Radium carving device for notebook shell processing
Technical Field
The utility model belongs to the technical field of laser engraving processing, and particularly relates to a laser engraving device for processing a notebook shell.
Background
Laser carving is also called laser carving or laser marking, the numerical control technology is used as a basis, laser is used as a processing medium, a processing material is instantaneously melted and gasified under laser carving irradiation to achieve the purpose of processing, the laser carving device is commonly used for processing a notebook shell, the existing laser carving device for processing the notebook shell is disclosed as application number CN202323039532.X, sliding equipment which can be convenient for propping up a tight structure is arranged, the sliding equipment is matched with a cooling unit to use, cooling waiting time is shortened, safety is improved, a limiting mechanism is used, falling and scalding risks caused by excessive displacement are avoided, and heat dissipation efficiency can be improved.
However, when in actual use, the radium carving device in the prior art can not realize continuous automatic processing in the course of working, after radium carving finishes and dispels the heat, need dismantle the sliding seat from the sliding seat and make the sliding seat reset to the notebook casing, can carry out next step work, the operation is loaded down with trivial details, and is inefficiency, be inconvenient for realizing mass production processing, and open structure, the smoke and dust that produces in the radium carving in-process, long-term suction can cause harm to the human body, and be unfavorable for keeping the environment, for this reason, we propose a radium carving device for notebook casing processing to solve above-mentioned problem.
Disclosure of utility model
Aiming at the situation, in order to overcome the defects of the prior art, the utility model provides the laser carving device for processing the notebook shell, which effectively solves the problems that the existing laser carving device for processing the notebook shell is complex in disassembly and assembly steps and can not realize continuous automatic processing, and solves the problems that smoke dust generated by laser carving causes harm to human bodies and the environment due to an open structure.
The technical scheme includes that the laser carving device for processing the notebook shell comprises a workbench, guide side plates and bottom guard plates, wherein the guide side plates are fixed on two sides of the upper end of the workbench, the bottom guard plates are fixed at the bottom of the middle of the workbench, a rotating mechanism is arranged on the bottom guard plates, an electric push rod is arranged on the rotating mechanism, a lifting table is arranged at the output end of the electric push rod and is parallel to the workbench, a clamping and fixing mechanism is arranged on the electric push rod, a support is arranged on the guide side plates and is arranged above the workbench, and dust removing mechanisms are arranged on the bottom guard plates and the support.
As this scheme improvement, the one end of workstation is fixed with the side guard plate, the both ends of direction curb plate rotate and are connected with the conveying gyro wheel, be equipped with the conveyer belt on the conveying gyro wheel, and be sliding connection between the upper and lower both ends of the inboard and the direction curb plate of conveyer belt, be equipped with two output motor in the side guard plate, and the output shaft and the conveying gyro wheel of two output motor are connected.
As this scheme improvement, slewing mechanism is including rotating base, driving motor, driving gear and driven gear, it rotates the bottom of being connected in the backplate to rotate the base, driving motor locates the bottom of backplate and locates one side of rotating the base, driving gear locates on driving motor's the output shaft, driven gear is fixed in the top of rotating the base and meshes with the driving gear, electric putter perpendicular to rotate the centre of base upper end and run through the driving gear.
As this scheme improvement, press from both sides tight fixed establishment and include clamping lever, fixed splint and connecting rod, the clamping lever rotates to be connected on the electricity push rod lateral wall, fixed splint are fixed in the one end of clamping lever activity and locate the both sides of lifting platform, connecting rod one end rotates to be connected on the lateral wall of electricity push rod output, the other end of connecting rod rotates to be connected on the clamping lever inner wall.
As the improvement of this scheme, dust removing mechanism includes dust cage, dust storage tank, dust conveying pipe, air inlet fan and dust collecting fan, the dust cage is fixed in on the support lateral wall and communicates with the support inboard, the dust storage tank is fixed in on the backplate lateral wall and locates the below of workstation, the dust conveying pipe is connected between dust storage tank and dust cage, the air inlet fan is located on the support lateral wall and is set up with the dust cage symmetry, the dust collecting fan is located in the dust cage.
As the improvement of this scheme, the top of support is equipped with laser case, the top in the support is equipped with linear electric motor, sliding connection has the slip table on the linear electric motor, the bottom of slip table is equipped with laser head, and laser head is connected in laser case.
As the improvement of the scheme, the electric push rod is perpendicular to the workbench, the lifting platform is arranged between the electric push rod and the bracket, and the guide side plate is arranged between the bracket and the workbench.
As this scheme improvement, the backplate is the U type setting, the support is hollow cuboid setting, the direction curb plate is the cuboid setting that both sides are equipped with circular recess, the clamping lever is L type setting.
The beneficial effects obtained by the utility model by adopting the structure are as follows:
1. The lifting table capable of lifting is matched with the conveying belt, so that the notebook shell can be continuously machined, and the direction of the notebook shell can be adjusted by utilizing the rotating mechanism, so that the laser head is convenient for laser machining of the notebook shell, and the problem of error caused by secondary clamping is avoided;
2. Be equipped with closed support, cooperation dust removal mechanism can collect the smoke and dust that produces when laser processing, avoids causing harm to human and environment, and adopts the mode that unilateral was admitted air, can accelerate the circulation of support inside air to guaranteed the quick heat dissipation of notebook casing behind the radium carving, improved the practicality.
Drawings
FIG. 1 is a schematic diagram of an overall structure of a laser engraving apparatus for notebook housing processing according to a first view angle;
FIG. 2 is a cross-sectional view of a laser engraving apparatus for notebook housing processing according to the present utility model;
FIG. 3 is a schematic diagram of an internal structure of a laser engraving device for processing a notebook shell according to the present utility model;
fig. 4 is a schematic diagram of an overall structure of a second view angle of a laser engraving device for processing a notebook shell according to the present utility model.
Wherein, 1, a workbench; 2, a guiding side plate, 3, a bottom guard plate, 4, a rotating mechanism, 5, an electric push rod, 6, a lifting table, 7, a clamping and fixing mechanism, 8, a bracket, 9, a dust removing mechanism, 10, a side guard plate, 11, a conveying roller, 12, a conveying belt, 13, a double-output motor, 14, a rotating base, 15, a driving motor, 16, a driving gear, 17, a driven gear, 18, a clamping rod, 19, a fixed clamping plate, 20, a connecting rod, 21, a dust collecting cover, 22, a dust storage box, 23, a dust conveying pipe, 24, an air inlet fan, 25, a dust collecting fan, 26, a laser box, 27, a linear motor, 28, a sliding table, 29 and a laser head.
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
As shown in fig. 1, fig. 2, fig. 3 and fig. 4, the laser carving device for notebook computer shell processing provided by the utility model comprises a workbench 1, a guide side plate 2 and a bottom guard plate 3, wherein the guide side plate 2 is fixed on two sides of the upper end of the workbench 1, the bottom guard plate 3 is fixed on the bottom of the middle of the workbench 1, a rotating mechanism 4 is arranged on the bottom guard plate 3, an electric push rod 5 is arranged on the rotating mechanism 4, the output end of the electric push rod 5 is provided with a lifting table 6, the lifting table 6 and the workbench 1 are arranged in parallel, the electric push rod 5 is provided with a clamping and fixing mechanism 7, the guide side plate 2 is provided with a bracket 8, the bracket 8 is arranged above the workbench 1, the bottom guard plate 3 and the bracket 8 are provided with a dust removing mechanism 9, one end of the workbench 1 is fixedly provided with a side guard plate 10, two ends of the guide side plate 2 are rotatably connected with a conveying roller 11, the inner side of the conveying belt 12 is in sliding connection with the upper end and lower end of the guide side plate 2, the inner side of the conveying belt 12 is provided with a motor, and the output shaft 13 of the side guard plate is connected with the double output shafts 13.
In order to enable the notebook shell to rotate and facilitate processing, the rotating mechanism 4 comprises a rotating base 14, a driving motor 15, a driving gear 16 and a driven gear 17, wherein the rotating base 14 is rotationally connected to the bottom in the bottom guard plate 3, the driving motor 15 is arranged at the bottom of the bottom guard plate 3 and at one side of the rotating base 14, the driving gear 16 is arranged on an output shaft of the driving motor 15, the driven gear 17 is fixed at the top of the rotating base 14 and meshed with the driving gear 16, and the electric push rod 5 is vertically fixed in the middle of the upper end of the rotating base 14 and penetrates through the driving gear 16.
In order to fix the notebook shell, the clamping and fixing mechanism 7 comprises a clamping rod 18, a fixing clamping plate 19 and a connecting rod 20, wherein the clamping rod 18 is rotationally connected to the side wall of the electric push rod 5, the fixing clamping plate 19 is fixed to one movable end of the clamping rod 18 and is arranged on two sides of the lifting table 6, one end of the connecting rod 20 is rotationally connected to the side wall of the output end of the electric push rod 5, and the other end of the connecting rod 20 is rotationally connected to the inner wall of the clamping rod 18.
In order to collect the smoke and dust that produces in the radium carving course of working, dust removing mechanism 9 includes dust collecting hood 21, dust storage box 22, dust conveying pipe 23, air inlet fan 24 and dust absorption fan 25, dust collecting hood 21 is fixed in on the support 8 lateral wall and communicates with the support 8 inboard, dust storage box 22 is fixed in on the bottom guard plate 3 lateral wall and locates the below of workstation 1, dust conveying pipe 23 connects between dust storage box 22 and dust collecting hood 21, air inlet fan 24 locates on the support 8 lateral wall and sets up with dust collecting hood 21 symmetry, dust absorption fan 25 locates in the dust collecting hood 21.
As shown in fig. 1 and 3, a laser box 26 is arranged at the top of the bracket 8, a linear motor 27 is arranged at the top in the bracket 8, a sliding table 28 is slidably connected on the linear motor 27, a laser head 29 is arranged at the bottom of the sliding table 28, and the laser head 29 is connected with the laser box 26.
As shown in fig. 2, 3 and 4, the electric push rod 5 is perpendicular to the workbench 1, the lifting table 6 is arranged between the electric push rod 5 and the support 8, the guide side plate 2 is arranged between the support 8 and the workbench 1, the bottom guard plate 3 is in a U-shaped configuration, the support 8 is in a hollow cuboid configuration, the guide side plate 2 is in a cuboid configuration with circular grooves on two sides, and the clamping rods 18 are in an L-shaped configuration.
During specific use, the conveying roller 11 is driven to rotate through the double-output motor 13, the conveying belt 12 on the conveying roller is enabled to rotate under the support of the guide side plate 2, so that the notebook shell is conveyed to the other side from one side of the support 8, the notebook shell arranged on the conveying belt 12 is enabled to be stretched upwards when being placed down by the laser head 29 in the support 8, the lifting table 6 is enabled to lift up the notebook shell, meanwhile, the connecting rod 20 pulls the clamping rod 18 to rotate towards one side of the middle lifting table 6 along with the lifting of the output end of the electric push rod 5, after the fixing clamp plate 19 at the upper end of the clamping rod 18 moves to the limit position, the notebook shell on the lifting table 6 is clamped, the laser box 26 can be opened to carry out laser carving processing on the notebook shell by the laser head 29, in the processing process, the dust suction fan 25 and the air inlet fan 24 are enabled to send outside air into the support 8, the dust suction dust conveying pipe 23 generated by the processing is enabled to be sent into the dust box 22 to be stored by the dust suction fan 25 on one side of the dust collecting cover 21, meanwhile, the laser shell is enabled to move up by the air in the support 8, the lifting motor is enabled to move the lifting gear 16 to be driven by the laser shell, the laser shell is enabled to rotate, the notebook shell can be driven by the driving gear 16 to rotate, and the notebook shell is enabled to be driven to rotate, and the notebook shell can be driven to rotate to be driven by the driving gear 16 to rotate to the notebook shell to be completely when the notebook shell is driven to be driven by the driving device to rotate 16, and the notebook shell is enabled to rotate to be driven by the driving device to be driven to be 16 to rotate to the notebook shell to be completely to be used to a 16.
The utility model and its embodiments have been described above with no limitation, and the actual construction is not limited to the embodiments of the utility model as shown in the drawings. In summary, if one of ordinary skill in the art is informed by this disclosure, a structural manner and an embodiment similar to the technical solution should not be creatively devised without departing from the gist of the present utility model.