Sampling device

By setting multiple sampling ports and baffles on the sampling device, the sampling bucket can be rotated to complete the sampling of intermediate and bottom particulate materials in one go, which solves the complex operation problem of needing to change the penetration depth in the prior art and simplifies the sampling process.

CN223664314UActive Publication Date: 2025-12-12HUZHOU WANMA POLYMER MATERIAL CO LTD
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Patent Information

Application Number
CN202423094247.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-12-12
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing sampling devices require changing the depth of penetration into the chamber to complete the sampling of intermediate and bottom particles in two stages, which is complicated to operate.

Method used

Design a sampling device that sets multiple sampling ports and baffles on the sampling tube and sampling hopper, and uses the rotating sampling hopper to connect the different sampling ports, so as to complete the sampling of intermediate and bottom particulate materials in one go.

Benefits of technology

Without changing the insertion depth into the chamber, sampling of intermediate and bottom particles can be completed in one go by rotating the sampling hopper, simplifying the operation process.

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Abstract

The utility model discloses a sampling device, which belongs to the field of sampling detection, and comprises a sampling tube, a first sampling port and a second sampling port are arranged on the sampling tube; the sampling hopper is rotationally sleeved with the sampling pipe, a first sampling opening and a second sampling opening are formed in the sampling hopper, a first baffle and a second baffle are connected in the sampling hopper in a spaced mode, and a first cavity communicated with the first sampling opening is formed between the first baffle and the second baffle; a second cavity communicated with the sampling port II is formed between the second baffle and the end part of the other end of the sampling hopper; and when the sampling hopper is rotated, the first sampling opening is communicated with the first sampling opening, or the second sampling opening is communicated with the second sampling opening. The utility model has the technical effect that the sampling of the middle particle material and the bottom particle material of the box body can be completed at one time without changing the depth of the box body.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sampling detection especially relates to a sampling device. BACKGROUND

[0002] Granular material is a kind of granular solid material, including semi-conductive shielding material, popcorn granular material etc., granular material generally adopts 500-600kg box packaging.

[0003] In the production and use process, the middle granular material and the bottom granular material of the box need to be sampled and detected, but the related sampling device needs to change the depth of being inserted into the box to complete the sampling of the middle granular material and the bottom granular material of the box twice, which is easy to lead to complex sampling operation. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a sampling device, which can complete the sampling of the middle granular material and the bottom granular material of the box once without changing the depth of being inserted into the box.

[0005] TECHNICAL SCHEME

[0006] A sampling device, comprising:

[0007] A sampling pipe, wherein a first sampling port and a second sampling port are arranged on the sampling pipe;

[0008] A sampling bucket rotatably connected to the sampling pipe, wherein a first sampling port and a second sampling port are arranged on the sampling bucket, a first baffle and a second baffle are connected to the sampling bucket at intervals, a first cavity in communication with the first sampling port is formed between the first baffle and the second baffle, and a second cavity in communication with the second sampling port is formed between the second baffle and the end of the other end of the sampling bucket;

[0009] When the sampling bucket is rotated, the first sampling port is in communication with the first sampling port, or the second sampling port is in communication with the second sampling port.

[0010] Optionally, further comprising:

[0011] A first handle assembly connected to one end outside of the sampling pipe;

[0012] A second handle assembly connected to one end outside of the sampling bucket.

[0013] Optionally,

[0014] The first handle assembly comprises four first handle units connected to one end outside of the sampling pipe in the circumferential direction, and a first spacing is formed between adjacent first handle units.

[0015] The second handle assembly comprises four handle units one connected to one end of the sampling bucket in a circumferential direction, and a spacing one is formed between adjacent handle units one.

[0016] The first sampling port and the second sampling port are located adjacent to the first spacing, and the sampling port one and the sampling port two are located opposite to the spacing one, or the first sampling port and the second sampling port are located opposite to the first spacing, and the sampling port one and the sampling port two are located adjacent to the spacing one.

[0017] Optionally, the first spacing between adjacent first handle units is equal, and the spacing one between adjacent handle units one is equal.

[0018] Optionally, a tapered portion is further included, and a large-diameter end of the tapered portion is connected to the other end of the sampling tube.

[0019] Optionally, a round corner is further included at a small-diameter end of the tapered portion.

[0020] Optionally, a first cavity is further included in the sampling tube, the first cavity is in communication with the first sampling port and the second sampling port, and the sampling bucket is located in the first cavity.

[0021] Optionally, a second cavity is further included in the sampling bucket, and the second cavity is configured as the first cavity and the second cavity.

[0022] Beneficial effects: when the middle and bottom granular materials in the box need to be sampled, the sampling bucket only needs to be rotated, the depth of the sampling device penetrating into the box does not need to be changed, and the sampling is completed at one time, so that the sampling operation is simple. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 FIG. 1 is a structural schematic diagram of a sampling tube of an embodiment 1 of the present application;

[0024] Figure 2 FIG. 2 is a structural schematic diagram of a sampling tube of an embodiment 1 of the present application;

[0025] Figure 3 FIG. 3 is a structural schematic diagram of a sampling bucket of an embodiment 1 of the present application;

[0026] Figure 4 FIG. 4 is a structural schematic diagram of a sampling bucket of an embodiment 1 of the present application;

[0027] In the figure: 1, sampling tube; 11, first sampling port; 12, second sampling port; 13, tapered portion; 14, round corner; 15, first cavity; 2, sampling bucket; 21, sampling port one; 22, sampling port two; 23, first baffle; 24, second baffle; 25, second cavity; 251, first cavity; 252, second cavity; 3, first handle assembly; 31, first handle body; 32, second handle body; 33, third handle body; 34, fourth handle body; 35, first spacing; 4, second handle assembly; 41, handle body one; 42, handle body two; 43, handle body three; 44, handle body four; 45, spacing one. DETAILED DESCRIPTION

[0028] In order to make the technical scheme of the utility model more clear, the utility model will be further described in detail below in combination with the drawings and specific embodiments.

[0029] Embodiment 1

[0030] As Figures 1-4 , the embodiment provides a sampling device, which comprises a sampling tube 1, the sampling tube 1 is provided with a first sampling port 11 and a second sampling port 12; a sampling bucket 2 is rotatably sleeved in the sampling tube 1, the sampling bucket 2 is provided with a sampling port one 21 and a sampling port two 22, the sampling bucket 2 is internally connected with a first baffle 23 and a second baffle 24 at intervals, a first cavity 251 is formed between the first baffle 23 and the second baffle 24 and is communicated with the sampling port one 21, a second cavity 252 is formed between the second baffle 24 and the end of the other end of the sampling bucket 2 and is communicated with the sampling port two 22; wherein, when the sampling bucket 2 is rotated, the first sampling port 11 and the sampling port one 21 are communicated, or the second sampling port 12 and the sampling port two 22 are communicated.

[0031] Specifically, when only the middle granular material in the box needs to be sampled, the sampling tube 1 and the sampling bucket 2 are first inserted into the box, then the sampling bucket 2 is rotated, so that the first sampling port 11 and the sampling port one 21 are communicated, then the sampling tube 1 and the sampling bucket 2 are shaken, so that the middle granular material enters the first cavity 251 through the first sampling port 11 and the sampling port one 21 in turn, then the sampling bucket 2 is rotated, so that the first sampling port 11 and the sampling port one 21 are not communicated, finally the sampling tube 1 and the sampling bucket 2 are pulled out, so that the sampling is completed, and it needs to be noted that the second sampling port 12 and the sampling port two 22 are not communicated at all in the sampling process;

[0032] When only the bottom particulate material of the box needs to be sampled, first insert the sampling tube 1 and the sampling hopper 2 into the box, then rotate the sampling hopper 2 to connect the second sampling port 12 and the second sampling port 22. Next, shake the sampling tube 1 and the sampling hopper 2 so that the bottom particulate material enters the second cavity 252 through the second sampling port 12 and the second sampling port 22 in sequence. Then rotate the sampling hopper 2 to disconnect the second sampling port 12 and the second sampling port 22. Finally, pull out the sampling tube 1 and the sampling hopper 2 to complete the sampling. It should be noted that during this sampling process, the first sampling port 11 and the first sampling port 21 are never connected.

[0033] When sampling the middle and bottom granular materials of the box, first insert the sampling tube 1 and sampling hopper 2 into the box, then rotate the sampling hopper 2 to connect the first sampling port 11 and sampling port 21. Next, shake the sampling tube 1 and sampling hopper 2 so that the middle granular materials enter the first cavity 251 through the first sampling port 11 and sampling port 21 in sequence. Then rotate the sampling hopper 2 to connect the second sampling port 12 and sampling port 22. Next, shake the sampling tube 1 and sampling hopper 2 so that the bottom granular materials enter the second cavity 252 through the second sampling port 12 and sampling port 22 in sequence. Finally, pull out the sampling tube 1 and sampling hopper 2 to complete the sampling. Therefore, when sampling the middle and bottom granular materials of the box, only the sampling hopper 2 needs to be rotated. There is no need to change the depth of the sampling device inserted into the box in this embodiment, and the sampling is completed in one go, which makes the sampling operation simple.

[0034] In this embodiment, since the first sampling port 11 and sampling port 21 are connected when the sampling hopper 2 is rotated, or the second sampling port 12 and sampling port 22 are connected, in other words, no matter how the sampling hopper 2 is rotated, the first sampling port 11 and sampling port 21, and the second sampling port 12 and sampling port 22, will not be connected at the same time. This makes it possible for the sampling device of this embodiment to have three sampling methods: sampling only the middle particulate material of the box, sampling only the bottom particulate material of the box, and sampling both the middle particulate material and the bottom particulate material of the box at the same time.

[0035] Furthermore, such as Figures 1-4 It also includes: a first handle assembly 3 connected to one end of the sampling tube 1; and a second handle assembly 4 connected to one end of the sampling hopper 2. Specifically, the first handle assembly 3 facilitates holding the sampling tube 1, thereby facilitating the pulling of the sampling tube 1 inside the box; the second handle assembly 4 facilitates holding the sampling hopper 2, thereby facilitating the rotation of the sampling hopper 2.

[0036] Furthermore, such as Figure 2 and Figure 4, the first handle assembly 3 comprises four first handle units connected to the outer end of the sampling tube 1 along the circumference, and the first spacing 35 is formed between adjacent first handle units; the second handle assembly 4 comprises four handle units one connected to the outer end of the sampling bucket 2 along the circumference, and the spacing one 45 is formed between adjacent handle units one; wherein the first sampling port 11 and the second sampling port 12 are located in the adjacent first spacing 35 respectively, and the sampling port one 21 and the sampling port two 22 are located in the opposite spacing one 45 respectively, or the first sampling port 11 and the second sampling port 12 are located in the opposite first spacing 35 respectively, and the sampling port one 21 and the sampling port two 22 are located in the adjacent spacing one 45 respectively.

[0037] Specifically, the four first handle units and the four handle units one also have positioning effect, in a specific embodiment of the embodiment, the four first handle units are respectively configured as the first handle body 31, the second handle body 32, the third handle body 33 and the fourth handle body 34, the four handle units one are respectively configured as the handle body one 41, the handle body two 42, the handle body three 43 and the handle body four 44, and the first sampling port 11 is located between the first handle body 31 and the fourth handle body 34, the second sampling port 12 is located between the second handle body 32 and the third handle body 33, the sampling port one 21 is located between the handle body one 41 and the handle body four 44, and the sampling port two 22 is located between the handle body one 41 and the handle body two 42.

[0038] When the middle granular material of the box body needs to be sampled, the sampling bucket 2 is rotated so that the first handle body 31 and the handle body one 41 coincide, and when the bottom granular material of the box body needs to be sampled, the sampling bucket 2 is rotated so that the second handle body 32 and the handle body one 41 coincide.

[0039] Further, as Figure 2 and Figure 4 , the first spacing 35 between adjacent first handle units is equal, and the spacing one 45 between adjacent handle units one is equal. Specifically, the equal first spacing 35 facilitates the uniformity of the distribution of the four first handle units; the equal spacing one 45 facilitates the uniformity of the distribution of the four handle units one.

[0040] Further, as Figure 1 , it further comprises a tapered portion 13, and the large diameter end of the tapered portion 13 is connected with the other end of the sampling tube 1. Specifically, the tapered portion 13 facilitates the sampling tube 1 to be less resistant when penetrating into the box body, thereby facilitating the sampling tube 1 to smoothly penetrate into the box body.

[0041] Further, as Figure 1Further, a fillet 14 is arranged at the small-diameter end of the tapered portion 13.

[0042] Further, the sampling tube 1 is provided with a first cavity 15 arranged in the sampling tube 1. Figure 2 Further, the sampling tube 1 is provided with a first cavity 15 arranged in the sampling tube 1.

[0043] Further, the sampling tube 1 is provided with a first cavity 15 arranged in the sampling tube 1. Figure 3 Further, the sampling tube 1 is provided with a first cavity 15 arranged in the sampling tube 1.

[0044] The above embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the present application. It should be pointed out that, for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. A sampling device, characterized in that, The utility model relates to a sampling device, including: a sampling tube (1) provided with a first sampling port (11) and a second sampling port (12); a sampling bucket (2) rotatably sleeved in the sampling tube (1), the sampling bucket (2) is provided with a sampling port one (21) and a sampling port two (22), the sampling bucket (2) is spaced apartly connected with a first baffle (23) and a second baffle (24), the first baffle (23) and the second baffle (24) form a first cavity (251) in communication with the sampling port one (21), the second baffle (24) and the end of the other end of the sampling bucket (2) form a second cavity (252) in communication with the sampling port two (22); wherein, when the sampling bucket (2) is rotated, the first sampling port (11) and the sampling port one (21) are communicated, or the second sampling port (12) and the sampling port two (22) are communicated.

2. A sampling device according to claim 1, wherein, Further including: a first handle assembly (3) connected to one end outside of the sampling tube (1); a second handle assembly (4) connected to one end outside of the sampling bucket (2).

3. The sampling device according to claim 2, wherein the first handle assembly (3) includes four first handle units each connected to one end outside of the sampling tube (1) in a circumferential direction, and a first spacing (35) is formed between adjacent first handle units; the second handle assembly (4) includes four handle units one each connected to one end outside of the sampling bucket (2) in a circumferential direction, and a spacing one (45) is formed between adjacent handle units one; wherein the first sampling port (11) and the second sampling port (12) are respectively located at adjacent first spacings (35), and the sampling port one (21) and the sampling port two (22) are respectively located at opposite spacings one (45), or the first sampling port (11) and the second sampling port (12) are respectively located at opposite first spacings (35), and the sampling port one (21) and the sampling port two (22) are respectively located at adjacent spacings one (45).

4. A sampling device according to claim 3, wherein The first spacings (35) between adjacent first handle units are equal, and the spacings one (45) between adjacent handle units one are equal.

5. A sampling device according to any one of claims 1 to 4, wherein, Further including a tapered portion (13), a large-diameter end of the tapered portion (13) is connected to the other end of the sampling tube (1).

6. A sampling device according to claim 5, wherein, Further including a round corner (14) provided at a small-diameter end of the tapered portion (13).

7. A sampling device according to any one of claims 1 to 4, wherein Further including a first cavity (15) provided in the sampling tube (1), the first cavity (15) is in communication with the first sampling port (11) and the second sampling port (12), and the sampling bucket (2) is rotatably located in the first cavity (15).

8. A sampling device according to any one of claims 1 to 4, wherein, Further including a second cavity (25) provided in the sampling bucket (2), the second cavity (25) is configured as the first cavity (251) and the second cavity (252).