Aluminum alloy nonstandard angle cutting numerical control equipment
Technical Field
The invention relates to the technical field of cutting numerical control equipment, in particular to aluminum alloy non-standard angle cutting numerical control equipment.
Background
The aluminum alloy radiating fin is a main part for reducing the temperature of heat of a digital electronic core part, compared with the traditional radiating fin, the traditional radiating fin increases the rationality of the heat radiation of an electronic element plate and the attractiveness of the appearance, compared with the traditional processing mode, the processing difficulty and the processing amount are increased, the requirement of the current novel radiating fin is large, the processing technology is single (single-saw-blade woodworking machine processing and multi-station repeated positioning processing), the efficiency is low, the processing environment has great potential safety hazards, in order to improve the safety and the single processing technology and improve the processing efficiency, the processing equipment which has high processing efficiency, multiple functions and safe production is urgently needed, the existing processing equipment has defects and defects, the current processing equipment mainly adopts woodworking machine processing, the equipment for processing angles for multiple times needs repeated positioning and single angle processing, and the great potential safety hazards (saw blades rotate all the time, easily cause the injury to the human body), use numerical control equipment processing, the process velocity is slow, and is efficient, and the cost is too high, and multi-angle manufacturing procedure is loaded down with trivial details, and board quantity is many, occupies the limited workshop place of producer. The operation and processing personnel are more, and the waste of human resources is caused. And the processing protection is not easy, thus causing the environmental pollution of the workshop.
Disclosure of Invention
The invention aims to solve the defects in the prior art, and provides aluminum alloy non-standard angle cutting numerical control equipment.
In order to achieve the purpose, the invention adopts the following technical scheme: an aluminum alloy nonstandard angle cutting numerical control device comprises an oil mist collector, a totally closed protective hood, a casting machine body and a filter water tank, wherein the totally closed protective hood is installed above the casting machine body, the output end of the oil mist collector is installed above the totally closed protective hood, a safety sliding door and a numerical control display are respectively installed on the side wall of the totally closed protective hood, a Z-axis servo module, an A-axis servo module, a module sliding guide rail and a module fixing support are respectively installed on the upper surface of the casting machine body, an X-axis servo module, a C-axis angle rotation servo platform and a D-plane rotation servo platform are installed above the module sliding guide rail, a B-axis servo module, a high-speed saw blade motor are respectively installed on the outer surface of the module fixing support, a Y-axis servo module and a workpiece fixture fixing platform are respectively installed on the outer surface of the C-axis angle rotation servo platform, the lead screw is installed to Z axle servo module's output, the cutting tool is installed through the screwed pipe in the outside of lead screw, the module protection casing is installed to the lateral wall of A axle servo module.
In order to convey waste water generated in the production process to the interior of the filtering water tank, the invention is improved in that heat dissipation holes are formed in the side walls of the totally-enclosed protective hood and the safety sliding door, and the interior of the casting machine body is communicated with the filtering water tank through a water outlet pipe.
In order to drive the D plane rotation servo platform to move, the invention is improved in that the D plane rotation servo platform is connected with a module sliding guide rail in a sliding manner, and the output end of the high-speed saw blade motor is provided with a cutting blade through a motor shaft.
In order to drive the cutting tool to move through the screw rod, the invention improves the structure that the threaded pipe fixedly mounted with the cutting tool is provided with an internal threaded hole, and the screw rod is meshed with the inner wall of the threaded pipe.
In order to increase the bearing capacity of the casting machine body, the invention improves the casting machine body made of high-strength alloy, and the outer surface of the oil mist collector is communicated with an air outlet pipe.
In order to conveniently clamp a workpiece to be machined, the invention has the improvement that the workpiece clamp fixing platform is arranged above the D plane rotating servo platform, and the outer surface of the module fixing support is provided with an auxiliary groove.
Compared with the prior art, the invention has the advantages and positive effects that,
in the invention, by arranging an oil mist collector, a totally-enclosed protective hood, a safety sliding door, a casting machine body, a numerical control display, a filter water tank, an X-axis servo module, a Y-axis servo module, a Z-axis servo module, an A-axis servo module, a B-axis servo module, a C-axis angular rotation servo platform, a D-plane rotation servo platform, a workpiece clamp fixing platform, a lead screw, a module sliding guide rail, a high-speed saw blade motor, a cutting tool, a module fixing support and a module protective hood, the one-time positioning and multi-angle processing can be realized, the closed processing in the equipment can effectively improve the workshop environment and the potential safety hazard and avoid the propagation of the potential safety hazard, the linear cutting processing tool and the linear cutting process are adopted to change the numerical control point processing technology, and the processing of a multi-angle multi-axis cutter, a multi-thickness cutter and a multi-saw blade is simultaneously used, so that the one-time forming of complicated size of a product can be completed, the processing speed is fast, efficient, and cost reduction uses multi-angle rotating platform, once fixes a position and accomplishes all processes and processes processing, and the processing technology is concentrated and is taken up the place for a short time, and convenient succinct many equipment of simultaneous operation during operating personnel operation, alone multimachine reduces manpower resources waste, and the mould demand is few when processing work piece appearance conversion, and the product machining dimension adopts numerical control system to set for, and the adjustment is convenient, simple and direct, high-efficient.
Drawings
FIG. 1 is a schematic perspective view of an aluminum alloy nonstandard angle cutting numerical control device according to the present invention;
FIG. 2 is a schematic view of a partial three-dimensional structure of an aluminum alloy nonstandard angle cutting numerical control device according to the present invention;
FIG. 3 is a partial perspective top view of an aluminum alloy nonstandard angle cutting numerical control device according to the present invention;
fig. 4 is an enlarged view of the invention at a in fig. 3.
Illustration of the drawings:
1. an oil mist collector; 2. a totally-enclosed protective hood; 3. a safety sliding door; 4. casting a machine body; 5. a numerical control display; 6. a filtering water tank; 7. an X-axis servo module; 8. a Y-axis servo module; 9. a Z-axis servo module; 10. an A-axis servo module; 11. a B-axis servo module; 12. rotating the servo platform by the angle of the C axis; 13. d, rotating the servo platform in a plane; 14. a workpiece clamp fixing platform; 15. a screw rod; 16. a module sliding guide rail; 17. a high speed saw blade motor; 18. a cutting tool; 19. a module fixing bracket; 20. the module protection casing.
Detailed Description
In order that the above objects, features and advantages of the present invention can be more clearly understood, the present invention will be further described with reference to the accompanying drawings and examples. It should be noted that the embodiments and features of the embodiments of the present application may be combined with each other without conflict.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described herein, and thus the present invention is not limited to the specific embodiments of the present disclosure.
Referring to fig. 1-4, the present invention provides a technical solution: an aluminum alloy non-standard angle cutting numerical control device comprises an oil mist collector 1, a fully-closed protective hood 2, a casting machine body 4 and a filter water tank 6, wherein the fully-closed protective hood 2 is installed above the casting machine body 4, the output end of the oil mist collector 1 is installed above the fully-closed protective hood 2, the side wall of the fully-closed protective hood 2 is respectively provided with a safety sliding door 3 and a numerical control display 5, the upper surface of the casting machine body 4 is respectively provided with a Z-axis servo module 9, an A-axis servo module 10, a module sliding guide rail 16 and a module fixing support 19, an X-axis servo module 7, a C-axis angle rotation servo platform 12 and a D-plane rotation servo platform 13 are installed above the module sliding guide rail 16, the outer surface of the module fixing support 19 is respectively provided with a B-axis servo module 11, a high-speed saw blade motor 17, the outer surface of the C-axis angle rotation servo platform 12 is respectively provided with a Y-axis servo module 8 and a workpiece clamp fixing platform 14, the output end of the Z-axis servo module 9 is provided with a lead screw 15, the outside of the lead screw 15 is provided with a cutting tool 18 through a threaded pipe, the side wall of the A-axis servo module 10 is provided with a module protective cover 20, a workpiece clamp fixing platform 14 is arranged above the D-plane rotary servo platform 13, the outer surface of a module fixing support 19 is provided with an auxiliary groove, the D-plane rotary servo platform 13 is in sliding connection with a module sliding guide rail 16, the output end of a high-speed saw blade motor 17 is provided with a cutting piece through a motor shaft, and the oil mist collector 1, a totally-enclosed protective cover 2, a safe sliding door 3, a casting machine body 4, a numerical control display 5, a filter water tank 6, an X-axis servo module 7, a Y-axis servo module 8, the Z-axis servo module 9, the A-axis servo module 10, a B-axis servo module 11, a C-axis angular rotary servo platform 12, the D-plane rotary servo platform 13 and a workpiece clamp fixing platform 14 are arranged, The lead screw 15, the module sliding guide rail 16, the high-speed saw blade motor 17, the cutting tool 18, the module fixing support 19 and the module protective cover 20 can have one-time positioning and multi-angle processing, and are closed processing in equipment, the workshop environment and the potential safety hazard can be effectively improved, the potential safety hazard can be prevented from being propagated, a linear cutting processing tool and a process are adopted, a numerical control point processing process is changed, a multi-shaft multi-angle and thickness tool and a multi-saw blade are simultaneously used for processing, the one-time forming of complicated sizes of products can be completed, the processing speed is high, the efficiency is high, the cost is reduced, a multi-angle rotating platform is used, all the process processing is completed by one-time positioning, the processing process is centralized, the occupied space is small, an operator can conveniently and simply operate a plurality of equipment simultaneously, one person can operate a plurality of machines, the waste of human resources is reduced, the mold demand is small when the appearance of a processed workpiece is changed, the machining size of the product is set by a numerical control system, the adjustment is convenient, simple and convenient, the efficiency is high, the feeding and discharging of the machined product are completed by the opening and closing of a safety sliding door 3 during machining, the door is opened during feeding and discharging, the machining is closed during machining, machining programs are compiled and changed by a numerical control display 5, the automatic machining of the machining process is completed, the totally-enclosed protective hood 2 provides safety protection during machining, an oil mist collector 1 above the totally-enclosed protective hood 2 can prevent environmental pollution, oil mist generated during machining in the totally-enclosed protective hood 2 is extracted and converted, a filter water tank 6 can utilize circulating water and collect machining scraps, a Y-axis servo module 8 provides front and back displacement of the machined product, an X-axis servo module 7 provides left and right displacement of the machined product, a Z-axis servo module 9 provides up-down machining displacement of a cutting tool 18, and an A-axis servo module 10 provides feeding machining allowance of a vertical cutting tool, the B-axis servo module 11 provides machining allowance of multi-saw-blade vertical cutting, the D-plane rotary servo platform 13 provides 360-degree angle positioning of a product in the horizontal direction, the C-axis angle rotary servo platform 12 provides 90-degree angle positioning of a product in the vertical direction, meanwhile, the B-plane rotary servo platform and the C-angle rotary servo platform are matched and set, machining angle positioning of a workpiece clamp fixing platform 14 is completed, compiling and setting are performed through a numerical control display 5, data transmission through a numerical control system drives the servo modules X.Y, Z, A and B displacement, linkage rotation of the rotary servo modules C.D, raw materials on the workpiece clamp fixing platform 14 are cut through a cutting tool 18 on a high-speed saw blade motor 17 in a running mode, and multi-angle, multi-plane and multi-groove machining procedures of the product are completed.
The heat dissipation holes are formed in the side walls of the fully-closed protective machine cover 2 and the safety sliding door 3, the casting machine body 4 is communicated with the filtering water tank 6 through the water outlet pipe, the heat dissipation holes are formed in the casting machine body, the heat dissipation is carried out by discharging high-temperature air inside the fully-closed protective machine cover 2 conveniently, and the water outlet pipe is arranged in the filtering water tank 6 so as to convey waste water generated by the fully-closed protective machine cover 2.
The screwed pipe that cutting tool 18 was adorned admittedly has the internal thread hole, and lead screw 15 and the inner wall of screwed pipe intermeshing, and the material of casting organism 4 is high strength alloy, and the surface intercommunication of oil mist collector 1 has the outlet duct, and the setting of screwed pipe is in order to drive cutting tool 18 through lead screw 15 and remove, and high strength alloy not only has higher intensity and corrosion resistance.
The working principle is as follows: the automatic processing of the processing technology is completed by compiling and changing a processing program through the numerical control display 5, the totally-enclosed protective hood 2 provides safety protection during processing, an oil mist collector 1 above the totally-enclosed protective hood 2 can prevent environmental pollution, oil mist generated during processing in the totally-enclosed protective hood 2 is pumped and converted, a filter water tank 6 can utilize circulating water and collect processing scraps, a Y-axis servo module 8 provides front and back displacement of a processed product, an X-axis servo module 7 provides left and right displacement of the processed product, a Z-axis servo module 9 provides up and down processing displacement of a cutting tool 18, an A-axis servo module 10 provides feeding processing allowance of a vertical cutting tool, and a B-axis servo module 11 provides processing allowance of multi-saw blade vertical cutting, d plane rotation servo platform 13 provides 360 angular positioning of product horizontal direction, C axle angular rotation servo platform 12 provides 90 angular positioning of product vertical direction, simultaneously B plane rotation servo platform and C angular rotation servo platform's cooperation is set for, accomplish the processing angular positioning of processing work piece holder fixed platform 14, write and set for through numerical control display 5, data transmission through numerical control system, drive servo module X.Y, Z, A, B's displacement, the linkage of rotatory servo module C.D is rotatory, make the last raw and other materials of work piece holder fixed platform 14 cut through the operation of cutting tool 18 on the high-speed saw bit motor 17, accomplish the multi-angle of product, the multiple planes, the completion of many grooves manufacturing procedure.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.