CN208823976U - Continuous flow upstream broken pipe formula extracts recycling machine - Google Patents

Continuous flow upstream broken pipe formula extracts recycling machine Download PDF

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Publication number
CN208823976U
CN208823976U CN201820912888.XU CN201820912888U CN208823976U CN 208823976 U CN208823976 U CN 208823976U CN 201820912888 U CN201820912888 U CN 201820912888U CN 208823976 U CN208823976 U CN 208823976U
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Prior art keywords
extraction tube
continuous flow
broken pipe
flow upstream
recycling machine
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CN201820912888.XU
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蔡圣佳
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Individual
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Abstract

The utility model discloses a kind of continuous flow upstream broken pipe formulas to extract recycling machine, including extraction tube, the bottom of the extraction tube is equipped with soak entrance, one end of the top is connected with feeding device, and the other end is equipped with external feed opening, and the extraction tube is in multistage longitudinal arrangement, helical axis is equipped with inside extraction tube, flow blocking strip is housed, the spindle nose of the helical axis is all made of hexagonal spindle nose, and the outlet of extraction tube is additionally provided with conveying slag drying machine structure on the tube wall of extraction tube.The utility model will extract pipeline and be divided into multistage longitudinal arrangement, and flow blocking strip is housed on extracting tube wall, reinforce the conveying capacity of raw material, it is set preferably to form adverse current with solvent, it prevents raw material from spinning on helical axis, improves extraction efficiency, simultaneously, float in solvent on part material in order to prevent, the top of extraction tube is additionally provided with external feed opening, reinforces raw material and enters next stage extraction tube, which can automatically work continuously, extraction efficiency is high, is suitble to mass production operation.

Description

Continuous flow upstream broken pipe formula extracts recycling machine
Technical field
The utility model relates to a kind of extraction elements more particularly to a kind of continuous flow upstream broken pipe formula to extract recycling machine.
Background technique
The extraction of effective components from natural materials at present mainly uses extractor and adverse current tubular type extractor.Extractor extracts It is general using stirring, service intermittent mode, raw material is by impregnating repeatedly, stirring, and manual switching improves recovery rate, and labour is strong Degree is big, and extraction efficiency is low;The working method that adverse current tubular type extractor is extracted using duct type adverse current extracts work in original tradition The improvement of extracting mode is carried out in skill, but the extracting mode is there is also device layout that long (usual device length is 20 meters and arrives 60 meters), revolving speed is slow, maintenance is inconvenient, the general deficiency of extraction efficiency.
Utility model content
Purpose of utility model: the utility model aim be to provide it is a kind of extract can be extracted, and out dry slag in one The automation continuous flow upstream broken pipe formula of body extracts recycling machine.
Technical solution: the utility model includes extraction tube, and the bottom of the extraction tube is equipped with soak entrance, the top One end be connected with feeding device, helical axis is equipped with inside extraction tube, flow blocking strip, extraction tube are housed on the tube wall of the extraction tube The other end of the top is equipped with external feed opening.
The outlet of the extraction tube is equipped with conveying slag drying machine structure.
Stainless (steel) wire hole link plate structure is used inside the conveying slag drying machine structure, it is different to can be adapted for all size Feedstock transportation.
The external feed opening inner wall uses screw mechanism, can reinforce raw material and enter in next stage extraction tube.
The external feed opening is additionally provided with packaged reducer, by power output, raw material is forced to enter next stage extraction Pipe.
The spindle nose of the helical axis is all made of hexagonal spindle nose, guarantees that helical axis and gear synchronous rotate, not easy to wear, stablizes Property is more preferable.
Bearing is connected between the helical axis and extraction tube, the end of helical axis is additionally provided with axle sleeve and sealing element, benefit Bring frictional resistance in rotation is reduced with bearing, guarantees the end face seal of helical axis using axle sleeve and sealing element.
The extraction tube is at least in two sections of longitudinal arrangements, shortens the length for extracting machine equipment.
The utility model has the advantages that the utility model is divided into multistage longitudinal arrangement for pipeline is extracted, it is driven using Double-gear and drives spiral Axis rotates pusher, and flow blocking strip is housed on extracting tube wall, reinforces the conveying capacity of raw material, forms it preferably with solvent Countercurrently, it prevents raw material from spinning on helical axis, improves extraction efficiency, meanwhile, float in solvent on part material in order to prevent, mentions It takes the top of pipe to be additionally provided with external feed opening, reinforces raw material and enter next stage extraction tube, which can be automatically continuous Operation, extraction efficiency is high, is suitble to mass production operation.
Detailed description of the invention
Fig. 1 is the overall structure figure of the utility model;
Fig. 2 is the right view of the utility model;
Fig. 3 is the extraction tube schematic diagram of the utility model;
Fig. 4 is the work flow diagram of the utility model.
Specific embodiment
The utility model is described in further detail with reference to the accompanying drawing.
As shown in Figure 1 to Figure 3, the utility model include speed reducer 1, gear drive 2, extracting liquid outlet 3, charging laterally it is defeated Send auger 4, feed riser conveying auger 5, feedstock storehouse 6, drive sprocket 7, bearing block 8, bearing 9, bearing gland 10, axle sleeve 11, sealing element 12, extraction tube 13, helical axis 14, external feed opening 15, water tank 16, squeezer 17, conveying slag drying machine structure 18, method Orchid 19, solvent pump 20, insulating layer 21, jacket steam import 22, condensation-water drain 23, preliminary condensation water out 24, Preheated steam into Mouth 25 and soak outlet 26.The bottom of extraction tube 13 is connected with soak entrance, one end of the top by solvent pump 20 Be connected with feeding device, extraction tube 13 at least in two sections of lontitudinal series arrangements, inside be equipped with helical axis 14, extraction tube 13 is most The other end of top is equipped with external feed opening 15, and to prevent floating in solvent on part material, external 15 inner wall of feed opening uses spiral shell Mechanism is revolved, and is connected with packaged reducer, by power output, raw material is forced to enter next stage extraction tube.Extraction tube 13 is most lower The exit of side connects water tank 16 by flange 19, and the outlet of extraction tube 13 is additionally provided with conveying slag drying machine structure 18, which uses Stainless (steel) wire hole carrier bar form can be adapted for the different feedstock transportation of all size.The top of water tank 16 is equipped with squeezer 17, It is recycled in batches after feedstock transportation to squeezer 17 squeezes.
Speed reducer 1 connects helical axis 14 by gear drive 2 and drive sprocket 7, and the spindle nose of helical axis 14 is all made of hexagonal Spindle nose guarantees that the helical axis 14 in multistage extraction tube 13 can be steady using hexagonal spindle nose with synchronous rotary after speed reducer 1 starts It is qualitative more preferable and not easy to wear.Bearing 9 is connected between helical axis 14 and extraction tube 13, end face is equipped with bearing gland 10, will Bearing 9 is installed in bearing block 8, reduces bring frictional resistance in rotation using bearing 9, the end of helical axis 14 is additionally provided with axis Set 11 and sealing element 12, to ensure that the end face seal of helical axis 14.Flow blocking strip is housed on the tube wall of extraction tube 13, is reinforced former The conveying capacity of material prevents raw material from spinning on helical axis to preferably form adverse current with solvent, improves extraction efficiency.
As shown in figure 4, the specific workflow of the utility model are as follows:
1, solvent is inputted in extraction tube 13 by solvent pump 20, meanwhile, consider whether solvent needs to heat and keep the temperature and sets Insulating layer 21, jacket steam import 22 and Preheated steam import 25 have been counted, extraction tube 13 has been kept the temperature by steam, and is mentioning The bottom of pipe 13 is taken to be equipped with condensation-water drain 23 and preliminary condensation water out 24;
2, it is equipped with temperature sensor and liquid-level switch in soak outlet 26, when temperature is not up to process requirements temperature, Liquid-level switch provides signal, closes solvent pump 20, starts helical axis 14 at this time, and put the raw materials into feedstock storehouse 6, to temperature After reaching given process requirement, starting feed riser conveying auger 5, forced feed machine and charging lateral transfer auger 4;
3, equipment practice in, it is contemplated that part material can on float in solvent, extraction tube 13 the top design have External feed opening 15, the inner wall of the external feed opening 15 use special screw mechanism, can reinforce raw material and enter next stage mentioning Take in pipe, meanwhile, flow blocking strip is also equipped on the tube wall of extraction tube 13, and then strengthen the conveying capacity of raw material, preferably with it is molten Matchmaker forms adverse current, prevents raw material from spinning on helical axis 14, improves extraction efficiency;
4, after adverse current is extracted, raw material enters water tank 16, and then is delivered to squeezer 17 by conveying slag drying machine structure 18 It is squeezed, until outlet batch recycles.

Claims (8)

1. a kind of continuous flow upstream broken pipe formula extracts recycling machine, including extraction tube (13), the bottom of the extraction tube (13) are equipped with Soak entrance, one end of the top are connected with feeding device, are equipped with helical axis (14) inside extraction tube (13), feature exists In equipped with flow blocking strip on the tube wall of the extraction tube (13), the other end of extraction tube (13) the top is equipped with external feed opening (15)。
2. continuous flow upstream broken pipe formula according to claim 1 extracts recycling machine, which is characterized in that the extraction tube (13) Outlet is equipped with conveying slag drying machine structure (18).
3. continuous flow upstream broken pipe formula according to claim 2 extracts recycling machine, which is characterized in that the conveying slag drying machine Stainless (steel) wire hole link plate structure is used inside structure (18).
4. continuous flow upstream broken pipe formula according to claim 1 extracts recycling machine, which is characterized in that the external feed opening (15) inner wall uses screw mechanism.
5. continuous flow upstream broken pipe formula according to claim 1 or 4 extracts recycling machine, which is characterized in that it is described it is external under Material mouth (15) is additionally provided with packaged reducer.
6. continuous flow upstream broken pipe formula according to claim 1 extracts recycling machine, which is characterized in that the helical axis (14) Spindle nose is all made of hexagonal spindle nose.
7. continuous flow upstream broken pipe formula according to claim 1 extracts recycling machine, which is characterized in that the helical axis (14) It is connected between extraction tube (13) bearing (9), the end of helical axis (14) is additionally provided with axle sleeve (11) and sealing element (12).
8. continuous flow upstream broken pipe formula according to claim 1 extracts recycling machine, which is characterized in that the extraction tube (13) It is at least in two sections of longitudinal arrangements.
CN201820912888.XU 2018-06-13 2018-06-13 Continuous flow upstream broken pipe formula extracts recycling machine Active CN208823976U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820912888.XU CN208823976U (en) 2018-06-13 2018-06-13 Continuous flow upstream broken pipe formula extracts recycling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820912888.XU CN208823976U (en) 2018-06-13 2018-06-13 Continuous flow upstream broken pipe formula extracts recycling machine

Publications (1)

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CN208823976U true CN208823976U (en) 2019-05-07

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CN201820912888.XU Active CN208823976U (en) 2018-06-13 2018-06-13 Continuous flow upstream broken pipe formula extracts recycling machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111790177A (en) * 2020-07-14 2020-10-20 福建农林大学 Pipeline type marine biological active ingredient extraction equipment and extraction method
CN112121462A (en) * 2020-10-23 2020-12-25 张洪江 A reciprocal extraction equipment of multilayer for crops fermentation product

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111790177A (en) * 2020-07-14 2020-10-20 福建农林大学 Pipeline type marine biological active ingredient extraction equipment and extraction method
CN112121462A (en) * 2020-10-23 2020-12-25 张洪江 A reciprocal extraction equipment of multilayer for crops fermentation product

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