CN211708387U - For CO2Purifier of laser marking machine - Google Patents

For CO2Purifier of laser marking machine Download PDF

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Publication number
CN211708387U
CN211708387U CN202020083697.4U CN202020083697U CN211708387U CN 211708387 U CN211708387 U CN 211708387U CN 202020083697 U CN202020083697 U CN 202020083697U CN 211708387 U CN211708387 U CN 211708387U
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marking machine
cavity
dust
box
laser
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CN202020083697.4U
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Chinese (zh)
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王洪君
王景槐
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Tianjin Taide Zhenghong Laser Technology Service Co Ltd
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Tianjin Taide Zhenghong Laser Technology Service Co Ltd
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Abstract

The utility model provides a device for treating CO2Purifier of laser marking machine, including marking machine body, a support, the workstation of setting on marking machine body, fix the controller on marking machine body, the display screen that links to each other with the controller, through the fixed laser equipment body of support, and the printer head that links to each other with the laser equipment body, be provided with the dust on the marking machine body and adsorb box, hair-dryer and suction fan, the dust adsorbs the box inside cavity of having seted up, mainly be provided with the tubular metal resonator in the cavity, the magnetic stripe, wire and dust absorption cloth. The true bookWith novel mutually cooperating and using through dust absorption box, hair-dryer and suction fan and in time carrying out CO2The laser marking machine can effectively reduce the influence of dust on the laser accuracy, improve the marking success rate and simultaneously ensure that the working personnel work in a clean working environment.

Description

For CO2Purifier of laser marking machine
Technical Field
The utility model is used for CO2Purifier of laser marking machine belongs to purification dust technical field.
Background
With the development of industrialization, enterprises have stronger and stronger protection awareness of property rights of their products, and more enterprises will put marks on their products. Aiming at different surface materials of products, the marking machine can be divided into a semiconductor laser marking machine and CO2Laser marking machine, YAG laser marking machine, fiber laser marking machine and ultraviolet laser marking machine, because CO2The laser marking machine can be suitable for products in industries of food, medicine, wine, electronic components, building materials and the like, so that CO is used for marking the products2Laser marking machines have become an indispensable device for many industries.
CO2The laser marking machine is CO2Laser with CO2Gas as medium, CO2And other auxiliary gases are filled into the discharge tube to apply high voltage on the electrode, glow discharge is generated in the discharge tube, so that the gas releases laser with the wavelength of 10.64um, and after the laser energy is amplified and focused, under the control of a computer and a laser marking control card, the marking of images, characters, numbers and lines is carried out on the workpiece.
Existing CO2The laser marking machine has certain defects, for example, a lot of smoke can be generated in nonmetal products such as leather, plastics and the like, the smoke gradually rises along with marking, on one hand, the accuracy of laser marking can be influenced, the marking pattern can be slightly changed or the marking position can be deviated, and on the other hand, the smoke can influence the body health of workers; therefore, it is necessary to remove these fumes in a timely manner.
Disclosure of Invention
Aiming at the defects existing in the prior art, the utility model aims at providing a device for CO2A purification device of a laser marking machine is used for solving the problems in the background technology.
In order to achieve the above object, the present invention is achieved by the following technical solutions, including:
for CO2The purifying device of the laser marking machine comprises a marking machine body, a bracket, a workbench arranged on the marking machine body, a controller fixed on the marking machine body and a purifying device connected with the controllerThe display screen that links to each other, through the fixed laser equipment body of support, and the printer head that links to each other with the laser equipment body, it adsorbs the box to be provided with the dust on the marking machine body, the cavity has been seted up to the inside dust adsorption box, a hollow tubular metal resonator of fixed connection in the cavity, a swing joint magnetic stripe in the tubular metal resonator, the magnetic stripe is along tubular metal resonator axial motion, the tubular metal resonator is global around having the wire, the both ends of wire are connected to the both ends of same piece dust absorption cloth respectively, one side of box orientation workstation is adsorbed to the dust absorption cloth is fixed.
By adopting the scheme, CO is started when a product is marked2Laser marking machine, through the controller input needs the mark pattern of beating, the pattern shows in the display, place the product on the workstation, start, laser equipment body sends laser, beat mark through the printer head, produce smog on the product this moment, make the magnetic stripe along magnetic stripe axial direction reciprocating motion on the horizontal direction, because the tubular metal resonator is fixed motionless, wire cutting magnetic induction line produces the electric current, make the uneven dust that adsorbs of electric charge distribution on the dust absorption cloth, play the effect of timely clean dust.
Preferably, be equipped with the gear in the dust adsorbs the box cavity, dust adsorbs box outside fixed mounting has the motor, and the output shaft of motor pierces through dust and adsorbs box outer wall and gear connection, and the gear top is equipped with the rack that meshes mutually with it, and spring fixed connection is passed through on the dust adsorbs box cavity inner wall to the one end of rack, and the other end of rack is connected with the one end of magnetic stripe, and the other end of magnetic stripe passes through spring coupling on the dust adsorbs box cavity inner wall.
By adopting the scheme, the motor is started to drive the gear to rotate positively and negatively, the gear further drives the rack to perform reciprocating motion, and the magnetic stripe performs reciprocating motion along the axial direction of the magnetic stripe in the horizontal direction under the matching of the rack and the spring, so that the stability of the dust adsorption box is ensured, and the adsorption strength of the dust adsorption box can also be ensured.
Preferably, a spring clamp made of an insulating material is arranged in the cavity of the dust adsorption box, and the metal pipe is fixed in the dust adsorption box through the spring clamp.
Preferably, the dust absorption box cavity comprises an integrally arranged hook which is used for fixing dust absorption cloth.
Preferably, blowers are mounted on both sides of the printer head.
By adopting the scheme, the blower can blow away smoke, so that the smoke is ensured to be far away from the printer head, and the influence of the smoke on the accuracy of the laser emitted is reduced.
Preferably, the workbench comprises a table board, a plurality of filter holes are distributed on the table board, and the workbench is a box body which is detachably mounted on the marking machine body and provided with a cavity.
By adopting the scheme, solid smoke impurities generated in the use process of the marking machine can fall off from the filter holes and are collected in the cavity of the workbench, so that the cleanness and the smoothness of the workbench surface are ensured.
Preferably, the workbench comprises a movable plate, a limit groove is formed in the side wall of the inner side of the workbench, which is in contact with the movable plate, bumps are integrally arranged on two sides of the movable plate, stepped grooves are horizontally formed in the upper ends of the rest side walls of the workbench downwards, and the table top is placed on the grooves.
By adopting the scheme, when the workbench is disassembled, the workbench surface is taken down firstly, and then the movable plate is upwards pulled out along the direction of the limiting groove, so that workers can clean the cavity of the workbench conveniently.
Preferably, four suction fans are installed inside the cavity of the workbench, and the marking machine body is correspondingly provided with a ventilation hole communicated with the ventilation hole.
By adopting the scheme, the suction fan can be started when the marking machine works, and is matched with the blower for use, so that dust is sucked into the cavity in time in the working process of the marking machine, and the influence of the dust on the laser precision is reduced.
Preferably, a plate frame is fixedly arranged in the cavity of the workbench, and the filter layer is fixed above the suction fan through the plate frame.
By adopting the scheme, the filter layer can prevent partial dust from entering the suction fan, and the service life of the suction fan can be effectively prolonged.
Preferably, the workbench is integrally provided with a handle.
By adopting the scheme, the handle is convenient for the working personnel to take the workbench.
The invention has the beneficial effects that:
(1) the utility model discloses a dust adsorbs box, hair-dryer and suction fan to use mutually to carry out CO2The laser marking machine can effectively reduce the influence of dust on the laser accuracy and improve the success rate of marking.
(2) The detachable workstation can let the staff in time clear up the dust that drops, guarantees operational environment's health.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 shows CO2The overall schematic diagram of the laser marking machine;
FIG. 2 is a schematic view of a dust adsorption cassette;
FIG. 3 is an exploded view of the table;
FIG. 4 is a cross-sectional view of the table;
fig. 5 is an enlarged view of a.
In the figure: 1 marking machine body, 11 ventilation holes, 2 workstations, 21 mesa, 22 fly leaf, 221 lug, 23 spacing groove, 24 recesses, 25 suction fan, 26 sheet frames, 27 handles, 3 controller, 4 display screens, 5 laser equipment bodies, 6 printer heads, 7 dust adsorption box, 71 tubular metal resonator, 72 magnetic stripe, 73 wire, 74 gear, 75 rack, 76 spring clamp, 77 couple, 8 hair-dryers.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the functions of the invention easy to understand, the invention is further explained by combining the specific embodiments.
Example 1
As shown in FIG. 1, a method for CO2Purifier of laser marking machine, including marking machine body 1, support, set up workstation 2 on marking machine body 1, fix controller 3 on marking machine body 1, the display screen 4 that links to each other with controller 3, through the fixed laser equipment body 5 of support and the printer head 6 that links to each other with laser equipment body 5.
Product of markingWhen in product, CO is started2The laser marking machine inputs a pattern to be marked through the controller 3, the pattern is displayed in the display, a product is placed on the workbench 2 and started, the laser equipment body 5 emits laser, and marking is carried out through the marking machine head 6.
With reference to fig. 1 and 2, the marking machine body 1 is provided with a dust adsorption box 7, a cavity is formed inside the dust adsorption box 7, a hollow metal tube 71, a spring clamp 76 and a magnetic strip 72 which are made of insulating materials are arranged in the cavity, the metal tube 71 is fixed in the dust adsorption box 7 through the spring clamp 76, a gear 74 is further arranged in the cavity, a motor is fixedly installed outside the dust adsorption box 7, an output shaft of the motor penetrates through the outer wall of the dust adsorption box 7 and is connected with the gear 74, a rack 75 meshed with the gear 74 is arranged above the gear 74, one end of the rack 75 is fixedly connected to the inner wall of the cavity of the dust adsorption box 7 through the spring, the other end of the rack is connected with one end of the magnetic strip 72, the other end of the magnetic strip 72 is connected to the inner wall of the cavity of the dust adsorption box 7 through the spring, the magnetic strip 72 is located in the, the two ends of the wire 73 are respectively connected to the two ends of the same piece of dust absorption cloth, the cavity comprises an integrally arranged hook 77, and the hook 77 fixes the dust absorption cloth on one side of the dust absorption box 7 facing the workbench 2.
The marking machine during operation starts the motor, and the motor drives gear 74 and just reverses, and gear 74 further drives rack 75 and carries out reciprocating motion, and magnetic stripe 72 is along magnetic stripe 72 axial direction reciprocating motion on the horizontal direction under the cooperation of rack 75 and spring, and tubular metal resonator 71 is fixed motionless, and wire 73 cuts magnetic induction line and produces the electric current, and the uneven dust that adsorbs of the electric charge distribution on the dust absorption cloth plays the effect of in time cleaning and purifying the dust.
As shown in fig. 1, blowers 8 are installed on both sides of the printer head 6.
As shown in fig. 1, the workbench 2 is a box body with a cavity and detachably mounted on the marking machine body 1, and with reference to fig. 3, 4 and 5, the workbench 2 includes a movable plate 22, a limiting groove 23 is formed on the side wall of the inner side of the workbench 2 contacting with the movable plate 22, bumps 221 are integrally formed on both sides of the movable plate 22, in addition, a strip-shaped limiting block can be additionally arranged at the bottom of the movable plate 22, and a positioning groove matched with the upper surface of the bottom end of the workbench 2 is formed at the corresponding position; the notch cuttype recess 24 is equipped with downwards to the level in 2 all the other lateral walls upper ends of workstation, fly leaf 22 height and the 24 bottom surface levels of recess, workstation 2 includes mesa 21, a plurality of filtration pores of having arranged on the mesa 21, mesa 21 is taken and is put on recess 24, 2 cavity internally mounted of workstation have four suction fans 25, ventilation hole 11 intercommunication with it has been seted up correspondingly on the marking machine body 1, 2 cavity internal fixed mounting of workstation have the sheet frame 26, the filter layer passes through the sheet frame 26 to be fixed in suction fan 25 top, an organic whole is provided with handle 27 on the workstation 2.
By adopting the scheme, the suction fan 25 is started when the marking machine works, dust is sucked into the cavity through the filter holes, and most of the dust is blocked by the filter layer from entering the suction fan 25; after marking work is finished, the handle 27 is firstly lifted to take the workbench 2 off the marking machine body 1, the table board 21 is taken down, and then the movable plate 22 is upwards pulled out along the direction of the limiting groove 23 to clean the cavity, overhaul the suction fan 25 or replace the filter layer.
In summary, the present embodiment mutually cooperates the dust adsorption box 7, the blower 8 and the suction fan 25 for timely CO treatment2The laser marking machine can effectively reduce the influence of dust on the laser accuracy, improve the marking success rate and simultaneously ensure that the working personnel work in a clean working environment.
While there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (10)

1. For CO2The purifying device of the laser marking machine comprises a marking machine body (1), a support, a workbench (2) arranged on the marking machine body (1), a controller (3) fixed on the marking machine body (1), a display screen (4) connected with the controller (3), a laser equipment body (5) fixed through the support, and a printer head (6) connected with the laser equipment body (5), and is characterized in that a dust adsorption box (7) is arranged on the marking machine body (1), a cavity is arranged in the dust adsorption box (7), a hollow metal pipe (71) is fixedly connected in the cavity, a magnetic strip (72) is movably connected in the metal pipe (71), the magnetic strip (72) moves along the metal pipe (71) in the axial direction, a wire (73) is wound on the outer peripheral surface of the metal pipe (71), and two ends of the wire (73) are respectively connected to two ends of the same piece of dust absorption cloth, the dust absorption cloth is fixed on one side of the dust absorption box (7) facing the workbench (2).
2. A process for CO according to claim 12Purifier of laser marking machine, a serial communication port, be equipped with gear (74) in dust absorption box (7) cavity, dust absorption box (7) outside fixed mounting has the motor, the output shaft of motor pierces through dust absorption box (7) outer wall and is connected with gear (74), gear (74) top is equipped with rack (75) with it engaged with, the one end of rack (75) is passed through spring fixed connection on dust absorption box (7) cavity inner wall, the other end of rack (75) is connected with the one end of magnetic stripe (72), the other end of magnetic stripe (72) passes through spring coupling on dust absorption box (7) cavity inner wall.
3. A process for CO according to claim 22The purification device of the laser marking machine is characterized in that a spring clamp (76) made of insulating materials is arranged in a cavity of the dust adsorption box (7), and the metal pipe (71) is fixed on the dust adsorption box through the spring clamp (76)An auxiliary box (7).
4. A process for CO according to claim 32Purifier of laser marking machine, its characterized in that, including integrative couple (77) that sets up in dust absorption box (7) cavity, dust absorption cloth is fixed in couple (77).
5. A process for CO according to claim 12The purifying device of the laser marking machine is characterized in that blowers (8) are arranged on two sides of a printer head (6).
6. A process for CO according to claim 12Purifier of laser marking machine, its characterized in that, workstation (2) include mesa (21), and a plurality of filtration pores of having arranged on mesa (21), workstation (2) set up to the box body that has the cavity of demountable installation on marking machine body (1).
7. A process for CO according to claim 62The purifying device of the laser marking machine is characterized in that the workbench (2) comprises a movable plate (22), a limiting groove (23) is formed in the side wall of the inner side of the workbench (2) which is in contact with the movable plate (22), bumps (221) are integrally arranged on two sides of the movable plate (22), stepped grooves (24) are formed in the upper ends of the rest side walls of the workbench (2) horizontally and downwards, and the table board (21) is placed on the grooves (24).
8. A process for CO according to claim 72The purification device of the laser marking machine is characterized in that four suction fans (25) are arranged inside a cavity of a workbench (2), and a ventilation hole (11) is correspondingly formed in a marking machine body (1) and communicated with the ventilation hole.
9. A process for CO according to claim 82Purifier of laser marking machine, its characterized in that, workstation (2) cavity inside fixed mounting has sheet frame (26), and the filter layer passes through sheet frame (26) to be fixed in suction fan (25) top.
10. Root of herbaceous plantA method for CO according to claim 92The purifying device of the laser marking machine is characterized in that a handle (27) is integrally arranged on the workbench (2).
CN202020083697.4U 2020-01-15 2020-01-15 For CO2Purifier of laser marking machine Active CN211708387U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020083697.4U CN211708387U (en) 2020-01-15 2020-01-15 For CO2Purifier of laser marking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020083697.4U CN211708387U (en) 2020-01-15 2020-01-15 For CO2Purifier of laser marking machine

Publications (1)

Publication Number Publication Date
CN211708387U true CN211708387U (en) 2020-10-20

Family

ID=72823738

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020083697.4U Active CN211708387U (en) 2020-01-15 2020-01-15 For CO2Purifier of laser marking machine

Country Status (1)

Country Link
CN (1) CN211708387U (en)

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