A numerical control planer-type milling machine waste recycling structure for metal product production
Technical Field
The utility model belongs to the technical field of metal production equipment, and particularly relates to a numerical control planer type milling machine waste recycling structure for metal product production.
Background
Along with the development of society and science and technology, more and more metal products appear in people's daily life and production, and these metal products generally need to process the processing through multiple equipment and use, and numerical control planer-type milling machine is one of them, has characteristics such as machining efficiency is high, the precision is high, and when using numerical control planer-type milling machine to process metal products, can produce a large amount of waste materials, in order to reduce extravagant and guarantee operational environment's clean and tidy, generally can use waste material recovery structure to retrieve centralized processing to the waste material, improves resource utilization.
Through retrieving, publication number CN215092342U, application day 2021.01.26 discloses a planer-type milling machine with waste recovery function, including the workstation, the feed port has been seted up on the surface of workstation, the lower surface fixedly connected with collection box of workstation. This planer-type milling machine with waste recycling function, through the collection box, pop-up structure, extrusion structure and spout set up, at waste recycling in-process, along with the waste material in the receipts magazine is more and more, the waste material extrudes the third spring downwards, place the board simultaneously and drive extrusion post downwardly moving, extrusion post downwardly extrusion telescopic link, the second spring contracts gradually, when extrusion post extrudees the telescopic link to the U-shaped inslot, pop out the cue stick under the resilience effect of first spring, the waste material in the suggestion staff receipts magazine has been filled, the staff opens the recovery door, outwards stimulate the receipts magazine, the spout is outwards slided along the slide rail, be convenient for receive the magazine and take out, change receipts magazine, inwards press the cue stick and continue to use, make things convenient for the staff to carry out timely processing to the waste material.
However, the following drawbacks still exist in practical use:
1. The planer type milling machine with the waste recycling function reminds workers when the waste inside the material receiving box is full through the pop-up structure, the extrusion structure and the like, and the workers still need to treat the waste inside the material receiving box after stopping the machine, so that a large amount of time can be wasted, metal products cannot be continuously processed, the waste can be continuously collected, and the working efficiency is affected;
2. Foretell planer-type milling machine with waste recovery function is through feed inlet, receipts magazine, filter screen and fan to waste recovery when using, and this kind of mode filter screen sets up on the collection tank inner wall, is inconvenient for the staff to install and dismantle, and uses the efficiency and the effect that the waste recovery can be influenced to the dust that adheres to on the filter screen for a long time.
Disclosure of utility model
The utility model aims to provide a numerical control planer type milling machine waste recycling structure for metal product production, the positions of a first recycling box and a second recycling box can be adjusted through an adjusting component, metal products can be continuously processed and waste can be recycled, the working efficiency is greatly improved, a slot is utilized to facilitate a worker to rapidly install and detach a filter frame, the time is saved, the working efficiency is high, a great amount of dust attached to the filter frame during long-time use can be avoided, and the efficiency and the effect of waste recycling are influenced.
In order to solve the technical problems, the utility model is realized by the following technical scheme:
The utility model relates to a numerical control planer type milling machine waste recycling structure for metal product production, which comprises a processing frame and a hoisting frame arranged at the central position of the upper surface of the processing frame, wherein the edges of two sides of the upper surface of the processing frame are provided with access holes, a first recycling box and a second recycling box are sequentially arranged in the processing frame along the horizontal direction, and an adjusting component is arranged at the central position of the bottom end of the processing frame;
the adjusting component comprises a first side plate and a motor arranged above the outer side wall of the first side plate, and an output shaft of the motor penetrates through a bearing on the outer wall of one side of the first side plate and is connected with the threaded rod through a coupler;
The edge of the top of the end face of the inner wall of the first recovery box and the edge of the top of the end face of the inner wall of the second recovery box are respectively provided with a slot, a filter frame is arranged in each slot, and plugboards are fixedly connected to the center positions of the outer walls of the two sides of the filter frame.
Further, a chute is arranged at the center position of the top end of the processing frame, and a waste port is formed in the center position of the upper surface of the processing frame.
Further, the inside bottom rear of processing frame is provided with inhales useless subassembly, inhales useless subassembly and includes the fan and installs first connecting pipe and the second connecting pipe at its air inlet end through the triple tap.
Further, the other ends of the first connecting pipe and the second connecting pipe are connected with an air inlet pipe through pipe joints, and the other end of the air inlet pipe is arranged at the center position of the end face of the rear end of the air suction cover.
Further, the other end of the threaded rod sequentially penetrates through threaded holes in the end faces of one side of the second moving block and one side of the first moving block to be connected with a bearing on the inner wall of the second side plate, and sliding rails are arranged at the front and rear sides of the first side plate and the second side plate.
Further, the mounting panel is all installed to the upper surface of first movable block and second movable block, and both ends edge all is provided with the slider around the bottom of mounting panel, and the bottom of slider is located the surface of slide rail.
Further, the front end face center positions of the first recovery box and the second recovery box are provided with box doors, and the top edges of the outer walls of the first recovery box and the second recovery box are provided with guide covers.
The utility model has the following beneficial effects:
1. According to the utility model, the adjusting assembly is arranged, the motor is operated under the transmission action of each component, so that the positions of the first moving block and the second moving block can be adjusted, the purpose of adjusting the positions of the first recovery box and the second recovery box is achieved, the metal products can be continuously processed and the waste materials can be recovered, the working efficiency is greatly improved, and the problems that the planer type milling machine with the waste material recovery function can remind workers when the waste materials in the material receiving box are full through a pop-up structure, an extrusion structure and the like during use, and the workers still need to treat the waste materials in the material receiving box after the machine is stopped in such a way, so that a great amount of time is wasted, the metal products cannot be continuously processed and the waste materials cannot be continuously collected, and the working efficiency is affected are solved.
2. According to the utility model, by arranging the slots and the filter frame, the filter frame is convenient for workers to install and detach quickly, the time is saved, the working efficiency is high, and the filter frame can be prevented from being attached with a large amount of dust when being used for a long time, so that the efficiency and the effect of waste recovery are influenced.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed for the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of a numerical control planer type milling machine waste recovery structure for metal product production;
FIG. 2 is a cross-sectional view of a numerically controlled planer type milling machine waste recovery structure for metal product production;
FIG. 3 is a block diagram of a waste suction assembly;
FIG. 4 is a disassembled view of the adjustment assembly;
fig. 5 is a disassembled view of the first recovery tank or the second recovery tank.
In the drawings, the list of components represented by the various numbers is as follows:
1. The device comprises a processing frame, 101, a hoisting frame, 102, an access hole, 103, a sliding chute, 104, a waste hole, 105, a waste suction assembly, 1051, a fan, 1052, a first connecting pipe, 1053, a second connecting pipe, 1054, an air inlet pipe, 1055, an air suction cover, 2, an adjusting assembly, 201, a first side plate, 202, a second side plate, 203, a motor, 2031, a threaded rod, 204, a first moving block, 205, a second moving block, 206, a sliding rail, 207, a mounting plate, 2071, a sliding block, 3, a first recycling box, 301, a box door, 302, a guide cover, 303, a slot, 304, a filtering frame, 3041, a plugboard, 4 and a second recycling box.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
Referring to fig. 1 to 4, the utility model discloses a numerically controlled planer type milling machine waste recycling structure for metal product production, which comprises a processing frame 1 and a lifting frame 101 arranged at the central position of the upper surface of the processing frame 1, wherein both side edges of the upper surface of the processing frame 1 are provided with overhaul holes 102, a first recycling box 3 and a second recycling box 4 are sequentially arranged in the processing frame 1 along the horizontal direction, an adjusting component 2 is arranged at the central position of the bottom end of the processing frame 1, and a processing mechanism is arranged on the lifting frame 101, which is the prior art, so that the overhaul of the first recycling box 3 and the second recycling box 4 can be realized through the overhaul holes 102 without redundant description;
The adjusting assembly 2 comprises a first side plate 201 and a motor 203 arranged above the outer side wall of the first side plate 201, wherein an output shaft of the motor 203 penetrates through a bearing on the outer wall of one side of the first side plate 201 and is connected with a threaded rod 2031 through a coupler, and the motor 203 rotates to drive the threaded rod 2031 to rotate through the coupler;
A chute 103 is arranged at the center of the top end of the interior of the processing frame 1, a waste port 104 is arranged at the center of the upper surface of the processing frame 1, and waste can fall into the first recovery tank 3 and the second recovery tank 4 through the waste port 104;
the rear part of the inner bottom end of the processing frame 1 is provided with a waste suction assembly 105, the waste suction assembly 105 comprises a fan 1051, a first connecting pipe 1052 and a second connecting pipe 1053 which are arranged at the air inlet end of the waste suction assembly through three taps, and the three taps play a role of pipeline connection;
The other ends of the first connecting pipe 1052 and the second connecting pipe 1053 are connected with an air inlet pipe 1054 through pipe joints, the other end of the air inlet pipe 1054 is arranged at the center position of the end face of the rear end of an air suction hood 1055, the pipe joints play a role in pipeline connection, and the air suction hood 1055 is arranged on the rear end faces of the first recovery tank 3 and the second recovery tank 4;
The other end of the threaded rod 2031 sequentially penetrates through threaded holes on one side end surfaces of the second moving block 205 and the first moving block 204 to be connected with bearings on the inner wall of the second side plate 202, sliding rails 206 are arranged at the front and rear sides of the first side plate 201 and the second side plate 202, external threads on the outer wall of the threaded rod 2031 are meshed with internal threads in the hole walls of the threaded holes on the end surfaces of the first moving block 204 and the second moving block 205, and a transmission effect is achieved;
The upper surfaces of the first moving block 204 and the second moving block 205 are respectively provided with a mounting plate 207, the edges of the front end and the rear end of the bottom of the mounting plate 207 are respectively provided with a sliding block 2071, the bottom of each sliding block 2071 is positioned on the surface of each sliding rail 206, and each sliding block 2071 can slide on each sliding rail 206 to limit and assist movement of the mounting plate 207, the first moving block 204 and the second moving block 205;
When the device is used, firstly, metal products are placed on the surface of the processing frame 1, then, the metal products are processed through a processing mechanism on the lifting frame 101, then, the fan 1051 is started, the fan 1051 operates to suck waste into the first recovery box 3 or the second recovery box 4 through the waste inlet pipe 1054 through the suction hood 1055, meanwhile, sucked waste can be filtered, air can be discharged from the air outlet end through the first connecting pipe 1052 or the second connecting pipe 1053, if the waste is sucked into the first recovery box 3, and as the metal products are processed, more and more waste in the metal products can be processed, at this time, the transparent window on the box door 301 is used for observing, and when the waste in the first recovery box 3 is fully recovered, the motor 203 is started, the output shaft of the motor 203 drives the threaded rod 2031 to rotate through the coupler, and external threads on the outer wall of the 2031 are meshed with internal threads on the walls of the first moving block 204 and the second moving block 205, and therefore, when the 2031 rotates, the first moving block 204 and the second moving block 205 are driven to move along with the threaded rod 205, and the first moving block 205 can be made to move towards the first moving block 207 and the second moving block 204 and the second moving block 205, and the position of the first recovery box is continuously adjusted to the position of the first recovery box 4, and the waste can be processed to the second recovery box 4, and the position of the waste can be continuously adjusted to the position of the first recovery box and the second recovery box 4.
As shown in fig. 2 and 5, slots 303 are formed in top edges of end faces of rear ends of inner walls of the first recovery tank 3 and the second recovery tank 4, a filter frame 304 is mounted in each slot 303, plugboards 3041 are fixedly connected to center positions of outer walls of two sides of the filter frame 304, shapes, sizes, structures and the like of the first recovery tank 3 and the second recovery tank 4 are identical, and filter screens are mounted in the filter frame 304 and can play a role in filtering;
The center positions of the front end surfaces of the first recovery box 3 and the second recovery box 4 are provided with box doors 301, the edges of the top ends of the outer walls of the first recovery box 3 and the second recovery box 4 are provided with guide covers 302, the guide covers 302 are positioned in the sliding grooves 103, the auxiliary limiting effect is achieved when the first recovery box 3 and the second recovery box 4 move, and meanwhile the sealing effect is achieved when waste materials are recovered;
Above-mentioned setting is when using, after first collection box 3 removes to the outside, can be through the chamber door 301 with its inside waste material centralized processing, but the upper pulling filter frame 304 then, filter frame 304 atress makes picture peg 3041 on its both sides outer wall remove inside slot 303, can pull out filter frame 304 from slot 303, and change and clean filter frame 304, the same reason when installing, make things convenient for the staff to install fast and dismantle filter frame 304, work efficiency is high, and can avoid filter frame 304 to use for a long time to have a large amount of dust to adhere to, influence waste recovery's efficiency and effect.
The foregoing is only a preferred embodiment of the present utility model, and the present utility model is not limited thereto, and any modification, equivalent replacement, and improvement of some of the technical features described in the foregoing embodiments are all within the scope of the present utility model.