Preparation process and equipment of fivestamen fig gold soup tonifying buddha jumps over the wall
Patent Information
- Application Number
- CN202611208808.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-08-11
- Publication Date
- 2026-09-18
AI Technical Summary
[0005]本发明的目的在于提供一种五指毛桃金汤滋补佛跳墙的制备工艺及设备,以解决茯苓等脆质颗粒碎裂损耗的问题
本发明通过设置顶半圆风盒、底半圆风盒等结构,利用交替切换的送风、抽吸分区在制备筒内形成闭环式颗粒料循环流动通道,并借助颗粒料与粉尘之间的重力差异实现自动分层分离,及时吸除粉尘,同时依靠气流托举沉降的物料,避免与隔件发生高强度硬性撞击、挤压摩擦,有效降低颗粒料在翻动过程中的破碎率,保留颗粒料完整外形,提升颗粒料成品品相与洁净品质,保障五指毛桃金汤佛跳墙汤的成品风味。
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Figure CN122767599A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of Buddha Jumps Over the Wall preparation equipment technology, and in particular to a preparation process and equipment for a Five-Finger Peach Golden Soup tonic Buddha Jumps Over the Wall. Background Technology
[0002] Five-finger peach golden soup nourishing Buddha Jumps Over the Wall belongs to the category of medicinal and edible nourishing pre-prepared dishes. It is mainly made by simmering five-finger peach extract with various nourishing granular ingredients such as poria cocos. The cleanliness of the ingredients directly determines the color, flavor and edibility of the finished soup. In the industrial mass production process, dust and fine impurities are easily attached to the surface of the granular ingredients. Therefore, the granular materials need to undergo fine purification treatment to ensure that the golden soup is clear and free of impurities, and to improve the taste and safety of the finished product.
[0003] In existing technologies, vibrating screens are often used to combine unidirectional airflow to remove floating dust. Vibrating screens rely on mechanical oscillation to peel off floating dust, which can easily cause brittle particles such as Poria cocos to break and be lost. In addition, the unidirectional airflow can cause secondary pollution, affecting the preparation effect.
[0004] Therefore, it is necessary to propose a preparation process and equipment for Five-Finger Peach Golden Soup to nourish Buddha Jumps Over the Wall and solve the above problems. Summary of the Invention
[0005] The purpose of this invention is to provide a preparation process and equipment for Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall, so as to solve the problem of breakage and loss of brittle particles such as Poria cocos.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a preparation device for Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall, comprising a preparation cylinder, wherein the preparation cylinder is provided with a feeding section, a processing section and a discharging section in sequence from top to bottom; The processing section is equipped with a gas flow direction control component, which includes a top semi-circular air box and a bottom semi-circular air box. The top semi-circular air box and the bottom semi-circular air box are rotatably arranged inside the preparation cylinder around the axis of the preparation cylinder. The top semi-circular air box and the bottom semi-circular air box are distributed vertically along the height direction of the preparation cylinder and are staggered horizontally along the horizontal plane of the preparation cylinder. When the granular material enters the preparation cylinder from the feeding section, the bottom semi-circular air box supplies gas into the preparation cylinder, and the top semi-circular air box extracts the gas from inside the preparation cylinder. In the initial stage when the granules enter the preparation cylinder, the bottom semi-circular air box is located below the initial granules and conveys gas to the granules from the bottom. The gas passes through the partition and drives the granules and dust to tumble upwards. As the top and bottom semi-circular air boxes rotate, in the next working time, the bottom semi-circular air box rotates to the other side of the preparation cylinder, while the top semi-circular air box rotates to the top of the initial granules. The top semi-circular air box sucks out the dust from the top of the initial granules. The initial granules fall faster due to gravity and the lack of force at the bottom. After the next working time, the bottom semi-circular air box returns to the bottom of the initial granules, and the initial granules are once again slowed down by the air support.
[0007] Preferably, the preparation cylinder is provided with a vertical tube inside, and the bottom end of the vertical tube extends out from the discharge part at the bottom end of the preparation cylinder. The vertical tube can rotate and move axially relative to the preparation cylinder. The vertical tube has independent delivery channels and suction channels arranged side by side along the axial direction. The delivery channel is connected to the factory gas delivery pipeline, and the suction channel is connected to the factory negative pressure suction pipeline. The bottom semi-circular air box is fixed on the vertical tube, and the delivery channel is connected to the bottom semi-circular air box. The top of the preparation cylinder is provided with a feed pipe that rotates synchronously with the vertical tube. The lower half of the feed pipe is slidably provided with an outer sleeve, and the top semi-circular air box is fixed on the outer sleeve. The top semi-circular air box is connected to the suction channel.
[0008] Preferably, a synchronization component is provided between the feed pipe and the vertical pipe. The synchronization component includes a square rod and a square groove. The square groove is axially opened at the top center of the vertical pipe, and the square rod is fixed to the bottom of the feed pipe. The vertical pipe slides up and down at the bottom of the square rod through the square groove.
[0009] Preferably, the top of the preparation cylinder is provided with a driving device that drives the feed pipe to rotate. The driving device includes a motor, a first gear and a second gear. The motor drives the first gear to rotate, which in turn drives the feed pipe to rotate. With the cooperation of the square rod and the square groove, the feed pipe drives the vertical pipe, the outer sleeve, the top semi-circular air box and the bottom semi-circular air box to rotate synchronously.
[0010] Preferably, the bottom of the feed pipe sidewall has a groove for discharging material, and the bottom of the outer sleeve sidewall has a sleeve groove; A first electric push rod is provided between the lower end of the outer sleeve and the lower end of the feed pipe. The first electric push rod is vertically distributed. The extension and retraction of the first electric push rod drives the outer sleeve to move up and down relative to the feed pipe, thereby adjusting the size of the opening between the tube groove and the sleeve groove.
[0011] Preferably, the lower half of the preparation cylinder is provided with a partition, and the bottom semi-circular air box is located below the partition. The partition includes a plurality of fan-shaped perforated plates with round holes. The perforated plate is hinged to the inner wall of the preparation cylinder, and a rubber rim is fixedly connected to the edge of the perforated plate. A rotating ring is rotatably installed on the vertical tube, and the rubber rim is fixed on the rotating ring.
[0012] Preferably, the bottom of the preparation cylinder is provided with a control component that drives the vertical tube to move up and down. The control component includes a connecting plate and a second electric push rod. The fixed end of the second electric push rod is installed at the bottom of the preparation cylinder, and the connecting plate is fixedly connected to the telescopic end of the second electric push rod. The bottom end of the vertical tube is rotatably set on the connecting plate. When the second electric push rod telescopically moves, it drives the vertical tube and the bottom semi-circular air box to move up and down.
[0013] Preferably, the bottom semicircular air box has several bottom holes through the top and the top semicircular air box has several top holes through the bottom.
[0014] Preferably, the bottom of the preparation cylinder is fixedly mounted on a support frame, and the support frame is fixed to the workshop floor by bolts.
[0015] This invention also discloses a preparation process for Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall, which uses the above-mentioned equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall, and further includes the following operating steps: S1. Uniform material distribution: The granular material is fed into the feeding section of the preparation cylinder, and the granular material is evenly distributed to the processing section of the preparation cylinder along the circumference of the preparation cylinder by a rotary material distribution method. S2. Alternating airflow dust removal: The top semi-circular air box and bottom semi-circular air box are staggered and rotate synchronously. The bottom semi-circular air box moves in turn to send air upward under the granules. The airflow lifts the granules and removes floating dust. After changing position, the top semi-circular air box moves to the top of the granules to suck up suspended dust. After changing position again, the top semi-circular air box sends air upward to lift and settle the granules. S3. Finished product discharge: Clean granular material is discharged from the discharge section of the preparation cylinder and sent to the soup base preparation process of Five-Finger Peach Golden Soup Buddha Jumps Over the Wall. S4. Buddha Jumps Over the Wall is prepared by simmering the original extract of Five-Finger Peach with broth to make a nourishing golden soup. Purified granular ingredients are added, along with seafood and mushrooms, and simmered together until flavorful. After being packaged, sterilized, and cooked, the nourishing Buddha Jumps Over the Wall soup with Five-Finger Peach is obtained.
[0016] The technical effects and advantages of this invention are as follows: This invention, through the design of a top semi-circular air box and a bottom semi-circular air box, utilizes alternating air supply and suction zones to form a closed-loop granular material circulation channel within the preparation cylinder. It also leverages the gravity difference between the granules and dust to achieve automatic stratification and separation, promptly removing dust. Simultaneously, the airflow lifts the settling material, preventing high-intensity hard impacts, compression, and friction with the partitions. This effectively reduces the breakage rate of the granules during the turning process, preserving their intact shape, improving the appearance and cleanliness of the finished granular product, and ensuring the flavor of the Five-Finger Peach Golden Soup Buddha Jumps Over the Wall. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the equipment used to prepare the Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall in Embodiment 1 of the present invention.
[0018] Figure 2 This is a cross-sectional structural schematic diagram of the equipment used to prepare the Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to the present invention.
[0019] Figure 3 For the present invention Figure 2 Enlarged schematic diagram of the structure at point A in the middle.
[0020] Figure 4 For the present invention Figure 2 Enlarged schematic diagram of the structure at point B.
[0021] Figure 5 This is a schematic diagram of the top semicircular air box and the bottom semicircular air box of the present invention.
[0022] Figure 6 This is a schematic diagram of the preparation cylinder and perforated plate structure of the present invention.
[0023] Figure 7 This is a schematic diagram of the outer casing and top semi-circular air box structure of the present invention.
[0024] Figure 8 This is a schematic diagram of the feed pipe and trough structure of the present invention.
[0025] Figure 9 This is a cross-sectional structural diagram of the equipment used to prepare the Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall in Embodiment 2 of the present invention.
[0026] Figure 10 This is an enlarged schematic diagram of the structure at point C in section 9 of the present invention.
[0027] Figure 11 This is a schematic diagram of the fixing box and inner block structure of the present invention.
[0028] In the diagram: 1. Preparation cylinder; 2. Feed pipe; 201. Tube groove; 3. Outer sleeve; 301. Sleeve groove; 4. Top semi-circular air box; 5. Top hole; 6. First electric push rod; 7. Vertical pipe; 701. Feeding channel; 7011. Feeding hole; 702. Suction channel; 7021. Suction hole; 8. Perforated plate; 9. Rubber rim frame; 10. Rotary ring; 11. Bottom semi-circular air box; 12. Through hole; 13. Bottom hole; 14. Connecting plate; 15. Second electric push rod; 16. Feed hopper; 17. Support frame; 18. Motor; 19. First gear; 20. Second gear; 21. Square rod; 22. Square groove; 23. Telescopic tube; 24. Fixing box; 2401. Feeding chamber; 2402. Suction chamber; 25. Inner block. Detailed Implementation
[0029] Example 1
[0030] This invention provides, for example Figures 1 to 8 The device shown is for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall, used to treat the floating dust on the outside of granular materials such as Poria cocos during the preparation of Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall.
[0031] In traditional techniques, vibrating screens are often used to distribute and purify unidirectional airflow to remove floating dust. Vibrating screens rely on mechanical oscillation to peel off floating dust, which can easily cause brittle particles such as Poria cocos to break and be lost. In addition, unidirectional airflow can cause secondary pollution, affecting the preparation effect.
[0032] Therefore, the preparation equipment in this invention includes a preparation cylinder 1, which is arranged vertically in a cylindrical shape and includes a feeding section, a processing section and a discharging section from top to bottom. A support frame 17 is fixedly installed at the bottom of the preparation cylinder 1. The support frame 17 is an integral frame structure used to provide stable support for the preparation cylinder 1. The bottom end of the support frame 17 is fixedly installed on the workshop floor by anchor bolts to ensure the stability of the equipment during operation and to avoid the normal progress of the preparation operation due to vibration caused by the operation of the equipment.
[0033] Reference Figures 1 to 5 As shown, the top of the preparation cylinder 1 is provided with a through groove, and a feed pipe 2 is rotatably arranged inside the through groove. The top end of the feed pipe 2 is connected to the feed hopper 16. The lower half of the feed pipe 2 is slidably provided with an outer sleeve 3, and a limiting groove, a limiting block and other structures (not shown in the figure) are provided between the feed pipe 2 and the outer sleeve 3 to realize the synchronous rotation of the feed pipe 2 and the outer sleeve 3 without affecting the sliding of the outer sleeve 3 along its axial direction on the feed pipe 2. The feed pipe 2, the outer sleeve 3 and the feed hopper 16 constitute the feeding part.
[0034] The lower half of the preparation cylinder 1 is equipped with a partition, which includes multiple fan-shaped perforated plates 8. The perforated plates 8 have several round holes with appropriate inner diameters to ensure that the granules do not pass through.
[0035] The processing section is equipped with a gas flow control component, which includes a top semi-circular air box 4 and a bottom semi-circular air box 11. The top semi-circular air box 4 is fixedly installed on the outer wall of the outer jacket 3. Several top holes 5 are opened through the bottom of the top semi-circular air box 4, and the dust and gas below the top semi-circular air box 4 are drawn in by the top semi-circular air box 4 and the top holes 5. The bottom semi-circular air box 11 is located below the partition, and several bottom holes 13 are opened through the top of the bottom semi-circular air box 11, and the gas is conveyed upward by the bottom semi-circular air box 11 and the bottom holes 13 to form a dust removal airflow. At the same time, the bottom semi-circular air box 11 and the top semi-circular air box 4 are staggered, that is, when one is on the left side of the preparation cylinder 1, the other is on the right side of the preparation cylinder 1.
[0036] Reference Figure 2 , Figure 3 and Figure 4As shown, in the left side of the preparation cylinder 1, gas is conveyed upward by the bottom semi-circular air box 11 and the bottom hole 13, which drives the granules in the corresponding area to move upward. As the bottom semi-circular air box 11 and the top semi-circular air box 4 continue to rotate, the top semi-circular air box 4 moves to the left side of the preparation cylinder 1, and the bottom semi-circular air box 11 moves to the right side of the preparation cylinder 1. At this time, there is no upward blowing force in the left side, and the granules settle downward due to their own gravity. Since the gravity of the granules is greater than that of the dust, the falling speed is relatively fast, so that the dust is still mainly located at the top of the preparation cylinder 1, which is convenient for suction treatment by the top semi-circular air box 4 and the top hole 5.
[0037] Next, the bottom semi-circular air box 11 is reset to the left side of the preparation cylinder 1 and continues to convey gas upward. The airflow lifts the settling granules, avoiding high-intensity hard impacts, squeezing and friction between the granules and the partition, effectively reducing the breakage rate of the granules during the turning process.
[0038] As the bottom semicircular air box 11 and the top semicircular air box 4 continue to rotate, the airflow action areas on the left and right sides of the preparation cylinder 1 are synchronously changed by upper suction and lower air supply, so that the granules are always in an orderly and continuous circulating state in the preparation cylinder 1, with no fixed static accumulation area throughout the process, increasing the frequency of contact between the granules and the airflow, ensuring that the dust is fully removed, and timely dust removal.
[0039] Meanwhile, the partition can prevent the granular material from falling into the bottom semi-circular air box 11 through the bottom hole 13, causing air duct blockage and raw material loss. At the same time, the gas is diverted and dispersed through the perforated plate 8, eliminating local high pressure and strong airflow, so that the airflow is evenly distributed and acts gently on the granular material layer, preventing high-speed airflow from impacting and crushing the granular material.
[0040] In summary, this invention, by setting up structures such as the top semi-circular air box 4 and the bottom semi-circular air box 11, utilizes alternating air supply and suction zones to form a closed-loop granular material circulation channel within the preparation cylinder 1. It also leverages the gravity difference between the granular material and dust to achieve automatic stratification and separation, promptly removing dust. Simultaneously, the airflow lifts the settling material, preventing high-intensity hard impacts, squeezing, and friction with the partitions. This effectively reduces the breakage rate of the granular material during the turning process, preserves the complete shape of the granular material, improves the appearance and cleanliness of the finished granular material, and ensures the flavor of the Five-Finger Peach Golden Soup Buddha Jumps Over the Wall Soup.
[0041] In addition, multiple processes such as circulating turning and deep dust removal and purification are completed simultaneously in the same equipment, which simplifies the supporting production equipment and effectively improves the efficiency of Buddha Jumps Over the Wall raw material pretreatment and preparation.
[0042] Reference Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6As shown, in order to achieve synchronous rotation of structures such as the top semi-circular air box 4 and the bottom semi-circular air box 11, a vertical pipe 7 is provided inside the preparation cylinder 1, and the bottom end of the vertical pipe 7 extends out from the discharge part at the bottom end of the preparation cylinder 1. The vertical pipe 7 can rotate and move axially relative to the preparation cylinder 1. The bottom semi-circular air box 11 is fixedly connected to the vertical pipe 7, and the vertical pipe 7 can drive the bottom semi-circular air box 11 to move synchronously.
[0043] Reference Figure 2 As shown, the bottom of the preparation cylinder 1 is equipped with a control assembly that drives the vertical tube 7 to move up and down. The control assembly includes a connecting plate 14 and a second electric push rod 15. The fixed end of the second electric push rod 15 is fixedly installed at the bottom of the preparation cylinder 1, and the connecting plate 14 is fixedly connected to the telescopic end of the second electric push rod 15. The bottom end of the vertical tube 7 is rotatably mounted on the connecting plate 14. When the second electric push rod 15 telescopically moves, it can drive the vertical tube 7 and the bottom semi-circular air box 11 to move up and down as a whole. When the telescopic end of the second electric push rod 15 remains stationary, the vertical tube 7 can rotate stably. In actual use, multiple sets of control assemblies can be set to ensure the stability of the vertical tube 7 and can be adjusted according to the specific usage.
[0044] Reference Figure 2 and Figure 3 As shown, a synchronization component is provided between the feed pipe 2 and the vertical pipe 7. The synchronization component includes a square rod 21 and a square groove 22. The square groove 22 is axially opened at the top center of the vertical pipe 7. The square rod 21 is fixed to the bottom of the feed pipe 2 and is slidably disposed in the square groove 22. Through the cooperation of the square rod 21 and the square groove 22, it can be ensured that the feed pipe 2 can drive the vertical pipe 7 to rotate synchronously, without affecting the vertical pipe 7 to move up and down axially relative to the feed pipe 2. The rotation and lifting actions do not interfere with each other.
[0045] Reference Figure 2 and Figure 3 As shown, the top of the preparation cylinder 1 is equipped with a drive device that drives the feed pipe 2 to rotate. The drive device includes a motor 18, a first gear 19, and a second gear 20. The motor 18 is fixedly installed on the top of the preparation cylinder 1, the first gear 19 is fixedly installed on the drive shaft of the motor 18, and the second gear 20 is fixed on the feed pipe 2. The first gear 19 and the second gear 20 are meshed together. In use, the motor 18 drives the first gear 19 to rotate. Since the first gear 19 and the second gear 20 are meshed together, the second gear 20 drives the feed pipe 2 to rotate. With the cooperation of the square rod 21 and the square groove 22, the feed pipe 2 drives the vertical pipe 7, the outer sleeve 3, the top semi-circular air box 4, and the bottom semi-circular air box 11 to rotate synchronously, so that a stable and continuous airflow field is formed inside the preparation cylinder 1, ensuring that the granular material flows in an orderly manner.
[0046] Reference Figure 2 , Figure 3 and Figure 4As shown, the vertical pipe 7 has two independent delivery channels 701 and suction channels 702 arranged side by side along the axial direction inside. The delivery channel 701 is connected to the factory gas delivery pipeline for delivering gas, and the suction channel 702 is connected to the factory negative pressure suction pipeline for suctioning gas. The bottom semi-circular air box 11 has a through hole 12 on the side near the vertical pipe 7. The bottom semi-circular air box 11 is connected to the delivery channel 701 in the vertical pipe 7 through the through hole 12. The gas is delivered upward to the preparation cylinder 1 through the delivery channel 701, the through hole 12, the bottom semi-circular air box 11 and the bottom hole 13. A telescopic pipe 23 is fixedly installed between the vertical pipe 7 and the top semi-circular air box 4. The suction channel 702 in the vertical pipe 7 is connected to the top semi-circular air box 4 through the telescopic pipe 23. The dust in the preparation cylinder 1 is suctioned by the suction channel 702, the telescopic pipe 23, the top semi-circular air box 4 and the top hole 5.
[0047] Reference Figure 3 and Figure 5 As shown, in order to achieve uniform feeding of granular material, a discharge groove 201 is provided at the bottom of the side wall of the feed pipe 2, and a sleeve groove 301 is provided at the bottom of the side wall of the outer sleeve 3. The sleeve groove 301 can move up and down with the outer sleeve 3 and selectively communicate with the feed pipe 201. At the same time, by changing the overlapping area of the two, the discharge speed and discharge amount of granular material can be flexibly adjusted. Both the sleeve groove 301 and the feed pipe 201 face the bottom semi-circular air box 11. After the granular material is discharged from the feed hopper 16, feed pipe 2, feed pipe 201, and sleeve groove 301, it can be directly acted on by the gas conveyed upward from the bottom hole 13 to achieve the purpose of lifting and settling the granular material.
[0048] Reference Figure 3 As shown, the lower end of the outer sleeve 3 is lower than the lower end of the feed pipe 2. A first electric push rod 6 is installed at the lower end of the feed pipe 2. The first electric push rod 6 is vertically distributed. The lower end of the outer sleeve 3 is fixed on the telescopic end of the first electric push rod 6. The telescopic movement of the first electric push rod 6 drives the outer sleeve 3 to move up and down relative to the feed pipe 2, thereby adjusting the size of the opening between the tube groove 201 and the sleeve groove 301. In addition, a power supply device for supplying power to the first electric push rod 6 is provided on the outside of the outer sleeve 3. The power supply device adopts a battery power supply structure, which is a conventional prior art in this field. Its specific structure and circuit connection relationship will not be described in detail here.
[0049] Specifically, during the operation of the equipment, the feed pipe 2 is in a continuous rotating state, and the granular material is evenly distributed circumferentially through the connecting area of the pipe groove 201 and the sleeve groove 301, realizing the rotating uniform material distribution, so that the granular material is evenly distributed and loosely dropped along the circumferential direction of the preparation cylinder 1, improving the uniformity and thoroughness of subsequent airflow tumbling and dust removal.
[0050] Simultaneously, as the outer sleeve 3 moves downward, it drives the top semi-circular air box 4 to move downward synchronously. The negative pressure suction point can be flexibly changed according to the dust suspension height in the preparation cylinder 1, expanding the suction coverage area and improving dust removal efficiency and cleanliness. During this process, the inner wall of the outer sleeve 3 closes the tube groove 201, causing the sleeve groove 301 and the tube groove 201 to be staggered and cut off the feeding channel, realizing the feeding pause. This allows the equipment to perform dust removal operations in the preparation cylinder 1 independently, avoiding the problem of particle accumulation and excessive dust removal load caused by continuous feeding.
[0051] In addition, the up-and-down movement of the outer jacket 3, in conjunction with the rotation of the feed pipe 2, can prevent blockage of the feed channel.
[0052] By setting up structures such as the outer jacket 3, on the one hand, the size of the feed flow cross section is adjusted by the relative sliding of the outer jacket 3 and the feed pipe 2, and the material in the preparation cylinder 1 is evenly distributed and loosely dropped in the circumference by the rotation of the feed pipe 2. On the other hand, the lifting and lowering of the outer jacket 3 can drive the top semi-circular air box 4 to move synchronously, flexibly switch the negative pressure suction point in the preparation cylinder 1, enhance the dust collection effect, and integrate multiple functions such as feed flow rate adjustment, uniform material distribution, and adjustable suction height to improve the efficiency of use.
[0053] Reference Figures 2 to 6 As shown, to achieve continuous processing, the middle section of the arc-shaped side of the perforated plate 8 is hinged to the inner wall of the preparation cylinder 1; a rubber rim frame 9 is fixedly connected to the edge of the perforated plate 8, and a rotating ring 10 is rotatably mounted on the vertical tube 7. The rubber rim frame 9 is fixed on the rotating ring 10. The rubber rim frame 9 not only plays a sealing role to prevent the granular material from leaking out from the edge of the perforated plate 8, but also provides buffering and elastic compensation for the flipping of the perforated plate 8; when the vertical tube 7 drives the rotating ring 10 to move up and down, the rotating ring 10 synchronously drives the rubber rim frame 9 to move, thereby driving the perforated plate 8 to open and close around its hinge point with the preparation cylinder 1.
[0054] When it is necessary to discharge granular material, the telescopic end of the second electric push rod 15 is extended, the vertical pipe 7 and the rotating ring 10 move downward. During the downward movement of the rotating ring 10, the rubber edge frame 9 on both sides is pulled, which forces the end of the perforated plate 8 near the vertical pipe 7 to flip downward. A discharge gap is formed between two adjacent perforated plates 8. The granular material passes through the gap under the action of gravity and is discharged by the discharge part at the bottom of the preparation cylinder 1. The granular material that falls on the bottom semi-circular air box 11 is thrown out during the rotation of the bottom semi-circular air box 11 and no residue is left.
[0055] Meanwhile, the discharge flow rate and discharge speed can be adjusted by controlling the opening of the gap between the perforated plates 8.
[0056] Example 2
[0057] This invention provides, for example Figures 9-11The device shown is for preparing Five-Finger Peach Golden Soup to nourish Buddha Jumps Over the Wall. A fixed box 24 is fixedly connected to the connecting plate 14. The bottom end of the vertical tube 7 is rotatably connected to the fixed box 24. The fixed box 24 is arranged from bottom to top with a delivery chamber 2401 and a suction chamber 2402. The delivery chamber 2401 is connected to the factory gas delivery pipeline, and the suction chamber 2402 is connected to the factory negative pressure suction pipeline.
[0058] A delivery hole 7011 is provided on the inner wall of the delivery channel 701. During the rotation of the vertical pipe 7, the delivery channel 701 and the delivery chamber 2401 are always connected and cooperated through the delivery hole 7011, so that the gas is delivered upward to the preparation cylinder 1 through the delivery chamber 2401, the delivery hole 7011, the delivery channel 701, the through hole 12, the bottom semi-circular air box 11 and the bottom hole 13.
[0059] The inner wall of the suction channel 702 is provided with a suction hole 7021. The dust in the preparation cylinder 1 is sucked out by the suction chamber 2402, the suction hole 7021, the suction channel 702, the telescopic tube 23, the top semi-circular air box 4 and the top hole 5. The inner block 25 is fixedly connected in the suction chamber 2402 and is attached to the outer wall of the vertical tube 7. The inner block 25 cooperates with the suction hole 7021. Specifically, when the vertical tube 7 rotates, when the suction hole 7021 coincides with the inner block 25, the inner block 25 blocks the suction hole 7021, and the suction chamber 2402 is sucked to a negative pressure state. When the suction hole 7021 and the inner block 25 are misaligned, a strong suction force is periodically formed under the action of the negative pressure difference.
[0060] Furthermore, rubber sealing rings and other structures are provided at positions such as the vertical tube 7, the fixing box 24, and the inner block 25 to reduce wear and ensure sealing.
[0061] By setting up structures such as the fixed box 24, the air supply passage and the suction passage are integrated, and a strong suction force is formed periodically, which further enhances the dust separation and collection effect.
[0062] This invention also discloses a preparation process for Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall, which uses the above-mentioned equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall, and further includes the following operating steps: S1. Uniform material distribution: Particles such as Poria cocos are fed into the feeding section of the preparation cylinder 1. The particles are evenly distributed to the processing section of the preparation cylinder 1 along the circumference of the preparation cylinder 1 by a rotary material distribution method, so as to ensure that the subsequent airflow can fully contact the particles and improve the uniformity of dust removal. S2. Alternating airflow dust removal: The top semi-circular air box 4 and bottom semi-circular air box 11, which are staggered, rotate continuously and synchronously. The bottom semi-circular air box 11 moves in turn to send air upward under the granules, fully turning the material and removing the floating dust attached to the folds and pores of the granules. After the top semi-circular air box 4 and the bottom semi-circular air box 11 are interchanged, the particles settle downwards by their own weight. At this time, the top semi-circular air box 4 moves above the particles and uses negative pressure to draw and separate the suspended dust. After the position is changed again, the top semi-circular air box 4 sends air upward to lift and settle the granular material. The airflow lifts and buffers the impact of the falling granular material to avoid hard impact and breakage. S3. Finished product discharge: After completing multiple rounds of dust removal and purification, the clean granular material is discharged from the discharge section of the preparation cylinder 1. The collected dust-free granular material is sent to the soup base cooking process of Wuzhimaotao Golden Soup Buddha Jumps Over the Wall to ensure the quality of Buddha Jumps Over the Wall.
[0063] S4. Buddha Jumps Over the Wall is prepared by simmering the original extract of Five-Finger Peach with broth to make a nourishing golden soup. Purified granular ingredients are added, along with seafood and mushrooms, and simmered together to infuse flavor. After being packaged, sterilized, and cooked, the result is a Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall with a complete appearance, high cleanliness, and pure flavor.
Claims
1. A preparation apparatus for a tonic Buddha Jumps Over the Wall soup made with five-finger peach and golden sesame seeds, comprising a preparation cylinder (1), characterized in that: The preparation cylinder (1) is provided with a feeding section, a processing section and a discharging section from top to bottom; The processing section is provided with a gas flow direction control component, which includes a top semi-circular air box (4) and a bottom semi-circular air box (11). The top semi-circular air box (4) and the bottom semi-circular air box (11) are rotatably arranged inside the preparation cylinder (1) around the axis of the preparation cylinder (1). The top semi-circular air box (4) and the bottom semi-circular air box (11) are distributed up and down along the height direction of the preparation cylinder (1) and are staggered left and right along the horizontal plane of the preparation cylinder (1). When the granules enter the preparation cylinder (1) from the feed section, the bottom semi-circular air box (11) delivers gas into the preparation cylinder (1), and the top semi-circular air box (4) extracts the gas inside the preparation cylinder (1). When the granules enter the preparation cylinder (1) in the initial stage, the bottom semi-circular air box (11) is located below the initial granules and conveys gas to the granules from the bottom. The gas passes through the partition and drives the granules and dust to turn upward as a whole. As the top semi-circular air box (4) and the bottom semi-circular air box (11) rotate, in the next working time, the bottom semi-circular air box (11) rotates to the other side of the preparation cylinder (1), while the top semi-circular air box (4) rotates to the top of the initial granules. The top semi-circular air box (4) sucks out the dust from the top of the initial granules. The initial granules accelerate down due to gravity and the lack of force at the bottom. After the next working time, the bottom semi-circular air box (11) returns to the bottom of the initial granules, and the initial granules are again slowed down by the air support.
2. The equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 1, characterized in that: The preparation cylinder (1) is provided with a vertical tube (7) inside, and the bottom end of the vertical tube (7) extends out from the discharge part at the bottom end of the preparation cylinder (1). The vertical tube (7) can rotate and move axially relative to the preparation cylinder (1). The vertical tube (7) has an independent delivery channel (701) and a suction channel (702) arranged side by side along the axial direction inside. The delivery channel (701) is connected to the factory gas delivery pipeline, and the suction channel (702) is connected to the factory negative pressure suction pipeline. The bottom semi-circular air box (11) is fixed on the vertical tube (7). The delivery channel (701) is connected to the bottom semi-circular air box (11). The top of the preparation cylinder (1) is provided with a feed pipe (2) that rotates synchronously with the vertical tube (7). The lower half of the feed pipe (2) is slidably provided with an outer sleeve (3). The top semi-circular air box (4) is fixed on the outer sleeve (3). The top semi-circular air box (4) is connected to the suction channel (702).
3. The equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 2, characterized in that: A synchronization component is provided between the feed pipe (2) and the vertical pipe (7). The synchronization component includes a square rod (21) and a square groove (22). The square groove (22) is opened axially at the top center of the vertical pipe (7). The square rod (21) is fixed at the bottom of the feed pipe (2). The vertical pipe (7) slides up and down at the bottom of the square rod (21) through the square groove (22).
4. The preparation equipment for the Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 3, characterized in that: The top of the preparation cylinder (1) is provided with a driving device that drives the feed pipe (2) to rotate. The driving device includes a motor (18), a first gear (19) and a second gear (20). The motor (18) drives the first gear (19) to rotate, which in turn drives the feed pipe (2) to rotate. With the cooperation of the square rod (21) and the square groove (22), the feed pipe (2) drives the vertical pipe (7), the outer sleeve (3), the top semi-circular air box (4) and the bottom semi-circular air box (11) to rotate synchronously.
5. The preparation equipment for the Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 3, characterized in that: The bottom of the side wall of the feed pipe (2) has a pipe groove (201) for discharging material, and the bottom of the side wall of the outer sleeve (3) has a sleeve groove (301). A first electric push rod (6) is provided between the lower end of the outer sleeve (3) and the lower end of the feed pipe (2). The first electric push rod (6) is vertically distributed. The extension and retraction of the first electric push rod (6) drives the outer sleeve (3) to move up and down relative to the feed pipe (2) to adjust the size of the opening between the tube groove (201) and the sleeve groove (301).
6. The equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 2, characterized in that: The lower half of the preparation cylinder (1) is provided with a partition, and the bottom semi-circular air box (11) is located below the partition. The partition includes a plurality of fan-shaped perforated plates (8) with round holes. The perforated plate (8) is hinged to the inner wall of the preparation cylinder (1). A rubber rim frame (9) is fixedly connected to the edge of the perforated plate (8). A rotating ring (10) is rotatably arranged on the vertical tube (7). The rubber rim frame (9) is fixed on the rotating ring (10).
7. The equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 2, characterized in that: The bottom of the preparation cylinder (1) is provided with a control component that drives the vertical tube (7) to move up and down. The control component includes a connecting plate (14) and a second electric push rod (15). The fixed end of the second electric push rod (15) is installed at the bottom of the preparation cylinder (1). The connecting plate (14) is fixedly connected to the telescopic end of the second electric push rod (15). The bottom end of the vertical tube (7) is rotatably set on the connecting plate (14). When the second electric push rod (15) telescopically moves, it drives the vertical tube (7) and the bottom semi-circular air box (11) to move up and down.
8. The equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 1, characterized in that: The bottom semicircular air box (11) has several bottom holes (13) through the top, and the top semicircular air box (4) has several top holes (5) through the bottom.
9. The equipment for preparing Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall according to claim 1, characterized in that: The bottom of the preparation cylinder (1) is fixedly installed on the support frame (17), and the support frame (17) is fixed to the workshop floor by bolts.
10. A preparation process for a nourishing Buddha Jumps Over the Wall soup made with five-finger peach and golden sesame seeds, characterized in that: The preparation equipment for the Five-Finger Peach Golden Soup Nourishing Buddha Jumps Over the Wall as described in any one of claims 1 to 9 further includes the following operational steps: S1. Uniform material distribution: The granular material is fed into the feeding section of the preparation cylinder (1), and the granular material is evenly distributed to the processing section of the preparation cylinder (1) along the circumference by the rotary material distribution method. S2. Circulating alternating airflow dust removal: The top semi-circular air box (4) and bottom semi-circular air box (11) are staggered and rotate synchronously. The bottom semi-circular air box (11) moves in turn to send air upward under the granules. The airflow lifts the granules and removes floating dust. After changing position, the top semi-circular air box (4) moves to the top of the granules to suck up suspended dust. After changing position again, the top semi-circular air box (4) sends air upward to lift and settle the granules. S3, Finished product discharge: Clean granular material is discharged from the discharge section of the preparation cylinder (1) and sent to the soup base cooking process of Five-Finger Peach Golden Soup Buddha Jumps Over the Wall. S4. Buddha Jumps Over the Wall is prepared by simmering the original extract of Five-Finger Peach with broth to make a nourishing golden soup. Purified granular ingredients are added, along with seafood and mushrooms, and simmered together until flavorful. After being packaged, sterilized, and cooked, the nourishing Buddha Jumps Over the Wall soup with Five-Finger Peach is obtained.