CN215549594U - Cutting device of wallboard extrusion molding machine - Google Patents

Cutting device of wallboard extrusion molding machine Download PDF

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Publication number
CN215549594U
CN215549594U CN202121756459.6U CN202121756459U CN215549594U CN 215549594 U CN215549594 U CN 215549594U CN 202121756459 U CN202121756459 U CN 202121756459U CN 215549594 U CN215549594 U CN 215549594U
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China
Prior art keywords
synchronous
lifting
transverse moving
motor
seat
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Expired - Fee Related
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CN202121756459.6U
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Chinese (zh)
Inventor
赵洁
徐子桐
范晨雨
季孟颖
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Priority to CN202121756459.6U priority Critical patent/CN215549594U/en
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Abstract

A cutting device of a wallboard extrusion molding machine belongs to the field of building equipment. The device comprises a synchronous moving device, a transverse moving device, a clamping device, a lifting device, a cutting saw and a length measuring device, wherein the synchronous moving device is provided with a bottom supporting frame, a synchronous front supporting plate, a JF25-130 synchronous motor base and other structures, the transverse moving device is provided with a transverse moving frame, a JF25-130 transverse moving motor base and other structures, the clamping device is provided with a servo electric cylinder, an electric cylinder mounting seat, a clamping plate and other structures, the lifting device is provided with a transverse moving tool rest, a lifting guide rail, a lifting lead screw and other structures, the cutting saw is provided with a protective cover, a saw-tooth-free open blade and other structures, and the length measuring device is provided with an encoder roller and a roller mounting plate. The cutting saw can ascend and descend, so that the occupied space of the device is greatly reduced, and the space utilization rate is improved; the tangent plane is level and smooth, can reduce a large amount of clastic productions simultaneously, effectively avoids cutting device dirty.

Description

Cutting device of wallboard extrusion molding machine
Technical Field
The utility model relates to a cutting device of a wallboard extrusion molding machine, in particular to a cutting device which adopts a special structure, is provided with a synchronous moving device and a lifting device, reduces the space of a wallboard production line and improves the flatness of a tangent plane, and belongs to the field of building equipment.
Background
With the wide application of the light wall board in the building field, the light wall board extrusion forming production line is also rapidly developed. Wallboard extrusion forming machine cutting device cuts the wallboard after the shaping in wallboard production process to obtain the wallboard of required size, current light system wallboard cutting device structure is complicated, and occupation of land space is big, and in cutting process, the tangent plane unevenness is accompanied by a large amount of pieces during the cutting, and the piece scatters inside the cutting machine, influences wallboard cutting accuracy, causes the cutting machine dirty easily, is difficult to the clearance after long-time work.
Disclosure of Invention
In view of the above disadvantages, the present invention provides a cutting device for a wallboard extrusion molding machine.
The utility model is realized by the following technical scheme: a cutting device of a wallboard extrusion molding machine comprises a synchronous moving device, a transverse moving device, a clamping device, a lifting device, a cutting saw and a length measuring device, wherein the synchronous moving device is provided with a bottom support frame, synchronous front support plates, JF25-130 synchronous motor bases, synchronous couplers, synchronous motors, synchronous screw rods, synchronous nuts, synchronous nut bases, synchronous rear support plates, guide rail support plates, synchronous guide rails, BF20 synchronous support bases, synchronous sliders and a transverse moving support platform, the synchronous front support plates are arranged on two sides of the upper portion of the bottom support frame at the front end, the synchronous front support plates on two sides are symmetrically arranged, the JF25-130 synchronous motor bases are symmetrically arranged on the synchronous front support plates on two sides, the synchronous motors are symmetrically arranged on the synchronous motor bases on two sides of JF25-130 and are connected with the synchronous screw rods through the synchronous couplers, the synchronous nuts are symmetrically arranged on the synchronous screw rods on two sides, synchronous nut seats are arranged on synchronous nuts at two sides, synchronous rear supporting plates are arranged at two sides of the upper part of a rear end bottom supporting frame, the synchronous rear supporting plates at two sides are symmetrically arranged, BF20 synchronous supporting seats are symmetrically arranged on the synchronous rear supporting plates and are respectively connected with synchronous screw rods at two sides, guide rail supporting plates are arranged at the upper parts of the synchronous front supporting plates and the synchronous rear supporting plates, the two guide rail supporting plates are symmetrically arranged, synchronous guide rails are arranged on the guide rail supporting plates at two sides, synchronous sliders are arranged on the synchronous guide rails at two sides, two groups of synchronous sliders are arranged symmetrically, a transverse moving supporting platform is symmetrically arranged on the synchronous sliders and the synchronous nut seats, and the transverse moving device comprises a transverse moving frame, a JF25-130 transverse moving motor seat, a transverse moving coupler, a transverse moving motor, a motor seat connecting plate, a transverse moving screw rod, a knife correcting groove, a BF20 transverse moving cushion, a BF20 transverse moving supporting seat, The clamping device comprises transverse moving guide rails and transverse moving sliding blocks, wherein a motor base connecting plate is arranged in the middle of the front end of the transverse moving frame, JF25-130 transverse moving motor bases are arranged on the motor base connecting plate, transverse moving motors are arranged on JF25-130 transverse moving motor bases and are connected with transverse moving lead screws through transverse moving couplers, tool correction grooves are symmetrically arranged at the bottom of the transverse moving frame, BF20 transverse moving cushion blocks are arranged in the middle of the rear end of the transverse moving frame, BF20 transverse moving support seats are arranged on BF20 transverse moving cushion blocks and are connected with the transverse moving lead screws, the transverse moving guide rails are symmetrically arranged on the left side and the right side of the transverse moving frame, the transverse moving sliding blocks are arranged on transverse moving guide rails on the two sides, the two groups of transverse moving sliding blocks are in one group, the two groups of sliding blocks are symmetrically arranged, the transverse moving device is arranged on a transverse moving support platform of a synchronous moving device, and the clamping device is provided with servo electric cylinders, electric cylinder mounting seats, clamping boards, blocking pads and connecting plates, The lifting device is provided with a transverse moving frame, a lifting guide rail, a lifting lead screw, a motor lifting seat, a lifting slider, a lifting motor mounting seat, a lifting coupler, a lifting motor, a BK20 lifting fixing seat, a lifting nut seat and a BF20 lifting supporting seat, the lifting motor mounting seat is arranged on the upper part of the transverse moving frame, the lifting motor is arranged on the upper part of the lifting motor mounting seat, the lifting lead screw is arranged on the lower part of the lifting motor mounting seat, the cutting saw is connected with a lifting motor through a lifting coupler, a BK20 lifting fixed seat is arranged at the top end of a lifting screw rod, a BF20 lifting supporting seat is arranged at the bottom end of the lifting screw rod, a lifting nut seat is arranged on the lifting screw rod, lifting guide rails are symmetrically arranged at two sides of the lifting screw rod, lifting sliders are arranged on the lifting guide rails at two sides, two groups of sliders are symmetrically arranged, a motor lifting seat is arranged on the lifting sliders and the lifting nut seat, a lifting device is connected with a transverse slider through a transverse knife rest and is arranged on a transverse moving device, the cutting saw is provided with a protective cover, a saw-tooth-free edge-cutting saw blade, a cutting motor and a saw blade clamping plate, the saw-tooth-free edge-cutting saw blade is arranged on a cutting motor shaft through the saw blade clamping plate, the protective cover is arranged at the front end of the cutting motor, and the cutting saw is arranged on the motor lifting seat of the lifting device, the length measuring device is provided with an encoder roller and a roller mounting plate, the encoder roller is mounted on the roller mounting plate, and the length measuring device is mounted on two sides of the roller of the production line.
The bottom support frame and the transverse moving frame are formed by welding a galvanized seamless hollow square tube and a galvanized seamless hollow rectangular tube.
The synchronous motor and the traversing motor are both servo motors, preferably inertia servo motors in the loose-brand MINAS A6 series MDMF102L1D 5.
The saw blade without the sawtooth edging is a circular saw with edging edges and is made of diamond materials.
The utility model discloses an useful part is, elevating gear and slitting saw's cooperation makes the slitting saw rise and descend, has reduced the occupation of land space of the utility model greatly, has improved space utilization, clamping device's setting better assurance the precision of the synchronous operation of the utility model to improved cutting accuracy, the use of no sawtooth edging saw bit has guaranteed that the tangent plane levels and cutting accuracy, in the cutting process, has reduced a large amount of clastic productions, can effectively avoid cutting device dirty.
Drawings
FIG. 1 is a schematic structural view of the present invention in an installed state,
figure 2 is a schematic structural view of the present invention in an uninstalled state,
FIG. 3 is a schematic structural diagram of a synchronous moving device according to the present invention,
figure 4 is a schematic structural view of the lateral shifting device of the present invention,
figure 5 is a schematic view of the right-hand clamp of the present invention,
FIG. 6 is a schematic view showing the construction of the left-hand holding apparatus of the present invention,
figure 7 is a schematic structural view of the lifting device of the present invention,
figure 8 is a schematic bottom view of the lifting device of the present invention,
figure 9 is a rear side schematic view of the dicing saw of the present invention,
figure 10 is a front side schematic view of a dicing saw of the utility model,
FIG. 11 is a schematic structural view of the length measuring device of the present invention,
figure 12 is a schematic structural view of the bottom bracket of the present invention,
figure 13 is a schematic structural view of a synchronous front support plate of the present invention,
figure 14 is a schematic diagram of the construction of the synchronized rear support plate of the present invention,
figure 15 is a schematic view of the structure of the lateral shifting support platform of the present invention,
figure 16 is a schematic structural view of the lateral shifting frame of the present invention,
FIG. 17 is a schematic structural view of a motor base connecting plate according to the present invention,
FIG. 18 is a schematic structural view of a tool correcting slot of the present invention,
FIG. 19 is a schematic diagram of the BF20 transverse moving pad of the present invention,
figure 20 is a schematic structural view of the electric cylinder mount of the present invention,
figure 21 is a schematic bottom view of the electric cylinder mount of the present invention,
figure 22 is a schematic view of the clamping jaw of the present invention,
FIG. 23 is a schematic view showing the structure of the connecting plate of the blocking pad according to the present invention,
FIG. 24 is a schematic view of the right baffle pad of the present invention,
FIG. 25 is a schematic view of the left cushion of the present invention,
FIG. 26 is a schematic view showing the construction of the traverse carriage of the present invention,
figure 27 is a schematic structural view of the motor lifting seat of the present invention,
figure 28 is a schematic structural view of a lift motor mount of the present invention,
figure 29 is a schematic front side view of the shield of the present invention,
figure 30 is a schematic rear side view of the shield of the present invention,
figure 31 is a schematic view of the saw blade without saw teeth for sharpening the blade according to the present invention,
figure 32 is a side view schematic of a saw blade without saw teeth and with sharpened edges in accordance with the present invention,
in the figure, 1, a synchronous moving device, 101, a bottom support frame, 102, a synchronous front support plate, 103, JF25-130 synchronous motor base, 104, a synchronous coupler, 105, a synchronous motor, 106, a synchronous screw rod, 107, a synchronous nut, 108, a synchronous nut base, 109, a synchronous rear support plate, 110, a guide rail support plate, 111, a synchronous guide rail, 112, a BF20 synchronous support base, 113, a synchronous slider, 114, a transverse moving support platform, 2, a transverse moving device, 201, a transverse moving frame, 202, JF25-130 transverse moving motor base, 203, a transverse coupler, 204, a transverse moving motor, 205, a motor base connecting plate, 206, a transverse moving screw rod, 207, a tool correcting groove, 208, a BF20 transverse moving cushion block, 209, BF20 transverse moving support base, 210, a transverse moving guide rail, 211, a transverse moving slider, 3, a clamping device, 301, a servo electric cylinder, 302, an electric cylinder mounting base, 303 and a clamping chuck plate, 304. the device comprises a stop pad connecting plate, 305, a right stop pad, 306, a left stop pad, 4, a lifting device, 401, a transverse tool rest, 402, a lifting guide rail, 403, a lifting screw rod, 404, a motor lifting seat, 405, a lifting slider, 406, a lifting motor mounting seat, 407, a lifting coupling, 408, a lifting motor, 409, BK20 lifting fixing seats, 410, a lifting nut, 411, a lifting nut seat, 412, a BF20 lifting supporting seat, 5, a cutting saw, 501, a protective cover, 502, a saw-tooth-free edging saw blade, 503, a cutting motor, 504, a saw blade clamping plate, 6, a length measuring device, 601, an encoder roller, 602 and a roller mounting plate.
Detailed Description
The utility model provides a wallboard extrusion molding machine cutting device, is by synchronous movement device 1, lateral shifting device 2, clamping device 3, elevating gear 4, slitting saw 5 and length measuring device 6 constitute, its characterized in that: the synchronous moving device 1 comprises a bottom support frame 101, synchronous front support plates 102, JF25-130 synchronous motor bases 103, synchronous couplers 104, synchronous motors 105, synchronous lead screws 106, synchronous nuts 107, synchronous nut bases 108, synchronous rear support plates 109, guide rail support plates 110, synchronous guide rails 111, BF20 synchronous support bases 112, synchronous sliders 113 and a transverse moving support platform 114, wherein the synchronous front support plates 102 are arranged on two sides of the upper part of the front bottom support frame 101, the synchronous front support plates 102 on two sides are symmetrically arranged, the JF25-130 synchronous motor bases 103 are symmetrically arranged on the synchronous front support plates 102 on two sides, the synchronous motors 105 are symmetrically arranged on the synchronous motor bases 103 on two sides JF25-130 and are connected with the synchronous lead screws 106 through the synchronous couplers 104, the synchronous nuts 107 are symmetrically arranged on the synchronous lead screws 106 on two sides, the synchronous nut bases 108 are arranged on the synchronous nuts 107 on two sides, synchronous rear supporting plates 109 are arranged on two sides of the upper part of a rear end bottom supporting frame 101, the synchronous rear supporting plates 109 on two sides are symmetrically arranged, BF20 synchronous supporting seats 112 are symmetrically arranged on the synchronous rear supporting plates 109 and are respectively connected with synchronous screw rods 106 on two sides, guide rail supporting plates 110 are arranged on the upper parts of the synchronous front supporting plate 102 and the synchronous rear supporting plate 109, the two guide rail supporting plates 110 are symmetrically arranged, synchronous guide rails 111 are arranged on the guide rail supporting plates 110 on two sides, synchronous sliders 113 are arranged on the synchronous guide rails 111 on two sides, two groups of synchronous sliders 113 are arranged in one group, two groups of sliders are symmetrically arranged, a transverse moving supporting platform 114 is symmetrically arranged on the synchronous sliders 113 and the synchronous nut seats 108, and the transverse moving device 2 is provided with a transverse moving frame 201, a JF25-130 transverse moving motor seat 202, a transverse moving coupler 203, a transverse moving motor 204, a motor seat connecting plate 205, a transverse moving screw rod 206, a cutter correcting groove 207, BF20 traverse motion block 208, BF20 traverse motion support seat 209, traverse motion guide rail 210 and traverse motion slide block 211, wherein the middle part of the front end of the traverse motion frame 201 is provided with a motor base connecting plate 205, JF25-130 traverse motion motor base 202 is arranged on the motor base connecting plate 205, traverse motion motor 204 is arranged on JF25-130 traverse motion motor base 202 and is connected with a traverse motion screw 206 through a traverse motion coupler 203, tool aligning grooves 207 are symmetrically arranged at the bottom of the traverse motion frame 201, BF20 traverse motion block 208 is arranged at the middle part of the rear end of the traverse motion frame 201, BF20 traverse motion support seat 209 is arranged on BF20 traverse motion block 208 and is connected with the traverse motion screw 206, traverse motion guide rails 210 are symmetrically arranged at the left side and the right side of the traverse motion frame 201, traverse motion slide blocks 211 are arranged on the traverse motion guide rails 210 at the two sides, two sets of traverse motion slide blocks 211 are symmetrically arranged, a traverse motion device 2 is arranged on the traverse motion support platform 114 of the synchronous motion device 1, the clamping device 3 is provided with a servo electric cylinder 301, an electric cylinder mounting seat 302, a clamping chuck plate 303, a baffle pad connecting plate 304, a right baffle pad 305 and a left baffle pad 306, the servo electric cylinder 301 is arranged on the electric cylinder mounting seat 302, the clamping chuck plate 303 is arranged at the front end of the servo electric cylinder 301, the baffle pad connecting plate 304 is arranged at the front side of the upper part of the clamping chuck plate 303, the right baffle pad 305 is arranged at two ends of the baffle pad connecting plate 304 of the right clamping device 3, the left baffle pad 306 is arranged at two ends of the baffle pad connecting plate 304 of the left clamping device 1, the clamping device 3 is arranged at the bottom of the transverse moving frame 201 of the transverse moving device 2, the left clamping device and the right clamping device 3 are symmetrically arranged, the lifting device 4 is provided with a transverse moving tool rest 401, a lifting guide rail 402, a lifting screw rod 403, a motor lifting seat 404, a lifting slide block 405, a lifting motor mounting seat 406, a lifting coupling 407, a lifting motor 408, a lifting motor 20, a lifting fixing seat 409, A lifting nut 410, a lifting nut seat 411 and a BF20 lifting support seat 412, wherein the lifting motor installation seat 404 is arranged at the upper part of the traverse tool rest 401, the lifting motor 408 is arranged at the upper part of the lifting motor installation seat 404, a lifting screw rod 403 is arranged at the lower part of the lifting motor installation seat 404 and is connected with the lifting motor 408 through a lifting coupling 407, a BK20 lifting fixing seat 409 is arranged at the top end of the lifting screw rod 403, the BF20 lifting support seat 412 is arranged at the bottom end of the lifting screw rod 403, the lifting nut 410 is arranged on the lifting screw rod 403, the lifting nut seat 411 is arranged on the lifting nut 410, the lifting guide rails 402 are symmetrically arranged at two sides of the lifting screw rod 403, the lifting sliders 405 are arranged on the lifting guide rails 402 at two sides, two lifting sliders 405 are arranged symmetrically, the motor lifting seat 404 is arranged on the lifting sliders 405 and the lifting nut seat 411, and the lifting device 4 is connected with the transverse slider 211 through the traverse tool rest 401, install on lateral shifting device 2, slitting saw 5 have protection casing 501, no sawtooth edging saw bit 502, cutting motor 503 and saw bit splint 504, no sawtooth edging saw bit 502 passes through saw bit splint 504 and installs on cutting motor 503 is epaxial, protection casing 501 is installed at cutting motor 503 front end, slitting saw 5 installs on elevating gear 4's motor lift seat 404, length measuring device 6 have encoder gyro wheel 601 and gyro wheel mounting panel 602, encoder gyro wheel 601 installs on gyro wheel mounting panel 602, length measuring device 6 installs the roller both sides at the production line.
The bottom support frame 101 and the transverse moving frame 201 are formed by welding a galvanized seamless hollow square tube and a galvanized seamless hollow rectangular tube.
The synchronous motor 105 and the traverse motor 204 are both servo motors.
The saw blade 502 is a circular saw with a sharpened edge and is made of diamond material.
When the utility model is operated, the length of the extruded wallboard of the extrusion molding machine is measured by the length measuring device 6, when the measured length reaches the required cutting length, the synchronous moving device 1 is started, the synchronous screw 106 is driven to rotate by the synchronous motor 105, thereby the cutting device is driven to synchronously move along with the newly formed wallboard on the roller production line, simultaneously, the clamping devices 3 on the left side and the right side are started, the servo electric cylinder 301 drives the clamping plate 303 to clamp the wallboard, in the operation process of the synchronous moving device 1, the cutting motor 503 is started to drive the saw blade 502 without sawtooth cutting edge to rotate, the lifting device 4 is started, the lifting screw 403 is driven to rotate by the lifting motor 408, thereby the cutting saw 5 is driven to descend, after the cutting position is reached, the lifting device 4 stops operating, the transverse moving device 2 is started, the transverse moving screw 206 is driven to rotate by the transverse moving motor 204, thereby drive elevating gear 4 and slitting saw 5 and carry out lateral shifting, begin to cut the wallboard, after cutting work accomplished, lateral shifting device 2 out of service, elevating gear 4 starts, it rotates to drive lift lead screw 403 through elevator motor 408, thereby drive slitting saw 5 and rise, after rising certain distance, elevating gear 4 out of service, left and right sides clamping device 3 run in reverse, servo electric cylinder 301 drives centre gripping cardboard 303 and releases work to the wallboard, synchronous moving device 1 run in reverse, drive synchronous lead screw 106 through synchronous motor 105 and rotate, thereby drive this cutting device and return to the cutting initial position, when length measuring device 6 records required wallboard cutting length once more, this cutting device carries out work once more, it is reciprocal with this.
It will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in the embodiments described above without departing from the principles and spirit of the utility model, the scope of which is defined by the appended claims.

Claims (4)

1. The utility model provides a wallboard extrusion molding machine cutting device, is by synchronous movement device, lateral shifting device, clamping device, elevating gear, slitting saw and length measuring device constitute, its characterized in that: the synchronous moving device is provided with a bottom support frame, synchronous front support plates, JF25-130 synchronous motor bases, synchronous couplers, synchronous motors, synchronous screw rods, synchronous nuts, synchronous nut bases, synchronous rear support plates, guide rail support plates, synchronous guide rails, BF20 synchronous support bases, synchronous sliders and a transverse moving support platform, wherein the synchronous front support plates are arranged on two sides of the upper portion of the bottom support frame at the front end, the synchronous front support plates at two sides are symmetrically arranged, the JF25-130 synchronous motor bases are symmetrically arranged on the synchronous front support plates at two sides, the synchronous motors are symmetrically arranged on the JF25-130 synchronous motor bases at two sides and are connected with the synchronous screw rods through the synchronous couplers, the synchronous nuts are symmetrically arranged on the synchronous screw rods at two sides, the synchronous nut bases are arranged on the synchronous nuts at two sides, the synchronous rear support plates are arranged on two sides of the upper portion of the bottom support frame at the rear end, synchronous rear supporting plates on two sides are symmetrically installed, BF20 synchronous supporting seats are symmetrically installed on the synchronous rear supporting plates and are respectively connected with synchronous screw rods on two sides, guide rail supporting plates are installed on the upper portions of the synchronous front supporting plates and the synchronous rear supporting plates, two guide rail supporting plates are symmetrically installed, synchronous guide rails are installed on the guide rail supporting plates on two sides, synchronous sliding blocks are installed on the synchronous guide rails on two sides, two groups of sliding blocks are symmetrically installed, a transverse moving supporting platform is symmetrically installed on the synchronous sliding blocks and a synchronous nut seat, the transverse moving device is provided with a transverse moving frame, a JF25-130 transverse moving motor seat, a transverse moving coupler, a transverse moving motor, a motor seat connecting plate, a transverse moving screw rod, a cutter correcting groove, a BF20 transverse moving cushion block, a BF20 transverse moving supporting seat, a transverse moving guide rail and a transverse moving sliding block, a motor seat connecting plate is installed in the middle of the front end of the transverse moving frame, and a JF25-130 transverse moving motor seat is installed on the motor seat connecting plate, the transverse moving motor is arranged on a JF25-130 transverse moving motor base and is connected with a transverse moving lead screw through a transverse moving coupler, the tool correction grooves are symmetrically arranged at the bottom of the transverse moving frame, a BF20 transverse moving cushion block is arranged in the middle of the rear end of the transverse moving frame, a BF20 transverse moving support seat is arranged on a BF20 transverse moving cushion block and is connected with the transverse moving lead screw, transverse moving guide rails are symmetrically arranged at the left side and the right side of the transverse moving frame, transverse moving slide blocks are arranged on transverse moving guide rails at the two sides, two transverse moving slide blocks are a group and are symmetrically arranged, the transverse moving device is arranged on a transverse moving support platform of a synchronous moving device, the clamping device is provided with a servo electric cylinder, an electric cylinder mounting seat, a clamping plate, a blocking pad connecting plate, a right blocking pad and a left blocking pad, the servo electric cylinder is arranged on an electric cylinder mounting seat, the clamping plate is arranged at the front end of the servo electric cylinder, the blocking pad connecting plate is arranged at the front side of the upper part of the clamping plate, the right baffle pad is arranged at two ends of a baffle pad connecting plate of a right clamping device, the left baffle pad is arranged at two ends of a baffle pad connecting plate of a left clamping device, the clamping devices are arranged at the bottom of a transverse moving frame of the transverse moving device, the left clamping device and the right clamping device are symmetrically arranged, the lifting device is provided with a transverse moving knife rest, a lifting guide rail, a lifting screw rod, a motor lifting seat, a lifting slider, a lifting motor mounting seat, a lifting coupler, a lifting motor, a BK20 lifting fixing seat, a lifting nut seat and a BF20 lifting supporting seat, the lifting motor mounting seat is arranged at the upper part of the transverse moving knife rest, the lifting motor is arranged at the upper part of the lifting motor mounting seat, the lifting screw rod is arranged at the lower part of the lifting motor mounting seat and is connected with the lifting motor through the lifting coupler, the BK20 lifting fixing seat is arranged at the top end of the lifting screw rod, the BF20 lifting supporting seat is arranged at the bottom end of the lifting screw rod, the lifting nut is arranged on the lifting screw rod, lifting nut seat is installed on lifting nut, and the lifting guide symmetry is installed in lifting screw both sides, and lifting slide installs on both sides lifting guide, and two lifting slide are a set of, and two sets of slider symmetries are installed, and motor lifting seat is installed on lifting slide and lifting nut seat, and elevating gear is connected with horizontal slider through the sideslip knife rest, installs on the lateral shifting device, the slitting saw protection casing, no sawtooth edging saw bit, cutting motor and saw bit splint have, no sawtooth edging saw bit passes through the saw bit splint to be installed on the cutting motor shaft, the protection casing is installed at cutting motor front end, the slitting saw is installed on elevating gear's motor lifting seat, the length measuring device encoder gyro wheel and gyro wheel mounting panel have, the encoder gyro wheel is installed on the gyro wheel mounting panel, the length measuring device is installed in the roller both sides of production line.
2. The cutting apparatus of a wallboard extrusion molding machine as claimed in claim 1 wherein: the bottom support frame and the transverse moving frame are formed by welding a galvanized seamless hollow square tube and a galvanized seamless hollow rectangular tube.
3. The cutting apparatus of a wallboard extrusion molding machine as claimed in claim 1 wherein: the synchronous motor and the transverse moving motor are servo motors.
4. The cutting apparatus of a wallboard extrusion molding machine as claimed in claim 1 wherein: the saw blade without the sawtooth edging is a circular saw with edging edges and is made of diamond materials.
CN202121756459.6U 2021-07-30 2021-07-30 Cutting device of wallboard extrusion molding machine Expired - Fee Related CN215549594U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121756459.6U CN215549594U (en) 2021-07-30 2021-07-30 Cutting device of wallboard extrusion molding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121756459.6U CN215549594U (en) 2021-07-30 2021-07-30 Cutting device of wallboard extrusion molding machine

Publications (1)

Publication Number Publication Date
CN215549594U true CN215549594U (en) 2022-01-18

Family

ID=79828720

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121756459.6U Expired - Fee Related CN215549594U (en) 2021-07-30 2021-07-30 Cutting device of wallboard extrusion molding machine

Country Status (1)

Country Link
CN (1) CN215549594U (en)

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Granted publication date: 20220118