Shampoo production sampling device

By designing a multi-point sampling device inside the tank, the problem of inaccurate traditional shampoo sampling was solved, enabling random and accurate detection of shampoo samples and ensuring processing quality.

CN223783963UActive Publication Date: 2026-01-09FUJIAN YUANRONG BIOTECH
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Patent Information

Application Number
CN202423174261.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-01-09
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Traditional shampoo sampling devices take samples at fixed points within the container, resulting in inaccurate samples that affect measurement results and processing quality.

Method used

A shampoo production sampling device was designed, comprising a tank, a stirring mechanism, a cover, and a sampling mechanism. Through the cooperation of a drive component, a lifting component, and a linear drive component, the sampling component can perform multi-point sampling within the tank, thereby improving sample randomness and detection accuracy.

Benefits of technology

This technology enables sampling and testing of shampoo within different ranges inside the tank, improving the randomness of the samples and the accuracy of the sampling results, thus ensuring the quality of subsequent processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a shampoo production sampling device, which is characterized in that when shampoo needs to be processed, raw materials for making the shampoo can be fed into a tank body through a feeding hole, then a stirring mechanism is operated to stir and mix the raw materials, and when the mixing condition of the shampoo needs to be sampled and detected, a lifting assembly can be operated to lift the liquid shampoo to be processed. The lifting assembly drives the sampling assembly to penetrate through the sampling opening and extend into the tank body, then the sampling assembly is operated, the sampling assembly detects the shampoo extraction part, when sampling points need to be switched, the driving assembly can be operated, the driving assembly drives the extraction assembly to rotate through the cover body, and the extraction assembly moves to the position above the needed sampling range. And the linear driving piece can continue to run, so that the linear driving piece drives the extraction assembly to move to a proper position in the sampling opening through the rack, and then the lifting assembly runs, so that the lifting assembly drives the extraction assembly to extend to a proper height for sampling, and sampling points can be diversified.
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Description

TECHNICAL FIELD

[0001] The utility model relates to shampoo production sampling technical field especially relates to a shampoo production sampling device. BACKGROUND

[0002] Shampoo, also known as shampoo, shampoo, is the most widely used hair care products, but also one of the most commonly used hair cosmetics, used to wash the oil, dirt, cells and foreign dust, microorganisms, styling product residues and bad smell etc. on the scalp and hair, shampoo needs to go through more steps in the production process, among which sampling of shampoo is one of the steps, and sampling of shampoo is to facilitate analysis of the processing process of shampoo, so as to identify its quality, and sampling of shampoo involves sampling device in the process.

[0003] When the traditional sampling device samples the shampoo, it is usually sampled by positioning the shampoo in the processing container, which leads to inaccurate sampling of samples, affects the measurement results, and thus affects the processing quality of the shampoo. UTILITY MODEL CONTENT

[0004] (I) Technical problem to be solved

[0005] In order to solve the above problems of prior art, the utility model provides a shampoo production sampling device, which can sample and detect different ranges of shampoo in the container, improve the randomness of samples, so as to make the sampling result more accurate and make the subsequent processing better.

[0006] (II) Technical scheme

[0007] In order to achieve the above purpose, the utility model adopts the main technical scheme including:

[0008] A kind of shampoo production sampling device, including tank body, stirring mechanism, cover and sampling mechanism, the tank body upper portion is provided with opening, the cover is rotatably connected with the opening, the stirring mechanism upper portion is connected with the cover middle part, the stirring mechanism lower part is arranged in the tank body interior, the sampling mechanism is connected with the cover;

[0009] The sampling mechanism includes drive assembly and mobile sampling assembly, the drive assembly is drivenly connected with the cover, the cover is provided with sampling port, the mobile sampling assembly is arranged on the sampling port, the cover is also provided with feed inlet;

[0010] The mobile sampling assembly comprises a rack, a first sliding block, a lifting assembly, a extraction assembly and a linear drive, the lower part of the rack is provided with the first sliding block, the inside of the sampling port is provided with the first sliding groove matched with the first sliding block, the first sliding block is slidably connected with the first sliding groove, one side of the linear drive is connected with the cover, the other side of the linear drive is drivingly connected with the rack, the upper part of the rack is provided with the lifting assembly, the lifting assembly is drivingly connected with the extraction assembly.

[0011] Further, the lifting assembly comprises a screw rod lifter, a lifting plate, a second sliding block and an extension rod, the two sides of the lifting plate are provided with the second sliding block, the upper part of the rack is provided with the second sliding groove matched with the second sliding block, the lifting plate is slidably connected with the second sliding groove through the second sliding block, the screw rod lifter is arranged on the top of the rack, the screw rod lifter is linearly drivingly connected with the top surface of the lifting plate, the bottom surface of the lifting plate is connected with the extraction assembly through the extension rod.

[0012] Further, the extraction assembly comprises a sampling pump, a sampling tube, a sample inlet tube and a sample outlet tube, the sampling tube is connected with the bottom surface of the lifting plate through the extension rod, the upper part of the sampling tube is provided with the sampling port, the sampling port is connected with the sample inlet end of the sampling pump through the sample inlet tube, the sample outlet tube is connected with the sample outlet end of the sampling pump.

[0013] Further, the driving assembly comprises a first rotary drive, a first gear and a second gear, the lower part of the cover is provided with a rotary ring, the upper part of the tank body is provided with a rotary groove matched with the rotary ring, the cover is rotatably connected with the rotary groove through the rotary ring, the first gear is sleeved outside the rotary ring and connected with the rotary ring, the second gear is rotatably connected with the upper part of the tank body, the first gear is engaged with the second gear, the first rotary drive is drivingly connected with the second gear.

[0014] Further, the stirring mechanism comprises a second rotary drive, a stirring shaft and stirring paddles, the upper part of the stirring shaft is rotatably connected with the middle part of the cover, the lower part of the stirring shaft is surrounded by a plurality of stirring paddles, the stirring paddles are arranged inside the tank body, the second rotary drive is drivingly connected with the stirring shaft.

[0015] Further, a stop valve is further included, the lower part of the tank body is provided with a discharge port, the inside of the discharge port is provided with the stop valve.

[0016] Further, still comprising two telescopic shielding pieces, one end of one telescopic shielding piece is connected with one end of the sampling port, the other end of one telescopic shielding piece is connected with one side of the rack, one end of the other telescopic shielding piece is connected with the other end of the sampling port, and the other end of the other telescopic shielding piece is connected with the other side of the rack.

[0017] Further, still comprising a feeding hopper, the feeding hopper is fixedly connected with the feeding port.

[0018] Further, still comprising supporting feet, a plurality of supporting feet are fixedly connected with the bottom surface of the tank body.

[0019] Further, still comprising a PLC controller, the PLC controller is electrically connected with the stirring mechanism and the sampling mechanism respectively.

[0020] (Three) beneficial effects

[0021] The beneficial effects of the utility model are: when it is needed to process shampoo in actual production and use process, the shampoo raw materials can be put into the tank body through the feeding port, then the stirring mechanism is operated to stir and mix the raw materials, when it is needed to sample and detect the mixing condition of the shampoo, the lifting assembly is operated to drive the sampling assembly to pass through the sampling port and extend into the tank body, then the sampling assembly is operated to extract part of the shampoo for detection, when it is needed to switch the sampling point, the driving assembly is operated to drive the extraction assembly to rotate through the cover to move to the required sampling range, and the straight line driving part is continuously operated to drive the extraction assembly to move to the appropriate position in the sampling port through the rack, then the lifting assembly is operated to drive the extraction assembly to extend to the appropriate height for sampling, so that the sampling point can be diversified, different ranges of shampoo in the container can be sampled and detected, the randomness of the sample is improved, the sampling result is more accurate, and the subsequent processing is better. DRAWINGS

[0022] Figure 1 It is the whole structure schematic view of shampoo production sampling device of the embodiment of the utility model;

[0023] Figure 2 It is the whole structure sectional view of shampoo production sampling device of the embodiment of the utility model;

[0024] Figure 3 It is the cover and sampling mechanism schematic view of shampoo production sampling device of the embodiment of the utility model;

[0025] Figure 4The embodiment of the utility model discloses shampoo production sampling device's cover and sampling mechanism schematic view;

[0026] Figure 5 The embodiment of the utility model discloses shampoo production sampling device's mobile sampling subassembly schematic view;

[0027]

Explanation of Mark

[0028] Feed hopper 1, stirring mechanism 2, mobile sampling subassembly 3, support foot 4, jar body 5, cover 6, drive subassembly 7, stop valve 8, second rotary drive piece 201, stirring shaft 202, stirring paddle 203, screw rod elevator 301, lifting plate 302, sampling pump 303, sample outlet pipe 304, sample inlet pipe 305, linear drive piece 306, telescopic shielding piece 307, sampling tube 308, extension rod 309, rack 310, second gear 701, first rotary drive piece 702, first gear 703, rotary ring 704. Specific implementation

[0029] In order to better explain the utility model, so as to facilitate understanding, below, combining with the drawing, through specific implementation, the utility model is described in detail.

[0030] Please refer to Figures 1 to 5 The utility model discloses a shampoo production sampling device, including jar body 5, stirring mechanism 2, cover 6 and sampling mechanism, the upper portion of jar body 5 is provided with the opening, the cover 6 with opening place can rotatablely connected, the upper portion of stirring mechanism 2 is connected with the middle part of cover 6, the lower part of stirring mechanism 2 is arranged in the inside of jar body 5, sampling mechanism is connected with cover 6;

[0031] The sampling mechanism includes drive subassembly 7 and mobile sampling subassembly 3, drive subassembly 7 with cover 6 drive connection, the cover 6 is provided with sampling port, mobile sampling subassembly 3 is arranged on sampling port, the cover 6 is also provided with feed inlet;

[0032] The mobile sampling subassembly 3 includes rack 310, first sliding block, lifting assembly, extraction assembly and linear drive piece 306, the lower part of rack 310 is provided with first sliding block, the inside of sampling port is provided with the first sliding groove that is adapted with first sliding block, first sliding block can be slidably connected with first sliding groove, one side of linear drive piece 306 is connected with cover 6, the other side of linear drive piece 306 is driven to connect with rack 310, the upper part of rack 310 is provided with lifting assembly, lifting assembly is driven to connect with extraction assembly.

[0033] The utility model discloses a working principle as follows: when needing to process shampoo in the actual production use process, can make shampoo raw materials through the feed port and put into the inside of jar body 5, then run stirring mechanism 2, make stirring mechanism 2 to raw materials and mix, when needing to sample detection to the mixing condition of shampoo, can run lifting assembly, make lifting assembly drive sampling assembly and pass through sampling port and extend into the inside of jar body 5, then run sampling assembly, make sampling assembly and take out part of shampoo and detect, when needing to switch sampling point, can run drive assembly 7, make drive assembly 7 drive extraction assembly and rotate through cover 6, make extraction assembly move to the above required sampling range, and can continue to run straight line drive piece 306, make straight line drive piece 306 drive extraction assembly and move to the suitable position in the inside of sampling port through rack 310, then run lifting assembly again, make lifting assembly drive extraction assembly and extend to the sampling of suitable height, thereby making sampling point diversified.

[0034] Further, the lifting assembly includes a lead screw elevator 301, a lifting plate 302, a second sliding block and an extension rod 309, the lifting plate 302 is provided with a second sliding block on both sides, the rack 310 is provided with a second sliding groove matched with the second sliding block on the upper part, the lifting plate 302 is slidably connected with the second sliding groove through the second sliding block, the lead screw elevator 301 is arranged on the top of the rack 310, the lead screw elevator 301 is linearly drivenly connected with the top surface of the lifting plate 302, and the bottom surface of the lifting plate 302 is connected with the extraction assembly through the extension rod 309.

[0035] From the above description, it can be known that when the shampoo in the jar body 5 needs to be sampled and detected, the drive assembly 7 and the straight line drive piece 306 can be operated to adjust the required extraction point of the extraction assembly, then the lead screw elevator 301 is operated, so that the lead screw elevator 301 drives the extension rod 309 to descend through the lifting plate 302, thereby making the extension rod 309 drive the extraction assembly to descend to the required extraction height, then the extraction assembly is operated, so that the extraction assembly extracts the shampoo at the position, and after the extraction is completed, the lead screw elevator 301 can be operated to reset the extraction assembly, thereby facilitating subsequent transposition sampling.

[0036] Further, the extraction assembly includes a sampling pump 303, a sampling tube 308, a sample inlet tube 305 and a sample outlet tube 304, the sampling tube 308 is connected with the bottom surface of the lifting plate 302 through the extension rod 309, the upper part of the sampling tube 308 is provided with a sampling port, the sampling port is connected with the sample inlet end of the sampling pump 303 through the sample inlet tube 305, and the sample outlet tube 304 is connected with the sample outlet end of the sampling pump 303.

[0037] From the above description, when sampling shampoo in the tank 5 is needed, the sampling tube 308 can be moved to a suitable position by driving the assembly 7, the linear drive 306 and the lifting assembly, then running the sampling pump 303 to make the shampoo enter the sampling tube 308, then flow through the outlet tube 304 to discharge sampling, when the residual shampoo in the sampling tube 308 needs to be discharged, the sampling tube 308 can be lifted by the screw lifter 301 to separate from the shampoo, then the sampling pump 303 is run to discharge the residual shampoo in the sampling tube 308.

[0038] Further, the driving assembly 7 comprises a first rotary drive 702, a first gear 703 and a second gear 701, the lower part of the cover 6 is provided with a rotary ring 704, the upper part of the tank 5 is provided with a rotary groove matched with the rotary ring 704, the cover 6 is rotatably connected with the rotary groove through the rotary ring 704, the first gear 703 is sleeved outside the rotary ring 704 and connected with the rotary ring 704, the second gear 701 is rotatably connected with the upper part of the tank 5, the first gear 703 is engaged with the second gear 701, and the first rotary drive 702 is rotatably driven with the second gear 701.

[0039] From the above description, when the sampling position of the sampling tube 308 needs to be adjusted, the first rotary drive 702 is run to drive the first gear 703 to rotate through the second gear 701, so that the first gear 703 drives the moving sampling assembly 3 to rotate through the cover 6, and the moving sampling assembly 3 is rotated to the above of the required sampling area, then the linear drive 306 and the lifting assembly are run to select the sampling point in the area.

[0040] Further, the stirring mechanism 2 comprises a second rotary drive 201, a stirring shaft 202 and stirring paddles 203, the upper part of the stirring shaft 202 is rotatably connected with the middle part of the cover 6, the lower part of the stirring shaft 202 is surrounded by a plurality of stirring paddles 203, the stirring paddles 203 are arranged inside the tank 5, and the second rotary drive 201 is drivingly connected with the stirring shaft 202.

[0041] From the above description, when the shampoo needs to be processed, the raw materials can be added into the tank 5 through the feeding port, then the second rotary drive 201 is run to drive the stirring paddles 203 to stir and mix the raw materials through the stirring shaft 202.

[0042] Further, it further comprises a stop valve 8, the lower part of the tank 5 is provided with a discharge port, and the discharge port is provided with the stop valve 8.

[0043] From the above description, it is beneficial to run the stop valve 8 after the shampoo is processed, so that the stop valve 8 opens the discharge port, and then the shampoo is discharged outside the tank 5.

[0044] Further, two telescopic shielding members 307 are connected to one end of the sampling port and the other end of the sampling port, and the other end of the telescopic shielding member 307 is connected to one side of the rack 310.

[0045] From the above description, it is beneficial to move the rack 310, and the telescopic shielding assembly follows the rack 310 to expand and contract, so that the telescopic shielding assembly shields the sampling port and prevents external impurities from entering the tank 5 and affecting the quality of the shampoo processing.

[0046] Further, the feeding hopper 1 is fixedly connected to the feeding port.

[0047] From the above description, it is beneficial to better process the raw materials of the shampoo through the feeding hopper 1 into the tank 5.

[0048] Further, the supporting leg 4 is fixedly connected to the bottom surface of the tank 5.

[0049] From the above description, it is beneficial to run the device more stably, and the shampoo is discharged from the discharge port.

[0050] Further, the PLC controller is electrically connected to the stirring mechanism 2 and the sampling mechanism.

[0051] From the above description, it is beneficial to adjust the parameters of the shampoo production sampling device through the PLC controller, and the operator is more convenient when operating the shampoo production sampling device. Embodiment one

[0052] Please refer to Figures 1 to 5 A shampoo production sampling device, comprising a tank 5, a stirring mechanism 2, a cover 6 and a sampling mechanism, the tank 5 is provided with an opening at the upper part, the cover 6 is rotatably connected with the opening, the stirring mechanism 2 is connected with the middle part of the cover 6, the lower part of the stirring mechanism 2 is arranged in the tank 5, and the sampling mechanism is connected with the cover 6.

[0053] The sampling mechanism comprises a driving assembly 7 and a movable sampling assembly 3, the driving assembly 7 is in driving connection with the cover 6, the cover 6 is provided with a sampling port, the movable sampling assembly 3 is arranged on the sampling port, and the cover 6 is further provided with a feeding port;

[0054] The movable sampling assembly 3 comprises a rack 310, a first sliding block, a lifting assembly, a drawing assembly and a linear driving part 306, the lower part of the rack 310 is provided with the first sliding block, the inside of the sampling port is provided with a first sliding groove matched with the first sliding block, the first sliding block is in slidable connection with the first sliding groove, one side of the linear driving part 306 is connected with the cover 6, the other side of the linear driving part 306 is in driving connection with the rack 310, and the upper part of the rack 310 is provided with the lifting assembly, and the lifting assembly is in driving connection with the drawing assembly;

[0055] The linear driving part 306 is an electric cylinder;

[0056] The lifting assembly comprises a screw lifting machine 301, a lifting plate 302, a second sliding block and an extension rod 309, the two sides of the lifting plate 302 are provided with the second sliding block, the upper part of the rack 310 is provided with a second sliding groove matched with the second sliding block, the lifting plate 302 is in slidable connection with the second sliding groove through the second sliding block, the screw lifting machine 301 is arranged on the top of the rack 310, the screw lifting machine 301 is in linear driving connection with the top surface of the lifting plate 302, and the bottom surface of the lifting plate 302 is connected with the drawing assembly through the extension rod 309;

[0057] The drawing assembly comprises a sampling pump 303, a sampling pipe 308, a feeding pipe 305 and a sample outlet pipe 304, the sampling pipe 308 is connected with the bottom surface of the lifting plate 302 through the extension rod 309, the upper part of the sampling pipe 308 is provided with a sampling port, the sampling port is connected with the sampling inlet end of the sampling pump 303 through the feeding pipe 305, and the sample outlet pipe 304 is connected with the sample outlet end of the sampling pump 303;

[0058] The driving assembly 7 comprises a first rotary driving part 702, a first gear 703 and a second gear 701, the lower part of the cover 6 is provided with a rotary ring 704, the upper part of the tank body 5 is provided with a rotary groove matched with the rotary ring 704, the cover 6 is rotatably connected with the rotary groove through the rotary ring 704, the first gear 703 is sleeved outside the rotary ring 704 and connected with the rotary ring 704, the second gear 701 is rotatably connected with the upper part of the tank body 5, the first gear 703 is engaged with the second gear 701, and the first rotary driving part 702 is in rotary driving connection with the second gear 701;

[0059] The first rotating drive 702 is a stepper motor, which is beneficial to better control the rotation angle of the cover 6, thereby better controlling the sampling range of the extraction assembly;

[0060] The stirring mechanism 2 comprises a second rotating drive 201, a stirring shaft 202 and stirring paddles 203. The upper part of the stirring shaft 202 is rotatably connected to the middle part of the cover 6. The lower part of the stirring shaft 202 is provided with a plurality of stirring paddles 203, and the stirring paddles 203 are arranged inside the tank body 5. The second rotating drive 201 is drivingly connected to the stirring shaft 202.

[0061] The second rotating drive 201 is a speed reducer motor;

[0062] It also comprises a stop valve 8. The lower part of the tank body 5 is provided with a discharge port, and the discharge port is provided with the stop valve 8 inside;

[0063] It also comprises two telescopic shielding members 307. One end of one telescopic shielding member 307 is connected to one end of the sampling port, and the other end of the telescopic shielding member 307 is connected to one side of the rack 310. The other end of the other telescopic shielding member 307 is connected to the other end of the sampling port, and the other end of the telescopic shielding member 307 is connected to the other side of the rack 310.

[0064] The telescopic shielding members 307 are all corrugated pipes;

[0065] It also comprises a feed hopper 1. The feed hopper 1 is fixedly connected to the feed port and is welded;

[0066] It also comprises support feet 4. The tank body 5 is fixedly connected with a plurality of support feet 4 at the bottom surface and is welded;

[0067] It also comprises a PLC controller. The PLC controller is electrically connected to the stirring mechanism 2 and the sampling mechanism, respectively;

[0068] The PLC controller is a DATA-7311 type. The PLC controller is electrically connected to the linear drive 306, the first rotating drive 702, the second rotating drive 201, the screw lifter 301, the sampling pump 303 and the stop valve 8, respectively.

[0069] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the standard parts used in the utility model can be purchased from the market, the special-shaped parts can be ordered according to the description and the drawings, the specific connection mode of each part adopts the conventional means such as bolts, rivets and welding in the prior art, the machinery, parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here.

[0070] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent transformation or direct or indirect application in the related technical field by using the content of the utility model specification and drawings is also included in the patent protection range of the utility model.

Claims

1. A shampoo production sampling device, characterized by: The utility model provides a kind of sampling device for laboratory, including tank body, stirring mechanism, cover and sampling mechanism, the upper portion of the tank body is provided with opening, the cover is rotatably connected with the opening, the upper portion of the stirring mechanism is connected with the middle portion of the cover, the lower portion of the stirring mechanism is arranged inside the tank body, the sampling mechanism is connected with the cover; The sampling mechanism includes a drive assembly and a movable sampling assembly. The drive assembly is drivingly connected to the cover. A sampling port is provided on the cover. The movable sampling assembly is arranged on the sampling port. An inlet is also provided on the cover. The movable sampling assembly includes a rack, a first sliding block, a lifting assembly, an extraction assembly and a linear drive. The lower portion of the rack is provided with a first sliding block. The inside of the sampling port is provided with a first sliding groove matched with the first sliding block. The first sliding block is slidably connected to the first sliding groove. One side of the linear drive is connected to the cover. The other side of the linear drive is drivingly connected to the rack. The upper portion of the rack is provided with the lifting assembly. The lifting assembly is drivingly connected to the extraction assembly.

2. The shampoo production sampling device of claim 1, wherein: The lifting assembly includes a screw lifter, a lifting plate, a second sliding block and an extension rod. Both sides of the lifting plate are provided with a second sliding block. The upper portion of the rack is provided with a second sliding groove matched with the second sliding block. The lifting plate is slidably connected to the second sliding groove through the second sliding block. The screw lifter is arranged on the top of the rack. The screw lifter is linearly drivingly connected to the top surface of the lifting plate. The bottom surface of the lifting plate is connected to the extraction assembly through the extension rod.

3. The shampoo production sampling device of claim 2, wherein: The extraction assembly includes a sampling pump, a sampling tube, a sample inlet tube and a sample outlet tube. The sampling tube is connected to the bottom surface of the lifting plate through the extension rod. The upper portion of the sampling tube is provided with a sampling port. The sampling port is connected to the sample inlet end of the sampling pump through the sample inlet tube. The sample outlet tube is connected to the sample outlet end of the sampling pump.

4. The shampoo production sampling device of claim 1, wherein: The drive assembly includes a first rotary drive, a first gear and a second gear. The lower portion of the cover is provided with a rotary ring. The upper portion of the tank body is provided with a rotary groove matched with the rotary ring. The cover is rotatably connected to the rotary groove through the rotary ring. The first gear is sleeved outside the rotary ring and connected to the rotary ring. The second gear is rotatably connected to the upper portion of the tank body. The first gear is engaged with the second gear. The first rotary drive is drivingly connected to the second gear.

5. The shampoo production sampling device of claim 1, wherein: The stirring mechanism includes a second rotary drive, a stirring shaft and stirring paddles. The upper portion of the stirring shaft is rotatably connected to the middle portion of the cover. The lower portion of the stirring shaft is surrounded by a plurality of stirring paddles. The stirring paddles are arranged inside the tank body. The second rotary drive is drivingly connected to the stirring shaft.

6. The shampoo production sampling device of claim 1, wherein: A stop valve is also included. The lower portion of the tank body is provided with a discharge port. The discharge port is provided with the stop valve inside.

7. The shampoo production sampling device of claim 1, wherein: Two telescopic shielding pieces are further included, one end of one telescopic shielding piece is connected with one end of the sampling port, the other end of one telescopic shielding piece is connected with one side of the rack, one end of the other telescopic shielding piece is connected with the other end of the sampling port, and the other end of the other telescopic shielding piece is connected with the other side of the rack.

8. The shampoo production sampling device of claim 1, wherein: A feeding hopper is further included, and the feeding hopper is fixedly connected to the feeding port.

9. The shampoo production sampling device of claim 1, wherein: Supporting feet are further included, and the tank body bottom surface is fixedly connected with a plurality of supporting feet.

10. The shampoo production sampling device of claim 1, wherein: A PLC controller is further included, and the PLC controller is electrically connected with the stirring mechanism and the sampling mechanism respectively.