Intelligent tray distributing machine
Through the design of the intelligent partition machine, the problem of dimensional adaptation of material tapes in the existing technology is solved, and efficient and accurate material tape separation is achieved. It is suitable for SMT material tape separation, improving the efficiency and accuracy of the partition.
Patent Information
- Application Number
- CN202510709949.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-29
- Publication Date
- 2025-07-22
AI Technical Summary
The existing winding machines cannot be positioned and adjusted according to the size of the tape, resulting in the inability to adapt to the tape of different sizes, affecting the use effect.
An intelligent disc splitter is designed, including a frame, a material retracting and discharging part, a material separation part and a disc splitter. Through the combination of fixed rail components, moving rail components and shearing components, the positioning and cutting of the tape is realized, and the tape is adapted to the dispersion of different widths of tape.
It realizes efficient coiling of tapes of different widths, improves the efficiency and accuracy of disk division, reduces manual operation strength, is suitable for SMT tape division, and supports a variety of tape widths and materials.
Smart Images

Figure CN120348772A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of tape rewinding equipment, and particularly to an intelligent disk dividing machine. Background Art
[0002] SMT is the surface mount technology, which is the most popular technology and process in the current electronic assembly industry. It compresses traditional electronic components into devices with only a few tenths of the original volume, thus realizing high-density, high-reliability, miniaturization, low-cost of electronic product assembly and automation of electronic product production. Currently, advanced electronic products, especially in computer and communication electronic products, have widely adopted SMT technology.
[0003] A tape rewinding machine is a device that automatically rewinds a large roll of finished tape into small rolls of tape according to requirements. During the rewinding process, it is necessary to guide and position the tape to facilitate better winding into a roll. Different sizes of tapes will be replaced during use, but currently, the rewinding machine cannot perform positioning adjustment according to the size of the tape, which affects the use. Therefore, it is necessary to provide an intelligent disk dividing machine with a simple structure and suitable for sleeving tapes of different sizes. Summary of the Invention
[0004] To solve the deficiencies of the existing technology, the present invention provides a new type of intelligent disk dividing machine to solve the problem in the existing technology that it is not conducive to adapting tapes of different sizes.
[0005] To achieve the above object, the following technical solutions are adopted in the present invention:
[0006] An intelligent disk dividing machine for dividing a tape into disks, comprising a frame and a tape feeding and discharging part, a tape dividing part and a disk dividing part arranged on the frame. The tape feeding and discharging part and the disk dividing part are respectively arranged on opposite sides of the tape dividing part. The tape dividing part includes a tape dividing bottom plate, a fixed rail assembly, a moving rail assembly and a shearing assembly. The fixed rail assembly and the moving rail assembly are oppositely arranged on the tape dividing bottom plate to form a tape path for transmitting the tape from one end of the tape path to the other end;
[0007] The fixed rail assembly includes a fixed rail support, a fixed rail substrate, a rail strip, a cover plate mounting seat, a cover plate driving part, a cover plate seat, a pressing wheel driving part and a pressing wheel part. The fixed rail substrate is arranged on the fixed rail support, and the rail strip is arranged on the side of the fixed rail substrate close to the moving rail assembly;
[0008] A cover plate guide is provided along the width direction of the top of the fixed rail substrate. The cover plate mounting seat is slidably arranged on the fixed rail substrate through the cover plate guide. The cover plate driving member is arranged on the side of the fixed rail substrate away from the moving rail assembly, and its working end is connected to the cover plate mounting seat. The cover plate seat is arranged on the lower side of one end of the cover plate mounting seat close to the moving rail assembly and is located above the rail strip. The pressing wheel driving member is arranged on the cover plate mounting seat, and its working end is connected to the pressing wheel member slidably arranged on the cover plate mounting seat.
[0009] Further, a code disc assembly is arranged on the lower side of the fixed rail substrate corresponding to the pressing wheel member. The code disc assembly includes a code disc driving member and a feeding code disc. The code disc driving member is arranged on the side of the fixed rail substrate away from the moving rail assembly, and its working end is connected to the feeding code disc. A code disc through opening is provided at the position of the rail strip corresponding to the feeding code disc, and at least part of the feeding code disc is located in the code disc through opening.
[0010] Further, a pressing opening is arranged on one side of the cover plate mounting seat close to the moving rail assembly. The pressing wheel member includes a pressing wheel seat and a pressing wheel rotatably arranged on the pressing wheel seat. A guiding shaft seat is provided at each of the two opposite ends of the pressing opening. A guiding column is inserted through the guiding shaft seat, and the tops of the two guiding columns are respectively connected to the two ends of the pressing wheel seat. A pressing opening is provided at the position of the cover plate seat corresponding to the pressing wheel seat.
[0011] Further, a fixed rail guiding block is provided at each of the two opposite ends on the side of the fixed rail substrate close to the moving rail assembly. The two fixed rail guiding blocks are respectively located at the two ends of the rail strip, and a guiding column is provided on the lower side of the fixed rail guiding block. A material passing wheel group is arranged on the side of the fixed rail guiding block.
[0012] Further, the shearing assembly includes a shearing support, a shearing driving member, a shearing guiding member and a scissor member. The shearing support is arranged on the side of the fixed rail substrate away from the moving rail assembly. A shearing opening extending to the moving rail assembly is provided on the fixed rail substrate. The shearing guiding member is arranged on the shearing support. The scissor member is arranged on the shearing guiding member and at least part of it is located in the shearing opening. The shearing driving member is arranged on the side of the shearing support, and its working end is connected to the scissor member.
[0013] Further, a support assembly is provided on the side of the fixed rail substrate at the cutting opening. The support assembly includes a support fixing base, a support driving member, a support pushing block, a support block, and a support top plate. The support fixing base is provided on the fixed rail substrate. The support pushing block and the support block are both slidably provided on the support fixing base. The support top plate is provided on the top of the support block and is connected to the support pushing block through the support block. The support driving member is provided at the lower part of the support fixing base, and its working end is connected to the support pushing block.
[0014] Further, a guide groove assembly is provided on the side of the fixed rail substrate at the cutting opening. The guide groove assembly includes a material guiding swing plate, a material guiding driving member, and a material guiding fixing base. The material guiding fixing base is provided on the blanking bottom plate. The material guiding driving member is rotatably provided on the material guiding fixing base, and its working end is connected to the lower part of the material guiding swing plate. The upper part of the material guiding swing plate is rotatably provided on the fixed rail substrate through a rotating shaft. A guiding inclined surface is provided at the top of the material guiding swing plate.
[0015] Further, the moving rail assembly includes a moving rail support, a moving rail substrate, a moving rail guiding plate, a moving rail guiding member, and a moving rail driving member. The moving rail support is slidably provided on the blanking bottom plate through the moving rail guiding member. The moving rail driving member is provided on the blanking bottom plate, and its working end is connected to the moving rail support. The moving rail substrate is provided on the moving rail support. The moving rail guiding plate is provided on the side of the moving rail substrate close to the fixed rail substrate. A material groove is provided along the length direction of the side of the moving rail guiding plate close to the fixed rail substrate.
[0016] Further, a measurement part is provided on the side of the blanking bottom plate at the fixed rail assembly. The measurement part includes a measurement displacement assembly, a measurement assembly, and a camera assembly. The measurement displacement assembly is provided on the side of the fixed rail substrate away from the moving rail assembly, and its working ends are respectively connected to the measurement assembly and the camera assembly.
[0017] Further, the material receiving and feeding part includes a material receiving and feeding driving assembly, a material receiving and feeding guiding assembly, a material receiving and feeding mounting plate, a material feeding assembly, and a material receiving assembly. The material receiving and feeding driving assembly and the material receiving and feeding mounting plate are respectively provided on both sides of the material receiving and feeding guiding assembly. The working end of the material receiving and feeding driving assembly is connected to the material receiving and feeding mounting plate through the material receiving and feeding guiding assembly. The material feeding assembly and the material receiving assembly are both provided on the material receiving and feeding mounting plate.
[0018] The beneficial effects compared with the prior art are as follows. By adopting the above solution, the structure of the present invention is simple and suitable for winding and packaging material tapes of different widths into coils. First, load the raw material disk wound with the material tape onto the winding and unwinding part on the rack, pass the material tape through the material passing wheel group arranged on the fixed rail substrate, and introduce it into the material path surrounded by the material groove of the track bar, the cover plate seat and the moving rail assembly. After passing through the material path, introduce it into the material dividing disk of the material dividing part. At this time, the moving rail assembly adjusts the distance between the track bar and the material groove according to the width of the material tape. Subsequently, the driving parts of the winding and unwinding part and the material dividing part drive the raw material disk and the material dividing disk to rotate. After the material tape reaches the set length, it is cut off by the shearing assembly. Then, pass the material tape wound on the material dividing disk through the material path and introduce it into the empty material disk of the winding and unwinding part, and then drive the empty material disk and the material dividing disk to rotate by the driving part to wind up the material tape in the material dividing disk, which has good market application value. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic structural diagram of an intelligent material dividing machine according to an embodiment of the present invention;
[0020] Figure 2 For the present invention Figure 1 schematic structural diagram of the winding and unwinding part of the embodiment;
[0021] Figure 3 For the present invention Figure 1 schematic structural diagram of the material dividing part of the embodiment;
[0022] Figure 4 For the present invention Figure 1 schematic structural diagram one of the fixed rail assembly of the embodiment;
[0023] Figure 5 is a schematic structural diagram two of the fixed rail assembly of an embodiment of the present invention;
[0024] Figure 6 For the present invention Figure 1 schematic structural diagram of the moving rail assembly of the embodiment;
[0025] Figure 7 For the present invention Figure 1 schematic structural diagram of the shearing assembly of the embodiment;
[0026] Figure 8 For the present invention Figure 1 schematic structural diagram of the measurement part of the embodiment;
[0027] In the figure, 1 is the frame; 2 is the material loading and unloading part; 21 is the material loading and unloading drive assembly; 22 is the material loading and unloading guide assembly; 23 is the material loading and unloading mounting plate; 24 is the material feeding assembly; 25 is the material receiving assembly; 3 is the material distributing part; 31 is the material distributing bottom plate; 32 is the fixed rail assembly; 321 is the fixed rail support; 322 is the fixed rail base plate; 3221 is the material passing wheel set; 3222 is the cover plate guide rail part; 3223 is the fixed rail guide block; 3224 is the guide post; 323 is the rail strip; 324 is the cover plate mounting seat; 325 is the cover plate drive part; 326 is the cover plate seat; 327 is the pressing wheel drive part; 328 is the pressing wheel part; 3281 is the pressing wheel seat; 3282 is the material pressing wheel; 33 is the moving rail assembly; 331 is the moving rail support; 332 is the moving rail drive part; 333 is the moving rail guide part; 334 is the moving rail base plate; 335 is the moving rail guide plate; 336 is the material groove; 34 is the shearing assembly; 341 is the shearing opening; 342 is the shearing support; 343 is the shearing drive part; 344 is the shearing guide part; 345 is the scissors part; 35 is the code disc assembly; 351 is the code disc drive part; 352 is the feeding code disc; 36 is the support assembly; 361 is the support fixing seat; 362 is the support drive part; 363 is the support push block; 364 is the support block; 365 is the support top plate; 37 is the guide groove assembly; 371 is the material guiding swing plate; 372 is the material guiding drive part; 373 is the material guiding fixing seat; 374 is the guiding inclined plane; 4 is the disc dividing part; 5 is the measuring value part; 51 is the measuring value shifting assembly; 52 is the measuring value assembly; 53 is the camera assembly. Detailed implementation manners
[0028] To facilitate the understanding of those skilled in the art of the present invention, the following describes the specific implementation manners of the present invention with reference to the accompanying drawings. The preferred embodiments of the present invention are given in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described in this specification. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure content of the present invention more thorough and comprehensive.
[0029] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there may also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "installed", "fixed", "top end", "connected" and similar expressions used in this specification are only for the purpose of illustration.
[0030] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by those skilled in the technical field to which the present invention belongs. The terms used in this specification in the description of the present invention are only for the purpose of describing specific embodiments and are not used to limit the present invention.
[0031] One embodiment of the present invention is as Figure 1 、 3 、as shown in FIG. 4, the intelligent tape splitting machine is used to split the tape into reels, and includes a frame 1, a tape winding and unwinding part 2, a tape separating part 3, and a reel splitting part 4 arranged on the frame 1. The tape winding and unwinding part 2 and the reel splitting part 4 are respectively arranged on two opposite sides of the tape separating part 3. The tape separating part 3 includes a separating bottom plate 31, a fixed rail assembly 32, a moving rail assembly 33, and a shearing assembly 34. The fixed rail assembly 32 and the moving rail assembly 33 are oppositely arranged on the separating bottom plate 31 to form a tape path for transmitting the tape from one end of the tape path to the other end;
[0032] The fixed rail assembly 32 includes a fixed rail support 321, a fixed rail base plate 322, a rail strip 323, a cover plate mounting seat 324, a cover plate driving member 325, a cover plate seat 326, a pressing wheel driving member 327, and a pressing wheel member 328. The fixed rail base plate 322 is arranged on the fixed rail support 321, and the rail strip 323 is arranged on one side of the fixed rail base plate 322 close to the moving rail assembly 33;
[0033] A cover plate guide member 3222 is arranged on the top of the fixed rail base plate 322 along its own width direction. The cover plate mounting seat 324 is slidably arranged on the fixed rail base plate 322 through the cover plate guide member 3222. The cover plate driving member 325 is arranged on one side of the fixed rail base plate 322 far from the moving rail assembly 33, and its working end is connected to the cover plate mounting seat 324. The cover plate seat 326 is arranged on the lower side of one end of the cover plate mounting seat 324 close to the moving rail assembly 33 and is located above the rail strip 323. The pressing wheel driving member 327 is arranged on the cover plate mounting seat 324, and its working end is connected to a pressing wheel member 328 slidably arranged on the cover plate mounting seat 324.
[0034] The intelligent tape splitting machine of this solution is suitable for splitting and winding tapes of different widths into reels for packaging. First, load the raw material reel wound with the tape on the tape winding and unwinding part 2 on the frame 1, pass the tape through the material passing wheel group 3221 arranged on the fixed rail base plate 322, and introduce it into the tape path surrounded by the rail strip 323, the cover plate seat 326, and the tape slot 336 of the moving rail assembly 33. After passing through the tape path, introduce it into the splitting reel of the reel splitting part 4. At this time, the moving rail assembly 33 adjusts the distance between the rail strip 323 and the tape slot 336 according to the width of the tape; Subsequently, the driving members of the tape winding and unwinding part 2 and the reel splitting part 4 drive the raw material reel and the splitting reel to rotate. When the tape reaches the set length, it is cut off by the shearing assembly 34; Then, pass the tape wound on the splitting reel through the tape path and introduce it into the empty reel of the tape winding and unwinding part 2, and then drive the empty reel and the splitting reel to rotate by the driving member to wind up the tape in the splitting reel.
[0035] In this embodiment, asFigure 3 , 4 As shown in 4 , a code disk assembly 35 is provided on the lower side of the pressing wheel member 328 on the fixed rail substrate 322. The code disk assembly 35 includes a code disk driving member 351 and a feeding code disk 352. The code disk driving member 351 is disposed on the side of the fixed rail substrate 322 away from the moving rail assembly 33, and its working end is connected to the feeding code disk 352. A code disk opening is formed at the position of the track bar 323 corresponding to the feeding code disk 352, and at least a part of the feeding code disk 352 is located in the code disk opening.
[0036] Specifically, the moving rail assembly 33 is disposed on the front side of the fixed rail assembly 32. The material winding and unwinding part 2 and the disk separating part 4 are respectively disposed on the left and right sides of the fixed rail assembly 32 and the moving rail assembly 33. The code disk assembly 35 is disposed on the left part of the fixed rail substrate 322. The feeding code disk 352 is located on the front side of the fixed rail substrate 322. The code disk driving member 351 is a servo motor, which drives the feeding code disk 352 to rotate, so that when the feeding code disk 352 rotates, it passes through the code disk opening and contacts the material tape.
[0037] In this embodiment, as Figure 4 , 5 shown, a pressing opening is provided on the side of the cover plate mounting seat 324 close to the moving rail assembly 33. The pressing wheel member 328 includes a pressing wheel seat 3281 and a pressing wheel 3282 rotatably disposed on the pressing wheel seat 3281. A guiding shaft seat is provided at each of the two opposite ends of the pressing opening. A guiding column is inserted through the guiding shaft seat. The tops of the two guiding columns are respectively connected to the two ends of the pressing wheel seat 3281. A pressing opening is formed at the position of the cover plate seat 326 corresponding to the pressing wheel seat 3281.
[0038] Specifically, the pressing opening is disposed on the left part of the front side of the cover plate mounting seat 324. The pressing wheel seat 3281 has a "T" - shaped structure. The pressing wheel 3282 is rotatably disposed in the middle of the pressing wheel seat 3281. A spring is sleeved on the guiding column, and the two ends of the spring respectively abut against the bottom side of the pressing wheel seat 3281 and the top side of the cover plate mounting seat 324 to form a buffer. The pressing wheel driving member 327 is a slide cylinder, which drives the pressing wheel 3282 to move up and down along the guiding column. When the material tape passes over the track bar 323, the pressing wheel driving member 327 drives the pressing wheel 3282 to move downwards, pass through the pressing opening and contact the material tape.
[0039] Specifically, the cover plate driving member 325 includes a cover plate support and a cover plate driving cylinder. The cover plate support is arranged at the rear side of the fixed rail base plate 322. The cover plate driving cylinder is a push rod cylinder, which is fixed on the top of the cover plate support, and its working end is connected to the rear side of the cover plate mounting seat 324, driving the cover plate mounting seat 324 to slide back and forth along the cover plate guide member 3222. The cover plate seat 326 is arranged at the lower side of the front end of the cover plate mounting seat 324. When the cover plate driving cylinder drives the cover plate mounting seat 324 to move forward, the cover plate seat 326 is located above the track bar 323 to form a material channel with the material groove 336 of the moving rail assembly 33.
[0040] In this embodiment, as Figure 3 , 4 As shown in Figure 5, on one side of the fixed rail base plate 322 close to the moving rail assembly 33, a fixed rail guide block 3223 is provided at each of the opposite ends. The two fixed rail guide blocks 3223 are respectively located at the two ends of the track bar 323, and a guide post 3224 is provided below the fixed rail guide block 3223. A material passing wheel set 3221 is arranged on the side of the fixed rail guide block 3223.
[0041] Specifically, the track bar 323 is arranged at the front top of the fixed rail base plate 322. The two fixed rail guide blocks 3223 are of arc-shaped structures, respectively located at the two ends of the track bar 323, and a guide post 3224 is provided below the two fixed rail guide blocks 3223, and a material passing wheel set 3221 is arranged on the upper side. An optoelectronic component is arranged on the side of the material passing wheel set 3221. The fixed rail guide block 3223 and the guide post 3224 assist the material tape to enter the material channel.
[0042] In this embodiment, as Figure 7 shown, the shearing assembly 34 includes a shearing support 342, a shearing driving member 343, a shearing guide member 344 and a pair of scissors 345. The shearing support 342 is arranged on the side of the fixed rail base plate 322 away from the moving rail assembly 33. A shearing opening 341 extending to the moving rail assembly 33 is formed on the fixed rail base plate 322. The shearing guide member 344 is arranged on the shearing support 342. The pair of scissors 345 is arranged on the shearing guide member 344 and at least partially located in the shearing opening 341. The shearing driving member 343 is arranged on the side of the shearing support 342, and its working end is connected to the pair of scissors 345.
[0043] Specifically, the shear support 342 is arranged at the rear side of the fixed rail substrate 322. The scissor member 345 includes a first scissor fixing seat, a second scissor fixing seat, a scissor seat, an upper cutter and a lower cutter. The upper cutter and the lower cutter are rotatably connected to the side wall of the scissor seat through connecting pin shafts. The first scissor fixing seat and the second scissor fixing seat are respectively connected to the shear guiding member 344. The scissor seat is arranged on the first scissor fixing seat. The tail end of the lower cutter forms a linkage block and is rotatably connected to the second scissor fixing seat.
[0044] Specifically, the shear driving member 343 drives the scissor member 345 to move back and forth along the shear guiding member 344 in a screw driving manner. After the strip reaches the set length, the shear driving member 343 drives the scissor member 345 to move forward along the shear guiding member 344. With the forward movement, the lower cutter is driven to rotate, and the shearing action is completed with the upper cutter to cut off the strip.
[0045] In this embodiment, as Figure 4 shown, a support assembly 36 is arranged on the side of the fixed rail substrate 322 at the shear cut 341. The support assembly 36 includes a support fixing seat 361, a support driving member 362, a support pushing block 363, a support block 364 and a support top plate 365. The support fixing seat 361 is arranged on the fixed rail substrate 322. The support pushing block 363 and the support block 364 are both slidably arranged on the support fixing seat 361. The support top plate 365 is arranged on the top of the support block 364 and is connected to the support pushing block 363 through the support block 364. The support driving member 362 is arranged at the lower part of the support fixing seat 361, and its working end is connected to the support pushing block 363.
[0046] Specifically, the support fixing seat 361 is arranged at the front side of the fixed rail substrate 322 and is located on the left side of the shear cut 341. The shear driving member 343 drives the support top plate 365 to move up and down in a screw driving manner to cooperate with the track bar 323 to support the strip.
[0047] In this embodiment, as Figure 4 shown, a guide groove assembly 37 is arranged on the side of the fixed rail substrate 322 at the shear cut 341. The guide groove assembly 37 includes a strip guiding swing plate 371, a strip guiding driving member 372 and a strip guiding fixing seat 373. The strip guiding fixing seat 373 is arranged on the material separating bottom plate 31. The strip guiding driving member 372 is rotatably arranged on the strip guiding fixing seat 373, and its working end is connected to the lower part of the strip guiding swing plate 371. The upper part of the strip guiding swing plate 371 is rotatably arranged on the fixed rail substrate 322 through a rotating shaft. A guiding inclined surface 374 is arranged at the top of the strip guiding swing plate 371.
[0048] Specifically, the material guiding swing plate 371 is rotatably arranged on the front side of the fixed rail substrate 322 through a rotating shaft and is located on the right side of the cutting opening 341. There are two material guiding swing plates 371, which are arranged oppositely. The material guiding driving member 372 is a push rod cylinder, which drives the material guiding swing plate 371 to rotate to adjust the inclination of the guiding inclined surface 374 so that the guiding inclined surface 374 cooperates with the track bar 323 to facilitate the passing of the material tape through the material channel.
[0049] In this embodiment, as Figure 3 、 6 shown, the moving rail assembly 33 includes a moving rail support 331, a moving rail substrate 334, a moving rail guiding plate 335, a moving rail guiding member 333, and a moving rail driving member 332. The moving rail support 331 is slidably arranged on the material distributing bottom plate 31 through the moving rail guiding member 333. The moving rail driving member 332 is arranged on the material distributing bottom plate 31, and its working end is connected to the moving rail support 331. The moving rail substrate 334 is arranged on the moving rail support 331. The moving rail guiding plate 335 is arranged on the side of the moving rail substrate 334 close to the fixed rail substrate 322. A material groove 336 is arranged along the length direction of the side of the moving rail guiding plate 335 close to the fixed rail substrate 322.
[0050] Specifically, the moving rail guiding plate 335 is arranged at the rear side of the moving rail substrate 334. A material groove 336 is arranged along the length direction of the rear side of the moving rail guiding plate 335. A moving rail guiding block is arranged at each end of the material groove 336 of the moving rail guiding plate 335. The material groove 336, the track bar 323, and the cover plate seat 326 enclose a material channel. The moving rail driving member 332 drives the moving rail guiding plate 335 to move back and forth along the moving rail guiding member 333 in a screw driving manner to adjust the width of the material channel according to the width of the material tape.
[0051] Specifically, the intelligent disk dividing machine is used for SMT material tape disk dividing, supports connecting to the MES to automatically obtain disk dividing instructions, is compatible with manually inputting the material dividing quantity, and realizes high-speed and high-precision disk dividing operations. As a multi-functional device, it can synchronously execute the function of the component counting machine. Compared with manual operation, the disk dividing and counting efficiency of this device is increased by more than 30%, the counting accuracy exceeds 99%, the manual operation intensity is reduced by more than 50%, and it has both ease of use and reliability. It supports material tapes with widths of 8, 12, 16, and 24 mm, and supports paper and plastic material tapes.
[0052] In this embodiment, as Figure 1 、 8As shown, a measurement part 5 is arranged on the material distribution bottom plate 31 at the side of the fixed rail assembly 32. The measurement part 5 includes a measurement displacement assembly 51, a measurement assembly 52 and a camera assembly 53. The measurement displacement assembly 51 is arranged on the side of the fixed rail substrate 322 away from the moving rail assembly 33, and its working ends are respectively connected to the measurement assembly 52 and the camera assembly 53.
[0053] Specifically, the measurement assembly 52 is a probe assembly, the camera assembly 53 is a CCD camera, and the measurement displacement assembly 51 is an XY-axis displacement assembly, which drives the measurement assembly 52 and the camera assembly 53 to move bidirectionally in the XY direction in a screw drive manner.
[0054] In this embodiment, as Figure 1 、 2 shown, the material loading and unloading part 2 includes a material loading and unloading drive assembly 21, a material loading and unloading guiding assembly 22, a material loading and unloading mounting plate 23, a material unloading assembly 24 and a material loading assembly 25. The material loading and unloading drive assembly 21 and the material loading and unloading mounting plate 23 are respectively arranged on both sides of the material loading and unloading guiding assembly 22. The working end of the material loading and unloading drive assembly 21 is connected to the material loading and unloading mounting plate 23 through the material loading and unloading guiding assembly 22. The material unloading assembly 24 and the material loading assembly 25 are both arranged on the material loading and unloading mounting plate 23.
[0055] Specifically, the material loading and unloading guiding assembly 22 is arranged on the frame 1. The material loading and unloading drive assembly 21 drives the material loading and unloading mounting plate 23 to move up and down along the material loading and unloading guiding assembly 22 in a screw drive manner. The material unloading assembly 24 and the material loading assembly 25 have the same structure, including a mounting seat, a drive motor and a material shaft. The mounting seat is fixed on the material loading and unloading mounting plate 23. The drive motor is arranged on the mounting seat, and its working end is connected to the material shaft for sleeving the material tray. The positions of the material unloading assembly 24 and the material loading assembly 25 are adjusted through the material loading and unloading drive assembly 21.
[0056] Specifically, the drive motor is a reduction motor, and a baffle is sleeved on the material shaft. The two baffles are blocked on both sides of the material tray to prevent the material tape from skewing when it is wound in circles.
[0057] In this embodiment, as Figure 1 、 2 shown, the disk dividing part 4 has the same structure as the material loading and unloading part 2 so that the position of the disk dividing assembly is adjustable.
[0058] It should be noted that the above technical features continue to be combined with each other to form various embodiments not listed above, which are all regarded as within the scope described in the specification of the present invention; moreover, for those of ordinary skill in the art, improvements or modifications can be made according to the above description, and all such improvements and modifications shall fall within the protection scope of the appended claims of the present invention.
Claims
1. An intelligent tape dividing machine for dividing a tape into disks, characterized in that: The invention comprises a frame (1) and a material receiving and releasing part (2), a material dividing part (3) and a dividing plate part (4) arranged on the frame (1); the material receiving and releasing part (2) and the dividing plate part (4) are respectively arranged on two opposite sides of the material dividing part (3); the material dividing part (3) comprises a material dividing bottom plate (31), a fixed rail assembly (32), a movable rail assembly (33) and a shearing assembly (34); the fixed rail assembly (32) and the movable rail assembly (33) are arranged on the material dividing bottom plate (31) relative to each other to form a material channel, so as to transfer the material strip from one end of the material channel to the other end; The fixed rail assembly (32) comprises a fixed rail support (321), a fixed rail base plate (322), a track bar (323), a cover plate mounting seat (324), a cover plate driving member (325), a cover plate seat (326), a pressure wheel driving member (327) and a pressure wheel member (328); the fixed rail base plate (322) is arranged on the fixed rail support (321), and the track bar (323) is arranged on a side of the fixed rail base plate (322) close to the movable rail assembly (33); A cover plate guide member (3222) is arranged at the top of the fixed rail base plate (322) along its own width direction; the cover plate mounting seat (324) is slidably arranged on the fixed rail base plate (322) through the cover plate guide member (3222); the cover plate driving member (325) is arranged on a side of the fixed rail base plate (322) away from the movable rail assembly (33); a working end thereof is connected to the cover plate mounting seat (324); the cover plate seat (326) is arranged on the lower side of one end of the cover plate mounting seat (324) close to the movable rail assembly (33) and is located on the upper side of the track bar (323); the pressure wheel driving member (327) is arranged on the cover plate mounting seat (324); a working end thereof is connected to a pressure wheel member (328) slidably arranged on the cover plate mounting seat (324).
2. The intelligent tray divider according to claim 1, characterized in that, The fixed rail substrate (322) is provided with a code disc assembly (35) at the lower side of the pressure wheel assembly (328), and the code disc assembly (35) comprises a code disc driving component (351) and a feeding code disc (352). The code disc driving component (351) is provided on the side of the fixed rail substrate (322) away from the movable rail assembly (33), and its working end is connected to the feeding code disc (352). The track bar (323) corresponds to the position of the feeding code disc (352), and a code disc opening is provided, and the feeding code disc (352) is at least partially located in the code disc opening.
3. The intelligent tray divider according to claim 2, wherein, A material pressing port is arranged on one side of the cover plate mounting seat (324) close to the movable rail assembly (33); the pressure wheel member (328) comprises a pressure wheel seat (3281) and a pressure wheel (3282) rotatably arranged on the pressure wheel seat (3281); a guide shaft seat is arranged at each of the two opposite ends of the material pressing port; a guide column is passed through the guide shaft seat; the tops of the two guide columns are respectively connected to the two ends of the pressure wheel seat (3281); and a material pressing port is opened on the cover plate seat (326) corresponding to the position of the pressure wheel seat (3281).
4. The intelligent dish dividing machine according to claim 1, wherein On one side of the fixed rail substrate (322) close to the moving rail assembly (33), a fixed rail guide block (3223) is provided at each of the opposite two ends. The two fixed rail guide blocks (3223) are respectively located at the two ends of the rail bar (323), and a guide post (3224) is provided on the lower side of the fixed rail guide block (3223). A material passing wheel set (3221) is arranged on the side of the fixed rail guide block (3223).
5. The intelligent plate dividing machine according to claim 1, wherein, The shearing assembly (34) includes a shearing support (342), a shearing driving member (343), a shearing guide member (344) and a shearing member (345). The shearing support (342) is arranged on the side of the fixed rail substrate (322) away from the moving rail assembly (33). The fixed rail substrate (322) is provided with a shearing opening (341) extending to the moving rail assembly (33). The shearing guide member (344) is arranged on the shearing support (342). The shearing member (345) is arranged on the shearing guide member (344) and at least partially located in the shearing opening (341). The shearing driving member (343) is arranged on the side of the shearing support (342), and its working end is connected to the shearing member (345).
6. The intelligent tray dividing machine according to claim 5, characterized in that, The fixed rail substrate (322) is provided with a support assembly (36) on the side of the shearing opening (341). The support assembly (36) includes a support fixing seat (361), a support driving member (362), a support pushing block (363), a support block (364) and a support top plate (365). The support fixing seat (361) is arranged on the fixed rail substrate (322). The support pushing block (363) and the support block (364) are both slidably arranged on the support fixing seat (361). The support top plate (365) is arranged on the top of the support block (364) and is connected to the support pushing block (363) through the support block (364). The support driving member (362) is arranged at the lower part of the support fixing seat (361), and its working end is connected to the support pushing block (363).
7. The intelligent plate dividing machine according to claim 5, wherein, The fixed rail substrate (322) is provided with a guide groove assembly (37) on the side of the shearing opening (341). The guide groove assembly (37) includes a material guiding swing plate (371), a material guiding driving member (372) and a material guiding fixing seat (373). The material guiding fixing seat (373) is arranged on the material distributing bottom plate (31). The material guiding driving member (372) is rotatably arranged on the material guiding fixing seat (373), and its working end is connected to the lower part of the material guiding swing plate (371). The upper part of the material guiding swing plate (371) is rotatably arranged on the fixed rail substrate (322) through a rotating shaft. A guiding inclined surface (374) is arranged on the top of the material guiding swing plate (371).
8. The intelligent plate dividing machine according to claim 1, characterized in that, The moving rail assembly (33) includes a moving rail support (331), a moving rail base plate (334), a moving rail guide plate (335), a moving rail guide member (333), and a moving rail drive member (332). The moving rail support (331) is slidably disposed on the material distribution bottom plate (31) through the moving rail guide member (333). The moving rail drive member (332) is disposed on the material distribution bottom plate (31), and its working end is connected to the moving rail support (331). The moving rail base plate (334) is disposed on the moving rail support (331). The moving rail guide plate (335) is disposed on one side of the moving rail base plate (334) close to the fixed rail base plate (322). A material groove (336) is provided on one side of the moving rail guide plate (335) close to the fixed rail base plate (322) along its own length direction.
9. The intelligent plate dividing machine according to claim 1, wherein, A measurement part (5) is provided on the material distribution bottom plate (31) at the side of the fixed rail assembly (32). The measurement part (5) includes a measurement displacement assembly (51), a measurement assembly (52), and a camera assembly (53). The measurement displacement assembly (51) is disposed on the side of the fixed rail base plate (322) away from the moving rail assembly (33), and its working end is respectively connected to the measurement assembly (52) and the camera assembly (53).
10. The intelligent plate dividing machine according to claim 1, wherein, The material feeding and discharging part (2) includes a material feeding and discharging drive assembly (21), a material feeding and discharging guide assembly (22), a material feeding and discharging mounting plate (23), a material discharging assembly (24), and a material receiving assembly (25). The material feeding and discharging drive assembly (21) and the material feeding and discharging mounting plate (23) are respectively disposed on both sides of the material feeding and discharging guide assembly (22). The working end of the material feeding and discharging drive assembly (21) is connected to the material feeding and discharging mounting plate (23) through the material feeding and discharging guide assembly (22). The material discharging assembly (24) and the material receiving assembly (25) are both disposed on the material feeding and discharging mounting plate (23).