CN114054640A - High-efficient pneumatic wire cutting machine - Google Patents
High-efficient pneumatic wire cutting machine Download PDFInfo
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- CN114054640A CN114054640A CN202111313389.1A CN202111313389A CN114054640A CN 114054640 A CN114054640 A CN 114054640A CN 202111313389 A CN202111313389 A CN 202111313389A CN 114054640 A CN114054640 A CN 114054640A
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- 230000005540 biological transmission Effects 0.000 claims abstract description 93
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- 238000006073 displacement reaction Methods 0.000 abstract description 7
- 238000001125 extrusion Methods 0.000 abstract description 6
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- 238000004519 manufacturing process Methods 0.000 description 3
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21F—WORKING OR PROCESSING OF METAL WIRE
- B21F11/00—Cutting wire
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21F—WORKING OR PROCESSING OF METAL WIRE
- B21F1/00—Bending wire other than coiling; Straightening wire
- B21F1/02—Straightening
- B21F1/026—Straightening and cutting
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21F—WORKING OR PROCESSING OF METAL WIRE
- B21F23/00—Feeding wire in wire-working machines or apparatus
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Abstract
The utility model relates to the field of wire cutting machines, in particular to a high-efficiency pneumatic wire cutting machine. The technical problem to be solved by the technical scheme is as follows: the existing wire cutting machine has insufficient stability for limiting the required cutting wire body, and reduces the subsequent cutting efficiency. The device comprises a straightening device, a connecting cover plate, a guide device, a positioning device, a servo motor, a toothed belt wheel, a toothed belt and a transmission device, wherein the guide device is fixedly connected to the inner end face of the positioning device, and the connecting cover plate is symmetrically and fixedly connected to the outer end face of the positioning device. The beneficial effects of this technical scheme do: when cutting the line body, the user accessible fixed cylinder drives the connecting card axial lower part displacement of bottom, and the connecting card axle can drive connecting card seat and the slider of pegging graft to the lower part displacement, and the slider of pegging graft can directly peg graft to the upper portion of direction swash plate, and the direction swash plate can be at the spacing displacement to inside of the slider of pegging graft under, and then the extrusion cuts the cutter and carries out quick accurate operation of cutting to the line body.
Description
Technical Field
The utility model relates to the field of wire cutting machines, in particular to a high-efficiency pneumatic wire cutting machine.
Background
Pneumatic wire cutting machine can carry out quick cutting operation to various cables to convenient follow-up the length that makes this cable that cuts can satisfy the user needs, but current it is not enough to the required stability that carries on spacing of the line body that cuts, and the accurate nature of direction is not enough when cutting the line body simultaneously, has reduced follow-up efficiency to line body processing.
Through patent search, there are the following known prior art solutions:
patent 1: the utility model discloses an electric wire cutting machine, which comprises a cutting machine body, a tension controller and a wire releasing device, wherein the tension controller is arranged on the left side of the cutting machine, the wire releasing device is arranged on the left side of the tension controller, the cutting machine body comprises a vertically arranged support rod and a vertically arranged wire cutting machine box body, the upper end face of the support rod is fixedly provided with a control panel, the wire cutting machine box body is internally provided with a cavity, and the inner wall of the cutting machine body is provided with a sliding groove. The wire cutting machine provided by the utility model is provided with the unreeling device, the tension controller and the wire cutting machine box body, the unreeling of the unreeling device and the telescopic tension controlled by the tension controller can save the reciprocating walking stay wire of an operator, so that the working strength of the operator is reduced, the production efficiency is further improved, and the production cost is reduced; through first holder, second holder and the cutter in the wire cutting device, can improve the accuracy of electric wire cutting length.
Patent 2: the utility model relates to an automatic wire cutting machine, which is characterized in that the machine comprises the following components in percentage by weight: the automatic wire cutting machine comprises a frame, conveying mechanism, the conduit, cut out line mechanism, alignment mechanism and anticollision subassembly, conveying mechanism, cut out line mechanism and alignment mechanism set gradually in the frame, be provided with the conduit between conveying mechanism and the wire cutting mechanism, conveying mechanism and alignment mechanism set up respectively in the frame both ends, conveying mechanism includes at least two sets of first roller group, be provided with the conduit between the adjacent first roller group, wire cutting mechanism is located between conveying mechanism and the alignment mechanism, wire cutting mechanism leans on frame one side to be provided with the wire cutting tool, the cable groove has been seted up in the frame, the wire cutting recess has been seted up to wire cutting tool below position on the cable groove, the anticollision subassembly sets up in the wire cutting recess. Through conveying mechanism, wire cutting mechanism and alignment mechanism's setting, can carry out automatic wire cutting to cable or similar wire rod, have the advantage that reduces personnel selection cost and manufacturing cost.
Through the above search, the above technical solutions cannot affect the novelty of the present invention, and the mutual combination of the above patent documents cannot destroy the creativity of the present invention.
Disclosure of Invention
The technical problem to be solved by the technical scheme is as follows: the existing wire cutting machine has insufficient stability for limiting the required cutting wire body, and reduces the subsequent cutting efficiency.
In order to realize the purpose, the utility model adopts the technical scheme that: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener, connection apron, guider, positioner, servo motor, toothed belt wheel, toothed belt and transmission device, positioner's interior terminal surface fixedly connected with guider, and be located positioner's outer terminal surface symmetry fixedly connected with connection apron, positioner's interior terminal surface symmetry rotation joint has three transmission device of group, and is located three down transmission device's outer terminal surface fixedly connected with toothed belt wheel, three group toothed belt wheel meshes through toothed belt and rotates the connection, is located upper portion transmission device's outer terminal surface fixedly connected with servo motor, positioner's preceding terminal surface fixedly connected with straightener.
The beneficial effects of this technical scheme do: before the line body is cut, a user can guide the line body to the inside of the guide device through the straightening device due to the metal wire arranged inside the line body, the subsequent rapid conveying and cutting operation of the line body is convenient, when the line body is cut, the user can start the servo motor through the external control device, at the moment, the servo motor can drive the transmission device inside to rotate, meanwhile, the upper transmission device and the lower transmission device are meshed and connected through the positioning gear, when the transmission device on the upper part rotates, the transmission device on the lower part can be driven to rotate reversely, the three transmission devices on the lower part synchronously rotate through the toothed belt wheel and the toothed belt, the three transmission devices on the lower part can synchronously rotate, and then the transmission devices on the upper parts of the other two groups are driven to synchronously rotate reversely, so that the three transmission devices can synchronously rotate reversely, meanwhile, when the transmission device rotates, the transmission device can simultaneously drive the three groups of line bodies to pass through the guide of the guide sliding cylinder and the positioning cylinder, so that the wire body positioned at the rear part can be directly guided to the bottom of the guiding device, the wire body positioned at the front part can be driven by a plurality of groups of straightening rollers in the straightening device to carry out straightening operation, and the wire body positioned at the front part passes through the inside of the positioning cylinder, meanwhile, the fixed cylinder can drive the connecting clamp at the bottom to displace towards the lower part, the connecting clamp shaft can drive the connecting clamp seat and the inserting slide block to displace towards the lower part, the inserting slide block can be directly inserted to the upper part of the guide inclined plate, so that the guide inclined plate can displace towards the inside under the limit of the inserting slide block, and then the extrusion cutter carries out quick accurate operation of cutting to the line body, cuts the back of accomplishing, and the connection card axle resets, and snap ring can drive two sets of fixed slides and reset inside positioner this moment, and convenient follow-up circulation cuts.
The technical problem to be solved by the improvement of the technical scheme is as follows: the existing wire cutting machine has the defects of poor guiding accuracy when cutting the wire body, and reduces the subsequent machining efficiency of the wire body.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the guiding device comprises a fixed cylinder, a connecting clamping seat, an inserting sliding block and a connecting clamping shaft, wherein the connecting clamping shaft is symmetrically clamped and connected on the lower end face of the fixed cylinder in a sliding mode, the connecting clamping shaft is located on the lower end face of the connecting clamping shaft, the connecting clamping seat is fixedly connected on the lower end face of the connecting clamping seat in a symmetrical mode, and the inserting sliding block used for limiting is fixedly connected on the lower end face of the connecting clamping seat in a symmetrical mode.
The beneficial effect after this technical scheme improves does: when cutting, fixed cylinder can drive the grafting slider through the joint card axle and connect the cassette and carry out the displacement inside positioner, and the grafting slider can drive two sets of direction swash plates to inside displacement through the spacing mode of extrusion simultaneously, and then conveniently cuts the quick accurate operation of cutting to the wire rod of cutter.
The technical problem to be solved by the improvement of the technical scheme is as follows: when being carried, the wire rod is guided with accuracy, so that the efficiency of subsequent cutting is reduced.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the positioning device comprises a limiting clamping frame, a cutting device, an installation clamping plate, a guide sliding cylinder, a connection guide plate and a positioning cylinder, wherein the lower end face of the limiting clamping frame is fixedly connected with the installation clamping plate used for supporting, the outer end face of the installation clamping plate is close to the opening fixedly connected with the connection guide plate, three groups of guide sliding cylinders are fixedly connected with the inner end face of the connection guide plate at uniform equal intervals, the inner end face of the limiting clamping frame is fixedly connected with a guide sliding shaft at the bottom of the inner end face, the limiting clamping frame is symmetrically and slidably connected with the cutting device through the guide sliding shaft, and three groups of positioning cylinders are symmetrically and fixedly connected with the inner end face of the limiting clamping frame at uniform equal intervals and close to the centers of the two groups of cutting devices.
The beneficial effect after this technical scheme improves does: three groups of guide sliding cylinders in the connecting guide plate perform primary guide operation on the wire rods, and meanwhile, three groups of symmetrically distributed positioning cylinders can perform secondary positioning and guiding on the wire rods, so that the stability of guiding the wire rods is improved to the greatest extent.
The technical problem to be solved by the improvement of the technical scheme is as follows: the existing cutting machine is inconvenient for quickly and circularly cutting wires, and the efficiency of cutting the wires is reduced.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the cutting device comprises a cutting tool, a guide inclined plate, a fixed sliding seat and a spring snap ring, wherein the outer end face of the spring snap ring is symmetrically and fixedly connected with the fixed sliding seat and is located on the upper end face of the fixed sliding seat, the guide inclined plate is fixedly connected with the upper end face of the fixed sliding seat, and the inner end face of the guide inclined plate is fixedly connected with the cutting tool.
The beneficial effect after this technical scheme improves does: after cutting, the upper portion of direction swash plate can be pegged graft to the grafting slider for two sets of inside displacements that the direction swash plate can be quick cut, and after grafting slider and the separation of direction swash plate simultaneously, the direction swash plate can reset fast under the elastic support of spring snap ring, convenient follow-up circulation operation that carries on.
The technical problem to be solved by the improvement of the technical scheme is as follows: when the wire rod is carried, be not convenient for carry on regularly to the wire rod for the wire rod that cuts is comparatively mixed and disorderly.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the straightening device comprises a connecting frame for supporting, straightening rollers which are in staggered rotating and clamped inside the connecting frame and a guide clamping plate which is fixedly connected to the outer end face of the connecting frame.
The beneficial effect after this technical scheme improves does: the direction cardboard can carry out the location to the wire rod and carry, and multiunit straightener roller can carry out abundant aligning to the wire rod simultaneously, prevents that the outside bending fold from appearing of wire rod, has improved follow-up accurate nature that cuts to the wire rod.
The technical problem to be solved by the improvement of the technical scheme is as follows: when the device is cutting the line body, driven efficiency is not enough.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the side end faces of the transmission devices are fixedly connected with positioning gears, and the adjacent upper and lower groups of transmission devices are meshed, rotated and connected through the positioning gears.
The beneficial effect after this technical scheme improves does: the positioning gear can enable the upper and lower two groups of transmission devices to be meshed and connected, so that the three groups of line bodies can be conveyed quickly and stably by the aid of the subsequent transmission devices, meanwhile, the toothed belt wheels and the toothed belts can provide power for the upper multi-group transmission devices, the upper and lower three groups of transmission devices can move synchronously, and efficiency of power utilization is improved.
The technical problem to be solved by the improvement of the technical scheme is as follows: when equipment is fixing a position, the convenience of positioning and limiting is not enough.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the bottom of grafting slider is and is provided with the chamfer, just the grafting slider carries out slip joint through chamfer and direction swash plate.
The beneficial effect after this technical scheme improves does: the chamfer of grafting slider bottom can just be spacing inside the swash plate that leads to make things convenient for follow-up grafting slider can directly pass the swash plate that leads to inside along the hypotenuse of swash plate, makes things convenient for follow-up operation of cutting.
The technical problem to be solved by the improvement of the technical scheme is as follows: when conveying the wire rod, the conveying accuracy is not enough.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the guide sliding cylinder, the positioning cylinder and the guide clamping plate are all on the same straight line.
The beneficial effect after this technical scheme improves does: the guide sliding cylinder, the positioning cylinder and the guide clamping plate can position and guide the wire repeatedly, and accuracy and stability of wire conveying are improved to the maximum degree.
Drawings
FIG. 1 is a schematic view of the main structure of the present invention.
Fig. 2 is a side view of the main body of the present invention.
Fig. 3 is a schematic structural view of the guiding device of the present invention.
FIG. 4 is a schematic structural diagram of a positioning device according to the present invention.
FIG. 5 is a side view of the positioning device of the present invention.
FIG. 6 is a schematic view of a cutting device according to the present invention.
The text labels in the figure are as follows: 1. a straightening device; 2. connecting the cover plate; 3. a guide device; 4. a positioning device; 5. a servo motor; 6. a toothed belt pulley; 7. a toothed belt; 8. a transmission device; 31. fixing the air cylinder; 32. connecting the card holder; 33. inserting a sliding block; 34. connecting the clamp shaft; 41. a limiting clamp frame; 42. a cutting device; 43. mounting a clamping plate; 44. a guide slide cylinder; 45. connecting the guide plate; 46. a positioning cylinder; 421. cutting tools; 422. a guide sloping plate; 423. fixing the sliding seat; 424. a snap ring.
Detailed Description
The following detailed description of the present invention is given for the purpose of better understanding technical solutions of the present invention by those skilled in the art, and the present description is only exemplary and explanatory and should not be construed as limiting the scope of the present invention in any way.
Example 1:
as shown in fig. 1-2, a high-efficiency pneumatic wire cutting machine comprises a straightening device 1, a connecting cover plate 2, a guiding device 3, a positioning device 4, a servo motor 5, toothed belt wheels 6, toothed belts 7 and transmission devices 8, wherein the inner end surface of the positioning device 4 is fixedly connected with the guiding device 3, the outer end surface of the positioning device 4 is symmetrically and fixedly connected with the connecting cover plate 2, the inner end surface of the positioning device 4 is symmetrically and rotatably clamped with three groups of transmission devices 8, the outer end surfaces of the three transmission devices 8 at the lower row are fixedly connected with the toothed belt wheels 6, the three groups of toothed belt wheels 6 are meshed and rotatably connected through the toothed belts 7, the outer end surface of the transmission device 8 at the upper part is fixedly connected with the servo motor 5, the front end surface of the positioning device 4 is fixedly connected with the straightening device 1, before cutting a wire body, because the metal wire is arranged in the wire body, a user can guide the wire body to the inside of the guide device 3 through the straightening device 1, the subsequent rapid conveying and cutting operation of the wire body is convenient, when the wire body is cut, the user can start the servo motor 5 through an external control device, at the moment, the servo motor 5 can drive the transmission device 8 in the wire body to rotate, meanwhile, the upper transmission device 8 and the lower transmission device 8 are meshed and connected through the positioning gear, when the transmission device 8 at the upper part rotates, the transmission device 8 at the lower part can be driven to rotate reversely, the lower three transmission devices 8 can synchronously rotate through the toothed belt wheel 6 and the toothed belt 7, the lower three transmission devices 8 can synchronously rotate, and then the transmission devices 8 at the upper parts of the other two groups are driven to synchronously rotate reversely, and further the three transmission devices 8 can synchronously rotate reversely, meanwhile, when the transmission device 8 rotates, the transmission device can simultaneously drive three groups of wire bodies to pass through the guide of the guide sliding cylinder 44 and the positioning cylinder 46, so that the wire body at the rear part can be directly guided to the bottom of the guide device 3, the wire body at the front part can be straightened under the drive of a plurality of groups of straightening rollers in the straightening device, at the moment, the wire body at the front part passes through the inside of the positioning cylinder 46, meanwhile, the fixed air cylinder 31 can drive the connecting clamp shaft 34 at the bottom to displace towards the lower part, the connecting clamp shaft 34 can drive the connecting clamp seat 32 and the inserting slide block 33 to displace towards the lower part, the inserting slide block 33 can be directly inserted and connected to the upper part of the guide inclined plate 422, so that the guide inclined plate 422 can displace towards the inside under the limit of the inserting slide block 33, and then the extrusion cutting tool 421 can perform rapid and accurate cutting operation on the wire body, after the cutting is completed, the connecting clamp shaft 34 resets, at the moment, the spring clamp ring 424 can drive the two groups of fixed slide seats 423 to reset inside the positioning device 4, the subsequent circular cutting is convenient, and the wire processing efficiency is improved.
Example 2:
as shown in fig. 1-3, as a further optimization of the above embodiment: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener 1, connection apron 2, guider 3, positioner 4, servo motor 5, toothed belt wheel 6, toothed belt 7 and transmission device 8, positioner 4's interior terminal surface fixedly connected with guider 3, and be located positioner 4's the symmetrical fixedly connected with connection apron 2 of outer terminal surface, positioner 4's interior terminal surface symmetry rotation joint has three transmission device 8 of group, and is located three of arranging below the outer terminal surface fixedly connected with toothed belt wheel 6 of transmission device 8, three group toothed belt wheel 6 meshes through toothed belt 7 and rotates the connection, is located upper portion transmission device 8's outer terminal surface fixedly connected with servo motor 5, positioner 4's preceding terminal surface fixedly connected with straightener 1. The guiding device 3 comprises a fixed cylinder 31, a connecting clamping seat 32, an inserting sliding block 33 and a connecting clamping shaft 34, the lower end face of the fixed cylinder 31 is symmetrically clamped with the connecting clamping shaft 34 in a sliding mode, the lower end face of the connecting clamping shaft 34 is fixedly connected with the connecting clamping seat 32, the lower end face of the connecting clamping seat 32 is symmetrically fixedly connected with the inserting sliding block 33 for limiting, when the cutting is carried out, the fixed cylinder 31 can drive the inserting sliding block 33 to move inside the positioning device 4 through the connecting clamping shaft 34 and the connecting clamping seat 32, meanwhile, the inserting sliding block 33 can drive two groups of guide inclined plates 422 to move inside through an extrusion limiting mode, so that the cutting operation of the cutting tool 421 on the wire material is fast and accurately carried out, and the processing efficiency of the wire material is improved.
Example 3:
as shown in fig. 1-4, as a further optimization of the above embodiment: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener 1, connection apron 2, guider 3, positioner 4, servo motor 5, toothed belt wheel 6, toothed belt 7 and transmission device 8, positioner 4's interior terminal surface fixedly connected with guider 3, and be located positioner 4's the symmetrical fixedly connected with connection apron 2 of outer terminal surface, positioner 4's interior terminal surface symmetry rotation joint has three transmission device 8 of group, and is located three of arranging below the outer terminal surface fixedly connected with toothed belt wheel 6 of transmission device 8, three group toothed belt wheel 6 meshes through toothed belt 7 and rotates the connection, is located upper portion transmission device 8's outer terminal surface fixedly connected with servo motor 5, positioner 4's preceding terminal surface fixedly connected with straightener 1. The guiding device 3 comprises a fixed cylinder 31, a connecting clamping seat 32, an inserting sliding block 33 and a connecting clamping shaft 34, wherein the lower end face of the fixed cylinder 31 is symmetrically clamped with the connecting clamping shaft 34 in a sliding manner, the lower end face of the connecting clamping shaft 34 is fixedly connected with the connecting clamping seat 32, and the lower end face of the connecting clamping seat 32 is symmetrically fixedly connected with the inserting sliding block 33 for limiting. The positioning device 4 comprises a limiting clamp frame 41, a cutting device 42, an installation clamp plate 43, a guide sliding cylinder 44, a connecting guide plate 45 and a positioning cylinder 46, wherein the lower end surface of the limiting clamp frame 41 is fixedly connected with the installation clamp plate 43 for supporting, the outer end surface of the installation clamp plate 43 close to an opening is fixedly connected with the connecting guide plate 45, the inner end surface of the connecting guide plate 45 is uniformly and equidistantly fixedly connected with three groups of guide sliding cylinders 44, the bottom of the inner end surface of the limiting clamp frame 41 is fixedly connected with a guide sliding shaft, the limiting clamp frame 41 is symmetrically and slidably connected with the cutting device 42 through the guide sliding shaft, the inner end surface of the limiting clamp frame 41 close to the centers of the two groups of cutting devices 42 is uniformly and equidistantly and symmetrically and fixedly connected with three groups of positioning cylinders 46, the three groups of guide sliding cylinders 44 inside the connecting guide plate 45 perform primary guiding operation on the wire, and the three groups of positioning cylinders 46 which are symmetrically distributed can perform secondary positioning and guiding on the wire, the stability of wire guiding is improved to the greatest extent.
Example 4:
as shown in fig. 1-5, as a further optimization of the above embodiment: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener 1, connection apron 2, guider 3, positioner 4, servo motor 5, toothed belt wheel 6, toothed belt 7 and transmission device 8, positioner 4's interior terminal surface fixedly connected with guider 3, and be located positioner 4's the symmetrical fixedly connected with connection apron 2 of outer terminal surface, positioner 4's interior terminal surface symmetry rotation joint has three transmission device 8 of group, and is located three of arranging below the outer terminal surface fixedly connected with toothed belt wheel 6 of transmission device 8, three group toothed belt wheel 6 meshes through toothed belt 7 and rotates the connection, is located upper portion transmission device 8's outer terminal surface fixedly connected with servo motor 5, positioner 4's preceding terminal surface fixedly connected with straightener 1. The guiding device 3 comprises a fixed cylinder 31, a connecting clamping seat 32, an inserting sliding block 33 and a connecting clamping shaft 34, wherein the lower end face of the fixed cylinder 31 is symmetrically clamped with the connecting clamping shaft 34 in a sliding manner, the lower end face of the connecting clamping shaft 34 is fixedly connected with the connecting clamping seat 32, and the lower end face of the connecting clamping seat 32 is symmetrically fixedly connected with the inserting sliding block 33 for limiting. The positioning device 4 comprises a limiting clamping frame 41, a cutting device 42, an installation clamping plate 43, a guide sliding cylinder 44, a connecting guide plate 45 and a positioning cylinder 46, wherein the lower end face of the limiting clamping frame 41 is fixedly connected with the installation clamping plate 43 used for supporting, and is located the outer end face of the installation clamping plate 43 is close to the connecting guide plate 45 fixedly connected with an opening, three groups of guide sliding cylinders 44 are fixedly connected with the inner end face of the connecting guide plate 45 at equal intervals, a guide sliding shaft is fixedly connected with the bottom of the inner end face of the limiting clamping frame 41, the limiting clamping frame 41 is symmetrically and slidably connected with the cutting device 42 through the guide sliding shaft, and three groups of positioning cylinders 46 are symmetrically and fixedly connected with the inner end face of the limiting clamping frame 41 at equal intervals close to the center of the two groups of cutting devices 42. Cutting device 42 is including cutting cutter 421, direction swash plate 422, fixed slide 423 and snap ring 424, the fixed slide 423 of outer terminal surface symmetry fixedly connected with of snap ring 424, and be located the up end fixedly connected with direction swash plate 422 of fixed slide 423, the interior terminal surface fixedly connected with of direction swash plate 422 cuts cutter 421, cuts the back, and grafting slider 33 can peg graft the upper portion of direction swash plate 422 for the inside displacement that two sets of direction swash plates 422 can be quick cuts, and grafting slider 33 separates the back with direction swash plate 422 simultaneously, and direction swash plate 422 can reset fast under spring ring 424's elastic support, makes things convenient for follow-up circulation operation that carries on.
Example 5:
as shown in fig. 1-6, as a further optimization of the above embodiment: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener 1, connection apron 2, guider 3, positioner 4, servo motor 5, toothed belt wheel 6, toothed belt 7 and transmission device 8, positioner 4's interior terminal surface fixedly connected with guider 3, and be located positioner 4's the symmetrical fixedly connected with connection apron 2 of outer terminal surface, positioner 4's interior terminal surface symmetry rotation joint has three transmission device 8 of group, and is located three of arranging below the outer terminal surface fixedly connected with toothed belt wheel 6 of transmission device 8, three group toothed belt wheel 6 meshes through toothed belt 7 and rotates the connection, is located upper portion transmission device 8's outer terminal surface fixedly connected with servo motor 5, positioner 4's preceding terminal surface fixedly connected with straightener 1. The guiding device 3 comprises a fixed cylinder 31, a connecting clamping seat 32, an inserting sliding block 33 and a connecting clamping shaft 34, wherein the lower end face of the fixed cylinder 31 is symmetrically clamped with the connecting clamping shaft 34 in a sliding manner, the lower end face of the connecting clamping shaft 34 is fixedly connected with the connecting clamping seat 32, and the lower end face of the connecting clamping seat 32 is symmetrically fixedly connected with the inserting sliding block 33 for limiting. The positioning device 4 comprises a limiting clamping frame 41, a cutting device 42, an installation clamping plate 43, a guide sliding cylinder 44, a connecting guide plate 45 and a positioning cylinder 46, wherein the lower end face of the limiting clamping frame 41 is fixedly connected with the installation clamping plate 43 used for supporting, and is located the outer end face of the installation clamping plate 43 is close to the connecting guide plate 45 fixedly connected with an opening, three groups of guide sliding cylinders 44 are fixedly connected with the inner end face of the connecting guide plate 45 at equal intervals, a guide sliding shaft is fixedly connected with the bottom of the inner end face of the limiting clamping frame 41, the limiting clamping frame 41 is symmetrically and slidably connected with the cutting device 42 through the guide sliding shaft, and three groups of positioning cylinders 46 are symmetrically and fixedly connected with the inner end face of the limiting clamping frame 41 at equal intervals close to the center of the two groups of cutting devices 42. Cutting device 42 is including cutting cutter 421, direction swash plate 422, fixed slide 423 and snap ring 424, the fixed slide 423 of outer terminal surface symmetry fixedly connected with of snap ring 424, and be located the up end fixedly connected with direction swash plate 422 of fixed slide 423, the interior terminal surface fixedly connected with of direction swash plate 422 cuts cutter 421. Straightening device 1 is including the link that is used for supporting, be the crisscross form and rotate the joint at the inside straightener roller of link and the direction cardboard of fixed connection at the outer terminal surface of link, and the direction cardboard can be fixed a position the transport to the wire rod, and multiunit straightener roller can carry out abundant straightening to the wire rod simultaneously, prevents that the outside crooked fold from appearing of wire rod, has improved follow-up accurate nature that cuts to the wire rod.
Example 6:
as shown in fig. 2-5, as a further optimization of the above embodiment: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener 1, connection apron 2, guider 3, positioner 4, servo motor 5, toothed belt wheel 6, toothed belt 7 and transmission device 8, positioner 4's interior terminal surface fixedly connected with guider 3, and be located positioner 4's the symmetrical fixedly connected with connection apron 2 of outer terminal surface, positioner 4's interior terminal surface symmetry rotation joint has three transmission device 8 of group, and is located three of arranging below the outer terminal surface fixedly connected with toothed belt wheel 6 of transmission device 8, three group toothed belt wheel 6 meshes through toothed belt 7 and rotates the connection, is located upper portion transmission device 8's outer terminal surface fixedly connected with servo motor 5, positioner 4's preceding terminal surface fixedly connected with straightener 1. The guiding device 3 comprises a fixed cylinder 31, a connecting clamping seat 32, an inserting sliding block 33 and a connecting clamping shaft 34, wherein the lower end face of the fixed cylinder 31 is symmetrically clamped with the connecting clamping shaft 34 in a sliding manner, the lower end face of the connecting clamping shaft 34 is fixedly connected with the connecting clamping seat 32, and the lower end face of the connecting clamping seat 32 is symmetrically fixedly connected with the inserting sliding block 33 for limiting. The positioning device 4 comprises a limiting clamping frame 41, a cutting device 42, an installation clamping plate 43, a guide sliding cylinder 44, a connecting guide plate 45 and a positioning cylinder 46, wherein the lower end face of the limiting clamping frame 41 is fixedly connected with the installation clamping plate 43 used for supporting, and is located the outer end face of the installation clamping plate 43 is close to the connecting guide plate 45 fixedly connected with an opening, three groups of guide sliding cylinders 44 are fixedly connected with the inner end face of the connecting guide plate 45 at equal intervals, a guide sliding shaft is fixedly connected with the bottom of the inner end face of the limiting clamping frame 41, the limiting clamping frame 41 is symmetrically and slidably connected with the cutting device 42 through the guide sliding shaft, and three groups of positioning cylinders 46 are symmetrically and fixedly connected with the inner end face of the limiting clamping frame 41 at equal intervals close to the center of the two groups of cutting devices 42. Cutting device 42 is including cutting cutter 421, direction swash plate 422, fixed slide 423 and snap ring 424, the fixed slide 423 of outer terminal surface symmetry fixedly connected with of snap ring 424, and be located the up end fixedly connected with direction swash plate 422 of fixed slide 423, the interior terminal surface fixedly connected with of direction swash plate 422 cuts cutter 421. The straightening device 1 comprises a connecting frame for supporting, straightening rollers which are in staggered rotating and clamped inside the connecting frame and a guide clamping plate which is fixedly connected to the outer end face of the connecting frame. The side end face of the transmission device 8 is fixedly connected with a positioning gear, the transmission device 8 is meshed, rotated and connected through the positioning gear, the positioning gear enables the upper transmission device 8 and the lower transmission device 8 to be meshed and connected, so that the subsequent transmission device 8 can rapidly and stably convey three groups of line bodies, meanwhile, the toothed belt wheel 6 and the toothed belt 7 can provide power for the upper multi-group transmission device 8, the upper transmission device 8 and the lower transmission device 8 can synchronously move, and the efficiency of power utilization is improved.
Example 7:
as shown in fig. 3-5, as a further optimization of the above embodiment: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener 1, connection apron 2, guider 3, positioner 4, servo motor 5, toothed belt wheel 6, toothed belt 7 and transmission device 8, positioner 4's interior terminal surface fixedly connected with guider 3, and be located positioner 4's the symmetrical fixedly connected with connection apron 2 of outer terminal surface, positioner 4's interior terminal surface symmetry rotation joint has three transmission device 8 of group, and is located three of arranging below the outer terminal surface fixedly connected with toothed belt wheel 6 of transmission device 8, three group toothed belt wheel 6 meshes through toothed belt 7 and rotates the connection, is located upper portion transmission device 8's outer terminal surface fixedly connected with servo motor 5, positioner 4's preceding terminal surface fixedly connected with straightener 1. The guiding device 3 comprises a fixed cylinder 31, a connecting clamping seat 32, an inserting sliding block 33 and a connecting clamping shaft 34, wherein the lower end face of the fixed cylinder 31 is symmetrically clamped with the connecting clamping shaft 34 in a sliding manner, the lower end face of the connecting clamping shaft 34 is fixedly connected with the connecting clamping seat 32, and the lower end face of the connecting clamping seat 32 is symmetrically fixedly connected with the inserting sliding block 33 for limiting. The positioning device 4 comprises a limiting clamping frame 41, a cutting device 42, an installation clamping plate 43, a guide sliding cylinder 44, a connecting guide plate 45 and a positioning cylinder 46, wherein the lower end face of the limiting clamping frame 41 is fixedly connected with the installation clamping plate 43 used for supporting, and is located the outer end face of the installation clamping plate 43 is close to the connecting guide plate 45 fixedly connected with an opening, three groups of guide sliding cylinders 44 are fixedly connected with the inner end face of the connecting guide plate 45 at equal intervals, a guide sliding shaft is fixedly connected with the bottom of the inner end face of the limiting clamping frame 41, the limiting clamping frame 41 is symmetrically and slidably connected with the cutting device 42 through the guide sliding shaft, and three groups of positioning cylinders 46 are symmetrically and fixedly connected with the inner end face of the limiting clamping frame 41 at equal intervals close to the center of the two groups of cutting devices 42. Cutting device 42 is including cutting cutter 421, direction swash plate 422, fixed slide 423 and snap ring 424, the fixed slide 423 of outer terminal surface symmetry fixedly connected with of snap ring 424, and be located the up end fixedly connected with direction swash plate 422 of fixed slide 423, the interior terminal surface fixedly connected with of direction swash plate 422 cuts cutter 421. The straightening device 1 comprises a connecting frame for supporting, straightening rollers which are in staggered rotating and clamped inside the connecting frame and a guide clamping plate which is fixedly connected to the outer end face of the connecting frame. The side end face of the transmission device 8 is fixedly connected with a positioning gear, and the adjacent upper and lower groups of transmission devices 8 are meshed, rotated and connected through the positioning gear. The bottom of grafting slider 33 is and is provided with the chamfer, just grafting slider 33 slides the joint through chamfer and direction swash plate 422, and the chamfer of grafting slider 33 bottom can just spacing inside direction swash plate 422 to convenient follow-up grafting slider 33 can directly pass direction swash plate 422 to inside along direction swash plate 422's hypotenuse, and convenient follow-up operation of cutting improves the efficiency that cuts.
Example 8:
as shown in fig. 2-6, as a further optimization of the above embodiment: the utility model provides a high-efficient pneumatic wire cutting machine, includes straightener 1, connection apron 2, guider 3, positioner 4, servo motor 5, toothed belt wheel 6, toothed belt 7 and transmission device 8, positioner 4's interior terminal surface fixedly connected with guider 3, and be located positioner 4's the symmetrical fixedly connected with connection apron 2 of outer terminal surface, positioner 4's interior terminal surface symmetry rotation joint has three transmission device 8 of group, and is located three of arranging below the outer terminal surface fixedly connected with toothed belt wheel 6 of transmission device 8, three group toothed belt wheel 6 meshes through toothed belt 7 and rotates the connection, is located upper portion transmission device 8's outer terminal surface fixedly connected with servo motor 5, positioner 4's preceding terminal surface fixedly connected with straightener 1. The guiding device 3 comprises a fixed cylinder 31, a connecting clamping seat 32, an inserting sliding block 33 and a connecting clamping shaft 34, wherein the lower end face of the fixed cylinder 31 is symmetrically clamped with the connecting clamping shaft 34 in a sliding manner, the lower end face of the connecting clamping shaft 34 is fixedly connected with the connecting clamping seat 32, and the lower end face of the connecting clamping seat 32 is symmetrically fixedly connected with the inserting sliding block 33 for limiting. The positioning device 4 comprises a limiting clamping frame 41, a cutting device 42, an installation clamping plate 43, a guide sliding cylinder 44, a connecting guide plate 45 and a positioning cylinder 46, wherein the lower end face of the limiting clamping frame 41 is fixedly connected with the installation clamping plate 43 used for supporting, and is located the outer end face of the installation clamping plate 43 is close to the connecting guide plate 45 fixedly connected with an opening, three groups of guide sliding cylinders 44 are fixedly connected with the inner end face of the connecting guide plate 45 at equal intervals, a guide sliding shaft is fixedly connected with the bottom of the inner end face of the limiting clamping frame 41, the limiting clamping frame 41 is symmetrically and slidably connected with the cutting device 42 through the guide sliding shaft, and three groups of positioning cylinders 46 are symmetrically and fixedly connected with the inner end face of the limiting clamping frame 41 at equal intervals close to the center of the two groups of cutting devices 42. Cutting device 42 is including cutting cutter 421, direction swash plate 422, fixed slide 423 and snap ring 424, the fixed slide 423 of outer terminal surface symmetry fixedly connected with of snap ring 424, and be located the up end fixedly connected with direction swash plate 422 of fixed slide 423, the interior terminal surface fixedly connected with of direction swash plate 422 cuts cutter 421. The straightening device 1 comprises a connecting frame for supporting, straightening rollers which are in staggered rotating and clamped inside the connecting frame and a guide clamping plate which is fixedly connected to the outer end face of the connecting frame. The side end face of the transmission device 8 is fixedly connected with a positioning gear, and the adjacent upper and lower groups of transmission devices 8 are meshed, rotated and connected through the positioning gear. The bottom of grafting slider 33 is and is provided with the chamfer, just grafting slider 33 carries out the joint that slides through chamfer and direction swash plate 422. The guide sliding cylinder 44, the positioning cylinder 46 and the guide clamping plate are all on the same straight line, and the guide sliding cylinder 44, the positioning cylinder 46 and the guide clamping plate can position and guide the wire repeatedly, so that the accuracy and the stability of wire conveying are improved to the maximum extent.
The working principle of the utility model is as follows: if the line body needs to be cut, before the line body is cut, a user can guide the line body to the inside of the guide device 3 through the straightening device 1 due to the metal wire arranged inside the line body, so that the subsequent rapid conveying and cutting operation on the line body is convenient, when the line body is cut, the user can start the servo motor 5 through the external control device, at the moment, the servo motor 5 can drive the transmission device 8 inside to rotate, meanwhile, because the upper and lower groups of transmission devices 8 are meshed and connected through the positioning gear, when the transmission device 8 at the upper part rotates, the transmission device 8 at the lower part can be driven to rotate reversely, and the lower three groups of transmission devices 8 can be driven to rotate synchronously through the toothed belt wheel 6 and the toothed belt 7, so that the lower three groups of transmission devices 8 can rotate synchronously, and further the other two groups of transmission devices 8 at the upper part can be driven to rotate synchronously and reversely, and then make three groups of transmission devices 8 can carry on the reverse rotation synchronously, at the same time, transmission device 8 while rotating, can drive three groups of line bodies to pass the direction of leading the slide cylinder 44 and locating cylinder 46 at the same time, make the line body located in the rear can lead to the bottom of the guiding device 3 directly, the line body located in the front can carry on the straightening operation under the drive of the internal multiunit straightening roller of straightening device, the line body located in the front at this moment passes the inside of locating cylinder 46, the fixed cylinder 31 can drive the bottom connect the card axle 34 to displace towards the inferior part at the same time, connect the card axle 34 can drive connect card seat 32 and plug-in slide block 33 to displace towards the inferior part, plug-in slide block 33 can be plugged into the upper portion of the guiding sloping plate 422 directly, make the guiding sloping plate 422 can displace towards the inside under the limit of the plug-in slide block 33, and then the extrusion cutting tool 421 carries on the fast and accurate cutting operation of the line body, after finishing cutting, the connecting clamp shaft 34 resets, and the spring clamp ring 424 can drive the two groups of fixed sliding seats 423 to reset inside the positioning device 4, so that the subsequent circular cutting is facilitated, and the wire processing efficiency is improved.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. The principles and embodiments of the present invention are explained herein using specific examples, which are presented only to assist in understanding the method and its core concepts of the present invention. The foregoing is only a preferred embodiment of the present invention, and it should be noted that there are objectively infinite specific structures due to the limited character expressions, and it will be apparent to those skilled in the art that a plurality of modifications, decorations or changes may be made without departing from the principle of the present invention, and the above technical features may be combined in a suitable manner; such modifications, variations, combinations, or adaptations of the utility model using its spirit and scope, as defined by the claims, may be directed to other uses and embodiments.
Claims (8)
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| Application Number | Priority Date | Filing Date | Title |
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| CN202111313389.1A CN114054640A (en) | 2021-11-08 | 2021-11-08 | High-efficient pneumatic wire cutting machine |
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| Application Number | Priority Date | Filing Date | Title |
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| CN202111313389.1A CN114054640A (en) | 2021-11-08 | 2021-11-08 | High-efficient pneumatic wire cutting machine |
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| CN113414322A (en) * | 2021-06-19 | 2021-09-21 | 深圳市银宝丰首饰设备有限公司 | Wire rod cutter |
| CN214290559U (en) * | 2020-12-28 | 2021-09-28 | 宝鸡市铭钛金属材料有限公司 | Titanium wire straightening and cutting machine |
| CN214399279U (en) * | 2020-12-28 | 2021-10-15 | 江苏长旭特种电缆有限公司 | Cable wire automatic cutout equipment |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN101912934A (en) * | 2010-08-10 | 2010-12-15 | 乐清市华东仪表厂 | Automatic wire cutting-off machine |
| CN206286473U (en) * | 2016-12-21 | 2017-06-30 | 深圳丰艺珠宝首饰有限公司 | A kind of horizontal half cutting type automatic cutoff equipment for processing jewellery wire rod |
| CN207273299U (en) * | 2017-09-26 | 2018-04-27 | 潍坊歌尔电子有限公司 | Cut compression bonding apparatus |
| CN111301783A (en) * | 2020-02-15 | 2020-06-19 | 浙江工业大学 | A wire-cutting device for automatic tying equipment for wine jars |
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