CN221312762U - Metal processing cutting device - Google Patents

Metal processing cutting device Download PDF

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Publication number
CN221312762U
CN221312762U CN202323258663.7U CN202323258663U CN221312762U CN 221312762 U CN221312762 U CN 221312762U CN 202323258663 U CN202323258663 U CN 202323258663U CN 221312762 U CN221312762 U CN 221312762U
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China
Prior art keywords
pair
box
cutter
cutter body
auxiliary
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CN202323258663.7U
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Chinese (zh)
Inventor
王立晖
李兵兵
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Anshan Shengao Automation Manufacturing Co ltd
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Anshan Shengao Automation Manufacturing Co ltd
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Priority to CN202323258663.7U priority Critical patent/CN221312762U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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Abstract

The utility model discloses a metal processing cutting device, which comprises a storage box, a device base, a hanging clamping bracket, a finished product searching box and a cutter body mounting box body, wherein the storage box is arranged on the device base; the utility model relates to the technical field of cutting processing, in the device, a cylindrical metal workpiece is automatically fed and processed through an auxiliary clamping component, then the metal workpiece to be processed is received and pushed through a workpiece receiving and ejecting component, the received cylindrical metal workpiece is clamped and locked by an auxiliary retention and pressurizing structure, and then the cylindrical metal workpiece is cut through a cutting deflection component.

Description

Metal processing cutting device
Technical Field
The utility model relates to the technical field of cutting processing, in particular to a metal processing cutting device.
Background
Metallic materials generally have high hardness and strength, and are difficult to change in shape and size by other processing means. The cutting machining can utilize the rotary cutter to accurately cut and remove the metal material, so as to realize the shape and size machining of the required part, and in the cutting machining process, the cutter blade is contacted with the workpiece and moves relatively, so that the cutter performs the operation of removing the workpiece, redundant materials are removed, and the workpiece with the required shape and size is obtained; the cutting process can also improve the surface quality and precision of metal parts to a certain extent, and can be used for processing various complex curved surfaces, precise holes and the like. For example, "utility model CN 213288925U" provides a metal cutting device, which has the following advantages: this metal cutting device, through placing multiunit columnar work piece respectively on the second inclined plane, a set of columnar work piece is automatic rolls into the semi-circular standing groove, start two sets of first pneumatic cylinders, the output of two sets of first pneumatic cylinders stretches in step and carries out spacing fixedly with columnar work piece, start the second pneumatic cylinder, the output of second pneumatic cylinder slowly stretches, the lifter plate slowly moves down, simultaneously start servo motor, after through the transmission lead screw transmission, the sliding seat left and right sides circulation slip, the cutting tool on the sliding seat is left and right sides and is fed downwards, cut the processing of bar slot can to columnar work piece, after cutting, two sets of first pneumatic cylinders and second pneumatic cylinder all reset, start the third pneumatic cylinder, the output of third pneumatic cylinder is elongated, the kicking block is with the columnar work piece that cuts the processing in the semi-circular standing groove ejecting from the semi-circular standing groove, under the action of gravity, accomplish the unloading operation, after the third pneumatic cylinder drives the kicking block and reset, the columnar work piece on the second inclined plane is automatic rolls to the semi-circular standing groove, thereby accomplish the manual work piece, high continuous processing efficiency, high continuous processing is accomplished, high manual work is accomplished, high efficiency. Generally, a machining device for metal cutting in the industry is more biased to a device for strip-shaped groove cutting treatment on the surface of a columnar workpiece, when the existing metal cutting machining device is used, the existing metal cutting machining device is fed manually, and after the metal cutting treatment is carried out, the existing metal cutting machining device is manually removed, so that the existing metal cutting machining device is large in manual operation labor capacity, easy to fatigue, poor in operation continuity, low in cutting machining efficiency and limited in use, and the existing metal cutting machining device possibly has a technical means for solving the problems.
Disclosure of utility model
In order to achieve the above purpose, the utility model is realized by the following technical scheme: a metal working cutting apparatus comprising: the device comprises a storage box, a device base, a hanging clamping bracket, a finished product searching box and a cutter body mounting box body, wherein the storage box is mounted on the device base, the hanging clamping bracket is mounted on the storage box, the finished product searching box is connected with the device base, the cutter body mounting box body is mounted on the device base through a workpiece elastic receiving assembly, an auxiliary retention and pressurization structure is mounted on the hanging clamping bracket, a cutting deflection assembly is mounted in the cutter body mounting box body, and an auxiliary clamping assembly is mounted on the device base;
The auxiliary retention and pressurization structure includes: the hydraulic device comprises a longitudinal pressurizing hydraulic push rod, a deflection triangular block, a pair of connecting deflection frames, a pair of coupling sliding grooves, a pair of coupling sliding columns, a pair of suspension connecting springs, a pair of spring connecting seats, a structural bearing box body, a pressurizing frame, a clamping block coupling sliding groove, a pair of pressurizing clamping blocks, a pair of clamping block connecting rods, a pair of dagger connecting rods, a pair of connecting rod rotation auxiliary rotating shafts, a pair of pressurizing frame connecting rods and a pressurizing power hydraulic rod;
The hydraulic jack is characterized in that the longitudinal pressurizing hydraulic push rod is installed on the hanging clamping support through a support, a triangular block is connected with the longitudinal pressurizing hydraulic push rod, the triangular block is movably connected with the structural bearing box body, a pair of connecting deflection frames are installed on the hanging clamping support respectively, a pair of coupling sliding grooves are formed in the connecting deflection frames respectively, a pair of coupling sliding columns are installed on two sides of the structural bearing box body respectively, the coupling sliding columns are inserted on a pair of coupling sliding grooves respectively, a pair of hanging connecting springs are installed on a pair of coupling sliding columns respectively, a pair of hanging connecting springs are connected with a pair of spring connecting seats respectively, a pair of spring connecting seats are installed on two sides of the connecting frames respectively, the pressurizing frames are installed in the structural bearing box body, a pair of pressurizing clamping blocks are connected with the coupling sliding grooves of the clamping blocks respectively, a pair of pressurizing clamping blocks are connected with the coupling sliding grooves of the structural bearing box body respectively through a pair of rotating shafts respectively, a pair of rotating shafts are connected with the pair of rotating shafts respectively, and the pair of rotating shafts are connected with the connecting shafts respectively through the pair of rotating shafts respectively, and the pair of rotating shafts are connected with the auxiliary connecting shafts respectively.
In the above description, the cylindrical metal workpiece is placed in the storage box, the cylindrical metal workpiece automatically slides to the upper side of the cutter body mounting box body along the device base, at this time, the cutter body mounting box body is moved downwards by the workpiece receiving and ejecting assembly, so that the cylindrical metal workpiece falls to a designated position and is received by an arc receiving surface arranged on the cutter body mounting box body, the cylindrical metal workpiece is conveniently fixed and clamped by an auxiliary fixing and pressing structure arranged on the upper hanging and clamping bracket, the redundant cylindrical metal workpiece is blocked and temporarily limited by the auxiliary clamping and stopping assembly, the fixed cylindrical metal workpiece is subjected to cutting operation by the cutting and shifting assembly in the cutter body mounting box body, the finished cylindrical metal workpiece is loosened by the auxiliary fixing and pressing structure, is pushed by the workpiece receiving and ejecting assembly, and the metal workpiece falls to the direction of the finished product collecting box and moves, and falls into the finished product box after being released by the auxiliary clamping and stopping assembly; the hydraulic pushing rod is driven to longitudinally pressurize, the shifting triangular block is driven to horizontally move, the shifting triangular block is further driven to push the structure bearing box body to move downwards along the connecting shifting frame, the pair of coupling sliding columns slide in the pair of coupling sliding grooves, meanwhile, the pair of suspension connecting springs are compressed by the coupling sliding columns and the spring connecting seats, after the structure bearing box body descends to a proper position, the hydraulic rod is driven to stretch, the pair of dagger connecting rods rotate along the connecting rod rotation auxiliary rotating shaft, the pair of clamping block connecting rods are further driven to approach each other, and the pair of pressurizing clamping blocks are further driven to relatively slide along the clamping block coupling sliding grooves until two ends of a cylindrical metal machined part are tightly clamped until locking.
Preferably, the cutting index assembly comprises: the cutter body moving motor, the cutter body driving threaded rod, a pair of threaded rod bearing brackets and a module cutter head;
The cutter body moving motor is arranged in the cutter body mounting box body, the cutter body driving threaded rod is connected with the cutter body moving motor, the cutter body driving threaded rod is inserted into a pair of threaded rod bearing brackets, the pair of threaded rod bearing brackets are respectively arranged in the cutter body mounting box body, a transverse slot hole is formed in the cutter body mounting box body, the module cutter head is arranged on the cutter body driving threaded rod, and the module cutter head is connected with the cutter body mounting box body through the transverse slot hole;
In the above description, the cutter body moving motor drives the cutter body to drive the threaded rod to rotate on the pair of threaded rod bearing brackets, so that the module cutter head slides reciprocally in the transverse slot, and the hydraulic push rod is pressurized slowly in the process of longitudinal pressurization, so that the cylindrical metal workpiece is cut slowly until the cylindrical metal workpiece is processed into a finished product.
Preferably, the workpiece receiving assembly includes: the tool box coupling groove, the pair of tool box connecting springs, the bidirectional magnetic electromagnet and the permanent magnet in the tool box;
The device base is provided with the cutter box coupling groove, the cutter body mounting box body is mounted in the cutter box coupling groove, a pair of cutter box connecting springs are respectively mounted at the bottom of the cutter body mounting box body, the cutter box connecting springs are respectively connected with the device base, the bidirectional magnetic electromagnet is mounted in the cutter box coupling groove, the permanent magnet in the cutter box is mounted in the cutter body mounting box body, and the permanent magnet in the cutter box is opposite to the bidirectional magnetic electromagnet;
It should be noted that, in the above, the cutter body mounting box body in the cutter box coupling groove adjusts the direction of magnetic force through the bidirectional magnetic force electromagnet when needs reciprocate, when the magnetic force of bidirectional magnetic force electromagnet and the interior permanent magnet of cutter box is opposite, a pair of cutter box coupling spring is stretched, cutter body mounting box body can be pushed upwards to slide, it is ejecting to be cylindricality metal machined part, when the same needs accept cylindricality metal machined part, bidirectional magnetic force electromagnet magnetic force is opposite with the magnetic force of the interior permanent magnet of cutter box for a pair of cutter box coupling spring is compressed, and then cutter body mounting box body slides down so that accomplish the upper and lower slip operation to cutter body mounting box body.
Preferably, the auxiliary locking assembly includes: the pair of clamping auxiliary blocks, the plurality of auxiliary block connecting springs and the plurality of clamping electromagnets;
The auxiliary block connecting springs are respectively arranged below the pair of clamping auxiliary blocks, the auxiliary block connecting springs are respectively connected with the device base, and the clamping electromagnets are respectively arranged on the pair of clamping auxiliary blocks and the device base;
In the above description, when the corresponding locking electromagnet is energized, an attractive force is generated, so that one side of the locking auxiliary block is attached to the device base, and a gradient is formed at this time, so that the blocked cylindrical metal workpiece is out of the way and slides down.
Preferably, the pressurizing clamping block is provided with an anti-skid decompression rubber pad;
preferably, the cutter body mounting box body is provided with an arc-shaped bearing surface.
Advantageous effects
The utility model provides a metal processing cutting device. The metal processing cutting device has the following beneficial effects that this metal processing cutting device compares with prior art: this device carries out automatic feeding processing through supplementary clamping subassembly to cylindricality metal machined part, later receives and the propelling movement through the machined part connects the bullet subassembly to the metal machined part that needs to process, and the cylindricality metal machined part after being received is held the locking of supplementary location pressurization structure centre gripping, carries out cutting processing to cylindricality metal machined part through the cutting subassembly that shifts, compares normal cutting process, and this device can adjust the range that cutter body installation box descends for cutting processing's degree is controllable and the precision is higher, automatic feeding and discharging practices thrift a large amount of cost of labor and time cost.
Drawings
Fig. 1 is a schematic view of a metal working cutting device according to the present utility model.
Fig. 2 is an enlarged partial schematic view of "a" in fig. 1.
Fig. 3 is an enlarged partial schematic view of "B" in fig. 1.
Fig. 4 is a schematic view of an auxiliary retention and pressurization structure of a metal working cutting device according to the present utility model.
FIG. 5 is a schematic view of a cutting index assembly of a metal working cutting apparatus according to the present utility model.
In the figure: 1. a storage bin; 2. a device base; 3. hanging a clamping bracket; 4. searching a finished product box; 5. the cutter body is provided with a box body; 6. a hydraulic push rod longitudinally pressurized; 7. a deflection triangular block; 8. connecting with a deflection frame; 9. a coupling chute; 10. a coupling spool; 11. a suspension connection spring; 12. a spring connecting seat; 13. a structural load-bearing box; 14. a pressing frame; 15. the clamping block is coupled with the chute; 16. a pressing clamping block; 17. a clamp block connecting rod; 18. dagger type connecting rod; 19. the connecting rod rotates an auxiliary rotating shaft; 20. a pressing frame connecting rod; 21. pressing a power hydraulic rod; 22. a cutter body movement motor; 23. the cutter body drives the threaded rod; 24. a threaded rod bearing bracket; 25. a modular cutter head; 26. a tool box coupling groove; 27. the cutter box is connected with a spring; 28. a bi-directional magnetic electromagnet; 29. permanent magnets in the tool box; 30. a locking auxiliary block; 31. the auxiliary block is connected with a spring; 32. the electromagnet is locked.
Detailed Description
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.
All electric parts and the adaptive power supply are connected through wires by the person skilled in the art, and a proper controller and encoder should be selected according to actual conditions so as to meet control requirements, specific connection and control sequence, and the electric connection is completed by referring to the following working principles in the working sequence among the electric parts, and the detailed connection means are known in the art, and mainly introduce the working principles and processes as follows, and do not describe the electric control.
Examples
The present invention will be described in detail with reference to the accompanying drawings, as shown in fig. 1 to 5, a metal working cutting apparatus comprising: the device comprises a storage box 1, a device base 2, a hanging clamping bracket 3, a finished product searching box 4 and a cutter body mounting box body 5, wherein the storage box 1 is mounted on the device base 2, the hanging clamping bracket 3 is mounted on the storage box 1, the finished product searching box 4 is connected with the device base 2, the cutter body mounting box body 5 is mounted on the device base 2 through a workpiece elastic receiving component, an auxiliary retention and pressing structure is mounted on the hanging clamping bracket 3, a cutting deflection component is mounted in the cutter body mounting box body 5, An auxiliary clamping component is arranged on the device base 2; The auxiliary retention and pressurization structure includes: a longitudinal pressurizing hydraulic push rod 6, a shifting triangular block 7, a pair of connecting shifting frames 8, a pair of coupling sliding grooves 9, a pair of coupling sliding columns 10, a pair of suspension connecting springs 11, a pair of spring connecting seats 12, a structural bearing box 13, a pressurizing frame 14, a clamping block coupling sliding groove 15, a pair of pressurizing clamping blocks 16, a pair of clamping block connecting rods 17, a pair of dagger connecting rods 18, a pair of connecting rod rotating auxiliary rotating shafts 19, a pair of pressurizing frame connecting rods 20 and a pressurizing power hydraulic rod 21; The vertical pressurizing hydraulic push rod 6 is arranged on the hanging clamping bracket 3 through a bracket, the deflection triangular block 7 is connected with the vertical pressurizing hydraulic push rod 6, the deflection triangular block 7 is movably connected with the structure bearing box 13, a pair of connecting deflection frames 8 are respectively arranged on the hanging clamping bracket 3, a pair of coupling sliding grooves 9 are respectively arranged on the connecting deflection frames 8, a pair of coupling sliding columns 10 are respectively arranged on two sides of the structure bearing box 13, a pair of coupling sliding columns 10 are respectively inserted on the pair of coupling sliding grooves 9, a pair of hanging connecting springs 11 are respectively arranged on the pair of coupling sliding columns 10, And a pair of suspension connecting springs 11 are respectively connected with a pair of spring connecting seats 12, a pair of spring connecting seats 12 are respectively arranged at two sides of a pair of connecting deflection frames 8, a pressurizing frame 14 is arranged in a structural bearing box body 13, a clamping block coupling chute 15 is arranged on the pressurizing frame 14, a pair of pressurizing clamping blocks 16 are respectively connected with the clamping block coupling chute 15, a pair of pressurizing clamping blocks 16 are respectively connected with a pair of clamping block connecting rods 17 through rotating shafts, a pair of clamping block connecting rods 17 are respectively connected with a pair of dagger connecting rods 18 through rotating shafts, a pair of connecting rod rotation auxiliary rotating shafts 19 are respectively arranged on a pair of dagger connecting rods 18, the pair of connecting rod rotation auxiliary rotating shafts 19 are respectively connected with the inner side of the structural bearing box body 13, the pair of dagger connecting rods 18 are respectively connected with the pressing power hydraulic rod 21 through rotating shafts, the pair of pressing frame connecting rods 20 are respectively connected with the pressing frame 14 through rotating shafts, and the pair of pressing frame connecting rods 20 are respectively connected with the pair of dagger connecting rods 18 through rotating shafts; The cutting index assembly comprises: a cutter body movement motor 22, a cutter body driving threaded rod 23, a pair of threaded rod bearing brackets 24 and a modular cutter head 25; the cutter body moving motor 22 is installed in the cutter body installing box body 5, the cutter body driving threaded rod 23 is connected with the cutter body moving motor 22, the cutter body driving threaded rod 23 is inserted into a pair of threaded rod bearing brackets 24, the pair of threaded rod bearing brackets 24 are respectively installed in the cutter body installing box body 5, a transverse slot hole is formed in the cutter body installing box body 5, the module cutter head 25 is installed on the cutter body driving threaded rod 23, and the module cutter head 25 is connected with the cutter body installing box body 5 through the transverse slot hole; The machined part connects bullet subassembly includes: the tool box coupling groove 26, a pair of tool box connecting springs 27, a bidirectional magnetic electromagnet 28 and a tool box inner permanent magnet 29; the device base 2 is provided with a cutter box coupling groove 26, the cutter body installation box body 5 is installed in the cutter box coupling groove 26, a pair of cutter box connecting springs 27 are respectively installed at the bottom of the cutter body installation box body 5, the cutter box connecting springs 27 are respectively connected with the device base 2, the bidirectional magnetic electromagnet 28 is installed in the cutter box coupling groove 26, the permanent magnet 29 in the cutter box is installed in the cutter body installation box body 5, and the permanent magnet 29 in the cutter box is opposite to the bidirectional magnetic electromagnet 28; The auxiliary clamping assembly comprises: a pair of locking auxiliary blocks 30, a plurality of auxiliary block connecting springs 31, and a plurality of locking electromagnets 32; the auxiliary block connecting springs 31 are respectively installed below the pair of locking auxiliary blocks 30, the auxiliary block connecting springs 31 are respectively connected with the device base 2, and the locking electromagnets 32 are respectively installed on the pair of locking auxiliary blocks 30 and the device base 2.
According to the results of fig. 1-5, a cylindrical metal workpiece is placed in a storage box 1, the cylindrical metal workpiece automatically slides to the upper side of a cutter body installation box 5 below along a device base 2, at the moment, the cutter body installation box 5 is downwards moved by a workpiece receiving and ejecting assembly, so that the cylindrical metal workpiece falls to a designated position and is received by an arc-shaped receiving surface arranged on the cutter body installation box 5, the cylindrical metal workpiece is conveniently and fixedly clamped by an auxiliary retention and pressing structure arranged on an upper suspension clamping bracket 3, redundant cylindrical metal workpiece is blocked and temporarily limited by an auxiliary clamping assembly, the cylindrical metal workpiece after being fixed is subjected to cutting operation by a cutting and shifting assembly in the cutter body installation box 5, the cylindrical metal workpiece after being completed is released by the auxiliary retention and pressing structure and pushed by a workpiece receiving and ejecting assembly, and the cylindrical metal workpiece falls to a finished product collecting box 4 and moves, and falls into the finished product collecting box 4 after being released by the auxiliary clamping assembly; the vertical pressurizing hydraulic push rod 6 is driven to drive the deflection triangular block 7 to horizontally move, so that the deflection triangular block 7 pushes the structure bearing box 13 to move downwards along the connecting deflection frame 8, the pair of coupling sliding columns 10 slide in the pair of coupling sliding grooves 9, meanwhile, the pair of suspension connecting springs 11 are compressed by the coupling sliding columns 10 and the spring connecting seats 12, after the structure bearing box 13 descends to a proper position, the pressurizing power hydraulic rod 21 is driven to stretch, the pair of dagger connecting rods 18 rotate along the connecting rod rotating auxiliary rotating shaft 19, the pair of clamping block connecting rods 17 are driven to approach each other, and the pair of pressurizing clamping blocks 16 are pushed to relatively slide along the clamping block coupling sliding grooves 15 until the two ends of a cylindrical metal workpiece are tightly clamped until locking; the cutter body moving motor 22 drives the cutter body to drive the threaded rod 23 to rotate on the pair of threaded rod bearing brackets 24, so that the module cutter head 25 slides reciprocally in the transverse slotted hole, and in the process, the longitudinal pressurizing hydraulic push rod 6 slowly pressurizes, so that the cylindrical metal workpiece is slowly cut until the cylindrical metal workpiece is processed into a finished product; the cutter body mounting box body 5 in the cutter box coupling groove 26 adjusts the direction of magnetic force through the bidirectional magnetic force electromagnet 28 when the cutter box coupling groove needs to move up and down, when the magnetic force of the bidirectional magnetic force electromagnet 28 is opposite to the magnetic force of the permanent magnet 29 in the cutter box, the pair of cutter box connecting springs 27 are stretched, the cutter body mounting box body 5 can be pushed to slide upwards to eject the cylindrical metal workpiece, and when the cylindrical metal workpiece needs to be received in the same way, the magnetic force of the bidirectional magnetic force electromagnet 28 is opposite to the magnetic force of the permanent magnet 29 in the cutter box, so that the pair of cutter box connecting springs 27 are compressed, and the cutter body mounting box body 5 slides downwards to finish the up-down sliding operation of the cutter body mounting box body 5; when the corresponding locking electromagnet 32 is energized, attractive force is generated, so that one side of the locking auxiliary block 30 is attached to the device base 2, and a slope is formed at the moment, so that the blocked cylindrical metal workpiece is out of the way and falls down.
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.

Claims (6)

1. A metal working cutting apparatus comprising: the device comprises a storage box (1), a device base (2), a hanging clamping bracket (3), a finished product searching box (4) and a cutter body mounting box body (5), and is characterized in that the storage box (1) is mounted on the device base (2), the hanging clamping bracket (3) is mounted on the storage box (1), the finished product searching box (4) is connected with the device base (2), the cutter body mounting box body (5) is mounted on the device base (2) through a workpiece elastic receiving assembly, an auxiliary retention and pressurizing structure is mounted on the hanging clamping bracket (3), a cutting deflection assembly is mounted in the cutter body mounting box body (5), and an auxiliary clamping assembly is mounted on the device base (2);
The auxiliary retention and pressurization structure includes: the hydraulic pressing device comprises a longitudinal pressing hydraulic pushing rod (6), a deflection triangular block (7), a pair of connecting deflection frames (8), a pair of coupling sliding grooves (9), a pair of coupling sliding columns (10), a pair of suspension connecting springs (11), a pair of spring connecting seats (12), a structural bearing box body (13), a pressing frame (14), a clamping block coupling sliding groove (15), a pair of pressing clamping blocks (16), a pair of clamping block connecting rods (17), a pair of dagger connecting rods (18), a pair of connecting rod rotation auxiliary rotating shafts (19), a pair of pressing frame connecting rods (20) and a pressing power hydraulic rod (21);
The vertical pressurizing hydraulic push rod (6) is arranged on the hanging clamping bracket (3) through a bracket, the shifting triangular block (7) is connected with the vertical pressurizing hydraulic push rod (6), the shifting triangular block (7) is movably connected with the structure bearing box body (13), a pair of connecting shifting frames (8) are respectively arranged on the hanging clamping bracket (3), a pair of coupling sliding grooves (9) are respectively arranged on the connecting shifting frames (8), a pair of coupling sliding columns (10) are respectively arranged on two sides of the structure bearing box body (13), a pair of coupling sliding columns (10) are respectively inserted on a pair of coupling sliding grooves (9), a pair of hanging connecting springs (11) are respectively arranged on a pair of coupling sliding columns (10), a pair of hanging connecting springs (11) are respectively connected with a pair of spring connecting seats (12), a pair of spring connecting seats (12) are respectively arranged on a pair of connecting frames (8) and are respectively arranged on two sides of coupling sliding grooves (14), a pair of pressurizing clamping blocks (14) are respectively arranged on the two sides of the structure bearing box body (13), and a pair of pressurization clamp splice (16) are respectively through the pivot with a pair of clamp splice connecting rod (17), a pair of clamp splice connecting rod (17) are respectively through the pivot with a pair of dagger connecting rod (18) are connected, a pair of connecting rod rotation auxiliary rotating shaft (19) are installed respectively on a pair of dagger connecting rod (18), and a pair of connecting rod rotation auxiliary rotating shaft (19) respectively with structure bears the inboard of box (13) and is connected, a pair of dagger connecting rod (18) respectively through the pivot with be connected with pressure power hydraulic stem (21), a pair of pressurization frame connecting rod (20) respectively through the pivot with pressure frame (14), and a pair of pressurization frame connecting rod (20) respectively through the pivot with a pair of dagger connecting rod (18) are connected.
2. A metal working cutting device as recited in claim 1 wherein the cutting index assembly comprises: the cutter body moving motor (22), a cutter body driving threaded rod (23), a pair of threaded rod bearing brackets (24) and a module cutter head (25);
Cutter body motion motor (22) are installed in cutter body installation box (5), cutter body drive threaded rod (23) with cutter body motion motor (22) are connected, just cutter body drive threaded rod (23) cartridge is in a pair of on threaded rod bears support (24), a pair of threaded rod bears support (24) and installs respectively in cutter body installation box (5), transverse slotted hole has been seted up on cutter body installation box (5), module tool bit (25) are installed on cutter body drive threaded rod (23), just module tool bit (25) are passed through transverse slotted hole with cutter body installation box (5) are connected.
3. The metal working cutting apparatus of claim 2, wherein the workpiece pick-up assembly comprises: a tool box coupling groove (26), a pair of tool box connecting springs (27), a bidirectional magnetic electromagnet (28) and a tool box inner permanent magnet (29);
The device is characterized in that the device base (2) is provided with a cutter box coupling groove (26), the cutter body installation box body (5) is installed in the cutter box coupling groove (26), a pair of cutter box connecting springs (27) are respectively installed at the bottom of the cutter body installation box body (5), and a pair of cutter box connecting springs (27) are respectively connected with the device base (2), the bidirectional magnetic electromagnet (28) is installed in the cutter box coupling groove (26), the permanent magnet (29) in the cutter box is installed in the cutter body installation box body (5), and the permanent magnet (29) in the cutter box is just right the bidirectional magnetic electromagnet (28).
4. A metal working cutting device as set forth in claim 3 wherein the auxiliary detent assembly comprises: a pair of locking auxiliary blocks (30), a plurality of auxiliary block connecting springs (31) and a plurality of locking electromagnets (32);
The auxiliary block connecting springs (31) are respectively arranged below the clamping auxiliary blocks (30), the auxiliary block connecting springs (31) are respectively connected with the device base (2), and the clamping electromagnets (32) are respectively arranged on the clamping auxiliary blocks (30) and the device base (2).
5. A metal working cutting device according to claim 4, characterized in that the pressure clamp block (16) is provided with anti-slip pressure relief pads.
6. A metal working cutting device according to claim 5, characterized in that the blade mounting housing (5) is provided with an arc-shaped receiving surface.
CN202323258663.7U 2023-11-30 2023-11-30 Metal processing cutting device Active CN221312762U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323258663.7U CN221312762U (en) 2023-11-30 2023-11-30 Metal processing cutting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323258663.7U CN221312762U (en) 2023-11-30 2023-11-30 Metal processing cutting device

Publications (1)

Publication Number Publication Date
CN221312762U true CN221312762U (en) 2024-07-12

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323258663.7U Active CN221312762U (en) 2023-11-30 2023-11-30 Metal processing cutting device

Country Status (1)

Country Link
CN (1) CN221312762U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119567461A (en) * 2024-11-11 2025-03-07 湖南中塑新材料科技有限公司 Waste plastic processing equipment capable of adjusting crushing mode

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119567461A (en) * 2024-11-11 2025-03-07 湖南中塑新材料科技有限公司 Waste plastic processing equipment capable of adjusting crushing mode

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