Disclosure of Invention
Need consume more physical power when cutting to the new material grid in order to overcome artifical manual, cut the unevenness easily moreover to cutting department is comparatively sharp after the cutting is accomplished, very easy fish tail staff. The technical problem of the invention is that: provided is a cutting device for producing and processing a new material grid, which does not need to be manually cut and can polish the edge.
A new material grid produces and processes and uses cutting device, including: a chassis; the cutting assembly is arranged on the case; the pushing assembly is installed on the case.
Further, the cutting assembly includes: the motor is arranged on the case; the first rotating rod is arranged on an output shaft of the motor and is rotatably connected with the case; and the cutting wheel is arranged on the first rotating rod.
Further, the pushing assembly comprises: the second rotating rod is rotatably arranged on the case; the push wheels are arranged on two sides of the second rotating rod; and the first belt pulley set is arranged between the second rotating rod and the first rotating rod.
Further, still include the polishing subassembly, the polishing subassembly includes: the limiting blocks are arranged on two sides of the case; the special-shaped block is arranged on the case; the first bevel gear is rotatably arranged on the case; the second belt pulley set is arranged between the first bevel gear and the second rotating rod; the rotating cylinders are rotatably arranged on the case at equal intervals; the second bevel gear is arranged on the rotating cylinder at one side and is meshed with the first bevel gear; the polishing wheel is arranged on the rotary cylinder; and the flat belt is arranged between two adjacent rotary drums.
Further, still include the coating subassembly, the coating subassembly includes: the air bags are arranged on two sides of the case; the storage frame is arranged on the case; the feeding pipe is arranged between the material storage frame and the air bag; the coating pipe is installed on two sides of the storage frame.
Further, still including rotating assembly, rotating assembly includes: the fixed block is arranged on the air bag; the U-shaped rod is arranged between the fixed blocks; and the wedge block is arranged on the second bevel gear and matched with the U-shaped rod.
Furthermore, the upper side of the case is provided with an inclined opening.
Furthermore, the storage frame is provided with a plug, so that the storage frame can be conveniently taken out for feeding.
The invention has the beneficial effects that: 1. the novel material grid cutting device is provided with the polishing assembly, so that the cutting of the novel material grid can be finished by the polishing wheel when the novel material grid cutting device slides down, and the novel material grid can not be cut during collection.
2. The novel material grid cutting device is provided with the coating component, the pigment in the storage frame is sprayed out through the coating pipe by controlling the air bag, so that the novel material grid after cutting can be coated, and the trouble of later coating is reduced.
3. The novel grid cutting device is provided with the rotating assembly, so that the novel grid cutting device does not need to manually control the air bag to paint the novel cut material grid, and the operation trouble of workers is reduced.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the cutting assembly of the present invention.
Fig. 3 is a schematic perspective view of the pushing assembly of the present invention.
Figure 4 is a schematic perspective view of a polishing assembly of the present invention.
Fig. 5 is a schematic perspective view of a coating module according to the present invention.
Fig. 6 is a schematic perspective view of the rotating assembly of the present invention.
In the above drawings: 1: a case, 2: cutting assembly, 21: motor, 22: first rotating lever, 23: cutting wheel, 3: pushing assembly, 31: second rotating lever, 32: push wheel, 33: first pulley group, 4: polishing assembly, 41: stopper, 42: a shaped block, 43: first bevel gear, 44: second pulley set, 45: second bevel gear, 46: rotary drum, 47: polishing wheel, 48: flat belt, 5: coating component, 51: airbag, 52: storage frame, 53: feed tube, 54: coating tube, 6: rotating assembly, 61: fixed block, 62: u-shaped bar, 63: a wedge block.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
A cutting device for producing and processing new material grids is shown in figures 1-3 and comprises a case 1, a cutting assembly 2 and a pushing assembly 3, wherein the cutting assembly 2 is arranged on the case 1, and the pushing assembly 3 is arranged on the case 1.
When needs cut the new material grid, start cutting assembly 2, then put into quick-witted case 1 with the new material grid from quick-witted case 1's top, the new material grid just can contact with cutting assembly 2, and then make cutting assembly 2 cut the new material grid, the new material grid that the cutting was accomplished just can be pushed away to quick-witted case 1 right side by promotion subassembly 3, and then can follow quick-witted case 1's right side landing, alright collect the new material grid that the cutting was accomplished afterwards, after the whole cutting of all new material grids was accomplished, it can to close cutting assembly 2.
The cutting assembly 2 comprises a motor 21, a first rotating rod 22 and a cutting wheel 23, the motor 21 is arranged on the rear side of the case 1, the first rotating rod 22 is connected to an output shaft of the motor 21, the first rotating rod 22 is rotatably connected with the case 1, and the cutting wheel 23 is connected to the middle key of the first rotating rod 22.
When needs cut the new material grid, starter motor 21, motor 21 just can drive first bull stick 22 and rotate to make cutting wheel 23 rotate, then put into quick-witted case 1 with the new material grid from the top of quick-witted case 1, the new material grid just can contact with cutting wheel 23, and then makes cutting wheel 23 cut the new material grid, repeats above-mentioned process afterwards, and after the whole cutting of all new material grids was accomplished, it can to close motor 21.
The pushing assembly 3 comprises a second rotating rod 31, a pushing wheel 32 and a first belt pulley set 33, the case 1 is rotatably connected with the second rotating rod 31, the pushing wheel 32 is connected with the front side and the rear side of the second rotating rod 31, and the first belt pulley set 33 is connected between the front side of the second rotating rod 31 and the first rotating rod 22.
When first bull stick 22 rotated, can make second bull stick 31 rotate through first pulley group 33, and then make push pulley 32 rotate, and then make the new material grid that the cutting was accomplished from the right side landing of quick-witted case 1, and then make the unloading more neat to make things convenient for the staff to collect.
Example 2
On the basis of the embodiment 1, as shown in fig. 1, 4, 5 and 6, the polishing assembly 4 is further included, the polishing assembly 4 comprises a limiting block 41, a profile block 42, a first bevel gear 43, second pulley group 44, second bevel gear 45, rotary drum 46, polishing wheel 47 and flat belt 48, both sides all have stopper 41 through the bolt rigid coupling around the right part of quick-witted case 1, the right part of quick-witted case 1 has special-shaped piece 42 through the bolt rigid coupling, the right part front side rotation type of quick-witted case 1 is connected with first bevel gear 43, be connected with second pulley group 44 between first bevel gear 43 and the second bull stick 31, the even spaced rotary type in right side of quick-witted case 1 is connected with three rotary drum 46, the right side of rotary drum 46 at the forefront is connected with second bevel gear 45, second bevel gear 45 and the meshing of first bevel gear 43, the left side of rotary drum 46 all is connected with polishing wheel 47, all be connected with flat belt 48 between two adjacent rotary drum 46.
When the second rotating rod 31 rotates, the first bevel gear 43 can be rotated through the second belt pulley set 44, and then the second bevel gear 45 is driven to rotate, so that the foremost rotating cylinder 46 rotates, and then all the rotating cylinders 46 rotate through the flat belt 48, and then the polishing wheel 47 rotates, and then the polishing wheel 47 can polish the new material grid after cutting when sliding off, and further the new material grid after cutting can not be cut by the new material grid after collecting and cutting.
Still including coating module 5, coating module 5 is including gasbag 51, storage frame 52, inlet pipe 53 and coating pipe 54, and both sides all are equipped with gasbag 51 around the right lower part of quick-witted case 1, and machine case 1 lower part left side is equipped with storage frame 52, all is connected with inlet pipe 53 between storage frame 52 and the gasbag 51, and both sides all are connected with coating pipe 54 around the right part of storage frame 52.
When the new material grid that the cutting was accomplished slided, steerable gasbag 51 for gasbag 51 fills gas into in the storage frame 52 through inlet pipe 53, and then makes the pigment in the storage frame 52 spout through coating pipe 54, and then can carry out the coating to the new material grid that the cutting was accomplished, and then reduces the trouble of later stage coating.
Still including rotating assembly 6, rotating assembly 6 is including fixed block 61, U-shaped pole 62 and wedge 63, all is connected with fixed block 61 on the gasbag 51, is connected with U-shaped pole 62 between the fixed block 61, and the right side of second bevel gear 45 is connected with wedge 63, and wedge 63 cooperates with U-shaped pole 62.
When second bevel gear 45 rotated, can make wedge 63 rotate, when wedge 63 rotated to contact with U-shaped pole 62, can promote gasbag 51 and fill gas into in storage frame 52 through inlet pipe 53, when wedge 63 rotated to not hindering when contacting with U-shaped pole 62, gasbag 51 was automatic aerifyd, and then need not manual control gasbag 51 and carry out the coating to the new material grid that the cutting was accomplished to reduce staff's troublesome poeration.
While the disclosure has been described with respect to a limited number of embodiments, those skilled in the art, having benefit of this disclosure, will appreciate that various other embodiments can be devised which do not depart from the scope of the invention as disclosed herein. Accordingly, the scope of the invention should be limited only by the attached claims.