Specimen packaging device for geological mineral exploration

By designing a specimen packaging device with a support structure storage bag and a vibration damping layer, the problem of easy damage to geological exploration samples during transportation was solved, and efficient and safe transportation of specimens was achieved.

CN223533912UActive Publication Date: 2025-11-11赵宇
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Patent Information

Application Number
CN202423242144.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-11
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Geological exploration samples are easily damaged by bumps, deformation and jolting during transportation, which can compromise their integrity and purity. Furthermore, transporting multiple samples increases the difficulty of the work and reduces efficiency.

Method used

A specimen packaging device for geological and mineral exploration was designed, which includes a storage bag with a supporting structure and a shock-absorbing layer to prevent the specimen from being squeezed, deformed, or shaken during transportation. The device also uses a linkage mechanism to stack and fix multiple boxes of specimens for transportation.

Benefits of technology

This effectively protected the integrity and quality of the specimens, reduced damage during transportation, and improved work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The specimen packaging device for geological mineral exploration comprises a box body, a vibration reduction layer and a storage layer, the vibration reduction layer is arranged in the box body, and the storage layer is arranged in the vibration reduction layer; the box body further comprises a shell a, universal wheels, a linkage mechanism and a handle. The damping layer further comprises a damping pad and a spring damper. The storage bag with the supporting structure is arranged, so that collision and damage of solid specimens are reduced, meanwhile, the situation that the structures of the specimens are damaged due to the fact that the storage bag is extruded to deform and extrudes non-solid specimens in the storage bag in the transportation process is prevented, and the quality of the specimens is guaranteed; a vibration reduction layer is arranged between the storage bag and the box body, so that the specimens are prevented from jolting and swinging in the transportation process, products in the storage bag are prevented from being damaged, and the integrity of the specimens is improved; and the linkage mechanism is arranged outside the box body, the packaging device can be stacked and fixed when the same batch of multi-box samples are transported, and the working efficiency of transporting and transferring the samples is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of specimen collection technology, and in particular relates to a specimen packaging device for geological and mineral exploration. Background Technology

[0002] In geological exploration operations, after geological samples are collected, they need to be placed in sample storage bags and properly preserved. It is also necessary to prevent the samples from being bumped or tipped over during transportation and transfer, so as not to affect the integrity and purity of the samples.

[0003] In the prior art, such as the sample storage device disclosed in Chinese Patent (CN218259524U) for geological exploration, belonging to the field of geological exploration, a sample storage device for geological exploration includes a storage box, a storage tank fixedly connected to the inner cavity of the storage box, a storage bucket fitted inside the inner cavity of the storage tank, a sampling bag fitted inside the inner cavity of the storage bucket, the sampling bag extending to the upper end of the storage bucket, a sealing ring fitted at the upper end of the storage bucket, the sealing ring being located above the sampling bag, the lower end of the sealing ring contacting the upper end of the storage tank, a magnetic block being provided inside the sealing ring, and a cover plate being rotatably connected to the upper end of the sealing ring. This allows for the isolation of samples from the storage bucket by storing them in the sampling bag during geological exploration sampling work, making the samples easier to remove and preventing contamination of the storage bucket. Even if the sampling bag is damaged, the storage bucket can be removed from the storage box for cleaning, ensuring the normal operation of the next sampling work and guaranteeing the accuracy of the exploration and research results.

[0004] This method has the following drawbacks: First, geological exploration samples typically include specimens in different forms such as rock cores, soil clods, mud, and ores. Some non-solid samples may deform when stored in the sampling bag due to the flexible outer shell of the storage bag, thus disrupting the layering of the samples. Second, the storage device may be subjected to bumps during transportation, causing the internal specimen bags to sway and damaging the products inside, reducing the integrity of the specimens. Third, during specimen collection operations, there may be a large number of specimens, resulting in the simultaneous transportation of many storage devices. Different specimen storage devices for the same batch of specimens need to be transported separately during the transfer process, increasing the difficulty of specimen transfer and reducing work efficiency.

[0005] Therefore, this paper provides a specimen packaging device for geological and mineral exploration. Utility Model Content

[0006] To address the aforementioned technical problems, this utility model discloses a specimen packaging device for geological and mineral exploration. The device includes a storage bag with a supporting structure, reducing impact damage to solid specimens while preventing the bag from being squeezed and deformed during transportation, thus protecting the specimen's structure and ensuring its quality. A vibration-damping layer is installed between the storage bag and the box to prevent the specimen from shaking and swaying during transportation, protecting the product inside the bag and improving specimen integrity. A linkage mechanism is installed outside the box, allowing the packaging device to be stacked and secured when transporting multiple boxes of samples in the same batch, improving the efficiency of sample transport and transfer.

[0007] To achieve the above-mentioned technical effects, this utility model provides a specimen packaging device for geological and mineral exploration, including a box body, a vibration damping layer, and a storage layer. The vibration damping layer is disposed inside the box body, and the storage layer is disposed inside the vibration damping layer. The box body also includes an outer shell a, casters, a linkage mechanism, and a handle. The casters are disposed at the bottom of the outer shell, the linkage mechanism is disposed at the bottom and top of the outer shell a, and the handle is disposed on the left side of the outer shell a. The vibration damping layer also includes a vibration damping pad and a spring vibration damper. The vibration damping pad is disposed between the box body and the storage layer, and the spring vibration damper is disposed inside the outer shell a. The storage layer also includes an outer shell b and a storage bag, with the storage bag disposed inside the outer shell b.

[0008] Preferably, the linkage mechanism further includes a limiting block and a limiting mechanism. The limiting block is respectively disposed on the left and right sides of the universal wheel, and the limiting mechanism is disposed above the outer shell a.

[0009] Preferably, the limiting mechanism further includes a limiting groove a, a limiting groove b, and a connecting rod. The limiting groove a is respectively disposed on both sides of the upper part of the outer shell a, aligned with the lower universal wheel. The limiting groove b is disposed between the limiting grooves a, and the connecting rod is disposed between the limiting grooves a on the left and right sides.

[0010] Preferably, the outer shell b further includes a magnetic base a and a fixing ring. The magnetic base a, which has magnetic properties, is disposed on the lower inner side of the outer shell b, and the fixing ring is disposed on the upper part of the outer shell b and is coaxially disposed with the magnetic base a.

[0011] Preferably, the storage bag also includes a cylindrical bag, an elastic cord, a label, and a magnetic base b. The elastic cord is positioned on top of the transparent plastic cylindrical bag, the label is positioned at the end of the elastic cord, and the magnetic base b is positioned below the cylindrical bag.

[0012] Preferably, the cylindrical bag has a nylon support frame inside.

[0013] Preferably, the magnetic base b further includes an iron outer shell and a magnet, with the magnet positioned below the iron outer shell.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0015] The device comprises a housing, a vibration-damping layer, and a storage layer. By placing specimens into storage bags within the storage layer, convenient packaging and transportation of geological and mineral exploration specimens can be achieved. The storage bags with supporting structures and the magnetic base b in the storage layer maintain the shape of the storage bags, preventing them from being squeezed and deformed during transportation, which could damage the non-solid specimens inside. At the same time, the soft cylindrical bags reduce the risk of impact damage to solid specimens, ensuring specimen quality. A vibration-damping layer is installed between the storage layer and the housing to prevent specimens from shaking and swaying during transportation, preventing damage to the products inside the storage bags and improving specimen integrity. A linkage mechanism is installed on the top of the outer shell a of the housing and on both sides of the casters, allowing the packaging device to be stacked and secured when transporting multiple boxes of samples in the same batch, improving the efficiency of sample transportation and transfer. Attached Figure Description

[0016] Figure 1 This is the isometric drawing of this utility model;

[0017] Figure 2 This is a front view of the present invention;

[0018] Figure 3 This is a left view of the present invention;

[0019] Figure 4 yes Figure 3 A sectional view of section a.

[0020] Figure 5 yes Figure 4 A partial schematic diagram of b in the middle;

[0021] Figure 6 yes Figure 3 A partial schematic diagram of section c;

[0022] The attached diagram lists the components represented by each number as follows:

[0023] 1. Outer shell a; 2. Casters; 3. Handle; 4. Vibration damping pad; 5. Spring vibration damper; 6. Outer shell b; 7. Storage bag; 8. Limiting block; 9. Limiting groove a; 10. Limiting groove b; 11. Connecting rod; 12. Magnetic base a; 13. Fixing ring; 14. Cylindrical bag; 15. Elastic cord; 16. Label; 17. Support frame; 18. Iron outer shell; 19. Magnet. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0025] like Figures 1 to 6 As shown, the prior art in this embodiment has the following problems: The inventors have found the following defects in the prior art: 1. Geological exploration samples usually include samples of different forms such as rock cores, soil blocks, mud, and ores. Some non-solid samples may deform when placed in the sampling bag, which may damage the layering of the sample; 2. The storage device may be bumped during transportation, causing the internal sample storage bag to sway, which may damage the product inside the storage bag and reduce the integrity of the sample; 3. In the sample collection operation, there may be a large number of samples, resulting in many storage devices being transported at the same time. Different sample storage devices of the same batch of samples need to be transported separately during the transfer process, which increases the difficulty of sample transfer and reduces work efficiency.

[0026] Therefore, the inventor provides a specimen packaging device for geological and mineral exploration, including a box, a vibration damping layer, and a storage layer. The vibration damping layer is disposed inside the box, and the storage layer is disposed inside the vibration damping layer. The box also includes an outer shell a1, casters 2, a linkage mechanism, and a handle 3. The casters 2 are disposed at the bottom of the outer shell a1, the linkage mechanism is disposed at the bottom and top of the outer shell a1, and the handle 3 is disposed on the left side of the outer shell a1. The vibration damping layer also includes a vibration damping pad 4 and a spring vibration damper 5. The vibration damping pad 4 is disposed between the box and the storage layer, and the spring vibration damper 5 is disposed on the inner side of the outer shell a1. The storage layer also includes an outer shell b6 and a storage bag 7, with the storage bag 7 disposed on the inner side of the outer shell b6.

[0027] Using the above scheme, after collecting specimens from geological and mineral exploration, the specimens are placed in the storage bag 7, and the elastic rope 15 is pulled to package the specimens. The packaged specimens are labeled on the label 16. The supporting frame 17 and magnetic base b in the storage bag 7 can maintain the shape of the storage bag 7, preventing the storage bag 7 from being squeezed and deformed during transportation, which could damage the structure of the specimens. At the same time, the soft cylindrical bag 14 reduces the impact damage to solid specimens, ensuring the quality of the specimens. Vibrations generated during transportation are absorbed by the vibration damping pad 4 and spring vibration damper 5, preventing the specimens from shaking and swaying during transportation, preventing damage to the products inside the storage bag 7, and improving the integrity of the specimens. The universal wheels 2 of different boxes are installed in conjunction with the linkage mechanism, allowing the packaging devices to be stacked and transported simultaneously, improving the efficiency of transporting and transferring samples.

[0028] Furthermore, the linkage mechanism also includes a limit block 8 and a limit mechanism. The limit block 8 is respectively set on the left and right sides of the universal wheel 2, and the limit mechanism is set on the upper part of the outer shell a1.

[0029] The limiting mechanism can fix the universal wheels 2 at the bottom of the box to the top of the next box, preventing the stacked devices from shaking.

[0030] Furthermore, the limiting mechanism also includes limiting groove a9, limiting groove b10, and connecting rod 11. The limiting groove a9 is respectively set on both sides of the position above the outer shell a1 aligned with the lower universal wheel 2. The limiting groove b10 is set between the limiting grooves a9. The connecting rod 11 is set between the limiting grooves a9 on the left and right sides.

[0031] Among them, the limiting groove a9 can lock the limiting blocks 8 on both sides of the universal wheel 2, and the limiting groove b10 can lock the two sides of the universal wheel 2. Both the limiting groove a9 and the limiting groove b10 can prevent the boxes from shaking when stacked and transported. The connecting rod 11 between the limiting grooves a9 can be used as a handle on top when the device is transported alone.

[0032] Furthermore, the outer casing b6 also includes a magnetic base a12 and a fixing ring 13. The magnetic base a12 with magnetism is disposed on the lower inner side of the outer casing b6, and the fixing ring 13 is disposed on the upper part of the outer casing b6 and is coaxially disposed with the magnetic base a12.

[0033] The magnetic base a12 can hold the magnetic base b below the storage bag 7 to fix the storage bag 7 in place. When the storage bag 7 is opened, the fixed ring 13 can be rolled up to make it easier to put the specimen into the storage bag 7.

[0034] Furthermore, the storage bag 7 also includes a cylindrical bag 14, an elastic cord 15, a label 16, and a magnetic base b. The elastic cord 15 is positioned above the transparent plastic cylindrical bag 14, the label 16 is positioned at the end of the elastic cord 15, and the magnetic base b is positioned below the cylindrical bag 14.

[0035] The cylindrical bag 14 can be closed by pulling the elastic cord 15. The batch information of the specimen can be marked on the label 16. The magnetic base fixes the cylindrical bag 14 to prevent it from shaking. After the specimen is taken out, the original condition of the specimen inside can be observed through the transparent cylindrical bag 14.

[0036] Furthermore, a nylon support frame 17 is provided inside the cylindrical bag 14;

[0037] The elastic nylon support frame 17 not only provides support for the cylindrical bag 14, but also reduces collision damage between the solid specimen and the cylindrical bag 14.

[0038] Furthermore, the magnetic base b also includes an iron outer shell 18 and a magnet 19, with the magnet 19 positioned below the iron outer shell 18;

[0039] The magnet 19 can fix the storage bag 7 to the magnetic base a12. The iron shell 18 encloses the magnet 19 and shields the upward magnetic field under the principle of Michelson-Morley law, preventing the magnet 19 from affecting the magnetic specimen inside the upper cylindrical bag 14.

[0040] In summary, the device includes a housing, a vibration-damping layer, and a storage layer. By placing the specimens into the storage bags 7 in the storage layer, convenient packaging and transportation of geological and mineral exploration specimens can be achieved. The storage bags 7 with supporting structures and the magnetic base b in the storage layer can maintain the shape of the storage bags 7, preventing the storage bags 7 from being squeezed and deformed during transportation, which could damage the structure of the specimens. At the same time, the soft cylindrical bag 14 reduces the impact damage to solid specimens, ensuring the quality of the specimens. A vibration-damping layer is set between the storage layer and the housing to prevent the specimens from shaking and swaying during transportation, preventing damage to the products inside the storage bags 7 and improving the integrity of the specimens. A linkage mechanism is set on the top of the outer shell a1 of the housing and on both sides of the casters 2, which can stack and fix the packaging device when transporting multiple boxes of samples in the same batch, improving the efficiency of transporting and transferring samples.

[0041] The working principle of this utility model:

[0042] After collecting specimens from geological and mineral exploration, the specimens are placed in the storage bag 7, and the elastic rope 15 is pulled to pack the specimens. The packaged specimens are labeled on the label 16. The support frame 17 and magnetic base b in the storage bag 7 can maintain the shape of the storage bag 7 and prevent the storage bag 7 from being squeezed and deformed during transportation, which could cause damage to the structure of the specimens. At the same time, the soft cylindrical bag 14 will reduce the impact damage to solid specimens and ensure the quality of the specimens.

[0043] Vibrations generated during transportation are absorbed by the damping pads 4 and spring dampers 5, preventing the specimen from shaking and swaying during transportation, preventing damage to the products inside the storage bag 7, and improving the integrity of the specimen.

[0044] When multiple devices are transported at the same time, the limiting mechanism can fix the universal wheel 2 at the bottom of the box to the top of the next box to prevent the stacked devices from shaking. The limiting groove a9 can lock the limiting block 8 on both sides of the universal wheel 2, and the limiting groove b10 can lock the two sides of the universal wheel 2, so that the packaging devices can be stacked and transported at the same time, improving the efficiency of transporting and transferring samples.

[0045] After the transport is completed, lift the elastic rope 15 and the storage bag 7 according to the information on the label 16. The specimen can be taken out together with the storage bag 7. After the specimen is transferred, replace the blank label 16 and put the storage bag 7 on the magnetic base b. Open the bag opening and wrap the bag opening back onto the fixing ring 13 for the next use of packaging specimens.

[0046] This concludes the description of the working principle of the device.

[0047] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0048] 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 specimen packaging device for geological and mineral exploration, comprising a box body, a vibration damping layer, and a storage layer, wherein the vibration damping layer is disposed inside the box body, and the storage layer is disposed inside the vibration damping layer, characterized in that: The box also includes an outer shell a (1), casters (2), a linkage mechanism, and a handle (3). The casters (2) are located at the bottom of the outer shell, the linkage mechanism is located at the bottom and top of the outer shell a (1), and the handle (3) is located on the left side of the outer shell a (1). The vibration damping layer also includes a vibration damping pad (4) and a spring vibration damper (5). The vibration damping pad (4) is located between the box and the storage layer, and the spring vibration damper (5) is located inside the outer shell a (1). The storage layer also includes an outer shell b (6) and a storage bag (7). The storage bag (7) is located inside the outer shell b (6).

2. The specimen packaging device for geological and mineral exploration according to claim 1, characterized in that: The linkage mechanism also includes a limiting block (8) and a limiting mechanism. The limiting block (8) is respectively set on the left and right sides of the universal wheel (2), and the limiting mechanism is set on the upper part of the outer shell a (1).

3. A specimen packaging device for geological and mineral exploration according to claim 2, characterized in that: The limiting mechanism also includes limiting groove a (9), limiting groove b (10), and connecting rod (11). The limiting groove a (9) is respectively set on both sides of the upper part of the outer shell a (1) aligned with the lower universal wheel (2). The limiting groove b (10) is set between the limiting grooves a (9). The connecting rod (11) is set between the limiting grooves a (9) on the left and right sides.

4. A specimen packaging device for geological and mineral exploration according to claim 1, characterized in that: The outer shell b (6) also includes a magnetic base a (12) and a fixing ring (13). The magnetic base a (12) is located on the lower inner side of the outer shell b (6), and the fixing ring (13) is located on the upper part of the outer shell b (6) and is coaxial with the magnetic base a (12).

5. A specimen packaging device for geological and mineral exploration according to claim 1, characterized in that: The storage bag (7) also includes a cylindrical bag (14), an elastic cord (15), a label (16), and a magnetic base b. The elastic cord (15) is placed on top of the transparent plastic cylindrical bag (14), the label (16) is placed at the end of the elastic cord (15), and the magnetic base b is placed below the cylindrical bag (14).

6. A specimen packaging device for geological and mineral exploration according to claim 5, characterized in that: The cylindrical bag (14) is provided with a nylon support frame (17) inside.

7. A specimen packaging device for geological and mineral exploration according to claim 5, characterized in that: The magnetic base b also includes an iron shell (18) and a magnet (19), with the magnet (19) located below the iron shell (18).

Citation Information

Patent Citations

  • Sample storage device for geological exploration

    CN218259524U