Grain-combined probiotic light food product and probiotic detection and extraction device
By designing a probiotic detection and extraction device for cereal-bound probiotic light food products, the device includes a grinding chamber, flexible cloth, extended strips, swing rods and filter plate systems, the problem of filter mesh blockage during probiotic extraction in the prior art is solved, and efficient raw material grinding and filtration is achieved.
Patent Information
- Application Number
- CN202510258589.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The prior art requires drying and grinding of raw materials during the probiotic extraction process, and then filtration, resulting in the filter screen being easily blocked during the filtration process, affecting efficiency.
A probiotic detection and extraction device for grain-bound probiotic light food products is designed, which includes a grinding chamber, flexible fabric, extension strip, swing rod and filter plate system. Through the design of flexible fabric and swing rod, the raw materials are avoided during the grinding and filtration process.
It is achieved to avoid filter clogging during probiotic extraction, improve filtration efficiency, and ensure uniform grinding and filtration of raw materials through the design of flexible fabrics and swing rods.
Smart Images

Figure CN120092969A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of detection and extraction, and in particular to a probiotic light meal product combined with cereals and a probiotic detection and extraction device. Background Art
[0002] Light food refers to carbohydrates with a low glycemic index, low-fat meat, high-quality protein and green leafy vegetables. And "light food" is not a specific food, but a form of any food. Light food recipes are based on low sugar, low fat and low salt. As long as the food is balanced, natural, light, low in calories and does not add burden to the body, it can be used as light food ingredients.
[0003] In the prior art, the patent number is CN219490001U, and the name is a probiotic metabolite extraction device, including a fermentation tank, the fermentation tank is connected to a centrifuge, the outlet end of the centrifuge is connected to a high-pressure tank, the high-pressure tank is respectively connected to a pressure pump and a storage tank, the end of the high-pressure tank is connected to a diversion tank, an impact plate is provided in the diversion tank, a postbiotic collection tank is connected to the bottom of the diversion tank, an organic solvent collection tank is connected to the top of the diversion tank, a condenser is provided in the organic solvent collection tank, the organic solvent collection tank is connected to a vacuum pump and a storage tank, after the fermented probiotics enter the high-pressure tank and undergo high temperature and high pressure, during the injection process, due to the sudden drop in pressure, the cells expand and rupture, so that the organic solvent and the postbiotics can be quickly separated, and finally, through the action of the separation tank, the vaporized organic solvent is separated from the postbiotics, thereby achieving the purpose of quickly and efficiently extracting the postbiotics, and the organic solvent generated in the whole process can be reused.
[0004] However, when extracting probiotics, the raw materials need to be dried and then ground, and then the ground materials need to be filtered. This requires two steps, and filtering a large amount of raw materials at the same time will quickly cause the filter to become clogged, affecting the efficiency of filtration. Summary of the invention
[0005] The purpose of the present invention is to provide a probiotic light meal product combined with cereals and a probiotic detection and extraction device to solve the problems raised in the above-mentioned background technology.
[0006] To achieve the above object, the present invention provides the following technical solution: a probiotic light food product combined with cereals, comprising:
[0007] Grains, milk, non-dairy foods and fruits. Non-dairy foods include meat, fruits, vegetables, and seafood. Fruits include apples, blueberries and strawberries. Grains include quinoa, oats, konjac, and nuts.
[0008] A probiotic detection and extraction device for a probiotic light meal product combined with grains, comprising a grinding bin, a flexible cloth is arranged on the top of the grinding bin, a docking port is arranged on the top of the flexible cloth, an extension strip is arranged on the surface of the grinding bin, a swing rod is arranged on the surface of the grinding bin, supporting plates are arranged at both ends of the grinding bin, a second filter plate and a first filter screen are arranged on the top of the supporting plate, plug-in grooves are opened on the surfaces of the first filter screen and the second filter plate, and a rectangular frame is plugged into the plug-in grooves.
[0009] Preferably, the flexible fabric at the bottom of the docking port is flexible, and the interior of the flexible fabric is communicated with the interior of the grinding bin, extension strips are fixed on both sides of the grinding bin, a first plug-in rod is fixed to the end of the grinding bin, a first arc strip is provided at the other end of the first plug-in rod, a sliding groove is provided on the surface of the first arc strip, the end of the first plug-in rod is plugged into the sliding groove, and the end of the first plug-in rod can move in the sliding groove, a second support rod is fixed to the end of the first arc strip, and two groups of second support rods are provided.
[0010] Preferably, a plug-in groove is provided at the end of the grinding bin, the plug-in groove is located inside the extension strip, a first support rod is fixed to the surface of the docking interface, a material drop groove is provided at the bottom of the grinding bin, a grinding roller is provided inside the grinding bin, a material guide plate is provided inside the grinding bin, the material guide plate is located on the top of the grinding roller, and the end of the grinding roller is connected to a driving device, which drives the grinding roller to rotate.
[0011] Preferably, a first extension block is fixed to the end of the second support rod, a fixed seat is fixed to the end of the first extension block, a motor is connected to the surface of the fixed seat, a second extension block is fixed to the surface of the fixed seat, a third support rod is fixed to the surface of the fixed seat, a supporting plate is fixed to the top of the third support rod, a swing rod is provided on the surface of the fixed seat, the swing rod is inserted into the inside of the fixed seat, the swing rod is connected to the motor, and the motor can drive the swing rod to rotate.
[0012] Preferably, a cylinder is fixed on the surface of the second extension block, and the piston rod at the end of the cylinder is connected to the bottom of the support plate. The third support rod at the bottom of the support plate is flexible, and the cylinder can push the support plate to move up and down. When the support plate moves up and down, the third support rod is deformed.
[0013] Preferably, a second filter plate is provided on the top of the supporting plate, a first filter screen is provided on one side of the second filter plate, the second filter plate is inserted in the plug-in slot, the second filter plate can move in the plug-in slot, a second arc-shaped bar is fixed to the end of the second filter plate, a groove is opened on the surface of the second arc-shaped bar, a second plug-in rod is inserted in the groove, the second plug-in rod can move in the groove, a cross bar is fixed to the end of the first filter screen, and the end of the second plug-in rod is connected to the cross bar surface of the first filter screen surface.
[0014] Preferably, sealing plates are fixed to the ends of the first filter screen and the second filter plate. When the first filter screen and the second filter plate are inserted into the plug-in groove, the sealing plate is held at the end of the plug-in groove. Plug-in grooves are provided on the surfaces of the first filter screen and the second filter plate. Rectangular frames are inserted into the plug-in grooves. Rectangular grooves are provided on the surface of the rectangular frame. A partition is provided in the rectangular groove. The rectangular frame in the plug-in groove on the surface of the first filter screen is pushed so that the rectangular frame moves to the plug-in groove on the surface of the second filter plate, and the second filter plate is shielded by the partition.
[0015] Preferably, the partition can move in the rectangular groove on the surface of the rectangular frame. A round hole is opened on the surface of the rectangular frame, and a vertical rod is inserted into the round hole. Limiting plates are fixed at both ends of the vertical rod. The vertical rod can move in the round hole. The surface of the vertical rod is connected to the surface of the partition, and the partition moves with the vertical rod.
[0016] Preferably, a telescopic rod is fixed to the bottom of the partition, and the telescopic rod moves with the partition, and a guide plate is fixed to the bottom of the telescopic rod, and the guide plate moves with the telescopic rod, and the first filter screen and the second filter plate can rotate along the second plug-in rod, and the first filter screen and the second filter plate are located on the top of the supporting plate after being moved out of the plug-in groove, and after the first filter screen and the second filter plate are rotated, the partition and the rectangular frame in the plug-in groove on the surface of the first filter screen and the second filter plate rotate with the first filter screen and the second filter plate, and after the guide plate rotates with the rectangular frame and the partition, under the action of gravity, the guide plate approaches the partition, so that the telescopic rod is inserted into the interior of the telescopic rod, and the vertical rod moves in the circular hole with the guide plate, and the limit plate plays a limiting role, and the raw materials inside the second filter plate and the first filter screen fall on the surface of the guide plate and slide from the surface of the guide plate to the surface of the supporting plate.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] The docking port proposed in the present invention is connected to the raw material feeding equipment, the raw material enters the interior of the grinding bin through the docking port and the flexible cloth, the guide plate inside the grinding bin makes the raw material concentrate between the grinding rollers, the raw material is ground by the grinding rollers, a second filter plate is plugged into the plug-in groove, the ground raw material falls onto the surface of the second filter plate, is filtered by the second filter plate, and the filtered raw material falls through the drop chute, swing rods are fixed at both ends of the grinding bin, the swing rods are plugged into the interior of the fixed seat, the swing rods are connected to the motor, the motor drives the swing rods to rotate back and forth, so that the grinding bin can move along the bottom of the swing rods The filter screen is moved to the interior of the grinding bin and can filter the raw materials immediately after the filter screen is moved. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0020] Figure 2 This is a structural schematic diagram from another viewing angle of the present invention.
[0021] Figure 3 This is a schematic diagram of the grinding chamber structure of the present invention.
[0022] Figure 4 This is a schematic structural diagram of the grinding chamber of the present invention from another viewing angle.
[0023] Figure 5 This is a schematic diagram of the cross-sectional structure of the grinding chamber of the present invention.
[0024] Figure 6 It is a schematic diagram of the filter plate structure of the present invention.
[0025] Figure 7 This is a schematic structural diagram of the filter plate of the present invention from another viewing angle.
[0026] Figure 8 It is a schematic diagram of the partition structure of the present invention.
[0027] Fig. 9 It is a schematic diagram of the guide plate structure of the present invention.
[0028] Fig.10 It is a schematic diagram of the telescopic rod structure of the present invention.
[0029] Fig.11 for Figure 6 A schematic diagram of the enlarged structure in the middle.
[0030] In the figure: grinding bin 1, flexible cloth 2, docking interface 3, extension strip 4, plug-in slot 5, first support rod 6, first plug-in rod 7, first arc strip 8, slide slot 9, second support rod 11, blanking chute 12, guide plate 13, grinding roller 14, sealing plate 15, first filter screen 16, supporting plate 17, second filter plate 18, swing rod 19, cylinder 20, first extension block 21, second extension block 22, fixed seat 23, motor 24, third support rod 25, rectangular frame 26, partition 27, vertical rod 28, limit plate 29, guide plate 30, telescopic rod 31, round hole 32, second plug-in rod 33, second arc strip 34, horizontal bar 35, plug-in slot 36. DETAILED DESCRIPTION
[0031] In order to make the purpose and technical solution of the present invention clearly and completely described, and the advantages more clearly understood, the embodiments of the present invention are further described in detail with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, rather than all of the embodiments, and are only used to explain the embodiments of the present invention, and are not used to limit the embodiments of the present invention. All other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0032] See also Figures 1 to 11 , the present invention provides a technical solution:
[0033] Embodiment 1: A probiotic detection and extraction device for a probiotic light food product combined with cereals, comprising a grinding bin 1, a flexible cloth 2 is provided on the top of the grinding bin 1, a docking port 3 is provided on the top of the flexible cloth 2, an extension strip 4 is provided on the surface of the grinding bin 1, a swing rod 19 is provided on the surface of the grinding bin 1, supporting plates 17 are provided at both ends of the grinding bin 1, a second filter plate 18 and a first filter screen 16 are provided on the top of the supporting plate 17, plug-in grooves 36 are provided on the surfaces of the first filter screen 16 and the second filter plate 18, a rectangular frame 26 is plugged into the plug-in grooves 36, when unfiltered raw materials remain on the surface of the second filter plate 18, the rectangular frame 26 located in the plug-in grooves 36 on the surface of the first filter screen 16 is pushed, so that the rectangular frame 26 moves to the plug-in grooves 36 on the surface of the second filter plate 18, and the second filter plate 18 is blocked by the partition plate 27 to prevent the raw materials from falling during the movement of the second filter plate 18.
[0034] Embodiment 2: On the basis of Embodiment 1, the flexible fabric 2 at the bottom of the docking interface 3 is flexible, and the interior of the flexible fabric 2 is communicated with the interior of the grinding chamber 1, extension strips 4 are fixed on both sides of the grinding chamber 1, a first plug-in rod 7 is fixed to the end of the grinding chamber 1, a first arc strip 8 is provided at the other end of the first plug-in rod 7, a slide groove 9 is provided on the surface of the first arc strip 8, the end of the first plug-in rod 7 is plugged into the slide groove 9, and the end of the first plug-in rod 7 can move in the slide groove 9, a second support rod 11 is fixed to the end of the first arc strip 8, and two groups of second support rods 11 are provided.
[0035] A plug-in slot 5 is provided at the end of the grinding bin 1, and the plug-in slot 5 is located inside the extension strip 4. A first support rod 6 is fixed to the surface of the docking interface 3. A material drop slot 12 is provided at the bottom of the grinding bin 1. A grinding roller 14 is provided inside the grinding bin 1. A guide plate 13 is provided inside the grinding bin 1, and the guide plate 13 is located on the top of the grinding roller 14. The end of the grinding roller 14 is connected to a driving device, and the driving device drives the grinding roller 14 to rotate. The guide plate 13 inside the grinding bin 1 makes the raw materials concentrate between the grinding rollers 14, and the raw materials are ground by the grinding rollers 14. A second filter plate 18 is plugged into the plug-in slot 5, and the ground raw materials fall onto the surface of the second filter plate 18 and are filtered by the second filter plate 18.
[0036] A first extension block 21 is fixed to the end of the second support rod 11, a fixing seat 23 is fixed to the end of the first extension block 21, a motor 24 is connected to the surface of the fixing seat 23, a second extension block 22 is fixed to the surface of the fixing seat 23, a third support rod 25 is fixed to the surface of the fixing seat 23, a supporting plate 17 is fixed to the top of the third support rod 25, a swing rod 19 is provided on the surface of the fixing seat 23, the swing rod 19 is inserted into the inside of the fixing seat 23, the swing rod 19 is connected to the motor 24, and the motor 24 can drive the swing rod 19 to rotate. A cylinder 20 is fixed to the surface of the extension block 22, and a piston rod at the end of the cylinder 20 is connected to the bottom of the support plate 17. The third support rod 25 at the bottom of the support plate 17 is flexible, and the cylinder 20 can push the support plate 17 to lift. When the support plate 17 is lifted, the third support rod 25 is deformed. A second filter plate 18 is arranged on the top of the support plate 17, and a first filter screen 16 is arranged on one side of the second filter plate 18. The second filter plate 18 is plugged into the plug-in slot 5, and the second filter plate 18 can move in the plug-in slot 5. A second arc-shaped filter screen 16 is fixed to the end of the second filter plate 18. The surface of the second arc-shaped strip 34 is provided with a groove, in which a second plug-in rod 33 is inserted, and the second plug-in rod 33 can move in the groove. A horizontal strip 35 is fixed to the end of the first filter screen 16, and the end of the second plug-in rod 33 is connected to the surface of the horizontal strip 35 on the surface of the first filter screen 16. The ends of the first filter screen 16 and the second filter plate 18 are both fixed with a sealing plate 15. When the first filter screen 16 and the second filter plate 18 are inserted into the plug-in groove 5, the sealing plate 15 is supported at the end of the plug-in groove 5. The surfaces of the first filter screen 16 and the second filter plate 18 are both provided with plug-in grooves. 36, a rectangular frame 26 is inserted in the plug-in groove 36, a rectangular groove is opened on the surface of the rectangular frame 26, a partition 27 is arranged in the rectangular groove, the rectangular frame 26 in the plug-in groove 36 on the surface of the first filter screen 16 is pushed, so that the rectangular frame 26 moves to the plug-in groove 36 on the surface of the second filter plate 18, and the second filter plate 18 is blocked by the partition 27. The partition 27 can move in the rectangular groove on the surface of the rectangular frame 26, and a circular hole 32 is opened on the surface of the rectangular frame 26, a vertical rod 28 is inserted in the circular hole 32, and limit plates 29 are fixed at both ends of the vertical rod 28.
[0037] The vertical rod 28 can move in the circular hole 32, the surface of the vertical rod 28 is connected to the surface of the partition 27, the partition 27 moves with the vertical rod 28, a telescopic rod 31 is fixed to the bottom of the partition 27, the telescopic rod 31 moves with the partition 27, a guide plate 30 is fixed to the bottom of the telescopic rod 31, the guide plate 30 moves with the telescopic rod 31, the first filter 16 and the second filter plate 18 can rotate along the second plug-in rod 33, the first filter 16 and the second filter plate 18 are moved out of the plug-in slot 5 and are located at the top of the supporting plate 17, after the first filter 16 and the second filter plate 18 are rotated, the partition 27 and the rectangular frame 26 in the plug-in slot 36 on the surface of the first filter 16 and the second filter plate 18 move along the first filter The net 16 and the second filter plate 18 rotate, and the guide plate 30 rotates with the rectangular frame 26 and the partition 27. Under the action of gravity, the guide plate 30 approaches the partition 27, so that the telescopic rod 31 is inserted into the inside of the telescopic rod 31, and the vertical rod 28 moves in the circular hole 32 with the guide plate 30, and the limiting plate 29 plays a limiting role. The raw materials inside the second filter plate 18 and the first filter net 16 fall on the surface of the guide plate 30, and slide from the surface of the guide plate 30 to the surface of the supporting plate 17. The second filter plate 18 faces the surface of the supporting plate 17, and the partition 27 moves inside the rectangular frame 26. The guide plate 30 moves with the partition 27, so that the raw materials in the second filter plate 18 fall on the surface of the guide plate 30.
[0038] The docking port 3 is connected to the raw material feeding equipment, and the raw material enters the interior of the grinding bin 1 through the docking port 3 and the flexible cloth 2. The guide plate 13 inside the grinding bin 1 makes the raw material concentrate between the grinding rollers 14, and the raw material is ground by the grinding rollers 14. A second filter plate 18 is plugged into the plug-in groove 5, and the ground raw material falls onto the surface of the second filter plate 18, and is filtered by the second filter plate 18. The filtered raw material falls through the drop chute 12, and swing rods 19 are fixed at both ends of the grinding bin 1. The swing rod 19 is plugged into the interior of the fixed seat 23, and the swing rod 19 is connected to the motor 24. The motor 24 drives the swing rod 19 to reciprocate, so that the grinding bin 1 can swing along the bottom of the swing rod 19, so that the raw material will not be blocked during the grinding and filtering process, and a first plug-in rod 7 is fixed on the surface of the grinding bin 1, and the end of the first plug-in rod 7 is located in the slide groove 9. During the swinging process of the grinding bin 1, the first plug-in rod 7 moves in the slide groove 9, and when there is residual on the surface of the second filter plate 18 When filtering raw materials, the rectangular frame 26 in the plug-in groove 36 on the surface of the first filter screen 16 is pushed, so that the rectangular frame 26 moves to the plug-in groove 36 on the surface of the second filter plate 18, and the second filter plate 18 is blocked by the partition 27 to prevent the raw materials from falling during the movement of the second filter plate 18. The first filter screen 16 moves to the interior of the grinding bin 1 and can immediately play a filtering role. When the first filter screen 16 swings with the grinding bin 1, the second plug-in rod 33 on the surface of the horizontal bar 35 can move in the groove on the surface of the second arc-shaped bar 34, and after the second filter plate 18 moves to the top of the supporting plate 17, the second filter plate 18 rotates around the second plug-in rod 33, so that the second filter plate 18 faces the surface of the supporting plate 17, the partition 27 moves inside the rectangular frame 26, and the guide plate 30 moves with the partition 27, so that the raw materials in the second filter plate 18 fall on the surface of the guide plate 30. Since the middle of the guide plate 30 is sharp, the raw materials fall along the guide plate 30 to the surface of the supporting plate 17.
[0039] Although the above describes the illustrative specific implementation methods of the present application so that technicians in this technical field can understand the present application, the present application is not limited to the scope of the specific implementation methods. For ordinary technicians in this technical field, as long as various changes are within the spirit and scope of the present application defined and determined by the attached claims, all application creations using the concept of the present application are protected.
Claims
1. A probiotic light meal product combined with cereals, characterized in that: include: Grains, milk, non-dairy foods and fruits. Non-dairy foods include meat, fruits, vegetables, and seafood. Fruits include apples, blueberries and strawberries. Grains include quinoa, oats, konjac, and nuts.
2. A probiotic detection and extraction device for a probiotic light food product combined with cereals, characterized in that: The invention comprises a grinding chamber (1), wherein a flexible cloth (2) is arranged on the top of the grinding chamber (1), a docking port (3) is arranged on the top of the flexible cloth (2), an extension strip (4) is arranged on the surface of the grinding chamber (1), a swing rod (19) is arranged on the surface of the grinding chamber (1), supporting plates (17) are arranged at both ends of the grinding chamber (1), a second filter plate (18) and a first filter screen (16) are arranged on the top of the supporting plate (17), and plug-in grooves (36) are provided on the surfaces of the first filter screen (16) and the second filter plate (18), and a rectangular frame (26) is plugged into the plug-in grooves (36).
3. The probiotics detection and extraction device according to claim 2, characterized in that: The flexible fabric (2) at the bottom of the docking port (3) is flexible, and the interior of the flexible fabric (2) is communicated with the interior of the grinding chamber (1). Extension strips (4) are fixed on both sides of the grinding chamber (1). A first plug-in rod (7) is fixed at the end of the grinding chamber (1). A first arc strip (8) is provided at the other end of the first plug-in rod (7). A sliding groove (9) is provided on the surface of the first arc strip (8). The end of the first plug-in rod (7) is plugged into the sliding groove (9), and the end of the first plug-in rod (7) can move in the sliding groove (9). A second support rod (11) is fixed at the end of the first arc strip (8), and two groups of the second support rods (11) are provided.
4. The probiotics detection and extraction device according to claim 3, characterized in that: The end of the grinding chamber (1) is provided with a plug-in groove (5), the plug-in groove (5) is located inside the extension strip (4), a first support rod (6) is fixed on the surface of the docking interface (3), a material drop groove (12) is provided at the bottom of the grinding chamber (1), a grinding roller (14) is arranged inside the grinding chamber (1), a material guide plate (13) is arranged inside the grinding chamber (1), the material guide plate (13) is located on the top of the grinding roller (14), and the end of the grinding roller (14) is connected to a driving device, and the driving device drives the grinding roller (14) to rotate.
5. The probiotics detection and extraction device according to claim 4, characterized in that: A first extension block (21) is fixed to the end of the second support rod (11), a fixed seat (23) is fixed to the end of the first extension block (21), a motor (24) is connected to the surface of the fixed seat (23), a second extension block (22) is fixed to the surface of the fixed seat (23), a third support rod (25) is fixed to the surface of the fixed seat (23), a supporting plate (17) is fixed to the top of the third support rod (25), a swing rod (19) is arranged on the surface of the fixed seat (23), the swing rod (19) is inserted into the interior of the fixed seat (23), the swing rod (19) is connected to the motor (24), and the motor (24) can drive the swing rod (19) to rotate.
6. The probiotics detection and extraction device according to claim 5, characterized in that: A cylinder (20) is fixed on the surface of the second extension block (22); a piston rod at the end of the cylinder (20) is connected to the bottom of the support plate (17); a third support rod (25) at the bottom of the support plate (17) is flexible; the cylinder (20) can push the support plate (17) to move up and down; when the support plate (17) moves up and down, the third support rod (25) is deformed.
7. The probiotics detection and extraction device according to claim 6, characterized in that: A second filter plate (18) is arranged on the top of the supporting plate (17), a first filter screen (16) is arranged on one side of the second filter plate (18), the second filter plate (18) is plugged into the plug-in slot (5), the second filter plate (18) can move in the plug-in slot (5), a second arc-shaped strip (34) is fixed at the end of the second filter plate (18), a groove is provided on the surface of the second arc-shaped strip (34), a second plug-in rod (33) is plugged into the groove, the second plug-in rod (33) can move in the groove, a cross bar (35) is fixed at the end of the first filter screen (16), and the end of the second plug-in rod (33) is connected to the surface of the cross bar (35) on the surface of the first filter screen (16).
8. The probiotics detection and extraction device according to claim 7, characterized in that: The ends of the first filter screen (16) and the second filter plate (18) are both fixed with sealing plates (15). When the first filter screen (16) and the second filter plate (18) are inserted into the insertion groove (5), the sealing plate (15) is held against the end of the insertion groove (5). The surfaces of the first filter screen (16) and the second filter plate (18) are both provided with insertion grooves (36). A rectangular frame (26) is inserted into the insertion groove (36). The surface of the rectangular frame (26) is provided with a rectangular groove. A partition plate (27) is provided in the rectangular groove. The rectangular frame (26) located in the insertion groove (36) on the surface of the first filter screen (16) is pushed so that the rectangular frame (26) moves into the insertion groove (36) on the surface of the second filter plate (18), and the second filter plate (18) is shielded by the partition plate (27).
9. The probiotics detection and extraction device according to claim 8, characterized in that: The partition (27) can move in a rectangular groove on the surface of the rectangular frame (26); a circular hole (32) is provided on the surface of the rectangular frame (26); a vertical rod (28) is inserted into the circular hole (32); limiting plates (29) are fixed at both ends of the vertical rod (28); the vertical rod (28) can move in the circular hole (32); the surface of the vertical rod (28) is connected to the surface of the partition (27); and the partition (27) moves along with the vertical rod (28).
10. The probiotics detection and extraction device according to claim 9, characterized in that: A telescopic rod (31) is fixed at the bottom of the partition (27), and the telescopic rod (31) moves with the partition (27). A guide plate (30) is fixed at the bottom of the telescopic rod (31), and the guide plate (30) moves with the telescopic rod (31). The first filter screen (16) and the second filter plate (18) can rotate along the second plug-in rod (33). After the first filter screen (16) and the second filter plate (18) are removed from the plug-in groove (5), they are located on the top of the supporting plate (17). After the first filter screen (16) and the second filter plate (18) rotate, the partition (30) in the plug-in groove (36) on the surface of the first filter screen (16) and the second filter plate (18) The guide plate (30) rotates along with the rectangular frame (26) and the partition plate (27). Then, under the action of gravity, the guide plate (30) approaches the partition plate (27), so that the telescopic rod (31) is inserted into the interior of the telescopic rod (31), and the vertical rod (28) moves in the circular hole (32) along with the guide plate (30). The limiting plate (29) plays a limiting role, and the raw materials inside the second filter plate (18) and the first filter screen (16) fall onto the surface of the guide plate (30) and slide from the surface of the guide plate (30) to the surface of the supporting plate (17).
Citation Information
Patent Citations
Extraction device of probiotic metabolite
CN219490001U