Convenient discharging device for ampelopsis grossedentata enzyme processing production line
By using a combination of centrifuge tank and stirring rod in the vine tea enzyme processing production line, the problem of particulate matter residue was solved, achieving efficient separation and clean production of vine tea enzyme.
Patent Information
- Application Number
- CN202511288880.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-10
- Publication Date
- 2025-11-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the use of existing vine tea enzyme processing production lines, particulate matter and impurities are easily left behind in the discharge device, affecting the activity and stability of the enzyme and easily causing pollution.
It adopts a convenient discharge device including a filter barrel, a centrifuge barrel and a stirring rod. It separates particulate matter through centrifugal force, and achieves effective separation and removal of particulate matter by combining the intermittent stirring of the stirring rod and the cleaning mechanism of the scraper.
It efficiently separates particulate matter from vine tea enzymes, preventing particulate matter from affecting the flow and activity of the enzymes, and ensuring the clean and stable operation of the production line.
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Figure CN120885347A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of kudzu vine tea enzyme processing, in particular to a convenient discharging device for kudzu vine tea enzyme processing production line. BACKGROUND
[0002] Kudzu vine tea enzyme is a kind of enzyme product made from kudzu vine tea as raw material through fermentation and enzymatic hydrolysis. Kudzu vine tea is a plant growing in subtropical regions, and its leaves are rich in various nutrients and bioactive components, such as polyphenols, flavonoids, amino acids, vitamins, etc. Kudzu vine tea enzyme is made by adding enzymes to kudzu vine tea and then fermenting and enzymatically hydrolyzing it, so that the nutrients in kudzu vine tea are more easily absorbed and utilized by the human body. Kudzu vine tea enzyme contains various enzymes that can promote various metabolic reactions in the human body and help the body better absorb and utilize nutrients.
[0003] For example, a convenient discharging device for kudzu vine tea enzyme processing production line with publication number CN221397854U includes a stirring assembly, a feeding assembly, a rotating assembly, a conveying assembly, a cleaning assembly, and a drying assembly. Compared with traditional kudzu vine tea enzyme convenient discharging devices, the discharging port is used for a long time during production, which can cause contamination problems such as residual kudzu vine tea enzyme and adhesion of microorganisms and dust. By adopting the method of cleaning and discharging at the same time through two groups of discharging ports in the kudzu vine tea enzyme convenient discharging device, the discharging port is kept clean at all times, preventing microorganisms and dust from adhering to the residual kudzu vine tea enzyme and causing contamination, thereby posing a threat to human health.
[0004] Before kudzu vine tea is made into enzyme, some ingredients in the raw material kudzu vine tea may be difficult to completely dissolve or break down. Some flavonoids may form tiny crystals or aggregates in the form of particulate matter during enzyme production. Unfiltered impurities and solid materials may affect the activity and stability of the enzyme, thereby affecting the effectiveness of the final enzyme product. Therefore, a convenient discharging device for kudzu vine tea enzyme processing production line is proposed to solve the above problems. SUMMARY
[0005] The technical problem to be solved by the present application is to provide a convenient discharging device for kudzu vine tea enzyme processing production line to overcome the shortcomings of the prior art.
[0006] To solve the above technical problems, the technical scheme adopted by the present application is: a convenient discharging device for a rattan tea enzyme processing production line, comprising a filter barrel, a feed inlet is communicatively arranged on the top of the filter barrel, a discharge outlet is communicatively arranged on the outer wall of the filter barrel, a conveying belt is arranged at the bottom of the discharge outlet, a separation mechanism is arranged in the filter barrel, the separation mechanism comprises a motor, the motor is fixedly connected to the bottom of the filter barrel, a rectangular shaft is fixedly connected to the conveying end of the motor through a shaft coupling, a centrifugal barrel is movably arranged on the outer wall of the rectangular shaft, the rectangular shaft is arranged to drive the centrifugal barrel to rotate and also allow the centrifugal barrel to move up and down, the top of the centrifugal barrel is rotatably connected to the inner wall of the top of the filter barrel through a limiting spring, the limiting spring is arranged to limit the centrifugal barrel, a plurality of filter plates are circumferentially arranged on the outer wall of the centrifugal barrel, the filter plates are arranged to block and filter the particles, so that the particles are not discharged together with the enzyme, and the rotation of the rectangular shaft drives the centrifugal barrel to rotate, so that the particles are adhered to the filter plates by centrifugation, so that the particles are not discharged together with the enzyme liquid. Preferably, the top of the rectangular shaft is fixedly connected with a first rotating rod, the top of the first rotating rod is rotatably connected with a connecting plate, when the rectangular shaft rotates, the first rotating rod rotates to drive one end of the connecting plate to eccentrically rotate, so that the connecting block can slide in the sliding groove, and the square plate can intermittently rotate, the intermittent rotation of the square plate drives the second rotating rod to intermittently rotate, so that the stirring rod intermittently rotates, and the particles are regularly distributed by the intermittent rotation of the stirring rod, so that the sedimentation effect is improved.
[0007] Preferably, the top inner wall of the filter barrel is rotatably connected with a second rotating rod, the outer wall of the second rotating rod is fixedly connected with a connecting rod, one end of the connecting rod is fixedly connected with a circular gear ring plate, the bottom of the second rotating rod is fixedly connected with a square plate, a sliding groove is formed in the bottom of the square plate, a connecting block is slidably connected in the sliding groove, the connecting plate is rotatably connected to the bottom of the connecting block, and the outer wall of the second rotating rod is fixedly connected with a stirring rod. After the rattan tea enzyme is stirred by the stirring rod, it realizes irregular motion, which helps the particles to find the sedimentation channel faster, reduces the hindrance of the particles in the sedimentation process, and thus more effectively utilizes the gravity to realize sedimentation.
[0008] Preferably, the collection and cleaning mechanism includes an L-shaped rod, which is fixedly connected to the outer wall of the circular toothed ring plate. The inner wall of the filter bucket has a first arc groove, and a plurality of first sliders are slidably connected inside the first arc groove. A fixed rod is fixedly connected between every two first sliders. A first scraper is fixedly connected to the top of the first slider. The first scraper is in contact with the inner wall of the filter bucket. The L-shaped rod is slidably connected to one end of the first scraper. When the circular toothed ring plate rotates, it drives the first scraper to rotate through the L-shaped rod. The rotation of the first scraper scrapes the inner wall of the centrifuge bucket. Thus, the particles adhering to the filter plate on the centrifuge bucket can be scraped off by the rotation of the plurality of first scrapers to avoid affecting the flow of enzymes.
[0009] Preferably, a baffle is fixedly connected to the bottom of the L-shaped rod, and a convex ball is fixedly connected to the inner wall of the bottom side of the filter bucket. The baffle contacts the convex ball, and a first spring is wound around the outer wall of the rectangular shaft. The first spring is located at the bottom of the filter bucket. When the baffle abuts against the convex ball, the centrifuge bucket moves on the outer wall of the rectangular shaft, thereby causing the centrifuge bucket to shake up and down. The up and down shaking of the centrifuge bucket can promote the shedding of particles adhering to the inner wall of the filter plate, avoiding the normal flow of enzymes due to excessive particles.
[0010] Preferably, the filter barrel is provided with a filtration mechanism inside. The filtration mechanism includes a second arc groove, which forms the inner wall of the filter barrel. A filter screen is rotatably connected inside the second arc groove. An inverted T-shaped scraper is fixedly connected to the bottom of the centrifuge barrel. The inverted T-shaped scraper contacts the filter screen. When the centrifuge barrel rotates, it will drive the inverted T-shaped scraper to rotate, thereby scraping off the particles on the filter screen to prevent excessive particles from affecting the normal use of the filter screen.
[0011] Preferably, a third arc groove is provided at the bottom of the second arc groove, and a second slider is slidably connected inside the third arc groove. A second spring is fixedly connected between the top of the second slider and the bottom of the filter screen. When the centrifuge bucket moves downward, the filter screen will be driven to shake up and down by the inverted T-shaped scraper, thereby reducing the clogging of the filter screen.
[0012] Preferably, a first inclined block is fixedly connected to the top of the third arc groove, and a second inclined block is fixedly connected to the bottom of the filter screen. When the filter screen moves downward, it will drive the first inclined block to move downward. The first inclined block will rotate under the action of the second inclined block, thereby driving the filter screen to rotate. Therefore, the clogging of the filter screen can be reduced by realizing the displacement of the filter screen. When the first inclined block and the second inclined block are separated, the filter screen will return to its original state.
[0013] The present invention, by adopting the above technical solution, can bring the following beneficial effects: 1. This convenient discharge device for vine tea enzyme processing production line uses centrifugal force to separate particulate impurities through the high-speed rotation of the centrifuge barrel, achieving efficient and convenient removal of vine tea enzyme particles. The particles are blocked on the inner wall of the centrifuge barrel, preventing the enzyme from being discharged together, thus achieving the effect of separating vine tea enzyme particles. Furthermore, the irregular movement of the vine tea enzyme after intermittent stirring by the stirring rod helps the particles find a sedimentation channel more quickly, reducing the obstruction encountered by the particles during the sedimentation process, thereby more effectively utilizing gravity to achieve sedimentation.
[0014] 2. The convenient discharge device used in this vine tea enzyme processing production line scrapes off the particles adhering to the filter plate inside the centrifuge tank by rotating the first scraper, thereby avoiding the normal flow of enzymes due to the filter plate being blocked by particles, so as to avoid affecting normal production and processing.
[0015] 3. The convenient discharge device used in this vine tea enzyme processing production line can promote the shedding of particles adhering to the inner wall of the filter plate by shaking the centrifuge barrel up and down, thereby improving the filtration effect of the filter plate on enzyme particles and avoiding the normal flow of enzymes due to excessive particles.
[0016] 4. The convenient discharge device used in this vine tea enzyme processing production line can scrape off the particles on the top of the filter screen by rotating the inverted T-shaped scraper, so as to avoid the particles clogging the filter screen and affecting the flow of enzymes. Furthermore, the up-and-down movement and displacement of the filter screen can cause the particles on the top of the filter screen to shake, thereby avoiding the normal use of the filter screen due to excessive particles. Attached Figure Description
[0017] Figure 1 This is a front view of the structure of the present invention; Figure 2 This is a first cross-sectional view of the structure of the present invention; Figure 3 This is a second cross-sectional view of the structure of the present invention; Figure 4 This is a third sectional view of the structure of the present invention; Figure 5 This is the fourth sectional view of the structure of the present invention; Figure 6 This is an enlarged view of section A of the structure of the present invention; Figure 7 This is the fifth sectional view of the structure of the present invention; Figure 8 This is an enlarged view of section B of the structure of the present invention.
[0018] In the diagram: 1. Filter barrel; 2. Inlet; 3. Outlet; 4. Conveyor belt; 5. Separation mechanism; 511. Motor; 512. Rectangular shaft; 513. Centrifuge barrel; 514. Filter plate; 515. First rotating rod; 516. Connecting plate; 517. Second rotating rod; 518. Connecting rod; 519. Circular toothed ring plate; 520. Square plate; 521. Slide groove; 522. Connecting block; 523. Stirring rod; 6. Collection and cleaning mechanism 611, L-shaped rod; 612, first arc groove; 613, first slider; 614, first scraper; 615, fixed rod; 616, baffle; 617, convex ball; 618, first spring; 7, filtering mechanism; 711, second arc groove; 712, filter screen; 713, inverted T-shaped scraper; 714, third arc groove; 715, second slider; 716, second spring; 717, first inclined block; 718, second inclined block. Detailed Implementation
[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0020] Please see Figures 1-8One embodiment of the present invention is: a convenient discharge device for a vine tea enzyme processing production line, comprising a filter barrel 1, an inlet 2 connected to the top of the filter barrel 1, a discharge port 3 connected to the outer wall of the filter barrel 1, a conveyor belt 4 at the bottom of the discharge port 3, and a separation mechanism 5 inside the filter barrel 1. The separation mechanism 5 includes a motor 511, which is fixedly connected to the bottom of the filter barrel 1. The conveying end of the motor 511 is fixedly connected to a rectangular shaft 512 via a coupling. A centrifuge barrel 513 is movably sleeved on the outer wall of the rectangular shaft 512. The rectangular shaft 512 is configured to drive the centrifuge barrel 513 into the filter barrel. While rotating, the centrifuge tank 513 can also move up and down. The top of the centrifuge tank 513 is rotatably connected to the top inner wall of the filter tank 1 via a limiting spring. The limiting spring is used to limit the movement of the centrifuge tank 513. The outer wall of the centrifuge tank 513 is circumferentially equipped with several filter plates 514. The filter plates 514 are used to block and filter particulate matter, preventing it from being discharged with the enzyme. The rotation of the rectangular shaft 512 can drive the centrifuge tank 513 to rotate, thereby centrifuging to make the particles stick to the filter plates 514, preventing the particles from being discharged with the enzyme liquid. The top of the rectangular shaft 512... A first rotating rod 515 is fixedly connected to the rectangular shaft 512. A connecting plate 516 is rotatably connected to the top of the first rotating rod 515. When the rectangular shaft 512 rotates, the rotation of the first rotating rod 515 causes one end of the connecting plate 516 to rotate eccentrically, thereby causing the connecting block 522 to slide inside the slide groove 521. This also causes the square plate 520 to rotate intermittently. The intermittent rotation of the square plate 520 causes the second rotating rod 517 to rotate intermittently, which in turn causes the stirring rod 523 to rotate intermittently. The intermittent rotation of the stirring rod 523 allows the particles to be distributed regularly, thereby improving the sedimentation effect. A second rotating rod 517 is rotatably connected to the top inner wall of the filter barrel 1. A connecting rod 518 is fixedly connected to the outer wall of the second rotating rod 517. A circular toothed plate 519 is fixedly connected to one end of the connecting rod 518. A square plate 520 is fixedly connected to the bottom of the second rotating rod 517. A sliding groove 521 is opened at the bottom of the square plate 520. A connecting block 522 is slidably connected inside the sliding groove 521. A connecting plate 516 is rotatably connected to the bottom of the connecting block 522. A stirring rod 523 is fixedly connected to the outer wall of the second rotating rod 517. The stirring of the stirring rod 523 can make the particles distribute regularly, thereby improving the sedimentation effect.
[0021] Working principle: Vine tea enzyme is added through inlet 2, allowing it to flow into the centrifuge tank 513. The motor 511 is started, driving the rectangular shaft 512 to rotate. This rotation of the rectangular shaft 512 causes the centrifuge tank 513 to rotate. The rotation of the centrifuge tank 513 throws particulate matter from the vine tea enzyme onto the filter plate 514 and the bottom of the centrifuge tank 513, allowing the vine tea enzyme to flow out from the filter plate 514, thus blocking the particulate matter. When the rectangular shaft 512 rotates, it... The first rotating rod 515 drives the connecting plate 516 to rotate eccentrically, which allows the connecting block 522 to slide and rotate intermittently inside the groove 521. Therefore, the connecting block 522 can drive the circular toothed plate 519 to rotate intermittently, which in turn drives the second rotating rod 517 at the top to rotate intermittently. The second rotating rod 517 then drives the stirring rod 523 to rotate intermittently. The stirring of the stirring rod 523 can make the particles distribute regularly, thereby improving the sedimentation effect.
[0022] Please see Figures 1-8 Based on the above embodiments, in another embodiment of the present invention, the collection and cleaning mechanism 6 includes an L-shaped rod 611, which is fixedly connected to the outer wall of the circular toothed plate 519. A first arc groove 612 is formed on the inner wall of the filter bucket 1. A plurality of first sliders 613 are slidably connected inside the first arc groove 612. A fixing rod 615 is fixedly connected between every two first sliders 613. A first scraper 614 is fixedly connected to the top of each first slider 613. The first scraper 614 is in contact with the inner wall of the filter bucket 1. One end of the L-shaped rod 611 is slidably connected to the first scraper 614. When the circular toothed plate 519 rotates, it drives the first scraper 614 to rotate via the L-shaped rod 611. The rotation of the first scraper 614 scrapes away debris from the inner wall of the centrifuge bucket 513. The particles adhering to the filter plate 514 on the centrifuge bucket 513 can be scraped off by rotating several first scrapers 614 to avoid affecting the flow of enzymes. A baffle 616 is fixedly connected to the bottom of the L-shaped rod 611, and a convex ball 617 is fixedly connected to the bottom inner wall of the filter bucket 1. The baffle 616 contacts the convex ball 617. A first spring 618 is wound around the outer wall of the rectangular shaft 512 and is located at the bottom of the filter bucket 1. When the baffle 616 contacts the convex ball 617, the centrifuge bucket 513 will move on the outer wall of the rectangular shaft 512, thereby causing the centrifuge bucket 513 to shake up and down. The up and down shaking of the centrifuge bucket 513 can promote the detachment of particles adhering to the inner wall of the filter plate 514, and avoid the normal flow of enzymes due to excessive particles.
[0023] Working principle: When the circular gear plate 519 rotates, it rotates via the L-shaped rod 611. The rotation of the L-shaped rod 611 drives the first scraper 614 to rotate. The rotation of the first scraper 614 drives the first slider 613 to rotate inside the first arc groove 612. This, in turn, drives the fixed rod 615 to move via the first slider 613. The fixed rod 615 then drives another first scraper 614 to rotate, thus enabling the rotation of multiple first scrapers 614. 14 can scrape the inner wall of the filter plate 514, and when the L-shaped rod 611 rotates, it will drive the baffle 616 to rotate. When the baffle 616 rotates, it will contact the convex ball 617. Under the action of the baffle 616, the convex ball 617 drives the centrifuge barrel 513 to move up and down, thereby driving the centrifuge barrel 513 to shake up and down. The up and down shaking of the centrifuge barrel 513 can promote the shedding of particles adhering to the inner wall of the filter plate 514, and avoid the normal flow of enzymes due to excessive particles.
[0024] Please see Figures 1-8 Based on the above embodiments, in another embodiment of the present invention, a filter mechanism 7 is provided inside the filter barrel 1. The filter mechanism 7 includes a second arc groove 711, which forms part of the inner wall of the filter barrel 1. A filter screen 712 is rotatably connected inside the second arc groove 711. An inverted T-shaped scraper 713 is fixedly connected to the bottom of the centrifuge barrel 513. The inverted T-shaped scraper 713 contacts the filter screen 712. When the centrifuge barrel 513 rotates, it will drive the inverted T-shaped scraper 713 to rotate, thereby scraping off the particles on the filter screen 712 to prevent excessive particles from affecting the normal use of the filter screen 712. A third arc groove 714 is provided at the bottom of the second arc groove 711. A second slider 715 is slidably connected inside the third arc groove 714. The top of the second slider 715 is connected to the bottom of the filter screen 712. A second spring 716 is fixedly connected between the parts. When the centrifuge tank 513 moves downward, the inverted T-shaped scraper 713 drives the filter screen 712 to shake up and down, thereby reducing the clogging of the filter screen 712. A first inclined block 717 is fixedly connected to the top of the third arc groove 714, and a second inclined block 718 is fixedly connected to the bottom of the filter screen 712. When the filter screen 712 moves downward, it drives the first inclined block 717 to move downward. The first inclined block 717 will rotate under the action of the second inclined block 718, thereby driving the filter screen 712 to rotate. Therefore, the clogging of the filter screen 712 can also be reduced by realizing the displacement of the filter screen 712. When the first inclined block 717 and the second inclined block 718 are separated, the filter screen 712 will return to its original state.
[0025] Working principle: After centrifugal separation, the vine tea enzyme flows out through filter plate 514 and then through filter screen 712, exiting from discharge port 3. Over time, particles accumulate on filter screen 712, easily causing blockage and affecting enzyme flow. When the centrifuge tank 513 rotates, it drives the inverted T-shaped scraper 713 to rotate, thus scraping off the particles on filter screen 712 to prevent excessive particles from affecting its normal use. When the centrifuge tank 513 moves downwards, the inverted T-shaped scraper 713 drives... The filter screen 712 moves up and down, which can reduce the clogging of the filter screen 712. When the filter screen 712 moves downward, it will drive the first inclined block 717 to move downward. The first inclined block 717 will rotate under the action of the second inclined block 718, which can drive the filter screen 712 to rotate. This displacement of the filter screen 712 can also reduce the clogging of the filter screen 712. When the first inclined block 717 separates from the second inclined block 718, the filter screen 712 will return to its original state.
[0026] This invention provides a convenient discharge device for a vine tea enzyme processing production line. Many methods and approaches exist to implement this technical solution; the above description is merely a preferred embodiment of the invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of this invention, and these improvements and modifications should also be considered within the scope of protection of this invention. All components not explicitly stated in this embodiment can be implemented using existing technologies.
Claims
1. A convenient discharge device for a vine tea enzyme processing production line, comprising a filter barrel (1), characterized in that: The top of the filter barrel (1) is connected to a feed inlet (2), the outer wall of the filter barrel (1) is connected to a discharge outlet (3), and the bottom of the discharge outlet (3) is connected to a conveyor belt (4). The filter barrel (1) is equipped with a separation mechanism (5), which includes a motor (511). The motor (511) is fixedly connected to the bottom of the filter barrel (1). The conveying end of the motor (511) is fixedly connected to a rectangular shaft (512) through a coupling. A centrifuge barrel (513) is movably sleeved on the outer wall of the rectangular shaft (512). The top of the centrifuge barrel (513) is rotatably connected to the top inner wall of the filter barrel (1) through a limiting spring. Several filter plates (514) are arranged circumferentially on the outer wall of the centrifuge barrel (513).
2. The convenient discharge device for a vine tea enzyme processing production line according to claim 1, characterized in that: The top of the rectangular shaft (512) is fixedly connected to a first rotating rod (515), and the top of the first rotating rod (515) is rotatably connected to a connecting plate (516).
3. The convenient discharge device for a vine tea enzyme processing production line according to claim 2, characterized in that: The filter barrel (1) is rotatably connected to the top inner wall of a second rotating rod (517), and a connecting rod (518) is fixedly connected to the outer wall of the second rotating rod (517). A circular toothed plate (519) is fixedly connected to one end of the connecting rod (518), and a square plate (520) is fixedly connected to the bottom of the second rotating rod (517). A sliding groove (521) is provided at the bottom of the square plate (520), and a connecting block (522) is slidably connected inside the sliding groove (521). The connecting plate (516) is rotatably connected to the bottom of the connecting block (522), and a stirring rod (523) is fixedly connected to the outer wall of the second rotating rod (517).
4. The convenient discharge device for a vine tea enzyme processing production line according to claim 3, characterized in that: The collection and cleaning mechanism (6) includes an L-shaped rod (611), which is fixedly connected to the outer wall of the circular toothed plate (519). The inner wall of the filter barrel (1) is provided with a first arc groove (612). Several first sliders (613) are slidably connected inside the first arc groove (612). A fixing rod (615) is fixedly connected between every two first sliders (613). A first scraper (614) is fixedly connected to the top of the first slider (613). The first scraper (614) is in contact with the inner wall of the filter barrel (1). The L-shaped rod (611) is slidably connected to one end of the first scraper (614).
5. The convenient discharge device for a vine tea enzyme processing production line according to claim 4, characterized in that: A baffle (616) is fixedly connected to the bottom of the L-shaped rod (611), and a convex ball (617) is fixedly connected to the bottom inner wall of the filter barrel (1). The baffle (616) contacts the convex ball (617), and a first spring (618) is wound around the outer wall of the rectangular shaft (512). The first spring (618) is located at the bottom of the filter barrel (1).
6. The convenient discharge device for a vine tea enzyme processing production line according to claim 5, characterized in that: The filter barrel (1) is provided with a filter mechanism (7) inside. The filter mechanism (7) includes a second arc groove (711). The second arc groove (711) is provided with the inner wall of the filter barrel (1). A filter screen (712) is rotatably connected inside the second arc groove (711). An inverted T-shaped scraper (713) is fixedly connected to the bottom of the centrifuge barrel (513). The inverted T-shaped scraper (713) is in contact with the filter screen (712).
7. The convenient discharge device for a vine tea enzyme processing production line according to claim 6, characterized in that: The bottom of the second arc groove (711) is provided with a third arc groove (714), and a second slider (715) is slidably connected inside the third arc groove (714). A second spring (716) is fixedly connected between the top of the second slider (715) and the bottom of the filter screen (712).
8. The convenient discharge device for a vine tea enzyme processing production line according to claim 7, characterized in that: The top of the third arc groove (714) is fixedly connected to a first inclined block (717), and the bottom of the filter screen (712) is fixedly connected to a second inclined block (718).
Citation Information
Patent Citations
Convenient discharging device for ampelopsis grossedentata enzyme processing production line
CN221397854U