CN113908753A - Hybrid system of duck egg pickling liquid - Google Patents
Hybrid system of duck egg pickling liquid Download PDFInfo
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- CN113908753A CN113908753A CN202111169872.7A CN202111169872A CN113908753A CN 113908753 A CN113908753 A CN 113908753A CN 202111169872 A CN202111169872 A CN 202111169872A CN 113908753 A CN113908753 A CN 113908753A
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Images
Abstract
The invention discloses a mixing system for duck egg pickling liquid. This hybrid system of duck egg pickling liquid compact structure, design benefit can be through the quick pickling liquid mixture that will need to mix of first mixing mechanism and second mixing mechanism in the hybrid box. The first mixing mechanism can mix the liquid on the upper layer, the second mixing mechanism can mix the liquid on the lower layer, and the second mixing mechanism can convey the liquid on the lower layer to the upper layer, so that the liquid can be fully mixed. Quickening the mixing reaction time, reducing the investment of capital and improving the working efficiency.
Description
Technical Field
The invention relates to the technical field of mixing, in particular to a mixing system of duck egg pickling liquid.
Background
China is a big duck breeding country, and the number of duck eggs produced in each year is the first in the world. The duck egg is rich in nutrients, has a composition similar to that of an egg, is provided with a hard shell on the outer side, is provided with an air chamber, egg white and yolk parts in the inner side, and is rich in cholesterol, protein and vitamin A, B, B, and vitamin B is an ideal food for supplementing B vitamins. However, compared with eggs, the total amount of various minerals in the duck eggs is higher than that of the eggs, and particularly, the content of iron and calcium elements required by human bodies in the duck eggs is higher, so that the duck eggs can promote the bone development and prevent anemia. Due to the influence of the traditional diet of China, 75% of duck eggs in China are consumed in the manner of salted duck eggs.
Salted duck eggs, a special food in China, are named as salted eggs in ancient times and are also named as salted duck eggs, salted duck eggs and Chinese olive, and are reproduced eggs which are prepared by pickling fresh duck eggs serving as main raw materials. Salted duck eggs have a long history in China, are well received and are also well received in the market. Scientific detection shows that the duck egg shells contain 83-85% of calcium carbonate, 15-17% of protein and various trace elements, and the calcium content of each duck egg shell is 2-2.5 g. Calcium element plays an important physiological regulation role in playing all cell functions of a human body, is an activator of more than 200 enzymes in the human body, participates in metabolism of the human body, enables each organ of the human body to normally operate, and therefore, calcium must be supplemented every day.
However, since ancient times, the preparation method of salted duck eggs is single, the taste is not rich enough, and the contained fat, protein, various amino acids, calcium, phosphorus, iron, trace elements and vitamins required by human bodies only meet the requirements of human bodies for intake, and the calcium element in the duck egg shells cannot be supplemented into the human bodies through the duck eggs.
The pickling of the traditional Chinese duck eggs is mainly characterized in that the duck eggs are pickled in a pickling solution prepared by mixing salt, traditional Chinese medicines, spices, seasonings, water and vegetable oil for a period of time. But present pickling liquid mixing arrangement structure is comparatively simple for pickling liquid mixes inhomogeneously, leads to the quality reduction that duck's egg pickled.
Disclosure of Invention
In order to overcome the defects in the prior art, the invention provides a mixing system of duck egg pickling liquid.
The technical scheme of the invention is realized as follows:
a mixing system of duck egg pickling liquid comprises a mixing box, wherein a first mixing mechanism and a second mixing mechanism are arranged in the mixing box, a feeding pipe is arranged at the upper end of the mixing box, and a discharging pipe is arranged at the lower end of the mixing box;
the first mixing mechanism comprises a first stirring component and a second stirring component which are symmetrically arranged and inclined, the first stirring component and the second stirring component are connected through a connecting piece, the first stirring component and the second stirring component comprise a first motor, a rotating seat and a rotating piece, the first motor is arranged on the outer wall of the mixing box and is provided with a first rotating shaft, the first rotating shaft extends to the interior of the mixing box, the rotating base is arranged on the first rotating shaft, the rotating seat is provided with an installation part, one end of the rotating part is hinged on the installation part, the rotating part on the first stirring component is connected with the rotating part on the second stirring component through the connecting piece, the middle of the connecting piece is provided with an annular groove, the rotating piece is provided with a limiting piece, the limiting piece is arranged in the annular groove, and the two sides of the rotating piece are provided with stirring pieces;
the second mixing mechanism comprises a second motor, a compression piece, a first pushing piece and a second pushing piece, the second motor is mounted at the upper end of the mixing box, the lower end of the second motor is provided with a second rotating shaft, the lower end of the second rotating shaft is provided with a first rotating piece and a second rotating piece which are symmetrically arranged, one end of the first rotating piece is connected with the second rotating shaft, the other end of the first rotating piece is connected with one end of the second rotating piece through an articulated piece, the other end of the second rotating piece is connected with the second rotating piece at the other position through the articulated piece, the inner wall of the mixing box is provided with a support rod, the support rod is provided with a sliding tube, the middle of the sliding tube is provided with a sliding rod, one end of the sliding rod is mounted on the compression piece, the other end of the sliding rod is mounted between the first rotating piece and the second rotating piece through a first articulated piece, and a second articulated piece is arranged between the second rotating piece and the articulated piece, the second pushing piece is arranged on the second hinged rod, a pushing rod is arranged on the second pushing piece, the first pushing piece is arranged on the pushing rod, the axis of the first pushing piece is overlapped with that of the compression piece, a spring and a compression disc are arranged inside the compression piece, one end of the spring is in contact with the inner wall of the compression piece, the other end of the spring is in contact with the compression disc, the outer diameter of the first pushing piece is equal to the inner diameter of the compression piece, a ball head portion is arranged on the first pushing piece, a spherical groove matched with the ball head portion is formed in the compression disc, and a liquid discharging hole is formed in the compression piece.
In the present invention, the angle between the first motor and the second motor is 60 °.
In the invention, the angle between the first motor on the first stirring assembly and the first motor on the second stirring assembly is 160 degrees.
In the invention, the stirring piece is provided with a first stirring part and a second stirring part, the cross section of the first stirring part is trapezoidal, and the length of the first stirring part is greater than that of the second stirring part.
In the invention, the upper and lower surfaces of the first stirring part are provided with flow guide grooves.
In the invention, the inner wall of the compression piece is provided with a limiting block, and the surface of the first pushing piece is provided with a limiting groove corresponding to the limiting block.
In the present invention, the push lever has an arc portion thereon, and the hinge is disposed in the middle of the arc portion.
In the invention, the inner wall of the mixing box is provided with a compression cylinder, the second pushing piece is arranged in the compression cylinder, and the upper end of the compression cylinder is provided with a liquid spraying pipe.
In the invention, the rear end of the compression part is provided with an arc-shaped block, the arc-shaped block is arranged at the upper end of the liquid discharge hole, and the inner surface of the arc-shaped block is provided with a plurality of partition plates.
The mixing system of the duck egg pickling liquid has the following beneficial effects: this hybrid system of duck egg pickling liquid compact structure, design benefit can be through the quick pickling liquid mixture that will need to mix of first mixing mechanism and second mixing mechanism in the hybrid box. The first mixing mechanism can mix the liquid on the upper layer, the second mixing mechanism can mix the liquid on the lower layer, and the second mixing mechanism can convey the liquid on the lower layer to the upper layer, so that the liquid can be fully mixed. Quickening the mixing reaction time, reducing the investment of capital and improving the working efficiency.
Drawings
FIG. 1 is a schematic structural diagram of a mixing system of the duck egg preserving fluid of the present invention;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a cross-sectional view taken along line A-A of FIG. 2;
FIG. 4 is a schematic view of the internal structure of FIG. 1;
FIG. 5 is a schematic view of the first mixing mechanism of FIG. 4;
FIG. 6 is another schematic view of the structure of FIG. 5;
FIG. 7 is a partial enlarged view of FIG. 6 at B;
FIG. 8 is a schematic structural view of the second mixing mechanism of FIG. 4;
FIG. 9 is a schematic view of the compression member, arcuate block, first pusher member and second pusher member of FIG. 8;
FIG. 10 is a cross-sectional view of the compression member and arcuate segments of FIG. 9;
fig. 11 is another structural diagram of fig. 10.
In the figure: a mixing box 1, a first mixing mechanism 2, a second mixing mechanism 3, a feeding pipe 4, a discharging pipe 5, a first stirring component 6, a second stirring component 7, a connecting piece 8, a first motor 9, a rotating base 10, a rotating piece 11, a first rotating shaft 12, a mounting part 13, an annular groove 14, a limiting piece 15, a stirring piece 16, a first stirring part 17, a second stirring part 18, a diversion trench 19, a second motor 20, a compression piece 21, a first pushing piece 22 and a second pushing piece 23, the device comprises a second rotating shaft 24, a first rotating member 25, a second rotating member 26, a hinge 27, a support rod 28, a sliding pipe 29, a sliding rod 30, a first hinge rod 31, a second hinge rod 32, a push rod 33, a spring 34, a compression disc 35, a ball head 36, a spherical groove 37, a liquid discharge hole 38, a limiting block 39, a limiting groove 40, an arc-shaped part 41, a compression cylinder 42, a liquid spray pipe 43, an arc-shaped block 44 and a partition plate 45.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
As shown in fig. 1 to 11, the mixing system for duck egg marinating liquid of the present invention includes a mixing tank 1, wherein the mixing tank 1 has a first mixing mechanism 2 and a second mixing mechanism 3, the first mixing mechanism 2 is above the second mixing mechanism 3, so that the first mixing mechanism 2 can push the marinating liquid to the second mixing mechanism 3, which facilitates mixing more uniformly. The mixing box 1 has a feed pipe 4 at the upper end and a discharge pipe 5 at the lower end.
The first mixing mechanism 2 comprises a first stirring component 6 and a second stirring component 7 which are symmetrically arranged and inclined, and the first stirring component 6 and the second stirring component 7 are connected through a connecting piece 8. The first stirring assembly 6 and the second stirring assembly 7 comprise a first motor 9, a rotary base 10 and a rotating member 11, the first motor 9 is mounted on the outer wall of the mixing box 1, the first motor 9 is provided with a first rotating shaft 12, and the first rotating shaft 12 extends to the inside of the mixing box 1. The rotating base 10 is installed on the first rotating shaft 12, the rotating base 10 is provided with an installation part 13, one end of the rotating part 11 is hinged on the installation part 13, and the rotating part 11 on the first stirring assembly 6 is connected with the rotating part 11 on the second stirring assembly 7 through the connecting part 8. The connecting piece 8 has an annular groove 14 in the middle, and the rotating piece 11 has a limiting piece 15, and the limiting piece 15 is placed in the annular groove 14. When the rotating member 11 rotates, the limiting member 15 at the upper end thereof is placed in the annular groove 14 and can move therein, and meanwhile, when the rotating member 11 rotates to different angles, the position of the limiting member 15 in the annular groove 14 is different.
The rotating member 11 has agitating members 16 on both sides. The stirring member 16 has a first stirring portion 17 and a second stirring portion 18, the first stirring portion 17 has a trapezoidal cross section, and the length of the first stirring portion 17 is greater than that of the second stirring portion 18. The first stirring part 17 has guide grooves 19 on upper and lower surfaces thereof. Since the length of the first stirring part 17 is larger than that of the second stirring part 18, the first stirring part 17 can push the liquid to rotate through a larger area when rotating, which is beneficial to mixing the pickling liquid. Meanwhile, the cross section of the end of the first stirring part 17 is trapezoidal, so that the thickness of the far end is larger, the end can be subjected to larger centrifugal force during rotation, the inertia effect which can be applied to the end is larger, the end can be subjected to larger force, the pickling liquid is pushed to be guided from the guide grooves 19 on the upper surface and the lower surface, and the pickling liquid is uniformly mixed.
Meanwhile, the angle between the first motor 9 and the second motor 20 is 60 °. The angle between the first motor 9 on the first stirring assembly 6 and the first motor 9 on the second stirring assembly 7 is 160 °. Since the angle between the first motor 9 and the second motor 20 is 60 °, the angle between the rotary base 10 mounted on the first rotary shaft 12 and the second motor 20 is also 60 °, and the angle between the first motor 9 on the first stirring assembly 6 and the first motor 9 on the second stirring assembly 7 is 160 °. The angle between the first stirring component 6 and the second stirring component 7 is also 160 degrees, when the rotating component 11 rotates to the nearest position, the limiting component 15 at the upper end is also the nearest position, the limiting component 15 continuously rotates along with the rotating component 11, so that the limiting component 15 continuously moves in the annular groove 14, and the liquid in the mixing box 1 is continuously stirred by the continuous approaching and separating of the rotating component 11. When the pickling liquid mixing machine works, the pickling liquid mixing machine rotates clockwise for a certain time and then rotates anticlockwise for a certain time, and the fact that the pickling liquid inside can be uniformly mixed is guaranteed.
The second mixing mechanism 3 comprises a second electric motor 20, a compression member 21, a first impeller 22 and a second impeller 23. The second motor 20 is installed at the upper end of the mixing box 1, the lower end of the second motor 20 is provided with a second rotating shaft 24, the lower end of the second rotating shaft 24 is provided with a first rotating member 25 and a second rotating member 26 which are symmetrically arranged, one end of the first rotating member 25 is connected with the second rotating shaft 24, the other end of the first rotating member is connected with one end of the second rotating member 26, and the other end of the second rotating member 26 is connected with the second rotating member 26 at the other position through a hinge member 27. The mixing box 1 has a support rod 28 on the inner wall thereof, a sliding tube 29 on the support rod 28, a sliding rod 30 in the middle of the sliding tube 29, one end of the sliding rod 30 being mounted on the compression member 21, the other end being mounted between the first rotating member 25 and the second rotating member 26 via a first hinge rod 31, and a second hinge rod 32 between the second rotating member 26 and the hinge member 27.
In order to enable the first pushing member 22 to enter the compressing member 21 smoothly, the inner wall of the compressing member 21 is provided with a limiting block 39, and the surface of the first pushing member 22 is provided with a limiting groove 40 corresponding to the limiting block 39.
The second pusher 23 is mounted on a second articulated rod 32, the second pusher 23 has a push rod 33 thereon, the first pusher 22 is mounted on the push rod 33, and the first pusher 22 coincides with the axis of the compression member 21. The push lever 33 has an arc portion 41 thereon, and the hinge 27 is disposed at the middle of the arc portion 41, and the middle of the arc portion 41 has a large area with respect to other positions of the push lever 33, so that the hinge 27 can rotate therein. The compression member 21 has a spring 34 and a compression disc 35 inside, and the spring 34 has one end in contact with the inner wall of the compression member 21 and the other end in contact with the compression disc 35. And the outer diameter of the first pusher member 22 is equal to the inner diameter of the compression member 21. The first pusher 22 has a ball portion 36 and the compression disc 35 has a spherical groove 37 that mates with the ball portion 36. The interior of the compression member 21 has a drain hole 38.
The mixing box 1 has a compression cylinder 42 on the inner wall, the second pushing member 23 is disposed in the compression cylinder 42, and the upper end of the compression cylinder 42 has a liquid spraying pipe 43. After the second pushing member 23 is pulled, the curing liquid can enter the compression cylinder 42, then the second pushing member 23 is pushed again, the curing liquid in the compression cylinder 42 is sprayed out from the liquid spraying pipe 43 through the second pushing member 23, and the curing liquid is sprinkled down from the upper end of the curing liquid to be uniformly mixed.
The rear end of the compression member 21 has an arc-shaped block 44, the arc-shaped block 44 is provided at the upper end of the liquid discharge hole 38, and the inner surface of the arc-shaped block 44 has a plurality of partitions 45. When the arc block 44 moves, the pickling liquid can be mixed with the partition plate 45. When the arc-shaped block 44 moves towards the first pushing member 22, the pickling liquid can be converged towards the upper end through the partition plate 45, and the upper end of the partition plate 45 faces the liquid discharge hole 38, so that the liquid discharged from the liquid discharge hole 38 can be dispersed in the middle of the partition plate 45, and the discharged liquid is mixed with the liquid converged by the partition plate 45. When the arc block 44 moves away from the first pushing member 22, the arc block 44 can be made to separate the liquid, and the liquid at the upper end is guided to the lower end through the arc surface.
When the second mixing mechanism 3 works, the second motor 20 drives the second rotating shaft 24 to rotate, then the first rotating member 25 and the second rotating member 26 rotate, the first rotating member 25 drives the compressing member 21 to move, the second rotating member 26 drives the first pushing member 22 and the second pushing member 23 to move, when the second rotating shaft 24 rotates, the compressing member 21 moves towards the first pushing member 22, at this time, the first pushing member 22 also moves towards the compressing member 21, so that the ball head part 36 enters the spherical groove 37, liquid in the spherical groove 37 is pressed out and mixed, then the first pushing member 22 pushes the compression disc 35, the liquid in the compressing member 21 is compressed, discharged from the liquid discharge hole 38, and then mixed through the partition plate 45.
When the compressing member 21 and the first pushing member 22 move towards each other, the second pushing member 23 moves away from the compressing cylinder 42, so that the liquid enters the compressing cylinder 42, and then when the first pushing member 22 and the compressing member 21 move away from each other, the second pushing member 23 moves towards the compressing cylinder 42 to eject the liquid in the compressing cylinder 42 from the liquid ejecting tube 43.
Before mixing, the traditional Chinese medicines, the spices and the seasonings are crushed into powder, and then the powder, the salt, the water and the vegetable oil are added into a mixing box 1 to be mixed.
Adopt this hybrid system of duck egg pickling liquid to mix during the mixing, mixing efficiency is high, has shortened the mixing time, has reached anticipated mixed effect.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.
Claims (9)
1. A mixing system of duck egg pickling liquid comprises a mixing box and is characterized in that a first mixing mechanism and a second mixing mechanism are arranged in the mixing box, a feeding pipe is arranged at the upper end of the mixing box, and a discharging pipe is arranged at the lower end of the mixing box;
the first mixing mechanism comprises a first stirring component and a second stirring component which are symmetrically arranged and inclined, the first stirring component and the second stirring component are connected through a connecting piece, the first stirring component and the second stirring component comprise a first motor, a rotating seat and a rotating piece, the first motor is arranged on the outer wall of the mixing box and is provided with a first rotating shaft, the first rotating shaft extends to the interior of the mixing box, the rotating base is arranged on the first rotating shaft, the rotating seat is provided with an installation part, one end of the rotating part is hinged on the installation part, the rotating part on the first stirring component is connected with the rotating part on the second stirring component through the connecting piece, the middle of the connecting piece is provided with an annular groove, the rotating piece is provided with a limiting piece, the limiting piece is arranged in the annular groove, and the two sides of the rotating piece are provided with stirring pieces;
the second mixing mechanism comprises a second motor, a compression piece, a first pushing piece and a second pushing piece, the second motor is mounted at the upper end of the mixing box, the lower end of the second motor is provided with a second rotating shaft, the lower end of the second rotating shaft is provided with a first rotating piece and a second rotating piece which are symmetrically arranged, one end of the first rotating piece is connected with the second rotating shaft, the other end of the first rotating piece is connected with one end of the second rotating piece through an articulated piece, the other end of the second rotating piece is connected with the second rotating piece at the other position through the articulated piece, the inner wall of the mixing box is provided with a support rod, the support rod is provided with a sliding tube, the middle of the sliding tube is provided with a sliding rod, one end of the sliding rod is mounted on the compression piece, the other end of the sliding rod is mounted between the first rotating piece and the second rotating piece through a first articulated piece, and a second articulated piece is arranged between the second rotating piece and the articulated piece, the second pushing piece is arranged on the second hinged rod, a pushing rod is arranged on the second pushing piece, the first pushing piece is arranged on the pushing rod, the axis of the first pushing piece is overlapped with that of the compression piece, a spring and a compression disc are arranged inside the compression piece, one end of the spring is in contact with the inner wall of the compression piece, the other end of the spring is in contact with the compression disc, the outer diameter of the first pushing piece is equal to the inner diameter of the compression piece, a ball head portion is arranged on the first pushing piece, a spherical groove matched with the ball head portion is formed in the compression disc, and a liquid discharging hole is formed in the compression piece.
2. The mixing system for duck egg marinating liquid as claimed in claim 1, wherein the angle between the first and second motors is 60 °.
3. The mixing system for duck egg preserving fluid as claimed in claim 1, wherein the angle between the first motor on the first stirring assembly and the first motor on the second stirring assembly is 160 °.
4. The mixing system for duck egg preserving liquid as claimed in claim 1, wherein the stirring member has a first stirring portion and a second stirring portion, the first stirring portion has a trapezoidal cross section, and the length of the first stirring portion is greater than the length of the second stirring portion.
5. The mixing system for duck egg curing liquid as claimed in claim 4, wherein the first stirring part has guide grooves on the upper and lower surfaces thereof.
6. The mixing system for duck egg preserving solution as claimed in claim 1, wherein the compressing member has a stopper on an inner wall thereof, and the first pushing member has a stopper groove on a surface thereof corresponding to the stopper.
7. The mixing system for duck egg marinating liquid as claimed in claim 1, wherein the pushing rod has an arc portion thereon, and the hinge is disposed in the middle of the arc portion.
8. The mixing system for duck egg curing liquid as claimed in claim 1, wherein the mixing box has a compression cylinder on the inner wall thereof, the second pushing member is disposed in the compression cylinder, and the compression cylinder has a liquid spraying tube at the upper end thereof.
9. The mixing system for duck egg marinating liquid as claimed in claim 1, wherein the rear end of the compressing member has an arc block at the upper end of the drain hole, and the inner surface of the arc block has a plurality of partitions.
Priority Applications (1)
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CN202111169872.7A CN113908753B (en) | 2021-10-08 | 2021-10-08 | Mixing system of duck egg pickling liquid |
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CN202111169872.7A CN113908753B (en) | 2021-10-08 | 2021-10-08 | Mixing system of duck egg pickling liquid |
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CN113908753A true CN113908753A (en) | 2022-01-11 |
CN113908753B CN113908753B (en) | 2023-09-29 |
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Denomination of invention: A mixing system for duck egg pickling solution Granted publication date: 20230929 Pledgee: Bank of China Limited Ruichang sub branch Pledgor: RUICHANG YIXIANG AGRICULTURAL PRODUCTS Co.,Ltd. Registration number: Y2024980003209 |