CN212603605U - Plant draws with squeezing device - Google Patents

Plant draws with squeezing device Download PDF

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Publication number
CN212603605U
CN212603605U CN202021140796.8U CN202021140796U CN212603605U CN 212603605 U CN212603605 U CN 212603605U CN 202021140796 U CN202021140796 U CN 202021140796U CN 212603605 U CN212603605 U CN 212603605U
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double
squeezing
roller
device shell
wall
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CN202021140796.8U
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黄陈
杨海峰
严兆龙
刘新月
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Jiangsu Agri Animal Husbandry Vocational College
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Jiangsu Agri Animal Husbandry Vocational College
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Abstract

The utility model discloses a plant draws and uses squeezing device, include: the supporting leg, squeeze the device shell, the broken sword of double helix and first pair press the roller, the supporting leg top squeezes the device shell through screw fixed connection, it is connected with the broken sword of double helix through bearing rotation to squeeze first one in device shell inner wall both sides, the utility model discloses a when squeezing the device and using, carrying out breakage through the broken sword of double helix at plant, squeezing the roller rotation through first pair and carrying out squeezing for the first time, squeezing for the second time between the second pair presses the roller, realized squeezing and broken integrated design, the collection of the broken in-process plant juice of being convenient for improves the extraction volume of plant extract, squeezes twice of roller with the second pair through first pair, and the process of squeezing plant atress is even, squeezes device and filter equipment separation, prevents that filter equipment from blockking up very fast, guarantees the filter effect.

Description

Plant draws with squeezing device
Technical Field
The utility model relates to a squeeze technical field, specifically be a plant draws with squeezing device.
Background
The plant extract is a product formed by taking plants as raw materials, directionally obtaining and concentrating one or more active ingredients in the plants through a physical and chemical extraction and separation process according to the requirements of the application of an extracted final product, and not changing the structures of the active ingredients. According to different components of the extracted plants, glycoside, acid, polyphenol, polysaccharide, terpenoid, flavone, alkaloid and the like are formed; according to different properties, the plant oil can be divided into vegetable oil, extract, powder, crystalline lens and the like. The plant extract refers to a substance extracted or processed from a plant (whole or a part of the plant) by using a proper solvent or method, and can be used in the pharmaceutical industry, the food industry, the health industry, the beauty industry and other industries. The common plant extraction method is squeezing
However, the conventional pressing device for plant extraction has some disadvantages in the use process, such as:
1. traditional plant extraction is with squeezing the device and need can put into after the plant breaks before using and squeeze the inside squeezing of device, also can appear some extract at the broken in-process of plant, and these extracts often waste can't utilize in breaker inside, cause the plant to squeeze in-process extract liquid measure and become less.
2. Traditional plant extraction is with squeezing device generally adopts piston type to squeeze the method when using and squeezes, and this kind of mode atress that squeezes is uneven, and filter equipment ubiquitous filters the problem that the difficulty blocks up fast simultaneously.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a plant is extracted and is used and squeeze device to solve the problem of proposing among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a squeezing device for plant extraction, comprising: the top of the supporting leg is fixedly connected with the squeezing device shell through a screw, the upper half parts of both sides of the inner wall of the shell of the squeezing device are rotatably connected with a double-helix crushing cutter through a bearing, two sides of the inner wall of the shell of the squeezing device are positioned below the double-helix crushing knife and are rotationally connected with a first double squeezing roller through a bearing, the two sides of the inner wall of the shell of the squeezing device are positioned below the first double squeezing roller and are rotationally connected with a second double squeezing roller through a bearing, the center of the inner wall of the bottom of the shell of the squeezing device is rotationally connected with a stirring shaft rod through a bearing, the bottom of the stirring shaft rod is fixedly connected with a stirring motor through a coupler, the stirring motor is fixed between supporting legs through a bracket, and one side of the lower half part of the outer wall of the shell of the squeezing device is fixedly connected with a driving motor through a screw, and the gap between the second pair of squeezing rollers is smaller than the gap between the first pair of squeezing rollers.
Further, the press device housing further includes: the bottom of one side of the shell of the squeezing device is fixedly connected with an extracting solution discharge port through a pipe joint, when in use, plants to be extracted are added through the feed inlet, and the plants to be extracted are firstly contacted with the double-helix crushing knife for crushing after entering the shell of the squeezing device, plant debris that the breakage back produced and the guide of sap passage arc stock guide get into between the first pair of press roll, squeeze for the first time through the rotation of first pair of press roll, the plant residue after squeezing squeezes for the second time through the guide of antiseized stock guide's guide entering second pair between the press roll, plant residue and extract after squeezing twice get into inside the filter, the inside extract of filter passes through agitator motor with plant residue and drives the stirring shaft stick rotation and carry out centrifugal separation, the extract is thrown away from the filtration pore of crossing of filter, discharge through the extract discharge gate, plant residue passes through the residue discharge gate and discharges, accomplish whole process of squeezing.
Further, the driving motor further includes: the double-helix crushing cutter, the first double-extrusion roller and the second double-extrusion roller are connected to the outer wall of a squeezing device shell through key groove matching and fixedly connected with driven sprockets at one ends close to the driving motor, a transmission chain is connected between the driving sprocket and the driven sprockets through meshing, the driving sprocket is driven by the driving motor to rotate, and the driving sprocket drives the driven sprocket to rotate through the transmission chain, so that the double-helix crushing cutter, the first double-extrusion roller and the second double-extrusion roller rotate.
Furthermore, the number of the driving motors is two, and the rotating directions of the two driving motors are opposite, so that the plants can be squeezed and crushed conveniently.
Furthermore, the arc-shaped material guide plate is parallel to the double-helix crushing cutter, the arc-shaped material guide plate is positioned between the bottom of the double-helix crushing cutter and the top of the first pair of squeezing rollers, and plant fragments crushed by the double-helix crushing cutter are guided into the space between the first pair of squeezing rollers through the arc-shaped material guide plate to be squeezed, so that the plant fragments are prevented from splashing.
Furthermore, the anti-sticking guide plate is parallel to the first double-squeezing roller, one end of the top of the anti-sticking guide plate is tangent to the outer wall of the first double-squeezing roller, a gap is reserved between the top of the anti-sticking guide plate and the outer wall of the first double-squeezing roller, the anti-sticking guide plate is used for cleaning the outer wall of the first double-squeezing roller, residues are prevented from being adhered to the outer wall of the first double-squeezing roller in the squeezing process, and meanwhile, the residues squeezed by the first double-squeezing roller are guided into the space between the second double-squeezing roller through the anti-sticking guide plate to be squeezed for the second.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model realizes that when the plant extraction squeezing device is used, the plant to be extracted is added in the feed inlet through the double helix crushing knife, the plant to be extracted is firstly contacted with the double helix crushing knife to be crushed after entering the inside of the squeezing device shell, the plant fragments and the juice generated after crushing enter between the first double squeezing roller through the guide of the arc-shaped guide plate, the first squeezing is carried out through the rotation of the first double squeezing roller, the plant residues after squeezing enter between the second double squeezing roller through the guide of the anti-sticking guide plate to be squeezed for the second time, the plant residues and the extracting solution after twice squeezing enter the inside of the filter plate, the extracting solution and the plant residues inside the filter plate drive the stirring shaft to rotate through the stirring motor to carry out centrifugal separation, and the extracting solution is thrown out from the filtering hole of the filter plate, through extract discharge gate discharge, the plant residue passes through the residue discharge gate and discharges, accomplishes whole squeezing process, has realized squeezing and broken integrated design, and the collection of the broken in-process plant juice of being convenient for improves the extraction volume of plant extract.
2. The utility model discloses a double helix crushing sword, first pair of the roller of squeezing and the second pair of the roller of squeezing that sets up have realized that when the plant extraction was used and is squeezed the device and use, squeeze the process plant atress evenly through first pair of the roller of squeezing and the second pair twice of squeezing the roller, squeeze device and filter equipment separation, prevent that filter equipment from blockking up very fast, guarantee the filter effect.
Drawings
FIG. 1 is a schematic sectional view of the overall front view structure of the present invention;
FIG. 2 is a schematic sectional view of the overall left-side view structure of the present invention;
FIG. 3 is a schematic sectional view of the overall top view structure of the present invention;
fig. 4 is a schematic view of the overall structure of the present invention.
In FIGS. 1-4: 1-supporting legs; 2-a press housing; 201-a filter plate; 202-arc material guide plate; 203-a feed inlet; 204-anti-sticking material guide plate; 205-discharge hole of extracting solution; 206-residue discharge hole; 3-double helix crushing cutter; 4-a first double press roll; 5-a second double press roll; 6-stirring shaft rod; 601-a stirring motor; 7-driving a motor; 701-a driving sprocket; 702-a drive chain; 703-driven sprocket.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a squeezing device for plant extraction, comprising: the device comprises supporting legs 1, a squeezing device shell 2, a double-helix crushing knife 3 and a first double squeezing roller 4, wherein the top of each supporting leg 1 is fixedly connected with the squeezing device shell 2 through a screw, the upper parts of the two sides of the inner wall of the squeezing device shell 2 are rotatably connected with the double-helix crushing knife 3 through a bearing, the two sides of the inner wall of the squeezing device shell 2 are positioned below the double-helix crushing knife 3 and are rotatably connected with the first double squeezing roller 4 through a bearing, the two sides of the inner wall of the squeezing device shell 2 are positioned below the first double squeezing roller 4 and are rotatably connected with a second double squeezing roller 5 through a bearing, the center of the inner wall of the bottom of the squeezing device shell 2 is rotatably connected with a stirring shaft rod 6 through a bearing, the bottom of the stirring shaft rod 6 is fixedly connected with a stirring motor 601 through a, the gap between the second double press roll 5 is smaller than the gap between the first double press roll 4, and the press device casing 2 further includes: the device comprises a filter plate 201, an arc-shaped guide plate 202, an anti-sticking guide plate 204 and an extracting solution discharge port 205, wherein the inner walls of the periphery of the bottom of a shell 2 of the squeezing device are positioned below a second double-squeezing roller 5 and fixedly connected with the filter plate 201 through screws, the inner walls of the two sides of the shell 2 of the squeezing device are positioned below a double-screw crushing knife 3 and fixedly connected with the arc-shaped guide plate 202 through screws, the inner walls of the two sides of the shell 2 of the squeezing device are positioned below a first double-squeezing roller 4 and fixedly connected with the anti-sticking guide plate 204 through screws, the center of the top of the shell 2 of the squeezing device is fixedly connected with a feed inlet 203 through screws, one side of the center of the bottom of the shell 2 of the squeezing device is positioned between the filter plates 201 and fixedly connected with a residue discharge port 206 through pipe joints, the bottom of one side of the shell 2 of the squeezing, plant debris and the juice that produce after the breakage get into between the first pair of squeeze roll 4 through the guide of arc stock guide 202, squeeze for the first time through the rotation of first pair of squeeze roll 4, the plant residue after squeezing gets into and squeezes for the second time between the second pair of squeeze roll 5 through the guide of antiseized stock guide 204, plant residue and extract after squeezing twice get into inside the filter 201, the inside extract of filter 201 and plant residue pass through agitator motor 601 and drive the rotation of stirring shaft stick 6 and carry out centrifugal separation, the extract is thrown away from the filtration pore of filter 201, discharge through extract discharge gate 205, plant residue passes through residue discharge gate 206 and discharges, accomplish whole squeezing process.
The drive motor 7 further includes: the double-helix crushing cutter comprises a driving chain wheel 701, a transmission chain 702 and a driven chain wheel 703, one end of a power output shaft of a driving motor 7 is fixedly connected with the driving chain wheel 701 through a coupler, one end, far away from the driving motor 7, of the driving chain wheel 701 is rotatably connected onto the outer wall of a squeezing device shell 2 through a rotating shaft and a bearing, the double-helix crushing cutter 3 is characterized in that one ends, close to the driving motor 7, of a first double-extrusion roller 4 and one end, close to the driving motor 7, of a second double-extrusion roller 5 are fixedly connected with the driven chain wheel 703 through key groove matching, the driving chain wheel 701 is connected with the driven chain wheel 703 through meshing, the driving chain wheel 701 is driven by the driving motor 7 to rotate, and therefore the double-helix crushing.
The two driving motors 7 are arranged, the rotating directions of the two driving motors 7 are opposite, so that plants can be squeezed and crushed conveniently, the arc-shaped material guide plate 202 is parallel to the double-helix crushing knife 3, the arc-shaped material guide plate 202 is positioned between the bottom of the double-helix crushing knife 3 and the top of the first double squeezing roller 4, plant fragments crushed by the double helix crushing knife 3 are guided between the first double press rolls 4 through the arc-shaped material guide plate 202 for pressing to prevent the plant fragments from splashing, the anti-sticking material guide plate 204 is parallel to the first double press rolls 4, one end of the top of the anti-sticking material guide plate 204 is tangent to the outer walls of the first double press rolls 4, a gap is left between the top of the anti-sticking material guide plate 204 and the outer walls of the first double press rolls 4, used for cleaning the outer wall of the first double press roll 4 by using the anti-sticking guide plate 204, preventing the residue from adhering to the outer wall of the first double press roll 4 in the pressing process, meanwhile, the residue after being pressed by the first double press roll 4 is introduced between the second double press rolls 5 through the anti-sticking guide plate 204 to be pressed for the second time.
The working principle is as follows: when the squeezing device for plant extraction is used, plants to be extracted are added through the feed inlet 203, the plants to be extracted firstly contact with the double-helix crushing cutter 3 to be crushed after entering the inside of the squeezing device shell 2, plant fragments and juice generated after crushing enter between the first double squeezing rollers 4 through the guide of the arc-shaped guide plate 202, the first double squeezing rollers 4 rotate to carry out first squeezing, the squeezed plant residues enter between the second double squeezing rollers 5 through the guide of the anti-sticking guide plate 204 to carry out second squeezing, the plant residues and the extracting solution after the two squeezing enter the inside of the filter plate 201, the extracting solution and the plant residues inside the filter plate 201 drive the stirring shaft rod 6 to rotate through the stirring motor 601 to carry out centrifugal separation, the extracting solution is thrown out of the filtering holes of the filter plate 201 and is discharged through the extracting solution discharge outlet 205, and the plant residues are discharged through the residue discharge outlet 206, accomplish whole process of squeezing, realized squeezing and broken integrated design, the collection of the in-process plant juice of being convenient for crushing improves the extraction volume of plant extract, squeezes twice through first pair squeeze roll 4 and second pair squeeze roll 5, and the process of squeezing plant atress is even, squeezes device and filter equipment separation, prevents that filter equipment from blockking up very fast, guarantees the filter effect.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
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 invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A squeezing device for extracting plants is characterized by comprising:
a support leg (1);
a press device housing (2);
a double helix crushing knife (3);
a first double-press roll (4),
wherein the top of the supporting leg (1) is fixedly connected with a squeezing device shell (2) through a screw, the upper half parts of the two sides of the inner wall of the squeezing device shell (2) are rotatably connected with a double-helix crushing cutter (3) through a bearing, the two sides of the inner wall of the squeezing device shell (2) are positioned below the double-helix crushing cutter (3) and are rotatably connected with a first double squeezing roller (4) through a bearing, the two sides of the inner wall of the squeezing device shell (2) are positioned below the first double squeezing roller (4) and are rotatably connected with a second double squeezing roller (5) through a bearing, the center of the inner wall of the bottom of the squeezing device shell (2) is rotatably connected with a stirring shaft rod (6) through a bearing, the bottom of the stirring shaft rod (6) is fixedly connected with a stirring motor (601) through a coupler, and one side, the gap between the second double press roll (5) is smaller than the gap between the first double press roll (4).
2. The pressing device for plant extraction according to claim 1, wherein: the press device housing (2) further comprises:
a filter plate (201);
an arc-shaped material guide plate (202);
an anti-sticking material guide plate (204);
a discharge hole (205) for the extracting solution,
wherein, squeeze device shell (2) bottom inner wall all around and be located the second and press roller (5) below through screw fixedly connected with filter (201), squeeze device shell (2) both sides inner wall and be located double helix crushing sword (3) below through screw fixedly connected with arc stock guide (202), squeeze device shell (2) both sides inner wall and be located first double helix crushing roller (4) below through screw fixedly connected with antiseized stock guide (204), squeeze device shell (2) top central authorities pass through screw fixedly connected with feed inlet (203), squeeze device shell (2) bottom central authorities one side and be located between filter (201) through coupling fixedly connected with residue discharge gate (206), squeeze device shell (2) one side bottom through coupling fixedly connected with extract discharge gate (205).
3. The pressing device for plant extraction according to claim 1, wherein: the drive motor (7) further comprises:
a drive sprocket (701);
a drive chain (702);
a driven chain wheel (703),
one end of a power output shaft of the driving motor (7) is fixedly connected with a driving chain wheel (701) through a coupler, one end, far away from the driving motor (7), of the driving chain wheel (701) is rotatably connected to the outer wall of the squeezing device shell (2) through a rotating shaft and a bearing, one ends, close to the driving motor (7), of the double-helix crushing knife (3), the first double-extrusion roller (4) and the second double-extrusion roller (5) are fixedly connected with a driven chain wheel (703) through key groove matching, and a transmission chain (702) is connected between the driving chain wheel (701) and the driven chain wheel (703) through meshing.
4. The pressing device for plant extraction according to claim 1, wherein: the number of the driving motors (7) is two, and the rotating directions of the two driving motors (7) are opposite.
5. The pressing device for plant extraction according to claim 2, wherein: the arc-shaped material guide plate (202) is parallel to the double-helix crushing knife (3), and the arc-shaped material guide plate (202) is positioned between the bottom of the double-helix crushing knife (3) and the top of the first double-press roller (4).
6. The pressing device for plant extraction according to claim 2, wherein: the anti-sticking material guide plate (204) is parallel to the first double-press roll (4), one end of the top of the anti-sticking material guide plate (204) is tangent to the outer wall of the first double-press roll (4), and a gap is reserved between the top of the anti-sticking material guide plate (204) and the outer wall of the first double-press roll (4).
CN202021140796.8U 2020-06-19 2020-06-19 Plant draws with squeezing device Active CN212603605U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021140796.8U CN212603605U (en) 2020-06-19 2020-06-19 Plant draws with squeezing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021140796.8U CN212603605U (en) 2020-06-19 2020-06-19 Plant draws with squeezing device

Publications (1)

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CN212603605U true CN212603605U (en) 2021-02-26

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114043761A (en) * 2022-01-13 2022-02-15 广州博士研生物技术有限公司 Skin care product raw material mixing equipment containing plant extracts and method thereof
CN118001778A (en) * 2024-04-09 2024-05-10 云南昊辰科技有限公司 Method and equipment for extracting active ingredients of natural plants

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114043761A (en) * 2022-01-13 2022-02-15 广州博士研生物技术有限公司 Skin care product raw material mixing equipment containing plant extracts and method thereof
CN114043761B (en) * 2022-01-13 2022-03-18 广州博士研生物技术有限公司 Skin care product raw material mixing equipment containing plant extracts and method thereof
CN118001778A (en) * 2024-04-09 2024-05-10 云南昊辰科技有限公司 Method and equipment for extracting active ingredients of natural plants
CN118001778B (en) * 2024-04-09 2024-06-04 云南昊辰科技有限公司 Method and equipment for extracting active ingredients of natural plants

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