A blueberry anti-radiation pharmaceutical processing separation and purification device
By combining the crushing and grinding components with the sealed filling components, the problem of incomplete crushing in blueberry purification devices is solved, achieving efficient and safe blueberry juice extraction.
Patent Information
- Application Number
- CN202311660465.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-06
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2043-12-06
AI Technical Summary
Existing blueberry purification equipment does not crush the fruit completely, resulting in a large amount of chunks of pulp remaining, requiring repeated crushing, which affects the purification process.
The product employs a crushing and grinding component and a sealed filling component. The crushing and grinding component thoroughly crushes the raw blueberries, while centrifugal force and the sealed filling component ensure the purity and safety of the blueberry juice.
It improves the extraction efficiency of blueberry juice, reduces the need for repeated crushing, ensures the purity and safety of blueberry juice, and saves extraction time.
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Figure CN117583137B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medicine purification, in particular to a blueberry anti-radiation medicine processing separation and purification device. BACKGROUND
[0002] Blueberry is a small-grained fruit, its flesh is delicate, unique flavor, moderate sweet and sour, and has a pleasant aroma, the conventional nutrient content such as protein, vitamins in blueberry is very rich, the mineral and trace element content is also considerable, and it has the name of "fruit queen", the anthocyanin content in blueberry is very high, and the anthocyanin species is also very rich, research finds that high-bush blueberry fruit contains as many as 15 kinds of anthocyanin components, which is the most effective antioxidant bioactive agent found by human beings.
[0003] At present, when the blueberry is used to make anti-radiation medicine, the blueberry is often crushed, the juice in the blueberry is separated from the crushed residue, and the juice is purified, but the existing purification device is often not completely crushed when crushing the blueberry, a large amount of chunky blueberry flesh is left, which leads to the need for repeated crushing, affecting the whole purification process. SUMMARY
[0004] The present application discloses a blueberry anti-radiation medicine processing separation and purification device, which aims to solve the technical problem that the existing purification device in the background art is often not completely crushed when crushing the blueberry, a large amount of chunky blueberry flesh is left, which leads to the need for repeated crushing, affecting the whole purification process.
[0005] The blueberry anti-radiation medicine processing separation and purification device provided by the present application comprises a horizontal plate, a protective sleeve is fixedly connected to the bottom of the horizontal plate, a rolling and crushing assembly is arranged below the protective sleeve, two symmetrical support plates are fixedly connected to the bottom of the horizontal plate, one same supporting plate is fixedly connected to the opposite side of the two support plates, a supporting plate is arranged above the supporting plate, a plurality of fixed frames are circumferentially and equidistantly distributed on the supporting plate, a circular hole is formed in the upper side of each of the three fixed frames, and a sealed filling assembly is arranged in each of the three circular holes.
[0006] By arranging the horizontal plate, the support plate, the supporting plate, the rolling and crushing assembly, the sealed filling assembly and the fixed frame, the device can crush the blueberry fruit and further roll it at the same time, so that the blueberry juice in the fruit flesh that is not completely crushed can be fully released, the efficiency of extracting the blueberry juice is improved, and the waiting time of the next blueberry juice refining step is reduced.
[0007] In a preferred scheme, the rolling crushing assembly comprises a cylinder top plate, a hole is formed in the cylinder top plate, a connecting shaft is movably connected in the hole, a second motor is arranged on the upper side of the connecting shaft, the output end of the second motor is connected with the upper side of the connecting shaft through a shaft coupling, the outer portion of the second motor is fixedly connected with the inner wall of the protective sleeve, a circular groove is formed in the upper side of the cylinder top plate, a feeding pipe is fixedly connected in the circular groove, and the outer portion of the feeding pipe is fixedly connected with the horizontal plate; two symmetrical horizontal rods are arranged below the cylinder top plate, the opposite sides of the two horizontal rods are fixedly connected with the outer portion of the connecting shaft, the bottoms of the two horizontal rods are fixedly connected with symmetrical vertical rods one and two respectively, the outer portions of the vertical rods one and two are fixedly connected with a plurality of equidistantly distributed crushing rods respectively, and the outer portion of the cylinder top plate is movably connected with a cylinder wall; the bottom of the connecting shaft is movably connected with a filtrate cylinder, a plurality of circumferentially equidistantly distributed filter holes are formed in the outer portion of the filtrate cylinder, an upper crushing roller is fixedly connected with the outer portion of the filtrate cylinder, a lower crushing roller is movably connected with the outer portion of the filtrate cylinder, the lower crushing roller is located below the upper crushing roller, the outer portion of the lower crushing roller is movably connected with the inner wall of the cylinder wall, a plurality of circumferentially equidistantly distributed flow grooves are formed in the upper side of the upper crushing roller, and a plurality of circumferentially equidistantly distributed crushing teeth are fixedly connected with the bottom of the upper crushing roller and the upper side of the lower crushing roller respectively; the outer portion of the vertical rod one is movably connected with a gear one, and a gear ring is fixedly connected with the inner wall of the cylinder wall and engaged with the gear one.
[0008] By arranging the rolling crushing assembly, the rolling crushing assembly crushes and squeezes the uncrushed chunky pulp between the upper crushing roller and the lower crushing roller to extract the juice, reduces the need for multiple crushing, has a good effect of extracting blueberry juice, reduces the consumption of blueberries, and improves the work efficiency.
[0009] In a preferred scheme, the outer portion of the filtrate cylinder is movably connected with a connecting pipe, the connecting pipe is located below the lower crushing roller, the bottom of the connecting pipe is fixedly connected with a main shaft, the upper side of the supporting plate is fixedly connected with a first motor, the output end of the first motor is connected with the bottom of the main shaft through a shaft coupling, three circumferentially equidistantly distributed circular holes are formed in the outer portion of the connecting pipe, a soft tube is fixedly connected in each circular hole, the bottom of the soft tube is fixedly connected with the upper side of a fixed frame, a storage box is arranged in the fixed frame, a filter residue plate is fixedly connected with the inner wall of the storage box, and a scale groove is formed in the side of the storage box away from the convex block; the outer portion of the main shaft is fixedly connected with three circumferentially equidistantly distributed connecting pieces, the outer portions of the three connecting pieces are fixedly connected with thin shafts respectively, the outer portions of the thin shafts are movably connected with convex blocks respectively, the sides of the convex blocks away from the connecting pieces are fixedly connected with one side of the fixed frame, the bottoms of the connecting pieces are fixedly connected with buffer plates respectively, and the sides of the buffer plates close to the fixed frame are fixedly connected with springs one.
[0010] Through setting the connecting pipe, the hose, the motor one, the connecting piece, the storage box, the scale groove and the residue filter plate, the device utilizes the rotating main shaft and the tiltable fixed frame, utilizes the centrifugal force to further purify the blueberry juice in the storage box, ensures the obtaining of the blueberry juice with sufficient purity, reduces the necessity of multiple purification of the blueberry juice, saves the time of obtaining the blueberry anti-radiation medicine raw material, and improves the convenience and working efficiency.
[0011] In a preferred scheme, the closed filling assembly comprises a containing groove, a lifting plate is slidably connected in the containing groove, a cutting groove is formed on one side of the fixed frame, a fixed plate is slidably connected in the cutting groove, one side of the fixed plate opposite to the lifting plate is fixedly connected, a rack is fixedly connected outside the fixed plate, a connecting rod is movably connected on one side of the fixed frame, a gear two is connected by bolts outside the connecting rod, the gear two is engaged with the rack, a thin rod is fixedly connected outside the fixed frame, a locking hook is rotatably connected outside the thin rod through a bearing, the locking hook is clamped with the gear two outside, an operation disc is fixedly connected outside the connecting rod.
[0012] Through setting the closed filling assembly, the containing groove, the lifting plate, the cutting groove, the fixed plate, the rack, the connecting rod, the gear two, the thin rod, the locking hook and the operation disc, the storage box can be filled with blueberry juice in a closed environment after being placed, and can be quickly closed after being taken out, so that the obtained blueberry juice is always isolated from the external environment, and the external pollutants cannot contact the blueberry juice, thereby ensuring the purity and safety of the blueberry juice.
[0013] From the above, the blueberry anti-radiation medicine processing separation and purification device provided by the application has the advantages that the crushing assembly can crush the blueberry raw fruit while further crushing, ensure that the blueberry juice in the fruit pulp that is not completely crushed can be fully released, improve the efficiency of extracting blueberry juice, and reduce the waiting time of the next blueberry juice finishing step. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 The overall structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0015] Figure 2 The main shaft structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0016] Figure 3 The barrel wall structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0017] Figure 4 The filtrate cylinder structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0018] Figure 5 The connecting piece structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0019] Figure 6 The fixed frame structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0020] Figure 7 The storage box structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0021] Figure 8 The lifting plate structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0022] Figure 9 The mounting ring structure diagram of the blueberry anti-radiation medicine processing separation and purification device provided by the application is shown in the figure.
[0023] In the figure: 1, the cross plate; 2, the support plate; 3, the supporting plate; 4, the crushing assembly; 401, the cylinder top plate; 402, the connecting shaft; 403, the motor two; 404, the filtrate cylinder; 405, the cross bar; 406, the vertical rod one; 407, the vertical rod two; 408, the crushing rod; 409, the gear one; 410, the gear ring; 411, the upper crushing mill; 412, the flow tank; 413, the lower crushing mill; 414, the cylinder wall; 415, the crushing tooth; 416, the feeding pipe; 5, the airtight filling assembly; 501, the containing groove; 502, the lifting plate; 503, the rack; 504, the connecting rod; 505, the gear two; 506, the fixed plate; 507, the locking hook; 508, the operation disc; 509, the mounting ring; 510, the sealing plate one; 511, the annular groove one; 512, the spring two; 513, the contact plate; 514, the positioning plate; 515, the limiting rod; 516, the clamping groove; 517, the extrusion block; 518, the annular groove two; 519, the spring three; 520, the sealing plate two; 6, the motor one; 7, the main shaft; 8, the adapter pipe; 9, the hose; 10, the protective sleeve; 11, the connecting piece; 12, the boss; 13, the fixed frame; 14, the buffer plate; 15, the spring one; 16, the storage box; 17, the box opening; 18, the residue plate; 19, the scale groove. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all embodiments.
[0025] The disclosed blueberry anti-radiation medicine processing separation and purification device is mainly applied to the scene where the existing purification device has poor crushing effect on blueberry cloud fruit and low juice extraction amount.
[0026] REFERENCE Figures 1-9 A blueberry anti-radiation medicine processing separation and purification device, comprising a cross plate 1, the bottom of the cross plate 1 is connected with a protective sleeve 10 through bolts, a crushing assembly 4 is arranged below the protective sleeve 10, the bottom of the cross plate 1 is connected with two symmetrical support plates 2 through bolts, one supporting plate 3 is connected to the opposite side of the two support plates 2 through bolts, and three fixed frames 13 are arranged on the upper side of the supporting plate 3 in a circumferential equidistant manner, three round holes are formed in the upper side of the three fixed frames 13, and an airtight filling assembly 5 is arranged in each of the three round holes.
[0027] Specifically, after the blueberry raw fruit is poured into the crushing and breaking assembly 4 through the pouring pipe 416, the crushing and breaking assembly 4 fully stirs and breaks the blueberry fruit inside and further crushes it, and the obtained blueberry juice is transported into the storage box 16 through the hose 9 for storage. When the storage box 16 is full and needs to be replaced, the sealed filling assembly 5 can quickly seal the juice inlet of the hose 9 and the box opening 17 when the storage box 16 is taken out. The device uses the crushing and breaking assembly 4 to break the blueberry raw fruit while further crushing it, so that the blueberry juice in the unbroken pulp can be fully released, improving the efficiency of extracting blueberry juice and reducing the waiting time for the next blueberry juice refining step.
[0028] With reference to Figure 2 , Figure 3 and Figure 4 , the crushing and breaking assembly 4 comprises a cylinder top plate 401, a hole is formed in the cylinder top plate 401, a connecting shaft 402 is rotatably connected in the hole through a bearing, an electric motor 2 403 is arranged on the upper side of the connecting shaft 402, the output end of the electric motor 2 403 is connected to the upper side of the connecting shaft 402 through a shaft coupling, and the outside of the electric motor 2 403 is connected to the inner wall of the protective sleeve 10 through bolts, a circular groove is formed in the upper side of the cylinder top plate 401, a pouring pipe 416 is connected to the circular groove through bolts, and the outside of the pouring pipe 416 passes through the horizontal plate 1 and is connected to the horizontal plate 1 through bolts; two symmetrical horizontal rods 405 are arranged below the cylinder top plate 401, the opposite sides of the two horizontal rods 405 are connected to the outside of the connecting shaft 402 through bolts, the bottoms of the two horizontal rods 405 are respectively connected to symmetrical vertical rods one 406 and vertical rods two 407 through bolts, the outside of each of the vertical rods one 406 and the vertical rods two 407 is connected to a plurality of equidistantly distributed breaking rods 408 through bolts, and the outside of the cylinder top plate 401 is rotatably connected to a cylinder wall 414 through a bearing; the bottom of the connecting shaft 402 is rotatably connected to a filtrate cylinder 404 through a bearing, a plurality of circumferentially equidistantly distributed filter holes are formed in the outside of the filtrate cylinder 404, the outside of the filtrate cylinder 404 is connected to an upper breaking roller 411 through bolts, the outside of the filtrate cylinder 404 is rotatably connected to a lower breaking roller 413 through a bearing, the lower breaking roller 413 is located below the upper breaking roller 411, and the outside of the lower breaking roller 413 is rotatably connected to the inner wall of the cylinder wall 414, a plurality of circumferentially equidistantly distributed flow grooves 412 are formed in the upper side of the upper breaking roller 411, and a plurality of circumferentially equidistantly distributed breaking teeth 415 are connected to the bottom of the upper breaking roller 411 and the upper side of the lower breaking roller 413 through bolts; the outside of the vertical rod one 406 is rotatably connected to a gear one 409, the inner wall of the cylinder wall 414 is connected to a gear ring 410 through bolts, and the gear ring 410 is engaged with the gear one 409.
[0029] Specifically, after the blueberry fruit enters the barrel wall 414, the motor 403 is started, the motor 403 drives the connecting shaft 402 to rotate, the vertical rod 406 and the vertical rod 407 connected with the cross rod 405 on the connecting shaft 402 use the crushing rod 408 to crush the blueberry fruit, the crushed blueberry fruit is deposited at the bottom, and the crushed blueberry fruit enters between the upper crushing roller 411 and the lower crushing roller 413 through the flow groove 412. The rotating lower crushing roller 413 uses the crushing teeth 415 to crush the fruit pulp, so that the juice is released from the fruit pulp, the gear 409 on the vertical rod 406 is engaged with the gear ring 410, the barrel wall 414 is rotated, the crushed fruit pulp and juice are separated by centrifugation, and the juice is discharged from the fine holes on the filtrate barrel 404.
[0030] In a specific application scenario, the crushing assembly 4 is suitable for the crushing process in the crushing process, that is, the crushing assembly 4 uses the upper crushing roller 411 and the lower crushing roller 413 to crush and squeeze the juice after the unbroken fruit pulp enters between the upper crushing roller 411 and the lower crushing roller 413, reduces the need for multiple crushing, improves the effect of extracting blueberry juice, reduces the consumption of blueberries, and improves the working efficiency.
[0031] Referring to Figure 5 and Figure 6 , the outside of the filtrate barrel 404 is rotatably connected with the adapter pipe 8 through the bearing, the adapter pipe 8 is located below the lower crushing roller 413, the bottom of the adapter pipe 8 is connected with the main shaft 7 through the bolt, the upper side of the supporting plate 3 is fixedly connected with the motor 6, the output end of the motor 6 is connected with the bottom of the main shaft 7 through the shaft coupling, and three circumferentially equidistant circular holes are formed in the outside of the adapter pipe 8. The circular hole is connected with the hose 9 through the bolt, the bottom of the hose 9 is connected with the upper side of the fixed frame 13 through the bolt, the fixed frame 13 is provided with a storage box 16, the inner wall of the storage box 16 is connected with the filter residue plate 18 through the bolt, and the side of the storage box 16 away from the boss 12 is provided with a scale groove 19; the outside of the main shaft 7 is connected with three circumferentially equidistant connecting pieces 11 through the bolt, the outside of the three connecting pieces 11 is connected with the thin shaft through the bolt, the outside of the thin shaft is rotatably connected with the boss 12 through the bearing, and the side of the boss 12 away from the connecting piece 11 is connected with one side of the fixed frame 13 through the bolt. The bottom of the connecting piece 11 is connected with the buffer plate 14 through the bolt, and the side of the buffer plate 14 close to the fixed frame 13 is connected with the spring 15 through the bolt.
[0032] Specifically, after the obtained primary blueberry juice and fine residues enter the adapter tube 8 through the filter cylinder 404, the adapter tube 8 will split and deliver it into the storage box 16 on the fixed frame 13 through the hose 9. At this time, the electric motor one 6 is started, and the electric motor one 6 drives the main shaft 7 to rotate, so that the fixed frame 13 connected with the connecting piece 11 starts to rotate. By using the centrifugal effect, the fixed frame 13 will be inclined at a certain angle. The blueberry juice in the storage box 16 will fall to the bottom of the storage box 16 through the filter residue plate 18, and the fine residues will be filtered out by the filter residue plate 18. The accumulation of the blueberry juice can be observed through the scale groove 19. When the storage box 16 is full, the electric motor one 6 is turned off, and the fixed frame 13 gradually slows down until it stops. The inclined fixed frame 13 will contact the spring one 15 and be kept stable by the spring one 15. The device uses the rotating main shaft 7 and the tiltable fixed frame 13 to further purify the blueberry juice in the storage box 16 by using the centrifugal force, so as to ensure the obtaining of blueberry juice with sufficient purity, reduce the necessity of multiple purification of the blueberry juice, save the time for obtaining the blueberry anti-radiation medicine raw material, and improve the convenience and work efficiency.
[0033] With reference to Figure 7 , Figure 8 and Figure 9The closed filling assembly 5 comprises a containing groove 501, a lifting plate 502 is slidably connected in the containing groove 501, a cutting groove is formed in one side of the fixed frame 13, a fixed plate 506 is slidably connected in the cutting groove, the side, opposite to the lifting plate 502, of the fixed plate 506 is connected by bolts, a rack 503 is connected by bolts outside the fixed plate 506, a connecting rod 504 is rotatably connected by a bearing on one side of the fixed frame 13, a gear two 505 is connected by bolts outside the connecting rod 504, the gear two 505 is engaged with the rack 503, a thin rod is connected by bolts outside the fixed frame 13, a locking hook 507 is rotatably connected by a bearing outside the thin rod, the locking hook 507 is clamped with the gear two 505 outside, and an operation disc 508 is connected by bolts outside the connecting rod 504; an installation ring 509 is connected by bolts on the upper side of the fixed frame 13, the installation ring 509 is slidably connected with the inner wall of the hose 9 outside, an annular groove one 511 is formed on the installation ring 509, a plurality of circumferentially equidistant circular grooves are formed in the bottom inner wall of the annular groove one 511, a spring two 512 is connected by bolts in each of the circular grooves, a sealing plate one 510 is slidably connected in the annular groove one 511, the bottom of the sealing plate one 510 is connected by bolts with one end of the plurality of spring two 512, and a plurality of circumferentially equidistant contact plates 513 are connected by bolts on the bottom of the sealing plate one 510; two symmetrical limiting rods 515 are connected by bolts on the inner wall of the circular hole on the fixed frame 13, the opposite sides of the two limiting rods 515 are both connected by bolts with the same positioning plate 514, the bottom of the positioning plate 514 is connected by bolts with the extrusion block 517, and the box opening 17 is arranged below the positioning plate 514, the bottom of the box opening 17 is connected by bolts with the upper side of the storage box 16, two symmetrical clamping grooves 516 are formed on the upper side of the box opening 17, the inner walls of the clamping grooves 516 are clamped with the outer portions of the two limiting rods 515 respectively, the upper sides of the box opening 17 are attached with the bottoms of the plurality of contact plates 513, an annular groove two 518 is formed in the inner wall of the box opening 17, a plurality of circumferentially equidistant small holes are formed in the top inner wall of the annular groove two 518, a spring three 519 is connected by bolts in each of the small holes, a short rod is connected by bolts with the end, away from the positioning plate 514, of each of the plurality of spring three 519, the same sealing plate two 520 is connected by bolts on the side, close to the extrusion block 517, of each of the plurality of short rods, the outer portion of the sealing plate two 520 is slidably connected with the inner wall of the box opening 17, and the upper side of the sealing plate two 520 is attached with the bottom of the extrusion block 517.
[0034] Specifically, after placing the storage box 16 in the lifting plate 502 in the fixed frame 13, rotating the operation disc 508 makes the rack 503 engaged by the locking hook 507 on the connecting rod 504 move upwards, so that the fixed plate 506 connected with the rack 503 can drive the lifting plate 502 to move upwards, so that the box opening 17 on the storage box 16 can be lifted into the circular hole on the fixed frame 13, when the clamping groove 516 on the box opening 17 is embedded with the limiting rod 515, the extrusion block 517 at the bottom of the positioning plate 514 will push the sealing plate two 520 in the annular groove two 518 downwards as the box opening 17 rises, exposing the passage that allows blueberry juice and fine residues to flow in, the upper side of the rising box opening 17 will be pushed by the contact plate 513 at the bottom of the mounting ring 509 on the upper side of the fixed frame 13, so that the sealing plate one 510 can be lifted from the annular groove one 511, leaving a passage for blueberry juice and fine residues to flow in, at this time, the juice and fine residues flowing out of the hose 9 will enter the storage box 16 through the fully penetrating mounting ring 509 to complete storage, when the storage box 16 is full and needs to be replaced, the locking hook 507 is disengaged from the clamping of the gear two 505, so that the storage box 16 can be separated from the mounting ring 509, after the storage box 16 is taken out, the sealing plate one 510 and the sealing plate two 520 will be pulled into the annular groove one 511 and the annular groove two 518 by the spring two 512 and the spring three 519, closing the mounting ring 509 and the box opening 17, disconnecting the supply of blueberry juice, so as to place the next empty storage box 16.
[0035] In specific application scenarios, the closed filling assembly 5 is suitable for the closed filling link in the closed filling process, that is, the closed filling assembly 5 uses the positioning plate 514 and the extrusion block 517 to make the storage box 16 filled with blueberry juice in a closed environment after being placed, and can be quickly closed after the storage box 16 is taken out, so that the obtained blueberry juice is always isolated from the external environment, ensuring that external pollutants will not come into contact with the blueberry juice, ensuring the purity and safety of the blueberry juice.
[0036] Working principle: after the blueberry fruit is poured into the crushing assembly 4 through the pouring pipe 416, the motor two 403 is started, the connecting shaft 402 is rotated, the vertical rod one 406 and the vertical rod two 407 connected with the connecting shaft 402 are used to stir and crush the blueberry fruit by using the crushing rod 408, the lumps of blueberry pulp deposited at the bottom are sent into the upper crushing roller 411 and the lower crushing roller 413 through the flow tank 412, the rotating lower crushing roller 413 uses the crushing teeth 415 to crush the pulp to release the juice from the pulp, the gear one 409 on the vertical rod one 406 is engaged with the gear ring 410 to rotate the cylinder wall 414, the crushed pulp and juice are separated by centrifugation, the juice is discharged from the fine holes on the filtrate cylinder 404, after the obtained primary blueberry juice and fine residues pass through the filtrate cylinder 404 into the connecting pipe 8, the rotating operation disc 508 makes the locking hook 507 on the connecting rod 504 engaged with the rack 503 move upward, the fixed plate 506 connected with the rack 503 can drive the lifting plate 502 to move upward, so that the box opening 17 on the storage box 16 can be lifted into the circular hole on the fixed frame 13, when the clamping groove 516 on the box opening 17 is embedded with the limiting rod 515, the extrusion block 517 at the bottom of the positioning plate 514 can push the sealing plate two 520 in the annular groove two 518 downward as the box opening 17 rises, exposing the passage that allows the blueberry juice and fine residues to flow in, the upper side of the rising box opening 17 can push the contact plate 513 at the bottom of the mounting ring 509 on the upper side of the fixed frame 13, so that the sealing plate one 510 can be lifted from the annular groove one 511, leaving a passage for the blueberry juice and fine residues to flow in, at this time, the juice and fine residues flowing out of the hose 9 will enter the storage box 16 through the fully penetrating mounting ring 509 for storage, when the storage box 16 is full and needs to be replaced, the locking hook 507 is disengaged from the clamping of the gear two 505, so that the storage box 16 can be separated from the mounting ring 509, after the storage box 16 is separated and taken out, the sealing plate one 510 and the sealing plate two 520 will fall into the annular groove one 511 and the annular groove two 518 under the pulling of the spring two 512 and the spring three 519, closing the mounting ring 509 and the box opening 17, cutting off the supply of blueberry juice, so as to place the next empty storage box 16, the motor one 6 is started, the motor one 6 drives the main shaft 7 to rotate, so that the fixed frame 13 connected with the connecting piece 11 starts to rotate, by using the centrifugal effect, the fixed frame 13 will be inclined at a certain angle, the blueberry juice in the storage box 16 will fall to the bottom of the storage box 16 through the residue filter plate 18, and the fine residues will be filtered out by the residue filter plate 18, the accumulation of blueberry juice can be observed through the scale groove 19, when the storage box 16 is full, the motor one 6 is turned off,The fixed frame 13 will gradually decelerate until it stops, the inclined fixed frame 13 will contact the spring 15 and be kept stable by the spring 15, after the storage box 16 is full, the motor 6 is turned off, the storage box 16 is replaced after the fixed frame 13 is kept stable, and the process is repeated.
[0037] The above merely describes the preferred embodiments of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacements or changes within the technical scope disclosed by the present application and according to the technical solutions and the inventive concept of the present application, which should be covered within the protection scope of the present application.
Claims
1. A separation and purification device for processing blueberry anti-radiation drugs, comprising a horizontal plate (1), characterized in that, The bottom of the horizontal plate (1) is fixedly connected to a protective sleeve (10), and a crushing component (4) is provided below the protective sleeve (10). The bottom of the horizontal plate (1) is fixedly connected to two symmetrical support plates (2). The two support plates (2) are fixedly connected to the same tray (3) on opposite sides. The tray (3) is provided with fixed frames (13) evenly distributed around its circumference. The upper side of the three fixed frames (13) is provided with round holes, and a sealed filling component (5) is provided in each of the three round holes. The crushing assembly (4) includes a top plate (401) with holes and a connecting shaft (402) movably connected inside the holes; a filter cylinder (404) is movably connected to the bottom of the connecting shaft (402); a filter cylinder (404) is provided on the outside of the filter cylinder (404) with multiple circumferentially distributed filter holes; an upper crushing mill (411) is fixedly connected to the outside of the filter cylinder (404); and a lower crushing mill (413) is movably connected to the outside of the filter cylinder (404). The filter cylinder (404) is movably connected to a connecting pipe (8). The connecting pipe (8) is located below the lower crushing mill (413). The bottom of the connecting pipe (8) is fixedly connected to a main shaft (7). The upper side of the support plate (3) is fixedly connected to a motor (6). The output end of the motor (6) is connected to the bottom of the main shaft (7) through a coupling. The connecting pipe (8) has three circumferentially spaced circular holes. A flexible hose (9) is fixedly connected inside the circular holes. The bottom of the flexible hose (9) is fixedly connected to the upper side of the fixed frame (13). A storage box (16) is provided inside the fixed frame (13). A filter plate (18) is fixedly connected to the inner wall of the storage box (16). A scale groove (19) is provided on the side of the storage box (16) away from the boss (12). The main shaft (7) is fixedly connected to three circumferentially distributed connecting parts (11). Each of the three connecting parts (11) is fixedly connected to a thin shaft. Each thin shaft is movably connected to a boss (12). The side of the boss (12) away from the connecting part (11) is fixedly connected to the side of the fixed frame (13). Each connecting part (11) is fixedly connected to a buffer plate (14). The side of the buffer plate (14) close to the fixed frame (13) is fixedly connected to a spring (15).
2. The separation and purification apparatus for processing blueberry anti-radiation drugs according to claim 1, characterized in that, A second motor (403) is provided on the upper side of the connecting shaft (402). The output end of the second motor (403) is connected to the upper side of the connecting shaft (402) through a coupling. The exterior of the second motor (403) is fixedly connected to the inner wall of the protective sleeve (10). A circular groove is provided on the upper side of the cylinder top plate (401). A delivery pipe (416) is fixedly connected in the circular groove. The exterior of the delivery pipe (416) passes through the horizontal plate (1) and is fixedly connected to the horizontal plate (1).
3. The separation and purification apparatus for processing blueberry anti-radiation drugs according to claim 2, characterized in that, Two symmetrical crossbars (405) are provided below the top plate (401). The opposite side of the two crossbars (405) is fixedly connected to the outside of the connecting shaft (402). The bottom of the two crossbars (405) is fixedly connected to symmetrical vertical rod one (406) and vertical rod two (407). The outside of vertical rod one (406) and vertical rod two (407) are fixedly connected to multiple equally spaced breaking rods (408). The top plate (401) is movably connected to the outside of the cylinder wall (414).
4. The separation and purification apparatus for processing blueberry anti-radiation drugs according to claim 3, characterized in that, The lower crushing mill (413) is located below the upper crushing mill (411), and the outside of the lower crushing mill (413) is movably connected to the inner wall of the cylinder wall (414). The upper side of the upper crushing mill (411) is provided with multiple circumferentially distributed flow grooves (412). The bottom of the upper crushing mill (411) and the upper side of the lower crushing mill (413) are both fixedly connected with multiple circumferentially distributed crushing teeth (415).
5. The separation and purification apparatus for processing blueberry anti-radiation drugs according to claim 4, characterized in that, The external part of the vertical rod (406) is movably connected to the gear (409), and the inner wall of the cylinder wall (414) is fixedly connected to the gear ring (410), and the gear ring (410) meshes with the gear (409).
6. The separation and purification apparatus for processing blueberry anti-radiation drugs according to claim 1, characterized in that, The sealed filling assembly (5) includes a receiving groove (501), a lifting plate (502) is slidably connected in the receiving groove (501), a cutting groove is opened on one side of the fixed frame (13), a fixed plate (506) is slidably connected in the cutting groove, the fixed plate (506) is fixedly connected to the side opposite to the lifting plate (502), a rack (503) is fixedly connected to the outside of the fixed plate (506), and a connecting rod (504) is movably connected to one side of the fixed frame (13). A gear (505) is bolted to the outside of the connecting rod (504), the gear (505) meshes with the rack (503), a thin rod is fixedly connected to the outside of the fixed frame (13), a locking hook (507) is rotated by a bearing on the outside of the thin rod, the locking hook (507) is engaged with the gear (505), and an operating disc (508) is fixedly connected to the outside of the connecting rod (504).
7. The separation and purification apparatus for processing blueberry anti-radiation drugs according to claim 6, characterized in that, The upper side of the fixed frame (13) is fixedly connected to the mounting ring (509). The outside of the mounting ring (509) is slidably connected to the inner wall of the hose (9). The mounting ring (509) has an annular groove (511). The bottom inner wall of the annular groove (511) has multiple circumferentially distributed circular grooves. Springs (512) are fixedly connected in each circular groove. A sealing plate (510) is slidably connected in the annular groove (511). The bottom of the sealing plate (510) is fixedly connected to one end of multiple springs (512). Multiple circumferentially distributed contact plates (513) are fixedly connected to the bottom of the sealing plate (510).
8. The separation and purification apparatus for processing blueberry anti-radiation drugs according to claim 7, characterized in that, Two symmetrical limiting rods (515) are fixedly connected to the inner wall of the circular hole on the fixed frame (13). The same positioning plate (514) is fixedly connected to the opposite side of the two limiting rods (515). An extrusion block (517) is fixedly connected to the bottom of the positioning plate (514). A box opening (17) is provided below the positioning plate (514). The bottom of the box opening (17) is fixedly connected to the upper side of the storage box (16). Two symmetrical slots (516) are opened on the upper side of the box opening (17). The inner wall of the slots (516) is respectively engaged with the outer side of the two limiting rods (515). The upper side of the box opening (17) is engaged with multiple The bottom of the contact plate (513) is attached, and the inner wall of the box opening (17) is provided with an annular groove (518). The top inner wall of the annular groove (518) is provided with multiple circumferentially distributed fine holes. Springs (519) are fixedly connected in each of the fine holes. Short rods are fixedly connected to the ends of the multiple springs (519) away from the positioning plate (514). The same sealing plate (520) is fixedly connected to the side of the multiple short rods near the extrusion block (517). The outside of the sealing plate (520) is slidably connected to the inner wall of the box opening (17), and the upper side of the sealing plate (520) is attached to the bottom of the extrusion block (517).
Citation Information
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