CN217493111U - Laser jig - Google Patents

Laser jig Download PDF

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Publication number
CN217493111U
CN217493111U CN202220959069.7U CN202220959069U CN217493111U CN 217493111 U CN217493111 U CN 217493111U CN 202220959069 U CN202220959069 U CN 202220959069U CN 217493111 U CN217493111 U CN 217493111U
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air
air passage
component
vertical plate
laser
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CN202220959069.7U
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Chinese (zh)
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朱树旺
董文
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Huizhou Winone Precision Technology Co Ltd
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Huizhou Winone Precision Technology Co Ltd
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Abstract

The application provides a laser jig relates to relevant technical field of radium carving of cell-phone center for when solving prior art and carrying out radium carving to the cell-phone center, one equipment and smelting tool can only carve the one side, when needing to carve cell-phone center head and afterbody, then need use the problem of two equipment and different smelting tools. The laser jig comprises an installation plate; the middle vertical plate is vertically arranged on the mounting plate, and a first adsorption component is arranged on the middle vertical plate; the profiling component is fixedly arranged on one side surface of the middle vertical plate, and a second adsorption component is arranged on the profiling component; the second adsorption component is communicated with the first adsorption component and is matched with the first adsorption component together to adsorb and fix a workpiece on the laser jig. This application can replace two equipment among the prior art to cell-phone center afterbody and cell-phone center head radium carving through an equipment to can reach reduction production input, and can improve production efficiency.

Description

Laser jig
Technical Field
The application relates to the technical field of mobile phone middle frame radium carving correlation, in particular to a radium-shine jig.
Background
Laser engraving, also called laser engraving or laser marking, is based on numerical control technology, and uses laser as a processing medium. The physical denaturation of the processing material by instant melting and gasification under the irradiation of laser engraving can enable the laser engraving to achieve the purpose of processing. The laser engraving is to use laser technology to engrave characters on an object, and the characters engraved by the technology have no nicks, the surface of the object is still smooth, and the characters cannot be abraded. In the production and preparation process of the mobile phone middle frame, the head and the tail of the mobile phone middle frame need to be subjected to laser etching. However, in the prior art, when laser etching is performed on the middle frame of the mobile phone, one device and one jig can only be used for etching one surface, and if the head and the tail of the middle frame of the mobile phone need to be etched, two devices and different jigs need to be used. In order to solve the problem, the application provides a laser jig.
SUMMERY OF THE UTILITY MODEL
The application provides a laser jig to when solving prior art and carrying out radium carving to the cell-phone center, a equipment and smelting tool can only carve the one side, when needing to carve cell-phone center head and afterbody, then need use the problem of two equipment and different smelting tools.
For reaching above-mentioned purpose, the application provides a radium-shine tool, includes:
mounting a plate;
the middle vertical plate is vertically arranged on the mounting plate, and a first adsorption component is arranged on the middle vertical plate;
the profiling component is fixedly arranged on one side surface of the middle vertical plate, and a second adsorption component is arranged on the profiling component;
the second adsorption component is communicated with the first adsorption component and is matched with the first adsorption component together to adsorb and fix a workpiece on the laser jig.
In some embodiments of the application, the riser is cuboid structure, has relative first face and the second face that sets up, profile modeling subassembly fixed setting is in riser's first face or second face.
In some embodiments of the present application, the contour assembly includes a first contour disposed on the first face of the mid-riser and a second contour disposed on the second face of the mid-riser.
In some embodiments of the present application, the first contour includes separate leading and trailing contour regions.
In some embodiments of the present application, the first adsorption component includes a first air passage component, a second air passage component, and a third air passage component disposed on the riser and separated from each other.
In some embodiments of the present application, the first air passage assembly comprises:
a first air passage provided on the middle riser in a vertical direction of the first face toward the second face;
and the second air channel is arranged on the middle vertical plate along the direction of the first surface facing the second surface and is communicated with the first air channel.
In some embodiments of the present application, the second air passage assembly comprises:
a third air passage provided on the middle riser in a vertical direction of the first face toward the second face;
and the fourth air passage is arranged on the middle vertical plate along the direction of the first surface facing the second surface and is communicated with the third air passage.
In some embodiments of the present application, the third air passage assembly comprises:
the fifth air passages are arranged on the middle vertical plate along the vertical direction of the first surface facing the second surface, and the number of the fifth air passages is multiple;
the sixth air passage is formed in the middle vertical plate in the longitudinal direction of the middle vertical plate and communicated with the fifth air passages;
and the seventh air passage is arranged on the middle vertical plate along the direction of the second surface facing the first surface and is communicated with the fifth air passage.
In some embodiments of the present application, the second adsorption assembly comprises:
the first air through hole is arranged on the head profiling area and communicated with the first air channel through the second air channel;
the second air through hole is formed in the tail copying area and communicated with the fourth air channel through the third air channel;
and the third air through hole is formed in the second cam and communicated with the seventh air channel.
In some embodiments of the present application, the first cam and the second cam are provided with positioning protrusions on the sides away from each other.
Has the advantages that:
this application is through improving current smelting tool structure, the smelting tool after the improvement is in the working process of reality, can fix cell-phone center afterbody and cell-phone center head, and can accomplish the synchronous radium carving of paired cell-phone center afterbody and cell-phone center head through a laser equipment, so both can replace two current smelting tools to the fixed of cell-phone center afterbody and cell-phone center head through a smelting tool, and simultaneously, can replace among the prior art two equipment to cell-phone center afterbody and cell-phone center head radium carving through an equipment again, thereby can reach and reduce the production input, and can improve production efficiency.
According to the laser carving device, the first profiling piece and the second profiling piece are arranged on the first face and the second face of the middle vertical plate, through the difference of the profiling pieces, the laser carving device can be suitable for laser carving of middle frame parts of different mobile phones, meanwhile, in order to adapt to the laser carving of different objects, the first profiling piece and the second profiling piece are detachably mounted on the middle vertical plate when the laser carving device is arranged, so that the laser carving device can extend to the laser carving of different objects through replacement of the profiling pieces, and the use range of the laser carving device is wider.
The integrated configuration that first air leads to subassembly, second air leads to subassembly and third air leads to the subassembly has been add in this application, and the mode that this integrated configuration's setting was fixed through atmospheric pressure absorption replaces current smelting tool extrusion fixed mode, both can reduce fixed process's the degree of difficulty like this, also can save half smelting tool simultaneously to effectively reduce the production input.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a schematic diagram of the structure in the practice of the present application;
FIG. 2 is a schematic diagram of the right side view of FIG. 1 in the practice of the present application;
FIG. 3 is a schematic illustration of the partially disassembled, assembled configuration of FIG. 1 in the practice of the present application;
FIG. 4 is a schematic view of the left side cutting plane cutting structure of FIG. 3 in the practice of the present application;
FIG. 5 is a schematic view of the first and second connectors of the present application in combination with the first and third air passages, respectively;
FIG. 6 is a schematic view of the third joint and fifth gas channel assembly of the present application.
The main reference numbers in the drawings accompanying the present specification are as follows:
the mounting plate 1, the threaded hole 11, the middle riser 2, the first contour 22, the head contour 221, the tail contour 222, the second contour 23, the first air passage component 4, the first air passage 41, the second air passage 42, the first air through hole 43, the second air passage component 5, the third air passage 51, the fourth air passage 52, the second air through hole 53, the positioning protrusion 6, the third air passage component 7, the fifth air passage 71, the first screw 711, the sixth air passage 72, the second screw 721, the seventh air passage 73, the third air through hole 74, the first joint 8, the second joint 9, the third joint 10, the contour component 12, the first adsorption component 13, and the second adsorption component 14.
Detailed Description
The technical solutions in the embodiments of the present application will be described clearly and completely with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only some embodiments of the present application, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
In the description of the present application, it is to be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience in describing the present application and simplifying the description, but do not indicate or imply that the referred device or element must have a particular orientation, be constructed in a particular orientation, and be operated, and thus should not be construed as limiting the present application.
The terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present application, "a plurality" means two or more unless otherwise specified.
In the description of the present application, it should be noted that, unless otherwise explicitly stated or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, a fixed connection, a detachable connection, or an integral connection; they may be mechanically coupled, directly coupled, indirectly coupled through intervening media, or interconnected between two elements. The specific meaning of the above terms in the present application can be understood in a specific case by those of ordinary skill in the art.
The application provides a laser jig, the following is the detailed description respectively. It should be noted that the following description of the embodiments is not intended to limit the preferred order of the embodiments of the present application. In the following embodiments, the descriptions of the respective embodiments have respective emphasis, and reference may be made to related descriptions of other embodiments for parts that are not described in detail in a certain embodiment.
Referring to fig. 1 to 6, the laser jig includes a mounting plate 1, a middle riser 2 and a profiling component 12. Specifically, the middle riser 2 is vertically installed on the mounting plate 1, and a first adsorption component 13 is arranged on the middle riser 2. The profiling component 12 is fixedly arranged on one side surface of the middle vertical plate 2, and a second adsorption component 14 is arranged on the profiling component. The second adsorption component 14 is communicated with the first adsorption component 13, and is used together to adsorb and fix a workpiece (not shown) on the laser jig. The mounting plate 1 is provided with a threaded hole 11.
Well riser 2 is the cuboid structure, has relative first face and the second face that sets up, profile modeling subassembly 12 is fixed set up in on the first face or the second face of well riser 2.
The contour assembly 12 includes a first contour 22 disposed on a first face of the mid-riser 2 and a second contour 23 disposed on a second face of the mid-riser 2.
The first contour 22 includes a head contour region 221 and a tail contour region 222 that are separated.
The first adsorption component 13 comprises a first air ventilation component 4, a second air ventilation component 5 and a third air ventilation component 7 which are arranged on the middle vertical plate 2 and separated from each other.
The first air passage assembly 4 includes a first air passage 41 and a second air passage 42. Specifically, the first air duct 41 is provided on the middle riser 2 in the vertical direction of the first face toward the second face. The second air passage 42 is provided in the direction of the first face toward the second face on the middle riser 2, and communicates with the first air passage 41.
The second air passage assembly 5 includes a third air passage 51 and a fourth air passage 52. Specifically, the third air passage 51 is provided in the center riser 2 in the vertical direction of the first face toward the second face. The fourth air passage 52 is provided in the middle riser 2 in a direction from the first surface to the second surface, and communicates with the third air passage 51.
The third air passage assembly 7 includes a fifth air passage 71, a sixth air passage 72, and a seventh air passage 73. Specifically, the fifth air passage 71 is provided on the middle riser 2 in the vertical direction of the first face to the second face. The sixth air passage 72 is formed in the middle vertical plate 2 along the longitudinal direction of the middle vertical plate 2 and is communicated with the fifth air passages 71. The seventh air passage 73 is provided in the center vertical plate 2 in the direction in which the second surface faces the first surface, and communicates with the fifth air passage 71.
The second adsorption component 14 includes a first air passage hole 43, a second air passage hole 53, and a third air passage hole 74. The first air passage hole 43 is provided on the head contour region 221 and communicates with the first air passage 41 through the second air passage 42. The second air hole 53 is disposed on the tail profiling area 222 and is communicated with the fourth air passage 52 through the third air passage 51. The third air passage hole 74 is provided in the second cam 23 and communicates with the seventh air passage 73.
A first joint 8 is installed in the first air passage 41. The first connector 8 is configured such that the first ventilation assembly 4 can only draw air through the first connector 8 when a head portion (not shown) of a handset middle frame is attached to the head contour region 221.
A second joint 9 is arranged in the third air channel 51. When the tail part (not shown) of the middle frame of the mobile phone is attached to the tail copying area 222, the second air ventilation component 5 can only suck and release air through the second connector 9.
The number of the fifth air passages 71 is provided with a plurality of fifth air passages, wherein one fifth air passage 71 is internally provided with a third joint 10, and the other fifth air passages 71 are internally provided with first screws 711. A second screw 721 is installed in the sixth air passage 72. The arrangement of the first screw 711 and the second screw 721 is used for blocking the third air passage element 7, ensuring that the third air passage element 7 can only suck or release air through the third joint 10 when an object is attached to the second profile 23.
Referring to fig. 1 and 3, positioning protrusions 6 are disposed on the sides of the first cam 22 and the second cam 23 away from each other.
The laser jig of the present application will be described specifically with reference to fig. 1 to 6, and the laser jig needs to be used with a laser device (detailed later). Specifically, will mounting panel 1 is fixed on equipment platform (not shown), threaded hole 11 interpolation has set screw, through the screw grafting will mounting panel 1 is fixed on equipment platform to in the fixed in-process, guarantee well riser 2 is relative equipment platform vertical setting, the top of well riser 2 is provided with laser emitter (not shown).
When the head of the mobile phone middle frame is subjected to laser etching, the head of the mobile phone middle frame is tightly pressed and attached to the head profiling area 221, then a vacuumizing machine (not shown in the figure) is started, the vacuumizing machine is respectively communicated with the first connector 8, the second connector 9 and the third connector 10 through three pipelines which are not communicated, so that gas in the first air passage 41, the second air passage 42 and the first air through hole 43 is pumped out through the first connector 8, the head of the mobile phone middle frame is adsorbed on the head profiling area 221, and then laser emitted by the laser emitter is used for performing laser etching on the head of the mobile phone middle frame.
When the tail of the mobile phone middle frame is subjected to laser etching, the tail of the mobile phone middle frame is tightly pressed and attached to the tail profiling area 222, then the vacuum-pumping machine is started, gas in the third air passage 51, the fourth air passage 52 and the second air through hole 53 is pumped out through the second connector 9, so that the tail of the mobile phone middle frame is adsorbed on the tail profiling area 222, and then laser etching is carried out on the tail of the mobile phone middle frame through laser emitted by the laser emitter.
When the integral mobile phone middle frame is subjected to laser etching, the plurality of fifth air channels 71 are blocked by the first screws 711, the sixth air channel 72 is blocked by the second screws 721, the integral mobile phone middle frame is tightly pressed and attached to the second profile-shaped part 23, the second profile-shaped part 23 is of an integral structure, then a vacuum-pumping machine is started, air in the fifth air channel 71, the sixth air channel 72, the seventh air channel 73 and the third air through hole 74 is pumped out, the integral mobile phone middle frame is fixed on the second profile-shaped part 23, and laser etching is performed through laser emitted by the laser emitter. In this embodiment, in order to perform a better fixing process, when the number of the fifth air passage 71, the seventh air passage 73 and the third air through holes 74 is set to be plural, and the number of the fifth air passage 71, the seventh air passage 73 and the third air through holes 74 is consistent, so that different parts of the object can be simultaneously adsorbed and fixed in the adsorption and fixing process, and the object can be fixed more firmly.
In the process of fixing the head part and the tail part of the middle frame of the mobile phone, in order to quickly align the fixing positions, the positioning protrusions 6 are arranged on the first cam 22 and the second cam 23.
The mobile phone middle frame laser etching processing technology comprises laser etching on the head of a mobile phone middle frame, laser etching on the tail of the mobile phone middle frame and laser etching on the whole mobile phone middle frame, different profiling parts are required to be used according to different processing parts, and specifically, the laser etching on the head of the mobile phone middle frame, the tail of the mobile phone middle frame and the whole mobile phone middle frame can be respectively realized by arranging the first profiling piece 22 and the second profiling piece 23. And the equipment in this application also can extend to the fixed radium carving to big volume and small volume article, specifically, through changing the imitative piece on well riser 2 first face and the second face, can realize the fixed to different articles to carry out radium carving to different articles through laser emitter. Meanwhile, in the laser etching process, the object is fixed on the profiling piece in a vacuum adsorption mode, so that the fixture can be fixed by only half compared with the prior art, the production investment of the fixture can be reduced, and meanwhile, the laser etching processing of the head and the tail of the middle frame of the mobile phone can be completed through one piece of equipment, so that the production efficiency of the equipment can be improved, and meanwhile, the investment cost of the equipment can be reduced.
This application is through improving current smelting tool structure, the smelting tool after the improvement is in the working process of reality, can fix cell-phone center afterbody and cell-phone center head, and can accomplish the synchronous radium carving of paired cell-phone center afterbody and cell-phone center head through a laser equipment, so both can replace two current smelting tools to the fixed of cell-phone center afterbody and cell-phone center head through a smelting tool, and simultaneously, can replace among the prior art two equipment to cell-phone center afterbody and cell-phone center head radium carving through an equipment again, thereby can reach and reduce the production input, and can improve production efficiency.
This application has set up first imitative piece 22 and second imitative piece 23 on well riser 2's first face and second face, through the difference of imitative piece, applicable radium carving in different cell-phone center positions, simultaneously in order to adapt to the radium carving of different article, when setting up first imitative piece 22 with second imitative piece 23 demountable installation is on well riser 2, can make this equipment extend to the radium carving to different articles through changing the imitative piece like this to make the scope that this equipment used more extensive.
The integrated configuration of first logical subassembly 4, second logical subassembly 5 and third logical subassembly 7 has been add in this application, and this integrated configuration's setting adsorbs fixed mode through atmospheric pressure and replaces current smelting tool extrusion fixed mode, so both can reduce fixed process's the degree of difficulty, also can save half smelting tool simultaneously to effectively reduce the production input.
In the description herein, particular features, structures, materials, or characteristics may be combined in any suitable manner in any one or more embodiments or examples.
The above description is only for the specific embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present application, and shall be covered by the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims. In addition, the principle and the implementation manner of the present application are explained by applying specific examples in the specification, the above description of the embodiments is only for helping understanding the method and the core idea of the present application, and the content of the present application should not be construed as limiting the present application.

Claims (10)

1. A laser jig is characterized by comprising:
mounting a plate;
the middle vertical plate is vertically arranged on the mounting plate, and a first adsorption component is arranged on the middle vertical plate;
the profiling component is fixedly arranged on one side surface of the middle vertical plate, and a second adsorption component is arranged on the profiling component;
the second adsorption component is communicated with the first adsorption component and is matched with the first adsorption component together to adsorb and fix a workpiece on the laser jig.
2. The laser jig of claim 1, wherein the middle riser is of a rectangular parallelepiped structure and has a first surface and a second surface which are arranged oppositely, and the profile modeling component is fixedly arranged on the first surface or the second surface of the middle riser.
3. The laser jig of claim 2, wherein the contour assembly comprises a first contour disposed on the first face of the mid-riser and a second contour disposed on the second face of the mid-riser.
4. The laser jig of claim 3, wherein the first cam comprises a head cam area and a tail cam area that are separated.
5. The laser jig of claim 4, wherein the first adsorption component comprises a first air ventilation component, a second air ventilation component and a third air ventilation component which are arranged on the middle riser and are separated from each other.
6. The laser jig of claim 5, wherein the first air ventilation assembly comprises:
a first air passage provided on the middle riser in a vertical direction of the first face toward the second face;
and the second air channel is arranged on the middle vertical plate along the direction of the first surface facing the second surface and is communicated with the first air channel.
7. The laser jig of claim 6, wherein the second air ventilation assembly comprises:
a third air passage provided on the middle riser in a vertical direction of the first face toward the second face;
and the fourth air passage is arranged on the middle vertical plate along the direction of the first surface facing the second surface and is communicated with the third air passage.
8. The laser jig of claim 7, wherein the third air passage component comprises:
the fifth air passages are arranged on the middle vertical plate along the vertical direction of the first surface facing the second surface, and the number of the fifth air passages is multiple;
the sixth air passage is formed in the middle vertical plate along the longitudinal direction of the middle vertical plate and communicated with the fifth air passages;
and the seventh air passage is arranged on the middle vertical plate along the direction of the second surface facing the first surface and is communicated with the fifth air passage.
9. The laser jig of claim 8, wherein the second adsorption component comprises:
the first air through hole is arranged on the head profiling area and communicated with the first air channel through the second air channel;
the second air through hole is formed in the tail copying area and communicated with the fourth air channel through the third air channel;
and the third air through hole is formed in the second cam and communicated with the seventh air channel.
10. The laser jig of any one of claims 3 to 8, wherein the first profile and the second profile are provided with positioning protrusions on the sides away from each other.
CN202220959069.7U 2022-04-22 2022-04-22 Laser jig Active CN217493111U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220959069.7U CN217493111U (en) 2022-04-22 2022-04-22 Laser jig

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220959069.7U CN217493111U (en) 2022-04-22 2022-04-22 Laser jig

Publications (1)

Publication Number Publication Date
CN217493111U true CN217493111U (en) 2022-09-27

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ID=83350112

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220959069.7U Active CN217493111U (en) 2022-04-22 2022-04-22 Laser jig

Country Status (1)

Country Link
CN (1) CN217493111U (en)

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