CN212520762U - Powder stacking machine - Google Patents

Powder stacking machine Download PDF

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Publication number
CN212520762U
CN212520762U CN202021462925.5U CN202021462925U CN212520762U CN 212520762 U CN212520762 U CN 212520762U CN 202021462925 U CN202021462925 U CN 202021462925U CN 212520762 U CN212520762 U CN 212520762U
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powder
folding
belt
conveyer belt
sliding table
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CN202021462925.5U
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古昌炎
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Abstract

The utility model discloses a fold powder machine, include: a frame; set up in fold powder mechanism in the frame, fold powder mechanism and include: a feed conveyor; the segmentation cutter is arranged above the feeding conveyor belt; the movable sliding table can be arranged on the rack in a reciprocating sliding mode and is positioned below the feeding conveying belt; the forward folding conveyor belt is arranged on the movable sliding table and is positioned below the outlet of the feeding conveyor belt; the reverse folding conveyer belt, the upper portion of reverse folding conveyer belt set up in on the removal slip table, and it is located the below of the export of forward folding conveyer belt, reverse folding conveyer belt with form the compaction passageway that is used for the compaction sheet jelly between the export of forward folding conveyer belt. The utility model discloses a fold the whole of powder machine and cut off and fold the whole automatic completions of powder action, do not need artifical manual operation, improved production efficiency greatly.

Description

Powder stacking machine
Technical Field
The utility model relates to a food processing production facility field especially relates to a fold powder machine.
Background
After the rice sheet jelly and other sheet jelly are formed, the procedures of slicing, folding and the like need to be carried out, in the prior art, different procedures usually need different workers to be completed, a large amount of workers need to be configured, the production efficiency is low, and the production cost is high.
SUMMERY OF THE UTILITY MODEL
Based on this, the utility model aims at providing a compact structure, simple process, production efficiency are high fold powder machine.
The utility model discloses a fold powder machine, include:
a frame;
set up in fold powder mechanism in the frame, fold powder mechanism and include:
a feed conveyor;
the segmentation cutter is arranged above the feeding conveyor belt;
the movable sliding table can be arranged on the rack in a reciprocating sliding mode and is positioned below the feeding conveying belt;
the forward folding conveyor belt is arranged on the movable sliding table and is positioned below the outlet of the feeding conveyor belt;
the reverse folding conveyer belt, the upper portion of reverse folding conveyer belt set up in on the removal slip table, and it is located the below of the export of forward folding conveyer belt, reverse folding conveyer belt with form the compaction passageway that is used for the compaction sheet jelly between the export of forward folding conveyer belt.
The utility model discloses a fold powder machine is through setting up the feeding conveyer belt, the segmentation cutter, remove the slip table, forward folding conveyer belt and reverse folding conveyer belt, utilize the feeding conveyer belt feeding, after segmentation cutter cuts off, the sheet jelly gets into between forward folding conveyer belt and the reverse folding conveyer belt, the middle part that forward folding conveyer belt action drove the sheet jelly is folding in compaction passageway department, the sheet jelly is further driven and is passed the compaction passageway by the compaction, the sheet jelly after reverse folding conveyer belt will compact is further carried forward, whole cutting off and folding whole automatic completions of powder action, do not need manual operation, the production efficiency is greatly improved.
In one embodiment of the above technical scheme, the powder stacking mechanism further comprises a feeding transmission motor, the feeding transmission motor is fixed on the rack, and a power output end of the feeding transmission motor is in transmission connection with the feeding conveyor belt. The feeding transmission motor can directly drive the feeding conveyor belt to rotate, so that the feeding conveyor belt can independently act and is convenient to feed.
In one embodiment of the above technical scheme, the powder stacking mechanism further comprises a sectional actuating cylinder, the sectional actuating cylinder is fixed on the upper portion of the frame, and the sectional actuating cylinder can drive the sectional cutter to cut off the sheet jelly. The segmentation action cylinder can drive the segmentation cutter cuts off the sheet jelly action, cuts off efficiently.
In one embodiment of the above technical solution, the powder stacking mechanism further includes a segment controller, and the segment controller is electrically connected to the segment actuating cylinder. The sectional controller can independently control the action of the sectional action air cylinder so as to cut the sheet jelly with the length of 45-60 cm and improve the accuracy of the cutting action.
Above-mentioned technical scheme is in an implementation mode, fold powder mechanism still includes folding drive motor, folding drive motor is fixed in on the removal slip table, its power take off end with the transmission of forward folding conveyer belt is connected. The folding transmission motor can directly drive the forward folding conveyor belt to rotate, so that the forward folding conveyor belt can independently act, and the folding efficiency and the folding accuracy are improved.
In an embodiment of the above technical scheme, the powder stacking mechanism further includes a synchronous sliding table module, the synchronous sliding table module is disposed on the frame, and the synchronous sliding table module is connected with the movable sliding table to drive the movable sliding table to slide. The synchronous sliding table module can drive the movable sliding table to slide on the rack, so that the cut sheet jelly falls between the forward folding conveyor belt and the reverse folding conveyor belt.
In one embodiment of the above technical solution, the synchronous sliding table module includes a driving belt, the driving belt is rotatably disposed on the frame, and the driving belt is connected with the movable sliding table;
the powder stacking mechanism further comprises a module transmission motor, the module transmission motor is fixed on the rack, and the power output end of the module transmission motor is in transmission connection with the driving belt.
The module transmission motor can drive the driving belt to rotate, so that the movable sliding table is driven to slide on the rack in a reciprocating mode.
In one embodiment, the upper portion of the reverse folding conveyor belt is arranged on the movable sliding table through a plurality of upper rotating shafts and telescopic transition shafts, the telescopic transition shafts are arranged between the upper rotating shafts, and the lower portion of the reverse folding conveyor belt is arranged on the rack through a plurality of lower rotating shafts. So set up, can make reverse folding conveyer belt be in remove the slip table reciprocating sliding action down passive rotation to make the sheet jelly on the reverse folding conveyer belt is passive to its export conveying.
In one embodiment of the above technical solution, the powder stacking machine further comprises a discharge conveyor belt and a discharge transmission motor;
the discharging conveyor belt is arranged on the rack and is positioned below an outlet of the reverse folding conveyor belt;
and the power output end of the discharging transmission motor is in transmission connection with the discharging conveyor belt.
The discharging conveyor belt can further discharge and convey the sheet jelly from the reverse folding conveyor belt.
In one embodiment of the above technical solution, the powder stacking machine further includes a turning stacking rack, and the turning stacking rack is pivoted to the rotating shaft of the outlet of the discharging conveyor belt. The turnover stacking rack can turn over along with the rotation of the rotating shaft of the outlet of the discharging conveyor belt, so that the sheet jelly on the discharging conveyor belt is turned over and stacked.
Compared with the prior art, the utility model discloses a fold powder machine is through setting up the feeding conveyer belt, the segmentation cutter, remove the slip table, forward folding conveyer belt and reverse folding conveyer belt, utilize the feeding conveyer belt feeding, after the segmentation cutter is cut off, the sheet jelly gets into between forward folding conveyer belt and the reverse folding conveyer belt, the middle part that forward folding conveyer belt action drove the sheet jelly is folding in compaction passageway department, the sheet jelly is further driven and is passed compaction passageway by the compaction, the sheet jelly after the reverse folding conveyer belt will compact is further carried forward, the whole cutting off and fold the whole automatic completions of powder action, do not need artifical manual operation, the production efficiency is greatly improved. The utility model discloses a fold powder machine has characteristics such as compact structure, simple process, production efficiency height.
For a better understanding and an implementation, the present invention is described in detail below with reference to the accompanying drawings.
Drawings
Fig. 1 is a schematic structural diagram of a preferred structure of the powder stacking machine of the present invention.
Detailed Description
The terms of orientation of up, down, left, right, front, back, top, bottom, and the like, referred to or may be referred to in this specification, are defined relative to their configuration, and are relative concepts. Therefore, it may be changed according to different positions and different use states. Therefore, these and other directional terms should not be construed as limiting terms.
The implementations described in the exemplary embodiments below are not intended to represent all implementations consistent with the present disclosure. Rather, they are merely examples of methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.
The terminology used in the present disclosure is for the purpose of describing particular embodiments only and is not intended to be limiting of the disclosure. As used in this disclosure and the appended claims, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be understood that the term "and/or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
Referring to fig. 1, fig. 1 is a schematic structural diagram of a preferred structure of the powder stacking machine of the present invention.
The utility model discloses a fold powder machine, include frame 1 with set up in fold powder mechanism 2 in frame 1.
The powder stacking mechanism 2 comprises a feeding conveyor belt 21, a segmentation cutter 22, a movable sliding table 23, a forward folding conveyor belt 24 and a reverse folding conveyor belt 25.
The segmentation cutter 22 is arranged above the feeding conveyor belt 21.
The movable sliding table 23 is arranged on the frame 1 in a reciprocating sliding manner and located below the feeding conveyor belt 21.
The forward folding conveyor belt 24 is arranged on the movable sliding table 23 and is positioned below the outlet of the feeding conveyor belt 21.
The upper portion of reverse folding conveyer belt 25 set up in on the removal slip table 23, and it is located the below of forward folding conveyer belt export, reverse folding conveyer belt 25 with form the compaction passageway that is used for the compaction sheet jelly between the export of forward folding conveyer belt 24.
Through setting up feeding conveyer belt 21, segmentation cutter 22, remove slip table 23, forward folding conveyer belt 24 and reverse folding conveyer belt 25, utilize feeding conveyer belt 21 feeding, after segmentation cutter 22 cuts off, the sheet jelly gets into between forward folding conveyer belt 24 and the reverse folding conveyer belt 25, the middle part that the action of forward folding conveyer belt 24 drove the sheet jelly is folding in compaction passageway department, the sheet jelly is further driven to pass the compaction passageway by the compaction, reverse folding conveyer belt 25 is further carried forward the sheet jelly after the compaction, whole cutting off and fold the whole automatic completions of powder action, do not need manual operation, the production efficiency is greatly improved.
Specifically, the powder stacking mechanism 2 further comprises a feeding transmission motor 26, the feeding transmission motor 26 is fixed on the frame 1, and a power output end of the feeding transmission motor is in transmission connection with the feeding conveyor belt 21. The feeding transmission motor 26 can directly drive the feeding conveyor belt 21 to rotate, so that the feeding conveyor belt 21 acts independently, and feeding is facilitated.
Further, the powder stacking mechanism 2 further comprises a sectional action cylinder 27, the sectional action cylinder 27 is fixed on the upper portion of the frame 1, and the sectional action cylinder 27 can drive the sectional cutter 22 to cut off the sheet jelly. The sectional action air cylinder 27 can drive the sectional cutter 22 to cut off the sheet jelly, and the cutting efficiency is high.
The sectional actuating cylinder 27 of this embodiment is a rotary cylinder, and a rotary disk thereof is connected to the sectional cutter 22 to drive the sectional cutter 22 to rotate, and the sectional cutter 22 cuts once per rotation.
Preferably, the powder stacking mechanism 2 further comprises a segment controller 28, and the segment controller 28 is electrically connected to the segment action cylinder 27. The segment controller 28 can control the action of the segment action cylinder 27 individually to cut the sheet jelly with the length of 45-60 cm, thereby improving the accuracy of the cutting action.
Further, the powder folding mechanism 2 further comprises a folding transmission motor 29, the folding transmission motor 29 is fixed on the movable sliding table 23, and the power output end of the folding transmission motor is in transmission connection with the forward folding conveyor belt 24. The folding transmission motor 29 can directly drive the forward folding conveyor belt 24 to rotate, so that the forward folding conveyor belt 24 can independently act, and the folding efficiency and the folding accuracy are improved.
Preferably, the powder stacking mechanism 2 further comprises a synchronous sliding table module 210, the synchronous sliding table module 210 is disposed on the frame 1, and the synchronous sliding table module 210 is connected with the movable sliding table 23 to drive the movable sliding table to slide. The synchronous sliding table module 210 can drive the movable sliding table 23 to slide on the rack 1, so that the cut sheet jelly falls between the forward folding conveyor belt 24 and the reverse folding conveyor belt 25.
In one embodiment, the synchronous sliding table module 210 includes a driving belt 211, the driving belt 211 is rotatably disposed on the frame 1, and the driving belt 211 is connected with the movable sliding table 23;
the powder stacking mechanism 2 further comprises a module transmission motor 212, the module transmission motor 212 is fixed on the rack 1, and a power output end of the module transmission motor is in transmission connection with the driving belt 211.
The module transmission motor 212 can drive the driving belt 211 to rotate, so as to drive the moving sliding table 23 to slide on the machine frame 1 in a reciprocating manner.
Of course, the structure of the linear module in the prior art can also be selected as the synchronous sliding table module 210.
Preferably, the upper portion of the reverse folding conveyor belt 25 is disposed on the movable sliding table 23 through a plurality of upper rotating shafts 213 and telescopic transition shafts 215, the telescopic transition shafts 215 are located between the upper rotating shafts 213, and the lower portion of the reverse folding conveyor belt is disposed on the machine frame 1 through a plurality of lower rotating shafts 214. With such an arrangement, the reverse folding conveyor belt 25 can be driven to rotate under the reciprocating sliding action of the movable sliding table 23, so that the sheet jelly on the reverse folding conveyor belt 25 is driven to be conveyed to the outlet of the reverse folding conveyor belt.
The upper rotating shaft 213 of the embodiment is two, the lower rotating shaft 214 is also two, the reverse folding conveyor belt 25 sequentially passes through the right side of the upper rotating shaft 213 and the left side of the lower rotating shaft 214 and the right side of the lower rotating shaft 214 and the telescopic transition shaft 215, so that the reverse folding conveyor belt 25 can passively rotate under the reciprocating sliding action of the movable sliding table 23.
Further, the powder stacking machine further comprises a discharge conveyor belt 3 and a discharge transmission motor 4.
The discharging conveyor belt 3 is arranged on the rack 1, and the discharging conveyor belt 3 is positioned below an outlet of the reverse folding conveyor belt 25.
And the power output end of the discharging transmission motor 4 is in transmission connection with the discharging conveyor belt 3.
The outfeed conveyor 3 can further outfeed the sheet jelly from the reverse folding conveyor 25.
Preferably, a detection sensor 216 is arranged at the outlet of the reverse folding conveyor belt 25, and the detection sensor 216 is used for detecting the folded sheet jelly falling from the outlet of the reverse folding conveyor belt 25 onto the discharging conveyor belt 3. The detection sensor 216 may be a photoelectric sensor or the like.
Further, the powder stacking machine further comprises a turning stacking frame 5, and the turning stacking frame 5 is pivoted on a rotating shaft at the outlet of the discharging conveyor belt 3. The turnover stacking rack 5 can turn over along with the rotation of the rotating shaft of the outlet of the discharging conveyor belt 3, so that the sheet jelly on the discharging conveyor belt 3 can be turned over and stacked.
Preferably, the overturning stacking rack 5 comprises an overturning pivoting cylinder 51 and an L-shaped stacking plate 52, wherein the overturning pivoting cylinder 51 is pivoted on the rotating shaft of the outlet of the discharging conveyor belt 3, and the bottom of the long side of the L-shaped stacking plate 52 is fixedly connected with the overturning pivoting cylinder 51.
In this embodiment, a complete machine controller 6 is preferably further provided, the complete machine controller 6 is fixed at the lower part of the rack 1, and the complete machine controller 6 is electrically connected with the feeding transmission motor 26, the folding transmission motor 29, the module transmission motor 212 and the discharging transmission motor 4 to control the action time of the feeding transmission motor 26, the folding transmission motor 29, the module transmission motor 212 and the discharging transmission motor 4.
The overall controller 6 and the segment controller 28 of this embodiment are preferably PLC controllers.
In addition, in this embodiment, a housing protective cover 7 is preferably disposed on the rack 1 to cover the powder stacking mechanism 2, so that the powder stacking mechanism 2 can be protected, and an operator can be prevented from contacting a transmission structure of the powder stacking mechanism 2, thereby ensuring the safety of the operator.
The utility model discloses a fold powder machine with low costs, fast, convenient to use, and simple process, production efficiency height are suitable for and popularize and apply.
Compared with the prior art, the utility model discloses a fold powder machine is through setting up the feeding conveyer belt, the segmentation cutter, remove the slip table, forward folding conveyer belt and reverse folding conveyer belt, utilize the feeding conveyer belt feeding, after the segmentation cutter is cut off, the sheet jelly gets into between forward folding conveyer belt and the reverse folding conveyer belt, the middle part that forward folding conveyer belt action drove the sheet jelly is folding in compaction passageway department, the sheet jelly is further driven and is passed compaction passageway by the compaction, the sheet jelly after the reverse folding conveyer belt will compact is further carried forward, the whole cutting off and fold the whole automatic completions of powder action, do not need artifical manual operation, the production efficiency is greatly improved. The utility model discloses a fold powder machine has characteristics such as compact structure, simple process, production efficiency height.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention.

Claims (10)

1. A powder stacking machine, comprising:
a frame;
set up in fold powder mechanism in the frame, fold powder mechanism and include:
a feed conveyor;
the segmentation cutter is arranged above the feeding conveyor belt;
the movable sliding table can be arranged on the rack in a reciprocating sliding mode and is positioned below the feeding conveying belt;
the forward folding conveyor belt is arranged on the movable sliding table and is positioned below the outlet of the feeding conveyor belt;
the reverse folding conveyer belt, the upper portion of reverse folding conveyer belt set up in on the removal slip table, and it is located the below of the export of forward folding conveyer belt, reverse folding conveyer belt with form the compaction passageway that is used for the compaction sheet jelly between the export of forward folding conveyer belt.
2. The powder stacker according to claim 1, wherein: the powder stacking mechanism further comprises a feeding transmission motor, the feeding transmission motor is fixed on the rack, and a power output end of the feeding transmission motor is in transmission connection with the feeding conveying belt.
3. The powder stacker according to claim 1, wherein: the powder folding mechanism further comprises a sectional action cylinder, the sectional action cylinder is fixed on the upper portion of the rack, and the sectional action cylinder can drive the sectional cutter to cut off the sheet jelly.
4. A powder stacker according to claim 3, wherein: the powder stacking mechanism further comprises a segmentation controller, and the segmentation controller is electrically connected with the segmentation action cylinder.
5. The powder stacker according to claim 1, wherein: the powder folding mechanism further comprises a folding transmission motor, the folding transmission motor is fixed on the movable sliding table, and the power output end of the folding transmission motor is in transmission connection with the forward folding conveying belt.
6. The powder stacker according to claim 1, wherein: the powder stacking mechanism further comprises a synchronous sliding table module, the synchronous sliding table module is arranged on the rack, and the synchronous sliding table module is connected with the movable sliding table to drive the movable sliding table to slide.
7. A powder stacker according to claim 6, wherein: the synchronous sliding table module comprises a driving belt, the driving belt is rotatably arranged on the rack, and the driving belt is connected with the movable sliding table;
the powder stacking mechanism further comprises a module transmission motor, the module transmission motor is fixed on the rack, and the power output end of the module transmission motor is in transmission connection with the driving belt.
8. A powder stacking machine according to any one of claims 1 to 7, wherein: the upper portion of reverse folding conveyer belt through a plurality of pivot and flexible transition axle set up in remove on the slip table, flexible transition axle is located between the pivot, the lower part of reverse folding conveyer belt through a plurality of lower pivots set up in the frame.
9. The powder stacker according to claim 8, wherein: the powder stacking machine also comprises a discharge conveyor belt and a discharge transmission motor;
the discharging conveyor belt is arranged on the rack and is positioned below an outlet of the reverse folding conveyor belt;
and the power output end of the discharging transmission motor is in transmission connection with the discharging conveyor belt.
10. The powder stacker according to claim 9, wherein: the powder stacking machine further comprises a turnover stacking frame, and the turnover stacking frame is pivoted on a rotating shaft at the outlet of the discharging conveying belt.
CN202021462925.5U 2020-07-22 2020-07-22 Powder stacking machine Active CN212520762U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021462925.5U CN212520762U (en) 2020-07-22 2020-07-22 Powder stacking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021462925.5U CN212520762U (en) 2020-07-22 2020-07-22 Powder stacking machine

Publications (1)

Publication Number Publication Date
CN212520762U true CN212520762U (en) 2021-02-12

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021462925.5U Active CN212520762U (en) 2020-07-22 2020-07-22 Powder stacking machine

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113966853A (en) * 2020-07-22 2022-01-25 古昌炎 Powder stacking machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113966853A (en) * 2020-07-22 2022-01-25 古昌炎 Powder stacking machine

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