CN213848485U - Energy-saving multi-roller fine dried noodle making machine - Google Patents

Energy-saving multi-roller fine dried noodle making machine Download PDF

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CN213848485U
CN213848485U CN202022613793.8U CN202022613793U CN213848485U CN 213848485 U CN213848485 U CN 213848485U CN 202022613793 U CN202022613793 U CN 202022613793U CN 213848485 U CN213848485 U CN 213848485U
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sets
box
processing
conveying
groups
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郭书海
郭英磊
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Handan Ruima Flour Industry Co ltd
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Handan Ruima Flour Industry Co ltd
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  • Drying Of Solid Materials (AREA)
  • Noodles (AREA)

Abstract

The utility model relates to the technical field of food processing, in particular to an energy-saving multi-roller fine dried noodle making machine which reduces the phenomenon that flour falls on the ground, reduces the collection difficulty, improves the convenience of operation and increases the practicability; the automatic air suction device comprises a working box, a processing pipe, a processing roller, two sets of installation blocks, four sets of supporting rods, a first motor assembly, a first speed reducer, two sets of conveying rollers, a conveying belt, an air suction cover, a fan assembly, a conveying pipe, a filtering box and a filtering plate, wherein a working cavity is arranged inside the working box, four sets of supporting legs are arranged at the bottom end of the working box, the right end of the processing box is connected with the upper area of the left end of the working box, the processing cavity is arranged inside the processing box, the left area and the right area of the processing cavity are both rotatably provided with the processing roller, the processing pipe is fixedly clamped with the processing cavity, the inner ends of the two sets of installation blocks are respectively connected with the lower areas at the left end and the right end of the working box, and the bottom ends of the four sets of supporting rods are respectively connected with the front area and the rear area at the top end of the two sets of installation blocks.

Description

Energy-saving multi-roller fine dried noodle making machine
Technical Field
The utility model relates to a technical field of food processing especially relates to an energy-saving multi-roll fine dried noodle machine.
Background
As is well known, the noodles originate from China, have more than four thousand years of history of making and eating, are health care food which has simple making, convenient eating and rich nutrition, can be taken as staple food and fast food, and have been accepted and loved by people in the world for a long time. Because the fresh noodles are not easy to store and transport, people invent the dried noodles. A multi-roll fine dried noodle maker, which is a multi-roll fine dried noodle maker for processing dough into noodles in the process of flour processing and capable of automatically cutting and drying, is widely used in the field of food processing; the existing multi-roller fine dried noodle making machine is found that flour falls on the ground, the cleaning convenience is poor, and a large amount of flour is wasted, so that the practicability is poor.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a reduce the phenomenon that flour dropped on ground, reduced the collection degree of difficulty, improved the simple operation nature, increased an energy-saving multi-roller fine dried noodle machine of practicality.
The utility model relates to an energy-saving multi-roller fine dried noodle machine, which comprises a working box, a processing pipe, a processing roller, two groups of installation blocks, four groups of supporting rods, a first motor component, a first speed reducer, two groups of conveying rollers, a conveying belt, an air suction cover, a fan component, a conveying pipe, a filtering box and a filtering plate, wherein the working box is internally provided with a working chamber, the bottom end of the working box is provided with four groups of supporting legs, the right end of the processing box is connected with the upper part of the left end of the working box, the processing chamber is internally provided with the processing chamber, the left part and the right part of the processing chamber are both rotatably provided with the processing roller, the processing pipe and the processing chamber are fixedly clamped, the inner ends of the two groups of installation blocks are respectively connected with the lower parts of the left and the right ends of the working box, the bottom ends of the four groups of supporting rods are respectively connected with the front part and the rear part of the top ends of the two groups of installation blocks, the inner ends of the four groups of supporting rods are rotatably provided with two groups of conveying rollers, the first motor component is arranged at the upper area of the front end of the right front side supporting rod, the output end of the first motor component is connected with the input end of a first speed reducer, the upper area of the front end of the right front side supporting rod is provided with an output hole in a penetrating way, the output end of the first speed reducer penetrates through the output hole to be connected with the front end of the right side conveying roller in a rotating way, two groups of conveying rollers are connected with a conveying belt in a rotating way, the conveying belt is positioned at the lower side of the processing box, an air suction cover is arranged at the middle area of the top end of the working box, the middle area of the top end of the working cavity is provided with a communicating port in a penetrating way, the output end of the air suction cover is communicated with the input end of a fan component, the output end of the fan component is communicated with the input end of the conveying pipe, the bottom end of the filtering box is connected with the right area of the top end of the working box, a filtering cavity is arranged inside the filtering box, the output end of the conveying pipe is communicated with the middle area of the left end of the filtering cavity, and the filtering plate is fixedly clamped with the upper area of the filtering cavity, the right area of the top end of the filter cavity is communicated with an exhaust pipe.
The utility model discloses an energy-saving multi-roll fine dried noodle machine still includes collecting hopper and first collecting box, and the collecting hopper clamps with the regional fixed of lower part of filter chamber, and the bottom of first collecting box is hugged closely with the bottom of filter chamber, and first collecting box is inside to be provided with first collection chamber, and the output of collecting hopper and the top in first collection chamber communicate.
The utility model discloses an energy-saving multi-roll fine dried noodle machine still includes the conveying fill, arranges material pipe and second collecting box, and the conveying fill is located the downside of conveyer belt, and the bottom middle part region of working chamber runs through and is provided with the connecting hole, arranges the input of material pipe and the output intercommunication of conveying fill, and the second collecting box is located the working box under, and the chamber is collected to the inside second that is provided with of second collecting box, arranges the output of material pipe and passes the connecting hole and the top intercommunication in second collection chamber.
The utility model discloses an energy-saving multi-roll fine dried noodle machine still includes two sets of second motor element, two sets of second speed reducer, two sets of power shaft and two sets of eccentric wheels, and two sets of second motor element install respectively in the middle part region at both ends about the transport fill, and two sets of second motor element's output is connected with the input of two sets of second speed reducer respectively, and the output of two sets of second speed reducer is connected with the outer end of two sets of power shafts respectively, and the inner of two sets of power shafts is connected with the outer end upper portion region of two sets of eccentric wheels respectively.
The utility model discloses an energy-saving multi-roll fine dried noodle machine, the bottom of four group's landing legs all is provided with anti-skidding cushion.
The utility model discloses an energy-saving multi-roll fine dried noodle machine still includes the loading hopper, and the loading hopper is installed on the top of processing pipe.
Compared with the prior art, the beneficial effects of the utility model are that: at first add the processing chamber with the dough through the processing pipe, then become noodless with dough processing through two sets of processing rollers, then open first motor element and first speed reducer and drive two sets of conveying roller rotations, the noodless that process is carried right through the conveyer belt, then open the fan subassembly and inhale through the flour of the cover that induced drafts in with the working chamber, carry the filter chamber through the conveyer pipe, after filtering flour through the filter, with the air through the blast pipe discharge can, reduce the phenomenon that flour dropped on ground, the collection degree of difficulty has been reduced, the convenience of operation has been improved, and the practicability is increased.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is an enlarged schematic view of portion A of FIG. 1;
FIG. 3 is a schematic view of the connection structure of the filter box and the filter plate of the present invention;
FIG. 4 is an enlarged schematic view of the portion B of FIG. 1;
in the drawings, the reference numbers: 1. a work box; 2. a support leg; 3. a processing box; 4. processing a pipe; 5. processing a roller; 6. mounting blocks; 7. a support bar; 8. a first motor assembly; 9. a first speed reducer; 10. a conveying roller; 11. a conveyor belt; 12. an air suction hood; 13. a fan assembly; 14. a delivery pipe; 15. a filter box; 16. a filter plate; 17. an exhaust pipe; 18. a collection hopper; 19. a first collection tank; 20. a conveying hopper; 21. a discharge pipe; 22. a second collection tank; 23. a second motor assembly; 24. a second speed reducer; 25. a power shaft; 26. an eccentric wheel; 27. an anti-slip rubber pad; 28. charging hopper
Detailed Description
The following detailed description of the embodiments of the present invention is provided with reference to the accompanying drawings and examples. The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention.
As shown in figures 1 to 4, the energy-saving multi-roller noodle forming machine of the utility model comprises a working box 1, a processing box 3, a processing pipe 4, a processing roller 5, two sets of installation blocks 6, four sets of support rods 7, a first motor component 8, a first speed reducer 9, two sets of conveying rollers 10, a conveying belt 11, an air suction hood 12, a fan component 13, a conveying pipe 14, a filtering box 15 and a filtering plate 16, wherein the working box 1 is internally provided with a working chamber, the bottom end of the working box 1 is provided with four sets of supporting legs 2, the right end of the processing box 3 is connected with the upper area of the left end of the working box 1, the processing box 3 is internally provided with a processing chamber, the left area and the right area of the processing chamber are both rotatably provided with the processing roller 5, the processing pipe 4 is fixedly clamped with the processing chamber, the inner ends of the two sets of installation blocks 6 are respectively connected with the lower areas of the left end and the right end of the working box 1, the bottom ends of the four sets of the support rods 7 are respectively connected with the front area and the rear area of the top ends of the two sets of the installation blocks 6, two groups of conveying rollers 10 are rotatably arranged at the inner ends of the four groups of supporting rods 7, a first motor assembly 8 is arranged at the upper area of the front end of the right front supporting rod 7, the output end of the first motor assembly 8 is connected with the input end of a first speed reducer 9, the upper area of the front end of the right front supporting rod 7 is provided with an output hole in a penetrating way, the output end of the first speed reducer 9 is rotatably connected with the front end of the right side conveying roller 10 through the output hole, the two groups of conveying rollers 10 are rotatably connected with a conveying belt 11, the conveying belt 11 is positioned at the lower side of the processing box 3, an air suction cover 12 is arranged at the middle area of the top end of the working box 1, the middle area of the top end of the working cavity is provided with a communicating port in a penetrating way, the output end of the air suction cover 12 is communicated with the input end of a fan assembly 13, the output end of the fan assembly 13 is communicated with the input end of the conveying pipe 14, and the bottom end of a filter box 15 is connected with the right area of the top end of the working box 1, a filter chamber is arranged in the filter box 15, the output end of the conveying pipe 14 is communicated with the middle area of the left end of the filter chamber, the filter plate 16 is fixedly clamped with the upper area of the filter chamber, and the right area of the top end of the filter chamber is communicated with an exhaust pipe 17; at first add the processing chamber with the dough through the processing pipe, then become noodless with dough processing through two sets of processing rollers, then open first motor element and first speed reducer and drive two sets of conveying roller rotations, the noodless that process is carried right through the conveyer belt, then open the fan subassembly and inhale through the flour of the cover that induced drafts in with the working chamber, carry the filter chamber through the conveyer pipe, after filtering flour through the filter, with the air through the blast pipe discharge can, reduce the phenomenon that flour dropped on ground, the collection degree of difficulty has been reduced, the convenience of operation has been improved, and the practicability is increased.
The utility model discloses an energy-saving multi-roller fine dried noodle machine, still include collecting hopper 18 and first collecting box 19, collecting hopper 18 and the lower region of filter chamber are fixed and clamped, the bottom of first collecting box 19 is hugged closely with the bottom of filter chamber, first collecting chamber is provided inside first collecting box 19, the output end of collecting hopper 18 communicates with the top of first collecting chamber; the flour after being filtered is collected through the collecting hopper and the first collecting box, a large amount of flour is saved, the collecting difficulty is reduced, and the convenience is improved.
The utility model discloses an energy-saving multi-roller fine dried noodle machine, still include the conveyer bucket 20, arrange material pipe 21 and second collecting box 22, conveyer bucket 20 is located the downside of conveyer belt 11, the bottom middle part region of working chamber runs through and is provided with the connecting hole, arrange the input of material pipe 21 and the output of conveyer bucket 20 and communicate, second collecting box 22 is located working box 1 under, second collecting box 22 is inside to be provided with the second and collects the chamber, arrange the output of material pipe 21 and pass the connecting hole and communicate with the top of second collection chamber; the flour that drops on with the conveyer belt through the conveying fill is collected to the second through arranging the material pipe and is collected the chamber, reduces the flour possibility that drops on the ground, has reduced the collection degree of difficulty, has increased the practicality.
The utility model discloses an energy-saving multi-roller fine dried noodle machine, still include two sets of second motor element 23, two sets of second speed reducer 24, two sets of power shaft 25 and two sets of eccentric wheel 26, two sets of second motor element 23 are installed respectively in the middle part region of the left and right sides both ends of transfer hopper 20, the output of two sets of second motor element 23 is connected with the input of two sets of second speed reducer 24 respectively, the output of two sets of second speed reducer 24 is connected with the outer end of two sets of power shaft 25 respectively, the inner of two sets of power shaft 25 is connected with the outer end upper portion region of two sets of eccentric wheel 26 respectively; open two sets of second motor element and two sets of second speed reducers and drive two sets of power shafts and two sets of eccentric wheels and rotate, hit through two sets of eccentric wheels to the left and right sides both ends of carrying the fill and hit, make the flour on the inside wall of carrying the fill more easily drop, reduced the collection degree of difficulty, increased the convenience.
In the energy-saving multi-roller noodle making machine of the utility model, the bottom ends of four groups of supporting legs 2 are provided with anti-skid rubber pads 27; the friction force between the four groups of working boxes and the ground is increased through the four groups of anti-skidding rubber cushions, so that the device is more stable in position, and the stability is improved.
The utility model discloses an energy-saving multi-roller fine dried noodle machine, which also comprises a charging hopper 28, wherein the charging hopper 28 is arranged at the top end of the processing pipe 4; reduce the possibility that drops the dough through the loading hopper, improved reinforced convenience, increased the practicality.
The utility model discloses an energy-saving multiroll fine dried noodle machine, it is at the during operation, at first add the processing chamber through processing pipe 4 with the dough, then become noodless through two sets of processing rollers 5 processing dough, then open first motor element 8 and first speed reducer 9 and drive two sets of conveying roller 10 rotations, the noodless that process pass through conveyer belt 11 and carry right, then open fan assembly 13 and inhale the flour in the working chamber through the cover 12 that induced drafts, carry the filter chamber through conveyer pipe 14 in, after 16 filters flour through the filter, it can to pass through blast pipe 17 discharge with the air.
The installation mode, the connection mode or the setting mode of the energy-saving multi-roller fine dried noodle making machine of the utility model are common mechanical modes, and the installation mode, the connection mode or the setting mode can be implemented as long as the beneficial effects can be achieved; the utility model discloses an energy-saving multiroll fine dried noodle machine's first motor element 8 and second motor element 23 for purchase on the market, this industry technical staff only need according to its subsidiary service instruction install and operate can.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be regarded as the protection scope of the present invention.

Claims (6)

1. An energy-saving multi-roller dough kneader is characterized by comprising a working box (1), a processing box (3), a processing pipe (4), a processing roller (5), two groups of mounting blocks (6), four groups of supporting rods (7), a first motor component (8), a first speed reducer (9), two groups of conveying rollers (10), a conveying belt (11), an air suction hood (12), a fan component (13), a conveying pipe (14), a filtering box (15) and a filtering plate (16), wherein the working box (1) is internally provided with a working chamber, the bottom end of the working box (1) is provided with four groups of supporting legs (2), the right end of the processing box (3) is connected with the upper area of the left end of the working box (1), the processing chamber is arranged inside the processing box (3), the processing roller (5) is rotatably arranged in the left area and the right area of the processing chamber, the processing pipe (4) is fixedly clamped with the processing chamber, the inner ends of the two groups of mounting blocks (6) are respectively connected with the lower areas of the left end and the right end of the working box (1), the bottom ends of four groups of supporting rods (7) are respectively connected with the front area and the rear area of the top ends of two groups of mounting blocks (6), two groups of conveying rollers (10) are rotatably mounted at the inner ends of the four groups of supporting rods (7), a first motor assembly (8) is mounted at the upper area of the front end of the right front side supporting rod (7), the output end of the first motor assembly (8) is connected with the input end of a first speed reducer (9), the upper area of the front end of the right front side supporting rod (7) is provided with an output hole in a penetrating manner, the output end of the first speed reducer (9) is rotatably connected with the front end of the right side conveying roller (10) through the output hole, the two groups of conveying rollers (10) are rotatably connected with a conveying belt (11), the conveying belt (11) is positioned at the lower side of the processing box (3), an air suction cover (12) is mounted at the middle area of the top end of the working box (1), and a communication port is arranged in the middle area of the top end of the working cavity in a penetrating manner, the output of cover (12) and the input intercommunication of fan subassembly (13) induced drafts, the output of fan subassembly (13) and the input intercommunication of conveyer pipe (14), the bottom of rose box (15) is connected with the top right part region of work box (1), rose box (15) inside is provided with the filter chamber, the output of conveyer pipe (14) and the left end middle part region intercommunication of filter chamber, filter (16) clamp with the upper portion region fixed of filter chamber, the top right part region intercommunication of filter chamber is provided with blast pipe (17).
2. An energy-saving multi-roller fine dried noodle machine as claimed in claim 1, further comprising a collecting hopper (18) and a first collecting box (19), wherein the collecting hopper (18) is fixedly clamped with the lower region of the filtering cavity, the bottom end of the first collecting box (19) is closely attached to the bottom end of the filtering cavity, the first collecting cavity is arranged in the first collecting box (19), and the output end of the collecting hopper (18) is communicated with the top end of the first collecting cavity.
3. The energy-saving multi-roller dough kneader according to claim 2, characterized by further comprising a conveying hopper (20), a discharging pipe (21) and a second collecting box (22), wherein the conveying hopper (20) is positioned at the lower side of the conveying belt (11), a connecting hole is arranged in the middle area of the bottom end of the working chamber in a penetrating manner, the input end of the discharging pipe (21) is communicated with the output end of the conveying hopper (20), the second collecting box (22) is positioned under the working chamber (1), a second collecting chamber is arranged in the second collecting box (22), and the output end of the discharging pipe (21) is communicated with the top end of the second collecting chamber through the connecting hole.
4. An energy-saving multi-roller fine dried noodle machine according to claim 3, further comprising two sets of second motor assemblies (23), two sets of second speed reducers (24), two sets of power shafts (25) and two sets of eccentric wheels (26), wherein the two sets of second motor assemblies (23) are respectively installed in the middle areas of the left and right ends of the conveying hopper (20), the output ends of the two sets of second motor assemblies (23) are respectively connected with the input ends of the two sets of second speed reducers (24), the output ends of the two sets of second speed reducers (24) are respectively connected with the outer ends of the two sets of power shafts (25), and the inner ends of the two sets of power shafts (25) are respectively connected with the upper areas of the outer ends of the two sets of eccentric wheels (26).
5. An energy-saving multi-roller fine dried noodle machine as claimed in claim 4, characterized in that the bottom ends of the four groups of supporting legs (2) are provided with anti-skid rubber pads (27).
6. An energy efficient multi-roll noodle maker according to claim 5, further comprising a hopper (28), wherein the hopper (28) is mounted at the top end of the process tube (4).
CN202022613793.8U 2020-11-12 2020-11-12 Energy-saving multi-roller fine dried noodle making machine Active CN213848485U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022613793.8U CN213848485U (en) 2020-11-12 2020-11-12 Energy-saving multi-roller fine dried noodle making machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022613793.8U CN213848485U (en) 2020-11-12 2020-11-12 Energy-saving multi-roller fine dried noodle making machine

Publications (1)

Publication Number Publication Date
CN213848485U true CN213848485U (en) 2021-08-03

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ID=77056828

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022613793.8U Active CN213848485U (en) 2020-11-12 2020-11-12 Energy-saving multi-roller fine dried noodle making machine

Country Status (1)

Country Link
CN (1) CN213848485U (en)

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