CN211003458U - Anti-accumulation shrimp body distributing machine - Google Patents
Anti-accumulation shrimp body distributing machine Download PDFInfo
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- CN211003458U CN211003458U CN201921187007.3U CN201921187007U CN211003458U CN 211003458 U CN211003458 U CN 211003458U CN 201921187007 U CN201921187007 U CN 201921187007U CN 211003458 U CN211003458 U CN 211003458U
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- shifting roller
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Abstract
The utility model provides a prevent piling up shrimp body cloth machine, a serial communication port, include: the automatic feeding device comprises a material shifting roller, a motor, a controller, a cloth conveying belt and a water collecting tank, wherein a plurality of shifting plates which are as long as the roller are arranged on the material shifting roller, the shifting plates are circumferentially distributed along the material shifting roller, the material shifting roller is suspended in the water collecting tank, the cloth conveying belt is inclined to one side of the water collecting tank, the motor controls the material shifting roller to rotate towards the position of the cloth conveying belt, and the controller controls the starting/stopping and the rotating speed of the motor. The problem that the shrimp shells cannot be peeled cleanly or are not peeled to influence the product quality due to the gathering phenomenon of the shrimp bodies entering the shrimp shell peeling machine is avoided.
Description
Technical Field
The utility model relates to a shrimp processing equipment field, in particular to prevent piling up shrimp body cloth machine.
Background
With the continuous improvement of the life quality of people, the requirements on the food quality are higher and higher, the people do not simply pursue satiety any more, and the people prefer the food with good taste and good nutrition. The shrimp is rich in nutrient substances such as protein, calcium, phosphorus, iron and the like, and is popular with the public, so the shrimp is made into products such as shrimp meat, shrimp paste, shrimp balls and the like which are rich in variety for people to choose. The food is prepared from peeled shrimp, and the current industrial peeling process of shrimp shells is as follows: the shrimp is placed in a wash tank and lifted into a shrimp decorticating machine by a conveyor belt with a plurality of fine baffles, and the shrimp shells are removed by a decorticating roller set. Because the baffle is smaller, when the shrimp body is larger, only a few shrimps on each small baffle cannot form accumulation, when the shrimp body is smaller (such as Antarctic krill, the volume is very small, generally 50-100 shrimps per kilogram, and 800 plus one shrimp per kilogram of Antarctic krill), a plurality of shrimps can be accumulated on the small baffles, and when the shrimps are sent into the shrimp shell stripping machine, the shrimp shell stripping machine cannot strip the accumulated shrimps, so that the shrimp shell with the smaller volume cannot be completely stripped, and only part of the shrimps can be stripped, thereby greatly influencing the quality of the shrimp meat. Therefore, for small shrimp, it becomes very critical how to distribute the shrimp evenly when entering the shrimp peeling machine.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a can effectively prevent to carry the accumulational shrimp body cloth machine of shrimp shell stripping machine's shrimp, concrete implementation is as follows:
an anti-accumulation shrimp body distributing machine, comprising: the automatic feeding device comprises a material shifting roller, a motor, a controller, a cloth conveying belt and a water collecting tank, wherein a plurality of shifting plates which are as long as the roller are arranged on the material shifting roller, the shifting plates are circumferentially distributed along the material shifting roller, the material shifting roller is suspended in the water collecting tank, the cloth conveying belt is inclined to one side of the water collecting tank, the motor controls the material shifting roller to rotate towards the position of the cloth conveying belt, and the controller controls the starting/stopping and the rotating speed of the motor.
In one or more embodiments of the present invention, the cloth conveyor belt inclination angle is less than 30 °.
In one or more embodiments of the present invention, the number of the poking plates is 4-6.
In one or more embodiments of the present invention, the material ejecting roller is perpendicular to the material ejecting roller.
In one or more embodiments of the present invention, the material ejecting roller is disposed on the material ejecting roller, and the material ejecting roller is disposed on the material ejecting roller.
The utility model discloses the beneficial effect of implementing who brings: through the rotation of dialling a material kura section of thick bamboo, the drive is dialled the board and is rotated, dials the board and can push away some shrimps towards the cloth conveyer belt and fall into the cloth conveyer belt, because the buoyancy of water is used, the shrimp dispersion that is sent into the cloth conveyer belt distributes, along with the promotion of cloth conveyer belt, the shrimp of dispersion is taken out of the water face, the shrimp of adhering to at the cloth conveyer belt this moment can not produce the gathering phenomenon, send into again and shell the shrimp shell machine and will not appear gathering shrimp and lead to the shrimp shell to shell the problem of can't peeling off totally or. And the enterprise need not to purchase new equipment again, only needs install additional the utility model discloses a prevent piling up shrimp body cloth machine can, when improving and shell shrimp shell quality and efficiency, avoided purchasing again the high cost that equipment brought, have great actual meaning and technological.
Drawings
FIG. 1 is a working schematic diagram of the accumulation-preventing shrimp body distributing machine of the utility model;
fig. 2 is a three-dimensional structure diagram of a material distribution roller in the shrimp body material distributor of fig. 1;
fig. 3 is a structural diagram of another shrimp body stacking-preventing distributor of the utility model.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail with reference to the accompanying fig. 1-3 and the embodiments:
as shown in fig. 1-2, an anti-accumulation shrimp body distributing machine, where the distributing machine 1 includes a material-ejecting roller tube 11, a motor 12, a controller 13, a cloth conveying belt 14, and a cloth water-collecting tank 15, 6 material-ejecting plates 111 that are as long as the material-ejecting roller tube 11 are disposed on the material-ejecting roller tube 11, the material-ejecting roller tube 111 is circumferentially distributed along the material-ejecting roller tube 11, the material-ejecting roller tube 11 is suspended in the water-collecting tank 15, the cloth conveying belt 14 is inclined to one side of the cloth water-collecting tank 15, and an inclination angle is set to be less than 30 ° for preventing shrimp bodies from slipping, the motor 12 controls the material-ejecting roller tube 11 to rotate toward the position of the cloth conveying belt 14, and the controller 13 controls start/stop and rotation speed of the motor 12. In order to avoid that the shrimp bodies brought to the cloth conveyor 14 by the poking plate 111 are carried away again, the poking plate 111 may be designed to be perpendicular to the poking roller barrel 11, or may be designed to have a poking plate 112 with a certain tilt angle as shown in fig. 3, but if the poking plate is designed to be at a tilt angle, the direction of the poking roller barrel 11 is opposite to the direction of the tilted poking plate 112.
When the shrimp cleaning device is used, shrimp bodies are poured into the cleaning water collecting tank 21 of the hoister 2, the shrimp bodies are lifted to a higher position through the lifting conveying belt 22 and then poured into the cloth water collecting tank 15, the motor 12 is controlled to rotate through the controller 13, the motor 12 drives the material shifting roller 11 to rotate anticlockwise, the shifting plate 111 can continuously shift the shrimp bodies poured into the left side to the cloth conveying belt 14 on the right side, one end of the cloth conveying belt 14 extends into the cloth water collecting tank 15, after the shrimp bodies reach the bottom end of the cloth conveying belt 14, the water flows due to the rotation of the material shifting roller 11, meanwhile, due to the buoyancy of the water, the shrimp bodies can suspend in the water, the cloth conveying belt 14 slowly rotates to lift the shrimp bodies in the water out of the water, the shrimp bodies on the cloth conveying belt 14 can be arranged one by one, and the accumulation phenomenon can. Because the inclination angle of the cloth conveying belt 14 is lower than 30 degrees, the shrimp bodies on the cloth conveying belt 14 cannot slide down, the lifted shrimp bodies are continuously poured into the funnel 3 of the shrimp peeling machine, and the shrimp bodies in the funnel 3 are continuously input into the shrimp peeling roller of the shrimp peeling machine for shrimp peeling operation.
The number of the shifting plates 111 is not too dense or too sparse, too dense results in too many shrimp bodies which are shifted onto the cloth conveying belt 14, the number of the shrimp bodies in a unit area is large, if too many shrimp bodies are input into the shrimp peeling machine, the speed of a shrimp peeling roller is increased to deal with simultaneous input of a large number of shrimp bodies, but too fast the speed of the shrimp peeling roller leads to the fact that the shrimp shells cannot be peeled cleanly, and the product quality is influenced; if the shrimp bodies are too loose, the shrimp bodies on the unit area of the cloth conveying belt 14 are less, and the fault phenomenon that one section has the shrimp bodies and the other section does not have the shrimp bodies occurs, so that the production efficiency is influenced. Through verification, the number of the shifting plates 111 is 4-6, the rotating speed of the motor 12 and the transmission speed of the cloth conveying belt 14 are controlled through the controller 13 according to production requirements, the shrimp bodies can be continuously distributed on the cloth conveying belt 14, the number of the shrimp bodies in a unit area can meet the bearing capacity of the shrimp shell peeling machine, the yield is improved, and meanwhile, the product quality is improved.
In industry, in order to improve the shrimp peeling efficiency, the shrimp peeling machine is provided with the shrimp peeling rollers from top to bottom and from left to right, so that the overall height and the volume are large, and the shrimp peeling machine is uniformly lifted by a lifting machine and then input into the shrimp peeling machine for shrimp peeling operation. Can install additional between lifting machine and shrimp shell peeling machine the utility model discloses a prevent piling up shrimp body cloth machine has avoided repurchase equipment to increase the cost in business, has saved a large amount of manpower and materials, and this utility model has practicality, technical.
The above preferred embodiments should be considered as examples of the embodiments of the present application, and technical deductions, substitutions, improvements and the like similar to, similar to or based on the embodiments of the present application should be considered as the protection scope of the present patent.
Claims (5)
1. The utility model provides an anti-accumulation shrimp body distributing machine which characterized in that includes: the automatic feeding device comprises a material shifting roller, a motor, a controller, a cloth transmission band and a water collection tank, wherein a plurality of shifting plates which are as long as the roller are arranged on the material shifting roller, the shifting plates are circumferentially distributed along the material shifting roller, the material shifting roller is suspended in the water collection tank, the cloth transmission band is inclined to one side of the water collection tank, the motor controls the material shifting roller to rotate towards the position of the cloth transmission band, and the controller controls the starting/stopping and the rotating speed of the motor.
2. The accumulation-preventing shrimp body distributing machine as claimed in claim 1, wherein: the inclination angle of the cloth conveying belt is less than 30 degrees.
3. The accumulation-preventing shrimp body distributing machine as claimed in claim 1, wherein: 4-6 poking plates are provided.
4. The accumulation preventing shrimp body distributing machine as claimed in any one of claims 1-3, wherein: the shifting plate is vertical to the shifting roller barrel.
5. The accumulation preventing shrimp body distributing machine as claimed in any one of claims 1-3, wherein: the material shifting plate and the material shifting roller barrel form a certain inclination angle, and the inclination direction of the material shifting plate is opposite to the direction of the material shifting roller barrel.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921187007.3U CN211003458U (en) | 2019-07-26 | 2019-07-26 | Anti-accumulation shrimp body distributing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921187007.3U CN211003458U (en) | 2019-07-26 | 2019-07-26 | Anti-accumulation shrimp body distributing machine |
Publications (1)
Publication Number | Publication Date |
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CN211003458U true CN211003458U (en) | 2020-07-14 |
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Family Applications (1)
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CN201921187007.3U Active CN211003458U (en) | 2019-07-26 | 2019-07-26 | Anti-accumulation shrimp body distributing machine |
Country Status (1)
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CN (1) | CN211003458U (en) |
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2019
- 2019-07-26 CN CN201921187007.3U patent/CN211003458U/en active Active
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