CN121007742A - A sampler for the production of Ganoderma lucidum mycelium emulsifier - Google Patents
A sampler for the production of Ganoderma lucidum mycelium emulsifierInfo
- Publication number
- CN121007742A CN121007742A CN202511548770.4A CN202511548770A CN121007742A CN 121007742 A CN121007742 A CN 121007742A CN 202511548770 A CN202511548770 A CN 202511548770A CN 121007742 A CN121007742 A CN 121007742A
- Authority
- CN
- China
- Prior art keywords
- sampling
- sampler
- magnet ring
- fixedly connected
- ganoderma lucidum
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N1/00—Sampling; Preparing specimens for investigation
- G01N1/02—Devices for withdrawing samples
- G01N1/10—Devices for withdrawing samples in the liquid or fluent state
- G01N1/14—Suction devices, e.g. pumps; Ejector devices
Landscapes
- Life Sciences & Earth Sciences (AREA)
- Hydrology & Water Resources (AREA)
- Physics & Mathematics (AREA)
- Health & Medical Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Analytical Chemistry (AREA)
- Biochemistry (AREA)
- General Health & Medical Sciences (AREA)
- General Physics & Mathematics (AREA)
- Immunology (AREA)
- Pathology (AREA)
- Sampling And Sample Adjustment (AREA)
Abstract
The invention discloses a sampler for producing ganoderma lucidum mycelium emulsifying agent, which relates to the technical field of sampling equipment and comprises a shell, wherein a driving mechanism is arranged on the shell and comprises a driving gear rotationally connected to the inside of the shell, two driven gears are meshed with the outer surface of the driving gear, a driving module is arranged on the shell, a plurality of sampling mechanisms are arranged below the shell, each sampling mechanism comprises a sampling barrel, a piston is arranged in the sampling barrel, a magnet ring is fixedly connected to the upper surface of the piston, and a magnet ring is slidingly connected to the outer surface of the sampling barrel. The emulsifier is inhaled simultaneously through a plurality of independent spliced sampling barrels, the mode that current integral type pull sampler is single channel extraction is changed, the situation that the emulsifier of different layers mixes in the sampling and transportation process and leads to follow-up testing result distortion can be avoided, each barrel independently aspirates, independent storage during the sampling, has avoided the mixture of different layering samples from physical structure.
Description
Technical Field
The invention relates to the technical field of sampling equipment, in particular to a sampler for producing a ganoderma lucidum mycelium emulsifying agent.
Background
The glossy ganoderma mycelium emulsifier is one kind of liquid or cream product prepared with glossy ganoderma mycelium as the core functional component and through emulsifying technology. The sampler for producing the ganoderma lucidum mycelium emulsifier is special sampling equipment which is specially designed for physical characteristics (including mycelium particles, certain viscosity and easiness in layering) and production quality monitoring requirements of the ganoderma lucidum mycelium emulsifier, can accurately collect emulsifier samples with different depths from a container (such as a reaction kettle or a storage tank) without pollution, and provides samples for subsequent detection (such as indexes of mycelium concentration, emulsion stability, purity and the like).
The conventional integrated drawing sampler is similar to a hollow injector, has a fixed length, is difficult to adapt to containers with different depths, and if the height of the container for producing the ganoderma lucidum mycelium emulsifier is changed, for example, the container is too deep, the sampler can not cover the whole depth, or the operation is inconvenient due to the overlength, for example, the container is too shallow. In addition, the integral drawing sampler is usually single-channel extraction, so that mixing of emulsifying agents of different liquid layers in the sampling process is difficult to avoid, and especially, when ganoderma lucidum mycelia are easily layered and unevenly distributed (less suspension of upper mycelia and more precipitation of lower mycelia) materials are mixed, the detection result is distorted, and the real situation cannot be reflected.
Thus, in view of the above, the present invention provides a sampler for producing ganoderma lucidum mycelium emulsifier.
Disclosure of Invention
The invention provides a sampler for producing ganoderma lucidum mycelium emulsifying agent, which aims to solve the problems in the prior art.
The sampler for producing the ganoderma lucidum mycelium emulsifying agent comprises a shell, wherein a driving mechanism is arranged on the shell and comprises a driving gear rotationally connected to the inside of the shell, two driven gears are meshed with the outer surface of the driving gear, and a driving module is arranged on the shell;
The below of casing is provided with a plurality of sampling mechanism, every sampling mechanism includes the sample bucket, the inside of sample bucket is provided with the piston, fixed surface is connected with magnet ring on the piston, the surface sliding connection of sample bucket has magnet ring, the lower extreme threaded connection of sample bucket has the bottom, the lower fixed surface intercommunication of bottom has a plurality of one-way feed liquor valves, the last fixed surface intercommunication of sample bucket has a plurality of one-way air outlet valves, magnet ring and magnet ring are each other for the opposite magnetic pole, sampling mechanism still includes two internal thread cover two of symmetry fixed connection in magnet ring surface, two internal thread connection of internal thread cover have the threaded rod, the length of threaded rod does not exceed the height of sample bucket.
Preferably, the center of the driven gear is fixedly connected with an internal thread sleeve I, the internal thread sleeve I is in threaded connection with a threaded rod, the internal thread sleeve downwards penetrates out of the driven gear and then is rotationally provided with an external thread sleeve, the outer surface of the external thread sleeve is in threaded connection with a nut, the upper surface and the lower surface of the shell are respectively provided with two arc-shaped grooves, and the circle center of each arc-shaped groove is concentric with the circle center of the driving gear.
Preferably, the lower surfaces of the shell and the bottom cover are fixedly connected with a first threaded interface, the upper surface of the sampling barrel is fixedly connected with a second threaded interface, and the first threaded interface can be in threaded connection with the second threaded interface.
Preferably, the sampling mechanism further comprises a plurality of sealing nuts fixedly connected to the outer surface of the sampling barrel from top to bottom, the position of the sampling barrel corresponding to the sealing nuts is provided with round holes, the sealing nuts are internally and uniformly connected with sealing bolts in a threaded manner, and the sealing bolts extend into the round holes.
Preferably, a notch is formed in the outer surface of the magnet ring corresponding to the position of the sealing bolt.
Preferably, the arc groove is all worn out to two external screw thread cover lower extreme, and the equal fixedly connected with limiting plate of one end of wearing out, and limiting plate's diameter is greater than the width of arc groove, and limiting plate contradicts at the lower surface of casing.
Preferably, the drive module is a rotary handle or a motor.
Preferably, the upper surface of the driving gear is fixedly connected with a plug bush, and the output shaft of the rotating handle or the motor is connected with a plug bush key.
Preferably, the magnet ring is annular, and the size of the magnet ring is matched with the inner diameter size of the sampling barrel.
The sampler for producing the ganoderma lucidum mycelium emulsifying agent has the following beneficial effects:
The emulsifier is sucked simultaneously through a plurality of independently spliced sampling barrels, the mode that the existing integrated drawing sampler is usually single-channel in extraction is changed, the situation that the subsequent detection results are distorted due to mixing of the emulsifiers in different layers in the sampling and transferring processes can be avoided, the barrels are independently sucked and independently stored in the sampling process, the mixing of different layered samples is avoided in a physical structure, the emulsifier states (such as mycelium concentration and emulsion stability) of all layers can be truly reflected, and the monitoring requirements on layered quality in production are more met.
Each sampling barrel becomes a barrel body for independently storing the emulsifying agent, can independently store, transport, detect and other operations on the sampling barrel, does not need to transport the extracted emulsifying agent into other closed containers for storage, and reduces the steps that the existing integrated sampling sampler needs to discharge samples for storage and transportation for multiple times.
Compare traditional fixed volume's sample bucket, this sampler need not to change the sample bucket, only can adjust the sample volume of single sample bucket through the mode of screwing in sealing bolt, for example reduces the sample volume to upper strata low concentration sample, increases the sample volume to lower floor's high concentration sample, and the operation is high-efficient and need not reserve staving, adapts to different detection demands, also can not appear the too much condition that leads to the fact the waste of emulsifier sample.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic perspective view of another view of the present invention;
FIG. 3 is a schematic structural view of the second internal thread bushing, the threaded rod, the magnet ring and other components of the invention;
FIG. 4 is a schematic view of the structure of the inner part of the sampling barrel of the present invention after being partially cut away;
FIG. 5 is a schematic view of the structure of the inside of the housing of the present invention partially cut away;
FIG. 6 is a schematic view of the structure of the housing, the first threaded interface, the drive module, and the like according to the present invention;
FIG. 7 is a schematic view of the housing, arcuate slot and drive module of the present invention;
FIG. 8 is a schematic structural view of the driven gear, the female sleeve, the male sleeve and the like according to the present invention.
In the figure:
1. The device comprises a shell, a driving gear, a 202, a driven gear, a 203, an internal thread sleeve I, a 204, an external thread sleeve, a 205, a nut, a 206, an arc-shaped groove, a 207, a driving module, a 208 and a thread interface I;
301. The device comprises a sampling barrel, 302, a piston, 303, a magnet ring, 304, a magnet ring, 305, a bottom cover, 306, a one-way liquid inlet valve, 307, a one-way air outlet valve, 308, a second internal thread sleeve, 309, a threaded rod, 310, a sealing nut, 311, a sealing bolt, 312 and a second threaded interface.
Detailed Description
Embodiments of the invention:
Referring to fig. 1 and fig. 4-8, the embodiment discloses a sampler for producing a ganoderma lucidum mycelium emulsifier, which comprises a housing 1, wherein a driving mechanism is arranged on the housing 1, the driving mechanism comprises a driving gear 201 rotatably connected to the inside of the housing 1, an insert sleeve is fixedly connected to the upper surface of the driving gear 201, the insert sleeve extends upwards out of the upper surface of the housing 1, two driven gears 202 are meshed with the outer surface of the driving gear 201, a through hole is arranged in the center of each driven gear 202, an inner wall of each through hole of each driven gear 202 is fixedly connected with a first internal thread sleeve 203, the bottom end of each first internal thread sleeve 203 penetrates out of the driven gear 202 downwards, an external thread sleeve 204 is rotatably arranged at the bottom end of each first internal thread sleeve 203, and nuts 205 are screwed on the outer surfaces of the two external thread sleeves 204. Two arc-shaped grooves 206 are formed in the upper surface and the lower surface of the shell 1, the circle center of each arc-shaped groove 206 is concentric with the circle center of the driving gear 201, the size width of the two arc-shaped grooves 206 on the upper surface of the shell 1 is larger than the width of an adult finger, and the finger can conveniently extend into the toggle nut 205 to rotate. The nut 205 is laminated in the inner chamber bottom surface of casing 1, and the latter half of two external screw thread cover 204 does not be provided with the screw thread, and similar arc wall 206 is all worn out to two external screw thread cover 204 lower extreme, and the equal fixedly connected with spacing dish of one end that wears out, and the diameter of spacing dish is greater than the width of arc wall 206, and the spacing dish is contradicted at the lower surface of casing 1. The shell 1 is provided with a driving module 207, the driving module 207 can be a small motor or a rotating handle, the driving module 207 shown in fig. 6 is a rotating handle, the driving module 207 shown in fig. 7 is a small motor, a key slot is arranged in a plug bush, and when the driving device is used, the output shaft end of the rotating handle or the small motor can be selectively plugged into the plug bush on the driving gear 201 in a key connection manner, wherein the small motor also needs to be mounted on the upper surface of the shell 1 through a bolt, and then the driving gear 201 can be driven to rotate through the rotating handle or the small motor.
Referring to fig. 1 to 4, a plurality of sampling mechanisms are disposed below the housing 1, each sampling mechanism includes a sampling barrel 301, a piston 302 is disposed inside the sampling barrel 301, a magnet ring 303 is fixedly connected to an upper surface of the piston 302, a magnet ring 304 is sleeved on an outer surface of the sampling barrel 301, a lower end of the sampling barrel 301 is open, a bottom cover 305 is in threaded connection with a lower end of the sampling barrel, and a size of the bottom cover 305 is larger than an outer diameter size of the sampling barrel 301, and is used for blocking the magnet ring 304 from slipping downwards. The bottom cover 305 has a plurality of one-way inlet valves 306 fixed on its lower surface, and the sampling barrel 301 has a plurality of one-way outlet valves 307 fixed on its upper surface, and the magnet ring 304 and the magnet ring 303 are opposite magnetic poles.
Referring to fig. 1 to fig. 4 and fig. 8, the sampling mechanism further includes two symmetrical internal thread sleeves two 308 symmetrically and fixedly connected to the outer surface of the magnet ring 304, threaded rods 309 are threaded in the two internal thread sleeves two 308, the magnet ring 304 is in limited sliding connection with the outer surface of the sampling barrel 301, so that the internal thread sleeves two 308 and the magnet ring 304 can vertically move on the outer surface of the sampling barrel 301, the threads on the outer surfaces of the two threaded rods 309 are in the same direction, the two threaded rods 309 are in threaded fit with the two internal thread sleeves one 203, the threaded rods 309 are completely screwed into the adjacent internal thread sleeves two 308 in the initial stage, and the height of the threaded rods 309 does not exceed the height of the sampling barrel 301.
Referring to fig. 1, 3 and 4, the sampling mechanism further includes a plurality of sealing nuts 310 fixedly connected to the outer surface of the sampling barrel 301 from top to bottom, a circular hole is formed at a position of the sampling barrel 301 corresponding to the sealing nuts 310, sealing bolts 311 are connected in the sealing nuts 310 in a threaded manner, the sealing bolts 311 extend into the circular hole, a notch is formed on the outer surface of the magnet ring 304, and the notch is used for not being blocked by the sealing bolts 311 when the magnet ring moves upwards. The sealing bolt 311 does not protrude from the inner wall of the sampling barrel 301 at the beginning, is positioned in the round hole and the sealing nut 310, the magnet ring 303 is annular, the annular size is matched with the inner diameter size of the sampling barrel 301, the first threaded interface 208 is fixedly connected to the lower surfaces of the shell 1 and the bottom cover 305, the second threaded interface 312 is fixedly connected to the upper surface of the sampling barrel 301, external threads are arranged on the first threaded interface 208, internal threads are arranged on the second threaded interface 312, and the first threaded interface 208 is in threaded connection with the second threaded interface 312.
The following are all working processes and working principles of the above embodiments:
The number of sampling barrels 301 to be installed is first determined according to the sampling depth, and then installation of a plurality of sampling barrels 301 is performed. Specifically, the second threaded interface 312 at the top of one sampling barrel 301 is aligned with the first threaded interface 208 at the bottom of the shell 1 of the other sampling barrel 301 to be screwed in a rotating manner, so that the two sampling barrels 301 are fixedly connected, the sampling barrels 301 are sequentially installed, and the continuous superposition of the sampling barrels 301 can be realized, and the sampling depth is increased. The two threaded rods 309 at the top are manually rotated and screwed into the first internal thread sleeve 203 close to the top, and then the two threaded rods 309 below each sampling barrel 301 are sequentially screwed into the second internal thread sleeve 308 of the sampling barrel 301, so that the assembly of a plurality of sampling barrels 301 is completed.
It should be noted that, after the first threaded interface 208 and the second threaded interface 312 are rotationally screwed, errors may occur due to manual screwing, so that the first internal threaded sleeve 203 may not be aligned with the threaded rod 309, based on this, a finger may be extended into the housing 1 from the arc-shaped groove 206, one hand fixes the external threaded sleeve 204, and the other hand rotates the nut 205, so that the nut 205 moves upward on the outer surface of the external threaded sleeve 204, at this time, the nut 205 is no longer tightly attached to the bottom of the inner cavity of the housing 1, and then the first internal threaded sleeve 203 and the external threaded sleeve 204 may be moved in the arc-shaped groove 206, so as to align with the threaded rod 309, and then screw the nut 205 again after alignment, so that the lower surface of the nut is tightly attached to the bottom of the inner cavity of the housing 1, thereby achieving the effect of fixing the position of the first internal threaded sleeve 203.
After the alignment is fixed, the driving module 207 can be installed according to the requirement, the mode of connecting the rotating handle with the driving gear 201 is suitable for small-sized containers or small-amount sampling scenes, and the mode of connecting the output shaft of the small-sized motor with the driving gear 201 is suitable for large-sized containers or batch sampling scenes. When the driving gear 201 is driven to rotate by the rotating handle or the output shaft of the small motor, the driving gear 201 drives the two driven gears 202 meshed with the driving gear 202 to synchronously rotate, the driven gear 202 drives the two internal thread sleeves one 203 to rotate in the shell 1, and as the internal thread sleeve one 203 keeps the position stationary, the two threaded rods 309 connected with the driving gear are driven to horizontally move upwards, the two threaded rods 309 drive the internal thread sleeve two 308 connected with the driving gear and all the threaded rods 309 connected below the internal thread sleeve two 308, so that the internal thread sleeve two 308 on the outer surface of each sampling barrel 301 drives the magnet ring 304 to move upwards, the magnet ring 304 can adsorb the magnet ring 303 corresponding to the magnet ring to move upwards, the magnet ring 303 drives the piston 302 in each sampling barrel 301 to move upwards, at this moment, adsorption force is generated inside the sampling barrel 301, the ganoderma lucidum mycelium emulsifier in the container is sucked into the sampling barrel 301 through the plurality of one-way liquid inlet valves 306 on the bottom cover 305, and when the piston 302 moves upwards to discharge gas inside the sampling barrel 301, the one-way air outlet valve 307 on the upper surface of the sampling barrel 301 can discharge gas in one way, so that the piston 302 moves upwards smoothly, and the ganoderma lucidum mycelium emulsifier is sucked into the sampling barrel 301. The emulsifier is sucked into the sampling barrels 301 which are independently spliced, the mode that the existing integral drawing sampler is usually in a single-channel extraction mode can be changed, the situation that the subsequent detection results are distorted due to mixing of the emulsifiers in different layers in the sampling process is avoided, the sampling barrels 301 are independently sucked and independently stored in the sampling process, the mixing of different layered samples is avoided in a physical structure, the emulsifier states (such as mycelium concentration and emulsion stability) of all layers can be truly reflected, and the monitoring requirement on layered quality in production is more met.
Meanwhile, by selecting the driving module 207, if a small motor is used as the driving module, after the output shaft of the small motor is connected with the socket on the driving gear 201 by a key, the driving motor and the housing 1 need to be fixedly installed, and then the housing 1 can be held by hand for sampling. The rotary handle is used only by inserting the rotary handle into the plug bush and holding the rotary handle to rotate. The continuous torque output of the motor can easily overcome the resistance by using the driving motor as a driving motor to drive the adaptive sampling bucket 301 to go deep into a deeper container or the condition of higher viscosity of the emulsifying agent (high resistance caused by more mycelium content), so that the piston 302 is ensured to stably move upwards, and the sampling amount deviation or the clamping of the piston 302 caused by uneven manual force is avoided. The rotating handle does not need additional fixation or power supply, and an operator can quickly assemble the device, so that the device is suitable for scenes needing quick response, such as temporary sampling, emulsifier sampling in a small container, burst detection and the like.
After extraction, the two threaded rods 309 of the lower sampling barrel 301 can be sequentially screwed out from bottom to top, the second internal threaded sleeve 308 of the other sampling barrel 301 above can be rotated, the bottommost sampling barrel 301 body is held by hand to rotate after the threaded rods 309 are screwed out, the second threaded interface 312 is not connected with the first threaded interface 208 at the bottom of the upper sampling barrel 301, the above operation is sequentially repeated from bottom to top, the connection of all sampling barrels 301 can be disconnected, at this time, each sampling barrel 301 becomes a barrel body which independently stores emulsifying agent, operations such as storage, transportation and detection can be independently performed on the sampling barrels 301, the emulsifying agent in the sampling barrel 301 is not required to be transported into other closed containers for storage, and the steps that the existing integrated sampling sampler needs to discharge samples for storage and transportation for multiple times are reduced.
Finally, the emulsifier in the sample barrel 301 can be poured out by manually rotating the bottom cover 305 at the bottom of the sample barrel, so that subsequent detection and analysis can be performed.
Further, a certain sealing bolt 311 on the outer surface of each sampling barrel 301 can be screwed into the sampling barrel 301 according to the requirement when the sampling barrel is used, so that the sealing bolt 311 protrudes out of the inner wall of the sampling barrel 301, other sealing bolts 311 still remain in a state of not protruding out of the inner wall of the sampling barrel 301, when the piston 302 moves upwards to the screwed sealing bolt 311, the piston 302 is blocked by the sealing bolt 311 in the subsequent sampling, the magnet ring 303 cannot be driven to move upwards by the magnet ring 304, the piston 302 stays at the screwed position of the sealing bolt 311 until the piston 302 stays at the position where the one-way liquid inlet valve 306 can only feed liquid, the piston 302 can keep the position motionless, and the magnet ring 304 can continuously move upwards, so that the purpose of quantitative sampling of the sampling barrel 301 can be achieved. Compared with the traditional fixed-volume sampling barrel 301 or the mode of manually and accurately controlling the sampling amount, the design does not need to replace the sampling barrel 301, and can rapidly adjust the sampling amount of a single barrel only by screwing in and screwing out the sealing bolt 311, for example, the sampling amount is reduced for an upper-layer low-concentration sample and the sampling amount is increased for a lower-layer high-concentration sample.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (9)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202511548770.4A CN121007742B (en) | 2025-10-28 | 2025-10-28 | A sampler for the production of Ganoderma lucidum mycelium emulsifier |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202511548770.4A CN121007742B (en) | 2025-10-28 | 2025-10-28 | A sampler for the production of Ganoderma lucidum mycelium emulsifier |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN121007742A true CN121007742A (en) | 2025-11-25 |
| CN121007742B CN121007742B (en) | 2026-01-23 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202511548770.4A Active CN121007742B (en) | 2025-10-28 | 2025-10-28 | A sampler for the production of Ganoderma lucidum mycelium emulsifier |
Country Status (1)
| Country | Link |
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| CN (1) | CN121007742B (en) |
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| CN112665918A (en) * | 2019-10-15 | 2021-04-16 | 中国石油化工股份有限公司 | Closed sampling and returning device for flowing medium |
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| CN121007742B (en) | 2026-01-23 |
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