CN118237917A - Copper bar sawing production line and application method thereof - Google Patents
Copper bar sawing production line and application method thereof Download PDFInfo
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- CN118237917A CN118237917A CN202410442195.9A CN202410442195A CN118237917A CN 118237917 A CN118237917 A CN 118237917A CN 202410442195 A CN202410442195 A CN 202410442195A CN 118237917 A CN118237917 A CN 118237917A
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- copper bar
- copper
- conveying
- sawing
- deburring
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- RYGMFSIKBFXOCR-UHFFFAOYSA-N Copper Chemical compound [Cu] RYGMFSIKBFXOCR-UHFFFAOYSA-N 0.000 title claims abstract description 352
- 229910052802 copper Inorganic materials 0.000 title claims abstract description 352
- 239000010949 copper Substances 0.000 title claims abstract description 352
- 238000004519 manufacturing process Methods 0.000 title claims abstract description 34
- 238000000034 method Methods 0.000 title claims abstract description 10
- 238000003860 storage Methods 0.000 claims abstract description 33
- 238000007599 discharging Methods 0.000 claims abstract description 23
- 239000000463 material Substances 0.000 claims abstract description 23
- 238000005520 cutting process Methods 0.000 claims description 15
- 238000003825 pressing Methods 0.000 claims description 12
- 230000000903 blocking effect Effects 0.000 claims description 5
- 241000252254 Catostomidae Species 0.000 claims 1
- 230000001360 synchronised effect Effects 0.000 description 12
- 238000003801 milling Methods 0.000 description 6
- 238000005096 rolling process Methods 0.000 description 6
- 238000010586 diagram Methods 0.000 description 4
- 230000009286 beneficial effect Effects 0.000 description 2
- 239000004020 conductor Substances 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 230000009191 jumping Effects 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P23/00—Machines or arrangements of machines for performing specified combinations of different metal-working operations not covered by a single other subclass
- B23P23/06—Metal-working plant comprising a number of associated machines or apparatus
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P23/00—Machines or arrangements of machines for performing specified combinations of different metal-working operations not covered by a single other subclass
- B23P23/04—Machines or arrangements of machines for performing specified combinations of different metal-working operations not covered by a single other subclass for both machining and other metal-working operations
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- Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Sawing (AREA)
Abstract
The invention discloses a copper bar sawing production line and a use method thereof, wherein the copper bar sawing production line comprises the following components: the device comprises a storage device for placing a copper bar tray, a first transfer device for transferring copper bars on the copper bar tray, a sawing device for sawing the copper bars, a deburring device for removing burrs on sawing fracture of the copper bars and a blanking device, wherein the devices are communicated through a conveying device, the copper bars are subjected to material taking, sawing and discharging through a control device, the operation of the devices is controlled, automatic sawing production is realized, and the production efficiency of the copper bars is improved.
Description
Technical Field
The invention relates to the technical field of copper bar sawing, in particular to a copper bar sawing production line and a use method thereof.
Background
Copper bars are electric conductors, and requirements for copper bars with different specifications are met in different use occasions, so that sawing is needed for the copper bars so as to meet the use requirements.
In the past, saw cuts the copper bar mainly through manual operation, and is efficient and relatively troublesome, and the precision is not high moreover, in addition need carry out the burring to the copper bar after saw cuts in addition, further inefficiency.
Disclosure of Invention
The present invention aims to solve at least one of the technical problems existing in the prior art. Therefore, the invention provides a copper bar sawing production line which can realize the production line treatment of copper bar sawing, and the copper bar can be directly discharged according to the requirements of root tools, thereby being convenient and quick.
The invention also provides a use method of the copper bar sawing production line.
According to an embodiment of the first aspect of the invention, a copper bar sawing production line comprises: a first frame; the tray support blocks are arranged and distributed on the first rack in a step-shaped manner, are connected to the first rack in a sliding manner along the front-back direction, are driven to slide by a first driving piece and are used for placing copper bar trays; the first transfer device is arranged on the first rack and is used for transferring copper bars on the copper bar tray; the first conveying device is used for receiving the copper bars transferred by the first transfer device and conveying the copper bars leftwards; the inlet end of the sawing device is connected with the first conveying device, and the sawing device is used for sawing copper bars; the second conveying device is connected with the outlet end of the sawing device and is used for conveying the sawed copper bars leftwards; the second transfer device is arranged above the second conveying device and is used for transferring the copper bars on the second conveying device; the deburring device is arranged side by side with the second conveying device along the front-back direction and is used for receiving the copper bar transferred by the second transfer device, and the deburring device is used for removing burrs on saw cut-off parts of the copper bar; the third conveying device is connected with the outlet end of the deburring device and is used for conveying the deburred copper bars; the marking device is arranged between the deburring device and the third conveying device and is used for marking the finished copper bar with a label and a two-dimensional code; the third transfer device is arranged above the third conveying device and is used for transferring the copper bars on the third conveying device; the discharging bracket is arranged below the third transferring device, a plurality of placing stations are arranged on the discharging bracket, and the placing stations are arranged in the front-back direction; the storage tray is inserted into the placing station from top to bottom and is used for receiving the copper bars transferred by the third transfer device; the jacking transfer mechanism is used for jacking the storage tray to transfer the storage tray to a preset placing station; the first driving piece, the first transfer device, the first conveying device, the sawing device, the second conveying device, the second transfer device, the deburring device, the third conveying device, the third transfer device and the jacking transfer mechanism are all electrically connected to a control device.
The copper bar sawing production line provided by the embodiment of the invention has at least the following beneficial effects: the plurality of tray supporting blocks are distributed on the first rack in a step shape, so that copper bar trays on the tray supporting blocks can be distributed in a step shape, each copper bar tray can be staggered, the phenomenon that the copper bar is blocked by the copper bar tray above to cause inconvenient discharging is avoided, the first transfer device is matched with the first conveying device to convey copper bars to the sawing device for sawing, the second conveying device is used for conveying the copper bars to the left for a preset length, the second conveying device is also used for accommodating and supporting the sawed copper bars, the second transfer device box is matched with the deburring device to realize the deburring of two ends of the sawed copper bars, the principle is simple, and the deburring is thorough; the third conveying device, the third transferring device and the jacking transferring mechanism are matched to transfer and discharge copper bars, and the whole production line is controlled by the control device to realize automatic sawing and production of the copper bars.
According to some embodiments of the invention, the first transfer device comprises: the first two-axis motion module is arranged on the first rack; the mounting rod is connected to the output end of the first two-axis movement module, the mounting rod extends in the left-right direction, and the first two-axis movement module is used for driving the mounting rod to move in the front-back direction or the left-right direction; copper bar sucking discs are arranged in a plurality, the copper bar sucking discs are distributed on the mounting rod at intervals along the left-right direction, the copper bar sucking discs of the first two-axis motion module are used for carrying out sucking of copper bars and transferring of the copper bars to the first conveying device, the first two-axis motion module can move in the front-back direction or the left-right direction, the first two-axis motion module can drive the copper bar sucking discs to move and cooperate with the copper bar sucking discs to transfer copper bars, and the copper bar sucking discs are simple in structure principle, convenient to operate and realize.
According to some embodiments of the invention, the sawing device comprises: the support is provided with a supporting table at the upper end, a guide groove and an avoidance opening are arranged on the supporting table, the guide groove is arranged in an extending mode along the left-right direction, and the avoidance opening is arranged in an extending mode along the front-back direction; the saw cutting machine is connected to the bracket in a sliding manner along the front-back direction, and a saw blade of the saw cutting machine protrudes out of the avoidance opening; the positioning block is connected to the supporting table in a sliding manner along the front-back direction and is used for blocking the copper bars; the compressing mechanism is arranged on the support and used for pressing the copper bar, the arranged guide groove guides the copper bar to advance along the preset left direction, the sawing machine is convenient to saw vertically, sawing quality is guaranteed, the arranged compressing mechanism compresses the copper bar, the copper bar is prevented from jumping when sawing, and the arranged positioning block is used for blocking the copper bar and positioning the copper bar.
According to some embodiments of the invention, the second conveyor is provided with a clamp, wherein the clamp is connected to the second conveyor in a sliding manner along the left-right direction, and the clamp is used for clamping the copper bar and dragging the copper bar leftwards.
According to some embodiments of the invention, the deburring device comprises: the first conveying roller is used for conveying the copper bars leftwards; the second conveying rollers are arranged in front of the first conveying rollers side by side and are used for conveying the copper bars rightward; the deburring machine comprises a shell and a deburring roller, wherein the deburring roller is rotatably arranged in the shell, a copper bar inlet is formed in the shell and used for guiding copper bars to enter the shell, the deburring roller is used for cutting burrs on saw cutting fracture of the copper bars, the deburring machine is arranged on the left side of the first conveying roller and the right side of the second conveying roller, and the left end of the second conveying roller is used as an outlet end to be connected with the third conveying device; the clamping mechanism is arranged below the first conveying roller and the second conveying roller, clamping jaws of the clamping mechanism can extend out of roller gaps of the corresponding first conveying roller or second conveying roller to clamp the copper bar, the first conveying roller, the second conveying roller and the second transferring device are combined, conveying of the copper bar and deburring of two ends of the copper bar are achieved, the principle is simple, and operation is easy.
According to some embodiments of the invention, the second transfer device comprises: a second frame; the first lifting power pieces are arranged in parallel along the left-right direction and are connected to the second rack in a sliding manner along the front-back direction; the first push plate is connected to the main shaft of the first lifting power piece and is used for pushing the copper bars on the second conveying device to the first conveying roller; the second lifting power pieces are arranged in parallel along the left-right direction and are connected to the second rack in a sliding manner along the front-back direction; the second push plate is connected to the main shaft of the second lifting power piece, and is used for pushing the copper bar on the first conveying roller to the second conveying roller, the second transfer device is simple in structure and is combined with the deburring device to transfer and deburr the copper bar, and the deburring assembly line operation is realized.
According to some embodiments of the invention, the third transfer device comprises: a third frame; the second two-axis motion module is arranged on the third rack; the connecting rod is connected to the output end of the second two-axis movement module, and the second two-axis movement module is used for driving the connecting rod to move or lift in the front-back direction; the unloading sucking disc is provided with a plurality of, and a plurality of unloading sucking disc sets up side by side along controlling the direction is in on the connecting rod, the second diaxon motion module is used for driving unloading sucking disc adsorbs the copper bar and shifts to stock dish, the setting the third transfer device simple structure, the second diaxon motion module can drive unloading sucking disc shifts to realize the transfer to the copper bar.
According to some embodiments of the invention, the jacking transfer mechanism includes: the blanking ground rail is arranged below the third rack; the jacking power pieces are connected to the discharging ground rail in a sliding manner along the front-rear direction, two jacking power pieces are arranged, and the two jacking power pieces are respectively arranged at the left side or the right side of the discharging bracket; the supporting plate is connected to the main shaft of the jacking power piece, the jacking power piece is used for driving the supporting plate to lift the storage tray, the blanking ground rail, the jacking power piece and the supporting plate are matched, the function of changing the position of the storage tray is achieved, the storage tray is convenient to alternately receive copper bars, and normal operation of a production line is guaranteed.
According to some embodiments of the invention, the marking device is arranged between the second conveying roller and the third conveying device, the marking device is used for marking the finished copper bar and the two-dimensional code, and the arranged marking device is used for marking the copper bar, so that the scanning code identification of copper bar parameters is facilitated in the later period.
According to a second aspect of the embodiment of the invention, the application method of the copper bar sawing production line is applied to the copper bar sawing production line and comprises the following steps:
The method comprises the steps that copper bars are taken, the required specifications of the copper bars are input to a control device, then the first driving piece drives the corresponding tray supporting blocks to slide backwards, when the tray supporting blocks slide backwards to a material taking position, the first two-axis movement module drives the copper bar sucking discs to move to the position above the copper bar tray, and then the first two-axis movement module descends to suck the copper bars in the copper bar tray and transfers the copper bars to a first transfer device;
The copper bar is sawed, the first transfer device inputs the transferred copper bar from the inlet end of the sawing device, the copper bar enters from the guide groove, the clamp clamps the copper bar to drag for a preset length at the moment, then the pressing mechanism presses the copper bar, the sawing machine slides along the front-back direction to enable the saw blade to be in contact with the copper bar, the sawing machine saw the copper bar, then the clamp continues to drag the sawed copper bar to move leftwards, and the positioning block stretches out to block the copper bar positioned on the right side of the sawing device;
The first lifting power piece drives the first push plate to push the copper bar on the second conveying device forward to the first conveying roller, the first conveying roller conveys the copper bar to the left into a corresponding deburring machine until a sawing fracture at the left end of the copper bar is contacted with a deburring roller of the deburring machine, then the clamping mechanism is lifted to clamp the copper bar, so that the copper bar is fixed, and the deburring roller cuts burrs on the sawing fracture of the copper bar; then, the second lifting power piece drives the second push plate to push the copper bar on the first conveying roller forward to the second conveying roller, the second conveying roller conveys the copper bar to the right into the corresponding deburring machine until a sawing fracture at the right end of the copper bar is in contact with a deburring roller of the deburring machine, then the clamping mechanism is lifted to clamp the copper bar, so that the copper bar is fixed, and the deburring roller cuts burrs on the sawing fracture of the copper bar;
marking, namely conveying the copper bar with the burrs removed leftwards by the second conveying roller through the marking device, marking a two-dimensional code label on the copper bar by the marking device, and then continuing to convey the copper bar to the third conveying device;
taking materials, wherein the second two-axis movement module drives the connecting rod to descend so that the blanking sucker on the connecting rod contacts with the copper bar on the third conveying device, and then the blanking sucker adsorbs the copper bar, and the second two-axis movement module drives the copper bar to be transferred to the storage tray of the placing station at the material receiving position; when the copper bars are stored in the storage tray at the material receiving position, the jacking power piece drives the supporting plate to jack up the storage tray, and then the jacking power piece drives the storage tray to slide to the material receiving position in the front-back direction, and then the copper bars are manually taken out; simultaneously, the jacking power piece drives the supporting plate to jack up the other material storage disc and transfer the material storage disc to a placing station of a material receiving position.
The use method of the copper bar sawing production line provided by the embodiment of the invention has at least the following beneficial effects: the control device receives instructions so as to control the assembly line operation of the whole production line, realize the automation of taking materials, sawing and deburring of copper bars, the plurality of tray supporting blocks are distributed on the first rack in a step shape, so that copper bar trays on the tray supporting blocks can also be distributed in a step shape, each copper bar tray can be staggered, the copper bar tray above the tray is prevented from being blocked to cause inconvenient discharging, the first transfer device is matched with the first conveying device to convey copper bars to the sawing device for sawing, the second conveying device is used for conveying the copper bars to the left for a preset length, the second transfer device is also used for accommodating and supporting the sawed copper bars, the deburring devices are matched, the burr removal of two ends of the sawed copper bars is realized, the principle is simple, and the burr removal is thorough; the third conveying device, the third transferring device and the jacking transferring mechanism are matched to transfer and discharge copper bars, and the whole production line is controlled by the control device to realize automatic sawing and production of the copper bars.
Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.
Drawings
The foregoing and/or additional aspects and advantages of the invention will become apparent and may be better understood from the following description of embodiments taken in conjunction with the accompanying drawings in which:
FIG. 1 is a schematic diagram of a copper bar sawing line according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of a second embodiment of a sawing line for copper bars;
FIG. 3 is a schematic view of a first transfer device and a first conveyor of the copper bar sawing line shown in FIG. 1;
Fig. 4 is a schematic structural view of a sawing device of the copper bar sawing line shown in fig. 1;
Fig. 5 is a schematic structural diagram II of a sawing device of the copper bar sawing production line shown in fig. 1;
Fig. 6 is a schematic structural view of a second transfer device and a deburring device of the copper bar sawing line shown in fig. 1;
Fig. 7 is a schematic structural view of a third transfer device, a discharge bracket, a storage tray and a jacking transfer mechanism of the copper bar sawing production line shown in fig. 1;
FIG. 8 is a schematic view of the deburring machine of the copper bar sawing line shown in FIG. 1 after the removal of the outer shell;
FIG. 9 is a schematic diagram of a first two-axis motion module of the copper bar sawing line shown in FIG. 1;
FIG. 10 is a schematic view of a second transfer device of the copper bar sawing line shown in FIG. 1;
fig. 11 is a schematic structural view of a second two-axis motion module of the copper bar sawing line shown in fig. 1.
A first frame 100a, a tray support block 100b, a first transfer device 100c, a first conveying device 100d;
A first driving member 110 and a copper bar tray 120;
a first two-axis motion module 130, a carriage 131, a screw nut mechanism 132, a first synchronous belt mechanism 133, and a first connecting block 134
A mounting bar 140 and a copper bar suction cup 150;
Sawing device 200, bracket 210, support 211, guide slot 212 and avoiding opening 213;
sawing machine 220, positioning block 230, pressing mechanism 240, motor 250, milling head 251;
a second conveying device 300a, a second transferring device 300b, and a deburring device 300c;
a clamp 310, a first conveying roller 320, a second conveying roller 330;
A deburring machine 340, a shell 341, a copper bar inlet 341a, a deburring roller 342 and a clamping mechanism 350;
The second frame 360a, the first lifting power piece 360b, the first push plate 360c, the second lifting power piece 360d, and the second push plate 360e;
a third conveying device 400a, a third transferring device 400b, a discharging bracket 400c, a storage tray 400d and a jacking transferring mechanism 400e;
a placement station 410, a third rack 420;
The second two-axis motion module 430, the moving frame 431, the rolling shaft 432, the second synchronous belt mechanism 433 and the second connecting block 434;
The connecting rod 440, the blanking sucker 450, the blanking ground rail 460, the jacking power piece 470 and the supporting plate 480;
marking device 500.
Detailed Description
Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative only and are not to be construed as limiting the invention.
In the description of the present invention, it should be understood that references to orientation descriptions such as upper, lower, front, rear, left, right, etc. are based on the orientation or positional relationship shown in the drawings, are merely for convenience of description of the present invention and to simplify the description, and do not indicate or imply that the apparatus or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be construed as limiting the present invention.
In the description of the present invention, a plurality means one or more, and a plurality means two or more, and it is understood that greater than, less than, exceeding, etc. does not include the present number, and it is understood that greater than, less than, within, etc. include the present number. The description of the first and second is for the purpose of distinguishing between technical features only and should not be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated or implicitly indicating the precedence of the technical features indicated.
In the description of the present invention, unless explicitly defined otherwise, terms such as arrangement, installation, connection, etc. should be construed broadly and the specific meaning of the terms in the present invention can be reasonably determined by a person skilled in the art in combination with the specific contents of the technical scheme.
Referring to fig. 1 to 11, a copper bar sawing line includes: a first frame 100a; the plurality of tray support blocks 100b are arranged, the plurality of tray support blocks 100b are distributed on the first frame 100a in a step shape, the tray support blocks 100b are connected to the first frame 100a in a sliding manner along the front-back direction, the tray support blocks 100b are driven to slide by the first driving piece 110, and the tray support blocks 100b are used for placing the copper bar tray 120; a first transfer device 100c disposed on the first frame 100a, the first transfer device 100c being used for transferring copper bars on the copper bar tray 120; the first conveying device 100d is used for receiving the copper bar transferred by the first transferring device 100c, and the first conveying device 100d is used for conveying the copper bar leftwards; the sawing device 200, the inlet end of which is connected with the first conveying device 100d, and the sawing device 200 is used for sawing copper bars; the second conveying device 300a is connected with the outlet end of the sawing device 200, and the second conveying device 300a is used for conveying the sawed copper bars leftwards; the second transfer device 300b is arranged above the second conveying device 300a, and the second transfer device 300b is used for transferring the copper bars on the second conveying device 300 a; the deburring device 300c is arranged side by side with the second conveying device 300a along the front-back direction, the deburring device 300c is used for receiving the copper bar transferred by the second transferring device 300b, and the deburring device 300c is used for removing burrs on saw cuts of the copper bar; the third conveying device 400a is connected with the outlet end of the deburring device 300c, and the third conveying device 400a is used for conveying the deburred copper bars; a third transfer device 400b disposed above the third conveying device 400a, the third transfer device 400b being configured to transfer the copper bars on the third conveying device 400 a; the discharging bracket 400c is arranged below the third transferring device 400b, a plurality of placing stations 410 are arranged on the discharging bracket 400c, and the placing stations 410 are arranged in the front-back direction; a storage tray 400d, which is inserted into the placing station 410 from top to bottom, wherein the storage tray 400d is used for receiving the copper bars transferred by the third transferring device 400 b; a lifting transfer mechanism 400e for lifting up the stock tray 400d to transfer the stock tray 400d to a preset placing station 410; the first driving member 110, the first transferring device 100c, the first conveying device 100d, the sawing device 200, the second conveying device 300a, the second transferring device 300b, the deburring device 300c, the third conveying device 400a, the third transferring device 400b and the lifting transfer mechanism 400e are all electrically connected to the control device. It will be appreciated that the first frame 100a, the tray supporting block 100b, the first transferring device 100c and the first conveying device 100d together form a stock device for storing copper bars and taking out corresponding copper bar blanks according to instructions of the control device.
The plurality of tray supporting blocks 100b are distributed on the first frame 100a in a step shape, so that copper bar trays 120 on the tray supporting blocks 100b can also be distributed in a step shape, each copper bar tray 120 can be staggered, the defect that the discharging is inconvenient due to shielding by the copper bar tray 120 above is avoided, the first transfer device 100c is matched with the first conveying device 100d to convey copper bars to the sawing device 200 for sawing, the second conveying device 300a is used for conveying the copper bars to the left for a preset length, the second conveying device 300a is also used for accommodating and supporting the sawed copper bars, the second transfer device 300b is matched with the deburring device 300c to realize the deburring of two ends of the sawed copper bars, the principle is simple, and the deburring is thorough; the third conveying device 400a, the third transferring device 400b and the jacking transferring mechanism 400e are matched to realize the transfer and the discharge of the copper bars, and the whole production line is controlled by the control device to realize the automatic sawing and the production of the copper bars.
It can be understood that the control device comprises a computer, the electrical connection mode of the computer and each device or component is a conventional electrical connection mode, the control device plays a role in receiving orders, and according to the requirements of the orders, each device or component is controlled so as to realize the output of copper bars according to the requirements; the thickness specification and the width specification of the copper bars placed in the copper bar trays 120 of each layer are different, and according to the needs, the first transfer device 100c grabs the copper bars with corresponding specifications, then saw cuts the copper bars into the required length through the saw cutting device 200, and then performs deburring machine transfer material taking treatment on the copper bars to ensure the quality of copper bar output.
Referring to fig. 1,2 and 9, the first transfer device 100c includes: the first two-axis motion module 130 is disposed on the first frame 100 a; the mounting rod 140 is connected to the output end of the first two-axis movement module 130, the mounting rod 140 is arranged in an extending manner along the left-right direction, and the first two-axis movement module 130 is used for driving the mounting rod 140 to move in the front-back direction or the left-right direction; the copper bar sucking discs 150 are arranged in a plurality, the copper bar sucking discs 150 are distributed on the mounting rod 140 at intervals along the left-right direction, the copper bar sucking discs 150 of the first two-axis moving module 130 are used for sucking copper bars and transferring the copper bars to the first conveying device 100d, the arranged first two-axis moving module 130 can move in the front-back direction or the left-right direction, the arranged first two-axis moving module 130 can drive the copper bar sucking discs 150 to move, the copper bar sucking discs 150 are matched with the copper bar tray 120 to transfer copper bars, the structural principle is simple, and the operation and the realization are convenient. It is noted that the first two-axis motion module 130 includes a carriage 131, a screw nut mechanism 132, a first synchronous belt mechanism 133, and a first connecting block 134, wherein the carriage 131 is slidably connected to the first frame 100a in the front-rear direction, the screw nut mechanism 132 and the first synchronous belt mechanism 133 are both connected to the carriage 131, the screw nut mechanism 132 drives the carriage 131 to slide in the front-rear direction, the first connecting block 134 is connected to the synchronous belt of the first synchronous belt mechanism 133, the mounting rod 140 is connected to the first connecting block 134, the first synchronous belt mechanism 133 is used for lifting the first connecting block 134 of the belt, and drives the mounting rod 140 to lift.
Referring to fig. 4 and 5, the sawing device 200 comprises: the upper end of the bracket 210 is provided with a supporting table 211, the supporting table 211 is provided with a guide groove 212 and an avoidance opening 213, the guide groove 212 is arranged in a left-right extending mode, and the avoidance opening 213 is arranged in a front-back extending mode; the sawing machine 220 is connected to the bracket 210 in a sliding manner along the front-rear direction, and the saw blade of the sawing machine 220 protrudes out of the avoiding opening 213; the positioning block 230 is slidably connected to the supporting table 211 along the front-rear direction, and the positioning block 230 is used for blocking the copper bars; the pressing mechanism 240 is arranged on the bracket 210, the pressing mechanism 240 is used for pressing the copper bar, the arranged guide groove 212 guides the copper bar to advance along the preset left direction, the vertical sawing of the sawing machine 220 is facilitated, the sawing quality is guaranteed, the arranged pressing mechanism 240 presses the copper bar, the situation that the copper bar jumps during sawing is avoided, the arranged positioning block 230 is used for blocking the copper bar and positioning the copper bar is avoided, the primary deburring mechanism which is connected with the sawing machine 220 into a whole is arranged, the primary deburring mechanism comprises two motors 250 which are oppositely arranged in the up-down direction, the two motors 250 are respectively connected with one milling cutter 251, the two milling cutter 251 which are oppositely arranged in the up-down direction are arranged in front of the sawing machine 220, after the sawing machine 220 has saw the copper bar, the sawing machine 220 continues to be driven to move backwards until the two milling cutter 251 contacts with a cutting fracture of the copper bar, and at the moment, the two milling cutter 251 performs primary milling on burrs on the cutting fracture of the copper bar.
In some embodiments, the copper bar conveyor further comprises a clamp 310, the clamp 310 is slidingly connected to the second conveyor 300a along the left-right direction, the clamp 310 is used for clamping the copper bar and dragging the copper bar leftwards, it is understood that the clamp 310 comprises a mounting body and a clamping jaw mechanism, the mounting body is slidingly connected to the second conveyor 300a along the left-right direction, in fact, the mounting body is slidingly connected to two sides of the plate link chain, the clamping jaw mechanism is arranged on the mounting body, and is driven by an air cylinder or an electric cylinder, and the clamping jaw mechanism is used for clamping the copper bar.
In some embodiments, the deburring device 300c comprises: a first conveying roller 320, the first conveying roller 320 being for conveying the copper bar leftward; the second conveying roller 330 is arranged in front of the first conveying roller 320 side by side, and the second conveying roller 330 is used for conveying the copper bar to the right; the deburring machine 340 comprises a shell 341 and a deburring roller 342, wherein the deburring roller 342 is rotatably arranged in the shell 341, a copper bar inlet 341a is arranged on the shell 341 and used for guiding copper bars to enter the shell 341, the deburring roller 342 is used for cutting burrs on saw cutting fracture surfaces of the copper bars, the deburring machine 340 is arranged on the left side of the first conveying roller 320 and the right side of the second conveying roller 330, and the left end of the second conveying roller 330 is used as an outlet end to be connected with the third conveying device 400a; the clamping mechanism 350 is arranged below the first conveying roller 320 and the second conveying roller 330, clamping jaws of the clamping mechanism 350 can extend out from roller gaps of the corresponding first conveying roller 320 or second conveying roller 330 to clamp the copper bar, the arranged first conveying roller 320, second conveying roller 330 and second transferring device 300b are combined to realize conveying of the copper bar and deburring of two ends of the copper bar, the principle is simple, the operation is easy, it is understood that the clamping mechanism 350 is two clamping arms driven by air cylinders, and when clamping is needed, the two clamping arms extend out from the roller gaps of the corresponding first conveying roller 320 or second conveying roller 330 to clamp the copper bar.
In some embodiments, the second transfer device 300b includes: a second frame 360a; a plurality of first lifting power pieces 360b, wherein the plurality of first lifting power pieces 360b are arranged side by side along the left-right direction, and the first lifting power pieces 360b are connected to the second frame 360a in a sliding manner along the front-rear direction; the first push plate 360c is connected to the main shaft of the first lifting power member 360b, and the first push plate 360c is used for pushing the copper bar on the second conveying device 300a to the first conveying roller 320; a plurality of second lifting power pieces 360d, wherein the plurality of second lifting power pieces 360d are arranged side by side along the left-right direction, and the second lifting power pieces 360d are connected on the second frame 360a in a sliding manner along the front-rear direction; the second push plate 360e is connected to the main shaft of the second lifting power piece 360d, the second push plate 360e is used for pushing the copper bar on the first conveying roller 320 to the second conveying roller 330, the second transfer device 300b is simple in structure, the deburring device 300c is combined to transfer and deburr the copper bar, and the deburring assembly line operation is realized.
Referring to fig. 1, 2 and 11, the third transferring device 400b includes: a third rack 420; the second two-axis motion module 430 is disposed on the third frame 420; the connecting rod 440 is connected to the output end of the second two-axis movement module 430, and the second two-axis movement module 430 is used for driving the connecting rod 440 to move or lift in the front-back direction; the blanking suction cup 450 is provided with a plurality of blanking suction cups 450, the blanking suction cups 450 are arranged on the connecting rod 440 side by side along the left-right direction, the second two-axis motion module 430 is used for driving the blanking suction cups 450 to transfer copper bars to the stock disc 400d, the arranged third transfer device 400b is simple in structure, the second two-axis motion module 430 can drive the blanking suction cups 450 to transfer copper bars, and accordingly copper bars are transferred, it is understood that the second two-axis motion module 430 comprises a moving frame 431, a rolling shaft 432, a second synchronous belt mechanism 433 and a second connecting block 434, wherein the moving frame 431 is connected to the rolling shaft 432, two ends of the rolling shaft 432 are respectively provided with a gear, the third frame 420 is provided with a corresponding rack, the gears are meshed to the rack, when the rolling shaft 432 rotates, because of the meshed gears and the racks, the rolling shaft 432 can move in the front-back direction on the third frame 420, and accordingly the moving frame 431 is driven to move in the front-back direction, the second synchronous belt mechanism 433 is arranged on the moving frame 431, the second synchronous belt mechanism 433 is connected to the synchronous belt 433, the second synchronous belt mechanism 433 is connected to the second connecting block 434, and the second connecting block 434 is connected to the second connecting rod 433, and the lifting mechanism is driven to transfer the lifting mechanism 450, and the lifting mechanism 450 can be lifted, and the lifting mechanism is driven to move.
Referring to fig. 1,2 and 7, the lift transfer mechanism 400e includes: a discharging ground rail 460 disposed below the third frame 420; the lifting power pieces 470 are slidably connected to the discharging ground rail 460 along the front-rear direction, two lifting power pieces 470 are provided, and the two lifting power pieces 470 are respectively arranged at the left side or the right side of the discharging bracket 400 c; the supporting plate 480 is connected to the main shaft of the lifting power member 470, the lifting power member 470 is used for driving the supporting plate 480 to lift the storage tray 400d, and the arranged blanking ground rail 460, the lifting power member 470 and the supporting plate 480 are matched to realize the function of changing the position of the storage tray 400d, so that the storage tray 400d is convenient to alternately receive copper bars, and the normal operation of the assembly line is ensured. It can be understood that the third transfer device 400b, the discharging bracket 400c, the stock tray 400d, and the lifting transfer mechanism 400e form a set of blanking devices, and the blanking devices are mainly used for blanking the copper bars from which burrs are removed.
In some embodiments, the device further comprises a marking device 500, the marking device 500 is arranged between the second conveying roller 330 and the third conveying device 400a, the marking device 500 is used for marking a finished copper bar and a two-dimensional code, the set marking device 500 is used for marking the copper bar, the later scanning code identification is convenient for the copper bar parameters, and it can be understood that the marking device 500 is a common laser two-dimensional code marking machine.
It will be appreciated that the first conveying device 100d, the second conveying device 300a, and the third conveying device 400a include a conveying belt, a conveying roller, a plate-turning chain, or the like, wherein the first conveying device 100d employs a conveying roller, the second conveying device 300a employs a plate-turning chain, and the third conveying device 400a employs a conveying roller.
The application method of the copper bar sawing production line is applied to the copper bar sawing production line and comprises the following steps of:
Taking copper bars, inputting the required specifications of the copper bars into a control device, driving a corresponding tray supporting block 100b to slide backwards by a first driving piece 110, driving a copper bar sucking disc 150 to move above a copper bar tray 120 by a first two-axis movement module 130 when the tray supporting block 100b slides backwards to a material taking position, then descending and sucking the copper bars in the copper bar tray 120 by the first two-axis movement module 130, and transferring the copper bars to a first transfer device 100 c;
The copper bar is sawed, the first transfer device 100c inputs the transferred copper bar from the inlet end of the sawing device 200, the copper bar enters from the guide groove 212, the clamp 310 clamps the copper bar to drag for a preset length at the moment, then the pressing mechanism 240 presses the copper bar, the sawing machine 220 slides along the front-back direction to enable the saw blade to contact with the copper bar, the sawing machine 220 saw the copper bar, then the clamp 310 continues to drag the sawed copper bar to move leftwards, and the positioning block 230 stretches out to block the copper bar positioned on the right side of the sawing device 200;
The burrs are removed, the first lifting power piece 360b drives the first push plate 360c to push the copper bar on the second conveying device 300a forward to the first conveying roller 320, the first conveying roller 320 conveys the copper bar to the left to the corresponding deburring machine 340 until the saw cut at the left end of the copper bar is in contact with the deburring roller 342 of the deburring machine 340, then the clamping mechanism 350 is lifted to clamp the copper bar, so that the copper bar is fixed, and the deburring roller 342 cuts off the burrs on the saw cut of the copper bar; then, the second lifting power piece 360d drives the second push plate 360e to push the copper bar on the first conveying roller 320 forward to the second conveying roller 330, the second conveying roller 330 conveys the copper bar to the right into the corresponding deburring machine 340 until the sawing fracture at the right end of the copper bar is contacted with the deburring roller 342 of the deburring machine 340, then the clamping mechanism 350 is lifted to clamp the copper bar, so that the copper bar is fixed, and thereafter, the deburring roller 342 cuts burrs on the sawing fracture of the copper bar;
The second conveying roller 330 conveys the copper bar with the burrs removed leftwards through the marking device 500, the marking device 500 marks a two-dimensional code label on the copper bar, and then the copper bar is conveyed to the third conveying device 400a continuously;
Taking materials, the second two-axis movement module 430 drives the connecting rod 440 to descend, so that the discharging sucker 450 on the connecting rod 440 contacts with the copper bar on the third conveying device 400a, and after that, the discharging sucker 450 adsorbs the copper bar, and the second two-axis movement module 430 drives the copper bar to be transferred to the storage tray 400d of the placing station 410 at the material receiving position; when the copper bars are stored in the storage tray 400d at the material receiving position, the lifting power piece 470 drives the supporting plate 480 to lift the storage tray 400d, and then the lifting power piece 470 drives the storage tray 400d to slide to the material receiving position in the front-back direction, and then the copper bars are manually taken out; at the same time, the lift power 470 drives the pallet 480 to lift and transfer another tray 400d to the placement station 410 in the receiving position.
The control device receives the instruction, so that the assembly line operation of the whole production line is controlled, the automation of taking, sawing, deburring and discharging of copper bars is realized, the plurality of tray supporting blocks 100b are distributed on the first rack 100a in a step shape, copper bar trays 120 on the tray supporting blocks 100b can also be distributed in a step shape, each copper bar tray 120 can be staggered, the situation that the copper bar is blocked by the copper bar tray 120 above to cause inconvenient discharging is avoided, the first transfer device 100c is matched with the first conveying device 100d, the copper bars are conveyed to the sawing device 200 for sawing, the second conveying device 300a is used for conveying the copper bars to the left for a preset length, the second conveying device 300a is also used for accommodating and supporting the sawed copper bars, the second transfer device 300b is matched with the deburring device 300c, the principle is simple, and the deburring is thoroughly removed at two ends of the sawed copper bars; the third conveying device 400a, the third transferring device 400b and the jacking transferring mechanism 400e are matched to realize the transfer and the discharge of the copper bars, and the whole production line is controlled by the control device to realize the automatic sawing and the production of the copper bars.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge of one of ordinary skill in the art without departing from the spirit of the present invention.
Claims (10)
1. The utility model provides a copper bar saw cuts production line which characterized in that includes:
a first chassis (100 a);
The tray support blocks (100 b) are arranged, the tray support blocks (100 b) are distributed on the first rack (100 a) in a step shape, the tray support blocks (100 b) are connected to the first rack (100 a) in a sliding mode along the front-back direction, the tray support blocks (100 b) are driven to slide through a first driving piece (110), and the tray support blocks (100 b) are used for placing copper bar trays (120);
A first transfer device (100 c) disposed on the first frame (100 a), the first transfer device (100 c) being configured to transfer copper bars on the copper bar tray (120);
A first conveying device (100 d) for receiving the copper bar transferred by the first transfer device (100 c), wherein the first conveying device (100 d) is used for conveying the copper bar leftwards;
The inlet end of the sawing device (200) is connected with the first conveying device (100 d), and the sawing device (200) is used for sawing copper bars;
The second conveying device (300 a) is connected with the outlet end of the sawing device (200), and the second conveying device (300 a) is used for conveying the sawed copper bars leftwards;
a second transfer device (300 b) disposed above the second conveying device (300 a), the second transfer device (300 b) being configured to transfer the copper bars on the second conveying device (300 a);
the deburring device (300 c) is arranged side by side with the second conveying device (300 a) along the front-back direction, the deburring device (300 c) is used for receiving the copper bars transferred by the second transferring device (300 b), and the deburring device (300 c) is used for removing burrs on saw cutting fractures of the copper bars;
A third conveying device (400 a) connected with the outlet end of the deburring device (300 c), wherein the third conveying device (400 a) is used for conveying the deburred copper bars;
The marking device (500) is arranged between the deburring device (300 c) and the third conveying device (400 a), and the marking device (500) is used for marking the finished copper bar with a label and a two-dimensional code;
A third transfer device (400 b) disposed above the third conveying device (400 a), the third transfer device (400 b) being configured to transfer the copper bars on the third conveying device (400 a);
The discharging bracket (400 c) is arranged below the third transferring device (400 b), a plurality of placing stations (410) are arranged on the discharging bracket (400 c), and the placing stations (410) are arranged in a front-back direction;
a storage tray (400 d) is inserted into the placing station (410) from top to bottom, and the storage tray (400 d) is used for receiving the copper bars transferred by the third transfer device (400 b);
A jacking transfer mechanism (400 e) for jacking the stock tray (400 d) to transfer the stock tray (400 d) to a preset placing station (410);
The first driving part (110), the first transfer device (100 c), the first conveying device (100 d), the sawing device (200), the second conveying device (300 a), the second transfer device (300 b), the deburring device (300 c), the third conveying device (400 a), the third transfer device (400 b) and the jacking transfer mechanism (400 e) are all electrically connected to a control device.
2. The copper bar sawing line according to claim 1, characterized in that: the first transfer device (100 c) comprises:
A first two-axis motion module (130) arranged on the first frame (100 a);
The mounting rod (140) is connected to the output end of the first two-axis movement module (130), the mounting rod (140) is arranged in an extending mode along the left-right direction, and the first two-axis movement module (130) is used for driving the mounting rod (140) to move in the front-back direction or the left-right direction;
Copper bar sucking discs (150) are arranged, a plurality of copper bar sucking discs (150) are distributed on the mounting rod (140) at intervals along the left-right direction, and the first two-axis movement module (130) is used for sucking copper bars by the copper bar sucking discs (150) and transferring the copper bars to the first conveying device (100 d).
3. The copper bar sawing line according to claim 2, characterized in that: the sawing device (200) comprises:
the support comprises a support (210), wherein a supporting table (211) is arranged at the upper end of the support, a guide groove (212) and an avoidance opening (213) are arranged on the supporting table (211), the guide groove (212) is arranged in a left-right extending mode, and the avoidance opening (213) is arranged in a front-back extending mode;
the saw cutting machine (220) is connected to the bracket (210) in a sliding manner along the front-back direction, and a saw blade of the saw cutting machine (220) protrudes out of the avoidance opening (213);
The positioning block (230) is connected to the supporting table (211) in a sliding manner along the front-back direction, and the positioning block (230) is used for blocking the copper bars;
and the pressing mechanism (240) is arranged on the bracket (210), and the pressing mechanism (240) is used for pressing the copper bars.
4. A copper bar sawing line as claimed in claim 3, characterized in that: the copper bar conveying device further comprises a clamp (310), the clamp (310) is connected to the second conveying device (300 a) in a sliding mode along the left-right direction, and the clamp (310) is used for clamping the copper bar and dragging the copper bar leftwards.
5. The copper bar sawing line as claimed in claim 4, wherein: the deburring device (300 c) includes:
a first conveying roller (320), wherein the first conveying roller (320) is used for conveying the copper bar leftwards;
A second conveying roller (330) arranged in front of the first conveying roller (320) side by side, the second conveying roller (330) being used for conveying the copper bar to the right;
The deburring machine (340) comprises a shell (341) and a deburring roller (342), wherein the deburring roller (342) is rotatably arranged in the shell (341), a copper bar inlet (341 a) is formed in the shell (341), the copper bar inlet (341 a) is used for guiding copper bars to enter the shell (341), the deburring roller (342) is used for cutting burrs on saw cutting and cutting of copper bars, the deburring machine (340) is arranged on the left side of the first conveying roller (320) and the right side of the second conveying roller (330), and the left end of the second conveying roller (330) is used as an outlet end to be connected with the third conveying device (400 a);
The clamping mechanism (350), the below of first conveying roller (320) and second conveying roller (330) all is provided with clamping mechanism (350), clamping jaw of clamping mechanism (350) can follow corresponding first conveying roller (320) or the roller gap of second conveying roller (330) stretches out in order to centre gripping copper bar.
6. The copper bar sawing line as claimed in claim 5, wherein: the second transfer device (300 b) comprises:
a second frame (360 a);
The first lifting power pieces (360 b) are arranged in a plurality, the first lifting power pieces (360 b) are arranged side by side along the left-right direction, and the first lifting power pieces (360 b) are connected to the second frame (360 a) in a sliding manner along the front-back direction;
a first push plate (360 c) connected to the main shaft of the first lifting power member (360 b), wherein the first push plate (360 c) is used for pushing the copper bar on the second conveying device (300 a) to the first conveying roller (320);
A plurality of second lifting power pieces (360 d), wherein the second lifting power pieces (360 d) are arranged side by side along the left-right direction, and the second lifting power pieces (360 d) are connected on the second frame (360 a) in a sliding manner along the front-back direction;
and the second pushing plate (360 e) is connected to the main shaft of the second lifting power piece (360 d), and the second pushing plate (360 e) is used for pushing the copper bars on the first conveying roller (320) to the second conveying roller (330).
7. The copper bar sawing line as claimed in claim 6, characterized in that the third transfer means (400 b) comprises:
a third rack (420);
A second two-axis motion module (430) disposed on the third frame (420);
The connecting rod (440) is connected to the output end of the second two-axis movement module (430), and the second two-axis movement module (430) is used for driving the connecting rod (440) to move or lift in the front-back direction;
The blanking sucker (450) is provided with a plurality of, a plurality of blanking suckers (450) are arranged on the connecting rod (440) side by side along the left-right direction, and the second two-axis movement module (430) is used for driving the blanking sucker (450) to adsorb copper bars and transfer to the stock tray (400 d).
8. The copper bar sawing production line as claimed in claim 7, wherein the jacking transfer mechanism (400 e) comprises:
A blanking ground rail (460) arranged below the third rack (420);
The jacking power pieces (470) are connected to the discharging ground rail (460) in a sliding manner along the front-back direction, two jacking power pieces (470) are arranged, and the two jacking power pieces (470) are respectively arranged at the left side or the right side of the discharging bracket (400 c);
And the supporting plate (480) is connected to the main shaft of the lifting power piece (470), and the lifting power piece (470) is used for driving the supporting plate (480) to lift the storage disc (400 d).
9. The copper bar sawing line as claimed in claim 8, wherein: the marking device (500) is arranged between the second conveying roller (330) and the third conveying device (400 a), and the marking device (500) is used for marking the finished copper bar and the two-dimensional code.
10. A method for using the copper bar sawing production line, which is characterized by being applied to the copper bar sawing production line as claimed in claim 9, comprising the following steps:
Taking copper bars, inputting required specifications of the copper bars into the control device, then driving the corresponding tray supporting blocks (100 b) to slide backwards by the first driving piece (110), driving the copper bar sucking discs (150) to move to the upper part of the copper bar tray (120) by the first two-axis movement module (130) when the tray supporting blocks (100 b) slide backwards to a material taking position, and then descending and sucking the copper bars in the copper bar tray (120) by the first two-axis movement module (130) and transferring the copper bars to the first transfer device (100 c);
The copper bar is sawn, the first transfer device (100 c) inputs the transferred copper bar from the inlet end of the sawing device (200), the copper bar enters from the guide groove (212), the clamp (310) clamps the copper bar to drag for a preset length at the moment, then the pressing mechanism (240) presses the copper bar, the sawing machine (220) slides along the front-back direction to enable the saw blade to contact with the copper bar, the sawing machine (220) saw the copper bar, then the clamp (310) continues to drag the sawn copper bar to move leftwards, and the positioning block (230) stretches out to block the copper bar positioned on the right side of the sawing device (200);
The first lifting power piece (360 b) drives the first push plate (360 c) to push the copper bar on the second conveying device (300 a) forward to the first conveying roller (320), the first conveying roller (320) conveys the copper bar to the left into the corresponding deburring machine (340) until a sawing fracture at the left end of the copper bar is in contact with a deburring roller (342) of the deburring machine (340), then the clamping mechanism (350) is lifted to clamp the copper bar, so that the copper bar is fixed, and thereafter, the deburring roller (342) cuts off burrs on the sawing fracture of the copper bar; then, the second lifting power piece (360 d) drives the second push plate (360 e) to push the copper bar on the first conveying roller (320) forward to the second conveying roller (330), the second conveying roller (330) conveys the copper bar to the right into the corresponding deburring machine (340) until a sawing fracture at the right end of the copper bar is in contact with a deburring roller (342) of the deburring machine (340), and then the clamping mechanism (350) is lifted to clamp the copper bar so that the copper bar is fixed, and thereafter, the deburring roller (342) cuts burrs on the sawing fracture of the copper bar;
Marking, wherein the second conveying roller (330) conveys the copper bar with the burrs removed leftwards through the marking device (500), the marking device (500) marks a two-dimensional code label on the copper bar, and then the copper bar is continuously conveyed to the third conveying device (400 a);
Taking materials, wherein the second two-axis movement module (430) drives the connecting rod (440) to descend, so that the blanking sucker (450) on the connecting rod (440) is contacted with the copper bar on the third conveying device (400 a), and then the blanking sucker (450) adsorbs the copper bar, and the second two-axis movement module (430) drives the copper bar to be transferred to the storage tray (400 d) of the placing station (410) at the receiving position; when the copper bars are stored in the storage tray (400 d) at the material receiving position, the jacking power piece (470) drives the supporting plate (480) to jack up the storage tray (400 d), and then the jacking power piece (470) drives the storage tray (400 d) to slide to the material receiving position in the front-back direction, and then the copper bars are manually taken out; simultaneously, the jacking power piece (470) drives the supporting plate (480) to jack up the other material storage disc (400 d) and transfer the material storage disc to the placing station (410) of the material receiving position.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202410442195.9A CN118237917A (en) | 2024-04-12 | 2024-04-12 | Copper bar sawing production line and application method thereof |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202410442195.9A CN118237917A (en) | 2024-04-12 | 2024-04-12 | Copper bar sawing production line and application method thereof |
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| CN118237917A true CN118237917A (en) | 2024-06-25 |
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| Application Number | Title | Priority Date | Filing Date |
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| CN202410442195.9A Pending CN118237917A (en) | 2024-04-12 | 2024-04-12 | Copper bar sawing production line and application method thereof |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN118989458A (en) * | 2024-09-20 | 2024-11-22 | 福建省南平铝业股份有限公司 | Precise sawing system for ultrathin materials |
-
2024
- 2024-04-12 CN CN202410442195.9A patent/CN118237917A/en active Pending
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN118989458A (en) * | 2024-09-20 | 2024-11-22 | 福建省南平铝业股份有限公司 | Precise sawing system for ultrathin materials |
| CN118989458B (en) * | 2024-09-20 | 2025-11-28 | 福建省南平铝业股份有限公司 | Precise sawing system for ultrathin materials |
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