CN215393701U - Novel mesa cutting equipment - Google Patents
Novel mesa cutting equipment Download PDFInfo
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- CN215393701U CN215393701U CN202121817224.3U CN202121817224U CN215393701U CN 215393701 U CN215393701 U CN 215393701U CN 202121817224 U CN202121817224 U CN 202121817224U CN 215393701 U CN215393701 U CN 215393701U
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- 238000005520 cutting process Methods 0.000 title claims abstract description 90
- 238000003801 milling Methods 0.000 claims abstract description 73
- 238000003825 pressing Methods 0.000 claims abstract description 22
- 238000001179 sorption measurement Methods 0.000 claims abstract description 22
- 239000003638 chemical reducing agent Substances 0.000 claims description 15
- 238000009987 spinning Methods 0.000 claims description 15
- 244000309464 bull Species 0.000 claims description 4
- 238000009434 installation Methods 0.000 claims 4
- 238000000034 method Methods 0.000 description 4
- 230000001105 regulatory effect Effects 0.000 description 4
- 230000001276 controlling effect Effects 0.000 description 2
- 230000008878 coupling Effects 0.000 description 2
- 238000010168 coupling process Methods 0.000 description 2
- 238000005859 coupling reaction Methods 0.000 description 2
- 230000007547 defect Effects 0.000 description 2
- 238000003754 machining Methods 0.000 description 2
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 239000000428 dust Substances 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
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Abstract
The utility model discloses novel table top cutting equipment which comprises a C-axis rotary cutting system, a vacuum adsorption plate moving system, a milling cutter system, a pressing plate system and a guiding rule system, wherein Y-axis motion systems are arranged on two sides of a rack, a gantry is arranged on the Y-axis motion systems on the two sides, an X-axis motion system is arranged on the gantry, a Z-axis motion system is connected onto the X-axis motion system, the C-axis rotary cutting system is arranged at the front part of the Z-axis motion system, a cutting motor is arranged on the C-axis rotary cutting system, a saw blade is arranged on the cutting motor and used for cutting plates at any angle, a vacuum tube adsorption plate moving system is arranged on one side of the Z-axis motion system and used for adsorbing and moving the plates, and a milling cutter system is arranged on the other side of the Z-axis motion system and used for milling the plates; the front part and the right side of the rack are provided with a pressing plate system and a guiding rule system which are used for centering and fixing the plate; according to the C-axis rotary cutting system designed by the utility model, the residual included angle of the internal corner cut by the saw blade is finished through the milling cutter.
Description
Technical Field
The utility model relates to the technical field of intelligent manufacturing equipment, in particular to novel table-board cutting equipment.
Background
At present, the domestic deck panel cutting equipment is coarse cutting equipment, namely a transverse cutting and longitudinal cutting saw blade cutting machine or four-axis rotating saw blade cutting equipment, accurate cutting of the internal corner of the deck and movement of the board in the cutting process cannot be finished, the accurate cutting of the internal corner is generally manual line drawing or water jet cutting, the manual cutting has the defects of unsafety, low efficiency, large dust and low precision because an operation tool is a manual electric tool, and the water jet cutting equipment has the defects of high cost, low efficiency and complex operation due to secondary drawing; must the panel removal among the cutting process and mostly solve through artifical the removal, because can't accurate location after removing, still need artifical secondary to ajust, have inefficiency, waste time and energy the precision poor shortcoming. Therefore, the novel table top cutting equipment is urgently needed to be designed to solve the problems of low automation level, poor internal corner cutting precision and low efficiency of the conventional table top cutting processing equipment.
SUMMERY OF THE UTILITY MODEL
Aiming at the problems in the prior art, the utility model aims to provide novel table top cutting equipment.
The technical scheme adopted by the utility model for solving the technical problems is as follows: a novel table top cutting device comprises a rack, a C-axis rotary cutting system, a vacuum adsorption plate moving system, a milling cutter system, a pressing plate system and a guiding rule system, wherein the C-axis rotary cutting system, the vacuum adsorption plate moving system, the milling cutter system, the pressing plate system and the guiding rule system are mounted on the rack;
the front part and the right side of the rack are respectively provided with a pressing plate system and a guiding rule system which are used for centering and fixing the plates.
Specifically, two sides of the rack are provided with Y-axis guide rails arranged on a Y-axis motion system, the Y-axis guide rails are connected with Y-axis sliding blocks in a sliding manner, the tops of the Y-axis sliding blocks are connected with Y-axis sliding plates, the upper parts of the Y-axis sliding plates are provided with Y-axis servo motors, the Y-axis servo motors are connected with Y-axis gears in a driving manner through Y-axis reducers, the Y-axis gears are meshed with Y-axis racks arranged on the lateral sides of the Y-axis guide rails and used for driving the Y-axis sliding plates to move back and forth through the Y-axis servo motors, the Y-axis sliding plates on the two sides are arranged at two ends of the gantry, the upper part and the lower part of the front part of the gantry are provided with X-axis guide rails, the X-axis guide rails are connected with X-axis sliding blocks in a sliding manner, the X-axis sliding blocks are connected with X-axis sliding plates, the upper parts of the X-axis sliding plates are vertically connected with X-axis drive plates, the X-axis servo motors are connected with X-axis gears in a meshing manner, a vacuum adsorption moves board system is installed to one side of Z axle slide, milling cutter system is installed to the opposite side of Z axle slide, Z axle servo motor is connected through the Z axle shaft coupling in the top of Z axle lead screw, be used for X axle servo motor drive C axle rotary cutting system, vacuum adsorption moves board system and milling cutter system and reciprocates.
Specifically, the C axle servo motor that the rotatory cutting system of C axle was equipped with passes through the C axle motor cabinet and installs at Z axle slide inboard, C axle servo motor passes through C axle speed reducer and connects the C axle pinion, C axle pinion meshing connects the C axle gear wheel, the C axle gear wheel passes through hub connection C axle motor board, the bearing housing that the outside of axle was established through the cover is installed in the bottom of Z axle slide, install the cutting motor on the C axle motor board, install the saw bit on the cutting motor for 360 arbitrary angle rotations of C axle servo motor control cutting motor.
Specifically, the vacuum adsorption moves the board cylinder that the board system was equipped with and installs on Z axle slide through board cylinder fixing base, moves the jar pole of board cylinder and passes through the board cylinder pole mount pad and connect the anti-slide of adorning, moves and installs on the board cylinder pole mount pad and move the board slider, moves the board slider sliding connection and installs the board guide rail that moves on Z axle slide, and the bottom of anti-slide of adorning is passed through the sucking disc keysets and is connected the sucking disc for move the lift of board cylinder control sucking disc and carry out the panel and remove.
Specifically, a milling cutter cylinder arranged in the milling cutter system is installed on a Z-axis sliding plate through a milling cutter cylinder fixing seat, a milling cutter cylinder rod installing seat at the bottom of a cylinder rod of the milling cutter cylinder is connected with a forward-installed sliding plate, a milling cutter sliding block is installed on the forward-installed sliding plate and is in sliding connection with a milling cutter guide rail installed on the Z-axis sliding plate, and a high-speed spindle is installed on the forward-installed sliding plate through a spindle clamp and is used for milling plates by controlling the milling cutter cylinder to lift up and down the high-speed spindle.
Specifically, a plurality of clamp plate systems are all installed to the front portion and the right part of frame, and the dodge double-column jar that clamp plate system was equipped with is installed in the frame through the revolving cylinder mounting panel, and the jar pole top of dodging the double-column jar is passed through the cylinder keysets and is connected revolving cylinder for dodge the lift of double-column jar control revolving cylinder, and the revolving plate is installed on revolving cylinder's jar pole top, and the rotation of revolving cylinder control revolving plate is used for dodging panel and clamp plate fixed.
Specifically, a plurality of guiding rule systems are all installed to the front portion and the right part of frame, and the spinning cylinder that guiding rule system was equipped with passes through the spinning cylinder mount pad and installs in the frame, and the benchmark backup plate regulating plate is installed on the jar pole top of spinning cylinder, installs the benchmark backup plate on the benchmark backup plate regulating plate for it is fixed to the centering of panel front portion and lateral part.
The utility model has the following beneficial effects:
according to the C-axis rotary cutting system designed by the novel table-board cutting equipment, the residual included angle of the internal corner cut by the saw blade is finished through the milling cutter; when the milling cutter system works, the designed pressing plate system is started to press the processed plate tightly, so that the plate is prevented from moving due to cutting force when the milling cutter processes the plate, and the cutting precision is prevented from being influenced due to failure; the designed vacuum adsorption plate moving system can automatically adsorb and grab a plate in the processing process, completes the plate position cutting action, prevents another plate from being cut and damaged in the continuous cutting process, has higher efficiency, does not need secondary straightening after the plate is moved, and liberates the labor force obtained by manual carrying; c axle rotary cutting system, milling cutter system, clamp plate system and vacuum adsorption move the board system, accomplish automatic processing in turn through equipment control system, liberated the labour, machining efficiency is higher, and the machining precision is more guaranteed, makes the course of working get degree of automation higher, and the mesa is opened the material and is processed more intelligently.
Drawings
Fig. 1 is a schematic structural diagram of a novel table top cutting device.
Fig. 2 is a front view of the novel table top cutting device.
Fig. 3 is a schematic view of the structure in the direction D-D in fig. 2.
Fig. 4 is a top view of the novel table top cutting apparatus.
Fig. 5 is a schematic view of the structure in the direction B-B in fig. 4.
Fig. 6 is an enlarged view at a in fig. 5.
Fig. 7 is a schematic structural view of a running rule system.
Fig. 8 is a schematic structural view of the gantry.
FIG. 9 is a schematic view of the structure in the direction J-J in FIG. 8.
Fig. 10 is a schematic structural view of an X-axis motion system.
Fig. 11 is a schematic view of the structure in the direction of G-G in fig. 10.
FIG. 12 is a schematic view of the structure in the direction H-H in FIG. 10.
In the figure: 1-X axis motion system; a 2-Z axis motion system; a 3-Y axis motion system; 4-C axis rotary cutting system; 5-vacuum adsorption board moving system; 6-a milling cutter system; 7-a platen system; 8-a running rule system; 9-a frame; 10-gantry; 1.1-X axis servo motor; 1.2-X axis reducer; 1.3-X axis gear; 1.4-X axis rack; 1.5-X axis drive plate; 1.6-X axis slide block; 1.7-X axis guide rails; 1.8-X axis slide; 2.1-Z axis servo motor; 2.2-Z axis coupler; 2.3-motor direct connection seat; 2.4-Z-axis lead screw; 2.5-Z axis nut seat; 2.6-Z-axis guide rails; 2.7-Z axis slide block; 2.8-Z axis slide plate; 3.1-Y axis servo motor; 3.2-Y axis reducer; 3.3-Y axis slide; 3.4-Y axis rack; 3.5-Y-axis gear; 3.6-Y-axis guide rail; 3.7-Y axis slide block; 4.1-C axis servo motor; 4.2-C shaft speed reducer; 4.3-C shaft gear wheel; 4.4-C-axis pinion; 4.5-C shaft motor base; 4.6-bearing sleeve; 4.7-axis; 4.8-C shaft motor plate; 4.9-cutting motor; 4.10-saw blade; 5.1-moving the board cylinder; 5.2-reversely mounting the sliding plate; 5.3-moving the board cylinder fixing seat; 5.4-moving the plate cylinder rod mounting seat; 5.5-sucking disc adapter plate; 5.6-suction cup; 5.7-moving the board slide block; 5.8-moving the board guide rail; 6.1-milling cutter cylinder; 6.2-installing the sliding plate; 6.3-milling cutter slide block; 6.4-milling cutter cylinder fixing seat; 6.5-a milling cutter cylinder rod mounting seat; 6.6-spindle clamp; 6.7-milling cutter guide rail; 6.8-high speed spindle; 7.1-spinning plate; 7.2-rotating cylinder; 7.3-cylinder adapter plate; 7.4-avoidance of double-column cylinder; 7.5-rotating cylinder mounting plate; 8.1-a reference backup plate; 8.2-adjusting plate of reference backup plate; 8.3-spinning cylinder; 8.4-spin cylinder mount pad.
Detailed Description
The technical solutions in the embodiments of the present invention will be described in further detail in the following clearly and completely with reference to the accompanying drawings in the embodiments of the present invention. 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.
As shown in fig. 1-12, a novel table top cutting device comprises a frame 9, a C-axis rotary cutting system 4, a vacuum adsorption plate moving system 5, a milling cutter system 6, a pressing plate system 7 and a guiding rule system 8, wherein the C-axis rotary cutting system 4, the vacuum adsorption plate moving system 5, the milling cutter system 6, the pressing plate system 7 and the guiding rule system 8 are installed on the frame 9, Y-axis moving systems 3 are installed on two sides of the frame 9, a gantry 10 is installed on the Y-axis moving systems 3 on two sides, an X-axis moving system 1 is installed on the gantry 10, the X-axis moving system 1 is connected with a Z-axis moving system 2, the C-axis rotary cutting system 4 is installed at the front of the Z-axis moving system 2, a cutting motor 4.9 is installed on the C-axis rotary cutting system 4, a saw blade 4.10 is installed on the cutting motor 4.9 and is used for cutting a plate at any angle, a vacuum adsorption plate moving system 5 is installed on one side of the Z-axis moving system 2 and is used for adsorbing and moving the plate, the milling cutter system 6 is installed on the other side of the Z-axis moving system 2, milling the plate;
the front part and the right side of the frame 9 are provided with a pressing plate system 7 and a guiding rule system 8 which are used for centering and fixing the plates.
Y axle guide rail 3.6 that Y axle moving system 3 was equipped with is installed to the both sides of frame 9, sliding connection has Y axle slider 3.7 on Y axle guide rail 3.6, Y axle slider 3.3 is connected at the top, Y axle servo motor 3.1 is installed on Y axle slider 3.3 upper portion, Y axle servo motor 3.1 passes through Y axle speed reducer 3.2 drive connection Y axle gear 3.5, Y axle gear 3.5 meshing connection installs the Y axle rack 3.4 in Y axle guide rail 3.6 side for Y axle servo motor 3.1 drives Y axle slider 3.3 back-and-forth movement, the Y axle slider 3.3 of both sides is installed at the both ends of longmen 10.
The X-axis moving system 1, the X-axis guide rail 1.7 and the X-axis rack 1.4 are fixed on the gantry 10, and the X-axis servo motor 1.1 drives the X-axis gear 1.3 on the X-axis speed reducer 1.2 to rotate through the X-axis speed reducer 1.2 and is meshed with the X-axis rack 1.4 to provide power. An X-axis speed reducer 1.2 is installed on an X-axis driving plate 1.5, the X-axis driving plate 1.5 is connected with an X-axis sliding plate 1.8, an X-axis sliding block 1.6 is installed on the X-axis driving plate 1.5 and the X-axis sliding plate 1.8, and the X-axis sliding plate 1.8 and the X-axis driving plate 1.5 do linear motion left and right along an X-axis guide rail 1.7 on a gantry 10 through power provided by gear and rack meshing. An X-axis guide rail 1.7 is arranged at the upper part and the lower part of the front part of the gantry 10, an X-axis slider 1.6 is connected on the X-axis guide rail 1.7 in a sliding manner, the X-axis slider 1.6 is connected with an X-axis sliding plate 1.8, an X-axis driving plate 1.5 is vertically connected on the upper part of the X-axis sliding plate 1.8, an X-axis servo motor 1.1 is installed on the upper part of the X-axis driving plate 1.5, the X-axis servo motor 1.1 is connected with an X-axis gear 1.3 in a driving manner through an X-axis speed reducer 1.2, and the X-axis gear 1.3 is engaged with an X-axis rack 1.4 installed at the top of the gantry 10 and used for driving the X-axis servo motor 1.1 to drive the X-axis sliding plate 1.8 to move left and right.
The Z-axis moving system 2, a Z-axis guide rail 2.6 is installed on an X-axis sliding plate 2.8, a Z-axis sliding block 2.7 is connected on the Z-axis guide rail 2.6 in a sliding manner, a Z-axis nut seat 2.5 is connected at the middle part of the Z-axis sliding block 2.7, a Z-axis lead screw 2.4 is screwed in the Z-axis nut seat 2.5, a motor direct connection seat 2.3 is arranged on the Z-axis lead screw 2.4, a Z-axis sliding plate 2.8 is connected on the motor direct connection seat 2.3 and the Z-axis nut seat 2.5, the Z-axis sliding plate 2.8 adopts a four-side square frame structure, a C-axis rotary cutting system 4 is installed at the front part of the Z-axis sliding plate 2.8, a vacuum adsorption plate moving system 5 is installed at one side of the Z-axis sliding plate 2.8, a milling cutter system 6 is installed at the other side of the Z-axis sliding plate 2.8, the top end of the Z-axis lead screw 2.4 is connected with a Z-axis servo motor 2.1 through a Z-axis coupling 2.2, and is used for driving the C-axis rotary cutting system 4, the vacuum adsorption plate moving system 5 and the milling cutter moving up and down moving system. Z-axis slide 2.8 is fixed with Z-axis guide rail 2.6 and motor direct-connected seat 2.3 and Z-axis lead screw 2.4, and Z-axis servo motor 2.1 passes through Z-axis shaft coupler 2.2 drive Z-axis lead screw 2.4 and rotates, and Z-axis lead screw 2.4 rotates back and Z-axis nut seat 2.5 meshing produces push-and-pull power, and Z-axis lead screw 2.4 drives Z-axis slide 2.8 and slide on Z-axis guide rail 2.6 wholly along Z-axis slider 2.7 and makes linear motion from top to bottom.
The C-axis rotary cutting system 4 comprises a C-axis servo motor 4.1 arranged on the C-axis rotary cutting system 4 and installed on the inner side of a Z-axis sliding plate 2.8 through a C-axis motor base 4.5, the C-axis servo motor 4.1 is connected with a C-axis pinion 4.4 through a C-axis speed reducer 4.2, the C-axis pinion 4.4 is meshed with a C-axis bull gear 4.3, the C-axis bull gear 4.3 is connected with a C-axis motor plate 4.8 through a shaft 4.7, the outer portion of the shaft 4.7 is installed at the bottom of the Z-axis sliding plate 2.8 through a sleeved bearing sleeve 4.6, a bearing connecting shaft 4.7 is arranged in the bearing sleeve 4.6 from top to bottom, a cutting motor 4.9 is installed on the C-axis motor plate 4.8, and a saw blade 4.10 is installed on the cutting motor 4.9 and used for controlling the cutting motor to rotate at an arbitrary angle of 4.9360 degrees through the C-axis servo motor 4.1. The C-axis servo motor 4.1 drives the C-axis speed reducer 4.2 to drive the C-axis pinion 4.4 to rotate, the C-axis pinion is meshed with the C-axis gearwheel 4.3 to generate power, and the C-axis gearwheel 4.3 drives the shaft 4.7, a C-axis motor plate 4.8 below the shaft and the cutting motor 4.9 to rotate. The saw blade is arranged on the cutting motor 4.9 to cut the plate. The four-axis motion system is driven by a servo motor, and through system control, the cutting motor 4.9 is accurately controlled to execute linear cutting at 360 degrees and any angle.
Vacuum adsorption moves board system 5, vacuum adsorption moves board cylinder 5.1 that board system 5 was equipped with and installs on Z axle slide 2.8 through moving board cylinder fixing base 5.3, move board cylinder 5.1's jar pole and connect anti-slide 5.2 of adorning through moving board cylinder pole mount pad 5.4, move and install on board cylinder pole mount pad 5.4 and move board slider 5.7, move board slider 5.7 sliding connection and install the board guide rail 5.8 that moves on Z axle slide 2.8, the bottom of anti-slide 5.2 is passed through sucking disc keysets 5.5 and is connected sucking disc 5.6, the lift that is used for moving board cylinder 5.1 control sucking disc 5.6 carries out the panel and removes. Move board cylinder 5.1 and move board slider 5.7 and fix on Z axle slide 2.8, be equipped with on the anti-slide 5.2 and move board guide rail 5.8, anti-slide 5.2 of adorning is linear motion from top to bottom along moving board slider 5.7 on the Z axle slide 2.8, move board cylinder 5.1 rod end and fix on anti-slide 5.2 through moving board cylinder pole mount pad 5.4, move board cylinder 5.1 work, move board cylinder 5.1 pole and drive anti-slide 5.2 and sucking disc 5.6 and move to the assigned position (sucking disc 5.6 lower surface here, will exceed cutting saw blade 4.10 bottommost, when sucking disc 5.6 pushes down and adsorbs like this, cutting saw blade 4.10 can avoid the panel).
After moving board cylinder 5.1 pole and stretching out the assigned position, through the height of 2 control sucking discs 5.6 of Z axle moving system when adsorbing, through X, Y, Z, triaxial at last, accomplish the automatic accurate removal of panel and fix a position once more under control system's control.
The pressing plate system 7, a plurality of pressing plate systems 7 are all installed to the front portion and the right part of frame 9, the dodge double-cylinder 7.4 that pressing plate system 7 was equipped with is installed in frame 9 through revolving cylinder mounting panel 7.5, the jar pole top of dodging double-cylinder 7.4 is passed through cylinder keysets 7.3 and is connected revolving cylinder 7.2, a lift for dodging double-cylinder 7.4 control revolving cylinder 7.2, revolving plate 7.1 is installed on the jar pole top of revolving cylinder 7.2, revolving cylinder 7.2 control revolving plate 7.1's rotation, it is fixed with the clamp plate to dodge to panel. Dodge double-column cylinder 7.4 and be connected with revolving cylinder 7.2 through cylinder keysets 7.3, revolving cylinder 7.2 can rotate to 0 degree and rotate to 90 degrees, and the cylinder pole is connected with spinning plate 7.1, dodges double-column cylinder 7.4 and is connected with frame 9 through revolving cylinder mounting panel 7.5, and frame 9 right front respectively has one row. The control system automatically identifies the size of the plate and the path milled by the milling cutter system, and controls the pressing plate system to perform the function of avoiding or pressing the plate 7.1 (the plate 7.1 can be automatically avoided in the range of the cutting path). 1. Avoiding action: when the rotary cylinder 7.2 rod extends out first and returns to 0 degree, the double-column cylinder retracts, and the avoidance action is realized. 2. When the avoidance double-column cylinder 7.4 rises, the rotary cylinder 7.2 rod rotates to 90 degrees and then is pressed down. This is the platen action.
A plurality of guiding rule systems 8 are all installed to guiding rule system 8, the front portion and the right part of frame 9, and spinning cylinder 8.3 that guiding rule system 8 was equipped with is installed on frame 9 through spinning cylinder mount pad 8.4, and benchmark backup plate regulating plate 8.2 is installed on spinning cylinder 8.3's jar pole top, installs benchmark backup plate 8.1 on the benchmark backup plate regulating plate 8.2 for it is fixed to the centering of panel front portion and lateral part. The spinning cylinder 8.3 retracts or extends to have two actions, 1, rotating 90 degrees and then pressing, and 2, extending and rotating to 0 degrees. When the action 1 is executed, the spinning cylinder 8.3 drives the reference backup plate 8.1 to stand up, when the guiding rule is used (after the plate is close to the guiding rule, a system can recognize the position coordinate of the plate according to the preset guiding rule coordinate.) when the action 2 is executed, the spinning cylinder 8.3 drives the reference backup plate 8.1 to rotate to 0 degree (mainly for avoiding a path during milling and cutting and preventing the cutting or milling of the guiding rule)
The present invention is not limited to the above embodiments, and any structural changes made under the teaching of the present invention shall fall within the scope of the present invention, which is similar or similar to the technical solutions of the present invention.
The techniques, shapes, and configurations not described in detail in the present invention are all known techniques.
Claims (7)
1. A novel table top cutting device is characterized by comprising a rack, a C-axis rotary cutting system, a vacuum adsorption plate moving system, a milling cutter system, a pressing plate system and a guiding rule system, wherein the C-axis rotary cutting system, the vacuum adsorption plate moving system, the milling cutter system, the pressing plate system and the guiding rule system are mounted on the rack;
the front part and the right side of the rack are respectively provided with a pressing plate system and a guiding rule system which are used for centering and fixing the plates.
2. The novel table top cutting device according to claim 1, wherein the two sides of the frame are provided with Y-axis guide rails provided with a Y-axis motion system, a Y-axis slide block is connected on the Y-axis guide rails in a sliding manner, the top of the Y-axis slide block is connected with a Y-axis slide plate, the upper part of the Y-axis slide plate is provided with a Y-axis servo motor, the Y-axis servo motor is connected with a Y-axis gear through a Y-axis reducer in a driving manner, the Y-axis gear is connected with a Y-axis rack arranged on the side of the Y-axis guide rails in a meshing manner and used for driving the Y-axis slide plate to move back and forth through the Y-axis servo motor, the Y-axis slide plates on the two sides are arranged at the two ends of the gantry, the front part of the gantry is provided with X-axis guide rails above and below, the X-axis guide rails are connected with X-axis slide blocks, the X-axis slide blocks are connected with X-axis slide plates, the upper part of the X-axis slide plates is vertically connected with an X-axis drive plate, the X-axis servo motor is arranged on the upper part of the X-axis drive plate, and is connected with an X-axis gear through an X-axis reducer in a driving manner, an X-axis gear is meshed with an X-axis rack arranged at the top of the gantry in a connecting manner and used for driving an X-axis sliding plate to move left and right by an X-axis servo motor, a Z-axis guide rail arranged on a Z-axis motion system is arranged on the X-axis sliding plate, a Z-axis sliding block is connected on the Z-axis guide rail in a sliding manner, a Z-axis nut seat is connected in the middle of the Z-axis sliding block, a Z-axis lead screw is screwed in the Z-axis nut seat, a motor direct-connection seat is arranged on the Z-axis lead screw, the motor direct-connection seat and the Z-axis nut seat are connected with a Z-axis sliding plate, the Z-axis sliding plate adopts a four-side square frame structure, a C-axis rotary cutting system is arranged at the front part of the Z-axis sliding plate, a vacuum adsorption plate moving system is arranged at one side of the Z-axis sliding plate, a milling cutter system is arranged at the other side of the Z-axis sliding plate, and the top end of the Z-axis lead screw is connected with a Z-axis servo motor through a Z-axis coupler, the Z-axis servo motor is used for driving the C-axis rotary cutting system, the vacuum adsorption plate moving system and the milling cutter system to move up and down.
3. The novel table top cutting device as claimed in claim 2, wherein the C-axis rotary cutting system is provided with a C-axis servo motor which is installed inside the Z-axis sliding plate through a C-axis motor base, the C-axis servo motor is connected with a C-axis pinion through a C-axis reducer, the C-axis pinion is meshed with a C-axis bull gear, the C-axis bull gear is connected with a C-axis motor plate through a shaft, the outer portion of the shaft is installed at the bottom of the Z-axis sliding plate through a sleeved bearing sleeve, the C-axis motor plate is provided with a cutting motor, and the cutting motor is provided with a saw blade and is used for controlling the cutting motor to rotate at any angle of 360 degrees through the C-axis servo motor.
4. The novel table top cutting device according to claim 2, wherein a moving plate cylinder provided by the vacuum adsorption moving plate system is installed on the Z-axis sliding plate through a moving plate cylinder fixing seat, a cylinder rod of the moving plate cylinder is connected with an inverse installation sliding plate through a moving plate cylinder rod installing seat, a moving plate sliding block is installed on the moving plate cylinder rod installing seat, the moving plate sliding block is connected with a moving plate guide rail installed on the Z-axis sliding plate in a sliding mode, the bottom of the inverse installation sliding plate is connected with a sucker through a sucker adapter plate, and the sucker is used for controlling the lifting of the sucker through the moving plate cylinder to move the plate.
5. The novel table top cutting device according to claim 2, wherein the milling cutter system is provided with a milling cutter cylinder which is mounted on the Z-axis sliding plate through a milling cutter cylinder fixing seat, a milling cutter cylinder rod mounting seat at the bottom of a cylinder rod of the milling cutter cylinder is connected with a forward-mounting sliding plate, a milling cutter slider is mounted on the forward-mounting sliding plate and is slidably connected with a milling cutter guide rail mounted on the Z-axis sliding plate, and a high-speed spindle is mounted on the forward-mounting sliding plate through a spindle clamp and is used for controlling the lifting of the high-speed spindle through the milling cutter cylinder to perform plate milling.
6. The novel table top cutting device according to claim 1, wherein a plurality of pressing plate systems are installed on the front portion and the right portion of the rack, an avoiding double-column cylinder arranged on each pressing plate system is installed on the rack through a rotary cylinder installation plate, the top end of a cylinder rod of the avoiding double-column cylinder is connected with a rotary cylinder through a cylinder adapter plate and used for avoiding the double-column cylinder to control the lifting of the rotary cylinder, and a rotary pressing plate is installed on the top end of the cylinder rod of the rotary cylinder and used for avoiding plates and fixing the pressing plates.
7. The novel table top cutting equipment as claimed in claim 1, wherein a plurality of guiding rule systems are installed on the front portion and the right portion of the rack, a spinning cylinder provided with each guiding rule system is installed on the rack through a spinning cylinder installation seat, a reference guiding plate adjusting plate is installed at the top end of a cylinder rod of each spinning cylinder, and a reference guiding plate is installed on each reference guiding plate adjusting plate and used for centering and fixing the front portion and the side portion of a plate.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202121817224.3U CN215393701U (en) | 2021-08-05 | 2021-08-05 | Novel mesa cutting equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202121817224.3U CN215393701U (en) | 2021-08-05 | 2021-08-05 | Novel mesa cutting equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN215393701U true CN215393701U (en) | 2022-01-04 |
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| CN202121817224.3U Active CN215393701U (en) | 2021-08-05 | 2021-08-05 | Novel mesa cutting equipment |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116372607A (en) * | 2023-04-07 | 2023-07-04 | 大连交通大学 | Device and control method for intelligently milling aluminum alloy chute margin of high-speed rail body |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116372607A (en) * | 2023-04-07 | 2023-07-04 | 大连交通大学 | Device and control method for intelligently milling aluminum alloy chute margin of high-speed rail body |
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