A device for processing bupleurum decoction pieces

By designing components such as the rotating rod, base plate, outer plate, and sealing ring of the turtle blood and Bupleurum chinense processing device, the problem of slow turtle blood contamination and absorption speed was solved, realizing the full utilization and rapid absorption of turtle blood and rice wine, reducing manual support, and improving processing efficiency.

CN116473844BActive Publication Date: 2026-05-19JIANGXI BAIREN CHINESE HERBAL PIECES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIANGXI BAIREN CHINESE HERBAL PIECES CO LTD
Filing Date
2023-04-28
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

When using existing turtle blood and Bupleurum chinense decoction pieces processing equipment, turtle blood easily sticks to the inner wall of the equipment, resulting in waste. Furthermore, the absorption rate of turtle blood and rice wine is relatively slow, affecting the processing efficiency. In addition, manual assistance is required to pour out the decoction pieces.

Method used

A processing device for turtle blood and Bupleurum chinense slices was designed, including a conical body, a rotating rod, a bottom plate, an outer plate, a sealing ring, and a moving head. The device achieves thorough mixing and rapid absorption of turtle blood and rice wine by stirring with the rotating rod and generating pressure with compressed air from the sealing ring. The moving head design allows the slices to be automatically tilted and poured out.

Benefits of technology

This effectively avoids wasting the inner walls of turtle blood and rice wine, improves absorption efficiency, reduces manpower requirements, and increases processing efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN116473844B_ABST
    Figure CN116473844B_ABST
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Abstract

The present application provides a kind of turtle blood radix bupleuri decoction piece processing device, it is related to decoction piece processing field, including: top piece, the top piece is circular structure, the inside of top piece is equipped with pressure piece, pressure piece is circular plate structure, pressure piece is plastic material, the bottom end of pressure piece middle position is fixed with threaded rod, the outside of pressure piece is fixed with sealing ring, the outside of sealing ring is equipped with annular protrusion.When it is needed to make decoction piece absorb all turtle blood and yellow rice wine, move down by manually preliminarily pressing presser, make sealing ring move down slightly together with pressure piece driven by pressure piece, make screw rod insert into the threaded hole inside the bottom of guide, while rotating rod continues to rotate, move down by screw rod pulling pressure piece and sealing ring, compress the air inside main body, force turtle blood and radix bupleuri decoction piece to absorb yellow rice wine quickly, improve absorption efficiency, solve the problem that the speed is slow when turtle blood and yellow rice wine are absorbed by the existing turtle blood radix bupleuri decoction piece processing device, affect processing efficiency.
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Description

Technical Field

[0001] This invention relates to the field of medicinal herb processing technology, and in particular to a device for processing turtle blood and Bupleurum medicinal herbs. Background Technology

[0002] When processing turtle blood and Bupleurum root medicinal slices, a processing device is usually required to mix the fresh turtle blood and rice wine with the slices, and then let them soak until the turtle blood and wine are completely absorbed.

[0003] When using the existing turtle blood and Bupleurum decoction processing equipment, the turtle blood tends to stick to the inner wall of the equipment during stirring, which can lead to waste. Furthermore, the absorption of turtle blood and rice wine is slow, affecting the processing efficiency. When the equipment pours out the decoction pieces, it requires continuous manual support, which wastes manpower. Summary of the Invention

[0004] In view of this, the present invention provides a processing device for turtle blood and Bupleurum chinense slices to solve the problem that when turtle blood is stirred in the existing processing device, it is easy to stick to the inner wall of the device, which is easy to cause waste.

[0005] This invention provides a processing device for turtle blood and Bupleurum chinense slices, specifically comprising: a main body; the main body is the processing device body, the bottom end of the main body is a conical structure, a motor is fixed to the bottom end of the main body, the motor is driven by a rotating rod, the rotating rod is located in the middle of the main body, three ring-shaped bottom plates are fixed to the outside of the rotating rod, the bottom plates are rectangular structures, the two sides of the bottom plates are inclined structures, an outer plate is provided above the outer end of each bottom plate, the outer side of the outer plate is attached to the inner wall of the main body, and each outer plate has an outer groove on both sides, the outer groove is an arc structure; a top piece, the top piece is a circular structure, the top piece has two square grooves inside, a circular hole is provided in the middle of the top piece, and the top piece is used for mounting. At the top of the main body, a pressure member is installed inside the top component. The pressure member is a circular plate-shaped structure made of plastic. A threaded rod is fixed at the middle of the bottom end of the pressure member. A sealing ring made of rubber is fixed to the outside of the pressure member. The sealing ring has annular protrusions on its outside. The bottom component is an H-shaped structure located at the bottom of the main body. A support member is fixed on each side of the bottom component. The support members are connected to the main body through a rotating shaft. A guide plate is installed at the top of each support member. A moving head is fixed at the front end of each guide plate. The top end of the moving head is inclined and wedge-shaped. The moving head is made of elastic metal. A stop is provided at the front end of each moving head.

[0006] Optionally, each side of the main body is provided with a side member, which is a rectangular structure. A pull rod is fixed to the outer end of each side member, and a connecting groove with a wedge-shaped structure is provided above the outer end of each side member. A rotating groove with a T-shaped shaft structure is provided at the bottom of the outer end of each side member, and the rotating rod is a cylindrical structure made of metal. A guide with a funnel-shaped structure is provided at the top of the rotating rod, and a threaded hole is provided at the bottom end of the guide. A stirring rod composed of round rods is provided at the top of each base plate.

[0007] Optionally, the top member has a side groove at each end, the side groove being L-shaped. A guide member is fixed to each side of the top of the top member, with two guide members in total, positioned above the two side grooves. The guide members are I-shaped, with a cylindrical structure in the middle. A spring is fitted onto the outer side of each guide member. A control member is slidably inserted into the interior of each side groove. The control member is L-shaped, with a U-shaped pull at its outer end. Each control member has a circular hole at its inner end, into which a guide member is inserted. The outer side of the control member contacts the spring. A connector is fixed to the bottom of each control member, also L-shaped, with a circular rod at its bottom inner end inserted into a connecting groove. The top of the pressure member has an auxiliary plate, an inverted U-shaped structure, inserted into the square groove of the top member. A pressing member is fixed to the middle of the auxiliary plate, a cylindrical structure, with its bottom end fixedly connected to the top of the pressure member. The pressing member is inserted into the circular hole of the top member.

[0008] Optionally, the support member has an inverted U-shaped structure with wedge-shaped ends at the bottom. The support member is made of metal. Each support member has a rotatable rotating shaft installed at its top, which is inserted into the rotating groove. Each support member has a stop fixed at its top. The stop is L-shaped with an inclined top and a wedge-shaped top. The stop is made of elastic metal and is located on the side of the moving head. Each support member has a positioning member fixed at its top. The positioning member has an inverted U-shaped structure and a circular hole inside. Each positioning member has a guide plate installed inside. The guide plate has an L-shaped structure and a circular rod at its top. A spring is fitted on the outside of each circular rod, which is inserted into the circular hole of the positioning member. The stop is wedge-shaped and made of metal.

[0009] The beneficial effects are:

[0010] 1. By setting up a bottom plate and an outer plate, when this device is stirring turtle blood, rice wine and medicinal slices, the bottom plate can work with the stirring rod and the outer plate to make the turtle blood, rice wine and medicinal slices fully mixed. During the mixing, some turtle blood and rice wine will be adhering to the inner wall of the main body. When the outer plate rotates, it can scrape the turtle blood and rice wine adhering to the inner wall, so that the turtle blood and rice wine can be placed inside the outer tank, and then the turtle blood and rice wine can flow downward, so that all the turtle blood and rice wine can be used and waste is avoided.

[0011] 2. By setting up a pressing component and a sealing ring, after the mixture is mixed, when the medicinal slices need to absorb all the turtle blood and rice wine, the pressing component can be manually pressed downwards. This causes the pressing component to move downwards slightly along with the sealing ring, allowing the screw to be inserted into the threaded hole at the bottom of the guide and connected to the rotating rod. When the rotating rod continues to rotate, the screw pulls the pressing component and sealing ring downwards, compressing the air inside the main body and generating pressure. This forces the rice wine and turtle blood to be quickly absorbed by the Bupleurum medicinal slices, improving absorption efficiency.

[0012] 3. By setting up a moving head and a stop, when the device needs to control the pouring out of the processed medicinal slices, the main body can be rotated and tilted by the pull rod, so that the main body can pour out the medicinal slices in an inclined state. At the same time, the pull rod rotates together, so that the pull rod can be embedded in the interior of the moving head, so that the spring can continuously push the moving head, so that the stop can block the round rod, thereby fixing the main body in an inclined state, allowing the medicinal slices to be poured out continuously without the need for continuous manual control and support. Attached Figure Description

[0013] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0014] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0015] In the attached diagram:

[0016] Figure 1 This is a three-dimensional structural schematic diagram of the processing apparatus according to an embodiment of the present invention.

[0017] Figure 2 This is a bottom view of the processing apparatus according to an embodiment of the present invention.

[0018] Figure 3 This is an exploded three-dimensional structural diagram of the processing apparatus according to an embodiment of the present invention.

[0019] Figure 4 This is an exploded bottom view of the processing apparatus according to an embodiment of the present invention.

[0020] Figure 5 This is a schematic diagram of a partial cross-sectional three-dimensional structure of the processing apparatus according to an embodiment of the present invention.

[0021] Figure 6 This is an exploded three-dimensional structural diagram of the top component of the processing apparatus according to an embodiment of the present invention.

[0022] Figure 7 This is an exploded bottom view of the top component of the processing device according to an embodiment of the present invention.

[0023] Figure 8 This is an exploded three-dimensional structural diagram of the bottom component of the processing apparatus according to an embodiment of the present invention.

[0024] List of reference numerals

[0025] 1. Main body; 101. Side component; 102. Connecting groove; 103. Rotating groove; 104. Rotating rod; 105. Guide component; 106. Base plate; 107. Stirring rod; 108. Outer plate;

[0026] 2. Top component; 201. Side groove; 202. Guide component; 203. Control component; 204. Connecting component; 205. Pressing component; 206. Auxiliary plate; 207. Pressing component; 208. Sealing ring;

[0027] 3. Base component; 301. Support component; 302. Rotating shaft; 303. Stop component; 304. Positioning component; 305. Guide plate; 306. Moving head; 307. Stop block. Detailed Implementation

[0028] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples.

[0029] Example: Please refer to Figures 1 to 8 As shown:

[0030] This invention provides a processing device for turtle blood and Bupleurum root slices, comprising a main body 1. The main body 1 is the processing device body, and its bottom end has a conical structure, allowing the slices and turtle blood to automatically converge and be absorbed. A motor is fixed to the bottom end of the main body 1, and the motor is driven by a rotating rod 104, which is located in the middle of the main body 1. Three ring-shaped base plates 106 are fixed to the outside of the rotating rod 104. The base plates 106 have a rectangular structure, and their two sides are inclined, allowing for convenient rotation and stirring, while also scraping the turtle blood to prevent the turtle blood and rice wine from coagulating. At the bottom interior of the main body 1, an outer plate 108 is provided above the outer end of each bottom plate 106. The outer surface of the outer plate 108 is attached to the inner wall of the main body 1, allowing it to scrape the inner wall of the main body 1, thus removing any residual turtle blood and rice wine. Each outer plate 108 has an outer groove on each side, which is arc-shaped, allowing the turtle blood and rice wine to circulate within it, improving utilization. The top piece 2 is circular in structure, with two square grooves inside and a round hole in the center. The top piece 2 is installed on the top of the main body 1. The main body 1 is equipped with a pressure component 205, which is a circular plate structure that can be easily moved and displaced, thereby compressing the air inside the main body 1. The pressure component 205 is made of plastic, and a threaded rod is fixed at the middle of the bottom end of the pressure component 205 to connect with the threaded hole at the bottom end of the guide component 105, so that the pressure component 205 can be driven by a motor to move. A sealing ring 208 is fixed to the outside of the pressure component 205. The sealing ring 208 is made of rubber and has annular protrusions on the outside to improve the sealing effect, so that the medicinal slices can quickly absorb turtle blood and rice wine; bottom component 3, bottom component 3 It has an H-shaped structure, with the bottom part 3 located at the bottom of the main body 1. A support part 301 is fixed on each side of the bottom part 3. The support part 301 is connected to the main body 1 through a rotating shaft 302. A guide plate 305 is installed at the top of each support part 301. A moving head 306 is fixed at the front end of each guide plate 305. The top end of the moving head 306 has an inclined structure so that the pull rod can be guided and embedded. The top end of the moving head 306 has a wedge-shaped structure. The moving head 306 is made of elastic metal. A stop block 307 is provided at the front end of each moving head 306 to block and fix the pull rod.

[0031] refer to Figure 5The main body 1 has a side member 101 on each side. The side member 101 is rectangular in structure. Each side member 101 has a pull rod fixed to its outer end, which can be used to easily control the rotation of the main body 1. Each side member 101 has a connecting groove 102 at the top of its outer end. The connecting groove 102 is wedge-shaped and is used to embed the round rod of the connector 204, thereby improving the fixing effect. Each side member 101 has a rotating groove 103 at the bottom of its outer end. The rotating groove 103 is a T-shaped shaft structure, which allows the rotating shaft 302 to be embedded. The rotating rod 104 is cylindrical and made of metal, and can be driven to rotate by a motor. The top of the rotating rod 104 has a guide 105. The guide 105 is funnel-shaped and allows the screw to be inserted. The bottom of the guide 105 has a threaded hole, which allows the screw to be inserted and connected. Each base plate 106 has a uniformly arranged stirring rod 107 at its top. The stirring rod 107 is composed of round rods and can assist in stirring.

[0032] refer to Figure 6 and Figure 7 The top member 2 has a side groove 201 at each end, which is L-shaped to guide the control member 203. Two guide members 202 are fixed to the top of the top member 2 on each side, guiding the control member 203. The two guide members 202 are positioned above the two side grooves 201 and are I-shaped with a cylindrical center. A spring is fitted on the outer side of each guide member 202 to continuously push the control member 203. A control member 203 is slidably inserted into each side groove 201. The control member 203 is L-shaped with a U-shaped pull at its outer end and a circular hole at its inner end, into which a guide is inserted. The outer side of the control component 203 contacts the spring and can continuously receive the spring's dynamic displacement. Each control component 203 has a connecting component 204 fixed at its bottom. The connecting component 204 has an L-shaped structure and a round rod at the bottom inner end of each connecting component 204. The round rod is inserted into the connecting groove 102 and can continuously receive force and contact, thereby continuously pulling the top component 2 to seal. The top of the pressure component 205 has an auxiliary plate 206 with an inverted U-shaped structure. The auxiliary plate 206 is inserted into the square groove of the top component 2 to control the guiding displacement of the pressure component 205. A pressing component 207 is fixed in the middle of the auxiliary plate 206. The pressing component 207 has a cylindrical structure and its bottom end is fixedly connected to the top end of the pressure component 205. The pressing component 207 is inserted into the round hole of the top component 2.

[0033] refer to Figure 8The support member 301 has an inverted U-shaped structure, with wedge-shaped structures at both ends of its bottom. The support member 301 is made of metal. A rotatable rotating shaft 302 is mounted on the top of each support member 301. The rotating shaft 302 is inserted into the rotating groove 103, allowing the main body 1 to easily rotate and pour out the medicinal slices. A stop 303 is fixed to the top of each support member 301. The stop 303 has an L-shaped structure, with its top inclined and wedge-shaped. The stop 303 is made of elastic metal and helps to block the round rod. The stop 303 is located on the side of the moving head 306. Each support member 301 has a fixed stop 302 on its top. A positioning component 304, which has an inverted U-shaped structure, is used to guide the displacement of the guide plate 305 within it. Each positioning component 304 has a circular hole inside, and a guide plate 305 is installed inside each positioning component 304. The guide plate 305 has an L-shaped structure, and a circular rod is provided at the top of each guide plate 305. A spring is fitted on the outside of each circular rod, which can continuously push the moving head 306 to move, so that the stop block 307 can firmly block the circular rod, and the main body 1 can be fixed. The circular rod is inserted into the circular hole of the positioning component 304. The stop block 307 has a wedge-shaped structure and is made of metal, which can effectively block the circular rod.

[0034] The specific usage and function of this embodiment: In this invention, when this device is needed, Bupleurum slices, rice wine, and fresh turtle blood can be added to the interior of the main body 1 by manual control. Then, the U-shaped puller is pulled to allow the control member 203 to move outward, thereby compressing the spring. Then, the top member 2 is installed so that the pressure member 205 and the sealing ring 208 can be embedded into the interior of the main body 1. Then, the U-shaped puller is released so that the spring can continuously push the control member 203 to move, allowing the control member 203 to continuously drive the connecting member 204 using its elasticity. The displacement of the round rod allows it to contact the interior of the connecting groove 102. Due to the inclined structure of the contact surface, the round rod can drive the control component 203 downwards, positioning the top component 2 at the top of the main body 1, thus improving the sealing effect. Then, the motor is controlled to rotate, driving the rotating rod 104 to rotate as well. The bottom plate 106, in conjunction with the stirring rod 107 and the outer plate 108, thoroughly mixes the turtle blood, rice wine, and medicinal slices. During mixing, some turtle blood and rice wine adhere to the inner wall of the main body 1. At this time, the outer plate 108 follows the rotation... During rotation, scrape off the turtle blood and rice wine adhering to the inner wall, ensuring they are inside the outer tank and flowing downwards to maximize their use and prevent waste. After mixing, initially press the pressing component 207 to insert the bottom of the screw into the threaded hole, connecting it to the rotating rod 104. Continue rotating the rotating rod 104, pulling the screw downwards through the threaded hole, which in turn pulls the pressing component 205 and the sealing ring 208 downwards, clearing the air from inside the main body 1. The gas can be compressed to generate pressure, which forces the turtle blood and rice wine to be quickly absorbed by the Bupleurum slices, increasing the absorption rate. Then, the motor is controlled to rotate in the opposite direction, allowing the screw to disengage from the threaded hole. After absorption is complete, the U-shaped puller can be pulled to move the control component 203 outward. Then, the top component 2 is removed, and the round rod is pulled to control the main body 1 to rotate and tilt, so that the round rod can be embedded in the side of the moving head 306. The stop block 307 can block the round rod, so that the main body 1 can be fixed in an inclined state, allowing the slices to be poured out quickly.

Claims

1. A processing device for turtle blood and Bupleurum root slices, characterized in that, include: Main body (1); The main body (1) is the body of the processing device. The bottom end of the main body (1) is a conical structure. A motor is fixed at the bottom end of the main body (1). The motor is connected to a rotating rod (104). The rotating rod (104) is located in the middle of the interior of the main body (1). Three ring-shaped bottom plates (106) are fixed on the outside of the rotating rod (104). The bottom plates (106) are rectangular structures. The two sides of the bottom plates (106) are inclined structures. An outer plate (108) is provided above the outer end of each bottom plate (106). The outer side of the outer plate (108) is in contact with the inner wall of the main body (1). An outer groove is provided on each side of each outer plate (108). The outer groove is an arc structure. Top part (2); The top part (2) is a circular structure. The top part (2) has two square grooves inside. A round hole is provided in the middle of the top part (2). The top part (2) is installed on the top of the main body (1). A pressure part (205) is installed inside the top part (2). 205) is a circular plate structure. The pressure piece (205) is made of plastic. A threaded rod is fixed at the middle of the bottom end of the pressure piece (205). A sealing ring (208) is fixed on the outside of the pressure piece (205). The sealing ring (208) is made of rubber and has an annular protrusion on the outside. The bottom piece (3) is an H-shaped structure. The bottom piece (3) is located at the bottom of the main body (1). A support piece (301) is fixed on each side of the bottom piece (3). The support member (301) is connected to the main body (1) through the rotating shaft (302). A guide plate (305) is installed at the top of each support member (301). A moving head (306) is fixed at the front end of each guide plate (305). The top end of the moving head (306) is an inclined structure and a wedge-shaped structure. The moving head (306) is made of elastic metal material. A stop (307) is provided at the front end of each moving head (306). The top end of the rotating rod (104) is provided with a guide (105), which is a funnel-shaped structure. The bottom end of the guide (105) is provided with a threaded hole. The top end of each base plate (106) is provided with uniformly arranged stirring rods (107), which are composed of round rods. The top of the pressure member (205) is provided with an auxiliary plate (206). The auxiliary plate (206) has an inverted U-shaped structure. The auxiliary plate (206) is inserted into the square groove of the top member (2). A pressing member (207) is fixed in the middle of the auxiliary plate (206). The pressing member (207) has a cylindrical structure. The bottom end of the pressing member (207) is fixedly connected to the top end of the pressure member (205). The pressing member (207) is inserted into the round hole of the top member (2).

2. The apparatus for processing turtle blood and Bupleurum root slices as described in claim 1, characterized in that: The main body (1) has a side piece (101) on each side. The side piece (101) is rectangular. A pull rod is fixed at the outer end of each side piece (101). A connecting groove (102) is provided above the outer end of each side piece (101). The connecting groove (102) is wedge-shaped.

3. The apparatus for processing turtle blood and Bupleurum root slices as described in claim 2, characterized in that: Each of the side members (101) has a rotating groove (103) at the bottom of its outer end. The rotating groove (103) is a T-shaped shaft structure, and the rotating rod (104) is a cylindrical structure. The rotating rod (104) is made of metal.

4. The apparatus for processing turtle blood and Bupleurum root slices as described in claim 3, characterized in that: The top part (2) has a side groove (201) at each end. The side groove (201) is L-shaped. A guide (202) is fixed on each side of the top of the top part (2). There are two guides (202). The two guides (202) are located above the two side grooves (201). The guides (202) are I-shaped. The middle position of the guides (202) is cylindrical. A spring is fitted on the outside of each guide (202).

5. The apparatus for processing turtle blood and Bupleurum root slices as described in claim 4, characterized in that: Each of the side grooves (201) has a control component (203) that is slidably inserted inside. The control component (203) has an L-shaped structure and a U-shaped pull at its outer end. Each control component (203) has a circular hole at its inner end and a guide component (202) inserted inside the circular hole. The outer side of the control component (203) is in contact with a spring. Each control component (203) has a connector (204) fixed at its bottom. The connector (204) has an L-shaped structure and a circular rod at its bottom inner end. The circular rod is inserted inside the connecting groove (102).

6. The apparatus for processing turtle blood and Bupleurum root slices as described in claim 5, characterized in that: The support member (301) has an inverted U-shaped structure, and the bottom two ends of the support member (301) have wedge-shaped structures. The support member (301) is made of metal. Each support member (301) has a rotatable rotating shaft (302) installed at its top end. The rotating shaft (302) is inserted into the interior of the rotating groove (103).

7. The apparatus for processing turtle blood and Bupleurum root slices as described in claim 6, characterized in that: Each of the support members (301) has a stop (303) fixed at its top end. The stop (303) has an L-shaped structure, and the top end of the stop (303) is inclined. The top end of the stop (303) has a wedge-shaped structure. The stop (303) is made of elastic metal material. The stop (303) is located on the side of the moving head (306). Each of the support members (301) has a positioning member (304) fixed at its top end. The positioning member (304) has an inverted U-shaped structure. Each positioning member (304) has a round hole inside. Each positioning member (304) has a guide plate (305) installed inside.

8. The apparatus for processing turtle blood and Bupleurum root slices as described in claim 7, characterized in that: The guide plate (305) has an L-shaped structure. Each guide plate (305) has a round rod at its top. A spring is fitted on the outside of each round rod. The round rod is inserted into the round hole of the positioning member (304). The stop block (307) has a wedge-shaped structure and is made of metal.