CN215353683U - Dry noodle head recycling and smashing device - Google Patents

Dry noodle head recycling and smashing device Download PDF

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Publication number
CN215353683U
CN215353683U CN202121161415.9U CN202121161415U CN215353683U CN 215353683 U CN215353683 U CN 215353683U CN 202121161415 U CN202121161415 U CN 202121161415U CN 215353683 U CN215353683 U CN 215353683U
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gear
box
crushing
dry noodle
fixedly connected
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CN202121161415.9U
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Chinese (zh)
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马信康
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Jianyang Jiangyuan Flour Industry Co ltd
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Jianyang Jiangyuan Flour Industry Co ltd
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Abstract

The utility model relates to the technical field of dry noodle head processing, in particular to a dry noodle head recycling and smashing device, and solves the problems that an existing dry noodle head smashing mechanism in the prior art is insufficient in smashing when smashing dry noodle heads, long in smashing period and low in sorting efficiency when sorting dry noodle head residues and flour formed by smashing dry noodle heads. The utility model provides a reducing mechanism is retrieved to dry end, includes the collection box, collection box back fixedly connected with smashes the motor, smash motor output shaft front end fixedly connected with drive gear, the meshing of drive gear one side has the gear that pushes down, the meshing of pushing down gear bottom has the gear that pushes up, the one side meshing that the gear that pushes up is close to drive gear has the repressing gear. According to the utility model, the integration box, the crushing motor, the driving gear, the lower pressing gear, the upper pressing gear, the re-pressing gear, the crushing roller, the feeding pipeline, the inverted hopper and the processing box are arranged, so that the effects of increasing the crushing efficiency of the dry noodle head and more fully crushing the dry noodle head are achieved.

Description

Dry noodle head recycling and smashing device
Technical Field
The utility model relates to the technical field of dry noodle head processing, in particular to a dry noodle head recycling and crushing device.
Background
The noodle is one of staple foods of people in China all the time, people in any place can have unique feelings on the noodle, so that a good market for noodle processing is created, the types of noodles are more, the fine dried noodles are one product which is popular among various noodles, but a certain amount of dry noodle heads can be generated in the processes of drying, end cutting and metering packaging during the production of the fine dried noodles, and the taste of the dry noodle heads is different from that of the fine dried noodles, so the dry noodle heads are usually recovered.
The other method is to place the collected dry noodle heads in a crushing mechanism for crushing, so as to directly crush the dry noodle heads into flour, but the existing dry noodle head crushing mechanism has unsatisfactory crushing effect, insufficient crushing and long crushing period when crushing the dry noodle heads, and the existing dry noodle head crushing mechanism has low sorting efficiency when sorting flour obtained by crushing the dry noodle heads and dry noodle heads which are not completely crushed, so that a dry noodle head recovery and crushing device is provided to solve the problems that the existing dry noodle head crushing mechanism cannot crush fully, and the dry noodle heads cannot be crushed fully, The crushing period is longer and the sorting efficiency is not high when the dry noodle head residues and the flour formed by crushing the dry noodle heads are sorted.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a dry noodle head recycling and crushing device, which solves the problems that the conventional dry noodle head crushing mechanism in the prior art is insufficient in crushing when crushing dry noodle heads, long in crushing period and low in sorting efficiency when sorting dry noodle head residues and flour formed by crushing dry noodle heads.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a reducing mechanism is retrieved to dry end, includes the collection box, collection box back fixedly connected with crushing motor, crushing motor output shaft front end fixedly connected with drive gear, the meshing of drive gear one side has the gear of pushing down, it has the upper pressure gear to push down the meshing of gear bottom, one side that the upper pressure gear is close to drive gear meshes has the repressing gear, push down gear and the equal fixedly connected with crushing roller in upper pressure gear and the repressing gear openly, crushing roller is provided with threely, it is three crushing roller front end all is connected with collection box internal rotation, and is three adjacent one side of crushing roller is all laminated each other, collection box one side intercommunication has charge-in pipeline, collection box bottom intercommunication has the back fill, back fill bottom intercommunication has the processing case.
Preferably, the back of the processing box is fixedly connected with a screening motor, and the front end of an output shaft of the screening motor is fixedly connected with a movable arm.
Preferably, the one end laminating that screening motor output shaft was kept away from to the digging arm has movable square box, activity square box bottom fixedly connected with activity gag lever post.
Preferably, the outer table wall sliding connection of activity gag lever post has the stop collar, the stop collar is provided with two, two the left and right sides of stop collar setting at the outer table wall of activity gag lever post, the activity gag lever post both ends run through out one side that two stop collars kept away from mutually respectively, two the stop collar back all with the vertical face fixed connection in the inboard back of processing case.
Preferably, activity square box top fixedly connected with screening plate, the inside screen cloth that is provided with of screening plate, three hornblocks of screening plate top fixedly connected with, the laminating of screening plate bottom has the recovery board, the processing case both sides are provided with the fluting, the recovery board is provided with two, two recovery bottom plate is laminated with two fluting bottoms respectively.
Preferably, the residue collection box is attached to two sides of the processing box, and the flour collection box is attached to the bottom transverse surface of the inner side of the processing box.
The utility model has at least the following beneficial effects:
1. the dry noodle head recycling and crushing device is provided with an integration box, a crushing motor, a driving gear, a lower pressing gear, an upper pressing gear, a re-pressing gear, a crushing roller, a feeding pipeline, a reverse hopper and a processing box, wherein a worker opens the crushing motor to enable the driving gear at the front end of an output shaft of the crushing motor to rotate clockwise, when the driving gear rotates clockwise, the driving gear can drive the lower pressing gear to rotate anticlockwise through meshing relation, the lower pressing gear can enable the upper pressing gear to rotate clockwise and then drive the re-pressing gear to rotate anticlockwise, the rotation of the lower pressing gear, the upper pressing gear and the re-pressing gear can drive the crushing rollers which are respectively connected to move synchronously, at the moment, the worker guides dry noodle heads into the feeding pipeline, the dry noodle heads enter the integration box along with the guidance of the feeding pipeline, and then the top of the crushing roller connected with the upper pressing gear and the bottom of the crushing roller connected with the lower pressing gear rolls towards the right side, the dry noodle head residue after being rolled can be rolled towards the bottom by the right side of the crushing roller connected with the upper pressure gear and the left side of the crushing roller connected with the re-pressure gear to drive the secondary crushing, and the dry noodle head after the secondary crushing is finished can enter the processing box along the guide of the inverted hopper, so that the crushing efficiency of the dry noodle head is increased, and the effect of more sufficient crushing of the dry noodle head is achieved.
2. The dry noodle head recycling and smashing device is provided with a screening motor, a movable arm, a movable square box, a movable limiting rod, a limiting sleeve, a screening plate, a triangular block, a recycling plate, a residue recycling box and a flour recycling box, a worker starts the screening motor to drive the movable arm to rotate ceaselessly, the movable square box is driven to move left and right when the movable arm rotates, the movable square box drives the screening plate to move left and right by relying on the limiting sleeve to fix the movable limiting rod, the smashed dry noodle heads can fall to two sides of the top of the screening plate through the triangular block after entering the processing box through a reverse hopper, the dry noodle head residues on a screen of the screening plate can be flatly paved through inertia when the screening plate moves left and right constantly, flour in the dry noodle head residues passes through the screen and falls into the flour recycling box, the dry noodle head residues are continuously pushed onto the two recycling plates through inertia, and then the flour in the residue recycling box is guided by the recycling plate to pass through clamping grooves on two sides of the processing box to be recycled, the effect of greatly increasing the sorting efficiency of the crushed dry noodle heads is achieved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a cross-sectional view of the construction of the integration box of the present invention;
FIG. 3 is a rear view of the construction of the process kit of the present invention.
In the figure: 1. an integration box; 2. a grinding motor; 3. a drive gear; 4. pressing down the gear; 5. pressing up the gear; 6. re-pressing the gear; 7. a crushing roller; 8. a feed conduit; 9. dumping; 10. a processing box; 11. screening motors; 12. a movable arm; 13. a movable square box; 14. a movable limiting rod; 15. a limiting sleeve; 16. screening the plate; 17. a triangular block; 18. recovering the plate; 19. a residue recovery tank; 20. a flour recovery box.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Referring to fig. 1-3, a dry noodle head recycling and smashing device comprises an integration box 1, a smashing motor 2 is fixedly connected to the back of the integration box 1, a driving gear 3 is fixedly connected to the front end of an output shaft of the smashing motor 2, a pressing gear 4 is meshed on one side of the driving gear 3, an upper pressing gear 5 is meshed at the bottom of the pressing gear 4, a re-pressing gear 6 is meshed on one side of the upper pressing gear 5 close to the driving gear 3, a smashing roller 7 is fixedly connected to the front sides of the pressing gear 4, the upper pressing gear 5 and the re-pressing gear 6, the smashing roller 7 is arranged in a three mode, the front ends of the three smashing rollers 7 are rotatably connected with the inside of the integration box 1, adjacent sides of the three smashing rollers 7 are mutually attached, a feeding pipeline 8 is communicated with one side of the integration box 1, a reverse hopper 9 is communicated with the bottom of the integration box 1, and a processing box 10 is communicated with the bottom of the reverse hopper 9.
Through the technical scheme, the integration box 1 is used for bearing the crushing motor 2, the crushing motor 2 is opened to drive the driving gear 3 at the front end of the output shaft to rotate clockwise, the lower pressing gear 4 is arranged on the left side of the driving gear 3, the upper pressing gear 5 is arranged at the bottom of the lower pressing gear 4, the repressing gear 6 is arranged on the right side of the upper pressing gear 5, when the driving gear 3 rotates through the output shaft of the crushing motor 2, the lower pressing gear 4, the upper pressing gear 5 and the repressing gear 6 are driven to rotate synchronously through meshing relation, at the moment, the rotating directions of the lower pressing gear 4 and the repressing gear 6 are always opposite to that of the upper pressing gear 5, the three crushing rollers 7 are arranged, the three crushing rollers 7 rotate synchronously with the gears connected with each other, the left side of the integration box 1 is communicated with the feeding pipeline 8, dry heads are poured from the inlet of the feeding pipeline 8 into the integration box 1 along the feeding pipeline 8, the inverted hopper 9 guides the crushed dried noodle heads in the integration box 1 into the processing box 10.
The scheme has the following working processes:
the worker starts the crushing motor 2 to enable the driving gear 3 at the front end of the output shaft of the crushing motor 2 to rotate clockwise, when the driving gear 3 rotates clockwise, the driving gear drives the lower pressing gear 4 to rotate anticlockwise through a meshing relation, when the lower pressing gear 4 rotates anticlockwise, the upper pressing gear 5 rotates clockwise to drive the re-pressing gear 6 to rotate anticlockwise, the rotation of the lower pressing gear 4, the upper pressing gear 5 and the re-pressing gear 6 can drive the crushing rollers 7 which are connected with each other to move synchronously, at the moment, the worker guides the dry head into the feeding pipeline 8, the dry head enters the integration box 1 along with the guidance of the feeding pipeline 8, then the top of the crushing roller 7, connected with the upper pressing gear 5, at the bottom of the crushing roller 7 connected with the upper pressing gear 4 rolls towards the right side, and the residues of the rolled dry head can be rolled towards the left side of the crushing roller 7 connected with the re-pressing gear 6 by the right side of the crushing roller 7 connected with the upper pressing gear 5 to roll to drive the left side of the crushing roller 7 to carry out secondary crushing, the dried noodle heads after the secondary crushing enter the processing box 10 along the guide of the hopper 9.
According to the working process, the following steps are known:
carry out the regrinding through three crushing roller 7 to the dry face head, reached the crushing efficiency that increases the dry face head and smashed the more abundant effect of dry face head.
Further, the back of the processing box 10 is fixedly connected with a screening motor 11, and the front end of an output shaft of the screening motor 11 is fixedly connected with a movable arm 12.
Through the technical scheme, the screening device after the dry head is smashed is loaded in the processing box 10, and the movable arm 12 at the front end of the output shaft of the screening motor 11 is driven to rotate by starting the screening motor 11.
Furthermore, one end of the movable arm 12, which is far away from the output shaft of the screening motor 11, is attached to a movable square box 13, and the bottom of the movable square box 13 is fixedly connected with a movable limiting rod 14.
Through the technical scheme, the movable square box 13 is driven to move left and right once after the movable arm 12 rotates for a circle, and the movable limiting rod 14 is driven to move synchronously by the left and right movement of the movable square box 13.
Further, the outer surface wall of the movable limiting rod 14 is connected with two limiting sleeves 15 in a sliding mode, the two limiting sleeves 15 are arranged on the left side and the right side of the outer surface wall of the movable limiting rod 14, two ends of the movable limiting rod 14 penetrate through one side, away from the two limiting sleeves 15, of the two limiting sleeves 15 respectively, and the back faces of the two limiting sleeves 15 are fixedly connected with the vertical face of the back inside the processing box 10.
Through the technical scheme, the movable limiting rod 14 can move left and right inside the limiting sleeve 15, the limiting sleeve 15 is connected with the processing box 10 to provide a supporting point for the movable limiting rod 14, and the movable limiting rod 14 is prevented from falling off through the two limiting sleeves 15.
Further, the top of the movable square box 13 is fixedly connected with a screening plate 16, a screen is arranged in the screening plate 16, the top of the screening plate 16 is fixedly connected with a triangular block 17, a recovery plate 18 is attached to the bottom of the screening plate 16, grooves are formed in two sides of the processing box 10, the recovery plates 18 are arranged in two numbers, and bottom plates of the two recovery plates 18 are respectively attached to the bottoms of the two grooves.
Through the technical scheme, screening board 16 links to each other with activity square box 13, can drive screening board 16 synchronous motion when moving about activity square box 13, the screen cloth is used for screening the kibbling residue of dry noodle head in the screening board 16, the kibbling flour of dry noodle head can fall through the screen cloth, and the residue of not complete kibbling can be held back by the screen cloth, the left and right sides at screening board 16 top is distribute to the kibbling dry noodle head through pouring 9 to triangle block 17, dry noodle head residue can be guided when falling on recovery board 18 in the left and right sides fluting of processing case 10.
Furthermore, residue recycling boxes 19 are attached to two sides of the processing box 10, and flour recycling boxes 20 are attached to the transverse straight surfaces of the bottom of the inner side of the processing box 10.
Through above-mentioned technical scheme, the kibbling flour of the first dry noodle of screening board 16 can fall to the flour and retrieve box 20, and the flour is retrieved box 20 and can be taken out from processing case 10 is inside, and the first residue of dry noodle that gets into processing case 10 left and right sides fluting through two recovery boards 18 can get into inside residue collection box 19.
The scheme has the following working processes:
the staff opens screening motor 11 and drives the incessantly rotatory of digging arm 12, can drive the side to side movement of activity square box 13 when digging arm 12 is rotatory, activity square box 13 relies on 15 fixed activity gag lever post 14 of stop collar and drives the screening board 16 and remove about, can fall to the both sides at screening board 16 top through triangle-shaped block 17 after the dry face head entering after smashing gets into processing box 10 inside through falling fill 9, when the screening board 16 constantly removes about, can pass through inertia and tile the dry face head residue on the screen cloth of screening board 16, make the flour in the dry face head residue pass the screen cloth and fall to in the flour recovery box 20, and constantly push away dry face head residue to two recovery boards 18 through inertia, then pass the draw-in groove entering residue recovery box 19 of processing box 10 both sides through the guide of recovering board 18 and retrieve.
According to the working process, the following steps are known:
the effect of greatly increasing the sorting efficiency of the crushed dry noodle heads is achieved.
In conclusion, the worker starts the grinding motor 2 to enable the driving gear 3 at the front end of the output shaft of the grinding motor 2 to rotate clockwise, when the driving gear 3 rotates clockwise, the driving gear drives the pressing gear 4 to rotate anticlockwise through the meshing relation, when the pressing gear 4 rotates anticlockwise, the pressing gear 5 rotates clockwise to drive the repressing gear 6 to rotate anticlockwise, the pressing gear 4, the rotation of the pressing gear 5 and the repressing gear 6 can drive the grinding rollers 7 connected with each other to move synchronously, at the moment, the worker guides the dry head into the feeding pipeline 8, the dry head enters the integration box 1 along with the guiding of the feeding pipeline 8, then the top of the grinding roller 7 connected with the pressing gear 5 at the bottom of the grinding roller 7 connected with the pressing gear 4 rolls towards the right side, and the residue of the dry head after rolling can be driven by the left side of the grinding roller 7 connected with the repressing gear 6 at the right side of the grinding roller 7 connected with the pressing gear 5 towards the bottom to roll for secondary grinding The dried noodle heads after the secondary crushing enter the processing box 10 along the guide of the hopper 9.
The foregoing shows and describes the general principles, essential features, and advantages of the utility model. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are merely illustrative of the principles of the utility model, but that various changes and modifications may be made without departing from the spirit and scope of the utility model, which fall within the scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a dry noodle head recovery reducing mechanism, includes collection box (1), its characterized in that, collection box (1) back fixedly connected with crushing motor (2), crushing motor (2) output shaft front end fixedly connected with drive gear (3), the meshing of drive gear (3) one side has push down gear (4), push down gear (4) bottom meshing has push up gear (5), push up gear (5) are close to one side meshing of drive gear (3) has re-pressing gear (6), push down gear (4) and push up gear (5) and re-pressing gear (6) openly all fixedly connected with crushing cylinder (7), crushing cylinder (7) are provided with threely, three crushing cylinder (7) front end all is connected with collection box (1) internal rotation, three adjacent one side of crushing cylinder (7) all laminates to each other, a feeding pipeline (8) is communicated with one side of the integrated box (1), a reverse hopper (9) is communicated with the bottom of the integrated box (1), and a processing box (10) is communicated with the bottom of the reverse hopper (9).
2. The dry noodle head recovery and crushing device as claimed in claim 1, wherein a screening motor (11) is fixedly connected to the back of the processing box (10), and a movable arm (12) is fixedly connected to the front end of an output shaft of the screening motor (11).
3. The dry noodle head recycling and smashing device according to claim 2, wherein a movable square box (13) is attached to one end, away from an output shaft of the screening motor (11), of the movable arm (12), and a movable limiting rod (14) is fixedly connected to the bottom of the movable square box (13).
4. The dry noodle head recycling and crushing device as claimed in claim 3, wherein the outer surface wall of the movable limiting rod (14) is slidably connected with two limiting sleeves (15), the two limiting sleeves (15) are arranged on the left side and the right side of the outer surface wall of the movable limiting rod (14), two ends of the movable limiting rod (14) penetrate through one side, away from the two limiting sleeves (15), of the two limiting sleeves (15), and the back surfaces of the two limiting sleeves (15) are fixedly connected with the back vertical surface inside the processing box (10).
5. The dry noodle head recycling and smashing device according to claim 3, wherein a screening plate (16) is fixedly connected to the top of the movable square box (13), a screen is arranged inside the screening plate (16), a triangular block (17) is fixedly connected to the top of the screening plate (16), a recycling plate (18) is attached to the bottom of the screening plate (16), two grooves are formed in two sides of the processing box (10), two recycling plates (18) are arranged, and bottom plates of the two recycling plates (18) are respectively attached to the bottoms of the two grooves.
6. The dry dough recycling and smashing device is characterized in that residue recycling boxes (19) are attached to two sides of the processing box (10), and flour recycling boxes (20) are attached to the inner bottom transverse face of the processing box (10).
CN202121161415.9U 2021-05-27 2021-05-27 Dry noodle head recycling and smashing device Active CN215353683U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121161415.9U CN215353683U (en) 2021-05-27 2021-05-27 Dry noodle head recycling and smashing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121161415.9U CN215353683U (en) 2021-05-27 2021-05-27 Dry noodle head recycling and smashing device

Publications (1)

Publication Number Publication Date
CN215353683U true CN215353683U (en) 2021-12-31

Family

ID=79631931

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121161415.9U Active CN215353683U (en) 2021-05-27 2021-05-27 Dry noodle head recycling and smashing device

Country Status (1)

Country Link
CN (1) CN215353683U (en)

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