Mangosteen pericarp enzyme fermentation apparatus

By designing the movement and clamping mechanism in the tank, the uniform contact between the mangosteen shell and the fermentation broth is achieved, the poor sealing effect and precipitation problems are solved, and the enzyme fermentation efficiency and resource utilization are improved.

WO2025137909A1PCT designated stage expired Publication Date: 2025-07-03GUANGZHOU COLLEGE OF TECH BUSINESS CO LTD
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Patent Information

Application Number
PCT/CN2023/142231
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-12-27
Publication Date
2025-07-03

AI Technical Summary

Technical Problem

The existing mangosteen shell enzyme fermentation device has poor sealing effect and poor deflation control, which causes mangosteen shells to precipitate at the bottom during the fermentation process, affecting the contact area of ​​the fermentation broth and causing waste of resources.

Method used

A mangosteen shell enzyme fermentation device including a tank body, a moving mechanism, a feeding mechanism, a cover closure mechanism and a clamping mechanism is designed. The mangosteen shell is evenly spilled into the cloth bag through the hydraulic cylinder, and sealing and uniform distribution is achieved by using the sliding plate and the clamping mechanism to ensure full contact of the fermentation broth.

Benefits of technology

The uniform contact between mangosteen shell and fermentation broth is achieved, the fermentation efficiency is improved, the precipitation phenomenon is avoided, and the full fermentation of enzymes and the effective utilization of resources is ensured.

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Abstract

A mangosteen pericarp enzyme fermentation apparatus, comprising a tank body, a movement mechanism, a feed mechanism, a covering mechanism and a clamping mechanism. An upper end of the tank body is provided with the movement mechanism, an upper end of the movement mechanism is provided with the feed mechanism, a lower end of the feed mechanism is provided with the covering mechanism, and a lower end of the covering mechanism is provided with the clamping mechanism. By means of placing a cloth bag within a first fixed plate and a first sliding plate, mangosteen pericarp can uniformly contact a fermentation liquid. During movement of a hydraulic cylinder towards one end, a rotating body is driven to evenly spread the mangosteen pericarp inside a feed hopper into the cloth bag. The inside of the outer shell is in a sealed state, and the mangosteen pericarp and the fermentation liquid therein ferment to produce enzymes. While a second sliding plate moves towards one end, a sliding plate is driven to move towards one end to squeeze the mangosteen pericarp in the cloth bag, so that the cloth bag is flattened and evenly distributed between the first fixed plate and the first sliding plate.
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Description

Mangosteen shell enzyme fermentation device Technical Field

[0001] The invention relates to the technical field of mangosteen shell enzyme fermentation, in particular to a mangosteen shell enzyme fermentation device. Background Art

[0002] Mangosteen, also known as mangosteen, is a small tree of the genus Garcinia in the family Garcinia. It has many and dense branches that are opposite to each other, and the branches have obvious longitudinal ridges. The leaves are thick and leathery, shiny, oval or oval-rectangular. The fruit is purple-red with yellow-brown spots when ripe, and is smooth. The flowering period is September-October, and the fruiting period is November-December. Mangosteen is native to Maluku and is now widely cultivated in Taiwan, Fujian, Guangdong and Yunnan, Asia and tropical Africa. It has a wide adaptability to soil. Early growth requires a low-light environment and good drainage conditions. It has a large demand for water. It is propagated by sowing or cuttings. The pulp of mangosteen is rich in dietary fiber, which has a good nourishing effect on the body and has a good regulating effect on the weak, the sick, and malnourished. Nutritional effect, mangosteen is one of the famous tropical fruits in the world. Su Dongpo recorded the mangosteen in his "Dongpo Miscellaneous Notes": "I was exiled to Hainan, and in May I landed in Knee State. From the knees to the eaves, there were wild flowers on both sides of the road, like peonies but smaller, bright red and lovely, simple and tender, and growing in clusters. The locals said: it is an inverted sticky fruit." In addition to being eaten fresh, the fruit can be processed into wine, juice, etc. The leaves can be used as medicine. Drinking the decoction of leaves can cure dysentery. The bark can be used to make black dye. The tree has beautiful posture and is a good tree species for garden greening. Mangosteen shell enzyme fermentation usually involves crushing the mangosteen shell and then putting it into a sealed container, adding an appropriate amount of clean water to seal it, and uncovering it after about three days to prevent the mangosteen shell from stinking. After fermentation, it should be diluted with water before use. Mangosteen shell enzyme fermentation should be placed in a warm place for fermentation.

[0003] The existing mangosteen shell enzyme fermentation device has poor sealing effect during use, poor control of the degassing process, and cumbersome operation. In addition, most of the mangosteen shells will settle at the bottom during the fermentation process, which will affect the contact area of ​​the mangosteen fermentation liquid and thus affect the fermentation of the mangosteen shell enzyme, resulting in insufficient mangosteen fermentation, which leads to the inability to extract and utilize the effective ingredients in the plant well, resulting in a waste of resources. Therefore, the present invention designs a mangosteen shell enzyme fermentation device to solve the above problems. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention provides a mangosteen shell enzyme fermentation device.

[0005] The technical solution adopted by the present invention to solve the technical problem is: a mangosteen shell enzyme fermentation device, including a tank body, a moving mechanism, a feeding mechanism, a covering mechanism, and a clamping mechanism, wherein the upper end of the tank body is provided with a moving mechanism, the upper end of the moving mechanism is provided with a feeding mechanism, the lower end of the feeding mechanism is provided with a covering mechanism, and the lower end of the covering mechanism is provided with a clamping mechanism;

[0006] Preferably, the tank body includes a bottom plate, an upper end of the bottom plate is fixedly connected to the outer shell, and an inner side wall of the outer shell is fixedly connected to a first fixing plate.

[0007] Preferably, the tank body also includes a first sliding rod, the first fixed plate is slidingly connected to the inside of the first sliding rod, one end of the first sliding rod is fixedly connected to a block, the side wall of the block is fixedly connected to the first sliding plate, the side wall of the first sliding plate is slidingly connected to the outer shell, a cloth bag is provided inside between the first fixed plate and the first sliding plate, and the upper end of the cloth bag is fixedly connected to a rubber block.

[0008] Preferably, the moving mechanism includes a hydraulic cylinder, the lower end of the hydraulic cylinder is fixedly connected to the base plate, one end of the hydraulic cylinder is fixedly connected to a first connecting rod, one end of the first connecting rod is fixedly connected to a feed hopper, the side wall of the feed hopper is fixedly connected to a first connecting block, the side wall of the first connecting block is fixedly connected to a first pressure plate, and one end of the first pressure plate is fixedly connected to a sealing film.

[0009] Preferably, the moving mechanism includes a spring, one end of the sealing film is fixedly connected to the spring, the center of the spring is fixedly connected to a rotating rod, the side wall of the rotating rod is rotatably connected to a cylinder, the side wall of the cylinder is provided with an opening, the side wall of the cylinder is fixedly connected to a support block, and the lower end of the support block is fixedly connected to the bottom plate.

[0010] Preferably, the feeding mechanism includes a rotating body, a side wall of the rotating body is rotatably connected to the feeding hopper, a groove is provided inside the rotating body, and the side wall of the rotating body is fixedly connected to a rotating shaft.

[0011] Preferably, the feeding mechanism further comprises a spur gear, the side wall of the rotating shaft is fixedly connected with the spur gear, and one end of the spur gear is meshed with a rack.

[0012] Preferably, the covering mechanism includes a first sleeve, the lower end of the first sleeve is fixedly connected to the bottom plate, the inside of the first sleeve is slidably connected to a second sliding plate, the upper end of the second sliding plate is fixedly connected to a second connecting rod, one end of the second connecting rod is fixedly connected to a first inclined sliding block, and the lower end of the first inclined sliding block is fitted with a second inclined sliding block.

[0013] Preferably, the covering mechanism further comprises a second pressing plate, the lower end of the second inclined sliding block is fixedly connected to the second pressing plate, the lower end of the second pressing plate is fixedly connected to the second sliding rod, and the side wall of the second sliding rod is fixedly connected to a baffle.

[0014] Preferably, the covering mechanism also includes a second sleeve, the side wall of the baffle is slidingly connected to the second sleeve, the side wall of the second sleeve is fixedly connected to the bottom plate, the lower end of the baffle is fixedly connected to the first spring, the lower end of the first spring is fixedly connected to the second sleeve, the lower end of the second sliding rod is fixedly connected to the third pressure plate, one end of the second sliding plate is fixedly connected to the second spring, and one end of the second spring is fixedly connected to the first sleeve.

[0015] Preferably, the clamping mechanism includes a second connecting block, one end of which is fixedly connected to the second sliding plate, and one end of the second connecting block is fixedly connected to the second fixing plate.

[0016] Beneficial effects of the present invention:

[0017] The mangosteen shell enzyme fermentation device of the present invention can achieve uniform contact between the mangosteen shell and the fermentation liquid by placing a cloth bag inside the first fixed plate and the first sliding plate, thereby making the mangosteen shell enzyme fermentation more complete.

[0018] The mangosteen shell enzyme fermentation device described in the present invention can move the sealing film to the upper end of the shell conveniently and quickly through the set structure, and occupies a small area. When the hydraulic cylinder moves toward one end, it will also drive the rotating body to evenly sprinkle the mangosteen shells inside the feed hopper inside the cloth bag. When the second sliding plate moves inward a distance, it will drive the third pressure plate to cover the upper end of the shell, so that the third pressure plate can tightly fit the middle sealing film to the upper end of the shell to play a sealing role. The interior of the shell is in a sealed state, and the mangosteen shells inside and the fermentation liquid ferment to produce enzymes.

[0019] The mangosteen shell enzyme fermentation device described in the present invention adopts a structure that is set up so that when the second sliding plate moves toward one end, it will also drive the first sliding plate to move toward one end to squeeze the mangosteen shells in the cloth bag, so that the cloth bag can be flattened and evenly distributed between the first fixed plate and the first sliding plate. Since the side walls of the first fixed plate and the first sliding plate are provided with a large number of small holes for liquid to pass through, and multiple groups of first fixed plates and first sliding plates are placed at intervals, the efficiency of enzyme fermentation can be improved, and it is avoided that the mangosteen shells are precipitated at the bottom of the container and have insufficient contact with the fermentation liquid during the fermentation process. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described below with reference to the accompanying drawings and examples.

[0021] FIG1 is a schematic diagram of the overall structure provided by the present invention;

[0022] FIG2 is a schematic diagram of the connection structure between the base plate and the housing shown in FIG1 ;

[0023] FIG3 is a schematic diagram of the connection structure between the first fixed plate and the first sliding rod shown in FIG2 ;

[0024] FIG4 is a schematic diagram of the connection structure between the first sliding plate and the stopper shown in FIG3 ;

[0025] FIG5 is a schematic diagram of the connection structure between the hydraulic cylinder and the first connecting rod shown in FIG2 ;

[0026] FIG6 is a schematic diagram of the connection structure between the connecting block and the first pressing plate shown in FIG2 ;

[0027] FIG7 is a schematic diagram of the opening structure shown in FIG6;

[0028] FIG8 is a schematic diagram of the groove structure shown in FIG6;

[0029] FIG9 is a schematic diagram of the connection structure between the cylinder and the support block shown in FIG6 ;

[0030] FIG10 is a schematic diagram of the connection structure between the first sleeve and the second sliding plate shown in FIG2 ;

[0031] FIG11 is a schematic diagram of the connection structure between the second pressing plate and the second sliding rod shown in FIG9 ;

[0032] FIG12 is a schematic diagram of the connection structure between the second sliding rod and the second pressing plate shown in FIG10 ;

[0033] FIG13 is a schematic diagram of the second spring connection structure of the second sliding plate shown in FIG10 .

[0034] In the figure: 1. Tank; 11. Bottom plate; 12. Outer shell; 13. First fixed plate; 14. First sliding rod; 15. First sliding plate; 16. Stopper; 17. Cloth bag; 18. Rubber block; 2. Moving mechanism; 21. Hydraulic cylinder; 22. First connecting rod; 23. Feed hopper; 24. Connecting block; 25. First pressure plate; 26. Sealing film; 27. Spring; 28. Rotating rod; 29. ​​Cylinder; 210. Opening; 211. Support block; 3. Feeding mechanism; 31 , rotating body; 32, groove; 33, rotating shaft; 34, spur gear; 35, rack; 4, covering mechanism; 41, first sleeve; 42, second sliding plate; 43, second connecting rod; 44, first inclined sliding block; 45, second inclined sliding block; 46, second pressure plate; 47, second sliding rod; 48, baffle; 49, second sleeve; 410, first spring; 411, third pressure plate; 412, second spring; 5, clamping mechanism; 51, connecting block; 52, second fixed plate. DETAILED DESCRIPTION

[0035] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0036] As shown in Figures 1 to 13, a mangosteen shell enzyme fermentation device according to the present invention includes a tank body 1, a moving mechanism 2, a feeding mechanism 3, a covering mechanism 4, and a clamping mechanism 5. The upper end of the tank body 1 is provided with a moving mechanism 2, the upper end of the moving mechanism 2 is provided with a feeding mechanism 3, the lower end of the feeding mechanism 3 is provided with a covering mechanism 4, and the lower end of the covering mechanism 4 is provided with a clamping mechanism 5; by placing the cloth bag 17 inside the first fixed plate 13 and the first sliding plate 15, the mangosteen shell can be evenly contacted with the fermentation liquid. In the process of the hydraulic cylinder 21 moving to one end, it will also drive the rotating body 31 to evenly sprinkle the mangosteen shell inside the feed hopper 23 inside the cloth bag 17. The interior of the outer shell 12 is in a sealed state, and the mangosteen shell inside and the fermentation liquid ferment to produce enzymes. When the second sliding plate 42 moves to one end, it will also drive the first sliding plate 15 to move to one end to squeeze the mangosteen shell in the cloth bag 17, so that the cloth bag 17 can be flattened and evenly distributed between the first fixed plate 15 and the first sliding plate 13.

[0037] Preferably, the tank body 1 includes a bottom plate 11, the upper end of the bottom plate 11 is fixedly connected to the outer shell 12, the inner side wall of the outer shell 12 is fixedly connected to the first fixed plate 13, the first fixed plate 13 is slidably connected to the first sliding rod 14, one end of the first sliding rod 14 is fixedly connected to a stopper 16, the side wall of the stopper 16 is fixedly connected to the first sliding plate 15, the side wall of the first sliding plate 15 is slidably connected to the outer shell 12, a cloth bag 17 is provided between the first fixed plate 13 and the first sliding plate 15, and the upper end of the cloth bag 17 is fixedly connected to a rubber block 18; by placing the cloth bag 17 inside the first fixed plate 13 and the first sliding plate 15, the mangosteen shell can be evenly contacted with the fermentation liquid, so that the mangosteen shell enzyme fermentation is more sufficient.

[0038] Preferably, the moving mechanism 2 includes a hydraulic cylinder 21, the lower end of the hydraulic cylinder 21 is fixedly connected to the bottom plate 11, one end of the hydraulic cylinder 21 is fixedly connected to a first connecting rod 22, one end of the first connecting rod 22 is fixedly connected to a feed hopper 23, the side wall of the feed hopper 23 is fixedly connected to a first connecting block 24, the side wall of the first connecting block 24 is fixedly connected to a first pressure plate 25, one end of the first pressure plate 25 is fixedly connected to a sealing film 26, one end of the sealing film 26 is fixedly connected to a spring 27, the center of the spring 27 is fixedly connected to a rotating rod 28, the side wall of the rotating rod 28 is rotatably connected to a cylinder 29, the side wall of the cylinder 29 is provided with an opening 210, the side wall of the cylinder 29 is fixedly connected to a support block 211, and the lower end of the support block 211 is fixedly connected to the bottom plate 11; through the set structure, the sealing film 26 can be moved to the upper end of the shell 12 quickly and conveniently, and occupies a small area.

[0039] Preferably, the feeding mechanism 3 includes a rotating body 31, the side wall of the rotating body 31 is rotatably connected to the feed hopper 23, a groove 32 is opened inside the rotating body 31, the side wall of the rotating body 31 is fixedly connected to a rotating shaft 33, the side wall of the rotating shaft 33 is fixedly connected to a spur gear 34, and one end of the spur gear 34 is engaged with a rack 35; the structure is set up so that when the hydraulic cylinder 21 moves to one end, it will also drive the rotating body 31 to evenly sprinkle the mangosteen shells inside the feed hopper 23 inside the cloth bag 17.

[0040] Preferably, the covering mechanism 4 includes a first sleeve 41, the lower end of the first sleeve 41 is fixedly connected to the bottom plate 11, the first sleeve 41 is slidably connected to the second sliding plate 42 inside, the upper end of the second sliding plate 42 is fixedly connected to the second connecting rod 43, one end of the second connecting rod 43 is fixedly connected to the first inclined sliding block 44, the lower end of the first inclined sliding block 44 is affixed to the second inclined sliding block 45, the lower end of the second inclined sliding block 45 is fixedly connected to the second pressure plate 46, the lower end of the second pressure plate 46 is fixedly connected to the second sliding rod 47, the side wall of the second sliding rod 47 is fixedly connected to the baffle 48, the side wall of the baffle 48 is slidably connected to the second sleeve 49, and the side wall of the second sleeve 49 is fixedly connected to the bottom plate 11 is fixedly connected, the lower end of the baffle 48 is fixedly connected to the first spring 410, the lower end of the first spring 410 is fixedly connected to the second sleeve 49, the lower end of the second sliding rod 47 is fixedly connected to the third pressing plate 411, one end of the second sliding plate 42 is fixedly connected to the second spring 412, and one end of the second spring 412 is fixedly connected to the first sleeve 41; when the second sliding plate 42 moves inward by one end, it will drive the third pressing plate 411 to cover the upper end of the shell 12, so that the third pressing plate 411 can make the middle sealing film 26 tightly fit the upper end of the shell 12 to play a sealing role, and the interior of the shell 12 is in a sealed state, and the mangosteen shell inside and the fermentation liquid ferment to produce enzymes.

[0041] Preferably, the clamping mechanism 5 includes a second connecting block 51, one end of the connecting block 51 is fixedly connected to the second sliding plate 42, and one end of the second connecting block 51 is fixedly connected to the second fixed plate 52; the structure is set up so that when the second sliding plate 42 moves to one end, it will also drive a sliding plate 15 to move to one end, which will squeeze the mangosteen shells in the cloth bag 17, so that the cloth bag 17 can be flattened and evenly distributed between the first fixed plate 13 and the first sliding plate 15. Since the side walls of the first fixed plate 13 and the first sliding plate 15 are provided with more small holes for liquid to pass through, and multiple groups of first fixed plates 13 and first sliding plates 15 are placed at intervals, the efficiency of enzyme fermentation can be improved, and it is avoided that the mangosteen shells are precipitated at the bottom of the container and have insufficient contact with the fermentation liquid during the fermentation process.

[0042] Working principle: When in use, the present invention first places the cloth bag 17 in the middle layer between the first fixed plate 13 and the first sliding plate 15, and the rubber block 18 at the upper end of the cloth bag 17 is placed on the upper ends of the first fixed plate 13 and the first sliding plate 15. Multiple groups of first fixed plates 13 and first sliding plates 15 are arranged at intervals inside the outer shell 12. By placing the cloth bag 17 inside the first fixed plate 13 and the first sliding plate 15, the mangosteen shell can be evenly contacted with the fermentation liquid, so that the mangosteen shell enzyme fermentation is more sufficient.

[0043] At this time, the hydraulic cylinder 21 is started to move toward one end, and the hydraulic cylinder 21 moves toward one end, driving the first connecting rod 22 to move toward one end, and the first connecting rod 22 moves toward one end, driving the feed hopper 23 to move toward one end, and when the feed hopper 23 moves toward one end, it will drive the connecting block 24 to move toward one end, and the connecting block 24 moves toward one end, driving the first pressure plate 25 to move toward one end, and the first pressure plate 25 moves toward one end, driving the sealing film 26 to move toward one end, and the sealing film 26 moves toward one end, which will drive the mainspring 27 to stretch. Through the set structure, the sealing film 26 can be moved to the upper end of the outer shell 12 quickly and conveniently, and it takes up little space.

[0044] The spur gear 34 moves to one end and engages with the rack 35 to drive the spur gear 34 to rotate. The rotation of the spur gear 34 drives the rotating shaft 33 to rotate, and the rotation of the rotating shaft 33 drives the rotating body 31 to rotate. When the rotating body 31 rotates to the upper end, the mangosteen shells inside the feed hopper 23 fall into the groove 32 inside the rotating body 31 under the action of gravity. When the rotating body 31 rotates to the lower end, the mangosteen shells inside it will fall into the cloth bag 17. The structure provided will also drive the rotating body 31 to evenly sprinkle the mangosteen shells inside the feed hopper 23 on the inside of the cloth bag 17 during the movement of the hydraulic cylinder 21 to one end.

[0045] When the feed hopper 23 moves to one end to the leftmost end, it drives the second sliding plate 42 to move inward a distance. The inward movement of the second sliding plate 42 compresses the second spring 412. The inward movement of the second sliding plate 42 drives the second connecting rod 43 to move inward. The second connecting rod 43 moves to one end and drives the first inclined sliding block 44 to move to one end. The first inclined sliding block 44 moves to one end and drives the second inclined sliding block 45 to move downward. The second inclined sliding block 45 moves downward and drives the second pressing plate 46 to move downward. The second pressing plate 46 moves downward and drives the second sliding rod 47 to move downward. The second sliding rod 47 moves downward and drives the baffle 48 to move downward. The downward movement of the baffle 48 will compress the first spring 410, and the downward movement of the second sliding rod 47 will drive the third pressing plate 411 to move downward. The downward movement of the third pressing plate 411 will press the sealing film 26 onto the upper end of the outer shell 12, so that the outer shell 12 can be sealed to allow the mangosteen shell enzyme to ferment. When the second sliding plate 42 moves inward a distance, it will drive the third pressing plate 411 to cover the upper end of the outer shell 12, so that the third pressing plate 411 can make the middle sealing film 26 tightly fit onto the upper end of the outer shell 12 to play a sealing role. The interior of the outer shell 12 is in a sealed state, and the mangosteen shell and fermentation liquid inside ferment to produce enzymes.

[0046] When the second sliding plate 42 moves to one end, it will drive the connecting block 51) to move to one end, and the connecting block 51) moving to one end will drive the second fixed plate 52 to move to one end, and the second fixed plate 52 moving to one end will drive the first sliding rod 14 to move to one end, and the first sliding rod 14 moving to one end will drive the stopper 16 to move to one end, and the stopper 16 moving to one end will drive the first sliding plate 15 to move to one end, and the first sliding plate 15 moving to one end will squeeze the mangosteen shells in the cloth bag 17. After the mangosteen shell enzyme ferments for about three days, the hydraulic cylinder 21 is started by the controller to drive the third pressing plate 411 away from the sealing film 26. At this time, the spring 27 will also drive the sealing film 26 to reel up, ventilating the fermenting mangosteen shells from the outside to prevent the mangosteen shells from being scalded. The mangosteen shells in the cloth bag 17 are squeezed when the second sliding plate 42 moves to one end and the mangosteen shells are squeezed to be evenly distributed between the first fixed plate 13 and the first sliding plate 15. Since the side walls of the first fixed plate 13 and the first sliding plate 15 are provided with more small holes for liquid to pass through, and multiple groups of the first fixed plate 13 and the first sliding plate 15 are placed at intervals, the efficiency of enzyme fermentation can be improved, and the mangosteen shells are prevented from settling at the bottom of the container and insufficiently contacting the fermentation liquid during the fermentation process.

[0047] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above-described embodiments. The above-described embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A mangosteen peel enzyme fermentation device, characterized in that: It includes a tank body (1), a moving mechanism (2), a feeding mechanism (3), a covering mechanism (4), and a clamping mechanism (5). The moving mechanism (2) is provided at the upper end of the tank body (1), the feeding mechanism (3) is provided at the upper end of the moving mechanism (2), the covering mechanism (4) is provided at the lower end of the feeding mechanism (3), and the clamping mechanism (5) is provided at the lower end of the covering mechanism (4). The tank body (1) includes a bottom plate (11). The upper end of the bottom plate (11) is fixedly connected with a housing (12), and the inner side wall of the housing (12) is fixedly connected with a first fixing plate (13).

2. The Garcinia mangostana peel enzyme fermentation device according to claim 1, characterized in that: The tank body (1) further includes a first sliding rod (14). The first sliding rod (14) is slidably connected inside the first fixing plate (13). One end of the first sliding rod (14) is fixedly connected with a stop block (16). The side wall of the stop block (16) is fixedly connected with a first sliding plate (15). The side wall of the first sliding plate (15) is slidably connected with the housing (12). A cloth bag (17) is arranged inside between the first fixing plate (13) and the first sliding plate (15). The upper end of the cloth bag (17) is fixedly connected with a rubber block (18).

3. The Garcinia mangostana pericarp enzyme fermentation device according to claim 1, wherein: The moving mechanism (2) includes a hydraulic cylinder (21). The lower end of the hydraulic cylinder (21) is fixedly connected with the bottom plate (11). One end of the hydraulic cylinder (21) is fixedly connected with a first connecting rod (22). One end of the first connecting rod (22) is fixedly connected with a feed hopper (23). The side wall of the feed hopper (23) is fixedly connected with a first connecting block (24). The side wall of the first connecting block (24) is fixedly connected with a first pressing plate (25). One end of the first pressing plate (25) is fixedly connected with a sealing film (26).

4. The Garcinia mangostana peel enzyme fermentation device according to claim 3, wherein: The moving mechanism (2) includes a spring (27). One end of the sealing film (26) is fixedly connected with a spring (27). The center of the spring (27) is fixedly connected with a rotating rod (28). The side wall of the rotating rod (28) is rotatably connected with a cylinder (29). An opening (210) is formed in the side wall of the cylinder (29). The side wall of the cylinder (29) is fixedly connected with a support block (211). The lower end of the support block (211) is fixedly connected with the bottom plate (11).

5. The Garcinia mangostana pericarp enzyme fermentation device according to claim 3, characterized in that: The feeding mechanism (3) includes a rotating body (31). The side wall of the rotating body (31) is rotatably connected with the feed hopper (23). A groove (32) is formed inside the rotating body (31). The side wall of the rotating body (31) is fixedly connected with a rotating shaft (33).

6. A mangosteen peel enzyme fermentation device according to claim 5, characterized in that: The feeding mechanism (3) further includes a spur gear (34). The side wall of the rotating shaft (33) is fixedly connected with a spur gear (34). One end of the spur gear (34) is meshed with a rack (35).

7. The Garcinia mangostana pericarp enzyme fermentation device according to claim 1, wherein: The covering mechanism (4) includes a first sleeve (41). The lower end of the first sleeve (41) is fixedly connected with the bottom plate (11). A second sliding plate (42) is slidably connected inside the first sleeve (41). The upper end of the second sliding plate (42) is fixedly connected with a second connecting rod (43). One end of the second connecting rod (43) is fixedly connected with a first inclined slider (44). The lower end of the first inclined slider (44) is attached to a second inclined slider (45).

8. A mangosteen shell enzyme fermentation device according to claim 7, characterized in that: The covering mechanism (4) further includes a second pressing plate (46). The lower end of the second inclined slider (45) is fixedly connected to the second pressing plate (46). The lower end of the second pressing plate (46) is fixedly connected to a second sliding rod (47). A baffle (48) is fixedly connected to the side wall of the second sliding rod (47).

9. The Garcinia mangostana peel enzyme fermentation device according to claim 8, characterized in that: The covering mechanism (4) further includes a second sleeve (49). The side wall of the baffle (48) is slidably connected to the second sleeve (49). The side wall of the second sleeve (49) is fixedly connected to the bottom plate (11). The lower end of the baffle (48) is fixedly connected to a first spring (410). The lower end of the first spring (410) is fixedly connected to the second sleeve (49). The lower end of the second sliding rod (47) is fixedly connected to a third pressing plate (411). One end of the second sliding plate (42) is fixedly connected to a second spring (412). One end of the second spring (412) is fixedly connected to the first sleeve (41).

10. A mangosteen peel enzyme fermentation device according to claim 7, characterized in that: The clamping mechanism (5) includes a second connecting block (51). One end of the connecting block (51) is fixedly connected to the second sliding plate (42). One end of the second connecting block (51) is fixedly connected to a second fixing plate (52).

Citation Information

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