CN115721033A - Production device for processing fresh royal jelly freeze-dried powder - Google Patents

Production device for processing fresh royal jelly freeze-dried powder Download PDF

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Publication number
CN115721033A
CN115721033A CN202211106183.6A CN202211106183A CN115721033A CN 115721033 A CN115721033 A CN 115721033A CN 202211106183 A CN202211106183 A CN 202211106183A CN 115721033 A CN115721033 A CN 115721033A
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China
Prior art keywords
royal jelly
barrel body
stirring
rod
production device
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CN202211106183.6A
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Chinese (zh)
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CN115721033B (en
Inventor
陈宏钢
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Hangzhou Hefengyuan Health Food Co ltd
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Hangzhou Hefengyuan Health Food Co ltd
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Publication of CN115721033A publication Critical patent/CN115721033A/en
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Abstract

The invention discloses a production device for processing fresh royal jelly freeze-dried powder, which comprises: a tub configured to have a tub space for placing royal jelly to be filtered; a filter screen for filtering the royal jelly; a discharge hopper for discharging the filtered royal jelly out of the barrel body; the stirring blade is arranged in the barrel body; the vibration block is arranged on the barrel body; the driving piece is used for driving the stirring blade to rotate; the driving part drives the stirring blades to rotate, so that the stirring blades have a downward flowing tendency in the royal jelly, and the stirring blades generate vibration during rotation; the vibrating piece generates vibration on the barrel body and the discharge hopper when the driving piece works; the invention can effectively shorten the time of the filtering process and ensure the freshness of the royal jelly.

Description

Production device for processing fresh royal jelly freeze-dried powder
Technical Field
The invention belongs to the technical field of royal jelly processing, and particularly relates to a production device for processing fresh royal jelly freeze-dried powder.
Background
The royal jelly is extremely unstable to heat, and when the royal jelly is placed for 72 hours at normal temperature, the freshness is obviously reduced, and the royal jelly loses efficacy at about 130 ℃. But is stable at low temperature, and can be preserved for one year at-2 ℃ and unchanged for years at-18 ℃. The royal jelly is exposed in air and can be oxidized and hydrolyzed, and the light can catalyze royal jelly and reduce aldehyde group and ketone group. Therefore, in order to fully retain the original nutrient components and active substances of the royal jelly and improve the quality guarantee period of the royal jelly product, the royal jelly is usually prepared into royal jelly freeze-dried powder.
In the process of refining royal jelly, the royal jelly subjected to milk collection (i.e., collection) is mixed into the dead body or nest fragments of bees, and therefore, a certain amount of royal jelly needs to be filtered and stirred after being collected. The royal jelly from which the royal jelly was collected was mixed with dead bodies of bees and pieces of nests, and the like, and the water content of the royal jelly was 65%, and the royal jelly was very heavy in a paste state having a high viscosity, so that the mesh of a filter screen for filtration was easily clogged, the time for filtration and agitation treatment had to be prolonged, the time for which the royal jelly stayed in the air was prolonged, and the activity was reduced and the freshness was reduced while the product was deteriorated.
Disclosure of Invention
This summary is provided to introduce a selection of concepts in a simplified form that are further described below in the detailed description. This summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter.
The invention provides a production device for processing fresh royal jelly freeze-dried powder, aiming at overcoming the defects of the prior art.
In order to achieve the purpose, the invention adopts the following technical scheme: the utility model provides a apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness, includes: a tub configured to have a tub space for placing royal jelly to be filtered; a filter screen for filtering the royal jelly; a discharge hopper for discharging the filtered royal jelly out of the barrel body; the stirring blade is arranged in the barrel body; the vibration block is arranged on the barrel body; the driving piece is used for driving the stirring blade to rotate; the driving part drives the stirring blades to rotate, so that the stirring blades have a downward flowing tendency in the royal jelly, and the stirring blades generate vibration during rotation; the vibrating piece generates vibration on the barrel body and the discharge hopper when the driving piece works.
Further, the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes: the stirring rod penetrates through the barrel body; the bristles are arranged on the stirring blade; the stirring blade is arranged on the stirring rod, and the brush hair is contacted with the filter screen.
Further, the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes: the transmission shaft is arranged on the stirring rod; the first connecting disc is arranged on the transmission shaft; the lug is arranged on the first connecting disc; the second connecting disc is arranged in the discharge hopper; the stirring rod is provided with a cavity for accommodating the transmission shaft, and the second connecting disc is provided with a plurality of first grooves corresponding to the bumps.
Further, the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes: the third connecting disc is arranged on the transmission shaft; the movable rod is arranged on the third connecting disc; the connecting spring is arranged at one end of the movable rod; a plurality of guide blocks arranged in the cavity; and a first movable groove for accommodating the movable rod is arranged on the third connecting disc.
Further, the stirring blades are obliquely arranged.
Furthermore, a cooling cavity is arranged on the barrel body, and the vibration block is arranged in the cooling cavity.
Further, the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes: the water delivery pipe is arranged in the cooling cavity in a penetrating way; the flow stopping valve is arranged in the water delivery pipe; the water delivery pipe is provided with a water inlet communicated with the cooling cavity.
Further, the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes: the base is arranged below the barrel body; the supporting rod is arranged on the base; the barrel body is rotatably connected to the supporting rod.
Further, the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes: the mounting plate is arranged above the barrel body; the first connecting block is used for driving the driving piece and the stirring rod; the first connecting block is made of elastic materials.
Further, the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes: the hydraulic rod is used for driving the discharging hopper to move relative to the barrel body; the supporting block is arranged on the supporting rod; the second connecting disc is provided with a first connecting groove matched with the stirring rod.
The invention has the advantages that: provides a production device for processing fresh royal jelly freeze-dried powder, which shortens the time of a filtering procedure.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this application, are included to provide a further understanding of the application and to enable other features, objects, and advantages of the application to be more apparent. The drawings and their description illustrate the embodiments of the invention and do not limit it.
Further, throughout the drawings, the same or similar reference numerals denote the same or similar elements. It should be understood that the drawings are schematic and that elements and elements are not necessarily drawn to scale.
In the drawings:
fig. 1 is a schematic structural view of a production apparatus for processing fresh royal jelly lyophilized powder according to an embodiment of the present invention;
FIG. 2 is a sectional view of the production apparatus for processing fresh royal jelly lyophilized powder shown in FIG. 1;
FIG. 3 is an enlarged view of the stirring rod of the production device for processing fresh royal jelly lyophilized powder shown in FIG. 1;
fig. 4 is an enlarged view of a water pipe of the production device for processing the fresh royal jelly freeze-dried powder in the embodiment shown in fig. 1;
FIG. 5 is a sectional view of a production apparatus for processing fresh royal jelly lyophilized powder according to another embodiment of the present invention;
FIG. 6 is an enlarged view of the second connecting plate of the apparatus for processing fresh royal jelly lyophilized powder shown in FIG. 5;
FIG. 7 is a sectional view of a production apparatus for processing fresh royal jelly lyophilized powder according to still another embodiment of the present invention;
FIG. 8 is an enlarged view of the stirring blades of the production apparatus for processing fresh royal jelly lyophilized powder shown in FIG. 7;
fig. 9 is an enlarged view of the water inlet pipe of the production device for processing fresh royal jelly lyophilized powder shown in fig. 7.
The reference numerals in the figures have the following meanings:
101. a barrel body; 101a, a cooling cavity; 102. a discharge hopper; 1021. a first connecting rod; 1022. a second connecting disc; 1022a, a first groove; 103. mounting a plate; 104. a drive member; 105. a base; 106. a support bar; 107. a stirring rod; 107a, a cavity; 1071. a first splice tray; 1072. a bump; 1073. a guide block; 108. stirring blades; 1081. brushing; 109. a vibrating member; 110. a water delivery pipe; 110a, a water inlet; 1101. a flow stop valve; 111. a drive shaft; 1111. a third connecting disc; 1112. a connecting spring; 1113. a movable rod; 112. a hand wheel;
201. a support bar; 2011. a support block; 202. a stirring rod; 2021. a partition plate; 203. a drive shaft; 2031. a second magnetic block; 204. a second connection pad; 204a, a second groove; 205. a second connecting block; 2051. a support spring; 2052. an arc-shaped bump; 2053. a first magnetic block; 206. a first connecting ring; 207. a second connection ring; 208. a hydraulic rod;
301. stirring blades; 302. a stirring rod; 3021. a third connecting block; 3022. a limiting rod; 303. a water delivery pipe; 304. a water inlet pipe; 3041. a third connecting ring; 3042. a seal spring; 3043. and (6) sealing the block.
Detailed Description
Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While certain embodiments of the present disclosure are shown in the drawings, it is to be understood that the disclosure may be embodied in various forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete. It should be understood that the drawings and embodiments of the disclosure are for illustration purposes only and are not intended to limit the scope of the disclosure.
It should be noted that, for convenience of description, only the portions related to the related invention are shown in the drawings. The embodiments and features of the embodiments in the present disclosure may be combined with each other without conflict.
It should be noted that the terms "first", "second", and the like in the present disclosure are only used for distinguishing different devices, modules or units, and are not used for limiting the order or interdependence relationship of the functions performed by the devices, modules or units.
It is noted that references to "a" or "an" in this disclosure are intended to be illustrative rather than limiting, and that those skilled in the art will appreciate that references to "one or more" are intended to be exemplary and not limiting unless the context clearly indicates otherwise.
The names of messages or information exchanged between devices in the embodiments of the present disclosure are for illustrative purposes only, and are not intended to limit the scope of the messages or information.
The present disclosure will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
As shown in fig. 1 to 4, a production device for processing fresh royal jelly lyophilized powder comprises a barrel body 101, a filter screen, a discharge hopper 102, a stirring blade 108, a vibration block and a driving member 104.
The body 101 is configured to have a body 101 space for placing royal jelly to be filtered; the filter screen is used for filtering the royal jelly; the discharging hopper 102 discharges the filtered royal jelly out of the barrel body 101, the discharging hopper 102 is arranged at the bottom of the barrel body 101, the discharging hopper 102 and the barrel body 101 are of an integral structure, the discharging hopper 102 is of a conical structure, and a filter screen is arranged at the top of the discharging hopper 102; the stirring blade 108 is arranged in the barrel body 101; the vibration block is arranged on the barrel body 101; the driving piece 104 is used for driving the stirring blade 108 to rotate; the driving piece 104 drives the stirring blade 108 to rotate, so that the stirring blade 108 generates a downward flowing trend in the royal jelly, and generates vibration when rotating; the vibrating member 109 generates vibrations on the bucket 101 and the hopper 102 when the driving member 104 operates.
The royal jelly to be filtered is put into the barrel body 101, the driving piece 104 drives the stirring blade 108 to rotate, and the stirring blade 108 stirs the royal jelly to enable the royal jelly to be in a flowing state, so that the royal jelly rapidly flows down from the filter screen; when the stirring blade 108 rotates, downward thrust is provided for the royal jelly, the royal jelly in the barrel body 101 is extruded on the filter screen, and the filtering speed of the royal jelly is further improved; stirring leaf 108 vibrations when rotating, vibrations 109 produce vibrations on staving 101 and play hopper 102, reduce the residue on staving 101 and the stirring leaf 108, and the cooperation promotes the stirring effect to the royal jelly with the rotation of stirring leaf 108, promotes the filtration efficiency to the royal jelly again, reduces the time of royal jelly and air contact, guarantees the new freshness of royal jelly.
For the motor of locating staving 101 top, be equipped with puddler 107 on driving piece 104's the output shaft, on puddler 107 was located to stirring leaf 108, all stirring leaves 108 on the puddler 107 all set up towards same direction slope, and stirring leaf 108 bottom is equipped with brush hair 1081, and brush hair 1081 contacts with the filter screen surface.
When the driving piece 104 drives the stirring rod 107 to rotate, the stirring rod 107 drives the stirring blade 108 to rotate, and under the inclined arrangement of the stirring blade 108, the stirring blade 108 provides thrust for royal jelly during rotation, and the royal jelly generates a downward flowing trend while flowing horizontally, so that the royal jelly rapidly passes through the filter screen; when the stirring blades 108 rotate, the brush bristles 1081 push impurities on the filter screen to move, the filter screen is prevented from being completely closed, smoothness of the filter screen is guaranteed, royal jelly can normally fall from the filter screen, and contact duration of the royal jelly and air is effectively reduced.
A cavity 107a is formed in the stirring rod 107, a transmission shaft 111 is arranged in the cavity 107a, a first connecting disc 1071 is arranged at the bottom of the stirring rod 107, and the transmission shaft 111 penetrates through the first connecting disc 1071; a second connecting disc 1022 is arranged in the discharge hopper 102, and the second connecting disc 1022 is fixedly connected in the discharge hopper 102 through a first connecting rod 1021; the bottom of the first connecting disc 1071 is provided with a bump 1072, and the second connecting disc 1022 is provided with a plurality of first grooves 1022a.
When the driving piece 104 drives the stirring rod 107 to rotate, the stirring rod 107 drives the first connecting disc 1071 to rotate, the bump 1072 is moved out of the first groove 1022a after entering the first groove 1022a in a staged manner, the stirring rod 107 vibrates when rotating by the cooperation of the bump 1072 and the first groove 1022a, and meanwhile, the stirring rod 107 vibrates at high frequency due to the arrangement of the first grooves 1022a, so that the stirring effect on royal jelly is improved, the royal jelly can quickly fall off the filter screen, and the liquid residue on the stirring rod 107 is reduced; the brush bristles 1081 are pressed against the filter screen when moving along with the stirring blade 108, so that the royal jelly is quickly shaken off by the vibration generated on the filter screen, and the filtering efficiency of the royal jelly is further improved.
The bottom of transmission shaft 111 links firmly on second connection pad 1022, is equipped with third connection pad 1111 on the transmission shaft 111, is equipped with a plurality of first movable grooves on the third connection pad 1111, is equipped with coupling spring 1112 on the first movable groove inner wall, and coupling spring 1112 one end is equipped with movable rod 1113, is equipped with a plurality of guide blocks 1073 on the cavity 107a inner wall, is equipped with the cambered surface on the guide block 1073, leaves the clearance between the adjacent guide block 1073.
When the driving element 104 drives the stirring rod 107 to rotate, the transmission shaft 111 is in a static state relative to the stirring rod 107, the guide block 1073 passes through one end of the movable rod 1113, the cambered surface abuts against the movable rod 1113 when the guide block 1073 moves relative to the movable rod 1113, the movable rod 1113 is pushed into the first movable groove, and after the guide block 1073 moves away from one end of the movable rod 1113, the connecting spring 1112 pushes the movable rod 1113 to impact on the inner wall of the cavity 107a, and the stirring rod 107 is vibrated by the impact of the movable rod 1113 and the inner wall of the cavity 107 a; in the later stage of royal jelly filtration, only a few royal jelly remains in the barrel body 101, and the royal jelly on the stirring rod 107 and the brush bristles 1081 is shaken off by the vibration of the stirring rod 107, so that the loss of the royal jelly in the processing process is reduced; when cleaning the interior of the barrel body 101, clean water is injected into the barrel body 101, and the royal jelly on the stirring rod 107 is shaken off by the rotation and the vibration of the stirring rod 107 so as to clean the royal jelly on the stirring rod 107 and reduce the difficulty in cleaning the stirring rod 107.
A cooling cavity 101a is arranged on the side wall of the barrel body 101, the cooling cavity 101a is wrapped outside the space of the barrel body 101, a vibration block is arranged on the inner wall of the cooling cavity 101a, and the vibration principle of the vibration block is the same as that of the ultrasonic washing machine in the prior art; a water conveying pipe 110 is arranged in the cooling cavity 101a, one end of the water conveying pipe 110 penetrates through the barrel body 101, a water inlet 110a communicated with the cooling cavity 101a is formed in the water conveying pipe 110, and a stop valve 1101 is arranged in the water conveying pipe 110; when the device is used, cold water is filled in the cooling cavity 101a, the stop valve 1101 seals the water conveying pipe 110, the cooling cavity 101a is separated from the barrel body 101, the cold water in the cooling cavity 101a is used for cooling the stirring rod 107, heat generated by vibration of the stirring rod 107 is absorbed, and the influence of temperature on the freshness of royal jelly is reduced; utilize rivers in the cooling chamber 101a will shake the even transmission of vibrations that piece 109 produced to whole staving 101 on, make whole staving 101 all produce vibrations, shake off the royal jelly of adhesion on staving 101 and play hopper 102 inner wall when the later stage is filtered to the royal jelly, reduce the waste in the royal jelly course of working, simultaneously when wasing staving 101 inside, cooperation stirring leaf 108 increases the stirring effect to rivers, and then promote the cleaning performance of rivers to puddler 107, reduce the inside washing degree of difficulty to staving 101.
A second connecting rod is arranged at the top of the barrel body 101, a mounting plate 103 is arranged at the top of the second connecting rod, a driving piece 104 is arranged on the mounting plate 103, a transmission rod is arranged on an output shaft of the driving piece 104, a stirring rod 107 is arranged on the transmission rod, the transmission rod penetrates through the cavity 107a, a first connecting block is arranged at the bottom of the transmission rod, the transmission rod and the stirring rod 107 form rotation stop fit through the first connecting block, and the first connecting block is made of rubber; the first connecting block is used for transmission, a reserved space is provided for the movement of the transmission rod, and the stirring rod 107 is guaranteed to normally vibrate in the rotating process.
A base 105 is arranged below the barrel body 101, a supporting rod 106 is arranged on the base 105, the barrel body 101 is rotatably connected to the supporting rod 106, a hand wheel 112 is arranged on the barrel body 101, and the hand wheel 112 is arranged on the outer side of the supporting rod 106 so as to overturn the barrel body 101; after the royal jelly is filtered, the barrel body 101 is turned over, the barrel body 101 rotates to an inclined state, the driving part 104 is still in a working state, and the stirring rod 107 and the inner wall of the barrel body 101 vibrate to enable impurities left in the barrel body 101 to be quickly poured out of the barrel body 101, so that the difficulty in cleaning the barrel body 101 is reduced; after impurities in the barrel body 101 are poured out, the barrel body 101 is turned back to the initial state, the stop valve 1101 is opened, water flow in the cooling cavity 101a is discharged into the barrel body 101, and the interior of the barrel body 101 is cleaned by clean water so as to finish the cleaning operation of the barrel body 101.
In order to facilitate replacement of the filter screen, as shown in fig. 5 to 6, as a further preferred scheme of the present application, the barrel body and the discharge hopper are in a split arrangement, the barrel body is provided with a first connection ring 206, the discharge hopper is provided with a second connection ring 207, the first connection ring 206 is provided with a hydraulic rod 208, a piston rod of the hydraulic rod 208 is fixedly connected to the second connection ring 207, and the support rod 201 is provided with a support block 2011; the filter screen sets up in the hopper top.
When the filter screen is replaced, the hydraulic rod 208 pushes the second connecting ring 207 to move downwards, the second connecting ring 207 drives the discharge hopper to move downwards, the discharge hopper moves downwards relative to the barrel body, the second connecting ring 207 descends to the supporting block 2011, the hydraulic rod 208 stops working, the filter screen is directly exposed at the moment, and the filter screen can be conveniently replaced; the fixing mode of the filter screen is the same as that of the filter screen in the prior art.
A first connecting groove matched with the stirring rod 202 is formed in the second connecting disc 204, a second groove 204a is formed in the bottom of the first connecting groove, a supporting spring 2051 is arranged at the bottom of the second groove 204a, a second connecting block 205 is arranged at the top of the supporting spring 2051, an arc-shaped convex block 2052 is arranged at the top of the second connecting block 205, a plurality of positioning grooves are formed in the arc-shaped convex block 2052, the second connecting block 205 cannot rotate in the second movable groove, and a first magnet 2053 is arranged on the second connecting block 205; a second connecting groove corresponding to the arc-shaped bump 2052 is formed in the bottom of the transmission shaft 203, and a plurality of positioning blocks corresponding to the positioning grooves are arranged on the inner wall of the second connecting groove; the transmission shaft 203 is provided with a magnetic block, a partition plate 2021 is arranged in the cavity, and the partition plate 2021 is arranged above the transmission shaft 203.
After the filter screen is replaced, the hydraulic rod 208 drives the second connecting ring 207 to move upwards, the discharge hopper moves towards the barrel body, the second connecting disc 204 moves towards the transmission shaft 203, the arc-shaped bump 2052 is inserted into the second connecting groove, when the positioning block is staggered with the positioning groove, the positioning block abuts against the top of the arc-shaped bump 2052, the second connecting block 205 pushes the transmission shaft 203 to move upwards, the top of the transmission shaft 203 abuts against the partition 2021, when the driving piece drives the stirring rod 202 to rotate, the partition 2021 is used for driving the transmission shaft 203 to rotate, the transmission shaft 203 rotates relative to the second connecting block 205, after the positioning block rotates to be aligned with the positioning groove, the positioning block is inserted into the positioning groove, the transmission shaft 203 moves downwards to be disengaged from the partition 2021, the second connecting block 205 fixes the transmission shaft 203, the stirring rod 202 rotates relative to the transmission shaft 203, vibration is generated on the stirring rod 202, waste in the processing process is reduced, and the cleaning difficulty of the interior of the barrel body is reduced; under the arrangement of the first magnetic block 2053 and the second magnetic block 2031, the transmission shaft 203 and the second connecting block 205 generate a mutual attraction force, so that the connection effect of the transmission shaft 203 and the second connecting block 205 is improved.
In order to facilitate the cleaning of the brush hair, as shown in fig. 7 to 9, as another preferred embodiment of the present invention, a third connecting block 3021 is provided on the stirring rod 302, the stirring blade 301 is rotatably connected to the third connecting block 3021, and a limiting rod 3022 is provided on the stirring rod 302; a water inlet pipe 304 communicated with the barrel body penetrates through the water pipe 303, a third connecting ring 3041 is arranged on the inner wall of the water inlet pipe 304, a sealing spring 3042 is arranged on the third connecting ring 3041, a sealing block 3043 is arranged at one end of the sealing spring 3042, one end of the sealing block 3043 extends out of the water inlet pipe 304 and abuts against the end portion of the water inlet pipe 304, so that the sealing block 3043 cannot move in the water inlet pipe 304, an inclined surface is arranged on the sealing block 3043, and the inclined surface is arranged upwards in the normal use process of the barrel body.
When impurities in the barrel body are poured out, the barrel body is turned to be in an inclined state, the stirring blades 301 are turned towards the mounting plate under the action of gravity, the stirring blades 301 are lapped on the limiting rods 3022, and the bristles are separated from the filter screen, so that the impurities on the filter screen can fall off more easily; clean water is introduced from the water inlet pipe 304, the water flow pushes the sealing block 3043 to move in the barrel body direction, the water inlet pipe 304 is opened, the water flow is enabled to be sprayed out towards the brush hair direction under the guidance of the inclined plane, the brush hair is cleaned by the water flow entering from the water inlet pipe 304, adhered matters on the brush hair are washed off, and the cleaning difficulty of the brush hair is reduced; after sundries in the barrel body are discharged, the barrel body is rotated to the initial position, the stop valve is opened, water flow in the cooling cavity is discharged into the barrel body, and the interior of the barrel body is further cleaned.
The limiting rod 3022 limits the maximum overturning angle of the stirring blade 301, so that the stirring blade 301 can only be overturned to an inclined state, bristles on the stirring blade 301 can be cleaned, and the stirring blade 301 can be automatically overturned to a horizontal state when the barrel body is overturned.
The foregoing description is only exemplary of the preferred embodiments of the disclosure and is illustrative of the principles of the technology employed. It will be appreciated by those skilled in the art that the scope of the invention in the embodiments of the present disclosure is not limited to the specific combinations of the above-mentioned features, and other embodiments in which the above-mentioned features or their equivalents are combined arbitrarily without departing from the spirit of the invention are also encompassed. For example, the above features and (but not limited to) the features with similar functions disclosed in the embodiments of the present disclosure are mutually replaced to form the technical solution.

Claims (10)

1. The utility model provides a apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness, includes:
a tub configured to have a tub space for placing royal jelly to be filtered;
a filter screen for filtering the royal jelly;
the discharging hopper is used for discharging the filtered royal jelly out of the barrel body;
the method is characterized in that:
the apparatus for producing of fresh royal jelly freeze-dried powder processing usefulness still includes:
the stirring blade is arranged in the barrel body;
the vibration block is arranged on the barrel body;
the driving piece is used for driving the stirring blade to rotate;
the driving piece drives the stirring blades to rotate, so that a downward flowing trend is generated in the royal jelly, and the stirring blades generate vibration when rotating;
the vibrating piece generates vibration on the barrel body and the discharge hopper when the driving piece works.
2. The production device for processing the fresh royal jelly lyophilized powder according to claim 1,
the method is characterized in that: further comprising:
the stirring rod penetrates through the barrel body;
the bristles are arranged on the stirring blade;
the stirring blades are arranged on the stirring rod, and the bristles are in contact with the filter screen.
3. The production device for processing fresh royal jelly lyophilized powder according to claim 2,
the method is characterized in that: further comprising:
the transmission shaft is arranged on the stirring rod;
the first connecting disc is arranged on the transmission shaft;
the bump is arranged on the first connecting disc;
the second connecting disc is arranged in the discharge hopper;
the stirring rod is provided with a cavity for accommodating the transmission shaft, and the second connecting disc is provided with a plurality of first grooves corresponding to the bumps.
4. The production device for processing the fresh royal jelly lyophilized powder according to claim 3,
the method is characterized in that: further comprising:
the third connecting disc is arranged on the transmission shaft;
the movable rod is arranged on the third connecting disc;
the connecting spring is arranged at one end of the movable rod;
the guide blocks are arranged in the cavities;
and a first movable groove for accommodating the movable rod is arranged on the third connecting disc.
5. The production device for processing fresh royal jelly lyophilized powder according to claim 1,
the method is characterized in that: the stirring blades are obliquely arranged.
6. The production device for processing fresh royal jelly lyophilized powder according to claim 1,
the method is characterized in that: the barrel body is provided with a cooling cavity, and the vibration block is arranged in the cooling cavity.
7. The production device for processing fresh royal jelly lyophilized powder according to claim 6,
the method is characterized in that: further comprising:
the water delivery pipe is arranged in the cooling cavity in a penetrating manner;
the flow stopping valve is arranged in the water delivery pipe;
the water delivery pipe is provided with a water inlet communicated with the cooling cavity.
8. The production device for processing fresh royal jelly lyophilized powder according to claim 1,
the method is characterized in that: further comprising:
the base is arranged below the barrel body;
the supporting rod is arranged on the base;
the barrel body is rotatably connected to the supporting rod.
9. The production device for processing the fresh royal jelly lyophilized powder according to claim 3,
the method is characterized in that: further comprising:
the mounting plate is arranged above the barrel body;
the first connecting block is used for driving the driving piece and the stirring rod;
the first connecting block is made of elastic materials.
10. The production device for processing fresh royal jelly lyophilized powder according to claim 8,
the method is characterized in that: further comprising:
the hydraulic rod is used for driving the discharging hopper to move relative to the barrel body;
the supporting block is arranged on the supporting rod;
and a first connecting groove matched with the stirring rod is arranged on the second connecting disc.
CN202211106183.6A 2022-09-09 2022-09-09 Production device for processing fresh royal jelly freeze-dried powder Active CN115721033B (en)

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CN202211106183.6A CN115721033B (en) 2022-09-09 2022-09-09 Production device for processing fresh royal jelly freeze-dried powder

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Application Number Priority Date Filing Date Title
CN202211106183.6A CN115721033B (en) 2022-09-09 2022-09-09 Production device for processing fresh royal jelly freeze-dried powder

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CN115721033B CN115721033B (en) 2024-02-23

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CN213077623U (en) * 2020-07-27 2021-04-30 湖北通九州农业科技有限公司 Filtering device for pear syrup processing
CN215656324U (en) * 2021-08-27 2022-01-28 济南纯臻生态农业发展有限公司 Extraction element of royal jelly freeze-dried powder

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN210993174U (en) * 2019-10-14 2020-07-14 广东詹氏蜂业生物科技股份有限公司 Royal jelly multistage filter device
CN211537443U (en) * 2019-12-31 2020-09-22 湖南省明园蜂业有限公司 A filter equipment for royal jelly production
CN213077623U (en) * 2020-07-27 2021-04-30 湖北通九州农业科技有限公司 Filtering device for pear syrup processing
CN215656324U (en) * 2021-08-27 2022-01-28 济南纯臻生态农业发展有限公司 Extraction element of royal jelly freeze-dried powder

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