the first lock clamp body 64 and the first convex ring 611 and the second convex ring 621.

[0063] The first locking plate 641 has an auxiliary hole 648 corresponding to the locking core rod 671 , and the third locking plate 661 has an inner cap groove 664 corresponding to the outer cap plate 672 , which facilitates the installation and use of the locking core member 67 .

[0064] Exemplary Control Unit

[0065] like Figure 12 As shown, further, some embodiments of the present invention provide a specific structure of the above-mentioned control unit 51, where the control unit 51 of this structure includes a power supply unit 511, a constant current plate 512, and a control display panel 513, wherein the above-mentioned power supply unit 511, the constant current plate 512, and the control display panel 513 are installed in the rear seat 5, wherein the rear seat 5 has a mounting port 514 corresponding to the control display panel 513, specifically, the power supply unit 511 is electrically connected to the constant current plate 512, the constant current plate 512 is electrically connected to the control display panel 513, the constant current plate 512 and the control display panel 513 are electrically connected to the light guide 42 and the movable support 44, respectively, and then the use of the dyeing lamp is realized through the above-mentioned control display panel 513.

[0066] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0067] Although the embodiments of the present invention have been disclosed above, they are not limited to the applications listed in the description and implementation methods. They can be fully applied to various fields suitable for the present invention. For those familiar with the art, additional modifications can be easily implemented. Therefore, without departing from the general concept defined by the claims and the scope of equivalents, the present invention is not limited to the specific details and illustrations shown and described herein.

Claims

1. A heat dissipation device for a wash lamp and a wash lamp, characterized in that: include: A heat dissipation device body (100), the heat dissipation device body (100) comprising a front heat dissipation cover (1), a rear heat dissipation cover (2), and a heat dissipation fan (3); the front heat dissipation cover (1) is provided with an air inlet (11) and an air outlet (12); the heat dissipation fan (3) is vertically arranged in the air inlet (11); the rear heat dissipation cover (2) is arranged on the front heat dissipation cover (1), and the rear heat dissipation cover (2) has a heat dissipation cavity (20) in the rear heat dissipation cover, and the heat dissipation cavity (20) is communicated with the air inlet (11) and the air outlet (12) respectively; A dyeing lamp body (200) is provided. The dyeing lamp body (200) comprises a lamp body (4), a rear seat (5), and a heat dissipation device body (100). The lamp body (4) comprises a lampshade (41), a light guide (42), a focus lens (43), and a movable support (44). The light guide (42) comprises a light guide pressure plate (421) and a plurality of light guide columns (422). The light guide pressure plate (421) is further provided with a light guide cylinder (6) corresponding to the light guide columns. The light guide cylinder (6) comprises a transparent cylinder cap (61) and a cylinder body (62). The cylinder body (62) is provided on the light guide pressure plate (421). The transparent cylinder cap (61) is provided with a first convex ring (611), and the cylinder body (62) is provided with a second convex ring (62). 1), the first convex ring (611) and the second convex ring (621) are fixedly connected by a plurality of locking clamp assemblies (63), the locking clamp assembly (63) comprising a first locking clamp body (64), a second locking clamp body (65) and a locking clamp handle body (66), the first convex ring (611) is provided with a plurality of through holes (612), the second convex ring (621) is provided with locking grooves (622) corresponding to the through holes (612), the first locking clamp body (64) is partially disposed in the through holes (612) and the locking grooves (622), the second locking clamp body (65) is rotatably connected to the first locking clamp body (64) and abuts against the second convex ring (621), and the locking clamp handle body (66) is used to connect the first locking clamp body (64) and the second locking clamp body (65); The first locking clamp body (64) includes a first locking clamp plate (641) and a locking clamp cylinder (642). The locking clamp cylinder (642) is arranged on the inner side of the first locking clamp plate (641), and the locking clamp cylinder (642) can be inserted into the through hole (612) and extend into the locking groove (622). The first locking clamp plate (641) is provided with a first locking clamp seat (643). Both sides of the first locking clamp seat (643) have first shaft bodies (644). The first locking clamp seat (643) is provided with a first locking clamp block (645). The first locking clamp block (645) has a locking clamp strip hole (646). The second locking clamp body (65) is rotatably connected to the two first shaft bodies (644). The locking clamp handle body (66) is movably connected to the locking clamp strip hole (646) and can be locked with the second locking clamp body (65). The second locking clamp body (65) includes a second locking clamp plate (651), a second locking clamp seat (652) is configured on the second locking clamp plate (651), a semicircular block (653) is provided on the second locking clamp seat (652), a locking clamp handle body (66) is connected to the semicircular block (653), and movable arms (654) are provided on both sides of the second locking clamp seat (652), and the movable arms (654) are rotatably connected to the first shaft (644).

2. A heat dissipation device and a wash lamp according to claim 1, characterized in that: An upper air inlet (101) and a lower air inlet (102) corresponding to an air inlet portion (11) are respectively provided on the top and bottom of the front heat dissipation cover (1); the air inlet portion (11) includes a plurality of oblique air inlet channels (111); a fan slot (13) is provided in the middle of the oblique air inlet channels (111); and the heat dissipation fan (3) is arranged in the fan slot (13).

3. The heat dissipation device and the wash lamp according to claim 1, characterized in that: The air outlet portions (12) are provided with two and are respectively located on both sides of the air inlet portion (11); an upper air outlet (103) and a lower air outlet (104) corresponding to the air outlet portions (12) are respectively provided on the top and bottom of the front heat dissipation cover (1); and the air outlet portion (12) includes a plurality of oblique air outlet channels (121).

4. The heat dissipation device for a dye lamp according to claim 1, characterized in that: An air outlet guide plate (21) is arranged in the rear heat dissipation cover (2), the heat dissipation cavity (20) is located between the air outlet guide plate (21) and the inner bottom of the rear heat dissipation cover (2), and a fan guide hole (211) corresponding to the heat dissipation fan (3) and a plurality of air outlet guide holes (212) corresponding to the air outlet portion (12) are arranged on the air outlet guide plate (21).

5. The heat dissipation device for a dye lamp according to claim 1, characterized in that: The lamp body (4) is arranged at the front end of a front heat dissipation cover (1) in the heat dissipation device body (100), and the rear seat (5) is arranged at the rear end of a rear heat dissipation cover (2) in the heat dissipation device body (100). A control unit (51) is arranged in the rear seat (5), and the control unit (51) is electrically connected to the lamp body (4).

6. The heat dissipation device and the wash lamp according to claim 5, characterized in that: The lampshade (41) is arranged at the front end of the front heat dissipation cover (1); the light guide (42) and the movable support part (44) are arranged on the front plate of the front heat dissipation cover (1); the focusing lens part (43) is arranged on the movable support part (44) and is located in front of the light guide (42); and the light guide (42) and the movable support part (44) are respectively electrically connected to the control part (51).

7. The heat dissipation device and the wash lamp according to claim 6, characterized in that: The focusing lens portion (43) comprises a lens frame (431) and a plurality of lens bodies (432), wherein the plurality of lens bodies (432) are evenly distributed on the lens frame (431), two movable support portions (44) are provided and are respectively located on both sides of the light guide (42), and the lens frame (431) is movably configured on the movable support portion (44).

8. The heat dissipation device and the wash lamp according to claim 6, characterized in that: The light guide member (42) comprises a light guide pressure plate (421) and a plurality of light guide columns (422); the light guide pressure plate (421) is arranged on the front plate of the front heat dissipation cover (1); the plurality of light guide columns (422) are evenly distributed on the light guide pressure plate (421); and the light guide columns (422) are electrically connected to the control unit (51).

9. The heat dissipation device and the wash lamp according to claim 7, characterized in that: The movable support part (44) comprises a motor body (441) and a lead screw (442); the motor body (441) is arranged on one side of the light guide (42); the lead screw (442) is arranged on an output shaft of the motor body (441); and a side seat (433) corresponding to the lead screw (442) is arranged on the lens frame (431).

10. The heat dissipation device and the wash lamp according to claim 6, characterized in that: The control unit (51) comprises a power supply unit (511), a constant current plate (512), and a control display panel (513). The power supply unit (511) is electrically connected to the constant current plate (512), the constant current plate (512) is electrically connected to the control display panel (513), and the constant current plate (512) and the control display panel (513) are electrically connected to the light guide unit (42) and the movable support unit (44), respectively.

Citation Information

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