Fluorescence sensing monitoring device
By designing a fluorescent sensing monitoring device with a protective shell and carrying strap, the problem of damage caused by vibration and collision during frequent handling was solved, achieving stability and convenience of the device, reducing maintenance costs, extending service life, and improving the accuracy of monitoring data.
Patent Information
- Application Number
- CN202520348668.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Existing fluorescence sensing and monitoring devices are easily damaged by vibration and collision during frequent handling, which increases maintenance costs and difficulty, and affects the service life of the equipment.
A fluorescent sensing and monitoring device including a protective shell and a carrying strap was designed. The device forms a closed space through a combination of guide groove, guide rod, L-shaped moving plate and inclined plate to resist external vibration and collision, and is easy to carry with the carrying strap. At the same time, the stability and air pressure balance of the device are ensured by using piston plate, spring and exhaust hole. Combined with the adjustment structure of rotating disk and clamping plate, it can be used to fix devices of different sizes.
It effectively reduces damage to the device caused by handling or external factors, lowers maintenance costs, extends service life, improves the versatility and applicability of the device, and ensures the accuracy of monitoring data and the integrity of the device.
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Figure CN223905571U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to fluorescent monitoring technical field especially relates to fluorescent perception monitoring device. BACKGROUND
[0002] In the environmental field, it is necessary to quickly and accurately detect pollutants in water, soil and atmosphere, for example, to detect heavy metal ions and organic pollutants in water, traditional detection methods such as chemical titration and chromatography are often complex and time-consuming, and require professional personnel and laboratory equipment, and the fluorescent perception monitoring device can realize on-site rapid detection, through the specific reaction of fluorescent substances and pollutants, the fluorescence intensity or wavelength changes, so as to quickly judge the type and concentration of pollutants.
[0003] The existing fluorescent perception monitoring device needs to be carried back and forth to multiple sites for monitoring, and in the frequent carrying process, the fluorescent perception monitoring device will be damaged by external forces such as vibration and collision, thereby increasing the maintenance cost and difficulty of the equipment, and also affecting the service life of the equipment. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a fluorescent perception monitoring device that solves the problem of the existing fluorescent perception monitoring device being damaged by external forces such as vibration and collision during frequent carrying, increasing the maintenance cost and difficulty of the equipment, and affecting the service life of the equipment.
[0005] Technical scheme: a fluorescent perception monitoring device, comprising a bottom plate, a placing groove is formed on the upper surface of the bottom plate, a fluorescent monitoring device body is arranged on the inner upper surface of the placing groove, a protective shell one and a protective shell two are arranged in sequence on the left upper surface and the right upper surface of the bottom plate, the right side of the protective shell one and the left side of the protective shell two are in contact;
[0006] The front surface and the rear surface of the protective shell one are fixedly connected with fixing boxes, the front surface and the rear surface of the protective shell two are provided with guide grooves, the inner left side and the inner right side of the two guide grooves are fixedly connected with guide rods, the outer side walls of the two guide rods are slidably connected with guide blocks, the opposite sides of the two guide blocks are fixedly connected with L-shaped moving plates, the left sides of the two L-shaped moving plates extend into the interiors of the two fixing boxes respectively, the upper left surface and the lower left surface of the L-shaped moving plate are provided with clamping openings, the interior of the fixing box is symmetrically provided with clamping cavities, the interiors of the two clamping cavities are slidably connected with inclined plates, the opposite sides of the two inclined plates extend into the interiors of the two clamping openings respectively.
[0007] Further, the front surface and the rear surface of the protective shell one and the protective shell two are fixedly connected with a shoulder strap.
[0008] Further, the left side of the two fixed boxes is fixedly connected with an operation box, the opposite sides of the interiors of the two operation boxes are provided with penetrating sliding circular holes, the interiors of the two operation boxes are slidingly connected with piston vertical plates, the opposite sides of the two piston vertical plates are fixedly connected with connecting rods, the opposite ends of the two connecting rods extend into the interiors of the two sliding circular holes respectively, and the two connecting rods are fixedly connected with piston circular plates, the interiors of the two operation boxes and the interiors of the two clamping cavities are in communication, and the opposite sides of the two piston vertical plates are fixedly connected with a plurality of springs in the interiors of the two operation boxes.
[0009] Further, the upper surface of the bottom plate and the front and rear of the placing groove are provided with sliding transverse grooves, the inner left side and the inner right side of the two sliding transverse grooves are fixedly connected with sliding rods, the outer side walls of the two sliding rods are slidingly connected with sliding blocks, and the upper surfaces of the plurality of sliding blocks are fixedly connected with the lower surfaces of the protective shell one and the protective shell two.
[0010] Further, the opposite sides of the protective shell one and the protective shell two are provided with rotating discs, the opposite sides of the two rotating discs are fixedly connected with rotating sleeves, the opposite ends of the two rotating sleeves extend into the interiors of the protective shell one and the protective shell two respectively, the interiors of the two rotating sleeves are threadedly connected with adjusting blocks, the opposite sides of the two adjusting blocks are fixedly connected with extending rods, the opposite ends of the two extending rods extend to the left side and the right side of the fluorescent monitoring device body respectively, and the two extending rods are fixedly connected with clamping plates.
[0011] Further, the outer side walls of the two extending rods are provided with limiting grooves, the interiors of the front surfaces of the protective shell one and the protective shell two are fixedly connected with limiting rods, and the rear ends of the two limiting rods are slidingly connected with the interiors of the two limiting grooves.
[0012] Further, the opposite sides of the two clamping plates are fixedly connected with protective soft pads, and the opposite sides of the two protective soft pads are in contact with the left side and the right side of the fluorescent monitoring device body respectively.
[0013] Further, the upper surfaces of the interiors of the two operation boxes and the opposite sides of the two piston vertical plates are provided with penetrating air vents.
[0014] Beneficial effect: the protective shell one and the protective shell two form a closed space, the fluorescent monitoring device body is arranged in the closed space, external vibration, collision and other external force influence can be effectively resisted, the damage probability of the device caused by carrying or external factors is reduced, the maintenance cost of the equipment is reduced, the service life of the equipment is prolonged, and meanwhile, the two straps are arranged, so that the monitoring personnel can carry the device like a backpack, both hands are freed, and the equipment is convenient to move and operate in a complex monitoring site;
[0015] By cooperation of the piston round plate, the piston vertical plate and the spring and other components in the operation box, sliding of the inclined plate in the clamping cavity is controlled, fixing between the protective shell one and the protective shell two is realized, the resetting action of the spring can reset the device, and the protective shell one and the protective shell two are conveniently fixed next time, and meanwhile, the setting of the exhaust hole ensures air pressure balance in the operation box, and sliding of the piston vertical plate is smoother.
[0016] The fixing structure composed of the rotating disc, the rotating sleeve, the adjusting block, the extending rod and the clamping plate and other components on the protective shell can flexibly adjust the position of the clamping plate by rotating the rotating disc, different size fluorescent monitoring device bodies are fixed, cooperation of the limiting rod and the limiting groove ensures that the extending rod can only move in the axial direction, clamping is more stable, the universality and applicability of the device are improved, when the fluorescent monitoring device body is fixed, the protective soft pad on the clamping plate can buffer the clamping force, prevent the surface of the device body from being scratched and worn, and also can absorb and buffer vibration energy in the transportation or use process, reduce the risk that internal elements are loosened or damaged due to vibration, maintain normal operation of the device, and thus the accuracy of monitoring data is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a whole storage structure schematic diagram of the utility model;
[0018] Figure 2 is a fixed box and operation box cross section front view structure schematic diagram of the utility model;
[0019] Figure 3 is a whole use structure schematic diagram of the utility model;
[0020] Figure 4 is a rotating sleeve's downward section structure schematic diagram of the utility model;
[0021] Figure 5 is an operation box's side section structure schematic diagram of the utility model;
[0022] Figure 6 is a Figure 1 enlarged structure schematic diagram of the utility model's A place in the middle.
[0023] In the figure: 1, bottom plate; 2, placing groove; 3, fluorescent monitoring device body; 4, protective shell one; 5, protective shell two; 6, fixed box; 7, guide groove; 8, guide rod; 9, guide block; 10, L-shaped moving plate; 11, clamping opening; 12, clamping cavity; 13, inclined plate; 14, back strap; 15, operation box; 16, sliding circular hole; 17, piston vertical plate; 18, connecting rod; 19, piston circular plate; 20, sliding transverse groove; 21, sliding rod; 22, sliding block; 23, rotating disc; 24, rotating sleeve; 25, adjusting block; 26, extending rod; 27, clamping plate; 28, limiting groove; 29, limiting rod; 30, protective soft pad; 31, exhaust hole; 32, spring. DETAILED DESCRIPTION
[0024] 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.
[0025] EMBODIMENT
[0026] As shown in the figure, the front surface and the rear surface of the protective shell one 4 and the protective shell two 5 are fixedly connected with the back strap 14; Figure 1
[0027] The two back straps 14 make the monitoring personnel can carry the device on the back like a backpack, and the hands are liberated, which is convenient for moving and operating the equipment in the complex monitoring site, can reduce the burden of the monitoring personnel, and improve the work efficiency.
[0028] As shown in the figure, the front surface and the rear surface of the protective shell one 4 and the protective shell two 5 are fixedly connected with the back strap 14; Figure 1 Figure 2 Figure 6 The utility model provides a fluorescent perception monitoring device, including bottom plate 1, the upper surface of bottom plate 1 is set up with placing groove 2, the inside upper surface of placing groove 2 is provided with fluorescent monitoring device body 3, the left side of the upper surface of bottom plate 1 and the right side of the upper surface are sequentially provided with protective shell one 4 and protective shell two 5, and the right side of protective shell one 4 and the left side of protective shell two 5 are in contact, the front surface and the rear surface of protective shell one 4 are fixedly connected with fixed box 6, the front surface and the rear surface of protective shell two 5 are set up with guide groove 7, and the inside left side and the inside right side of two guide grooves 7 are fixedly connected with guide rod 8, the outer side wall of two guide rods 8 is slidably connected with guide block 9, and the opposite sides of two guide blocks 9 are fixedly connected with L-shaped moving plate 10, and the left side of two L-shaped moving plates 10 respectively extends to the inside of two fixed boxes 6, the upper surface left side and the lower surface left side of L-shaped moving plate 10 are set up with clamping opening 11, and the inside of fixed box 6 is symmetrically set up with clamping cavity 12, and the inside of two clamping cavities 12 is slidably connected with inclined plate 13, and the opposite sides of two inclined plates 13 respectively extend to the inside of two clamping openings 11;
[0029] After the fluorescent monitoring device body 3 is placed inside the placement groove 2, the fluorescent monitoring device body 3 is protected as a whole by the protective shell one 4 and the protective shell two 5. When the protective shell one 4 and the protective shell two 5 are docked to form a whole, the two L-shaped moving plates 10 are moved by being pushed in turn. The two L-shaped moving plates 10 can be smoothly inserted into the inside of the two fixed boxes 6 through the sliding fit of the two guide blocks 9 and the two guide grooves 7. After the two L-shaped moving plates 10 are completely inserted into the inside of the two fixed boxes 6, the plurality of inclined plates 13 are clamped into the plurality of clamping holes 11. The right angle surface of the plurality of inclined plates 13 limits the two L-shaped moving plates 10, thereby locking the protective shell one 4 and the protective shell two 5, ensuring the protection of the fluorescent monitoring device body 3 and the convenience of operation.
[0030] As shown in Figure 2 and Figure 5 , the left side of the two fixed boxes 6 is fixedly connected with an operation box 15. The inside of the two operation boxes 15 is provided with a through sliding circular hole 16. The inside of the two operation boxes 15 is slidingly connected with a piston vertical plate 17. The opposite sides of the two piston vertical plates 17 are fixedly connected with a connecting rod 18. The opposite ends of the two connecting rods 18 extend into the inside of the two sliding circular holes 16 and are fixedly connected with a piston circular plate 19. The inside of the two operation boxes 15 and the opposite sides of the two piston vertical plates 17 are in communication with the inside of the two clamping cavities 12. The opposite sides of the two piston vertical plates 17 are fixedly connected with a plurality of springs 32 in the inside of the two operation boxes 15;
[0031] By simultaneously pushing the two piston circular plates 19, the two piston vertical plates 17 can be driven to move, the air pressure in the two operation boxes 15 is changed, and then the inclined plate 13 is pulled out of the inside of the clamping cavity 12. The opening and closing of the protective shell one 4 and the protective shell two 5 can be realized. At the same time, the plurality of springs 32 play a resetting role, which is convenient for installing, repairing and other operations of the fluorescent monitoring device body 3, and at the same time enhances the stability and reliability of the device structure.
[0032] As shown in Figure 3 , the upper surface of the bottom plate 1 and the front and rear of the placement groove 2 are provided with a sliding horizontal groove 20. The inside left side and the inside right side of the two sliding horizontal grooves 20 are fixedly connected with a sliding rod 21. The outer side wall of the two sliding rods 21 is slidingly connected with a sliding block 22. The upper surface of the plurality of sliding blocks 22 is fixedly connected with the lower surface of the protective shell one 4 and the protective shell two 5;
[0033] The two sliding transverse grooves 20 and the sliding rods 21 installed inside are arranged to make the protective shell one 4 and the protective shell two 5 slide with the sliding blocks 22 and the sliding rods 21, that is, the two sliding rods 21 play the role of guide rails, limit the moving direction of the protective shell one 4 and the protective shell two 5, so that they can only slide horizontally along the direction of the sliding rods 21, thereby ensuring the stability and accuracy of the opening and closing of the protective shell one 4 and the protective shell two 5.
[0034] As shown in Figure 2 and Figure 5 , the upper surfaces inside the two operation boxes 15 and located on the opposite sides of the two piston vertical plates 17 are provided with through-type exhaust holes 31;
[0035] The exhaust holes 31 are mainly arranged to balance the air pressure inside the operation box 15, ensure that the piston vertical plate 17 can smoothly slide inside the operation box 15, and then realize the normal sliding of the inclined plate 13 inside the clamping cavity 12, so as to complete the opening and closing action of the protective shell one 4 and the protective shell two 5.
[0036] As shown in Figure 1 , Figure 3 and Figure 4 , the opposite sides of the protective shell one 4 and the protective shell two 5 are provided with rotating discs 23, the opposite sides of the two rotating discs 23 are fixedly connected with rotating sleeves 24, the opposite ends of the two rotating sleeves 24 extend to the interiors of the protective shell one 4 and the protective shell two 5 respectively, the interiors of the two rotating sleeves 24 are threadedly connected with adjusting blocks 25, the opposite sides of the two adjusting blocks 25 are fixedly connected with extension rods 26, the opposite ends of the two extension rods 26 extend to the left side and the right side of the fluorescent monitoring device body 3 respectively, and are fixedly connected with clamping plates 27, the outer side walls of the two extension rods 26 are provided with limiting grooves 28, the inner front surfaces of the protective shell one 4 and the protective shell two 5 are fixedly connected with limiting rods 29, and the rear ends of the two limiting rods 29 are slidably connected with the interiors of the two limiting grooves 28;
[0037] When the protective shell one 4 and the protective shell two 5 are closed, the two rotating discs 23 are rotated in sequence to drive the rotating sleeves 24 to rotate, the adjusting blocks 25 are axially moved in the rotating sleeves 24, and then the extension rods 26 and the clamping plates 27 are moved to clamp the fluorescent monitoring device body 3, the limiting rods 29 are limited in cooperation with the limiting grooves 28 to limit the rotation of the extension rods 26, so as to ensure the clamping stability, and at the same time, it can adapt to different sizes of the fluorescent monitoring device body 3, thereby improving the flexibility and convenience of the device.
[0038] As shown in Figure 3 , the opposite sides of the two clamping plates 27 are fixedly connected with protective soft pads 30, and the opposite sides of the two protective soft pads 30 are in contact with the left side and the right side of the fluorescent monitoring device body 3 respectively;
[0039] When the two clamping plates 27 clamp and fix the fluorescence monitoring device body 3, the surface of the fluorescence monitoring device body 3 can be scratched, worn or even damaged due to pressure concentration, and the pressure applied by the two clamping plates 27 can be buffered by the two protective soft pads 30, so that the device is not damaged hard, and the integrity and normal operation of the device are ensured.
[0040] The above-described embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as limiting the scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. Fluorescence sensing monitoring device comprising a base plate (1), characterized in that: The upper surface of the bottom plate (1) is provided with a placing groove (2), the inner upper surface of the placing groove (2) is provided with a fluorescent monitoring device body (3), the upper surface left side and the upper surface right side of the bottom plate (1) are sequentially provided with a protective shell one (4) and a protective shell two (5), the right side of the protective shell one (4) and the left side of the protective shell two (5) are in contact; The front surface and the rear surface of the protective shell one (4) are fixedly connected with fixed boxes (6), the front surface and the rear surface of the protective shell two (5) are provided with guide grooves (7), the inner left side and the inner right side of the two guide grooves (7) are fixedly connected with guide rods (8), the outer side walls of the two guide rods (8) are slidably connected with guide blocks (9), the opposite sides of the two guide blocks (9) are fixedly connected with L-shaped moving plates (10), the left sides of the two L-shaped moving plates (10) extend into the interiors of the two fixed boxes (6) respectively, the upper surface left side and the lower surface left side of the L-shaped moving plate (10) are provided with clamping openings (11), the interiors of the two clamping cavities (12) are slidably connected with inclined plates (13), the opposite sides of the two inclined plates (13) extend into the interiors of the two clamping openings (11) respectively.
2. The fluorescence-aware monitoring device of claim 1, wherein: The front surfaces and the rear surfaces of the protective shell one (4) and the protective shell two (5) are fixedly connected with shoulder straps (14).
3. The fluorescence-aware monitoring device of claim 1, wherein: The left sides of the two fixed boxes (6) are fixedly connected with operation boxes (15), the interiors of the two operation boxes (15) are provided with penetrating sliding circular holes (16), the interiors of the two operation boxes (15) are slidably connected with piston vertical plates (17), the opposite sides of the two piston vertical plates (17) are fixedly connected with connecting rods (18), the opposite ends of the two connecting rods (18) extend into the interiors of the two sliding circular holes (16) respectively and are fixedly connected with piston circular plates (19), the interiors of the two operation boxes (15) and located at the opposite sides of the two piston vertical plates (17) are in communication with the interiors of the two clamping cavities (12) respectively, the opposite sides of the two piston vertical plates (17) are fixedly connected with a plurality of springs (32) in the interiors of the two operation boxes (15).
4. The fluorescence-aware monitoring device of claim 1, wherein: The upper surface of the bottom plate (1) and located in front of and behind the placing groove (2) is provided with sliding transverse grooves (20), the inner left side and the inner right side of the two sliding transverse grooves (20) are fixedly connected with sliding rods (21), the outer side walls of the two sliding rods (21) are slidably connected with sliding blocks (22), the upper surfaces of the plurality of sliding blocks (22) are fixedly connected with the lower surfaces of the protective shell one (4) and the protective shell two (5) respectively.
5. The fluorescence-aware monitoring device of claim 1, wherein: The opposite sides of the protective shell one (4) and the protective shell two (5) are provided with rotating discs (23), the opposite sides of the two rotating discs (23) are fixedly connected with rotating sleeves (24), the opposite ends of the two rotating sleeves (24) extend to the interiors of the protective shell one (4) and the protective shell two (5) respectively, the interiors of the two rotating sleeves (24) are threadedly connected with adjusting blocks (25), the opposite sides of the two adjusting blocks (25) are fixedly connected with extending rods (26), the opposite ends of the two extending rods (26) extend to the left side and the right side of the fluorescent monitoring device body (3) respectively, and the extending rods (26) are fixedly connected with clamping plates (27).
6. The fluorescence-aware monitoring device of claim 5, wherein: The outer side walls of the two extending rods (26) are both provided with limiting grooves (28), the interiors of the protective shell one (4) and the protective shell two (5) are both fixedly connected with limiting rods (29), and the rear ends of the two limiting rods (29) are slidably connected with the interiors of the two limiting grooves (28) respectively.
7. The fluorescence-aware monitoring device of claim 5, wherein: The opposite sides of the two clamping plates (27) are fixedly connected with protective soft pads (30), and the opposite sides of the two protective soft pads (30) are in contact with the left side and the right side of the fluorescent monitoring device body (3) respectively.
8. The fluorescence-aware monitoring device of claim 3, wherein: The upper surfaces of the interiors of the two operation boxes (15) and located at the opposite sides of the two piston vertical plates (17) are both provided with penetrating exhaust holes (31).