CN218520653U - Full-automatic numerical control blanking machine - Google Patents
Full-automatic numerical control blanking machine Download PDFInfo
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- CN218520653U CN218520653U CN202221659000.9U CN202221659000U CN218520653U CN 218520653 U CN218520653 U CN 218520653U CN 202221659000 U CN202221659000 U CN 202221659000U CN 218520653 U CN218520653 U CN 218520653U
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- hopper
- pipe
- feeding
- full
- numerical control
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Abstract
Full-automatic numerical control blanking machine. Relates to the technical field of blanking machines. Reasonable structure and good anti-blocking effect. The feeding device comprises a feeding hopper arranged above a material using mechanism, wherein the bottom of the feeding hopper is communicated with the material using mechanism, the top of the feeding hopper is provided with a feeding pipe, the bottom of the feeding pipe is sequentially provided with a corrugated pipe and a discharging pipe which are mutually communicated, and the feeding pipe and the corrugated pipe as well as the corrugated pipe and the discharging pipe are fixedly connected; the cylinder is arranged outside the discharging hopper, a push rod of the cylinder penetrates through the discharging hopper and extends into the discharging hopper, the push rod is connected with the feeding pipe through a universal joint, and the push rod pushes and pulls the feeding pipe.
Description
Technical Field
The utility model relates to an unloader technical field, concretely relates to full-automatic numerical control blanking machine.
Background
At present all need the transportation and use graininess material in moulding plastics or pharmacy trade, in order to improve the good protection of carrying efficiency and transportation process to the material, generally all can adopt pipeline transport moreover, can avoid to a great extent to wet or produce the unnecessary loss at the in-process of carrying, can also set up metering equipment in the pipeline simultaneously, and then reliably monitor the weight of the material of carrying.
However, in the process of conveying the materials to an injection molding machine or a packaging machine through a pipeline, due to the asynchronism of conveying and production, blanking is easily blocked, manual blockage removal is needed, the efficiency is low, and certain potential safety hazards exist.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a full-automatic numerical control blanking machine which is reasonable in structure and good in anti-blocking effect.
The utility model discloses a following technical scheme realizes: the full-automatic numerical control blanking machine comprises a blanking hopper arranged above a material using mechanism, wherein the bottom of the blanking hopper is communicated with the material using mechanism, a feeding pipe is arranged at the top of the blanking hopper, a corrugated pipe and a discharging pipe which are mutually communicated are sequentially arranged at the bottom of the feeding pipe, and the feeding pipe and the corrugated pipe and the discharging pipe are fixedly connected;
the feeding device is characterized in that a cylinder is arranged outside the feeding hopper, a push rod of the cylinder penetrates through the feeding hopper and extends into the feeding hopper, the push rod is connected with the feeding pipe through a universal joint, and the push rod pushes and pulls the feeding pipe.
The utility model discloses a preferred embodiment lies in, the open-top department of hopper is equipped with the apron down, the apron is the mesh form, the mesh diameter of apron is less than the external diameter of material, the inlet pipe is fixed wears to establish on the apron.
The utility model discloses an optimal implementation mode lies in, the push rod with linking department of hopper is equipped with the sliding sleeve down, the sliding sleeve parcel the push rod, one side that the sliding sleeve is located hopper down is equipped with the chamfer.
The utility model has the preferred implementation mode that the lower part of the inner side of the discharging hopper is provided with a baffle plate which is positioned below the discharging pipe, and the baffle plate divides the lower part of the inner side of the discharging hopper into a left chamber and a right chamber;
the upper part of the left chamber is communicated with the upper part of the right chamber, and the lower part of the left chamber is communicated with the lower part of the right chamber.
The utility model discloses a preferred embodiment lies in, the middle part of baffle is equipped with the breach, be equipped with supporting seat and dwang in the breach, the middle part of dwang is equipped with the pivot, the pivot is located on the supporting seat through the support, the supporting seat with still be equipped with the spring between the dwang, the both sides of support are located symmetrically to at least a pair of spring.
The utility model discloses a preferred embodiment lies in, the supporting seat is fixed to be located the bottom of breach, the breach top with there is the space between the top of dwang, dwang at the space internal rotation.
Compared with the prior art, the utility model discloses in under the drive of cylinder, the material in the inlet tube is discharged with the mode of sweeping through bellows, discharging pipe, just also makes the material change in real time at the falling point in using the material mechanism, has avoided the material to pile up in fixed a bit, effectively prevents to block up rational in infrastructure.
Drawings
FIG. 1 is a schematic view of the present invention;
in the figure: 1. a material using mechanism; 2. feeding a hopper; 21. a cover plate; 22. a sliding sleeve; 23. a partition plate; 231. a notch; 232. a supporting seat; 233. rotating the rod; 234. a rotating shaft; 235. a support; 236. a spring; 3. a feeding pipe; 4. a bellows; 5. a discharge pipe; 6. a cylinder; 61. a push rod; 62. a universal joint.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that the embodiments or technical features described below can be arbitrarily combined to form a new embodiment without conflict.
As shown in fig. 1, the full-automatic numerical control blanking machine comprises a blanking hopper 2 arranged above a material using mechanism 1, wherein the bottom of the blanking hopper 2 is communicated with the material using mechanism 1, a feeding pipe 3 is arranged at the top of the blanking hopper 2, a corrugated pipe 4 and a discharging pipe 5 which are mutually communicated are sequentially arranged at the bottom of the feeding pipe 3, and the feeding pipe 3 and the corrugated pipe 4 and the discharging pipe 5 are fixedly connected;
the cylinder 6 is arranged outside the discharging hopper 2, a push rod 61 of the cylinder 6 penetrates through the discharging hopper 2 and extends into the discharging hopper 2, the push rod 61 is connected with the feeding pipe 3 through a universal joint 62, and the push rod 61 pushes and pulls the feeding pipe 3. After the material in the pipeline entered into in the feed inlet, 6 actions of cylinder, horizontal direction reciprocating motion is followed to drive push rod 61, under the rotation connection effect of universal joint 62 and bellows 4, the swing takes place for discharging pipe 5, thus, the material in the inlet pipe 3 is through bellows 4, discharging pipe 5 is discharged with the mode of sweeping, just also make the material in the material mechanism 1 the placement change in real time, avoided the material to pile up in fixed a point, effectively prevent to block up, moreover, the steam generator is reasonable in structure, and the degree of automation is high.
The open-top department of hopper 2 is equipped with apron 21 down, apron 21 is the mesh form, the mesh diameter of apron 21 is less than the external diameter of material, inlet pipe 3 is fixed to be worn to establish on apron 21. The cover plate 21 is arranged to prevent the materials from splashing to the outside of the discharging hopper 2, the cover plate 21 is in a mesh shape, the discharging speed can be improved, and the smooth flow channel is ensured.
The push rod 61 with the linking department of hopper 2 is equipped with sliding sleeve 22 down, sliding sleeve 22 parcel push rod 61, sliding sleeve 22 is located one side in hopper 2 down and is equipped with the chamfer. Sliding sleeve 22 plays sealed and lubricated effect, and the setting of chamfer can prevent that the material from piling up in sliding sleeve 22 department, also can prevent that the material from removing to the outside of hopper 2 down along with the recovery of push rod 61.
A partition plate 23 is arranged at the lower part of the inner side of the lower hopper 2, the partition plate 23 is positioned below the discharge pipe 5, and the partition plate 23 divides the lower part of the inner side of the lower hopper 2 into a left chamber and a right chamber;
the upper part of the left chamber is communicated with the upper part of the right chamber, and the lower part of the left chamber is communicated with the lower part of the right chamber. Through the setting of baffle 23, realize the subregion to under the swing effect of discharging pipe 5, the material is discharged to left cavity and right cavity in the discontinuity, further improves and prevents stifled effect.
The middle part of baffle 23 is equipped with breach 231, be equipped with supporting seat 232 and dwang 233 in the breach 231, the middle part of dwang 233 is equipped with pivot 234, pivot 234 passes through support 235 and locates on the supporting seat 232, the supporting seat 232 with still be equipped with spring 236 between the dwang 233, the both sides of support 235 are located symmetrically to at least a pair of spring 236. When the material falls to left cavity in, the material can push down dwang 233 for the part that dwang 233 is located left cavity moves down, is located right cavity moves up, and like this, after the material falls to right cavity in, the material can press the part that dwang 233 is located right cavity to move up, is located left cavity to move down, and the moving up of dwang 233 that is located left cavity can form the movement of choosing the material in the left cavity, effectively prevents to block up.
The supporting seat 232 is fixedly arranged at the bottom of the notch 231, a space exists between the top of the notch 231 and the top of the rotating rod 233, and the rotating rod 233 rotates in the space. Under the elastic fit of the spring 236, the rotating rod 233 can rotate at a large angle and reset timely, and the rotating rod 233 can pick materials reliably.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention cannot be limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are all within the protection scope of the present invention.
Claims (6)
1. The full-automatic numerical control blanking machine comprises a blanking hopper (2) arranged above a material using mechanism (1), and is characterized in that the bottom of the blanking hopper (2) is communicated with the material using mechanism (1), a feeding pipe (3) is arranged at the top of the blanking hopper (2), a corrugated pipe (4) and a discharging pipe (5) which are communicated with each other are sequentially arranged at the bottom of the feeding pipe (3), and the feeding pipe (3) and the corrugated pipe (4) and the discharging pipe (5) are fixedly connected;
the feeding device is characterized in that a cylinder (6) is arranged outside the feeding hopper (2), a push rod (61) of the cylinder (6) penetrates through the feeding hopper (2) and extends into the feeding hopper (2), the push rod (61) is connected with the feeding pipe (3) through a universal joint (62), and the push rod (61) pushes and pulls the feeding pipe (3).
2. The full-automatic numerical control blanking machine of claim 1, characterized in that: the top opening part of hopper (2) is equipped with apron (21) down, apron (21) are the mesh form, the mesh diameter of apron (21) is less than the external diameter of material, inlet pipe (3) are fixed to be worn to establish on apron (21).
3. The full-automatic numerical control blanking machine according to claim 1, characterized in that: the push rod (61) with the linking department of hopper (2) is equipped with sliding sleeve (22) down, sliding sleeve (22) parcel push rod (61), one side that sliding sleeve (22) are located hopper (2) down is equipped with the chamfer.
4. The full-automatic numerical control blanking machine of claim 1, characterized in that: a partition plate (23) is arranged at the lower part of the inner side of the discharging hopper (2), the partition plate (23) is positioned below the discharging pipe (5), and the lower part of the inner side of the discharging hopper (2) is divided into a left chamber and a right chamber by the partition plate (23);
the upper part of the left chamber is communicated with the upper part of the right chamber, and the lower part of the left chamber is communicated with the lower part of the right chamber.
5. The full-automatic numerical control blanking machine according to claim 4, characterized in that: the middle part of baffle (23) is equipped with breach (231), be equipped with supporting seat (232) and dwang (233) in breach (231), the middle part of dwang (233) is equipped with pivot (234), pivot (234) are located on supporting seat (232) through support (235), supporting seat (232) with still be equipped with spring (236) between dwang (233), the both sides of support (235) are located symmetrically to at least a pair of spring (236).
6. The full-automatic numerical control blanking machine according to claim 5, characterized in that: the supporting seat (232) is fixedly arranged at the bottom of the notch (231), a space is reserved between the top of the notch (231) and the top of the rotating rod (233), and the rotating rod (233) rotates in the space.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221659000.9U CN218520653U (en) | 2022-06-30 | 2022-06-30 | Full-automatic numerical control blanking machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221659000.9U CN218520653U (en) | 2022-06-30 | 2022-06-30 | Full-automatic numerical control blanking machine |
Publications (1)
Publication Number | Publication Date |
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CN218520653U true CN218520653U (en) | 2023-02-24 |
Family
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Family Applications (1)
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CN202221659000.9U Active CN218520653U (en) | 2022-06-30 | 2022-06-30 | Full-automatic numerical control blanking machine |
Country Status (1)
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CN (1) | CN218520653U (en) |
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2022
- 2022-06-30 CN CN202221659000.9U patent/CN218520653U/en active Active
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