A method for producing cordyceps honey
By introducing a driven water supply mechanism and a lifting and separating mechanism into the Cordyceps militaris honey production equipment, the problem of low extraction efficiency in Cordyceps militaris honey production has been solved, enabling rapid input of raw water and discharge of extract, thus improving the maceration extraction efficiency.
Patent Information
- Application Number
- CN202211444587.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-18
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2042-11-18
AI Technical Summary
In the industrial production of Cordyceps militaris honey, the extraction process of crude Cordyceps militaris powder is time-consuming, resulting in low extraction efficiency, especially due to the slow input and output of raw water.
A Cordyceps militaris honey production device is adopted, which includes a drive water supply mechanism, a lifting drive mechanism, and a lifting separation mechanism. The drive water supply mechanism controls the input and output of water, the lifting drive mechanism adjusts the chamber pressure, and the lifting separation mechanism realizes rapid switching and pressurization. Together with the stirring mechanism, it improves the stirring effect and increases the discharge speed of the extract.
This accelerated the extraction process of Cordyceps militaris crude powder, reduced wasted time, improved extraction efficiency, ensured rapid input and output of raw water, and enhanced production efficiency.
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Figure CN115888477B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of honey product processing, in particular to a production method of cordyceps honey. BACKGROUND
[0002] In the prior art, when producing cordyceps honey, the cordyceps is usually crushed into coarse powder, then the cordyceps extraction material in the form of thick paste is prepared by impregnation extraction and reduced pressure concentration, and then the cordyceps honey is prepared by mixing and filtering the cordyceps extraction material and honey in proportion. In order to ensure the extraction effect and avoid waste of raw materials, the cordyceps coarse powder usually needs to be extracted at least twice.
[0003] However, in the industrialized production process of cordyceps honey, a large amount of raw water is needed for extraction due to the large single treatment amount of cordyceps coarse powder, which leads to a long time consumption for output of the extraction liquid after the first extraction is completed, and the second raw water can only be input after the output of the first extraction liquid is completed, which consumes a long time again. Therefore, a lot of time is wasted in the impregnation extraction process of cordyceps coarse powder, which greatly affects the impregnation extraction efficiency of cordyceps coarse powder.
[0004] Therefore, it is necessary to invent a production method of cordyceps honey to solve the above problems. SUMMARY
[0005] The present application aims to provide a production method of cordyceps honey to solve the problems in the background art.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a production method of cordyceps honey, which is realized by a cordyceps honey production device, the cordyceps honey production device comprises an extraction mechanism, the extraction mechanism is internally provided with a driving water supply mechanism, the middle part of the outer side of the driving water supply mechanism is sequentially provided from top to bottom with a lifting driving mechanism, a lifting type separation mechanism and a filtering discharge mechanism, the top of the filtering discharge mechanism is provided with two groups of stirring mechanisms, and the top of each of the two groups of stirring mechanisms is provided with a triggering mechanism.
[0007] The extraction mechanism comprises a shell, a feed hopper, a residue discharge pipe, a liquid discharge pipe and an equalizing pipe.
[0008] The feed hopper is fixedly nested on the left middle part of the shell, the residue discharge pipe is fixedly penetrated on the left bottom of the shell, the liquid discharge pipe is fixedly penetrated on the right bottom of the shell, and the equalizing pipe is fixedly penetrated on the right top of the shell.
[0009] The driving water supply mechanism comprises a driving motor, a driving shaft, a first water outlet hole, a second water outlet hole and a water supply pipe.
[0010] The driving motor is fixedly arranged at the bottom of the shell, the driving shaft is located inside the shell and is in transmission connection with the driving motor, the first water outlet hole and the second water outlet hole are sequentially arranged on the front of the driving shaft from top to bottom, and the water supply pipe is connected with the top end of the driving shaft through a rotary joint.
[0011] The lifting type separation mechanism comprises a separation plate, a water flow channel, an annular sealing plate and a limiting plate.
[0012] The separation plate is slidably arranged on the inner side of the shell in the vertical direction, the separation plate separates the inner cavity of the shell into an upper chamber and a lower chamber, the water flow channel is arranged on the inner side of the separation plate, the driving shaft is located inside the water flow channel, the annular sealing plate is fixedly arranged on the outer side of the bottom of the separation plate, and the limiting plate is located on the outer side of the top of the separation plate and is fixedly connected with the inner side of the shell.
[0013] The lifting driving mechanism comprises a sealing plate, a sealing sleeve, a driving plate and a guide rod.
[0014] The sealing plate is located on the top of the separation plate and is sealed with the sealing sleeve, the sealing plate and the sealing sleeve are slidably and sleevedly arranged on the outer side of the driving shaft, the driving plate is sleevedly arranged on the outer side of the driving shaft and is threadedly connected with the driving shaft, the driving plate is fixedly arranged on the top end of the sealing sleeve, the guide rod is provided with two, the two guide rods are respectively slidably and penetratingly arranged on the two sides of the top of the driving plate, and the top end of the guide rod is rotatably and nestingly arranged on the inner wall of the shell through a bearing.
[0015] Preferably, the filtering and discharging mechanism comprises a filter screen, a connecting sleeve ring, a plurality of arc-shaped discharging plates and a gear ring.
[0016] Preferably, the filter screen is slidably and sleevedly arranged on the outer side of the driving shaft and is fixedly arranged on the bottom of the inner cavity of the shell, the connecting sleeve ring is fixedly and sleevedly arranged on the bottom of the outer side of the driving shaft, the plurality of arc-shaped discharging plates are uniformly fixedly arranged on the outer side of the connecting sleeve ring, and the gear ring is fixedly arranged on the top of the plurality of arc-shaped discharging plates.
[0017] Preferably, the stirring mechanism comprises a driving gear, a longitudinal sliding groove, a sliding column, a sliding sleeve ring, a stirring rod and a first spring.
[0018] Preferably, the driving gear is fixedly arranged at the bottom end of the guide rod and engaged with the gear ring, the longitudinal sliding slot is arranged at the bottom of the front surface of the guide rod, the sliding columns, the sliding sleeves, the stirring rods and the first springs are arranged in plurality, the plurality of sliding columns are uniformly arranged in the inner side of the longitudinal sliding slot, the plurality of sliding sleeves are uniformly arranged in the outer side of the guide rod and fixedly connected with the plurality of sliding columns respectively, the plurality of stirring rods are uniformly arranged in the outer side of the plurality of sliding sleeves respectively, and the plurality of first springs are uniformly arranged in the outer side of the guide rod.
[0019] Preferably, the trigger mechanism comprises a rotating sleeve, a second spring, a pressing rod and a limiting sleeve.
[0020] Preferably, the rotating sleeve is arranged in the outer side of the guide rod and rotatably nested in the bottom of the partition plate through a bearing, the second spring is arranged in the outer side of the guide rod, the pressing rods are arranged in two, the two pressing rods are fixedly arranged at the two sides of the bottom of the rotating sleeve respectively, the limiting sleeve is slidingly sleeved in the outer side of the two pressing rods and rotatably sleeved in the outer side of the guide rod through a bearing.
[0021] Preferably, the production method of the cordyceps militaris and honey specifically comprises the following steps:
[0022] S1, cordyceps militaris coarse powder is added into the inside of the lower chamber through the feeding hopper, then water is supplied to the driving shaft through the water supply pipe, at this time the first water outlet hole is blocked, the water flow enters the lower chamber through the second water outlet hole and is mixed with the cordyceps militaris coarse powder, in the mixing process, the heating device in the lower chamber is started to heat the mixed cordyceps militaris coarse powder and water.
[0023] S2, at this time the driving motor is started, the driving motor drives the driving shaft to rotate after being started, the driving shaft drives a plurality of arc-shaped discharge plates to rotate through the connecting sleeve when rotating, thereby stirring the mixed cordyceps militaris coarse powder and water from below, the plurality of arc-shaped discharge plates drive the gear ring to rotate synchronously when rotating, the gear ring drives the guide rod to rotate through the driving gear, the guide rod drives a plurality of stirring rods to rotate around the guide rod as the axis when rotating through the longitudinal sliding slot, the sliding column and the sliding sleeve, thereby stirring the mixed cordyceps militaris coarse powder and water from above;
[0024] S3, the driving shaft drives the driving plate to descend along the guide rod when rotating, the partition plate is pushed by the blocking sleeve and the blocking plate when the driving plate descends, when the descending distance of the driving plate reaches the first threshold value, the blocking sleeve blocks the second water outlet hole, and at the same time, the blocking of the first water outlet hole is removed, the water flow in the driving shaft enters the upper chamber for temporary storage through the first water outlet hole;
[0025] S4, when the partition plate is lowered, the annular sealing plate is lowered synchronously with the rotating sleeve, the rotating sleeve is lowered to compress the second spring, and the uppermost sliding sleeve is pushed by the pressing rod, so that the plurality of sliding sleeves drive the plurality of stirring rods to be lowered synchronously, thereby adjusting the stirring height;
[0026] S5, when the blocking plate is lowered to the second threshold, the annular sealing plate completes the blocking of the outlet of the feeding hopper, and when the blocking plate continues to descend, the blocking plate and the partition plate pressurize the lower chamber, when the blocking plate is lowered to the third threshold, the cordyceps militaris powder in the lower chamber is extracted for the first time, and the water in the upper chamber is added, at this time, the water supply pipe is stopped, and the heating device in the upper chamber is started to preheat the water in the upper chamber;
[0027] S6, open the valve on the drain pipe, the first extraction liquid in the lower chamber is pushed by the gas pressure to pass through the filter screen and is discharged through the drain pipe, then the driving motor drives the driving shaft to rotate reversely, the driving plate drives the blocking plate to rise through the blocking sleeve, and the partition plate is gradually reset under the pushing of the second spring during the rising of the blocking plate;
[0028] S7, when the blocking plate is raised to the fourth threshold, the partition plate is completely reset and cannot continue to rise due to the blocking of the limiting plate, and then, with the continuous rising of the blocking plate, the blocking plate gradually unblocks the water flow channel, at this time, the preheated water in the upper chamber flows into the lower chamber through the water flow channel, when the blocking plate is raised to the fifth threshold, the water in the upper chamber completely flows into the lower chamber, at this time, the rotating direction of the driving shaft is changed again, and then the above operation is repeated to obtain the second extraction liquid;
[0029] S8, the first extraction liquid and the second extraction liquid are mixed, concentrated under reduced pressure to obtain cordyceps militaris extract paste, then the honey and the cordyceps militaris extract paste are mixed in proportion and filtered to obtain the cordyceps militaris honey product.
[0030] The technical effects and advantages of the present application are as follows:
[0031] The application drives the lifting driving mechanism by the driving water supply mechanism, and then drives the lifting type separation mechanism to descend, and then automatically stops water supply to the lower chamber, and the subsequent water is temporarily stored in the upper chamber. In addition, the lifting type separation mechanism can drive the trigger mechanism when descending, and then the trigger mechanism triggers the stirring mechanism to improve the stirring effect of the stirring mechanism. In addition, the lifting type separation mechanism cooperates with the lifting driving mechanism to pressurize the lower chamber as the lifting type separation mechanism continuously descends, and then the discharge speed of the extraction liquid is accelerated. Finally, the lifting driving mechanism can release the blockage of the lifting type separation mechanism, and then the temporarily stored water in the upper chamber quickly enters the lower chamber. Compared with the same type of device in the prior art, the application can not only accelerate the discharge speed of the extraction liquid, but also improve the input speed of the raw material water required for the second impregnation extraction, thereby avoiding the waste of too much time for discharging and feeding, and improving the impregnation extraction efficiency of the cordyceps militaris coarse powder. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 It is a whole front view structure schematic diagram of the shell of the application.
[0033] Figure 2 It is a whole front view structure schematic diagram of the shell of the application.
[0034] Figure 3 It is a front view structure schematic diagram of the driving water supply mechanism, the lifting type separation mechanism and the lifting driving mechanism of the application.
[0035] Figure 4 It is a front view structure schematic diagram of the driving water supply mechanism, the lifting type separation mechanism and the lifting driving mechanism of the application.
[0036] Figure 5 It is a front view structure schematic diagram of the stirring mechanism of the application.
[0037] In the figure: 1, extraction mechanism; 11, shell; 12, feeding hopper; 13, slag discharge pipe; 14, liquid discharge pipe; 15, pressure equalizing pipe; 2, driving water supply mechanism; 21, driving motor; 22, driving shaft; 23, first water outlet hole; 24, second water outlet hole; 25, water supply pipe; 3, lifting type separation mechanism; 31, separation plate; 32, water flow channel; 33, annular sealing plate; 34, limiting plate; 4, lifting driving mechanism; 41, sealing plate; 42, sealing sleeve; 43, driving plate; 44, guide rod; 5, filter discharge mechanism; 51, filter screen; 52, connecting sleeve ring; 53, arc-shaped discharge plate; 54, gear ring; 6, stirring mechanism; 61, driving gear; 62, longitudinal sliding groove; 63, sliding column; 64, sliding sleeve ring; 65, stirring rod; 66, first spring; 7, trigger mechanism; 71, rotating sleeve ring; 72, second spring; 73, pressing rod; 74, limiting sleeve ring. Detailed Implementation
[0038] 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.
[0039] Example 1
[0040] This invention provides, for example Figures 1-5 The invention illustrates a method for producing Cordyceps militaris honey. The method is implemented using Cordyceps militaris honey production equipment, which includes an extraction mechanism 1. The extraction mechanism 1 is internally equipped with a driving water supply mechanism 2. The driving water supply mechanism 2 is externally equipped with a lifting driving mechanism 4, a lifting separating mechanism 3, and a filtering and discharging mechanism 5, arranged sequentially from top to bottom on the middle of its outer side. The filtering and discharging mechanism 5 is equipped with two sets of stirring mechanisms 6 at its top, and each of the two stirring mechanisms 6 is equipped with a triggering mechanism 7 at its top.
[0041] like Figure 2 As shown, the extraction mechanism 1 includes a housing 11, a feed hopper 12, a slag discharge pipe 13, a liquid discharge pipe 14, and a pressure equalization pipe 15. The feed hopper 12 is fixedly nested in the middle left side of the housing 11, the slag discharge pipe 13 is fixedly inserted through the bottom left side of the housing 11, the liquid discharge pipe 14 is fixedly inserted through the bottom right side of the housing 11, and the pressure equalization pipe 15 is fixedly inserted through the top right side of the housing 11.
[0042] like Figure 3 and Figure 4 As shown, the driving water supply mechanism 2 includes a drive motor 21, a drive shaft 22, a first water outlet 23, a second water outlet 24, and a water supply pipe 25. The drive motor 21 is fixedly installed at the bottom of the housing 11, the drive shaft 22 is located inside the housing 11 and is connected to the drive motor 21 in a transmission manner, the first water outlet 23 and the second water outlet 24 are sequentially opened on the front of the drive shaft 22 from top to bottom, and the water supply pipe 25 is connected to the top of the drive shaft 22 through a rotary joint.
[0043] like Figure 4As shown, the lifting type separation mechanism 3 comprises a separation plate 31, a water flow channel 32, an annular sealing plate 33 and a limiting plate 34, wherein the separation plate 31 is vertically slidingly arranged inside the shell 11, the separation plate 31 separates the inner cavity of the shell 11 into an upper chamber and a lower chamber, the water flow channel 32 is arranged inside the separation plate 31, the drive shaft 22 is located inside the water flow channel 32, the annular sealing plate 33 is fixedly arranged outside the bottom of the separation plate 31, and the limiting plate 34 is located outside the top of the separation plate 31 and is fixedly connected with the inside of the shell 11.
[0044] As shown in Figure 4 , the lifting drive mechanism 4 comprises a sealing plate 41, a sealing sleeve 42, a drive plate 43 and a guide rod 44, wherein the sealing plate 41 is located at the top of the separation plate 31 and is sealed with the sealing sleeve 42, the sealing plate 41 and the sealing sleeve 42 are slidingly sleeved outside the drive shaft 22, the drive plate 43 is sleeved outside the drive shaft 22 and is threadedly connected with the drive shaft 22, the drive plate 43 is fixedly arranged at the top end of the sealing sleeve 42, and the guide rod 44 is provided with two, the two guide rods 44 are slidingly arranged on both sides of the top of the drive plate 43, and the top end of the guide rod 44 is rotatably nested on the inner wall of the shell 11.
[0045] By arranging the lifting type separation mechanism 3 and the lifting drive mechanism 4, when the drive shaft 22 rotates, the drive plate 43 is driven to descend along the guide rod 44, and when the drive plate 43 descends, the sealing sleeve 42 and the sealing plate 41 push the separation plate 31, when the descending distance of the drive plate 43 reaches a first threshold value, the sealing sleeve 42 seals the second water outlet hole 24, and at the same time, the sealing of the first water outlet hole 23 is released, the water flow in the drive shaft 22 enters the upper chamber through the first water outlet hole 23 for temporary storage, when the descending distance of the sealing plate 41 reaches a second threshold value, the annular sealing plate 33 completes the sealing of the outlet of the feeding hopper 12, and at this time, as the sealing plate 41 continues to descend, the sealing plate 41 cooperates with the separation plate 31 to pressurize the lower chamber.
[0046] As shown in Figure 3 , the filter discharge mechanism 5 comprises a filter screen 51, a connecting sleeve ring 52, a plurality of arc-shaped discharge plates 53 and a gear ring 54, wherein the filter screen 51 is slidingly sleeved outside the drive shaft 22 and is fixedly arranged at the bottom of the inner cavity of the shell 11, the connecting sleeve ring 52 is fixedly sleeved outside the bottom of the drive shaft 22, the arc-shaped discharge plates 53 are evenly fixedly arranged outside the connecting sleeve ring 52, and the gear ring 54 is fixedly arranged at the top of the plurality of arc-shaped discharge plates 53.
[0047] Through the above structure, when the drive shaft 22 rotates, the multiple arc-shaped discharge plates 53 are driven to rotate through the connecting sleeve 52, and then the mixed cordyceps sinensis coarse powder and water are stirred from below. In addition, when the valve on the drain pipe 14 is opened, the extraction liquid in the lower chamber can pass through the filter screen plate 51 and be discharged through the drain pipe 14 under the action of air pressure.
[0048] As shown in Figure 5 , the stirring mechanism 6 comprises a drive gear 61, a longitudinal sliding groove 62, a sliding column 63, a sliding sleeve 64, a stirring rod 65 and a first spring 66. The drive gear 61 is fixedly arranged at the bottom end of the guide rod 44 and engaged with the gear ring 54. The longitudinal sliding groove 62 is arranged on the front bottom of the guide rod 44. The sliding column 63, the sliding sleeve 64, the stirring rod 65 and the first spring 66 are arranged in multiple. The multiple sliding columns 63 are uniformly arranged inside the longitudinal sliding groove 62. The multiple sliding sleeves 64 are uniformly arranged outside the guide rod 44 and fixedly connected with the multiple sliding columns 63 respectively. The multiple stirring rods 65 are uniformly arranged outside the multiple sliding sleeves 64 respectively. The multiple first springs 66 are uniformly arranged outside the guide rod 44. Any one of the first springs 66 is located between two adjacent sliding sleeves 64.
[0049] Through the above structure, when the drive gear 61 drives the guide rod 44 to rotate, the multiple stirring rods 65 are driven to rotate around the guide rod 44 through the longitudinal sliding groove 62, the sliding column 63 and the sliding sleeve 64, and then the mixed cordyceps sinensis coarse powder and water are stirred from above.
[0050] As shown in Figure 4 and Figure 5 , the trigger mechanism 7 comprises a rotating sleeve 71, a second spring 72, a pressing rod 73 and a limiting sleeve 74. The rotating sleeve 71 is arranged outside the guide rod 44 and rotatably nested in the bottom of the partition plate 31 through a bearing. The second spring 72 is arranged outside the guide rod 44. The pressing rod 73 is arranged in two. The two pressing rods 73 are fixedly arranged at the bottom of the rotating sleeve 71 on both sides respectively. The limiting sleeve 74 is slidingly sleeved outside the two pressing rods 73 and rotatably sleeved outside the guide rod 44 through a bearing.
[0051] By setting the above structure, when the partition plate 31 is lowered, the rotating sleeve 71 is lowered synchronously, the rotating sleeve 71 is lowered, the second spring 72 is compressed, and the pressure rod 73 is pushed, so that the pressure rod 73 pushes the uppermost sliding sleeve 64, and then the plurality of sliding sleeves 64 drive the plurality of stirring rods 65 to descend synchronously, thereby adjusting the stirring height and enhancing the stirring effect. In addition, when the partition plate 31 is no longer pressed, the compressed second spring 72 can push the partition plate 31, thereby resetting the partition plate 31.
[0052] Embodiment 2
[0053] The production method of the cordyceps honey specifically comprises the following steps:
[0054] S1, add cordyceps powder into the lower chamber through the feeding hopper 12, then supply water to the drive shaft 22 through the water supply pipe 25, at this time the first water outlet hole 23 is blocked, the water flow enters the lower chamber through the second water outlet hole 24 and mixes with the cordyceps powder, during the mixing process, the heating device inside the lower chamber is started, thereby heating the mixed cordyceps powder and water.
[0055] S2, at this time, the drive motor 21 is started, the drive motor 21 drives the drive shaft 22 to rotate after being started, the drive shaft 22 drives the plurality of arc-shaped discharge plates 53 to rotate through the connecting sleeve 52 when rotating, thereby stirring the mixed cordyceps powder and water from below, the plurality of arc-shaped discharge plates 53 drive the gear ring 54 to rotate synchronously when rotating, the gear ring 54 drives the guide rod 44 to rotate through the drive gear 61, the guide rod 44 drives the plurality of stirring rods 65 to rotate around the guide rod 44 as the axis through the longitudinal sliding slot 62, the sliding column 63 and the sliding sleeve 64 when rotating, thereby stirring the mixed cordyceps powder and water from above;
[0056] S3, the drive plate 43 is lowered along the guide rod 44 when the drive shaft 22 rotates, the partition plate 31 is pushed by the blocking sleeve 42 and the blocking plate 41 when the drive plate 43 is lowered, when the drive plate 43 is lowered to a first threshold value, the second water outlet hole 24 is blocked by the blocking sleeve 42, and the blocking of the first water outlet hole 23 is removed at the same time, the water flow in the drive shaft 22 enters the upper chamber for temporary storage through the first water outlet hole 23;
[0057] S4, the annular sealing plate 33 and the rotating sleeve 71 are lowered synchronously when the partition plate 31 is lowered, the second spring 72 is compressed when the rotating sleeve 71 is lowered, and the uppermost sliding sleeve 64 is pushed by the pressure rod 73, thereby causing the plurality of sliding sleeves 64 to drive the plurality of stirring rods 65 to descend synchronously, thereby adjusting the stirring height;
[0058] S5, when the distance of the sealing plate 41 down to reach the second threshold, the ring-shaped sealing plate 33 complete the sealing of the inlet hopper 12 outlet, at this time with the sealing plate 41 continue to drop, sealing plate 41 fit the partition plate 31 to the lower chamber pressure, when the sealing plate 41 down distance reaches the third threshold, at this time the lower chamber in the cordyceps militaris powder complete the first time of immersion extraction, while the upper chamber in the water also complete the addition, at this time stop the water supply pipe 25 water supply, and start the heating device in the upper chamber to the water in the upper chamber preheating;
[0059] S6, open the valve on the drain pipe 14, the first extraction liquid in the lower chamber under the action of air pressure through the filter screen plate 51 and through the drain pipe 14, then make the drive motor 21 drive shaft 22 reverse rotation, at this time the drive plate 43 through the sealing sleeve 42 drive sealing plate 41 up, sealing plate 41 up in the process, the partition plate 31 is also gradually reset under the action of the second spring 72;
[0060] S7, when the sealing plate 41 up distance reaches the fourth threshold, the partition plate 31 is completely reset, and cannot continue to rise due to the block of the limiting plate 34, subsequent with the sealing plate 41 continue to rise, the sealing plate 41 gradually remove the closure of the water flow channel 32, at this time the preheated water in the upper chamber through the water flow channel 32 into the lower chamber, when the sealing plate 41 up distance reaches the fifth threshold, the water in the upper chamber completely into the lower chamber, at this time change the direction of rotation of the drive shaft 22 again, and then repeat the above operation to prepare the second extraction liquid;
[0061] S8, the first extraction liquid and the second extraction liquid mixture, through the pressure reduction concentration into thick paste cordyceps militaris extraction material, then according to the proportion of honey and cordyceps militaris extraction material mixed and filtered to prepare cordyceps militaris honey finished product.
[0062] 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 detailed description of the present application is made with reference to the foregoing embodiments, 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 scope of protection of the present application.
Claims
1. A method for producing Cordyceps militaris honey, characterized in that: The production method of Cordyceps militaris honey is realized by Cordyceps militaris honey production equipment. The Cordyceps militaris honey production equipment includes an extraction mechanism (1). The extraction mechanism (1) is equipped with a driving water supply mechanism (2). The driving water supply mechanism (2) is provided with a lifting driving mechanism (4), a lifting separation mechanism (3) and a filtering discharge mechanism (5) in sequence from top to bottom on the outer middle of the outer side. The filtering discharge mechanism (5) is provided with two sets of stirring mechanisms (6) at the top. Both stirring mechanisms (6) are provided with a triggering mechanism (7) at the top. The extraction mechanism (1) includes a shell (11), a feed hopper (12), a slag discharge pipe (13), a liquid discharge pipe (14), and a pressure equalization pipe (15); The feed hopper (12) is fixedly nested in the middle of the left side of the shell (11), the slag discharge pipe (13) is fixedly inserted through the bottom of the left side of the shell (11), the liquid discharge pipe (14) is fixedly inserted through the bottom of the right side of the shell (11), and the pressure equalization pipe (15) is fixedly inserted through the top right side of the shell (11). The driving water supply mechanism (2) includes a drive motor (21), a drive shaft (22), a first water outlet (23), a second water outlet (24), and a water supply pipe (25); The drive motor (21) is fixedly installed at the bottom of the housing (11). The drive shaft (22) is located inside the housing (11) and is connected to the drive motor (21) in a transmission manner. The first water outlet (23) and the second water outlet (24) are sequentially opened on the front of the drive shaft (22) from top to bottom. The water supply pipe (25) is connected to the top of the drive shaft (22) through a rotary joint. The lifting separation mechanism (3) includes a separation plate (31), a water flow channel (32), an annular sealing plate (33), and a limiting plate (34); The partition plate (31) is slidably disposed on the inner side of the housing (11) in the vertical direction. The partition plate (31) divides the inner cavity of the housing (11) into an upper chamber and a lower chamber. The water flow channel (32) is opened on the inner side of the partition plate (31). The drive shaft (22) is located on the inner side of the water flow channel (32). The annular sealing plate (33) is fixedly disposed on the outer side of the bottom of the partition plate (31). The limiting plate (34) is located on the outer side of the top of the partition plate (31) and is fixedly connected to the inside of the housing (11). The lifting drive mechanism (4) includes a sealing plate (41), a sealing sleeve (42), a drive plate (43), and a guide rod (44); The sealing plate (41) is located on top of the partition plate (31) and seals with the sealing sleeve (42). The sealing plate (41) and the sealing sleeve (42) are slidably sleeved on the outside of the drive shaft (22). The drive plate (43) is sleeved on the outside of the drive shaft (22) and threadedly connected to the drive shaft (22). The drive plate (43) is fixedly set on the top of the sealing sleeve (42). There are two guide rods (44). The two guide rods (44) are slidably inserted on both sides of the top of the drive plate (43). The top of the guide rods (44) is rotatably nested on the inner wall of the housing (11) through a bearing. The filter discharge mechanism (5) includes a filter screen plate (51), a connecting collar ( 52), arc-shaped discharge plate (53) and gear ring (54); the filter screen plate (51) is slidably sleeved on the outside of the drive shaft (22) and fixedly installed at the bottom of the inner cavity of the housing (11), the connecting collar (52) is fixedly sleeved on the bottom of the outside of the drive shaft (22), multiple arc-shaped discharge plates (53) are provided, and multiple arc-shaped discharge plates (53) are evenly fixedly installed on the outside of the connecting collar (52), and the gear ring (54) is fixedly installed on the top of multiple arc-shaped discharge plates (53); the stirring mechanism (6) includes a drive gear (61), a longitudinal groove (62), a sliding column (63), a sliding collar (64), a stirring rod (65) and a first spring (66); the drive gear (61) Fixedly installed at the bottom end of the guide rod (44) and meshing with the gear ring (54), the longitudinal groove (62) is opened at the bottom front of the guide rod (44), and multiple sliding columns (63), sliding collars (64), stirring rods (65) and first springs (66) are provided. Multiple sliding columns (63) are evenly slidably installed inside the longitudinal groove (62), multiple sliding collars (64) are evenly slidably sleeved on the outside of the guide rod (44) and fixedly connected to multiple sliding columns (63) respectively, multiple stirring rods (65) are evenly fixedly installed on the outside of multiple sliding collars (64), and multiple first springs (66) are evenly sleeved on the outside of the guide rod (44). Each of the first springs (66) is located between two adjacent sliding collars (64); the triggering mechanism (7) includes a rotating collar (71), a second spring (72), a pressure rod (73), and a limiting collar (74); the rotating collar (71) is sleeved on the outside of the guide rod (44) and is rotatably nested on the bottom of the partition plate (31) through a bearing; the second spring (72) is sleeved on the outside of the guide rod (44); there are two pressure rods (73), which are respectively fixed on both sides of the bottom of the rotating collar (71); the limiting collar (74) is slidably sleeved on the outside of the two pressure rods (73) and is rotatably sleeved on the outside of the guide rod (44) through a bearing.
2. The method for producing Cordyceps militaris honey according to claim 1, characterized in that, The production method of Cordyceps militaris honey specifically includes the following steps: S1. Cordyceps militaris coarse powder is added to the lower chamber through the feed hopper (12), and then water is supplied to the drive shaft (22) through the water supply pipe (25). At this time, the first water outlet (23) is blocked, and the water flows into the lower chamber through the second water outlet (24) to mix with the Cordyceps militaris coarse powder. During the mixing process, the heating equipment inside the lower chamber is started to heat the mixed Cordyceps militaris coarse powder and water. S2. At this time, start the drive motor (21). After the drive motor (21) starts, it drives the drive shaft (22) to rotate. When the drive shaft (22) rotates, it drives multiple arc-shaped discharge plates (53) to rotate through the connecting collar (52), and then stirs the mixed Cordyceps militaris powder and water from below. When the multiple arc-shaped discharge plates (53) rotate, they drive the gear ring (54) to rotate synchronously. The gear ring (54) drives the guide rod (44) to rotate through the drive gear (61). When the guide rod (44) rotates, it drives multiple stirring rods (65) to rotate around the guide rod (44) through the longitudinal groove (62), sliding column (63) and sliding collar (64), and then stirs the mixed Cordyceps militaris powder and water from above. S3. When the drive shaft (22) rotates, it drives the drive plate (43) to descend along the guide rod (44). When the drive plate (43) descends, it pushes the partition plate (31) through the sealing sleeve (42) and the sealing plate (41). When the driving plate (43) descends to the first threshold, the sealing sleeve (42) seals the second water outlet (24) and releases the sealing of the first water outlet (23). The water inside the drive shaft (22) enters the upper chamber through the first water outlet (23) for temporary storage. S4. When the partition plate (31) descends, it drives the annular closed plate (33) and the rotating collar (71) to descend synchronously. When the rotating collar (71) descends, it compresses the second spring (72) and pushes the uppermost sliding collar (64) through the pressure rod (73), thereby causing multiple sliding collars (64) to drive multiple stirring rods (65) to descend synchronously, thereby adjusting the stirring height. S5. When the sealing plate (41) descends to the second threshold, the annular sealing plate (33) completes the sealing of the outlet of the feed hopper (12). At this time, as the sealing plate (41) continues to descend, the sealing plate (41) and the partition plate (31) pressurize the lower chamber. When the sealing plate (41) descends to the third threshold, the Cordyceps militaris powder in the lower chamber completes the first soaking and extraction. At the same time, the water in the upper chamber is also added. At this time, the water supply pipe (25) is stopped, and the heating equipment in the upper chamber is started to preheat the water in the upper chamber. S6. Open the valve on the drain pipe (14). The first extract liquid inside the lower chamber passes through the filter screen plate (51) under the pressure of air and is discharged through the drain pipe (14). Then, the drive motor (21) drives the drive shaft (22) to rotate in the opposite direction. At this time, the drive plate (43) drives the sealing plate (41) to rise through the sealing sleeve (42). During the rising process of the sealing plate (41), the partition plate (31) is also gradually reset under the push of the second spring (72). S7. When the distance of the sealing plate (41) rises reaches the fourth threshold, the partition plate (31) is completely reset and cannot continue to rise due to the obstruction of the limiting plate (34). Subsequently, as the sealing plate (41) continues to rise, the sealing plate (41) gradually releases the blockage of the water flow channel (32). At this time, the preheated water in the upper chamber quickly flows into the lower chamber through the water flow channel (32). When the distance of the sealing plate (41) rises reaches the fifth threshold, the water in the upper chamber completely flows into the lower chamber. At this time, the rotation direction of the drive shaft (22) is changed again, and the above S1-S7 operations are repeated to obtain the second extract. S8. Mix the first extract with the second extract, concentrate under reduced pressure to make a thick paste of Cordyceps militaris extract, then mix honey with Cordyceps militaris extract in proportion and filter to obtain Cordyceps militaris honey product.
Citation Information
Patent Citations
Preparation method of high-content heliotropin
CN115672235A