CN219539526U - Stevioside sugar liquid separation and purification tank - Google Patents

Stevioside sugar liquid separation and purification tank Download PDF

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Publication number
CN219539526U
CN219539526U CN202320771350.2U CN202320771350U CN219539526U CN 219539526 U CN219539526 U CN 219539526U CN 202320771350 U CN202320771350 U CN 202320771350U CN 219539526 U CN219539526 U CN 219539526U
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piece
main body
separating
purification tank
extrusion
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CN202320771350.2U
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Chinese (zh)
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郑书旺
郑然�
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Shandong Huaxian Haosen Biotechnology Co ltd
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Shandong Huaxian Haosen Biotechnology Co ltd
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Abstract

The utility model provides a stevioside sugar liquid separation and purification tank, relates to the technical field of purification tanks, and aims to solve the problems that part of sugar liquid remains on the inner wall of the purification tank and cannot be cleaned conveniently when the existing purification tank is used, and comprises a reaction mechanism; the reaction mechanism is a purification tank body, and the main body is of a cylindrical structure; the separation mechanism is arranged inside the reaction mechanism; the extrusion mechanism is arranged inside the separation mechanism; the rotating mechanism is arranged inside the reaction mechanism; the rotating piece is arranged in the rotating groove; the latch on the bottom piece is meshed with the gear on the control piece; the contact is mounted to the bottom of the base. The motor in the main part through here drives the control and rotates, meshes with the latch on the bottom part through the gear on the control, and then the rotating member is rotatory at the rotary tank inside, and the contact piece that drives the bottom through the bottom part is rotatory, and the contact piece of here sets up to triangle-shaped structure, and then when contacting with the main part inner wall, can assist the striking off with the sugar liquid of main part inner wall, it is more convenient to use.

Description

Stevioside sugar liquid separation and purification tank
Technical Field
The utility model belongs to the technical field of purification tanks, and particularly relates to a stevioside liquid separation and purification tank.
Background
Stevia rebaudiana is native to Paraguay and Brazil, and has high sweetness and low heat energy, and the stevioside is purified and separated by a purification tank; based on the discovery in the prior art, current purification jar is when using, generally with stevioside and various material intermixture reaction purification, and there is a large amount of residues after the reaction, can't separate residue and sugar liquid to the inside partial sugar liquid of throwing away of residue, can't abundant extrude the sugar liquid of residue inside, and current purification jar is when using, and stevioside is after the reaction, and partial sugar liquid remains in purification jar inner wall, can't convenient clear up.
Disclosure of Invention
In order to solve the technical problems, the utility model provides a stevioside sugar liquid separation and purification tank, which aims to solve the problems that the existing purification tank cannot separate residues from sugar liquid and can not sufficiently extrude sugar liquid in the residues, and part of sugar liquid remains on the inner wall of the purification tank and cannot be cleaned conveniently when the existing purification tank is used.
The utility model discloses a stevioside liquid separation and purification tank, which is characterized by comprising the following specific technical means:
a stevioside liquid separation and purification tank comprises a reaction mechanism, a separation mechanism, an extrusion mechanism and a rotation mechanism;
the reaction mechanism is a purification tank body, and the reaction mechanism comprises: the main body is of a cylindrical structure, the inside of the main body is of a hollow structure, the bottom of the main body is provided with a discharge hole, and the top of the main body is provided with a motor; the separator mechanism is arranged in the reaction mechanism, and a separating piece on the separating mechanism is arranged in the main body on the reaction mechanism; the extruding mechanism is arranged in the separating mechanism, and the adjusting piece on the extruding mechanism is arranged in the separating piece on the separating mechanism; the rotating mechanism is arranged inside the reaction mechanism.
Further, the reaction mechanism further includes: a support frame;
the support frame is ring-shaped structure, and the support frame bottom is equipped with the rectangle arch, and the support frame is installed in the main part bottom.
Further, the reaction mechanism further includes: a control member and a rotary groove;
the control piece is of a cylindrical structure, a gear is arranged on the control piece, the control piece is arranged in the main body, and the control piece is connected with a motor on the main body; the rotary groove is of a circular ring structure and is arranged at the top end inside the main body.
Further, the separation mechanism includes: a separating member, a mounting member and a mounting rod;
the separating piece is of a cylindrical structure, the inside of the separating piece is of a hollow structure, and a round hole is formed in the separating piece; the mounting piece is of a circular ring structure, the mounting piece is provided with a latch, the mounting piece is mounted on the top of the separating piece, and the latch on the mounting piece is meshed with the gear on the control piece; the installation pole is the bellied cylindrical structure in top, and the installation pole is installed inside the separator.
Further, the pressing mechanism includes: an adjustment member and an extrusion;
the adjusting piece is of a cylindrical structure, and threads are arranged on the adjusting piece; the extrusion piece is cylindrical structure, is equipped with the screw hole on the extrusion piece, is equipped with the round hole on the extrusion piece, and round hole internally mounted on the extrusion piece has the installation pole to screw hole internally mounted on the extrusion piece has the regulating part.
Further, the rotation mechanism includes: a rotating member, a base member, and a contact member;
the rotating piece is of a cylindrical structure and is arranged in the rotating groove; the bottom piece is of a circular ring structure, the inner wall of the bottom piece is provided with clamping teeth, the bottom piece is arranged at the bottom of the rotating piece, and the clamping teeth on the bottom piece are meshed with the gear on the control piece; the contact piece is of a triangular structure, and the contact piece is arranged at the bottom of the bottom piece.
Compared with the prior art, the utility model has the following beneficial effects:
1. in the device, the separating piece and the adjusting piece are arranged, the separating piece is arranged in the main body, the adjusting piece is arranged in the separating piece, and therefore when the device is used, the separating piece is driven to rotate through the gear on the control piece and the latch on the mounting piece, so that materials deposited at the bottom of the separating piece float, and the materials can be better separated from sugar liquid through rotating and contacting with liquid in the main body through the round hole, and at a discharge hole, the extrusion piece moves downwards on the mounting rod through rotating the adjusting piece, so that residues of the materials are extruded through the bottom of the extrusion piece, the sugar liquid in the residues is extruded, and the extraction efficiency is higher;
2. in this device, set up control and rotating member, the control of here is installed inside the main part, and the rotating member is installed inside the rotary tank, and then make when, drive the control through the motor in the main part of here rotatory, mesh with the latch on the bottom part through the gear on the control, and then the rotating member is rotatory at the rotary tank inside, it is rotatory to drive the contact member of bottom through the bottom part, and the contact member of here sets up to triangle-shaped structure, and then when contacting with the main part inner wall, can assist the striking off with the sugar liquid of main part inner wall, it is more convenient to use.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic view of a cut-away perspective view of the body of the present utility model.
Fig. 3 is an exploded perspective view of the separation mechanism and the pressing mechanism of the present utility model.
Fig. 4 is an exploded perspective view of the main body and the rotating mechanism of the present utility model.
Fig. 5 is a partially enlarged schematic view of the portion a of the present utility model drawn from fig. 2.
In the figure, the correspondence between the component names and the drawing numbers is:
1. a reaction mechanism; 101. a main body; 102. a support frame; 103. a control member; 104. a rotary groove;
2. a separation mechanism; 201. a separating member; 202. a mounting member; 203. a mounting rod;
3. an extrusion mechanism; 301. an adjusting member; 302. an extrusion;
4. a rotation mechanism; 401. a rotating member; 402. a base member; 403. a contact.
Description of the embodiments
Embodiments of the present utility model are described in further detail below with reference to the accompanying drawings and examples.
Examples
As shown in fig. 1 to 5:
the utility model provides a stevioside liquid separation and purification tank, which comprises a reaction mechanism 1, a separation mechanism 2, an extrusion mechanism 3 and a rotation mechanism 4; the reaction mechanism 1 is a purification tank body, and the reaction mechanism 1 includes: the main body 101 is of a cylindrical structure, the inside of the main body 101 is of a hollow structure, a discharge hole is formed in the bottom of the main body 101, and a motor is mounted at the top of the main body 101; the main body 101 is a purification tank body and is used for purifying stevioside; the separating mechanism 2 is installed inside the reaction mechanism 1, and the separating piece 201 on the separating mechanism 2 is installed inside the main body 101 on the reaction mechanism 1; the pressing mechanism 3 is installed inside the separating mechanism 2, and the regulating member 301 on the pressing mechanism 3 is installed inside the separating member 201 on the separating mechanism 2; the rotation mechanism 4 is installed inside the reaction mechanism 1.
As shown in fig. 2, the reaction mechanism 1 further includes: a support frame 102, a control member 103 and a rotary groove 104; the support frame 102 is of a circular ring structure, a rectangular bulge is arranged at the bottom of the support frame 102, and the support frame 102 is arranged at the bottom of the main body 101; the supporting frame 102 is used for supporting the main body 101; the control piece 103 is of a cylindrical structure, a gear is arranged on the control piece 103, the control piece 103 is arranged inside the main body 101, and the control piece 103 is connected with a motor on the main body 101; the control member 103 is used to engage with the latch on the mounting member 202 and the latch on the base member 402 via gears, thereby rotating the mounting member 202 and the base member 402; the rotary groove 104 is of a circular ring structure, and the rotary groove 104 is arranged at the top end inside the main body 101; the rotation groove 104 is here intended to be in sliding connection with the rotation member 401.
As shown in fig. 3, the separation mechanism 2 includes: a separating member 201, a mounting member 202, and a mounting lever 203; the separating piece 201 is of a cylindrical structure, the inside of the separating piece 201 is of a hollow structure, and a round hole is formed in the separating piece 201; the separating piece 201 is used for separating the fixed material from the sugar solution, and the sugar solution can be better contacted with the material inside through the round hole; the mounting piece 202 is of a circular ring structure, the mounting piece 202 is provided with a latch, the mounting piece 202 is mounted on the top of the separating piece 201, and the latch on the mounting piece 202 is meshed with a gear on the control piece 103; the mounting piece 202 is used for meshing with the gear on the control piece 103 through the latch, so that the separating piece 201 is driven to rotate, the materials in the separating piece float, and better sugar solution in the main body 101 is subjected to contact mixing reaction; the mounting rod 203 is of a cylindrical structure with a raised top, and the mounting rod 203 is mounted inside the separator 201; the mounting bar 203 is used here to assist in stabilizing the extrusion 302.
As shown in fig. 3, the pressing mechanism 3 includes: an adjustment member 301 and an extrusion member 302; the adjusting piece 301 is of a cylindrical structure, and threads are arranged on the adjusting piece 301; the adjusting member 301 is used to rotate the pressing member 302 to move downward on the mounting rod 203; the extrusion piece 302 is of a cylindrical structure, a threaded hole is formed in the extrusion piece 302, a round hole is formed in the extrusion piece 302, a mounting rod 203 is arranged in the round hole in the extrusion piece 302, and an adjusting piece 301 is arranged in the threaded hole in the extrusion piece 302; the pressing member 302 is used to press the residue by the downward movement of the regulating member 301, so that sugar liquid in the residue is separated.
As shown in fig. 4, the rotation mechanism 4 includes: a rotating member 401, a base member 402, and a contact member 403; the rotary member 401 has a cylindrical structure, and the rotary member 401 is installed inside the rotary groove 104; the rotary member 401 is here intended to be mounted inside the rotary tub 104; the bottom piece 402 is of a circular ring structure, the inner wall of the bottom piece 402 is provided with clamping teeth, the bottom piece 402 is arranged at the bottom of the rotary piece 401, and the clamping teeth on the bottom piece 402 are meshed with the gears on the control piece 103; the bottom piece 402 is used for being meshed with the gear on the control piece 103 through the latch, so as to drive the bottom piece 402 to rotate; the contact 403 has a triangular structure, and the contact 403 is mounted at the bottom of the base 402; the contact member 403 is used to make contact with the inner wall of the main body 101 and rotate through the base member 402, so that the sugar solution attached to the inner wall of the main body 101 can be scraped off in an auxiliary manner.
Specific use and action of the embodiment:
according to the device, when the device is used, materials and sugar liquid are added from the separating piece 201, the sugar liquid enters the main body 101 from the round hole on the separating piece 201, the gears on the control piece 103 are meshed with the clamping teeth on the mounting piece 202, and then the separating piece 201 is driven to rotate, so that the materials deposited at the bottom of the separating piece 201 float, and are contacted with liquid in the main body 101 through the round hole through rotation, the materials and the sugar liquid can be better separated, the materials and the sugar liquid are contacted and reacted, so that the purifying effect is achieved, in the discharging process, the extrusion piece 301 is rotated, the extrusion piece 302 moves downwards on the mounting rod 203, so that residues of the materials are extruded through the bottom of the extrusion piece 302, the sugar liquid in the residues is extruded, the extracting efficiency is higher, in the cleaning process, the motor on the main body 101 drives the control piece 103 to rotate, the gears on the control piece 103 are meshed with the clamping teeth on the bottom piece 402, the rotating piece 401 rotates in the inner part of the rotating groove 104, the contact piece 403 on the bottom is driven to rotate, the contact piece 403 is arranged to be a triangle structure, and the inner wall of the main body 101 is further convenient to scrape the sugar liquid, and the inner wall 101 can be more convenient to use.

Claims (6)

1. A stevioside liquid separation and purification tank is characterized in that: comprises a reaction mechanism (1), a separation mechanism (2), an extrusion mechanism (3) and a rotation mechanism (4);
the reaction mechanism (1) is a purification tank body, and the reaction mechanism (1) comprises: the main body (101), the main body (101) is of a cylindrical structure, the inside of the main body (101) is of a hollow structure, a discharge hole is formed in the bottom of the main body (101), and a motor is mounted at the top of the main body (101); the separating mechanism (2) is arranged inside the reaction mechanism (1), and a separating piece (201) on the separating mechanism (2) is arranged inside a main body (101) on the reaction mechanism (1); the extrusion mechanism (3) is arranged inside the separation mechanism (2), and the adjusting piece (301) on the extrusion mechanism (3) is arranged inside the separation piece (201) on the separation mechanism (2); the rotating mechanism (4) is arranged inside the reaction mechanism (1).
2. A stevioside liquid separation and purification tank according to claim 1, wherein: the reaction mechanism (1) further comprises: a support (102);
the support frame (102) is of a circular ring structure, rectangular protrusions are arranged at the bottom of the support frame (102), and the support frame (102) is arranged at the bottom of the main body (101).
3. A stevioside liquid separation and purification tank according to claim 1, wherein: the reaction mechanism (1) further comprises: a control member (103) and a rotary groove (104);
the control piece (103) is of a cylindrical structure, a gear is arranged on the control piece (103), the control piece (103) is arranged inside the main body (101), and the control piece (103) is connected with a motor on the main body (101); the rotary groove (104) is of a circular ring structure, and the rotary groove (104) is arranged at the top end inside the main body (101).
4. A stevioside liquid separation and purification tank according to claim 3, wherein: the separation mechanism (2) comprises: a separating member (201), a mounting member (202) and a mounting rod (203);
the separating piece (201) is of a cylindrical structure, the inside of the separating piece (201) is of a hollow structure, and a round hole is formed in the separating piece (201); the mounting piece (202) is of a circular ring structure, the mounting piece (202) is provided with a latch, the mounting piece (202) is mounted on the top of the separating piece (201), and the latch on the mounting piece (202) is meshed with a gear on the control piece (103); the mounting rod (203) is of a cylindrical structure with a convex top, and the mounting rod (203) is mounted inside the separating member (201).
5. A stevioside liquid separation and purification tank according to claim 4, wherein: the pressing mechanism (3) includes: an adjusting member (301) and an extrusion member (302);
the adjusting piece (301) is of a cylindrical structure, and threads are arranged on the adjusting piece (301); the extrusion piece (302) is of a cylindrical structure, a threaded hole is formed in the extrusion piece (302), a round hole is formed in the extrusion piece (302), a mounting rod (203) is mounted in the round hole in the extrusion piece (302), and an adjusting piece (301) is mounted in the threaded hole in the extrusion piece (302).
6. A stevioside liquid separation and purification tank according to claim 3, wherein: the rotation mechanism (4) includes: a rotating member (401), a base member (402) and a contact member (403);
the rotating piece (401) is of a cylindrical structure, and the rotating piece (401) is arranged inside the rotating groove (104); the bottom piece (402) is of a circular ring structure, the inner wall of the bottom piece (402) is provided with clamping teeth, the bottom piece (402) is arranged at the bottom of the rotary piece (401), and the clamping teeth on the bottom piece (402) are meshed with the gears on the control piece (103); the contact (403) is of a triangular structure, and the contact (403) is mounted at the bottom of the base (402).
CN202320771350.2U 2023-04-10 2023-04-10 Stevioside sugar liquid separation and purification tank Active CN219539526U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320771350.2U CN219539526U (en) 2023-04-10 2023-04-10 Stevioside sugar liquid separation and purification tank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320771350.2U CN219539526U (en) 2023-04-10 2023-04-10 Stevioside sugar liquid separation and purification tank

Publications (1)

Publication Number Publication Date
CN219539526U true CN219539526U (en) 2023-08-18

Family

ID=87732231

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320771350.2U Active CN219539526U (en) 2023-04-10 2023-04-10 Stevioside sugar liquid separation and purification tank

Country Status (1)

Country Link
CN (1) CN219539526U (en)

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