Ceramic fiber refractory material cutting device
Technical Field
The utility model belongs to the technical field of ceramic fiber material cutting, and particularly relates to a ceramic fiber refractory material cutting device.
Background
The ceramic fiber is a fibrous light refractory material, has the advantages of light weight, high temperature resistance, good thermal stability, low heat conductivity, small specific heat, mechanical shock resistance and the like, and is widely applied to industries such as machinery, metallurgy, chemical industry, petroleum, ceramics, glass, electronics and the like.
Chinese patent publication No. CN218365772U discloses a cutting device of calcination-free ceramic fiber inorganic board, which comprises a workbench, auxiliary mechanism and measuring mechanism, the top of workstation is provided with inorganic board body, auxiliary mechanism includes the butt plate, two connecting strips, screw rod and nut, two equal fixed connection of connecting strips are in the bottom of butt plate one side, the spread groove has all been seted up on the top of two connecting strips, two equal fixed connection of screw rod are on the top of workstation, two screw rods alternate respectively and set up in the inner wall of two spread grooves, two nuts are threaded respectively in the outer wall of two screw rods, measuring mechanism sets up in the top of workstation. According to the utility model, the arrangement of the retaining plate, the two connecting strips, the screw and the nut is utilized, and the nut is screwed on the screw to support against the connecting strips through the cooperation of the measuring mechanism, so that the retaining plate is fixed, and the inorganic plate can be cut at the position where the retaining plate is attached, thereby avoiding the need of measuring and scribing when the inorganic plate is cut every time, and improving the convenience of inorganic plate cutting.
The problems of the above-mentioned patent are that the ceramic fiber board needs the staff to push the board to cut when cutting, not only is time consuming and laborious, but also the machining efficiency of the cutting device can be reduced, and the ceramic fiber board can produce the dust when cutting, and the dust that produces can scatter everywhere when the during operation can harm staff's health.
Disclosure of utility model
To solve the problems set forth in the background art. The utility model provides a ceramic fiber refractory material cutting device which has the characteristics of automatically pushing a plate to move and preventing dust from lifting.
In order to achieve the aim, the ceramic fiber refractory material cutting device comprises a workbench, wherein a cutting blade is arranged in the middle of the workbench, a driving motor I is arranged on one side of the cutting blade, a dust removing component is arranged above the cutting blade, a ceramic fiber board is arranged on the surface of the workbench, a cutting auxiliary device is arranged on one side of the ceramic fiber board, and a propelling component is arranged on the other side of the ceramic fiber board.
Preferably, the propulsion assembly comprises a movable seat, a propulsion plate, a positioning block, a sliding groove, a positioning hole, a driving motor II, a movable block and a threaded rod, wherein the movable seat is arranged on one side of the ceramic fiber board, the sliding groove is arranged below the movable seat, the positioning block is arranged on one side of the movable seat, the positioning hole is arranged below the positioning block, the driving motor II is arranged inside the movable seat, the threaded rod is arranged on one side of the driving motor II, the movable block is arranged on the surface of the threaded rod, and the propulsion plate is arranged on one side of the movable block.
Preferably, the surface of the pushing plate is provided with an anti-slip pad, and the pushing plate is L-shaped and connected with one end of the moving block.
Preferably, the dust removal assembly comprises a dust collection head, a dust collection cover, a dust collection pipe, a support frame, a suction pump and a collection assembly, wherein the support frame is arranged above the workbench, the dust collection pipe is arranged above the support frame, the dust collection head is arranged at one end of the dust collection pipe, the dust collection cover is arranged below the dust collection head, the suction pump is arranged at the other end of the dust collection pipe, and the collection assembly is arranged below the suction pump.
Preferably, the collection subassembly includes rose box, fixed plate, through-hole, filter, gas vent and collects the drawer, and wherein, the below of aspirator pump is provided with the rose box, and the inside of rose box is provided with the fixed plate, and the top of fixed plate is provided with the filter, and one side of filter is provided with the gas vent, and the middle part of fixed plate is provided with the through-hole, and the below of through-hole is provided with collects the drawer.
Preferably, the outside of dust absorption pipe is provided with pipeline fixed knot, and the dust absorption pipe passes through pipeline fixed knot to be installed at the surface of support frame.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the utility model, the propulsion assembly is arranged, when the ceramic fiber board needs to be cut, the ceramic fiber board is placed between the propulsion plate and the cutting auxiliary device, and then the driving motor II is started to drive the propulsion plate to move, so that the propulsion plate can push the ceramic fiber board to cut, the step of manual pushing can be omitted, the processing efficiency of the cutting device is improved, and the sliding groove is arranged below the movable seat, so that a worker can adjust the position of the movable seat.
2. According to the utility model, the dust removing component is arranged, when the cutting blade cuts the ceramic fiber board, the suction pump is started to absorb dust generated during cutting, so that dust is prevented from scattering everywhere during working and damaging the health of staff, and the dust enters the filter box for filtering after being absorbed, and the filter box is provided with the collecting drawer, so that the filtered dust can be collected intensively.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of a propulsion assembly of the present utility model;
FIG. 3 is a top view of the propulsion assembly of the present utility model;
FIG. 4 is a cross-sectional view of a propulsion assembly of the present utility model;
FIG. 5 is a schematic view of a dust extraction assembly of the present utility model;
fig. 6 is a cross-sectional view of a collection assembly of the present utility model.
The device comprises a workbench, a pushing assembly, a moving seat, a pushing plate, a 23, a locating block, a 24, a chute, a 25, a locating hole, a 26, a driving motor, a 27, a moving block, a 28, a threaded rod, a 3, a dust removing assembly, a 31, a dust collecting head, a 32, a dust collecting cover, a 33, a dust collecting pipe, a 34, a supporting frame, a 35, a suction pump, a 36, a collecting assembly, a 361, a filter box, a 362, a fixing plate, a 363, a through hole, a 364, a filter plate, a 365, an exhaust port, 366, a collecting drawer, a 4, a ceramic fiber plate, a 5, a cutting blade, a 6, a driving motor I, a 7 and a cutting auxiliary device.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
Referring to fig. 1-6, the utility model provides a ceramic fiber refractory material cutting device, which comprises a workbench 1, wherein a cutting blade 5 is arranged in the middle of the workbench 1, a driving motor 6 is arranged on one side of the cutting blade 5, a dust removing component 3 is arranged above the cutting blade 5, a ceramic fiber board 4 is arranged on the surface of the workbench 1, a cutting auxiliary device 7 is arranged on one side of the ceramic fiber board 4, and a propelling component 2 is arranged on the other side of the ceramic fiber board 4.
Specifically, propulsion subassembly 2 includes movable seat 21, propulsion board 22, locating piece 23, spout 24, locating hole 25, driving motor two 26, movable block 27 and threaded rod 28, wherein, one side of ceramic fiber board 4 is provided with movable seat 21, the below of movable seat 21 is provided with spout 24, one side of movable seat 21 is provided with locating piece 23, the below of locating piece 23 is provided with locating hole 25, the inside of movable seat 21 is provided with driving motor two 26, one side of driving motor two 26 is provided with threaded rod 28, the surface of threaded rod 28 is provided with movable block 27, one side of movable block 27 is provided with propulsion board 22, the surface of propulsion board 22 is provided with slipmat 29.
Through adopting above-mentioned technical scheme, when needs cut ceramic fiber board 4, place ceramic fiber board 4 between advancing board 22 and cutting auxiliary device 7, then open driving motor two 26 and drive threaded rod 28 rotation, threaded rod 28 rotates and drives movable block 27 and advance board 22 and remove, advance board 22 and remove and to promote ceramic fiber board 4 and cut, thereby can improve cutting device's machining efficiency, owing to the below that removes seat 21 is provided with spout 24, thereby make the staff can adjust the position of removing seat 21, one side of removing seat 21 still is provided with locating piece 23, thereby make things convenient for the staff to fix the removal seat 21 after adjusting.
Specifically, the surface of the pushing plate 22 is provided with an anti-slip pad, and the pushing plate 22 is L-shaped and connected to one end of the moving block 27.
By adopting the technical scheme, the anti-slip pad is arranged on the surface of the pushing plate 22, so that the anti-slip effect of the pushing plate 22 can be improved, the pushing plate 22 is L-shaped and is connected with one end of the moving block 27, and the ceramic fiber sheet 4 can be prevented from shifting during pushing.
When the ceramic fiber plate 4 is required to be cut, the ceramic fiber plate 4 is placed between the pushing plate 22 and the cutting auxiliary device 7, then the driving motor II 26 is started to drive the threaded rod 28 to rotate, the threaded rod 28 rotates to drive the moving block 27 and the pushing plate 22 to move, the pushing plate 22 moves to push the ceramic fiber plate 4 to cut, and therefore machining efficiency of the cutting device can be improved, due to the fact that the sliding groove 24 is arranged below the moving seat 21, workers can adjust the position of the moving seat 21, one side of the moving seat 21 is further provided with the positioning block 23, the workers can conveniently fix the adjusted moving seat 21, and due to the fact that the anti-slip pad is arranged on the surface of the pushing plate 22, anti-slip effect of the pushing plate 22 can be improved, the pushing plate 22 is L-shaped and is connected with one end of the moving block 27, and therefore the ceramic fiber plate 4 can be prevented from shifting during pushing.
Example 2
The embodiment is different from embodiment 1 in that specifically, the dust removing component 3 includes a dust collecting head 31, a dust collecting hood 32, a dust collecting pipe 33, a supporting frame 34, a suction pump 35 and a collecting component 36, wherein the supporting frame 34 is arranged above the workbench 1, the dust collecting pipe 33 is arranged above the supporting frame 34, one end of the dust collecting pipe 33 is provided with the dust collecting head 31, the dust collecting hood 32 is arranged below the dust collecting head 31, the suction pump 35 is arranged at the other end of the dust collecting pipe 33, and the collecting component 36 is arranged below the suction pump 35.
Through adopting above-mentioned technical scheme, when cutting blade 5 cuts ceramic fiber board 4, open the suction pump 35 and absorb the dust that produces when cutting through dust absorption head 31 to prevent that the dust can fly off everywhere and endanger staff's health at the during operation, owing to the below of dust absorption head 31 is provided with dust hood 32, thereby can improve the dust absorption effect of dust absorption head 31, the dust is through absorbing the back and get into in the collection subassembly 36 through the transport of dust absorption pipe 33.
Specifically, the collecting assembly 36 includes a filter case 361, a fixing plate 362, a through hole 363, a filter plate 364, an exhaust port 365, and a collecting drawer 366, wherein the filter case 361 is provided below the suction pump 35, the fixing plate 362 is provided inside the filter case 361, the filter plate 364 is provided above the fixing plate 362, the exhaust port 365 is provided at one side of the filter plate 364, the through hole 363 is provided at the middle of the fixing plate 362, and the collecting drawer 366 is provided below the through hole 363.
Through adopting above-mentioned technical scheme, the dust enters into the rose box 361 through the transport of dust absorption pipe 33, owing to be provided with filter 364 in the rose box 361, one side of filter 364 is provided with gas vent 365 to make the suction dust can filter out from the air, can drop into through-hole 363 after the dust filters out and collect in drawer 366, thereby can concentrate the dust of filtering out and collect.
Specifically, a pipe fixing buckle is arranged outside the dust suction pipe 33, and the dust suction pipe 33 is arranged on the surface of the supporting frame 34 through the pipe fixing buckle.
Through adopting above-mentioned technical scheme, the outside of dust absorption pipe 33 is provided with the pipeline and fixes the knot, and the dust absorption pipe 33 passes through the pipeline and fixes the knot and install the surface at support frame 34 to can prevent that dust absorption pipe 33 from taking place to rock the whereabouts at the during operation.
When the cutting blade 5 is used, when the ceramic fiber plate 4 is cut by the cutting blade 5, the suction pump 35 is started to suck dust generated during cutting through the dust suction head 31, so that dust is prevented from scattering everywhere during working and endangering the health of workers, the dust suction effect of the dust suction head 31 can be improved due to the dust suction hood 32 arranged below the dust suction head 31, the dust is conveyed into the filter box 361 through the dust suction pipe 33 after being sucked, the filter plate 364 is arranged in the filter box 361, the exhaust port 365 is arranged on one side of the filter plate 364, so that the dust can be filtered out from the air, the dust can fall into the collecting drawer 366 through the through hole 363 after being filtered out, the filtered dust can be collected in a concentrated mode, the pipe fixing buckle is arranged outside the dust suction pipe 33, the dust suction pipe 33 is arranged on the surface of the support frame 34 through the pipe fixing buckle, and accordingly the dust suction pipe 33 can be prevented from shaking and falling off during working.
The structure and use principle of the cutting aid 7 of the present utility model are disclosed in a calcination-free ceramic fiber inorganic board disclosed in chinese patent publication No. CN 218365772U.
When the ceramic fiber cutting device is used, the plate material used for the ceramic fiber refractory cutting device is pushed, when the ceramic fiber cutting device is used, the ceramic fiber plate material 4 during cutting needs to be pushed, when the ceramic fiber plate material 4 needs to be cut, the ceramic fiber plate material 4 is placed between the pushing plate 22 and the cutting auxiliary device 7, then the driving motor II 26 is started to drive the threaded rod 28 to rotate, the threaded rod 28 rotates to drive the moving block 27 and the pushing plate 22 to move, the pushing plate 22 can push the ceramic fiber plate material 4 to cut, so that the processing efficiency of the cutting device can be improved, the sliding groove 24 is arranged below the moving seat 21, so that a worker can adjust the position of the moving seat 21, and one side of the moving seat 21 is provided with the positioning block 23, so that the worker can conveniently fix the adjusted moving seat 21, and the anti-slip effect of the pushing plate 22 can be improved due to the fact that the anti-slip pad is arranged on the surface of the pushing plate 22, the pushing plate 22 is connected with one end of the moving block 27 in an L shape, and the ceramic fiber plate material 4 can be prevented from shifting during pushing;
When in use, dust treatment for the ceramic fiber refractory cutting device is carried out in operation, dust generated during cutting needs to be treated, when the cutting blade 5 cuts the ceramic fiber board 4, the suction pump 35 is started to suck the dust generated during cutting through the dust suction head 31, thereby preventing dust from scattering everywhere during operation and endangering the health of workers, the dust suction effect of the dust suction head 31 can be improved due to the dust suction hood 32 arranged below the dust suction head 31, the dust is conveyed into the filter box 361 through the dust suction pipe 33 after being sucked, the filter plate 364 is arranged in the filter box 361, the exhaust port 365 is arranged on one side of the filter plate 364, so that sucked dust can be filtered out from air, the dust can fall into the collecting drawer 366 through the through hole 363 after being filtered out, the filtered dust can be collected in a concentrated mode, the dust suction pipe 33 is externally provided with the pipeline fixing buckle, and the dust suction pipe 33 is installed on the surface of the supporting frame 34 through the pipeline fixing buckle, thereby preventing the dust suction pipe 33 from shaking and falling off during operation.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.