CN215878187U - Effectively improve inulin extraction efficiency's processing apparatus - Google Patents

Effectively improve inulin extraction efficiency's processing apparatus Download PDF

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Publication number
CN215878187U
CN215878187U CN202122157843.0U CN202122157843U CN215878187U CN 215878187 U CN215878187 U CN 215878187U CN 202122157843 U CN202122157843 U CN 202122157843U CN 215878187 U CN215878187 U CN 215878187U
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extrusion
plate
crushing
chamber
extraction efficiency
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CN202122157843.0U
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金新康
张玉环
刘柳
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SHAANXI SCIPHAR HIGH-TECH INDUSTRY CO.,LTD.
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Shaanxi Sciphar Natural Products Co ltd
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Abstract

The utility model discloses a processing device for effectively improving inulin extraction efficiency, which comprises a crushing mechanism, wherein the crushing mechanism comprises a crushing chamber, a feed hopper, a motor frame, a crushing motor, a crushing cutter group and a feed pipeline, one end of the crushing mechanism is fixedly connected with an extrusion structure, the extrusion structure comprises an extrusion chamber, a feed inlet, a transverse extrusion plate, a transverse hydraulic rod, a vertical extrusion plate, a vertical hydraulic rod and a clamping plate groove, a filter plate is movably arranged at the bottom side of the extrusion structure, the filter plate comprises a filter plate main body, a filter area, a mounting slide block and a drawing handle, one end of the feed pipeline is mutually connected with the feed inlet, and the mounting slide block is movably clamped in the clamping plate groove. According to the treatment device for effectively improving the extraction efficiency of the inulin, disclosed by the utility model, the juice residue in the raw material pile is greatly reduced, so that the extraction efficiency of the inulin is improved, and the filter plate is drawn out after the work is finished, the residue is taken out and cleaned, and the cleaning is convenient.

Description

Effectively improve inulin extraction efficiency's processing apparatus
Technical Field
The utility model relates to the field of inulin extraction, in particular to a processing device for effectively improving inulin extraction efficiency.
Background
Inulin is widely distributed in nature and is also contained in certain fungi and bacteria, but its main source is plants, which are consumed by people on a daily basis such as: onion, garlic, banana, wheat, etc. all contain inulin; the existing inulin has certain defects in extraction, the broken dregs have certain water absorption, certain inulin remained still cannot be extracted, and the extraction efficiency needs to be improved.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide a processing device for effectively improving the extraction efficiency of inulin, which can effectively solve the problems in the background technology.
In order to achieve the purpose, the utility model adopts the technical scheme that:
the utility model provides an effectively improve inulin extraction efficiency's processing apparatus, includes rubbing crusher structure, rubbing crusher structure is including smashing room, feeder hopper, motor frame, broken motor, crushing knife tackle and charge-in pipeline, rubbing crusher structure one end fixed connection installs the extrusion structure, the extrusion structure includes extrusion room, feed inlet, horizontal stripper plate, horizontal hydraulic stem, vertical stripper plate, vertical hydraulic stem and cardboard groove, extrusion structure bottom side movable mounting has the filter, the filter includes filter plate main part, filtering area, installation slider and pull handle.
Preferably, crushing room upside fixed weld installs the feeder hopper, crushing room inside locular wall fixed weld installs the motor frame, motor frame middle part fixed weld installs crushing motor, both ends fixed weld installs crushing knife tackle about the crushing motor shaft, crushing room bottom side fixed weld installs the charge-in pipeline.
Preferably, the feed inlet has been seted up to extrusion chamber one side, extrusion chamber opposite side movable mounting has the horizontal stripper plate, horizontal stripper plate one side fixed surface welding installs horizontal hydraulic stem, extrusion chamber upside movable mounting has vertical stripper plate, vertical stripper plate upside fixed surface welding installs vertical hydraulic stem, the cardboard groove has been seted up to extrusion chamber bottom both sides locular wall department.
Preferably, the middle part of the plate body of the filter plate main body is provided with a filtering area, the two sides of the filter plate main body are fixedly welded with installation sliding blocks, and one end of the filter plate main body is fixedly welded with a drawing handle.
Preferably, the transverse extrusion plate is movably arranged inside the extrusion chamber, the outer rod of the transverse hydraulic rod is fixedly welded with the wall of the extrusion chamber, the inner rod of the transverse hydraulic rod penetrates through the wall of the extrusion chamber and is fixedly connected with the transverse extrusion plate, the vertical extrusion plate is movably arranged inside the extrusion chamber, the outer rod of the vertical hydraulic rod is fixedly welded with the wall of the extrusion chamber, and the inner rod of the vertical hydraulic rod penetrates through the wall of the extrusion chamber and is fixedly connected with the vertical extrusion plate.
Preferably, one end of the feeding pipeline is connected with the feeding hole, and the mounting sliding block is movably clamped in the clamping plate groove.
Compared with the prior art, the utility model has the following beneficial effects:
in the utility model, a clean filter plate main body is taken, the filter plate main body is inserted into a crushing chamber from one end of the bottom side of the crushing chamber through a drawing handle, an installation slide block is clamped into a clamping plate groove, the installation is convenient, a cleaned inulin extraction raw material such as jerusalem artichoke is placed into the crushing chamber through a feed hopper, a crushing motor is started to drive a crushing cutter set to crush raw material fibers and crush cell walls of the raw material, the crushed raw material enters an extrusion chamber from a feed pipeline and a feed port, high-temperature hot water is poured into the crushing chamber from the feed hopper, the crushed raw material is soaked and cleaned while a crushing mechanism is washed, the inulin is leached by a hot water bath, a vertical hydraulic rod is started simultaneously, a vertical extrusion plate is used for pressing and crushing a raw material pile to squeeze out internal residual juice, after the vertical extrusion plate is lifted, a horizontal hydraulic rod is used for pressing and crushing the raw material pile through the horizontal extrusion plate to perform reciprocating and alternate pressing, and the residual juice in the raw material pile is greatly reduced, and then improved the extraction efficiency of inulin, the filter is taken out after work is accomplished, takes out the residue, washs, convenient clearance.
Drawings
FIG. 1 is a schematic view showing the overall structure of a treatment apparatus for effectively improving the extraction efficiency of inulin according to the present invention;
FIG. 2 is a sectional view of a pulverizing mechanism of a treating apparatus effective for improving the extraction efficiency of inulin of the present invention;
FIG. 3 is a sectional view showing an extrusion structure of a treating apparatus for efficiently improving inulin extraction efficiency according to the present invention;
FIG. 4 is a schematic view of the filter plate of a treatment apparatus for efficiently improving the extraction efficiency of inulin according to the present invention.
In the figure: 1. a crushing mechanism; 101. a crushing chamber; 102. a feed hopper; 103. a motor frame; 104. a crushing motor; 105. a crushing cutter set; 106. a feed conduit; 2. extruding the structure; 201. a pressing chamber; 202. a feed inlet; 203. a transverse extrusion plate; 204. a transverse hydraulic rod; 205. a vertical stripper plate; 206. a vertical hydraulic rod; 207. a clamping plate groove; 3. a filter plate; 301. a filter plate body; 302. a filtration zone; 303. installing a sliding block; 304. the handle is drawn.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the utility model easy to understand, the utility model is further described with the specific embodiments.
As shown in fig. 1-4, a processing device for effectively improving inulin extraction efficiency comprises a pulverizing mechanism 1, wherein the pulverizing mechanism 1 comprises a pulverizing chamber 101, a feed hopper 102, a motor frame 103, a pulverizing motor 104, a pulverizing knife set 105 and a feed pipeline 106, one end of the pulverizing mechanism 1 is fixedly connected with an extrusion structure 2, the extrusion structure 2 comprises an extrusion chamber 201, a feed inlet 202, a transverse extrusion plate 203, a transverse hydraulic rod 204, a vertical extrusion plate 205, a vertical hydraulic rod 206 and a clamping plate groove 207, a filter plate 3 is movably mounted at the bottom side of the extrusion structure 2, and the filter plate 3 comprises a filter plate main body 301, a filter area 302, a mounting slide block 303 and a drawing handle 304;
a feed hopper 102 is fixedly welded on the upper side of the crushing chamber 101, a motor frame 103 is fixedly welded on the inner chamber wall of the crushing chamber 101, a crushing motor 104 is fixedly welded in the middle of the motor frame 103, crushing cutter sets 105 are fixedly welded on the upper end and the lower end of a shaft of the crushing motor 104, and a feed pipeline 106 is fixedly welded on the bottom side of the crushing chamber 101; a feeding hole 202 is arranged on one side of a squeezing chamber 201, a transverse squeezing plate 203 is movably arranged on the other side of the squeezing chamber 201, a transverse hydraulic rod 204 is fixedly welded and arranged on one side surface of the transverse squeezing plate 203, a vertical squeezing plate 205 is movably arranged on the upper side of the squeezing chamber 201, a vertical hydraulic rod 206 is fixedly welded and arranged on the upper side surface of the vertical squeezing plate 205, clamping plate grooves 207 are arranged on two side chamber walls at the bottom of the squeezing chamber 201, the feeding hopper 102 puts cleaned inulin extraction raw materials such as jerusalem artichoke into the smashing chamber 101, the smashing motor 104 is started to drive the smashing knife set 105 to smash raw material fibers and smash raw material cell walls, the smashed raw materials enter the squeezing chamber 201 from the feeding pipeline 106 and the feeding hole 202, high-temperature hot water is poured into the smashing chamber 101 from the feeding hopper 102, the smashed raw materials are soaked and cleaned while the smashing mechanism 1 is washed, the inulin is leached by the hot water bath, and the vertical hydraulic rod 206 is started at the same time, pressing the crushed raw material piles through the vertical extrusion plate 205 to squeeze out residual juice inside, and after the vertical extrusion plate 205 is lifted, pressing the crushed raw material piles through the transverse extrusion plate 203 by the transverse hydraulic rod 204 to perform reciprocating alternate pressing; a filtering area 302 is arranged in the middle of the plate body of the filter plate main body 301, mounting sliding blocks 303 are fixedly welded and mounted on two sides of the filter plate main body 301, and a drawing handle 304 is fixedly welded and mounted at one end of the filter plate main body 301; the transverse extrusion plate 203 is movably arranged in the extrusion chamber 201, the outer rod of the transverse hydraulic rod 204 is fixedly welded with the chamber wall of the extrusion chamber 201, the inner rod of the transverse hydraulic rod 204 penetrates through the chamber wall of the extrusion chamber 201 and is fixedly connected with the transverse extrusion plate 203, the vertical extrusion plate 205 is movably arranged in the extrusion chamber 201, the outer rod of the vertical hydraulic rod 206 is fixedly welded with the chamber wall of the extrusion chamber 201, and the inner rod of the vertical hydraulic rod 206 penetrates through the chamber wall of the extrusion chamber 201 and is fixedly connected with the vertical extrusion plate 205; one end of the feed pipe 106 is connected with the feed port 202, and the mounting slide block 303 is movably clamped in the clamping plate groove 207.
It should be noted that, the utility model is a processing device for effectively improving inulin extraction efficiency, when in use, a clean filter plate main body 301 is taken, the filter plate main body 301 is inserted into the bottom side end of the crushing chamber 101 through a pull handle 304, a mounting slide block 303 is clamped into a clamping plate groove 207, the installation is convenient, the cleaned inulin extraction raw materials such as jerusalem artichoke and the like are put into the crushing chamber 101 through the feed hopper 102, the crushing motor 104 is started to drive the crushing knife group 105 to crush raw material fibers and crush cell walls of the raw materials, the crushed raw materials enter the extrusion chamber 201 from the feed pipe 106 and the feed inlet 202, simultaneously high-temperature hot water is poured into the crushing chamber 101 from the feed hopper 102, the crushed raw materials are soaked and cleaned while the crushing mechanism 1 is washed, the inulin is leached by a hot water bath, meanwhile, the vertical hydraulic rod 206 is started, the crushed raw material pile is pressed through the vertical pressing plate 205, and the internal residual juice is squeezed out, after the vertical extrusion plate 205 rises, the broken raw material heap of horizontal hydraulic stem 204 oppression through horizontal extrusion plate 203, and reciprocal oppression in turn greatly reduces raw material heap in the juice is remained, and then has improved the extraction efficiency of inulin, takes out filter 3 after the work is accomplished, takes out the residue, washs, convenient clearance.
The foregoing shows and describes the general principles and broad features of the present invention and advantages thereof. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, 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 an effectively improve inulin extraction efficiency's processing apparatus which characterized in that: including rubbing crusher structure (1), rubbing crusher structure (1) is including smashing room (101), feeder hopper (102), motor frame (103), broken motor (104), crushing knife tackle (105) and charge-in pipeline (106), rubbing crusher structure (1) one end fixed connection installs extrusion structure (2), extrusion structure (2) are including extrusion room (201), feed inlet (202), horizontal stripper plate (203), horizontal hydraulic stem (204), vertical stripper plate (205), vertical hydraulic stem (206) and cardboard groove (207), extrusion structure (2) bottom side movable mounting has filter (3), filter (3) are including filter plate main part (301), filtering area (302), installation slider (303) and pull handle (304).
2. The processing device for effectively improving inulin extraction efficiency as claimed in claim 1, wherein: crushing room (101) upside fixed weld installs feeder hopper (102), crushing room (101) inside room wall fixed weld installs motor frame (103), motor frame (103) middle part fixed weld installs crushing motor (104), both ends fixed weld installs crushing knife tackle (105) about crushing motor (104) bent axle, crushing room (101) bottom side fixed weld installs charge-in pipeline (106).
3. The processing device for effectively improving inulin extraction efficiency as claimed in claim 2, wherein: feed inlet (202) have been seted up to extrusion room (201) one side, extrusion room (201) opposite side movable mounting has horizontal stripper plate (203), horizontal stripper plate (203) one side fixed surface welding installs horizontal hydraulic stem (204), extrusion room (201) upside movable mounting has vertical stripper plate (205), vertical stripper plate (205) upside fixed surface welding installs vertical hydraulic stem (206), clamping plate groove (207) have been seted up to extrusion room (201) bottom both sides locular wall department.
4. The processing device for effectively improving inulin extraction efficiency as claimed in claim 3, wherein: the middle part of the plate body of the filter plate main body (301) is provided with a filtering area (302), two sides of the filter plate main body (301) are fixedly welded with installation sliding blocks (303), and one end of the filter plate main body (301) is fixedly welded with a drawing handle (304).
5. The processing device for effectively improving the extraction efficiency of inulin as claimed in claim 4, wherein: the horizontal extrusion plate (203) is movably mounted inside the extrusion chamber (201), the outer rod of the horizontal hydraulic rod (204) is fixedly welded with the chamber wall of the extrusion chamber (201), the inner rod of the horizontal hydraulic rod (204) penetrates through the chamber wall of the extrusion chamber (201) and is fixedly connected with the horizontal extrusion plate (203), the vertical extrusion plate (205) is movably mounted inside the extrusion chamber (201), the outer rod of the vertical hydraulic rod (206) is fixedly welded with the chamber wall of the extrusion chamber (201), and the inner rod of the vertical hydraulic rod (206) penetrates through the chamber wall of the extrusion chamber (201) and is fixedly connected with the vertical extrusion plate (205).
6. The processing device for effectively improving inulin extraction efficiency as claimed in claim 5, wherein: one end of the feeding pipeline (106) is connected with the feeding hole (202), and the mounting sliding block (303) is movably clamped in the clamping plate groove (207).
CN202122157843.0U 2021-09-08 2021-09-08 Effectively improve inulin extraction efficiency's processing apparatus Active CN215878187U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122157843.0U CN215878187U (en) 2021-09-08 2021-09-08 Effectively improve inulin extraction efficiency's processing apparatus

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Application Number Priority Date Filing Date Title
CN202122157843.0U CN215878187U (en) 2021-09-08 2021-09-08 Effectively improve inulin extraction efficiency's processing apparatus

Publications (1)

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CN215878187U true CN215878187U (en) 2022-02-22

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118371014A (en) * 2024-06-25 2024-07-23 福建拓天生物科技有限公司 Wolfberry extraction equipment and technology thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118371014A (en) * 2024-06-25 2024-07-23 福建拓天生物科技有限公司 Wolfberry extraction equipment and technology thereof

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Effective date of registration: 20230731

Address after: No. 3102, 31st Floor, Building C, Wangzuo International City, No. 3 Tangyan Road, High tech Zone, Xi'an City, Shaanxi Province, 710065

Patentee after: SHAANXI SCIPHAR HIGH-TECH INDUSTRY CO.,LTD.

Address before: 726000 Jinghe eco industrial park, Shangzhou District, Shangluo City, Shaanxi Province

Patentee before: SHAANXI SCIPHAR NATURAL PRODUCTS Co.,Ltd.