Preparation method of wolfberry honey
By combining the pressure boosting mechanism, scraping mechanism, and locking mechanism, the conflict between the stirring mechanism and the scraping and pushing mechanism is resolved, achieving efficient stirring and discharge of goji berry honey, reducing material residue, and making it suitable for industrial production.
Patent Information
- Application Number
- CN202211577793.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-09
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2042-12-09
AI Technical Summary
In the existing technology for preparing wolfberry honey, there is a conflict between the stirring mechanism and the scraping and pushing mechanism, which affects the performance of the scraping and pushing mechanism and makes it inconvenient to discharge the concentrated liquid, resulting in material residue and waste.
It adopts a combined design of a booster drive mechanism, a scraping mechanism, an external locking mechanism and a stirring mechanism. The booster drive mechanism drives the scraping mechanism to stir and scrape, and the switching between the external locking mechanism and the internal locking mechanism enables efficient output of the concentrate and reduces material residue.
It achieves efficient mixing and discharging of goji berry honey, reduces material residue, improves production efficiency, and is suitable for industrial production.
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Figure CN115721948B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of honey preparation, in particular to a preparation method of wolfberry honey. BACKGROUND
[0002] The wolfberry honey is made by mixing the concentrated wolfberry extract and honey. In the prior art, at least two times of extraction is needed for the wolfberry, and then the extracted liquid is mixed, filtered and concentrated under reduced pressure to obtain the concentrated wolfberry extract. Then, the honey and the concentrated wolfberry extract are mixed in a certain proportion to obtain the wolfberry honey.
[0003] In the prior art, the extracted liquid is continuously stirred during the heating process in order to make the heating more uniform and to make the water evaporate better. In addition, due to the high viscosity of the final product, the concentrated wolfberry extract, it is not convenient to discharge the concentrated wolfberry extract. After the discharge is completed, part of the concentrated wolfberry extract remains on the inner wall of the concentration equipment, which is not convenient to clean and also causes waste of raw materials.
[0004] In view of the above problems, the skilled person in the art thinks of setting a scraping and pushing mechanism that can be lifted in order to push the concentrated wolfberry extract during the discharge and scrape the inner wall of the concentration equipment, thereby improving the discharge speed and reducing the residue of the material. However, the existence of the stirring mechanism will inevitably conflict with the scraping and pushing mechanism, which will affect the actual use effect of the scraping and pushing mechanism.
[0005] Therefore, it is necessary to invent a preparation method of wolfberry honey to solve the above problems. SUMMARY
[0006] The present application aims to provide a preparation method of wolfberry honey to solve the problems raised in the background.
[0007] To achieve the above-mentioned purpose, the present application provides the following technical solution: a preparation method of wolfberry honey, which is realized by a wolfberry honey preparation device. The wolfberry honey preparation device comprises a concentration assembly, a booster driving mechanism is arranged on the top of the concentration assembly and inside the concentration assembly, a scraping mechanism is arranged on the top of the inner cavity of the concentration assembly, an outer locking mechanism is fixedly nested on the left side of the concentration assembly, an inner locking mechanism is arranged inside the scraping mechanism, and a stirring mechanism is arranged on the scraping mechanism.
[0008] The concentration assembly comprises a concentration tank, an equalizing pipe, a negative pressure exhaust pipe, a feeding pipe and a discharging pipe.
[0009] The equalizing pipe is fixedly and penetratingly arranged at the right side of the top of the concentration tank, the negative pressure exhaust pipe, the feeding pipe and the discharging pipe are sequentially and fixedly and penetratingly arranged at the left side of the concentration tank from top to bottom, the feeding pipe is provided with a one-way valve, and the discharging pipe is provided with a stop valve;
[0010] The pressure boosting driving mechanism comprises a driving shaft, a pressure boosting hole, a driving motor, driving gears, an air pump and a shunt pipe.
[0011] The driving shaft is located in the inside of the concentration tank, the top end of the driving shaft penetrates the inner wall of the concentration tank and extends to the top of the concentration tank, the driving shaft is rotationally connected with the concentration tank through a bearing, the pressure boosting hole is arranged at the top of the front of the driving shaft, the driving motor is fixedly arranged at the right side of the top of the concentration tank, the driving gears are provided with two, the two driving gears are meshed with each other, one driving gear is drivingly connected with the driving motor, and the other driving gear is fixedly sleeved and arranged at the top end of the outside of the driving shaft, the air pump is fixedly arranged at the left side of the top of the concentration tank, the output end of the air pump is connected with the input end of the shunt pipe, the shunt pipe is provided with four output ends, the first output end is connected with the top end of the driving shaft through a rotary joint, the second output end is connected with the outer locking mechanism, the third output end is connected with the inner locking mechanism, and the inside of the pressure boosting hole and the outlet position of the fourth output end are both fixedly provided with a valve.
[0012] The scraping mechanism comprises a rotating disc, a lifting scraping ring, inner locking holes, outer locking holes, a limiting sliding block and a limiting sliding groove.
[0013] The rotating disc is located at the top of the inner cavity of the concentration tank, the lifting scraping ring is rotationally and sleevedly arranged at the outside of the rotating disc and is attached to the inner wall of the concentration tank through a bearing, the inner locking holes and the outer locking holes are both provided with a plurality of inner locking holes and outer locking holes, the plurality of inner locking holes are uniformly arranged at the outside of the rotating disc, the plurality of outer locking holes are uniformly arranged at the outside of the lifting scraping ring, the limiting sliding block is fixedly arranged at the right side of the lifting scraping ring, the limiting sliding groove is arranged on the inner wall of the concentration tank, and the limiting sliding block is slidingly arranged at the inside of the limiting sliding groove in the vertical direction.
[0014] Preferably, the outer locking mechanism comprises a shell, a first sliding plate, a first locking column and a first spring.
[0015] Preferably, the shell is fixedly and nestingly arranged at the top of the left side of the concentration tank, the first sliding plate is slidingly arranged in the shell in the horizontal direction, the first locking column is fixedly arranged at the right side of the first sliding plate and penetrates the inner wall of the shell and is slidingly connected with the shell, and the first spring is fixedly connected with the left side of the first sliding plate and is fixedly connected with the inner wall of the shell.
[0016] Preferably, the inner locking mechanism comprises a mounting cavity, a second sliding plate, a second locking column and a second spring.
[0017] Preferably, the mounting cavity is arranged inside the lifting scraper ring, the second sliding plate is arranged inside the mounting cavity and slides in the vertical direction, the second locking column is fixedly arranged on the right side of the second sliding plate and penetrates the inner wall of the mounting cavity and extends into the inside of the lifting scraper ring, and the second spring is fixedly connected to the left side of the second sliding plate and connected to the inner wall of the mounting cavity.
[0018] Preferably, the stirring mechanism comprises a stirring rod, an annular upper disc and an annular lower disc.
[0019] Preferably, a plurality of stirring rods are arranged, the plurality of stirring rods uniformly penetrate the rotating disc and are slidably connected to the rotating disc, the annular upper disc is fixedly arranged at the top end of the plurality of stirring rods, the annular lower disc is fixedly arranged at the bottom end of the plurality of stirring rods, and the annular upper disc and the annular lower disc are rotatably nested on the inner wall of the concentration tank through bearings.
[0020] Preferably, the preparation method of the wolfberry honey comprises the following steps:
[0021] S1. The wolfberry raw material is subjected to twice of impregnation and extraction, and the two extraction liquids are input into the inside of the concentration tank through the feeding pipe. At this time, the extraction liquid is heated by the electric heating device arranged inside the concentration tank, and the inside of the concentration tank is pumped by the negative pressure exhaust pipe, so as to reduce the air pressure in the inside of the concentration tank and start the operation of pressure reduction and concentration.
[0022] S2. During the operation of pressure reduction and concentration, the driving motor is started. After the driving motor is started, the driving shaft is driven to rotate through the driving gear. At this time, the first locking column is arranged inside the outer locking hole to lock the lifting scraper ring, so that the lifting scraper ring cannot be lifted. The rotating disc is rotatably arranged inside the lifting scraper ring through the bearing. Therefore, when the driving shaft rotates, the rotating disc which cannot be lowered continuously rotates with the driving shaft. When the rotating disc rotates, the plurality of stirring rods stir the heated extraction liquid.
[0023] S3. After the concentration is completed, the wolfberry extraction concentrated liquid is prepared. At this time, the stop valve on the discharge pipe is opened and the air pump is started. After the air pump is started, the air flow is output through the three output ends of the shunt pipe. The air flow output by the first output end enters the inside of the driving shaft, and then enters the inside of the concentration tank through the valve inside the pressure boosting hole, so as to increase the pressure in the inside of the concentration tank.
[0024] S4. The air flow output by the second output end enters the inside of the shell and pushes the first sliding plate from the right side. At this time, the first sliding plate slides to the left side, so as to compress the first spring and drive the first locking column to separate from the outer locking hole. The air flow output by the third output end enters the inside of the mounting cavity and pushes the second sliding plate from the left side. At this time, the second sliding plate slides to the right side, so as to stretch the second spring and drive the second locking column to enter the inside of the inner locking hole, so as to lock the rotating disc.
[0025] S5, at this time, due to the limiting sliding groove limiting the lifting scraping ring through the limiting sliding block, the rotating disc is limited by the lifting scraping ring through the inner locking mechanism, so the rotating disc cannot continue to rotate, at this time, with the continuous rotation of the driving shaft, the rotating disc and the lifting scraping ring continue to move downward along the inner wall of the concentration tank under the driving of the driving shaft;
[0026] S6, after the gas pressure in the inner cavity of the concentration tank is increased, the Chinese wolfberry extraction concentrate in the concentration tank is discharged faster, and with the continuous descent of the rotating disc and the lifting scraping ring, the lifting scraping ring pushes the Chinese wolfberry extraction concentrate remaining on the inner wall of the concentration tank downward, when the distance of the rotating disc and the lifting scraping ring descending reaches a first threshold, the rotating disc closes the pressure boosting hole, at this time, the airflow output by the air pump can only be discharged through the fourth output end of the shunt pipe;
[0027] S7, with the continuous descent of the rotating disc and the lifting scraping ring, the Chinese wolfberry extraction concentrate in the concentration tank is finally completely output through the discharge pipe, then the driving motor drives the driving gear to rotate reversely, and then the driving shaft drives the rotating disc and the lifting scraping ring to reset, and then the air pump is stopped, at this time, under the pushing of the first spring and the second spring, the first locking column and the second locking column are reset in turn, and then the lifting scraping ring is locked, and the locking of the rotating disc is released;
[0028] S8, the Chinese wolfberry extraction concentrate is mixed with honey in proportion after being discharged, and the Chinese wolfberry honey finished product is prepared after being mixed uniformly.
[0029] The technical effects and advantages of the present application are as follows:
[0030] The present application is provided with a pressure boosting driving mechanism, a scraping mechanism, an outer locking mechanism, an inner locking mechanism and a stirring mechanism, so as to drive the scraping mechanism by the pressure boosting driving mechanism, and then drive the stirring mechanism to complete the stirring of the extraction liquid, in addition, the pressure boosting driving mechanism can also boost the inside of the concentration assembly, and trigger the outer locking mechanism and the inner locking mechanism, and then the inner locking mechanism replaces the outer locking mechanism to lock the scraping mechanism, and then the scraping mechanism outputs the Chinese wolfberry extraction concentrate remaining in the concentration assembly under the driving of the pressure boosting driving mechanism, compared with the same type of device in the prior art, the present application can realize continuous stirring during the pressure reduction and concentration of Chinese wolfberry extraction liquid, and can also realize scraping operation during subsequent discharge, which can speed up the discharge efficiency and reduce material residue, the actual use effect is ideal, and it is more suitable for industrial production. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is the overall front view structure schematic diagram of the concentration tank of the present application.
[0032] Figure 2 It is the overall front view structure schematic diagram of the present application.
[0033] Figure 3 This is a front cross-sectional view of the booster drive mechanism of the present invention.
[0034] Figure 4 This is a front cross-sectional view of the scraping mechanism, outer locking mechanism, and inner locking mechanism of the present invention.
[0035] In the diagram: 1. Concentration component; 11. Concentration tank; 12. Pressure equalization pipe; 13. Negative pressure exhaust pipe; 14. Feed pipe; 15. Discharge pipe; 3. Pressure boosting drive mechanism; 31. Drive shaft; 32. Pressure boosting hole; 33. Drive motor; 34. Drive gear; 35. Air pump; 36. Diverter pipe; 4. Scraping mechanism; 41. Rotating disk; 42. Lifting scraper ring; 43. Inner locking hole; 44. Outer locking hole; 45. Limiting slider; 46. Limiting groove; 5. Outer locking mechanism; 51. Housing; 52. First sliding plate; 53. First locking post; 54. First spring; 6. Inner locking mechanism; 61. Mounting cavity; 62. Second sliding plate; 63. Second locking post; 64. Second spring; 7. Stirring mechanism; 71. Stirring rod; 72. Annular upper plate; 73. Annular lower plate. Detailed Implementation
[0036] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0037] Example 1
[0038] This invention provides, for example Figures 1-4 The invention illustrates a method for preparing wolfberry honey. The method is implemented using a wolfberry honey preparation device, which includes a concentration component 1. A pressurization drive mechanism 3 is provided on the top and inside of the concentration component 1. A scraping mechanism 4 is provided on the top of the inner cavity of the concentration component 1. An outer locking mechanism 5 is fixedly nested on the left side of the concentration component 1. An inner locking mechanism 6 is provided inside the scraping mechanism 4. A stirring mechanism 7 is provided on the scraping mechanism 4.
[0039] like Figure 2As shown, the concentration assembly 1 includes a concentration tank 11, an equalizing pipe 12, a negative pressure exhaust pipe 13, a feed pipe 14 and a discharge pipe 15, wherein the equalizing pipe 12 is fixedly and penetratingly arranged at the right top of the concentration tank 11, the negative pressure exhaust pipe 13, the feed pipe 14 and the discharge pipe 15 are sequentially fixedly and penetratingly arranged at the left side of the concentration tank 11 from top to bottom, the feed pipe 14 is provided with a one-way valve, and the discharge pipe 15 is provided with a stop valve.
[0040] As shown in the Figure 3 As shown, the pressure boosting driving mechanism 3 includes a driving shaft 31, a pressure boosting hole 32, a driving motor 33, a driving gear 34, an air pump 35 and a shunt pipe 36, wherein the driving shaft 31 is located inside the concentration tank 11, the top end of the driving shaft 31 penetrates the inner wall of the concentration tank 11 and extends to the top of the concentration tank 11, the driving shaft 31 is rotationally connected with the concentration tank 11 through a bearing, the pressure boosting hole 32 is arranged at the top of the front of the driving shaft 31, the driving motor 33 is fixedly arranged at the right top of the concentration tank 11, the driving gear 34 is provided with two, the two driving gears 34 are meshed with each other, one driving gear 34 is drivingly connected with the driving motor 33, and the other driving gear 34 is fixedly sleeved and arranged at the top end of the outer side of the driving shaft 31, the air pump 35 is fixedly arranged at the left top of the concentration tank 11, the output end of the air pump 35 is connected with the input end of the shunt pipe 36, the shunt pipe 36 is provided with four output ends, the first output end is connected with the top end of the driving shaft 31 through a rotary joint, the second output end is connected with the outer locking mechanism 5, and the third output end is connected with the inner locking mechanism 6, and the inside of the pressure boosting hole 32 and the fourth output end are both fixedly provided with a valve.
[0041] By the above structure, the driving motor 33 drives the driving shaft 31 to rotate through the driving gear 34, and when the air pump 35 is started, the air pump 35 can trigger the outer locking mechanism 5 and the inner locking mechanism 6 through the shunt pipe 36, and input air flow into the inside of the concentration tank 11 through the pressure boosting hole 32, so as to increase the air pressure inside the concentration tank 11 and improve the material output efficiency.
[0042] As shown in the Figure 3 And Figure 4As shown, the scraping mechanism 4 includes a rotating disk 41, a lifting scraper ring 42, an inner locking hole 43, an outer locking hole 44, a limiting slider 45, and a limiting groove 46. The rotating disk 41 is located at the top of the inner cavity of the concentration tank 11. The lifting scraper ring 42 is rotatably sleeved on the outside of the rotating disk 41 via a bearing and fits against the inner wall of the concentration tank 11. Multiple inner locking holes 43 and multiple outer locking holes 44 are provided. Multiple inner locking holes 43 are evenly opened on the outside of the rotating disk 41, and multiple outer locking holes 44 are evenly opened on the outside of the lifting scraper ring 42. The limiting slider 45 is fixedly installed on the right side of the lifting scraper ring 42. The limiting groove 46 is opened on the inner wall of the concentration tank 11, and the limiting slider 45 is slidably installed on the inner side of the limiting groove 46 in the vertical direction.
[0043] By setting the above structure, when the rotating disk 41 cannot rotate inside the lifting scraper ring 42 due to the locking of the inner locking mechanism 6, the rotating disk 41 driven by the drive shaft 31 will descend along the drive shaft 31 under the restriction of the limit slider 45 and the limit groove 46. At the same time, when the rotating disk 41 descends, it will drive the lifting scraper ring 42 to scrape and push the material remaining on the inner wall of the concentration tank 11.
[0044] like Figure 4 As shown, the external locking mechanism 5 includes a housing 51, a first sliding plate 52, a first locking post 53, and a first spring 54. The housing 51 is fixedly nested on the top left side of the concentration tank 11. The first sliding plate 52 is slidably disposed inside the housing 51 in a horizontal direction. The first locking post 53 is fixedly disposed on the right side of the first sliding plate 52, penetrates the inner wall of the housing 51, and is slidably connected to the housing 51. The first spring 54 is fixedly connected to the left side of the first sliding plate 52 and is fixedly connected to the inner wall of the housing 51.
[0045] By setting the above structure, the airflow output from the second output end can enter the housing 51 and push the first sliding plate 52 from the right side. At this time, the first sliding plate 52 slides to the left, thereby compressing the first spring 54 and driving the first locking pin 53 to be pulled out from the outer locking hole 44, releasing the lock on the lifting scraper ring 42. When the air pump 35 stops, the first locking pin 53 pushes the first sliding plate 52, thereby causing the first sliding plate 52 to drive the first locking pin 53 to reset.
[0046] like Figure 4As shown, the inner locking mechanism 6 comprises a mounting cavity 61, a second sliding plate 62, a second locking column 63 and a second spring 64, wherein the mounting cavity 61 is opened in the inside of the lifting scraping ring 42, the second sliding plate 62 is vertically slidingly arranged in the inside of the mounting cavity 61, the second locking column 63 is fixedly arranged at the right side of the second sliding plate 62 and extends through the inner wall of the mounting cavity 61 to the inside of the lifting scraping ring 42, and the second spring 64 is fixedly connected to the left side of the second sliding plate 62 and fixedly connected with the inner wall of the mounting cavity 61.
[0047] Through the above structure, the airflow output by the third output end enters the inside of the mounting cavity 61 and is pushed by the left second sliding plate 62, at this time, the second sliding plate 62 slides to the right, thereby stretching the second spring 64 and driving the second locking column 63 into the inside of the inner locking hole 43, thereby locking the rotating disc 41, and when the air pump 35 stops, the second spring 64 pulls the second sliding plate 62, thereby resetting the second sliding plate 62 and the second locking column 63.
[0048] As shown in Figure 2 With Figure 4 As shown, the stirring mechanism 7 comprises a stirring rod 71, an annular upper disc 72 and an annular lower disc 73, wherein the stirring rod 71 is provided in plurality, the plurality of stirring rods 71 uniformly penetrate the rotating disc 41 and are slidingly connected with the rotating disc 41, the annular upper disc 72 is fixedly arranged at the top end of the plurality of stirring rods 71, the annular lower disc 73 is fixedly arranged at the bottom end of the plurality of stirring rods 71, and the annular upper disc 72 and the annular lower disc 73 are rotatably nested on the inner wall of the concentration tank 11 through bearings.
[0049] Through the above structure, when the rotating disc 41 rotates, the rotating disc 41 drives the plurality of stirring rods 71 to stir the wolfberry extract, thereby accelerating the efficiency of the reduced pressure distillation of the wolfberry extract, and the arrangement of the annular upper disc 72 and the annular lower disc 73 can make the plurality of stirring rods 71 rotate more stably.
[0050] Example 2
[0051] The preparation method of the wolfberry honey specifically comprises the following steps:
[0052] S1, twice impregnation and extraction of wolfberry raw materials, the two times of extract are input into the inside of the concentration tank 11 through the feed pipe 14, at this time, the extract is heated by the built-in electric heating device of the concentration tank 11, and the inside of the concentration tank 11 is pumped by the negative pressure exhaust pipe 13, thereby reducing the air pressure in the inside of the concentration tank 11 and starting the operation of reduced pressure concentration;
[0053] S2, in the process of reducing pressure concentration, start the driving motor 33, driving motor 33 starts through the driving gear 34 drives the rotation of the drive shaft 31, at this time the first locking column 53 is located in the outer locking hole 44 inside the locking of the lifting scraper ring 42, the lifting scraper ring 42 can't be lifted, rotating disc 41 is arranged inside the lifting scraper ring 42 through the bearing rotation, therefore when the drive shaft 31 rotates, the rotating disc 41 that can't descend continues to rotate with the drive shaft 31, the rotating disc 41 rotates and drives multiple stirring rods 71 to stir the heated extraction liquid;
[0054] S3, after concentration, the concentrated liquid of wolfberry extraction is prepared, at this time the stop valve on the discharge pipe 15 is opened and the air pump 35 is started, the air pump 35 starts through the three output ends of the shunt pipe 36 to output the airflow, the airflow output by the first output end enters the inside of the drive shaft 31, then rushes through the valve inside the booster hole 32 into the inside of the concentration tank 11, and then pressurizes the inside cavity of the concentration tank 11;
[0055] S4, the airflow output by the second output end enters the inside of the shell 51, and the first sliding plate 52 is pushed by the right side at this time, the first sliding plate 52 slides to the left side, and then compresses the first spring 54 while driving the first locking column 53 to separate from the outer locking hole 44, the airflow output by the third output end enters the inside of the mounting cavity 61, and the second sliding plate 62 is pushed by the left side at this time, the second sliding plate 62 slides to the right side, and then stretches the second spring 64 while driving the second locking column 63 to enter the inside of the inner locking hole 43, and then locks the rotating disc 41;
[0056] S5, at this time, because the limiting sliding groove 46 limits the lifting scraper ring 42 through the limiting sliding block 45, the rotating disc 41 is limited by the lifting scraper ring 42 through the inner locking mechanism 6, so the rotating disc 41 can't continue to rotate, at this time, with the continuous rotation of the drive shaft 31, the rotating disc 41 and the lifting scraper ring 42 continuously descend along the inner wall of the concentration tank 11 under the drive of the drive shaft 31;
[0057] S6, after the air pressure in the inside cavity of the concentration tank 11 is enhanced, the concentrated liquid of wolfberry extraction in the inside of the concentration tank 11 is discharged faster, and with the continuous descent of the rotating disc 41 and the lifting scraper ring 42, the lifting scraper ring 42 pushes the concentrated liquid of wolfberry extraction remaining on the inner wall of the concentration tank 11 downward, when the descending distance of the rotating disc 41 and the lifting scraper ring 42 reaches the first threshold value, the rotating disc 41 seals the booster hole 32, at this time the airflow output by the air pump 35 can only be discharged through the fourth output end of the shunt pipe 36;
[0058] S7, with the continuous lowering of the rotating disc 41 and the lifting scraping ring 42, the wolfberry extraction concentrate in the inside of the concentrate tank 11 is completely output through the discharge pipe 15, then the driving motor 33 drives the driving gear 34 to rotate reversely, then the driving shaft 31 drives the rotating disc 41 and the lifting scraping ring 42 to reset, then the air pump 35 is stopped, at this time, the first locking column 53 and the second locking column 63 are reset in turn under the pushing of the first spring 54 and the second spring 64, then the lifting scraping ring 42 is locked, and the rotating disc 41 is unlocked at the same time;
[0059] S8, the wolfberry extraction concentrate is mixed with honey in proportion after being discharged, and the wolfberry honey finished product is prepared after being uniformly mixed.
[0060] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing embodiments of the present application are described in detail, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included in the protection scope of the present application.
Claims
1. A method of preparing wolfberry honey, characterized by: The preparation method of the wolfberry honey is realized by a wolfberry honey preparation device, which comprises a concentration assembly (1), the top of the concentration assembly (1) and the inside of the concentration assembly (1) are provided with a pressure boosting driving mechanism (3) together, the top of the inside of the concentration assembly (1) is provided with a scraping mechanism (4), the left side of the concentration assembly (1) is fixedly nested with an outer locking mechanism (5), the inside of the scraping mechanism (4) is provided with an inner locking mechanism (6), and the scraping mechanism (4) is provided with a stirring mechanism (7); The concentration assembly (1) comprises a concentration tank (11), an equalizing pipe (12), a negative pressure exhaust pipe (13), a feeding pipe (14) and a discharging pipe (15); The equalizing pipe (12) is fixedly and penetratively arranged at the right top of the concentration tank (11), the negative pressure exhaust pipe (13), the feeding pipe (14) and the discharging pipe (15) are fixedly and penetratively arranged at the left side of the concentration tank (11) from top to bottom in sequence, the feeding pipe (14) is provided with a check valve, and the discharging pipe (15) is provided with a stop valve; The pressure boosting driving mechanism (3) comprises a driving shaft (31), a pressure boosting hole (32), a driving motor (33), a driving gear (34), an air pump (35) and a shunt pipe (36); The driving shaft (31) is located in the inside of the concentration tank (11), the top end of the driving shaft (31) penetrates the inner wall of the concentration tank (11) and extends to the top of the concentration tank (11), the driving shaft (31) is rotationally connected with the concentration tank (11) through a bearing, the pressure boosting hole (32) is arranged on the top of the front of the driving shaft (31), the driving motor (33) is fixedly arranged at the right top of the concentration tank (11), the driving gear (34) is provided with two, the two driving gears (34) are meshed with each other, one driving gear (34) is in transmission connection with the driving motor (33), and the other driving gear (34) is fixedly and sleevedly arranged at the top end of the outside of the driving shaft (31), the air pump (35) is fixedly arranged at the left top of the concentration tank (11), the output end of the air pump (35) is connected with the input end of the shunt pipe (36), the shunt pipe (36) is provided with four output ends, the first output end is connected with the top end of the driving shaft (31) through a rotary joint, the second output end is connected with the outer locking mechanism (5), the third output end is connected with the inner locking mechanism (6), and the inside of the pressure boosting hole (32) and the outlet position of the fourth output end are both fixedly provided with a valve; The scraping mechanism (4) comprises a rotating disc (41), a lifting scraping ring (42), an inner locking hole (43), an outer locking hole (44), a limiting sliding block (45) and a limiting sliding groove (46); The rotating disc (41) is located at the top of the inner cavity of the concentration tank (11), the lifting scraping ring (42) is arranged outside the rotating disc (41) through a bearing rotating sleeve and is attached to the inner wall of the concentration tank (11), the inner locking holes (43) and the outer locking holes (44) are provided in plurality, the plurality of inner locking holes (43) are evenly arranged outside the rotating disc (41), the plurality of outer locking holes (44) are evenly arranged outside the lifting scraping ring (42), the limiting sliding block (45) is fixedly arranged on the right side of the lifting scraping ring (42), the limiting sliding groove (46) is arranged on the inner wall of the concentration tank (11), and the limiting sliding block (45) is slidingly arranged inside the limiting sliding groove (46) in the vertical direction.
2. A method of preparing wolfberry honey as claimed in claim 1, wherein: The outer locking mechanism (5) comprises a shell (51), a first sliding plate (52), a first locking column (53) and a first spring (54).
3. A method of preparing wolfberry honey as claimed in claim 2, wherein: The shell (51) is fixedly nested on the left top of the concentration tank (11), the first sliding plate (52) is slidingly arranged inside the shell (51) in the horizontal direction, the first locking column (53) is fixedly arranged on the right side of the first sliding plate (52) and penetrates the inner wall of the shell (51) and is slidingly connected with the shell (51), and the first spring (54) is fixedly connected with the left side of the first sliding plate (52) and the inner wall of the shell (51).
4. A method of preparing wolfberry honey as claimed in claim 3, wherein: The inner locking mechanism (6) comprises a mounting cavity (61), a second sliding plate (62), a second locking column (63) and a second spring (64).
5. A method of preparing wolfberry honey as claimed in claim 4, wherein: The mounting cavity (61) is arranged inside the lifting scraping ring (42), the second sliding plate (62) is slidingly arranged inside the mounting cavity (61) in the vertical direction, the second locking column (63) is fixedly arranged on the right side of the second sliding plate (62) and penetrates the inner wall of the mounting cavity (61) and extends into the lifting scraping ring (42), and the second spring (64) is fixedly connected with the left side of the second sliding plate (62) and the inner wall of the mounting cavity (61).
6. A method of preparing wolfberry honey as claimed in claim 5, wherein: The stirring mechanism (7) comprises a stirring rod (71), an annular upper disc (72) and an annular lower disc (73).
7. A method of preparing wolfberry honey as claimed in claim 6, wherein: The stirring rod (71) is provided in plurality, the plurality of stirring rods (71) are evenly arranged through the rotating disc (41) and are slidingly connected with the rotating disc (41), the annular upper disc (72) is fixedly arranged at the top end of the plurality of stirring rods (71), the annular lower disc (73) is fixedly arranged at the bottom end of the plurality of stirring rods (71), and the annular upper disc (72) and the annular lower disc (73) are rotatably nested on the inner wall of the concentration tank (11) through bearings.
8. The method of claim 7, wherein the wolfberry honey is prepared by the steps of: The preparation method of the wolfberry honey specifically comprises the following steps: S1, the raw materials of wolfberry are extracted twice, and the two extraction liquids are input into the inside of the concentration tank (11) through the feeding pipe (14), at this time, the extraction liquid is heated by the electric heating device inside the concentration tank (11), and the inside of the concentration tank (11) is pumped by the negative pressure exhaust pipe (13), so as to reduce the air pressure in the concentration tank (11) and start the decompression concentration operation; S2, in the process of reducing pressure concentration, start the driving motor (33), the driving motor (33) is started through the driving gear (34) to drive the rotation of the driving shaft (31), at this time the first locking column (53) is located in the outer locking hole (44) to lock the lifting scraper ring (42), the lifting scraper ring (42) cannot be lifted, the rotating disc (41) is arranged in the inner side of the lifting scraper ring (42) through the bearing rotation, therefore, when the driving shaft (31) rotates, the rotating disc (41) cannot be lowered and continues to rotate with the driving shaft (31), when the rotating disc (41) rotates, the plurality of stirring rods (71) are driven to stir the heated extraction liquid; S3, after the concentration is completed, the concentrated wolfberry extract liquid is prepared, at this time the stop valve on the discharge pipe (15) is opened and the air pump (35) is started, the air pump (35) is started through the three output ends of the shunt pipe (36) to output the airflow, the airflow output by the first output end enters the inside of the driving shaft (31), then rushes through the valve in the inside of the pressure boost hole (32) to enter the inside of the concentration tank (11), and then pressurizes the inner cavity of the concentration tank (11); S4, the airflow output by the second output end enters the inside of the shell (51), and the first sliding plate (52) is pushed by the right side at this time, at this time the first sliding plate (52) slides to the left side, and the first spring (54) is compressed at the same time, and the first locking column (53) is driven to separate from the outer locking hole (44), the airflow output by the third output end enters the inside of the mounting cavity (61), and the second sliding plate (62) is pushed by the left side at this time, at this time the second sliding plate (62) slides to the right side, and the second spring (64) is stretched at the same time, and the second locking column (63) is driven to enter the inside of the inner locking hole (43), and then the rotating disc (41) is locked; S5, at this time, because the limiting sliding groove (46) limits the lifting scraper ring (42) through the limiting sliding block (45), the rotating disc (41) is limited by the lifting scraper ring (42) through the inner locking mechanism (6), therefore the rotating disc (41) cannot continue to rotate, at this time, with the continuous rotation of the driving shaft (31), the rotating disc (41) and the lifting scraper ring (42) continuously descend along the inner wall of the concentration tank (11) under the driving of the driving shaft (31); S6, after the air pressure in the inner cavity of the concentration tank (11) is enhanced, the wolfberry extract concentrated liquid in the inside of the concentration tank (11) is discharged faster, and with the continuous descent of the rotating disc (41) and the lifting scraper ring (42), the lifting scraper ring (42) pushes the wolfberry extract concentrated liquid remaining on the inner wall of the concentration tank (11) downward, when the descending distance of the rotating disc (41) and the lifting scraper ring (42) reaches the first threshold value, the rotating disc (41) closes the pressure boost hole (32), at this time the airflow output by the air pump (35) can only be discharged through the fourth output end of the shunt pipe (36). S7, with the rotating disc (41) and the lifting scraper ring (42) continue to drop, the final concentration tank (11) inside the wolfberry extract concentrate is completely output through the discharge pipe (15), then the drive motor (33) drives the drive gear (34) reverse rotation, and then the drive shaft (31) drives the rotating disc (41) and the lifting scraper ring (42) reset, then the air pump (35) is stopped, at this time, the first spring (54) and the second spring (64) push, the first locking column (53) and the second locking column (63) are reset in turn, and then the lifting scraper ring (42) is locked, and the locking of the rotating disc (41) is released; S8, the wolfberry extract concentrate is mixed with honey in proportion, and the wolfberry honey product is prepared after mixing.
Citation Information
Patent Citations
Preparation method of crystal-broken honey
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Vacuum concentration tank for honey production
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