CN212122083U - Rotatory high accuracy radium carving machine of bull multiaspect - Google Patents

Rotatory high accuracy radium carving machine of bull multiaspect Download PDF

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CN212122083U
CN212122083U CN202020465325.8U CN202020465325U CN212122083U CN 212122083 U CN212122083 U CN 212122083U CN 202020465325 U CN202020465325 U CN 202020465325U CN 212122083 U CN212122083 U CN 212122083U
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hole
axis
laser
axle
mounting plate
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蒋红兵
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Guangde Zhuchang Electronic Technology Co ltd
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Guangde Zhuchang Electronic Technology Co ltd
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Abstract

The utility model belongs to the technical field of radium-shine sculpture equipment, especially a rotatory high accuracy radium carving machine of bull multiaspect, include: the rack, the rack is the square body, the top of rack is equipped with a cross through-hole, the cross through-hole divide into X axle through-hole and Y axle through-hole, each both ends of X axle through-hole are equipped with a first sculpture mechanism, be equipped with the tool board on the Y axle through-hole, the one end of Y axle through-hole still is equipped with second sculpture mechanism. The utility model has the advantages that: compare traditional technology and reduce the operating manpower, a equipment is carved trilaterally simultaneously, increases the vision to the position compensation function to can not lead to laser sculpture to produce the offset when guaranteeing to heavily work.

Description

Rotatory high accuracy radium carving machine of bull multiaspect
Technical Field
The utility model belongs to the technical field of radium-shine sculpture equipment, especially a rotatory high accuracy radium carving machine of bull multiaspect.
Background
The laser engraving is to focus the laser emitted from the laser into a laser beam with high power density through an optical path system. The laser beam irradiates the surface of the workpiece to make the workpiece reach a melting point or a boiling point, and simultaneously, the high-pressure gas coaxial with the laser beam blows away the molten or gasified metal. And finally, the material is cut along with the movement of the relative position of the light beam and the workpiece, so that the cutting purpose is achieved. The laser engraving machine can improve the engraving efficiency, so that the surface of an engraved position is smooth and mellow, the temperature of the engraved non-metallic material is rapidly reduced, and the deformation and the internal stress of an engraved object are reduced; can be widely used in the field of fine carving of various non-metallic materials.
Simultaneously, domestic widely used radium-shine engraver is single-end radium-shine engraver, and this kind of radium-shine engraver is efficient at the end, and the producer need purchase a large amount of radium-shine engravers and just can satisfy the processing demand, and in order to solve this technological problem, double-end radium-shine engraver has been made, and it sets up two crossbeams in the frame, all is equipped with the guide rail on two crossbeams, respectively is equipped with radium-shine carving head on the guide rail, but uses the installation of double guide rail complicated, and is with. Simultaneously, in order to further improve machining efficiency, double-end laser engraving machine also can not satisfy customer's demand gradually.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome not enough among the prior art, provide a rotatory high accuracy radium carving machine of bull multiaspect.
In order to achieve the above purpose, the utility model adopts the following technical scheme to realize:
the utility model provides a rotatory high accuracy radium carving machine of bull multiaspect, includes: the rack, the rack is the square body, the top of rack is equipped with a cross through-hole, the cross through-hole divide into X axle through-hole and Y axle through-hole, each both ends of X axle through-hole are equipped with a first sculpture mechanism, be equipped with the tool board on the Y axle through-hole, the one end of Y axle through-hole still is equipped with second sculpture mechanism.
In a further technical scheme, the first engraving mechanism comprises a dust-proof block, a first array mirror, a first laser, a mounting plate, a slide rail connecting block, a laser engraving module fixing plate and an adjusting block, the dust-proof block is arranged on the X-axis through hole in a crossing manner, the first array mirror is arranged on the dust-proof block, the first laser is arranged in the cabinet and connected with the bottom of the first array mirror, the mounting plate is arranged on one side of the first laser, the slide rail connecting block is connected with the first laser through the mounting plate, the slide rail is connected with the slide rail connecting block and used for driving the first array mirror to move along the X-axis through hole direction, the laser engraving module fixing plate is connected with the slide rail, the top of the laser engraving module fixing plate is connected with the top inside of the cabinet, the adjusting block is arranged at the bottom of the laser engraving module fixing plate, the adjusting block is further provided with a screw rod, and the height of the first array mirror in the vertical direction can be adjusted.
In a further technical scheme, the tool board includes dustproof frame, motor mounting panel and tool mounting panel, dustproof frame sets up in the Y axle through-hole, the motor mounting panel spanes dustproof frame sets up, the tool mounting panel sets up on the motor mounting panel, the motor mounting panel is kept away from one side of tool mounting panel still is connected with the motor, the motor is used for driving the tool mounting panel is rotatory.
Preferably, the jig plate further comprises a drag chain plate for protecting the cable of the cabinet.
In a further technical scheme, the second engraving mechanism comprises a Z-axis fixing seat, a Z-axis sliding rail, a support, a second laser and a second array mirror, the Z-axis fixing seat is arranged at one end of the Y-axis through hole, the Z-axis sliding rail is arranged above the Z-axis fixing seat, the support is arranged on one side of the Z-axis sliding rail, the support is in reciprocating motion in the vertical direction of the Z-axis sliding rail, the second laser is arranged on the support, and the second array mirror is arranged at the head of the second laser.
In a further technical scheme, the cabinet is further provided with two display supports, the two display supports are respectively arranged at two ends of the cabinet, and the display is placed on the display supports.
In a further technical scheme, dustproof cloth is further arranged on the machine cabinet and is arranged on the X-axis through hole and the Y-axis through hole.
In a further technical scheme, the cabinet is further provided with universal wheels and a fixed support.
Compared with the prior art, the utility model discloses following technological effect has:
the utility model discloses in through designing a rotatory high accuracy radium carving machine of bull multiaspect for laser multiaspect sculpture technology, the vision is counterpointed the function, compares traditional technology and reduces the operating manpower, and a equipment is carved trilaterally simultaneously, increases the vision and to the position compensation function, can not lead to laser sculpture to produce offset in order to guarantee when heavily working.
Other features and advantages of the present invention will be described in detail in the following detailed description.
Drawings
FIG. 1 is a schematic view of the overall structure of a multi-head multi-surface rotary high-precision laser engraving machine provided by the present invention;
FIG. 2 is a schematic view of a top view structure of the multi-head multi-surface rotary high-precision laser etching machine provided by the present invention;
FIG. 3 is a schematic structural view of a first engraving machine mechanism of the multi-head multi-surface rotating high-precision laser engraving machine provided by the present invention;
FIG. 4 is a schematic structural view of a jig plate and a second engraving mechanism of the multi-head multi-surface rotary high-precision laser engraving machine provided by the present invention;
the reference numbers in the figures illustrate: 1-cabinet, 11-X axis through hole, 12-Y axis through hole, 13-display support, 14-dustproof cloth, 15-universal wheel, 16-fixed support, 2-first engraving mechanism, 21-dustproof block, 22-first array mirror, 23-first laser, 24-mounting plate, 25-sliding rail, 26-sliding rail connecting block, 27-radium engraving module fixing plate, 28-adjusting block, 281-screw rod, 3-jig plate, 31-dustproof frame, 32-motor mounting plate, 321-motor, 33-jig mounting plate, 34-drag chain plate, 4-second engraving mechanism, 41-Z axis fixing seat, 42-Z axis sliding rail, 43-support, 44-second laser and 45-second array mirror.
Detailed Description
In order to make the technical means, creation characteristics, achievement purpose and efficacy of the utility model easy to understand and understand, the utility model is further clarified by combining the specific drawings.
It should be noted that, in the present invention, when an element is referred to as being "fixed" to another element, it may be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only and do not denote a unique embodiment.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
As shown in fig. 1-4, the utility model provides a rotatory high accuracy radium carving machine of bull multiaspect, radium carving machine includes: cabinet 1, cabinet 1 is the cuboid, cabinet 1's top is equipped with a cross through-hole, the cross through-hole divide into X axle through-hole 11 and Y axle through-hole 12, each both ends of X axle through-hole 11 are equipped with a first sculpture mechanism 2, be equipped with tool board 3 on the Y axle through-hole 12, the one end of Y axle through-hole 12 still is equipped with second sculpture mechanism 4.
In prior art, domestic widely used radium-shine engraver is single-end radium-shine engraver, and this kind of radium-shine engraver is efficient at the end, and the producer need purchase a large amount of radium-shine engravers just can satisfy the processing demand, and in order to solve this technological problem, double-end radium-shine engraver has been made a public place, and it sets up two crossbeams in the frame, all is equipped with the guide rail on two crossbeams, respectively is equipped with radium-shine carving head on the guide rail, but uses the installation of double guide rail complicated, and is. Simultaneously, in order to further improve machining efficiency, double-end laser engraving machine also can not satisfy customer's demand gradually.
And the utility model discloses in, through designing a rotatory high accuracy radium carving machine of bull multiaspect for laser multiaspect sculpture technology, the vision counterpoints the function, compares traditional technology and reduces the operation manpower, in addition the utility model discloses in, still set up first sculpture mechanism 2 through the both ends at X axle through-hole 11, set up second sculpture mechanism 4 in the one end of Y axle through-hole 12, realized carving trilaterally simultaneously in an equipment, increase vision to position compensation function to can not lead to laser sculpture to produce offset when guaranteeing to heavily.
As a specific embodiment of the present invention, the first engraving mechanism 2 includes a dust-proof block 21, a first lens 22, a first laser 23, a mounting plate 24, a sliding rail 25, a sliding rail connecting block 26, a radium engraving module fixing plate 27 and an adjusting block 28, the dust-proof block 21 is disposed on the X-axis through hole 11, the first lens 22 is disposed on the dust-proof block 21, the first laser 23 is disposed in the cabinet 1 and connected to the bottom of the first lens 22, the mounting plate 24 is disposed on one side of the first laser 23, the sliding rail connecting block 26 is connected to the first laser 23 through the mounting plate 24, the sliding rail 25 is connected to the sliding rail connecting block 26 for driving the first lens 22 to move along the direction of the X-axis through hole 11, the radium engraving module fixing plate 27 is connected to the sliding rail 25, the top of the laser engraving module fixing plate 27 is connected with the top of the interior of the cabinet 1, the adjusting block 28 is arranged at the bottom of the laser engraving module fixing plate 27, and the adjusting block 28 is further provided with a screw 281 which can adjust the height of the first array mirror 22 in the vertical direction.
The utility model discloses in, through the setting of slide rail 25 and adjusting block 28, can make first array mirror 22 remove and remove in the vertical direction along X axle through-hole 11 direction, can adapt to multiple product model.
The utility model discloses in, tool board 3 is including dustproof frame 31, motor mounting panel 32 and tool mounting panel 33, dustproof frame 31 sets up in Y axle through-hole 12, motor mounting panel 32 spanes dustproof frame 31 sets up, tool mounting panel 33 sets up on the motor mounting panel 32, motor mounting panel 32 keeps away from one side of tool mounting panel 33 still is connected with motor 321, motor 321 is used for driving tool mounting panel 33 is rotatory, wherein, preferred, tool board 3 still includes drags link joint 34, is used for the protection the cable of rack 1 is through setting tool mounting panel 33 to rotatable, and the effectual product that has realized can the multiaspect carve simultaneously.
As another specific embodiment of the present invention, the second engraving mechanism 4 includes a Z-axis fixing seat 41, a Z-axis sliding rail 42, a bracket 43, a second laser 44 and a second array mirror 45, the Z-axis fixing seat 41 is disposed at one end of the Y-axis through hole 12, the Z-axis sliding rail 42 is disposed above the Z-axis fixing seat 41, the bracket 43 is disposed at one side of the Z-axis sliding rail 42, the bracket 43 is disposed at the vertical direction of the Z-axis sliding rail 42 for reciprocating motion, the second laser 44 is disposed on the bracket 43, and the second array mirror 45 is disposed at the head of the second laser 44.
As an optimized embodiment of the utility model, still be equipped with display support 14, dustproof cloth 15, universal wheel 16 and fixed bolster 17 on the rack 1, display support 14 is equipped with two, sets up respectively the both ends of rack 1, the display has been put on display support 14, dustproof cloth 15 sets up on X axle through-hole 11 and the Y axle through-hole 12.
Wherein, the reaction that the display can be clear the utility model discloses a working condition to and the sculpture effect of knowing the product in time, dustproof cloth 15 can effectual isolated dust get into inside the machine from X axle through-hole 11 and Y axle through-hole 12, prevent that machine trouble or operating efficiency from descending, universal wheel 16 can make rack 1 very easily move to other places, adaptable multiple environment, fixed bolster 17 can prevent the stability of rack 1 when the operation has been guaranteed in universal wheel 16's slip.
The foregoing shows and describes the general principles, essential features, and features of the invention. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments, and the description of the above embodiments and the description is only illustrative of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the present invention, and these changes and modifications are all within the scope of the present invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides a rotatory high accuracy radium carving machine of bull multiaspect, its characterized in that includes: rack (1), rack (1) is the square body, the top of rack (1) is equipped with a cross through-hole, the cross through-hole divide into X axle through-hole (11) and Y axle through-hole (12), each both ends of X axle through-hole (11) are equipped with a first sculpture mechanism (2), be equipped with tool board (3) on Y axle through-hole (12), the one end of Y axle through-hole (12) still is equipped with the sculpture mechanism of second (4).
2. The multi-head multi-face rotation high-precision laser engraving machine according to claim 1, wherein the first engraving mechanism (2) comprises a dust-proof block (21), a first array mirror (22), a first laser (23), a mounting plate (24), a slide rail (25), a slide rail connecting block (26), a laser engraving module fixing plate (27) and an adjusting block (28), the dust-proof block (21) is arranged across the X-axis through hole (11), the first array mirror (22) is arranged on the dust-proof block (21), the first laser (23) is arranged in the cabinet (1) and connected with the bottom of the first array mirror (22), the mounting plate (24) is arranged on one side of the first laser (23), the slide rail connecting block (26) is connected with the first laser (23) through the mounting plate (24), and the slide rail (25) is connected with the slide rail connecting block (26), the laser engraving machine is used for driving the first array mirror (22) to move along the direction of an X-axis through hole (11), a laser engraving module fixing plate (27) is connected with the sliding rail (25), the top of the laser engraving module fixing plate (27) is connected with the top of the interior of the cabinet (1), an adjusting block (28) is arranged at the bottom of the laser engraving module fixing plate (27), the adjusting block (28) is further provided with a screw rod (281), and the height of the first array mirror (22) in the vertical direction can be adjusted.
3. The multi-head multi-face rotation high-precision laser engraving machine according to claim 1, wherein the jig plate (3) comprises a dust-proof frame (31), a motor mounting plate (32) and a jig mounting plate (33), the dust-proof frame (31) is arranged in the Y-axis through hole (12), the motor mounting plate (32) is arranged across the dust-proof frame (31), the jig mounting plate (33) is arranged on the motor mounting plate (32), a motor (321) is further connected to one side of the motor mounting plate (32) far away from the jig mounting plate (33), and the motor (321) is used for driving the jig mounting plate (33) to rotate.
4. The multi-head multi-face rotating high-precision laser engraving machine according to claim 3, wherein the jig plate (3) further comprises a drag chain plate (34) for protecting cables of the cabinet (1).
5. The multi-head multi-face rotating high-precision laser engraving machine according to claim 1, wherein the second engraving mechanism (4) comprises a Z-axis fixing seat (41), a Z-axis sliding rail (42), a support (43), a second laser (44) and a second array mirror (45), the Z-axis fixing seat (41) is arranged at one end of the Y-axis through hole (12), the Z-axis sliding rail (42) is arranged above the Z-axis fixing seat (41), the support (43) is arranged at one side of the Z-axis sliding rail (42), the support (43) reciprocates in the vertical direction of the Z-axis sliding rail (42), the second laser (44) is arranged on the support (43), and the second array mirror (45) is arranged at the head of the second laser (44).
6. The multi-head multi-surface rotating high-precision laser engraving machine according to claim 1, wherein two display supports (13) are further arranged on the cabinet (1), the two display supports (13) are respectively arranged at two ends of the cabinet, and a display is placed on each display support (13).
7. The multi-head multi-surface rotating high-precision laser engraving machine according to claim 1, wherein a dustproof cloth (14) is further arranged on the cabinet (1), and the dustproof cloth (14) is arranged on the X-axis through hole (11) and the Y-axis through hole (12).
8. The multi-head multi-surface rotating high-precision laser engraving machine according to claim 1, wherein the cabinet (1) is further provided with universal wheels (15) and a fixed support (16).
CN202020465325.8U 2020-04-01 2020-04-01 Rotatory high accuracy radium carving machine of bull multiaspect Active CN212122083U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020465325.8U CN212122083U (en) 2020-04-01 2020-04-01 Rotatory high accuracy radium carving machine of bull multiaspect

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Application Number Priority Date Filing Date Title
CN202020465325.8U CN212122083U (en) 2020-04-01 2020-04-01 Rotatory high accuracy radium carving machine of bull multiaspect

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116252053A (en) * 2023-05-15 2023-06-13 深圳市恒茂科技有限公司 Three-sided outward appearance detection device of laser sculpture

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116252053A (en) * 2023-05-15 2023-06-13 深圳市恒茂科技有限公司 Three-sided outward appearance detection device of laser sculpture

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