CN215974059U - Solid beverage is unloader for - Google Patents

Solid beverage is unloader for Download PDF

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Publication number
CN215974059U
CN215974059U CN202122202811.8U CN202122202811U CN215974059U CN 215974059 U CN215974059 U CN 215974059U CN 202122202811 U CN202122202811 U CN 202122202811U CN 215974059 U CN215974059 U CN 215974059U
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China
Prior art keywords
classifying screen
solid beverage
conveyer belt
mesh
conveying belt
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CN202122202811.8U
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Chinese (zh)
Inventor
吴力卡
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B Enjoy Biotechnology Co ltd
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B Enjoy Biotechnology Co ltd
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Priority to CN202122202811.8U priority Critical patent/CN215974059U/en
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Abstract

The utility model relates to the field of blanking devices, in particular to a blanking device for solid beverages, which comprises a storage box, wherein a conveying belt for primarily screening and transporting materials and a grinding unit connected with one end of the conveying belt, which is far away from the storage box, through a slide way are arranged below a blanking port of the storage box, the conveying belt is a mesh conveying belt, a material collecting box is arranged below the conveying belt, the mesh conveying belt is a 600-plus 1500-mesh screen conveying belt, the grinding unit comprises a grinding machine and a classifying screen which are connected with the slide way, and a feeding port of the classifying screen is connected with a discharging port of the grinding machine through a first pipeline. The utility model has simple structure, strictly controls the product quality by further screening the product through the mesh conveyer belt, inputs the powder which does not meet the requirement of the grain diameter into the grinding unit through the mesh conveyer belt for further grinding, and directly enters the collecting box to improve the product quality.

Description

Solid beverage is unloader for
Technical Field
The utility model relates to the field of blanking devices, in particular to a blanking device for solid beverage.
Background
Solid beverages belong to the category of soft drinks, and are mainly classified into protein type solid beverages (including amino acid beverages) and general type solid beverages. The protein type solid beverage is a product which is prepared by taking milk and dairy products, eggs and egg products, other animal and vegetable proteins, amino acids and the like as main raw materials and adding or not adding auxiliary materials, wherein the protein content is more than or equal to 4 percent, and the common products comprise soybean milk powder, walnut powder, malted milk essence, amino acid in an ammonia recovery source and the like; the common solid beverage is prepared from fruit powder or roasted coffee, tea, chrysanthemum, lalang grass rhizome and other plant extracts as main raw materials, with or without other adjuvants, and has protein content of less than 4%. Common plum powder, chrysanthemum crystal, instant tea powder, couchgrass root essence, amino acid beverage and the like.
When solid beverages are dried, powder is agglomerated and dried, so that the shapes and sizes of the powder of the solid beverages are inconsistent, most of the solid beverage blanking devices on the market do not grind solid beverages with overlarge shapes to proper sizes and then package or perform secondary drying, and the product quality is easily reduced.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a solid beverage blanking device which can further screen products through a mesh-shaped conveying belt, effectively control the product quality and ensure that the products meet the uniform quality requirement.
In order to achieve the purpose, the utility model provides the following technical scheme:
a blanking device for solid beverage comprises a storage box, wherein a conveying belt for primarily screening and conveying materials and a grinding unit connected with one end of the conveying belt far away from the storage box through a slide way are arranged below a blanking port of the storage box;
the conveyer belt is netted conveyer belt, the below of conveyer belt is provided with the case that gathers materials, and when the conveyer belt rotated, the powder that accords with the particle diameter requirement fell into the case that gathers materials through the mesh of conveyer belt.
The mesh conveyer belt is a 600-1500-mesh screen conveyer belt.
The bottom of the material collecting box is provided with an auger for discharging, and the free end of the auger is a discharge hole.
And a valve is arranged on the discharge hole.
The grinding unit comprises a grinding machine and a classifying screen which are connected with the slide way, and a feeding port of the classifying screen is connected with a discharging port of the grinding machine through a first pipeline.
The classifying screen is a three-layer three-dimensional vibrating screen, a recycling box for recycling materials is arranged outside the classifying screen, a second pipeline is arranged on the top layer of the classifying screen, a third pipeline is arranged in the middle layer of the classifying screen, and the second pipeline and the third pipeline are both connected with the recycling box.
The bottommost layer of the classifying screen is connected with the material collecting box through the inclined tube, and after materials pass through the classifying screen, the materials meeting the particle size requirement are concentrated on the bottommost layer and then fall into the material collecting box through the inclined tube.
And a valve for controlling the blanking speed of the material is arranged at the bottom of the material storage box.
The utility model has the beneficial effects that:
the utility model has simple structure, strictly controls the product quality by further screening the product through the mesh conveyer belt, inputs the powder which does not meet the requirement of the grain diameter into the grinding unit through the mesh conveyer belt for further grinding, and directly enters the collecting box to improve the product quality.
Drawings
FIG. 1 is a structural view of the present invention;
FIG. 2 is a schematic view of a classifying screen in cooperation with a recovery tank;
FIG. 3 is a detailed structural view of the grinding machine;
FIG. 4 is a detailed block diagram of the transport unit (motor not identified);
fig. 5 is a detailed structural view of the discharging unit.
In the figure: 1-storage box 2-grinding unit 3-grinding machine 4-blanking port 5-slideway 6-feeding port 71-classifying screen 72-recovery box 73-top layer 74-middle layer 75-bottom layer 76-second pipeline 77-third pipeline 81-conveyer belt 82-rotating shaft 9-material collecting box 10-packing auger 11-discharging port 12-valve 13-inclined tube
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution:
the utility model provides a unloader for solid beverage, includes storage case 1, the feed opening below of storage case 1 is provided with the conveyer belt 81 that is used for tentatively screening and transports the material and keeps away from grinding unit 2 that the one end of storage case 1 is connected through slide 5 and conveyer belt 81, conveyer belt 81 is netted conveyer belt, the below of conveyer belt 81 is provided with the case 9 that gathers materials.
In practical operation, after falling from the feed opening of the storage box 1, the materials are primarily screened by the conveyer belt 81 below the storage box 1, when the conveyer belt 81 rotates, the materials meeting the requirement of the particle size fall into the collecting box 9 through the meshes of the conveyer belt 81, and the materials not meeting the requirement of the particle size enter the grinding unit through the slide 5 for further grinding; there are various methods for rotating the conveying belt 81, such as rotating the shaft 82 to rotate the conveying belt 81 by using a motor or an air cylinder.
Preferably, the conveyer belt 81 is a 600-1500 mesh sieve conveyer belt, for example, a sieve conveyer belt with 700 meshes, 800 meshes or 900 meshes is selected, and in this embodiment, a sieve conveyer belt with 1000 meshes is selected.
In the embodiment, in order to discharge the materials meeting the requirement of the particle size in a centralized manner, the bottom of the material collecting box 9 is provided with an auger 10 for discharging, and the free end of the auger 10 is a discharge hole 11.
In practical application, in the prior art, the auger 10 generally refers to a screw conveyer which utilizes a motor to drive a screw to rotate and push materials so as to realize the conveying purpose, the materials fall down from the storage box 1, the materials after the screening action of the conveying belt 81 fall into the material collecting box 9, then the materials fall into the auger 10 in a centralized manner under the action of gravity, and then the materials are collected by pushing the materials to the discharge port 11 by the auger 10.
As a preferable scheme of this embodiment, the discharge port 11 is provided with a valve 12, which is used for closing the valve when the material does not need to be discharged, so as to prevent part of the material from falling.
In this embodiment, the grinding unit 2 comprises a grinder 3 connected to the chute 5 and a classifying screen 71, and the inlet of the classifying screen 71 is connected to the outlet of the grinder 3 via a first pipe.
In this practical operation, as the prior art, the three-roll grinder 3 can be used;
similarly, in this embodiment, as the prior art, the classifying screen 71 may adopt a three-dimensional vibrating screen, a recycling box 72 for recycling materials is arranged outside the classifying screen 71, a second pipeline 76 is arranged on a top layer 73 of the classifying screen 71, a third pipeline 77 is arranged on a middle layer 74 of the classifying screen 71, the second pipeline 76 and the third pipeline 77 are both connected with the recycling box 72, and a bottommost layer 75 of the classifying screen 71 is connected with the collecting box 9 through an inclined pipe 13.
In actual operation, materials are ground by the grinding machine 3 and then enter the grading sieve 71, the materials meeting the requirement on the particle size are collected at the bottommost layer 75 and then fall into the material collecting box 9 through the inclined pipe 15, and material powder still not meeting the requirement on the particle size stays on the screen meshes of the top layer 73 and the middle layer 74 and waits for entering the recycling box 72; in order to allow the undesirable material to be further ground, the operator may regrind the material within the recovery tank 72.
Preferably, as a preferable scheme of this embodiment, the screen of the top layer 73 of the three-dimensional vibrating screen is a 500-mesh screen, and the screen of the middle layer 74 is a 1000-mesh screen, which has the function of enabling materials meeting the requirement of particle size to pass through the 1000-mesh screen and enter the collection box 9.
In this embodiment, specifically, the chute 5 is connected to the feeding port 6 of the grinding machine 3, so that the material with the coarse particle size falls into the grinding machine 3 through the chute 5 for grinding after being transported to the chute 5 through the conveyer belt 81.
As a preferable scheme of this embodiment, as shown in fig. 1, a valve 14 for controlling the material dropping speed is disposed at the bottom of the storage bin 1, so that the dropping amount can be controlled.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. A solid beverage blanking device comprises a storage box and is characterized in that a conveying belt for primarily screening and conveying materials and a grinding unit connected with one end of the conveying belt, which is far away from the storage box, through a slide way are arranged below a blanking port of the storage box;
the conveyer belt is netted conveyer belt, the below of conveyer belt is provided with the case that gathers materials, and when the conveyer belt rotated, the powder that accords with the particle diameter requirement fell into the case that gathers materials through the mesh of conveyer belt.
2. The blanking device for solid beverage as claimed in claim 1, wherein the mesh conveyor belt is a 600-1500 mesh screen conveyor belt.
3. The blanking device for the solid beverage as claimed in claim 1, wherein the bottom of the material collecting box is provided with an auger for discharging, and the free end of the auger is a discharge hole.
4. A solid beverage blanking device as claimed in claim 3, wherein the discharge port is provided with a valve.
5. A solid beverage discharging device according to claim 1, wherein the grinding unit comprises a grinder and a classifying screen connected with the slideway, and a feeding port of the classifying screen is connected with a discharging port of the grinder through a first pipeline.
6. The blanking device for the solid beverage as claimed in claim 5, wherein the classifying screen is a three-layer three-dimensional vibrating screen, a recycling box for recycling materials is arranged outside the classifying screen, a second pipeline is arranged on the top layer of the classifying screen, a third pipeline is arranged on the middle layer of the classifying screen, and the second pipeline and the third pipeline are both connected with the recycling box.
7. A solid beverage blanking device as claimed in claim 6, wherein the bottom layer of the classifying screen is connected with the material collecting box through an inclined tube, and after the material passes through the classifying screen, the material meeting the particle size requirement is collected on the bottom layer and falls into the material collecting box through the inclined tube.
8. A solid beverage blanking device as claimed in any one of the claims 1 to 7, wherein the bottom of the storage box is provided with a valve for controlling the blanking speed of the material.
CN202122202811.8U 2021-09-12 2021-09-12 Solid beverage is unloader for Active CN215974059U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122202811.8U CN215974059U (en) 2021-09-12 2021-09-12 Solid beverage is unloader for

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122202811.8U CN215974059U (en) 2021-09-12 2021-09-12 Solid beverage is unloader for

Publications (1)

Publication Number Publication Date
CN215974059U true CN215974059U (en) 2022-03-08

Family

ID=80465321

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122202811.8U Active CN215974059U (en) 2021-09-12 2021-09-12 Solid beverage is unloader for

Country Status (1)

Country Link
CN (1) CN215974059U (en)

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