Rock ore sample storage box
By designing clamping and locking components for the rock and ore sample preservation box, and utilizing the combination of threaded rods and airbags, the problem of rock and ore shaking during transportation was solved, achieving sample fixation and buffering, and ensuring sample integrity and accuracy of test results.
Patent Information
- Application Number
- CN202520165714.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-24
AI Technical Summary
The lack of specialized fixing devices for existing rock and mineral samples after sampling makes them prone to shaking and impact during loading, unloading, and transportation, leading to rock fracture or surface detachment, which affects the accuracy of test results and work efficiency.
A rock and mineral sample preservation box was designed, comprising a box body, a clamping assembly, and a locking assembly. Through the cooperation of a threaded rod, an air bladder, and an air injection tube, the rock and mineral samples are fixed and buffered to prevent shaking.
This effectively avoids damage to rocks and ores during transportation, ensures sample integrity, and improves the accuracy of test results and work efficiency.
Smart Images

Figure CN223658736U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to rock and mineral sample storage box production technical field, specifically to a rock and mineral sample storage box. BACKGROUND
[0002] As a geological technician, rock sampling is an essential work in mineral exploration. In rock and mineral testing, the remaining samples of the sampled rock samples need to be stored for a long time after testing for later detection. Whether the samples can be stored intact or not is related to the accuracy of the later detection results.
[0003] Currently, there is no special device for storing rock after rock sampling. Most of them are simply placed in a rock box with a baffle to form a cavity, which causes the rock and mineral to be poorly fixed. Since the sampling environment is in the wild, the samples need to be loaded and unloaded and transported to the laboratory for a long distance. It is difficult to store the samples completely during loading, unloading and transportation, which causes the rock to shake and hit the inner wall of the storage box, resulting in rock breakage or surface peeling. Therefore, the data is prone to deviation during later detection, which seriously affects the accuracy of the experimental results, reduces the work efficiency and work quality of the staff, and causes great trouble to the staff. SUMMARY
[0004] This section aims to outline some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract of the specification and the utility model name to avoid obscuring the purpose of this section, the abstract of the specification and the utility model name. Such simplifications or omissions cannot be used to limit the scope of the utility model.
[0005] In view of the above and / or the problems existing in the prior art, the utility model is proposed.
[0006] Therefore, the purpose of the utility model is to provide a rock and mineral sample storage box. When using the device, first place the rock and mineral sample in the storage cavity, then push the push plate to compress the spring, so that the lock head is separated from the lock groove, then rotate the adjusting knob to drive the threaded rod to rotate and drive the connecting column to move outward, so that the clamping plate is close to the rock and mineral, and gas can be injected into the gas injection pipe, so that the air bag is inflated and adheres to the rock and mineral. The rock and mineral is clamped and fixed, and the air bag can play a certain buffering role. Finally, close the top cover to wrap and clamp the rock and mineral, so as to avoid damage caused by shaking of the rock and mineral.
[0007] To solve the above technical problems, according to one aspect of the utility model, the utility model provides the following technical scheme:
[0008] A rock and mineral sample storage box comprises:
[0009] The box body assembly comprises a box body, a storage cavity formed on the box body, and a top cover hinged to the top end of the box body.
[0010] The clamping assembly comprises a mounting groove formed on the inner wall of the storage cavity, a threaded rod rotatably mounted on the mounting groove, an adjusting knob fixed to the outer end of the threaded rod, a guide rod fixed to the inner wall of the mounting groove, a connecting column sleeved on the guide rod and engaged with the threaded rod, a clamping plate fixed to the connecting column, an air bag fixed to the clamping plate, an air injection pipe connected to the air bag, and a plug matched with the air injection pipe.
[0011] The locking assembly comprises a movable slot formed on the outer wall of the box body, a spring fixed to the inner wall of the movable slot, a dial plate inserted into the movable slot and fixed to the spring, a lock head fixed to the dial plate, and lock grooves evenly formed on the adjusting knob and matched with the lock head.
[0012] As a preferred scheme of the rock and mineral sample storage box, a limiting rod is fixed to the inner wall of the movable slot, and the dial plate is sleeved on the limiting rod.
[0013] As a preferred scheme of the rock and mineral sample storage box, an elastic block is fixed to the inner wall of the top cover.
[0014] As a preferred scheme of the rock and mineral sample storage box, a soft strip pad is fixed to the inner wall of the storage cavity at uniform distances.
[0015] As a preferred scheme of the rock and mineral sample storage box, an anti-skid groove is formed on the outer wall of the adjusting knob.
[0016] Compared with the prior art, the device has the beneficial effects that when the device is used, the rock and mineral sample is first placed in the storage cavity, then the dial plate is pushed away to compress the spring, the lock head is separated from the lock groove, the adjusting knob is rotated to drive the threaded rod to rotate and drive the connecting column to move outward, the clamping plate is close to the rock and mineral, the air injection pipe can be injected with air, the air bag is inflated to be close to the rock and mineral, the rock and mineral is clamped and fixed, the air bag can play a certain buffering role, and finally the top cover is closed to wrap and clamp the rock and mineral, so that the rock and mineral is prevented from being damaged due to shaking. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the present application will be described in detail below with reference to the drawings and detailed embodiments. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings. Among them:
[0018] Figure 1 It is a whole structure schematic view of the rock and mineral sample storage box of the present application.
[0019] Figure 2 It is a structure sectional view of the clamping assembly of the rock and mineral sample storage box of the present application.
[0020] Figure 3 It is a whole structure schematic view of the rock and mineral sample storage box of the present application. Figure 1 It is a local enlarged view of A. DETAILED DESCRIPTION
[0021] In order to make the above-mentioned purposes, features and advantages of the present application more apparent, obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings.
[0022] Secondly, the present application is described in detail in combination with the schematic view. In order to facilitate the description, the sectional view of the device structure will be partially enlarged without the general proportion, and the schematic view is only an example, which should not limit the scope of protection of the present application. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in the actual manufacture.
[0023] In order to make the purposes, technical schemes and advantages of the present application more clear, the embodiments of the present application will be further described in detail below with reference to the drawings.
[0024] The rock and mineral sample storage box provided by the present application, when using the device, first places the rock and mineral sample in the storage cavity, then pushes away the push plate to press the spring, so that the lock head is separated from the lock groove, then rotates the adjusting knob to drive the threaded rod to rotate and drive the connecting column to move outward, so that the clamping plate is close to the rock and mineral, and the gas injection pipe can be injected, so that the air bag is inflated and adhered to the rock and mineral, so that the rock and mineral is clamped and fixed, and the air bag can play a certain buffering role. Finally, the top cover is closed, so that the rock and mineral is wrapped and clamped, avoiding damage caused by shaking of the rock and mineral.
[0025] Figures 1-3 It is a whole structure schematic view of one embodiment of the rock and mineral sample storage box of the present application, please refer to Figures 1-3The rock and mineral sample storage box comprises a main body part, a clamping assembly 200 and a locking assembly 300.
[0026] The box body assembly 100 comprises a storage box body 110, a storage cavity 120 provided on the storage box body 110, and a top cover 130 hingedly connected to the top end of the storage box body 110. An elastic block 140 is fixed to the inner wall of the top cover 130. Soft strip pads 150 are fixed to the inner wall bottom of the storage cavity 120 at uniform distances.
[0027] The clamping assembly 200 comprises a mounting groove 210 provided on the inner wall of the storage cavity 120, a threaded rod 220 rotatably mounted in the mounting groove 210, an adjusting knob 230 fixed to the outer end of the threaded rod 220, a guide rod 240 fixed to the inner wall of the mounting groove 210, a connecting column 250 sleeved on the guide rod 240 and engaged with the threaded rod 220, a clamping plate 260 fixed to the connecting column 250, an air bag 270 fixed to the clamping plate 260, an air injection pipe 280 connected to the air bag 270, and a plug 290 matched with the air injection pipe 280. Anti-skid grooves are provided on the outer wall of the adjusting knob 230.
[0028] The locking assembly 300 comprises a movable slot 310 provided on the outer wall of the storage box body 110, a spring 320 fixed to the inner wall of the movable slot 310, a push plate 330 inserted into the movable slot 310 and fixed to the spring 320, a lock head 340 fixed to the push plate 330, and lock grooves 350 uniformly provided on the adjusting knob 230 and matched with the lock head 340. A limiting rod 360 is fixed to the inner wall of the movable slot 310, and the push plate 330 is sleeved on the limiting rod 360.
[0029] In combination Figures 1-3 The rock and mineral sample storage box is used as follows: when the device is used, the rock and mineral sample is placed in the storage cavity 120, the push plate 330 is pushed away to compress the spring 320, the lock head 340 is separated from the lock groove 350, the adjusting knob 230 is rotated to drive the threaded rod 220 to rotate and drive the connecting column 250 to move outward, the clamping plate 260 is close to the rock and mineral, air can be injected into the air injection pipe 280, the air bag 270 is inflated to adhere to the rock and mineral, the rock and mineral is clamped and fixed, the air bag 270 can play a certain buffering role, and finally the top cover 130 is closed to wrap and clamp the rock and mineral, so that the rock and mineral is not damaged due to shaking.
[0030] Although the utility model has been described above with reference to the embodiments, various modifications can be made thereto, and equivalent replacements can be made to the components thereof, without departing from the scope of the utility model. In particular, as long as there is no structural conflict, each feature in the embodiments disclosed by the utility model can be combined with each other in any manner, and the combinations are not exhaustively described in the specification merely for the purpose of omitting the length and saving the resources. Therefore, the utility model is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A rock ore sample preservation box, characterized in that, The application relates to a box body assembly (100) and a locking assembly (300). The box body assembly (100) comprises a box body (110), a storage cavity (120) arranged on the box body (110), and a top cover (130) hinged to the top end of the box body (110). The locking assembly (300) comprises a movable slot (310) arranged on the outer wall of the box body (110), a spring (320) fixed to the inner wall of the movable slot (310), a push plate (330) inserted into the movable slot (310) and fixed to the spring (320), a lock head (340) fixed to the push plate (330), and lock grooves (350) evenly arranged on the outer wall of the adjusting knob (230) and matched with the lock head (340). A limiting rod (360) is fixed to the inner wall of the movable slot (310), and the push plate (330) is sleeved on the limiting rod (360).
2. The rock sample storage box according to claim 1, characterized in that, An elastic block (140) is fixed to the inner wall of the top cover (130).
3. The rock sample storage box according to claim 1, characterized in that, Soft strip pads (150) are fixed to the inner wall of the storage cavity (120) at uniform distances.
4. The rock sample storage box according to claim 1, characterized in that, Anti-skid grooves are arranged on the outer wall of the adjusting knob (230).
5. The rock sample storage box according to claim 1, characterized in that,