CN215280400U - Multilayer stack laser sculpture texture treatment facility - Google Patents
Multilayer stack laser sculpture texture treatment facility Download PDFInfo
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- CN215280400U CN215280400U CN202120856710.XU CN202120856710U CN215280400U CN 215280400 U CN215280400 U CN 215280400U CN 202120856710 U CN202120856710 U CN 202120856710U CN 215280400 U CN215280400 U CN 215280400U
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Abstract
The utility model provides a multilayer stacked laser engraving texture processing device, which comprises a support column, a top plate, a laser engraving machine, a workbench and parts, wherein the support column is provided with two parts which are connected through the top plate, the top plate engraves the surface of the parts through the laser engraving machine installed at the bottom, the part to be engraved is placed on the workbench arranged at the right side below the laser engraving machine, the workbench is installed at the middle part of the left end of the support column at the right end, a limiting plate is installed at the front end of the upper surface of the workbench, the limiting plate and the left end of the workbench are both provided with a material guide part, a heat dissipation part is arranged inside the workbench, the parts can be clamped and fixed through the two clamping plates, the parts are driven to rotate by the rotation of a threaded rod, the parts can be conveniently engraved in multiple directions, the threaded rod gradually moves outwards while rotating, and then the clamping plates are driven to gradually separate from the parts when moving outwards, the automatic separation is realized after the part is carved.
Description
Technical Field
The utility model relates to a laser engraving technical field, more specifically say, relate to a multilayer stack laser sculpture texture treatment facility.
Background
The laser engraving processing is based on the numerical control technology, and laser is a processing medium. The physical denaturation of the processing material due to 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 the laser technology to engrave characters on an object, the characters engraved by the technology have no nicks, the surface of the object is still smooth, and the handwriting can not be abraded;
based on the above description, and retrieve an application number: the utility model patent of CN202020581013.3 relates to a multilayer superimposed laser engraving texture processing device, which comprises a bottom plate (1), a support plate (2) and a top plate (3), wherein the support plate (2) is fixedly arranged on both sides of the top end of the bottom plate (1), and the top plate (3) is arranged on the top of the bottom plate (1); and two ends of the second threaded rod (13) are respectively and rotatably connected with the inner wall of the sliding groove (11) through bearings. The parts of the vehicle with different sizes can be fixed mainly through the movement of the sliding block through retrieval, and after the parts are fixed by the sliding block and the fixed block, the first threaded rod is rotated, so that the parts are further fixed on one side of the first baffle, and the stability of fixing the parts is improved;
the existing laser engraving texture processing equipment has the problems that the temperature of parts is increased in the laser engraving process, the parts are easy to damage, manual blanking is needed, and the like, so that further research needs to be carried out on the basis of the laser engraving texture processing equipment, and the multilayer superposed laser engraving texture processing equipment is provided.
SUMMERY OF THE UTILITY MODEL
The utility model discloses multilayer stack laser sculpture texture treatment facility's purpose and efficiency are reached by following concrete technological means:
the utility model provides a multilayer stack laser sculpture texture treatment facility, including the support column, the roof, laser engraving machine, workstation and part, the support column is provided with two and meets through the roof, the roof is carved to the part surface through the laser engraving machine of bottom installation, the workstation that the below right side of laser engraving machine set up is placed and is needed to carry out glyptic part, the left end middle part at the right-hand member support column is installed to the workstation, and the limiting plate is installed to the upper surface front end of workstation, all be provided with the guide part with the left end of workstation on the limiting plate, and the inside of workstation is provided with the radiating part.
Preferably, the material guide part includes: the guide plate is arranged at the left end of the workbench from the left bottom to the right top, and the upper surface of the guide plate is evenly and tightly attached with a rubber strip.
Preferably, the left end fixedly connected with discharge table of stock guide, and the bottom of discharge table has seted up and has collected the chamber, and the stock guide is installed on the right side of left end support column.
Preferably, the threaded rod is connected in the middle of the limiting plate in a penetrating mode, the two sides of the rear end of the threaded rod are clamped with the guide shafts, and the two guide shafts are clamped with the reset springs.
Preferably, the rear end of the guide shaft is clamped with a bending frame, and the bending frame is arranged in an S-shaped bending mode.
Preferably, the rear end of the bending frame is clamped with a clamping plate, and the guide shafts at the two ends are symmetrically arranged with the clamping plate.
Preferably, the heat dissipation member includes: the coiled pipe, the embedding of coiled pipe sets up in the inside of workstation, and the part has been placed to the upper surface left end of workstation to the part is cylindricly.
Has the advantages that:
(1) the part can be clamped and fixed through the two clamping plates, the part is driven to rotate by the rotation of the threaded rod, the part can be conveniently carved in multiple directions, the threaded rod gradually moves outwards while rotating, the clamping plates are further driven to move outwards to gradually separate from the part, and the part can be automatically separated after being carved;
(2) the parts and the clamping plates are arranged between the workbench and the material guide plate, so that the parts fall onto the inclined material guide plate automatically when falling off after being carved, automatic discharging is facilitated, and meanwhile, the blanking speed of the parts is facilitated to be slowed down by the aid of the rubber strips arranged on the material guide plate;
(3) the coiled pipe is filled with water through the external water pump, so that cold water in the coiled pipe begins to flow circularly along the curved surface in the coiled pipe, the temperature is conducted to the workbench conveniently, the temperature of the part is cooled, and the temperature of the part is prevented from being increased to cause damage, so that the practicability of the equipment is improved.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic top view of the worktable of the present invention;
FIG. 3 is a schematic view of the inner structure of the working table of the present invention;
fig. 4 is a schematic plan view of the limiting plate of the present invention;
in FIGS. 1-4: 1-supporting column, 101-top plate, 102-laser engraving machine, 2-workbench, 201-part, 202-material guide plate, 203-unloading table, 204-collecting chamber, 205-coiled pipe, 3-limiting plate, 301-threaded rod, 302-bending frame, 303-guiding shaft, 304-clamping plate and 305-reset spring.
Detailed Description
As shown in figures 1 to 4:
the utility model provides a multilayer stack laser sculpture texture treatment facility, including support column 1, roof 101, laser engraving machine 102, workstation 2 and part 201, support column 1 is provided with two and meets through roof 101, roof 101 carves part 201 surface through the laser engraving machine 102 of bottom installation, workstation 2 that the below right side of laser engraving machine 102 set up places and needs to carry out glyptic part 201, workstation 2 is installed at the left end middle part of right-hand member support column 1, and workstation 2's upper surface front end installs limiting plate 3, all be provided with the guide part with workstation 2's left end on the limiting plate 3, and workstation 2's inside is provided with the heat dissipation part.
Wherein, the guide part includes: guide plate 202 and threaded rod 301, guide plate 202 is the left end that sets up at workstation 2 on the upper right side down in a left side, and the upper surface of guide plate 202 evenly closely laminates and has the rubber strip, all set up between workstation 2 and guide plate 202 through part 201 and grip block 304, make part 201 when having come off after the sculpture, fall into the guide plate 202 of slope automatically on, be convenient for automatic discharge, and simultaneously, utilize the rubber strip that sets up on the guide plate 202, be convenient for slow down the unloading speed of part 201.
Wherein, the left end fixedly connected with dummy club 203 of stock guide 202, and the collection chamber 204 has been seted up to the bottom of dummy club 203, and stock guide 202 installs on the right side of left end support column 1, is convenient for collect the part 201 after the sculpture through collecting chamber 204.
Wherein, threaded rod 301 through connection is in the middle part of limiting plate 3, and the equal joint in rear end both sides of threaded rod 301 has guiding axle 303 to the joint has reset spring 305 between two guiding axles 303, utilizes reset spring 305's elasticity, can adjust the distance between two grip blocks 304, is convenient for adapt to the size of part 201.
Wherein, the rear end joint of guiding axle 303 has bending frame 302, and bending frame 302 is the setting of buckling of "S" form, bending frame 302 'S rear end joint has grip block 304, and the guiding axle 303 at both ends, bending frame 302 is the symmetry setting with grip block 304, can be fixed with part 201 centre gripping through two grip blocks 304, and utilize threaded rod 301' S rotation to drive part 201 and take place to rotate, be convenient for carry out diversified sculpture to part 201, and in the pivoted, threaded rod 301 moves to the outside gradually, and then drive grip block 304 and move to the outside and break away from part 201 gradually, the realization is automatic after part 201 has carved and breaks away from.
Wherein, the heat dissipation part includes: the coiled pipe 205, the embedding of coiled pipe 205 sets up the inside at workstation 1, and the part 201 has been placed to the upper surface left end of workstation 1 to part 201 is cylindricly, injects water into coiled pipe 205 through external water pump, makes the cold water in the coiled pipe 205 begin the circulation flow along the curved surface in the coiled pipe 205, is convenient for conduct the temperature to workstation 2 on, and then cools down part 201, avoids part 201 temperature to increase and leads to the damage.
The working principle is as follows:
the specific using mode and action of the embodiment are that firstly, the part 201 is placed at the left end of the upper surface of the workbench 2, the two clamping plates 304 can clamp and fix the part 201, then the elastic force of the return spring 305 is utilized to adjust the distance between the two clamping plates 304, so as to be convenient for adapting to the size of the part 201, the laser engraving machine 102 is electrically connected with an external power supply through a lead, the laser engraving machine 102 is started to engrave the part 201 conveniently, then water is injected into the coiled pipe 205 through an external water pump, so that cold water in the coiled pipe 205 starts to circularly flow along the curved surface in the coiled pipe 205, so as to transmit the temperature to the workbench 2, further cool the part 201, avoid damage caused by temperature increase of the part 201, then the rotation of the threaded rod 301 on the limiting plate 3 is utilized, the clamping plates 304 are driven to rotate through the guide shaft 303 and the bending frame 302, further the part 201 is rotated to engrave in multiple directions, and threaded rod 301 is in the pivoted, threaded rod 301 moves to the outside gradually, make grip block 304 move to the outside synchronous motion gradually, thereby make grip block 304 break away from part 201 gradually, realize breaking away from automatically after part 201 has carved, later all set up between workstation 2 and stock guide 202 through part 201 and grip block 304, make part 201 when having fallen off after carving, fall into automatically on the stock guide 202 of slope, and part 201 drops to the collection chamber 204 of discharge table 203 along the inclined plane of stock guide 202 and collects part 201 after the sculpture, be convenient for automatic discharge, the rubber strip that sets up on the stock guide 202 at last, be convenient for slow down the unloading speed of part 201, pass through at last.
Claims (7)
1. The multilayer superposed laser engraving texture processing equipment comprises a support pillar (1), a top plate (101), a laser engraving machine (102), a workbench (2) and parts (201), wherein the support pillar (1) is provided with two parts which are connected through the top plate (101), the top plate (101) engraves the surfaces of the parts (201) through the laser engraving machine (102) arranged at the bottom, and the parts (201) to be engraved are placed on the workbench (2) arranged on the right side below the laser engraving machine (102); workstation (2) are installed at the left end middle part of right-hand member support column (1), and the upper surface front end of workstation (2) installs limiting plate (3), all be provided with the guide part with the left end of workstation (2) on limiting plate (3), and the inside of workstation (2) is provided with the radiating part.
2. The multilayer overlay laser engraved texture processing apparatus of claim 1, wherein: the material guide part comprises: the material guide plate comprises a material guide plate (202) and a threaded rod (301), wherein the material guide plate (202) is arranged at the left end of the workbench (2) in the left-down-right-up mode, and a rubber strip is uniformly and tightly attached to the upper surface of the material guide plate (202).
3. The multilayer overlay laser engraved texture processing apparatus of claim 2, wherein: the left end fixedly connected with discharge table (203) of stock guide (202), and collection chamber (204) have been seted up to the bottom of discharge table (203), the right side at left end support column (1) is installed in stock guide (202).
4. The multilayer overlay laser engraved texture processing apparatus of claim 2, wherein: threaded rod (301) through connection is in the middle part of limiting plate (3), and the equal joint in rear end both sides of threaded rod (301) has guiding axle (303) to the joint has reset spring (305) between two guiding axles (303).
5. The multilayer overlay laser engraved texture processing apparatus of claim 4, wherein: the rear end of the guide shaft (303) is connected with a bending frame (302) in a clamping mode, and the bending frame (302) is arranged in an S-shaped bending mode.
6. The multilayer overlay laser engraved texture processing apparatus of claim 5, wherein: the rear end of the bending frame (302) is connected with a clamping plate (304) in a clamping mode, and the guide shafts (303) at the two ends, the bending frame (302) and the clamping plate (304) are symmetrically arranged.
7. The multilayer overlay laser engraved texture processing apparatus of claim 1, wherein: the heat dissipation member includes: the coil pipe (205), coil pipe (205) embedding sets up in the inside of workstation (2), and part (201) have been placed to the upper surface left end of workstation (2) to part (201) are cylindricly.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120856710.XU CN215280400U (en) | 2021-04-23 | 2021-04-23 | Multilayer stack laser sculpture texture treatment facility |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120856710.XU CN215280400U (en) | 2021-04-23 | 2021-04-23 | Multilayer stack laser sculpture texture treatment facility |
Publications (1)
Publication Number | Publication Date |
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CN215280400U true CN215280400U (en) | 2021-12-24 |
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Family Applications (1)
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CN202120856710.XU Active CN215280400U (en) | 2021-04-23 | 2021-04-23 | Multilayer stack laser sculpture texture treatment facility |
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CN (1) | CN215280400U (en) |
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2021
- 2021-04-23 CN CN202120856710.XU patent/CN215280400U/en active Active
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