A white sugar sampling device

By designing a white sugar sampling device, which utilizes a sampling tube controlled by a piston cylinder and a solenoid valve, the problems of discontinuous and easily contaminated manual sampling were solved, achieving pollution-free continuous sampling and improving the representativeness and quality of the samples.

CN224456278UActive Publication Date: 2026-07-03MENGLA MENGPENG SUGAR IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MENGLA MENGPENG SUGAR IND CO LTD
Filing Date
2025-06-16
Publication Date
2026-07-03

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  • Figure CN224456278U_ABST
    Figure CN224456278U_ABST
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Abstract

This utility model relates to a white sugar sampling device, belonging to the field of sugar production equipment. The sampling tube of the white sugar sampling device is connected to the feeding pipe of the sugar hopper. A sampling port is provided on the side of the sampling tube. The sampling tube is inserted through the sampling port. The cylinder is a piston cylinder. The sampling tube is pushed into the feeding pipe of the sugar hopper through the sampling port by the piston cylinder for sampling. The piston cylinder is controlled by a solenoid valve. During the retraction of the sampling tube, the white sugar leaks from the feeding plate into the feeding pipe, and then leaks into the material bucket through the feeding pipe, connecting pipe, and discharge pipe, thus completing the sampling. The sampling operation is carried out in a space-saving manner, which can effectively prevent the white sugar sample from being contaminated by other substances.
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Description

Technical Field

[0001] This utility model belongs to the field of sugar production equipment, specifically, it relates to a white sugar sampling device. Background Technology

[0002] After the finished white sugar is discharged, it is stored in the sugar hopper. The staff needs to take samples of the white sugar in the sugar hopper for testing. In the existing technology, manual sampling is generally used. Manual sampling does not have the conditions for continuous sampling, the collected samples are not collective samples, the representativeness of the samples is not strong, and there is a hidden danger and risk that the analysis sample data is not accurate.

[0003] The process of manually collecting samples and the sampling instruments used are exposed to the air for a long time, making the samples susceptible to contamination by the surrounding environment. This increases the chance of microbial infection in the samples, resulting in excessive total bacterial counts in the white sugar samples. Therefore, manual sampling may affect the quality of the samples. Thus, it is essential to design and manufacture a white sugar sampling device that can replace manual sampling. Summary of the Invention

[0004] To overcome the problems existing in the background technology, this utility model discloses a white sugar sampling device. The sampling tube of the white sugar sampling device is connected to the feeding pipe of the sugar hopper. A sampling port is provided on the side of the sampling tube. The sampling tube is inserted from the sampling port. The cylinder is a piston cylinder. The sampling tube is pushed into the feeding pipe of the sugar hopper from the sampling port by the piston cylinder to take a sample. The piston cylinder is controlled by a solenoid valve. During the retraction of the sampling tube, the white sugar leaks from the feeding plate into the feeding pipe, and then leaks into the material bucket through the feeding pipe, the connecting pipe, and the discharge pipe to complete the sampling. The sampling operation is carried out in a space-saving manner, which can effectively prevent the white sugar sample from being contaminated by other substances.

[0005] To achieve the above objectives, this utility model is implemented through the following technical solution:

[0006] The white sugar sampling device is characterized by comprising: a sampling tube, a cylinder, a feeding tube, a connecting tube, a discharge tube, an upper connection port, a lower connection port, and a material bucket; the left side of the sampling tube is connected to the side of the sugar hopper, the left side of the sampling tube is connected to the cylinder, the bottom surface of the cylinder is connected to an air inlet pipe and an air outlet pipe, the bottom ends of the air inlet pipe and the air outlet pipe are connected to a solenoid valve, the bottom surface of the solenoid valve is connected to the control cabinet through a connecting cable, the top end of the feeding tube is connected to the bottom surface of the sampling tube, the bottom end of the feeding tube is connected to the top end of the connecting tube through the upper connection port, the top end of the discharge tube is connected to the bottom end of the connecting tube through the lower connection port, and the material bucket is connected to the bottom of the discharge tube.

[0007] Preferably, the sample includes a feeding plate, which is disposed inside the sampling tube.

[0008] As a preferred embodiment, the device includes a top cover and a top cover connection port. The top cover connection port is located at the top of the material hopper, and the outer periphery of the top cover connection port is provided with external threads. The top cover and the material hopper are connected through the top cover connection port, and the bottom end of the discharge pipe is connected to the top cover.

[0009] Preferably, the device includes a feed pipe connection port; the feed pipe connection port is located at the bottom of the feed pipe, and the outer surface of the feed pipe connection port is provided with external threads.

[0010] As a preferred embodiment, the connector includes an upper connection port and a lower connection port; the upper connection port is located at the top of the connector, and the lower connection port is located at the bottom of the connector; the outer surfaces of the upper connection port and the lower connection port are provided with external threads.

[0011] Preferably, the device includes a connecting ring; the connecting ring is disposed around the upper connecting port and the lower connecting port, and the inner surface of the connecting ring is provided with an internal thread.

[0012] As a preferred embodiment, the device includes a discharge pipe connection port; the discharge pipe connection port is located on the top surface of the discharge pipe, and the outer surface of the discharge pipe connection port is provided with external threads.

[0013] Preferably, the container includes a handle; the handle is located on the side of the container body.

[0014] The beneficial effects of this utility model are as follows: the sampling tube is connected to the feeding pipe of the sugar hopper, and a sampling port is provided on the side of the sampling tube. The sampling tube is inserted from the sampling port. The cylinder is a piston cylinder. The sampling tube is pushed into the feeding pipe of the sugar hopper from the sampling port by the piston cylinder to take a sample. The piston cylinder is controlled by a solenoid valve. During the retraction of the sampling tube, the white sugar leaks from the feeding plate into the feeding pipe, and then leaks into the material bucket through the feeding pipe, the connecting pipe, and the discharge pipe to complete the sampling. The sampling operation is carried out in a space-saving manner, which can effectively prevent the white sugar sample from being contaminated by other substances. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the sampling tube.

[0017] Figure 3 This is a schematic diagram showing the connection relationship between the feed pipe, connecting pipe, and discharge pipe.

[0018] Figure 4 This is a schematic diagram of the material hopper.

[0019] In the diagram, the components are: 1. Sugar hopper; 2. Cylinder; 3. Sampling tube; 4. Inlet pipe; 5. Outlet pipe; 6. Solenoid valve; 7. Connecting cable; 8. Control cabinet; 9. Feeding pipe; 10. Connecting pipe; 11. Upper connection port; 12. Lower connection port; 20. Connecting ring; 13. Discharge pipe; 14. Material bucket; 15. Top cover; 16. Handle; 17. Feeding plate; 18. Feeding pipe connection port; 19. Connecting pipe upper connection port; 20. Connecting ring; 21. Connecting pipe lower connection port; 22. Discharge pipe connection port; 23. Top cover connection port. Detailed Implementation

[0020] To make the above objectives, technical solutions and beneficial effects clearer and more explicit, the present invention will be described in detail below with reference to the accompanying drawings.

[0021] like Figure 1-4 As shown, the white sugar sampling device includes a sampling tube 3, a cylinder 2, a feeding tube 9, a connecting tube 10, a discharge tube 13, an upper connection port 11, and a lower connection port 12.

[0022] The sampling tube 3 is connected to the side of the sugar hopper 1 on the left side and to the cylinder 2 on the left side. The top of the air inlet pipe 4 and the air outlet pipe 5 are connected to the bottom of the cylinder 2. The bottom of the air inlet pipe 4 and the air outlet pipe 5 are connected to the solenoid valve 6. The bottom of the solenoid valve 6 is connected to the control cabinet 8 through the connecting cable 7. The control cabinet 8 is used to control the opening and closing of the solenoid valve 6. A button is provided on the front of the control cabinet 8. When the button is pressed, the connecting cable 7 transmits the opening and closing signal to the solenoid valve 6. After the solenoid valve 6 opens, air enters through the air inlet pipe 4, and the piston cylinder 2 performs piston reciprocating motion.

[0023] The bottom surface of the sampling tube 3 is connected to the discharge tube 9. Inside the sampling tube 3, a discharge plate 17 is provided on the right side of the opening where the discharge tube 9 connects to the sampling tube 3. The discharge plate 17 is angled to facilitate discharge. The bottom surface of the discharge tube 9 is connected to the connecting tube 10 through the upper connecting port 11. The bottom surface of the connecting tube 10 is connected to the discharge tube 13 through the lower connecting port 12. The bottom surface of the discharge tube 13 is connected to the material bucket 14. The top surface of the material bucket 14 is provided with a top cover connecting port 23. The outer surface of the top cover connecting port 23 is provided with... The top cover 15 has an internal thread on its inner surface and is threadedly connected to the top surface of the material barrel 14. The discharge pipe 13 is integrally formed and installed on the top surface of the top cover 15. The bottom surface of the discharge pipe 13 has a discharge pipe connection port 18, and the outer surface of the discharge pipe connection port 18 has an external thread. The top surface of the connecting pipe 10 has a connecting pipe upper connection port 19, and the outer surface of the connecting pipe upper connection port 19 has an external thread. A connecting ring 20 is provided around the connecting pipe upper connection port 19. The inner surface of the connecting ring 20 has an external thread. The surface of the discharge pipe 9 is provided with internal threads. The discharge pipe connection port 18 and the connecting pipe upper connection port 19 are correspondingly connected by threads to install the connecting ring 20. The bottom of the discharge pipe 9 and the top of the connecting pipe 10 are detachably installed. The bottom of the connecting pipe 10 is provided with a connecting pipe lower connection port 21. The top surface of the discharge pipe 13 is provided with a discharge pipe connection port 22. The outer surfaces of the connecting pipe lower connection port 21 and the discharge pipe connection port 22 are provided with external threads. A connecting ring 20 is provided around the connecting pipe lower connection port 21. The inner surface of the connecting ring 20 is provided with external threads. The surface is provided with internal threads. The connecting ring 20 is installed after the lower connection port 21 of the connecting pipe and the lower connection port 22 of the discharge pipe are correspondingly connected. The top of the discharge pipe 13 and the bottom of the connecting pipe 10 are detachable. According to the actual sampling needs, the connecting pipe 10 of different lengths can be replaced to facilitate sampling. The top cover 15 is removed from the discharge pipe connection port 22 at the top of the discharge pipe 13 and from the top cover connection port 23. After disassembly, the barrel body of the material barrel 14 and the top cover 15 can be cleaned.

[0024] When using the white sugar sampling device to sample white sugar, the sampling tube 3 is connected to the feeding pipe 9 of the sugar hopper 1. The sampling tube 3 has a sampling port on its side. The sampling tube 3 is inserted through the sampling port. The cylinder 2 is a piston cylinder 2. The sampling tube 3 is pushed into the feeding pipe 9 of the sugar hopper 1 through the sampling port by the piston cylinder 2 for sampling. The piston cylinder 2 is controlled by the solenoid valve 6. During the retraction of the sampling tube 3, the white sugar leaks from the feeding plate 17 into the feeding pipe 9, and then leaks into the material bucket 14 through the feeding pipe 9, the connecting pipe 10, and the discharge pipe 13, thus completing the sampling. The sampling operation is carried out in an open space, which can effectively prevent the white sugar sample from being contaminated by other substances.

[0025] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of this utility model.

Claims

1. A white sugar sampling device, characterized by, include: Sampling tube, cylinder, feeding tube, connecting tube, discharge tube, upper connection port, lower connection port, material bucket; The sampling tube is connected to the side of the sugar hopper on the left side and to the cylinder on the left side. The bottom of the cylinder is connected to an air inlet pipe and an air outlet pipe. The bottom of the air inlet pipe and the air outlet pipe are connected to a solenoid valve. The bottom of the solenoid valve is connected to the control cabinet via a connecting cable. The top of the feeding pipe is connected to the bottom of the sampling tube. The bottom of the feeding pipe is connected to the top of the connecting pipe via an upper connection port. The top of the discharging pipe is connected to the bottom of the connecting pipe via a lower connection port. The material bucket is connected to the bottom of the discharging pipe.

2. A white sugar sampling device as claimed in claim 1, wherein: include: Feeding plate; the feeding plate is disposed inside the sampling tube.

3. A white sugar sampling device as claimed in claim 1, wherein: include: Top cover and top cover connection port; the top cover connection port is located on the top of the material barrel, and the outer periphery of the top cover connection port is provided with external threads. The top cover and the material barrel are connected through the top cover connection port, and the bottom end of the discharge pipe is connected to the top cover.

4. A white sugar sampling device as claimed in claim 1, characterized in that: include: Feed pipe connection port; the feed pipe connection port is located at the bottom of the feed pipe, and the outer surface of the feed pipe connection port is provided with external threads.

5. A white sugar sampling device as claimed in claim 1, wherein: include: The connecting pipe has an upper connection port and a lower connection port; the upper connection port is located at the top of the connecting pipe, and the lower connection port is located at the bottom of the connecting pipe, with external threads on the outer surface of both the upper and lower connection ports.

6. A white sugar sampling device as claimed in claim 1, characterized in that: include: Connecting ring; The connecting ring is located around the upper and lower connecting ports, and the inner surface of the connecting ring is provided with internal threads.

7. A white sugar sampling device as claimed in claim 1, characterized in that: include: The discharge pipe connection port is located on the top surface of the discharge pipe, and the outer surface of the discharge pipe connection port is provided with external threads.

8. A white sugar sampling device as claimed in claim 1, characterized in that: include: Handle; the handle is located on the side of the barrel body.