CN204599241U - Former algae on one main laver pelletizing production line cuts off cleaning and dewatering device - Google Patents
Former algae on one main laver pelletizing production line cuts off cleaning and dewatering device Download PDFInfo
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- CN204599241U CN204599241U CN201520066512.8U CN201520066512U CN204599241U CN 204599241 U CN204599241 U CN 204599241U CN 201520066512 U CN201520066512 U CN 201520066512U CN 204599241 U CN204599241 U CN 204599241U
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- Prior art keywords
- service sink
- laver
- cleaning
- conveyer belt
- mass transport
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Abstract
The former algae that the utility model relates on a main laver pelletizing production line cuts off cleaning and dewatering device, and comprise frame, service sink, draining mechanism and electric control system, described frame is provided with conveyer belt, and described conveyer belt is provided with ultrasonic wave shearing device; The feed end of described service sink is connected to the discharge end of described conveyer belt, is provided with corresponding wiper mechanism in service sink; The discharge end of described service sink is provided with a Material pipeline, on described Material pipeline, parallel connection is provided with multiple mass transport arm, described draining mechanism comprises multiple dewater units that number equals mass transport arm, and described dewater unit is connected respectively to corresponding mass transport arm.Laver is cut into raw material of uniform size by the utility model, after cleaning device cleans, then enters into dewater unit dewater, and forms the production line of the previous work of the Feedstock treating of laver granulation, greatly saves labour, improve production efficiency.
Description
Technical field
The utility model relates to the processing of marine alga granulation, and the former algae particularly related on a main laver pelletizing production line cuts off cleaning and dewatering device.
Background technology
Laver is the vegetables that a kind of nutritive value is very high, has certain medical value simultaneously.Containing mineral matter elements such as abundant iodine.Laver heat content is low, protein content is medium, mineral matter enriches, and in view of the rich in nutritive value of laver, the processed finished products of laver is also more and more by everybody favor.Along with improving constantly of occupation rate of market, the product form of laver also gets more and more, and instant laver grain is exactly wherein a kind of.The production of the processing of existing laver granulation is mainly undertaken being packaged into product by after former algae cut-out, cleaning, dehydration, granulation, drying and shaping, screening.At present, cutting off former algae, to clean and dehydration is generally separately carried out, first laver is cut off, be then transported in corresponding cleaning device and clean, adopt after manually pulling out, then transport and dewater toward corresponding dewater unit.In production process, human resources expend comparatively large, and production efficiency is relatively low, cannot adapt to the requirement of modern production.Therefore, the solution for above-mentioned prior art Problems existing is research purpose of the present utility model.
Utility model content
For above-mentioned prior art Problems existing, the utility model is to provide the former algae on a main laver pelletizing production line to cut off cleaning and dewatering device, effectively can solve above-mentioned prior art Problems existing.
The technical solution of the utility model is:
Former algae on one main laver pelletizing production line cuts off cleaning and dewatering device, comprise frame, service sink, draining mechanism and electric control system, described frame is provided with conveyer belt, described conveyer belt is provided with ultrasonic wave shearing device, described ultrasonic wave shearing device comprises the tool rest be arranged in frame, described tool rest is connected with a knife rest by corresponding lift cylinder, and described knife rest is provided with corresponding ultrasonic wave cutting knife; The feed end of described service sink is connected to the discharge end of described conveyer belt, corresponding wiper mechanism is provided with in service sink, described wiper mechanism comprises the multiple outlet pipe be arranged side by side above service sink and the blast pipe be arranged side by side bottom service sink, described outlet pipe is equipped with corresponding water jet, described blast pipe is equipped with corresponding gas outlet; Feed end above described service sink is provided with a water inlet, and described water inlet and described multiple outlet pipe are all connected to extraneous clear water source by the first suction pump; The discharge end of described service sink is provided with a Material pipeline, on described Material pipeline, parallel connection is provided with multiple mass transport arm, described draining mechanism comprises multiple dewater units that number equals mass transport arm, described dewater unit is connected respectively to corresponding mass transport arm, described Material pipeline is connected with the second suction pump, described mass transport arm is respectively equipped with corresponding automatic valve.
Described dewater unit comprises shell, and described enclosure is provided with a cylindrical dehydration barrel, and described cylindrical dehydration barrel is evenly distributed with the discharge outlet that all multiple apertures are 0.5-1mm, and cylindrical dehydration barrel is driven by corresponding rotary electric machine.
The bottom of described service sink is provided with outfall, and described outfall place is provided with accordingly for the valve of switch.
Advantage of the present utility model:
Former algae is put on conveyer belt, through ultrasonic wave shearing device, former algae is cut into laver sheet of uniform size by the utility model, these laver sheets are transported in service sink along with conveyer belt, under the effect of wiper mechanism, can there is violent rolling thus reach the cleaning performance of laver sheet in the water in service sink; Laver sheet the second suction pump effect under can dewater along with Material pipeline enters into dewater unit place.The utility model utilizes ultrasonic wave cutting knife that former algae is cut into laver sheet of uniform size, for early-stage preparations are done in the laver granulation in later stage, and the laver granular size produced like this is more even, market sale also can improve, moreover cleaned laver sheet can make laver contain the moisture of 30-50% under the effect of dewater unit, for early-stage preparations are done in the oven dry in later stage.
Accompanying drawing explanation
Fig. 1 is structural scheme of mechanism of the present utility model.
Fig. 2 is part-structure schematic diagram of the present utility model.
Detailed description of the invention
Now embodiment is described in further detail structure of the present utility model by reference to the accompanying drawings for the ease of it will be appreciated by those skilled in the art that:
With reference to Fig. 1-2, the former algae that the utility model relates on a main laver pelletizing production line cuts off cleaning and dewatering device, comprise frame 1, service sink 4, draining mechanism and electric control system (not shown), described frame 1 is provided with conveyer belt 2, described conveyer belt 2 is provided with ultrasonic wave shearing device, described ultrasonic wave shearing device comprises the tool rest 31 be arranged in frame 1, and described tool rest 31 is connected with a knife rest 33 by corresponding lift cylinder 32, and described knife rest 33 is provided with corresponding ultrasonic wave cutting knife 34; The feed end of described service sink 4 is connected to the discharge end of described conveyer belt 2, corresponding wiper mechanism is provided with in service sink 4, described wiper mechanism comprises the multiple outlet pipes 61 be arranged side by side above service sink 4 and the blast pipe 5 be arranged side by side bottom service sink 4, described outlet pipe 61 is equipped with corresponding water jet 6, described blast pipe 5 is equipped with corresponding gas outlet 51; Feed end above described service sink 4 is provided with a water inlet 41, the bottom of described service sink 4 is provided with outfall 42, described outfall 42 place is provided with accordingly for the valve 43 of switch, and described water inlet 41 is all connected to extraneous clear water source by the first suction pump 62 with described multiple outlet pipe 61; The discharge end of described service sink 4 is provided with a Material pipeline 71, on described Material pipeline 71, parallel connection is provided with multiple mass transport arm 72, described draining mechanism comprises multiple dewater units 8 that number equals mass transport arm 72, described dewater unit 8 is connected respectively to corresponding mass transport arm 72, described Material pipeline 71 is connected with the second suction pump 7, described mass transport arm 72 is respectively equipped with corresponding automatic valve 9.
Described dewater unit 8 comprises shell 82, and described shell 82 inside is provided with a cylindrical dehydration barrel 81, and described cylindrical dehydration barrel 81 is evenly distributed with the discharge outlet 85 that all multiple apertures are 0.5-1mm, and cylindrical dehydration barrel 81 is driven by corresponding rotary electric machine 83.
During work, former algae is put on conveyer belt 2, former algae arrives ultrasonic wave shearing device 3 place, electric control system controls lift cylinder 32 every piston rod lifting in three seconds once, thus drive ultrasonic wave cutting knife 34 that the former algae on conveyer belt 2 is cut into laver sheet of uniform size, laver sheet is along with conveyer belt 2 is to being transported in service sink 4, under the effect of blast pipe 5, water can produce bubble, water is pumped to water jet 6 by the first suction pump 62 simultaneously, water jet 6 pairs of service sinks 4 spray thus make water produce violent rolling, under the effect of blast pipe 5 and water jet 6, the laver sheet in service sink 4 is comprehensively cleaned.
Laver sheet through cleaning can be transported to place of draining mechanism through Material pipeline 71 under the effect of the second suction pump 7, electric control system controls to open an automatic valve 9, mean and now only have a dewater unit 8 pairs of laver sheets to dewater, laver sheet enters in the cylindrical dehydration barrel 81 of dewater unit 8 with Material pipeline 71, simultaneously motor 83 drives cylindrical dehydration barrel 81 to start running the water in cylindrical dehydration barrel 81 is thrown out from discharge outlet 85, such dehydration also can make disintegrating slag smaller in laver sheet in the lump along with the rotation of cylindrical dehydration barrel 81 throws away cylindrical dehydration barrel 81, thus reach the laver chip removed in laver sheet.After first dewater unit 8 works five minutes, automatic valve 9 on first dewater unit 8 is closed by electric control system, open second automatic valve 9, and the motor 83 in first dewater unit 8 quits work after working on two minutes, artificial takes out the laver sheet in cylindrical dehydration barrel 81, and laver sector-meeting enters second dewater unit 8 and dewaters when opening second automatic valve 9, repeated work like this, electric control system controls the opening and closing of automatic valve 9 successively.
The foregoing is only preferred embodiment of the present utility model, all equalizations done according to the utility model claim change and modify, and all should belong to covering scope of the present utility model.
Claims (3)
1. the former algae on a main laver pelletizing production line cuts off cleaning and dewatering device, comprise frame, service sink, draining mechanism and electric control system, it is characterized in that: described frame is provided with conveyer belt, described conveyer belt is provided with ultrasonic wave shearing device, described ultrasonic wave shearing device comprises the tool rest be arranged in frame, described tool rest is connected with a knife rest by corresponding lift cylinder, and described knife rest is provided with corresponding ultrasonic wave cutting knife; The feed end of described service sink is connected to the discharge end of described conveyer belt, corresponding wiper mechanism is provided with in service sink, described wiper mechanism comprises the multiple outlet pipe be arranged side by side above service sink and the blast pipe be arranged side by side bottom service sink, described outlet pipe is equipped with corresponding water jet, described blast pipe is equipped with corresponding gas outlet; Feed end above described service sink is provided with a water inlet, and described water inlet and described multiple outlet pipe are all connected to extraneous clear water source by the first suction pump; The discharge end of described service sink is provided with a Material pipeline, on described Material pipeline, parallel connection is provided with multiple mass transport arm, described draining mechanism comprises multiple dewater units that number equals mass transport arm, described dewater unit is connected respectively to corresponding mass transport arm, described Material pipeline is connected with the second suction pump, described mass transport arm is respectively equipped with corresponding automatic valve.
2. the former algae on a main laver pelletizing production line according to claim 1 cuts off cleaning and dewatering device, it is characterized in that: described dewater unit comprises shell, described enclosure is provided with a cylindrical dehydration barrel, described cylindrical dehydration barrel is evenly distributed with the discharge outlet that all multiple apertures are 0.5-1mm, and cylindrical dehydration barrel is driven by corresponding rotary electric machine.
3. the former algae on a main laver pelletizing production line according to claim 1 cuts off cleaning and dewatering device, it is characterized in that: the bottom of described service sink is provided with outfall, and described outfall place is provided with accordingly for the valve of switch.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520066512.8U CN204599241U (en) | 2015-01-30 | 2015-01-30 | Former algae on one main laver pelletizing production line cuts off cleaning and dewatering device |
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CN201520066512.8U CN204599241U (en) | 2015-01-30 | 2015-01-30 | Former algae on one main laver pelletizing production line cuts off cleaning and dewatering device |
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CN204599241U true CN204599241U (en) | 2015-09-02 |
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CN201520066512.8U Expired - Fee Related CN204599241U (en) | 2015-01-30 | 2015-01-30 | Former algae on one main laver pelletizing production line cuts off cleaning and dewatering device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108356872A (en) * | 2017-12-29 | 2018-08-03 | 林耀耿 | One kind, which is cut, washes the synchronous special fruits and vegetables equipment in restaurant |
CN108523040A (en) * | 2018-06-19 | 2018-09-14 | 晋江鲜之惠食品有限公司 | seaweed production equipment and its working method |
-
2015
- 2015-01-30 CN CN201520066512.8U patent/CN204599241U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108356872A (en) * | 2017-12-29 | 2018-08-03 | 林耀耿 | One kind, which is cut, washes the synchronous special fruits and vegetables equipment in restaurant |
CN108523040A (en) * | 2018-06-19 | 2018-09-14 | 晋江鲜之惠食品有限公司 | seaweed production equipment and its working method |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150902 Termination date: 20180130 |