CN219859763U - Can divide strip machine of automatic unloading - Google Patents

Can divide strip machine of automatic unloading Download PDF

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Publication number
CN219859763U
CN219859763U CN202321105935.7U CN202321105935U CN219859763U CN 219859763 U CN219859763 U CN 219859763U CN 202321105935 U CN202321105935 U CN 202321105935U CN 219859763 U CN219859763 U CN 219859763U
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China
Prior art keywords
blanking
roller
pushing
plate
slitter
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Application number
CN202321105935.7U
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Chinese (zh)
Inventor
李纯
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Shenzhen Yanchuan Photoelectric Co ltd
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Shenzhen Yanchuan Photoelectric Co ltd
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Priority to CN202321105935.7U priority Critical patent/CN219859763U/en
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Abstract

The utility model relates to a slitting machine capable of automatically blanking, and relates to the field of slitting machines. The slitting machine body comprises a rolling shaft, wherein the rolling shaft comprises a fixed end and a blanking end; the pushing assembly comprises a pushing ring sleeved on the roller and capable of sliding on the roller. The blanking end is arranged on the mounting base through a supporting rod, and the supporting rod is detachably connected with the blanking end. When the blanking is needed, the blanking end is separated from the supporting rod, and under the action of the driving component, the pushing ring slides on the roller from the fixed end to the blanking end to drive the product on the roller to slide in the same direction until the product is separated from the blanking end, so that the blanking is realized. The automatic blanking slitting machine provided by the utility model has the advantages that the blanking process of the slitting machine is automatic, and the problem of manpower waste caused by manual blanking is solved.

Description

Can divide strip machine of automatic unloading
Technical Field
The utility model relates to the field of slitting machines, in particular to a slitting machine capable of automatically blanking.
Background
A slitter is an apparatus that slit a wide web of material longitudinally into different widths of material. The application is very wide, such as being widely used for the variety of the strip paper, plays an important role in the current packaging equipment in China, becomes a main stream product in the market, and is frequently visible in the packaging market; but also used for slitting leather, cloth, plastic, film and the like.
After the original material is longitudinally cut into strips with different widths according to requirements, the strips with different widths are rolled into products to be packaged through the rolling shafts, and after the rolling is completed, the rolling shafts are required to be manually dismounted, so that the products rolled on the rolling shafts are dismounted.
With respect to the above-mentioned related art, the inventors consider that manual blanking wastes manpower.
Disclosure of Invention
In order to solve the problem of manpower waste caused by manual blanking of the slitting machine, the utility model provides the slitting machine capable of automatically blanking.
The utility model provides a slitting machine capable of automatically blanking, which adopts the following technical scheme:
the automatic blanking slitting machine comprises a mounting base, a slitting machine body, a pushing assembly and a driving assembly, wherein the slitting machine body is mounted on the mounting base; the slitting machine body comprises a rolling shaft, wherein the rolling shaft comprises a fixed end and a blanking end; the pushing assembly comprises a pushing ring which is sleeved on the rolling shaft and can slide on the rolling shaft, the discharging end is mounted on the mounting base through a supporting rod, and the supporting rod is detachably connected with the discharging end.
By adopting the technical scheme, the mounting base is used for fixedly mounting the slitting machine body, the pushing assembly and the driving assembly; the roller is used for rolling the cut material. When the rolling is completed, the blanking end of the roller is disconnected with the supporting rod, the driving assembly provides power to push the pushing ring to slide on the roller from the fixed end to the blanking end, and then the product which is separated on the roller is detached from the roller. The automatic blanking is realized through the arrangement of the pushing ring and the driving assembly, and the problem that manpower is wasted due to manual blanking is solved.
Optionally, a support plate is installed at the top of the support rod, and the support rod is telescopic.
By adopting the technical scheme, when the roller rolls up the cut material, the supporting plate is abutted with the roller, and the supporting rod and the supporting plate provide supporting force for the roller; when the winding is finished and the blanking is required, the supporting rod is shortened by shrinkage, and the supporting plate is separated from the rolling shaft, so that automatic blanking is realized under the work of the driving assembly and the pushing assembly.
Optionally, the support plate is configured as an upwardly curved arcuate plate.
By adopting the technical scheme, the contact area between the supporting plate and the rolling shaft is increased by the arc-shaped plate, so that the rolling shaft is more stable.
Optionally, the support rod includes a fixed rod fixed on the mounting base and a sliding tube slidable on the fixed rod; the fixed rod is provided with a first mounting hole, the sliding tube is provided with a second mounting hole, and when the first mounting hole is communicated with the second mounting hole, a bolt is inserted.
By adopting the technical scheme, when the sliding tube slides to the second mounting hole and the first mounting hole to be communicated, the bolt is inserted into the first mounting hole and the second mounting hole, so that the sliding tube is fixed on the fixed rod, and at the moment, the supporting plate is abutted with the rolling shaft, and the rolling shaft performs rolling work; after the winding is completed, the bolt is pulled out, the sliding tube slides downwards, and the supporting plate is separated from the rolling shaft, so that the blanking is performed. The mode is simple and convenient in use.
Optionally, the driven component is a cylinder, and the cylinder comprises a piston rod and a cylinder barrel; the piston rod is parallel to the roller, and the piston rod and the roller are not on the same straight line.
By adopting the technical scheme, when the piston rod of the air cylinder is parallel to the rolling shaft, and the piston rod can be lengthened, the product is detached from the rolling shaft by pushing the ring; if the piston rod and the roller are on the same straight line, the roller blocks the expansion and contraction of the piston rod, and therefore automatic unloading cannot be achieved.
Optionally, a connecting plate is fixed at the top end of the piston rod, and a pushing plate is arranged on the connecting plate and is fixedly connected with the pushing ring.
By adopting the technical scheme, the connecting plate moves along with the piston rod to drive the pushing plate to move so as to drive the pushing ring to move, and when the blanking is required, the piston rod stretches to drive the pushing ring to move on the rolling shaft in the direction close to the blanking end so as to perform blanking; when the blanking is completed, the piston rod contracts to drive the push ring to return to one side of the fixed end.
Optionally, the pushing plates are provided with two groups and symmetrically mounted on the pushing ring.
By adopting the technical scheme, the two sides of the pushing ring are uniformly stressed, and the pushing ring is more beneficial to pushing the product to slide on the rolling shaft so as to discharge.
Optionally, the pushing plate is an arc plate bending toward the axis direction of the roller.
By adopting the technical scheme, the contact area between the pushing plate and the pushing ring is increased by the arc plate, so that the pushing ring and the pushing plate are connected more firmly, and the pushing plate is effectively prevented from being separated from the pushing ring under the action of the driving assembly.
Optionally, a guide plate is installed on a side, close to the discharging end, of the installation base, and the guide plate extends obliquely downwards from the discharging end to the material receiving box.
Through adopting above-mentioned technical scheme, the product of unloading from the roller bearing is directly collected in the receipts workbin, does not need to receive the material specially, in addition, the setting of deflector for the product slides into the collecting box along the deflector, reduces the product and directly falls in the receipts workbin effectively, and causes the damaged probability of product.
Optionally, both sides of the guide plate are bent upwards.
Through adopting above-mentioned technical scheme, prevent effectively that the product from sliding off the deflector, fall from the both sides of deflector, cause the product damaged or can't fall into in the receipts workbin.
In summary, the present utility model includes at least one of the following beneficial technical effects:
1. the pushing assembly and the pushing ring are arranged, so that the automatic blanking of the slitting machine is realized, and the problem of manpower waste caused by manual blanking is solved;
2. the supporting rods are arranged in a telescopic manner, so that the supporting rods play a supporting role when the stripped materials are rolled, and the supporting rods do not influence automatic blanking when blanking;
3. the push plate is arranged to be an arc plate bent towards the axis direction of the roller, so that the contact area between the push plate and the push ring is increased, and the stability of connection between the push plate and the push ring is further improved.
Drawings
FIG. 1 is a schematic overall structure of an embodiment of the present utility model;
FIG. 2 is a schematic view showing the connection mode of the fixed end and the blanking end of the roller;
FIG. 3 is a cross-sectional view showing the structure and connection of the fixing rod and the sliding tube;
fig. 4 is an enlarged schematic view at a in fig. 1.
Reference numerals illustrate: 1. a mounting base; 2. a slitter body; 21. a roller; 211. a fixed end; 212. a blanking end; 3. a pushing assembly; 31. pushing the ring; 32. a pushing plate; 4. a drive assembly; 41. a cylinder; 411. a cylinder; 412. a piston rod; 42. a connecting plate; 5. a material receiving box; 6. a mounting table; 7. a guide plate; 8. a support rod; 81. a fixed rod; 811. a first mounting hole; 82. a sliding tube; 821. a second mounting hole; 83. a plug pin; 9. and a support plate.
Detailed Description
The utility model is described in further detail below with reference to fig. 1-4.
The embodiment of the utility model discloses a slitting machine capable of automatically blanking.
Referring to fig. 1, a slitting machine capable of automatically blanking comprises a mounting base 1, a slitting machine body 2, a pushing assembly 3, a driving assembly 4 and a material receiving box 5. The slitting machine body 2 and the pushing assembly 3 are mounted on the mounting base 1. The driving assembly 4 is connected with the pushing assembly 3 and provides power for the pushing assembly 3. A mounting table 6 is provided on one side of the mounting base 1, and the driving unit 4 is mounted on the mounting table 6. The receiving bin 5 is placed on the side of the mounting base 1 remote from the mounting table 6 for collecting the discharged product.
The slitter body 2 comprises a roller 21, the roller 21 being adapted to take up material which has been slit. The roller 21 comprises a fixed end 211 and a blanking end 212, wherein the fixed end 211 is arranged on one side of the mounting base 1 close to the mounting table 6, and the blanking end 212 is arranged on one side of the mounting base 1 far away from the mounting table 6 through the supporting rod 8. The bracing piece 8 includes the dead lever 81 that is fixed in perpendicularly on the mounting base 1 and the slip pipe 82 of cover outside the dead lever 81, slip pipe 82 and dead lever 81 sliding connection are fixed with backup pad 9 in the one end that the dead lever 81 was kept away from to slip pipe 82, and backup pad 9 inner wall sets up to the curved arc of roller bearing 21 axis direction bending, has increased the area of contact between backup pad 9 and the roller bearing 21 effectively, has improved the backup pad 9 to the holding power of roller bearing 21, and restriction roller bearing 21 is deflected because of constantly rotating in the rolling process effectively. The first mounting hole 811 is formed in the fixing rod 81, the second mounting hole 821 is formed in the sliding tube 82, the sliding tube 82 slides on the fixing rod 81 until the second mounting hole 821 is communicated with the first mounting hole 811 in the slitting and winding process, the bolt 83 is inserted into the first mounting hole 811 and the second mounting hole 821, at this time, the supporting plate 9 is abutted against the roller 21, the roller 21 is supported, and the roller 21 is stably mounted on the mounting base 1. When the rolling is completed and the product on the roller 21 needs to be dismounted, the bolt 83 is pulled out, and the sliding tube 82 slides along the fixing rod 81 in a direction away from the roller 21, so that the supporting plate 9 is separated from the roller 21, and further the subsequent blanking process is performed.
The pushing assembly 3 includes a pushing ring 31 sliding on the roller 21 and pushing plates 32 symmetrically welded to both sides of the pushing ring 31; the driving assembly 4 comprises an air cylinder 41 and a connecting plate 42 connected with the air cylinder 41, the connecting plate 42 is fixedly connected with the pushing plate 32, the air cylinder 41 comprises a cylinder 411 and a piston rod 412, and the connecting plate 42 is fixedly connected with the top end of the piston rod 412. The piston rod 412 is parallel to the roller 21, so that the power generated by the cylinder 41 can be more transmitted to the pushing component 3, the blanking efficiency is improved, and the energy is saved; if the piston rod 412 and the roller 21 are not in the same straight line, the roller 21 restricts the expansion and contraction of the piston rod 412, and thus the automatic blanking process cannot be realized.
Two pushing plates 32 are symmetrically welded on two sides of the pushing ring 31, so that the stress on two sides of the pushing ring 31 is uniform, and further, in the blanking process, two sides of a product wound on the roller 21 are uniformly stressed, and the product is more favorably dismounted from the roller 21. The pushing plate 32 is arranged to be an arc-shaped plate which is bent towards the axis direction of the roller 21, so that the contact area between the inner wall of the pushing plate 32 and the outer wall of the pushing ring 31 is increased, the connection firmness between the pushing plate 32 and the pushing ring 31 is further improved, and the separation probability of the pushing plate 32 and the pushing ring 31 under the action of the piston rod 412 is reduced. A material receiving box 5 is arranged on one side of the mounting base 1 close to the material discharging end 212 and is used for collecting products discharged from the rolling shafts 21, and a subsequent special material receiving process is not needed, so that the efficiency is improved, and the labor is saved; the guide plate 7 is arranged on one side of the mounting base 1, which is close to the blanking end 212, and the guide plate 7 extends downwards to the collecting box from the lower part of the blanking end 212, so that products unloaded on the roller 21 slide into the collecting box 5 along the guide plate 7, and the probability of product damage caused by direct falling of the products from the blanking end 212 of the roller 21 into the collecting box 5 is effectively reduced. The edges of the guide plates 7 are arranged to be bent upwards, so that products are effectively prevented from sliding off the guide plates 7 and falling from two sides of the guide plates 7, and the products are damaged or cannot fall into the material receiving box 5.
The embodiment of the utility model provides a slitting machine capable of automatically blanking, which comprises the following implementation principle: in the process of slitting the material, the slit material is wound on the roller 21, after the winding is completed, the sliding tube 82 slides downwards, the supporting plate 9 is separated from the blanking end 212 of the roller 21, the pushing ring 31 slides on the roller 21 from the fixed end 211 to the blanking end 212 under the action of the air cylinder 41, the product on the roller 21 and the pushing ring 31 are pushed to move in the same direction until the product is separated from the blanking end 212 and slides into the material receiving box 5, and after the blanking is completed, the piston rod 412 contracts, so that the pushing ring 31 is driven to return to the initial position. According to the automatic blanking slitting machine, the blanking end 212 and the supporting rod 8 are detachably connected under the combined action of the driving component 4 and the pushing component 3, so that the automatic blanking process of the slitting machine is realized, and the problem of manpower waste caused by manual blanking is solved.
The above embodiments are not intended to limit the scope of the present utility model, so: all equivalent changes in structure, shape and principle of the utility model should be covered in the scope of protection of the utility model.

Claims (10)

1. Can divide strip machine of automatic unloading, its characterized in that: the automatic slitting machine comprises a mounting base (1), a slitting machine body (2) mounted on the mounting base (1), a pushing assembly (3) mounted on the mounting base (1) and a driving assembly (4) connected with the pushing assembly (3); the slitting machine body (2) comprises a roller (21), and the roller (21) comprises a fixed end (211) and a blanking end (212); the pushing assembly (3) comprises a pushing ring (31) which is sleeved on the roller (21) and can slide on the roller (21), the discharging end (212) is mounted on the mounting base (1) through a supporting rod (8), and the supporting rod (8) is detachably connected with the discharging end (212).
2. The automatic blanking slitter of claim 1, wherein: the support plate (9) is arranged at the top of the support rod (8), and the support rod (8) is telescopic.
3. The automatic blanking slitter of claim 2, wherein: the support plate (9) is provided as an upwardly curved arcuate plate.
4. The automatic blanking slitter of claim 2, wherein: the support rod (8) comprises a fixed rod (81) fixed on the mounting base (1) and a sliding tube (82) capable of sliding on the fixed rod (81); a first mounting hole (811) is formed in the fixing rod (81), a second mounting hole (821) is formed in the sliding tube (82), and when the first mounting hole (811) and the second mounting hole (821) are communicated, a bolt (83) is inserted.
5. The automatic blanking slitter of claim 1, wherein: the driven component (4) is a cylinder (41), and the cylinder (41) comprises a piston rod (412) and a cylinder barrel (411); the piston rod (412) is parallel to the roller (21), and the piston rod (412) is not collinear with the roller (21).
6. The automatic blanking slitter of claim 5, wherein: the top end of the piston rod (412) is fixed with a connecting plate (42), a pushing plate (32) is arranged on the connecting plate (42), and the pushing plate (32) is fixedly connected with the pushing ring (31).
7. The automatic blanking slitter of claim 6, wherein: the pushing plates (32) are provided with two groups and symmetrically mounted on the pushing ring (31).
8. The automatic blanking slitter of claim 6, wherein: the pushing plate (32) is provided as an arc plate which is curved in the axial direction of the roller (21).
9. The automatic blanking slitter of claim 1, wherein: the utility model discloses a material collecting box (5) is placed to one side that mounting base (1) is close to unloading end (212), deflector (7) are installed to one side that mounting base (1) is close to unloading end (212), deflector (7) follow unloading end (212) slope downwardly extending to material collecting box (5).
10. The automatic blanking slitter of claim 9, wherein: both sides of the guide plate (7) are bent upwards.
CN202321105935.7U 2023-05-09 2023-05-09 Can divide strip machine of automatic unloading Active CN219859763U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321105935.7U CN219859763U (en) 2023-05-09 2023-05-09 Can divide strip machine of automatic unloading

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321105935.7U CN219859763U (en) 2023-05-09 2023-05-09 Can divide strip machine of automatic unloading

Publications (1)

Publication Number Publication Date
CN219859763U true CN219859763U (en) 2023-10-20

Family

ID=88369957

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321105935.7U Active CN219859763U (en) 2023-05-09 2023-05-09 Can divide strip machine of automatic unloading

Country Status (1)

Country Link
CN (1) CN219859763U (en)

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