Water source sample collection and storage device
By designing the fixing components and lifting structure inside the box, combined with shock-absorbing plates and dampers, the problems of sample bottle shaking and specification adaptability during transportation were solved, realizing safe and stable storage and convenient retrieval of samples, and improving the accuracy of water source sample monitoring.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGKE ASMAI (JIANGSU) INSPECTION & TESTING CO LTD
- Filing Date
- 2025-07-21
- Publication Date
- 2026-06-23
Smart Images

Figure CN224393319U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water source collection and storage technology, and in particular to a water source sample collection and storage device. Background Technology
[0002] As the source of drinking water, industrial water, and ecological water, the water quality of water sources directly affects public health, industrial production safety, and ecosystem stability. With rapid socio-economic development and rising living standards, the level of attention paid to water source quality has reached unprecedented heights. Accurate monitoring of water source quality, timely detection of potential pollution problems, and implementation of effective countermeasures have become crucial links in ensuring the sustainable use of water resources. In water source quality monitoring, sample collection and storage are fundamental to obtaining accurate data.
[0003] In existing technologies, some devices separate sample bottles using simple partitions. However, the sample bottles are prone to shaking and collisions during transportation, which can lead to sample leakage or damage. Furthermore, during sample storage, it is difficult to accommodate the storage needs of sample bottles of different sizes, affecting the representativeness of the samples and the accuracy of monitoring. Utility Model Content
[0004] The purpose of this invention is to solve the problems of unstable sample bottle fixation, poor shock absorption, and inconvenience in picking up and putting down samples in the existing technology, and to propose a water source sample collection and storage device.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a water source sample collection and storage device, comprising a box, a storage frame and a box cover.
[0006] A shock-absorbing plate is fixedly connected to the inner bottom wall of the box, and a storage frame is fixedly connected to the top of the shock-absorbing plate. The box cover is hinged to the upper surface of the box, and the box and the box cover are interlocked by a snap-fit device. Lifting structures are provided on both inner walls of the box, and the lifting structures are threadedly connected to the outer surface of the storage frame. The storage frame contains a collection bottle.
[0007] The storage frame includes a frame body, an inner cavity, and a fixing component. The frame body is fixedly connected to the top of the shock-absorbing plate. The inner cavity is slidably engaged with the inner wall of the frame body. The fixing component is slidably connected to the inner wall of the inner cavity.
[0008] Furthermore, the fixing component includes a first semi-circular block and a second semi-circular block, which are symmetrically distributed. A sliding groove is provided on one side of the inner wall of the inner cavity. The first and second semi-circular blocks are slidably connected to the sliding groove. A fixing hook is fixedly connected to one end of the first and second semi-circular blocks.
[0009] Furthermore, the outer surface of the frame is provided with connecting holes at equal intervals, and the fixing hook engages with the connecting holes.
[0010] Furthermore, the damping plate includes a damper fixedly connected to the bottom wall of the housing, the dampers being equidistantly distributed on the bottom wall of the housing, and a placement plate fixedly connected to the top of the damper, the placement plate being slidably connected to the inner wall of the housing.
[0011] Furthermore, the lifting structure includes a small motor fixedly connected to the bottom wall of the box, a lead screw fixedly connected to the output end of the small motor, a moving block threadedly connected to the outer surface of the lead screw, the moving block fixedly connected to the side of the storage frame, and a connecting block rotatably connected to the end of the lead screw away from the small motor, the connecting block being fixedly connected to the top of the box.
[0012] Furthermore, heat dissipation plates are provided at the bottom of both sides of the box, and handles are fixedly connected to the top of both sides of the box.
[0013] Furthermore, a support frame is fixedly connected to the bottom of the box.
[0014] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0015] 1. In this utility model, by setting a fixing component, and utilizing the sliding adjustment of the first and second semi-circular blocks and the cooperation between the fixing hook and the connecting hole, collection bottles of different specifications can be firmly fixed, effectively preventing the collection bottles from shaking and colliding during transportation, ensuring the safety of the samples, and enhancing the versatility of the device.
[0016] 2. In this utility model, the lifting structure enables the storage frame to be raised and lowered. A small motor drives the lead screw to rotate, thereby moving the storage frame up and down to facilitate the picking and placing of collection bottles, further improving the practicality and reliability of the device and providing strong support for the collection and storage of water source samples. At the same time, the damper of the shock-absorbing plate can play a good role in shock absorption and buffering, reducing the impact of vibration on the samples during transportation. Attached Figure Description
[0017] Figure 1 This utility model provides a three-dimensional structural schematic diagram of a water source sample collection and storage device;
[0018] Figure 2 This utility model provides a schematic diagram of the structure of the storage frame in a water source sample collection and storage device;
[0019] Figure 3 This invention provides a schematic diagram of the internal cavity structure of a water source sample collection and storage device;
[0020] Figure 4This utility model provides a cross-sectional structural diagram of a water source sample collection and storage device;
[0021] Figure 5 This is a schematic diagram of the cross-section of the box in the water source sample collection and storage device of this utility model.
[0022] Legend:
[0023] 1. Box body; 11. Heat dissipation plate; 12. Handle; 13. Support frame; 2. Storage frame; 21. Frame body; 22. Inner cavity; 23. Fixing component; 231. First semi-circular block; 232. Second semi-circular block; 233. Fixing hook; 3. Box cover; 4. Shock-absorbing plate; 41. Damper; 42. Placement plate; 5. Snap-fit component; 6. Lifting structure; 61. Small motor; 62. Lead screw; 63. Moving block; 64. Connecting block; 7. Collection bottle. Detailed Implementation
[0024] Please see Figure 1-5 This utility model provides a technical solution: a water source sample collection and storage device, including a box 1, a storage frame 2, and a box cover 3.
[0025] The following section will explain the specific setup and function of the storage frame 2, the shock absorber 4, and the lifting structure 6.
[0026] In this implementation scheme: a shock-absorbing plate 4 is fixedly connected to the inner bottom wall of the box 1, a storage frame 2 is fixedly connected to the top of the shock-absorbing plate 4, the box cover 3 is hinged to the upper surface of the box 1, the box 1 and the box cover 3 are interlocked by a snap-fit piece 5, a lifting structure 6 is provided on both inner walls of the box 1, the lifting structure 6 is threadedly connected to the outer surface of the storage frame 2, and a collection bottle 7 is stored inside the storage frame 2.
[0027] The storage frame 2 includes a frame 21, an inner cavity 22, and a fixing component 23. The frame 21 is fixedly connected to the top of the shock-absorbing plate 4. The inner cavity 22 is slidably engaged with the inner wall of the frame 21. The fixing component 23 is slidably connected with the inner wall of the inner cavity 22.
[0028] The aforementioned components achieve the following effects: the housing 1 provides a stable storage space for the entire device; the shock-absorbing plate 4 reduces vibrations to the device and protects the storage frame 2 and the collection bottle 7 inside. The storage frame 2 is used to place the collection bottle 7, wherein the frame 21 is the basic frame of the storage frame 2, and the inner cavity 22 is slidably engaged with the frame 21, allowing for easy adjustment of the position of the inner cavity 22 within the frame 21 according to actual needs; the fixing component 23 can fix the collection bottle 7 to prevent it from shaking. The lid 3 is hinged to the housing 1 and engaged with the snap-fit component 5, which can close the housing 1 and prevent external debris from entering; the lifting structure 6 is threadedly connected to the storage frame 2, which can move the storage frame 2 up and down, facilitating the loading and unloading of the collection bottle 7.
[0029] Specifically, the fixing component 23 includes a first semi-circular block 231 and a second semi-circular block 232. The first semi-circular block 231 and the second semi-circular block 232 are symmetrically distributed. A sliding groove is provided on one side of the inner wall of the inner cavity 22. The first semi-circular block 231 and the second semi-circular block 232 are slidably connected to the sliding groove. A fixing hook 233 is fixedly connected to one end of the first semi-circular block 231 and the second semi-circular block 232.
[0030] The aforementioned components achieve the following effect: the first semi-circular block 231 and the second semi-circular block 232 are symmetrically distributed, enabling them to clamp the collection bottle 7 from both sides. They are slidably connected to the slide groove, allowing their position to be adjusted according to the diameter of the collection bottle 7, accommodating collection bottles 7 of different sizes. The fixing hook 233 secures the adjusted first semi-circular block 231 and the second semi-circular block 232, ensuring a stable clamping of the collection bottle 7 and preventing it from shaking during transportation or other processes.
[0031] Specifically, the outer surface of the frame 21 has connecting holes evenly distributed, and the fixing hook 233 engages with the connecting holes.
[0032] The effect achieved by the above components is that the equidistantly distributed connecting holes provide multiple fixing positions for the fixing hook 233, so that the fixing component 23 can flexibly adjust the fixing force and position according to the size of the collection bottle 7, further enhancing the adaptability and fixing stability of collection bottles 7 of different specifications.
[0033] Specifically, the damping plate 4 includes a damper 41 fixedly connected to the bottom wall of the box 1. The dampers 41 are equidistantly distributed on the bottom wall of the box 1. A placement plate 42 is fixedly connected to the top of the damper 41. The placement plate 42 is slidably connected to the inner wall of the box 1.
[0034] The effects achieved by the above components are as follows: the dampers 41 are evenly distributed, which can uniformly absorb and buffer the vibration of the device and reduce the impact of vibration on the collection bottle 7 and the internal sample; the placement plate 42 is slidably connected to the inner wall of the box 1, which can maintain stability during the shock absorption process and prevent the storage frame 2 from shifting due to vibration. While ensuring the shock absorption effect, it also ensures the stability of the position of the storage frame 2.
[0035] Specifically, the lifting structure 6 includes a small motor 61 fixedly connected to the bottom wall of the box 1. The output end of the small motor 61 is fixedly connected to a lead screw 62. The outer surface of the lead screw 62 is threaded with a moving block 63. The moving block 63 is fixedly connected to the side of the storage frame 2. The end of the lead screw 62 away from the small motor 61 is rotatably connected to a connecting block 64. The connecting block 64 is fixedly connected to the top of the box 1.
[0036] The aforementioned components achieve the following effects: the small motor 61 provides power to the lifting structure 6, driving the lead screw 62 to rotate. The lead screw 62 is threadedly connected to the moving block 63. When the lead screw 62 rotates, it drives the moving block 63 to move up and down, thereby driving the storage frame 2 to move up and down. The connecting block 64 fixes the end of the lead screw 62 away from the small motor 61, ensuring the stability of the lead screw 62 during rotation, making the lifting process of the storage frame 2 smooth and reliable, and facilitating easy loading and unloading of the collection bottle 7 by staff.
[0037] Specifically, heat dissipation plates 11 are provided at the bottom of both sides of the box 1, and handles 12 are fixedly connected to the top of both sides of the box 1.
[0038] The aforementioned components achieve the following effects: the heat dissipation plate 11 promotes air circulation between the inside of the chamber 1 and the outside, dissipating heat that may be generated inside the chamber 1 in a timely manner, preventing excessive temperature from affecting sample quality. The handle 12 facilitates the handling of the device by staff, improving its portability and making it easier to move between water sources.
[0039] Specifically, a support frame 13 is fixedly connected to the bottom of the box 1.
[0040] The aforementioned components achieve the following effects: the support frame 13 separates the bottom of the housing 1 from the ground, preventing moisture and stains from the ground from corroding the housing 1 and extending its service life. Simultaneously, the support frame 13 also enhances the stability of the device when placed, preventing it from tipping over on uneven ground.
[0041] Working principle: When using this water source sample collection and storage device, first open the box cover 3 through the snap-fit 5, start the small motor 61 of the lifting structure 6, the small motor 61 drives the lead screw 62 to rotate, so that the moving block 63 drives the storage frame 2 to rise to the appropriate position.
[0042] Then, according to the specifications of the collection bottle 7, slide the first semi-circular block 231 and the second semi-circular block 232 to adjust it to a suitable position, and then insert the fixing hook 233 into the corresponding connecting hole on the frame 21 for fixation. Next, place the collection bottle 7 with the collected sample into the inner cavity 22, and clamp and fix it with the first semi-circular block 231 and the second semi-circular block 232. Then, start the small motor 61 again to lower the storage frame 2 to a suitable position inside the box 1, close the box cover 3 and lock it in place with the snap-fit 5. During transportation, the damper 41 of the shock-absorbing plate 4 will absorb vibrations and protect the collection bottle 7 and the sample.
Claims
1. A water source sample collection and storage device, comprising a box (1), a storage frame (2), and a box cover (3), characterized in that: The inner bottom wall of the box (1) is fixedly connected to a shock-absorbing plate (4), and the top of the shock-absorbing plate (4) is fixedly connected to a storage frame (2). The box cover (3) is hinged to the upper surface of the box (1). The box (1) and the box cover (3) are interlocked by a snap-fit piece (5). The inner walls on both sides of the box (1) are provided with lifting structures (6). The lifting structures (6) are threaded to the outer surface of the storage frame (2). The storage frame (2) contains a collection bottle (7). The storage frame (2) includes a frame (21), an inner cavity (22), and a fixing component (23). The frame (21) is fixedly connected to the top of the shock-absorbing plate (4). The inner cavity (22) is slidably engaged with the inner wall of the frame (21). The fixing component (23) is slidably connected with the inner wall of the inner cavity (22).
2. The water source sample collection and storage device according to claim 1, characterized in that: The fixing component (23) includes a first semi-arc block (231) and a second semi-arc block (232), which are symmetrically distributed. A sliding groove is provided on one side of the inner wall of the inner cavity (22). The first semi-arc block (231) and the second semi-arc block (232) are slidably connected to the sliding groove. A fixing hook (233) is fixedly connected to one end of the first semi-arc block (231) and the second semi-arc block (232).
3. The water source sample collection and storage device according to claim 2, characterized in that: The outer surface of the frame (21) has connecting holes distributed at equal intervals, and the fixing hook (233) engages with the connecting holes.
4. The water source sample collection and storage device according to claim 1, characterized in that: The damping plate (4) includes a damper (41) fixedly connected to the bottom wall of the box (1). The dampers (41) are equidistantly distributed on the bottom wall of the box (1). A placement plate (42) is fixedly connected to the top of the damper (41). The placement plate (42) is slidably connected to the inner wall of the box (1).
5. A water source sample collection and storage device according to claim 1, characterized in that: The lifting structure (6) includes a small motor (61) fixedly connected to the bottom wall of the box (1). The output end of the small motor (61) is fixedly connected to a lead screw (62). The outer surface of the lead screw (62) is threadedly connected to a moving block (63). The moving block (63) is fixedly connected to the side of the storage frame (2). The end of the lead screw (62) away from the small motor (61) is rotatably connected to a connecting block (64). The connecting block (64) is fixedly connected to the top of the box (1).
6. The water source sample collection and storage device according to claim 1, characterized in that: Heat dissipation plates (11) are provided at the bottom of both sides of the box (1), and handles (12) are fixedly connected to the top of both sides of the box (1).
7. A water source sample collection and storage device according to claim 1, characterized in that: The bottom of the box (1) is fixedly connected to a support frame (13).