Soybean oil different-depth sampling device

By designing a soybean oil sampling device with dual sampling switching components and positioning components, the problem that existing devices cannot sample soybean oil from different layers individually has been solved, realizing flexible switching between multi-layer and single-layer sampling and accurate sampling.

CN224189636UActive Publication Date: 2026-05-01HEILONGJIANG XIANGYUAN OIL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEILONGJIANG XIANGYUAN OIL CO LTD
Filing Date
2025-05-21
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing soybean oil sampling devices cannot meet the need for individual sampling of soybean oil from different layers, resulting in significant sampling limitations.

Method used

A soybean oil sampling device at different depths was designed. It adopts a dual sampling switching component and a positioning component to realize the switching between multi-layer and single-layer sampling. Through structures such as baffles, connecting rods, rack plates and magnetic suction rods, it can achieve accurate sampling of different soybean oil layers.

Benefits of technology

It enables switching between multi-layer and single-layer sampling of soybean oil to meet different sampling requirements and improves the flexibility and accuracy of sampling operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of soybean oil sampling, and discloses a soybean oil different-depth sampling device which comprises a sampling pipe, and a double-sampling switching assembly is installed on the surface of the sampling pipe. The sampling grooves are formed in the surface of the sampling pipe, the sample storage plate is installed on the surface of the sampling pipe, the baffle, the connecting rod, the first rack plate, the second rack plate, the adjusting plate, the push-pull plate and the hanging plate are used for double sampling switching, and a positioning assembly is installed on the surface of the adjusting plate. The positioning assembly comprises a limiting plate, a magnetic suction rod, a magnetic suction plate and a guide rod, the limiting plate is mounted on the surface of the adjusting plate, the magnetic suction rod is slidably connected into a cavity formed in the push-pull plate, the magnetic suction plate and the guide rod are used for positioning, and the baffle is arranged in the sampling groove. Different sampling requirements are met, the soybean oil sampling requirement is further improved, and the soybean oil sampling limitation is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of soybean oil sampling technology, specifically a soybean oil sampling device at different depths. Background Technology

[0002] Soybean oil sampling is a common experimental method used to analyze the quality and composition of soybean oil. During the sampling process, a sampler needs to be prepared, and a clean and odorless location should be selected. When taking samples, an appropriate amount should be taken as needed. After the samples are taken, they should be labeled and stored for easy testing.

[0003] Meanwhile, application number CN221056149U, "A Soybean Oil Sampling Device at Different Depths," describes a soybean oil sampling device at different depths. The sampler body is located inside a soybean oil container. The sampling mechanism includes a motor. This invention utilizes the cooperation of the sampler body, motor, fixed rod, stop block, sampling disc, and installation tubes. First, the sampler body is placed inside the soybean oil container. Then, the motor is started, driving the fixed rod to rotate. The fixed rod moves the stop block away. At this point, the motor is turned off, allowing multiple sets of installation tubes to simultaneously enter the soybean oil, which then reaches the sampling disc. After the soybean oil has entered the container, the motor is turned on again, driving the stop block to continue rotating. When the stop block blocks the installation tubes, the motor can be turned off. After turning off, the operator can remove the sampler body, thus enabling sampling of soybean oil at different depths.

[0004] The above-mentioned technical solution often requires separate sampling of different layers of soybean oil during use. The device can only sample multiple layers of soybean oil at the same time. When it is necessary to sample different layers of soybean oil individually, it cannot meet the single-layer sampling requirements and is difficult to meet the sampling requirements, resulting in certain limitations in soybean oil sampling.

[0005] Therefore, a soybean oil sampling device at different depths is proposed to address the above problems. Utility Model Content

[0006] To address the problems mentioned in the background art, this utility model provides a soybean oil sampling device at different depths, which has the advantages of being able to switch between single-layer and multi-layer sampling of soybean oil, adapting to different sampling requirements, further improving the demand for soybean oil sampling, and reducing the limitations of soybean oil sampling.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a soybean oil sampling device at different depths, comprising a sampling tube;

[0008] The sampling tube is equipped with a dual sampling switching assembly, which includes several sampling slots formed on the surface of the sampling tube, a sample storage plate installed on the surface of the sampling tube, and baffles, connecting rods, rack plate one, rack plate two, adjusting plate, push-pull plate, and hanging plate for dual sampling switching.

[0009] The surface of the adjustment plate is equipped with a positioning component, which includes a limiting plate installed on the surface of the adjustment plate, a magnetic suction rod slidably connected in a cavity inside the push-pull plate, and a magnetic suction plate and guide rod for positioning.

[0010] Preferably, the baffle is disposed in the sampling groove, the surface of the sampling tube is provided with an adjustment groove adapted to the baffle, the baffle is slidably connected in the adjustment groove, and the surface of the sampling groove is provided with a sampling hole for sampling, and the sampling hole is connected to the sample storage plate.

[0011] The connecting rod is mounted on one side surface of the baffle. A first rack plate is mounted on one end of the connecting rod. The adjusting plate is slidably connected inside the sampling tube. The push-pull plate is slidably connected in a cavity inside the adjusting plate. A second rack plate is slidably connected in a through hole on the surface of the adjusting plate, with one end of the second rack plate penetrating the adjusting plate and connected to the push-pull plate. The first rack plate and the second rack plate mesh with each other. A hanging plate is slidably connected in a groove on the surface of the adjusting plate, with one end of the hanging plate penetrating the adjusting plate and connected to the push-pull plate. The surface of the hanging plate has a slot that matches the first rack plate, and the first rack plate engages in this slot.

[0012] Preferably, the number of the sample storage plates corresponds one-to-one with the number of the sampling slots, and the sample storage plates are located below the sampling slots.

[0013] Preferably, the hanging plate is located on the bottom surface of the adjusting plate.

[0014] Preferably, the push-pull plate is slidably connected in a groove opened on the surface of the limiting plate, and one end of the push-pull plate extends above the limiting plate. A plurality of magnetic plates are evenly distributed on the surface of the limiting plate. One end of the magnetic rod passes through the push-pull plate and extends to the outside of the push-pull plate. The magnetic rod is magnetically attracted to the magnetic plate. The guide rod is slidably connected between two push-pull plates. Both ends of the guide rod pass through the push-pull plate in sequence and are installed in the groove opened on the surface of the limiting plate.

[0015] Preferably, a return spring is sleeved on the surface of the magnetic rod, one end of the return spring is connected to the magnetic rod, and the other end of the return spring is installed inside the push-pull plate.

[0016] Preferably, the plurality of magnetic plates are distributed on the surface of the limiting plate in two groups, and each group of magnetic plates corresponds to a different position of the push-pull plate.

[0017] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0018] 1. This utility model, by setting up a dual sampling switching component, enables multi-layer and single-layer sampling of soybean oil, avoiding the sampling operation being too simple and affecting the sampling effect of soybean oil, meeting the requirements of different soybean oil layer sampling, and enabling multi-layer and simple sampling switching adjustment according to different requirements.

[0019] 2. This utility model incorporates a positioning component, which enables precise sampling of different soybean oil layers during the adjustment process, facilitating operators in adjusting and sampling different soybean oil layers. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the cross-sectional structure of the sampling tube of this utility model;

[0022] Figure 3 This is a schematic diagram of the cross-sectional structure of the adjusting plate of this utility model;

[0023] Figure 4 This is a schematic diagram of the rack plate one and rack plate two of this utility model;

[0024] Figure 5 This is a schematic diagram of the structure of the magnetic rod and magnetic plate of this utility model;

[0025] Figure 6 This is a schematic diagram of the cross-sectional structure of the push-pull plate of this utility model.

[0026] In the diagram: 1. Sampling tube; 2. Dual sampling switching assembly; 21. Sampling slot; 22. Sample storage plate; 23. Rack plate one; 24. Rack plate two; 25. Adjustment plate; 26. Push-pull plate; 27. Hanging plate; 28. Connecting rod; 29. ​​Baffle; 3. Positioning assembly; 31. Limiting plate; 32. Magnetic suction rod; 33. Magnetic suction plate; 34. Guide rod; 35. Reset spring. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] like Figures 1 to 6 As shown, this utility model provides a soybean oil sampling device at different depths, including a sampling tube 1;

[0029] The sampling tube 1 is equipped with a dual sampling switching assembly 2. The dual sampling switching assembly 2 includes several sampling slots 21 opened on the surface of the sampling tube 1, a sample storage plate 22 installed on the surface of the sampling tube 1, and a baffle 29, a connecting rod 28, a rack plate 1 23, a rack plate 24, an adjusting plate 25, a push-pull plate 26, and a hanging plate 27 for dual sampling switching.

[0030] The baffle 29 is set in the sampling groove 21. The surface of the sampling tube 1 is provided with an adjustment groove that is adapted to the baffle 29. The baffle 29 is slidably connected in this adjustment groove. The surface of the sampling groove 21 is provided with a sampling hole for sampling, and this sampling hole is connected to the sample storage plate 22.

[0031] Connecting rod 28 is mounted on one side surface of baffle 29. A first rack plate 23 is mounted on one end of connecting rod 28. Adjusting plate 25 is slidably connected inside sampling tube 1. Push-pull plate 26 is slidably connected in a cavity inside adjusting plate 25. A second rack plate 24 is slidably connected in a through hole on the surface of adjusting plate 25, with one end of the second rack plate 24 penetrating the adjusting plate 25 and connecting to push-pull plate 26. The first rack plate 23 meshes with the second rack plate 24. A groove is formed on the surface of adjusting plate 25. An inner sliding connection is provided with a hanging plate 27. One end of the hanging plate 27 passes through the adjusting plate 25 and is connected to the push-pull plate 26. The surface of the hanging plate 27 is provided with a slot that matches the rack plate 23. The rack plate 23 is engaged in this slot, thereby enabling multi-layer and single-layer sampling of soybean oil. This avoids the sampling operation being too simple when sampling soybean oil, which affects the sampling effect and meets the requirements of different soybean oil layer sampling. It also allows for the switching and adjustment of multi-layer and simple sampling according to different requirements.

[0032] The number of sample plates 22 corresponds one-to-one with the sampling slots 21, and the sample plates 22 are located below the sampling slots 21, so that different layers of soybean oil can be sampled.

[0033] The hanging plate 27 is located on the bottom surface of the adjustment plate 25, which enables the multi-layer adjustment and the sampling of a single soybean oil layer as needed.

[0034] The surface of the adjustment plate 25 is equipped with a positioning component 3. The positioning component 3 includes a limiting plate 31 installed on the surface of the adjustment plate 25, a magnetic suction rod 32 slidably connected in a cavity inside the push-pull plate 26, a magnetic suction plate 33 for positioning, and a guide rod 34.

[0035] The push-pull plate 26 is slidably connected to the groove opened on the surface of the limiting plate 31, and one end of the push-pull plate 26 extends to the top of the limiting plate 31. Multiple magnetic plates 33 are evenly distributed on the surface of the limiting plate 31. One end of the magnetic rod 32 passes through the push-pull plate 26 and extends to the outside of the push-pull plate 26. The magnetic rod 32 and the magnetic plates 33 are magnetically attracted to each other. A guide rod 34 is slidably connected between the two push-pull plates 26. Both ends of the guide rod 34 pass through the push-pull plate 26 in sequence and are installed in the groove opened on the surface of the limiting plate 31. This allows for positioning processing when adjusting the sampling of different soybean oil layers, enabling accurate sampling of different soybean oil layers and facilitating the operator to adjust and sample different soybean oil layers.

[0036] A return spring 35 is sleeved on the surface of the magnetic suction rod 32. One end of the return spring 35 is connected to the magnetic suction rod 32, and the other end of the return spring 35 is installed inside the push-pull plate 26, so that the position of the push-pull plate 26 can be easily positioned, making it convenient to sample and adjust different soybean oil layers.

[0037] Multiple magnetic plates 33 are distributed in two groups on the surface of the limiting plate 31, and each group of magnetic plates 33 corresponds to a different position of the push-pull plate 26, which makes it convenient to sample the bottom soybean oil layer and the multiple soybean oil layers above.

[0038] Working principle and process: The sampling tube 1 is placed in the soybean oil storage container, so that the sampling groove 21 corresponds to the soybean oil layer at different depths. At this time, the baffle 29 closes the sampling hole of the sampling groove 21 to prevent soybean oil from entering the sample storage plate 22 in advance;

[0039] First, the operator presses the magnetic rod 32, causing it to slide within the cavity on the surface of the push-pull plate 26. At this time, the return spring 35 is compressed and deformed, pushing the push-pull plate 26 closer together. The push-pull plate 26 slides within the groove on the surface of the limiting plate 31, simultaneously moving the second rack plate 24. At this time, the first rack plate 23 separates from the second rack plate 24, bringing the two push-pull plates 26 closest together. Then, the magnetic rod 32 is released, and it is then attracted by the spring force of the return spring 35, magnetically attracting one of the sets of magnetic plates 33. Next, the adjusting plate 25 is pulled, causing it to slide up and down within the sampling tube 1. During this sliding process, the adjusting plate 25 moves the hanging plate 27 up and down. After selecting a suitable soybean oil layer, the operator... The operator moves the push-pull plate 26, causing it to slide on the surface of the guide rod 34. The guide rod 34 guides the movement of the push-pull plate 26, preventing it from shifting position during movement. The push-pull plate 26 then drives the hanging plate 27 to reset. When it reaches the appropriate position, the adjusting plate 25 is pulled upwards, causing the rack plate 23 to engage in the slot on the surface of the hanging plate 27. The adjusting plate 25 is then pulled upwards, causing the hanging plate 27 to move the baffle 29 upwards via the rack plate 23 and the connecting rod 28. The baffle 29 slides in the adjusting groove on the surface of the sampling tube 1, opening the sampling slot 21. The soybean oil then enters the sampling hole along the sampling slot 21 and smoothly enters the sample storage plate 22, thus achieving the sampling operation of the soybean oil.

[0040] When sampling multiple layers, the operator can directly pull the adjusting plate 25, which causes the adjusting plate 25 to move the rack plate 24 upward. Since the rack plate 23 meshes with the rack plate 24, it also moves the baffle 29 upward, thus realizing the multi-layer sampling of soybean oil.

[0041] When sampling the bottom layer of soybean oil, the push-pull plate 26 is moved directly to another set of magnetic plates 33 to achieve the sampling operation of the bottom layer of soybean oil.

[0042] The sampling groove 21 is equipped with a baffle plate to prevent soybean oil from entering the sampling tube 1 along the sampling groove 21. The upward stroke of the baffle 29 is adapted to the baffle plate. The length of the adjustment groove opened on the surface of the sampling tube 1 is the same as that of the baffle plate.

[0043] After the soybean oil sampling is completed, the sampling tube 1 is removed from the soybean oil, and then each sample storage plate 22 is opened to perform the soybean oil sampling process. The sample storage plate 22 is the same as a regular sample storage box. For specific operation, please refer to the existing technology.

[0044] 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 to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A soybean oil sampling device at different depths, comprising a sampling tube (1); characterized in that The sampling tube (1) is equipped with a dual sampling switching assembly (2). The dual sampling switching assembly (2) includes several sampling slots (21) formed on the surface of the sampling tube (1), a sample storage plate (22) installed on the surface of the sampling tube (1), and a baffle (29), a connecting rod (28), a rack plate one (23), a rack plate two (24), an adjusting plate (25), a push-pull plate (26), and a hanging plate (27) for dual sampling switching. The surface of the adjustment plate (25) is equipped with a positioning component (3). The positioning component (3) includes a limiting plate (31) installed on the surface of the adjustment plate (25), a magnetic suction rod (32) slidably connected in a cavity inside the push-pull plate (26), a magnetic suction plate (33) for positioning, and a guide rod (34).

2. The bean oil different depth sampling device according to claim 1, characterized in that: The baffle (29) is disposed in the sampling groove (21). The surface of the sampling tube (1) is provided with an adjustment groove that is adapted to the baffle (29). The baffle (29) is slidably connected in this adjustment groove. The surface of the sampling groove (21) is provided with a sampling hole for sampling, and this sampling hole is connected to the sample storage plate (22). The connecting rod (28) is installed on one side surface of the baffle (29), the first rack plate (23) is installed on one end of the connecting rod (28), the adjusting plate (25) is slidably connected to the inside of the sampling tube (1), the push-pull plate (26) is slidably connected to the cavity opened inside the adjusting plate (25), the second rack plate (24) is slidably connected to the through hole opened on the surface of the adjusting plate (25), and one end of the second rack plate (24) penetrates the adjusting plate. (25), and connected to the push-pull plate (26), the first rack plate (23) meshes with the second rack plate (24), a hanging plate (27) is slidably connected in the groove opened on the surface of the adjusting plate (25), one end of the hanging plate (27) passes through the adjusting plate (25) and is connected to the push-pull plate (26), the surface of the hanging plate (27) is provided with a slot that matches the first rack plate (23), and the first rack plate (23) is engaged in this slot.

3. The bean oil different depth sampling device according to claim 1, characterized in that: The number of the sample storage plates (22) corresponds one-to-one with the number of the sampling slots (21), and the sample storage plates (22) are located below the sampling slots (21).

4. The soybean oil sampling device at different depths according to claim 1, characterized in that: The hanging plate (27) is located on the bottom surface of the adjusting plate (25).

5. The soybean oil sampling device at different depths according to claim 1, characterized in that: The push-pull plate (26) is slidably connected in the groove opened on the surface of the limiting plate (31), and one end of the push-pull plate (26) extends to the top of the limiting plate (31). Multiple magnetic suction plates (33) are evenly distributed on the surface of the limiting plate (31). One end of the magnetic suction rod (32) passes through the push-pull plate (26) and extends to the outside of the push-pull plate (26). The magnetic suction rod (32) is magnetically attracted to the magnetic suction plate (33). The guide rod (34) is slidably connected between two push-pull plates (26). Both ends of the guide rod (34) pass through the push-pull plate (26) in sequence and are installed in the groove opened on the surface of the limiting plate (31).

6. The bean oil different depth sampling device according to claim 1, characterized in that: A reset spring (35) is fitted on the surface of the magnetic rod (32). One end of the reset spring (35) is connected to the magnetic rod (32), and the other end of the reset spring (35) is installed inside the push-pull plate (26).

7. The bean oil different depth sampling device according to claim 1, characterized in that: Multiple magnetic plates (33) are distributed in two groups on the surface of the limiting plate (31), and each group of magnetic plates (33) corresponds to a different position of the push-pull plate (26).

Citation Information

Patent Citations

  • A soybean oil sampling device at different depths

    CN221056149U