Ultraviolet intensity detection device
By integrating a housing, a piston-driven lifting assembly, and a pneumatic drive assembly into a UV intensity detection device, the issues of portability and operational complexity have been resolved, achieving efficient and accurate UV intensity detection.
Patent Information
- Application Number
- CN202510989232.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-17
- Publication Date
- 2025-11-07
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing ultraviolet intensity detection devices suffer from poor portability, complex operation, and susceptibility to human error, which affect the accuracy and efficiency of detection.
An ultraviolet intensity detection device was designed, comprising a housing, a piston-driven lifting assembly, a detection box, and a pneumatic drive assembly. The pneumatic drive assembly automatically adjusts the distance between the detection card and the ultraviolet lamp, and combined with a portable and foldable deformable bracket, it enables rapid switching of detection targets.
It improves the flexibility and accuracy of detection, simplifies the operation process, reduces human error, and enhances the adaptability and portability of the device.
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Figure CN120907664A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of ultraviolet detection, in particular to an ultraviolet intensity detection device. BACKGROUND
[0002] Ultraviolet rays are essential in medical environments due to their excellent sterilization and disinfection capabilities. Hospitals often equip ultraviolet lamps to ensure the hygiene and safety of the environment. However, ultraviolet rays also pose a non-negligible threat to human health, as long-term or high-intensity exposure can cause skin burns, eye damage, and even a decline in immune system function. Therefore, while ensuring that ultraviolet lamps effectively kill bacteria and viruses, it is necessary to strictly control their radiation intensity to avoid potential threats to medical staff and patients. To achieve this goal, hospitals regularly conduct ultraviolet intensity detection work to accurately measure the radiation level of ultraviolet lamps using ultraviolet intensity detection devices, ensuring that they operate within a safe range.
[0003] In the existing technical system, the detection of ultraviolet intensity usually relies on a support to fix the ultraviolet detection card, maintaining an appropriate distance from the ultraviolet lamp. However, this method has certain defects. First, the design of the support often lacks portability, with a relatively large size and weight, making it inconvenient to carry and store, especially in situations requiring frequent movement or detection at different locations. The transportation and installation of the support become a tedious task. Second, the use of the support is relatively complex. The detection personnel need to perform a series of preparation work before detection, including fixing, unfolding, and adjusting the distance between the detection card and the ultraviolet lamp. These steps not only consume time and effort but also easily introduce human errors, affecting the accuracy and efficiency of detection. SUMMARY
[0004] The purpose of the present application is to provide a more convenient, efficient, and accurate ultraviolet intensity detection device, and a kind of ultraviolet intensity detection device is proposed.
[0005] The technical solution of the present application to solve the above technical problems is as follows: An ultraviolet intensity detection device, comprising a first ultraviolet lamp arranged on a ceiling and a second ultraviolet lamp arranged on a sterilization lamp cart, comprising: a box body, an installation area is arranged in the box body; a piston push jacking assembly, four in number, arranged at four corner positions in the installation area of the box body; a detection box, arranged on the displacement end of the piston push jacking assembly, wherein a clamping groove is arranged on the surface of the detection box, and a detection card for detecting the first ultraviolet lamp and the second ultraviolet lamp is arranged in the clamping groove; The fixed support is provided with two forms, one of which can align the detection card with the first ultraviolet lamp, and the other of which can align the detection card with the second ultraviolet lamp; The pneumatic driving assembly is arranged in the mounting area of the box body and is connected with the piston pushing and jacking assembly, and under the driving of the pneumatic driving assembly, the piston pushing and jacking assembly can be used to adjust the distance between the detection card and the first ultraviolet lamp and the second ultraviolet lamp, so as to determine the ultraviolet intensity at the specified position through the detection card.
[0006] Based on the above technical solutions, the application can be further improved as follows.
[0007] Further, the piston pushing and jacking assembly comprises: The sleeve is arranged at four corners of the mounting area of the box body; The piston rod is arranged at one side of the sleeve and extends to the outside of the sleeve, wherein the piston rod can be extended and retracted in the sleeve, and the number and distribution position of the piston rod are matched with the sleeve; The connecting shaft is fixedly arranged at one side end of the piston rod outside the sleeve; The hinged seat is arranged outside the connecting shaft, and the number and distribution position of the hinged seat are matched with the connecting shaft; and The shaft body is fixedly connected with the hinged seat outside, wherein the four hinged seats are arranged at equal intervals on the outside of the shaft body, and one side end of the shaft body is fixedly connected with the detection box.
[0008] Further, the connecting rod is fixedly arranged at the four corners of the mounting area of the box body, the mounting block is rotatably connected to the outside of the connecting rod, the mounting block is fixedly connected with the sleeve, and the exposed hole matched with the size and position of the detection box is arranged on the surface of the box body.
[0009] Further, the pneumatic driving assembly comprises: The electric air pumping dual-purpose pump is fixedly arranged in the mounting area of the box body; The air pipe is arranged at one end of the air pumping end of the electric air pumping dual-purpose pump, wherein the outside of the air pipe is further provided with an electromagnetic valve; The gas conveying pipe is arranged in the mounting area of the box body and is in the shape of a mouth, wherein the other end of the air pipe is connected with the gas conveying pipe; and The corrugated hose is arranged at four corners of the gas conveying pipe and is connected with the gas conveying pipe, wherein the other end of the corrugated hose is connected with the sleeve.
[0010] Further, the fixed support is a folding deformation support, wherein the folding deformation support comprises: A first U-shaped frame is placed on the ground, wherein one end of the first U-shaped frame is provided with a first opening; A second U-shaped frame is hingedly connected to the end of the first U-shaped frame, wherein the second U-shaped frame is provided with a second opening near one end of the first U-shaped frame; A first connecting plate is hingedly connected to the first opening of the first U-shaped frame; A second connecting plate is hingedly connected to the second opening of the second U-shaped frame, wherein the other end of the second connecting plate is connected to the first connecting plate through a hinge; A first fixed sliding block is fixedly installed at the second opening of the second U-shaped frame; A second fixed sliding block is fixedly installed at the edge of the first connecting plate; A first movable sliding block is slidingly connected to the edge of the first connecting plate, wherein a first through hole is formed in one side surface of the first movable sliding block; A second movable sliding block is slidingly connected to the second opening of the second U-shaped frame, wherein a second through hole is formed in one side surface of the second movable sliding block; and A I-shaped shaft is placed in the first through hole of the first movable sliding block at one end and in the second through hole of the second movable sliding block at the other end.
[0011] Further, a first connecting sleeve is fixedly installed at the edge of the second U-shaped frame, and a second connecting sleeve is fixedly installed at the edge of the first U-shaped frame, wherein a bolt extending into the inside of the second connecting sleeve is inserted into the first connecting sleeve, and two triangular support frames are fixedly installed on the surface of the first U-shaped frame, and a suction cup is fixedly installed between the two triangular support frames.
[0012] Further, a quick release member connected to the box is arranged on the surface of the second connecting plate, wherein the quick release member comprises: A mounting box is fixedly installed on the surface of the second connecting plate, and an accommodation area is arranged in the inside of the mounting box; A rectangular block is fixedly installed in the inside of the mounting box and located in the accommodation area; A pressing rod is arranged through the rectangular block and extends to the outside of the mounting box at one end; A movable plate is fixedly installed on one side end of the pressing rod located in the accommodation area; A resilient member is fixedly installed on one side surface of the movable plate and fixedly connected to the inner wall of the mounting box at the other end; A limiting pin is fixedly installed on one side surface of the movable plate away from the resilient member, and the other end of the limiting pin extends through the entire rectangular block; A limiting seat is fixedly installed on one side surface of the box and extends to the inside of the mounting box at the other end, and the limiting seat and the limiting pin can be clamped and limited to each other.
[0013] Further, the inner side of the detection box is provided with a battery and a controller, and a laser range finder is embedded on the surface of the detection box, wherein the electric air pumping and inflating dual-purpose pump and the laser range finder are electrically connected with the controller.
[0014] Further, the fixing support is a portable support, wherein the portable support comprises: a portable triangular support, one end of which is arranged on the ground, and the other end of which has a horizontal mounting surface; a base, which is fixedly installed on the mounting surface of the portable triangular support; a protruding piece, which is fixedly installed on the other side end of the base; a rotating seat, which is rotationally connected to the outer side of the protruding piece, wherein the rotating seat and the box body are connected with each other through fasteners; an arc-shaped missing hole, which is arranged on the outer side of the rotating seat; a screw rod, one end of which is fixedly installed on the outer side of the protruding piece, and the other end of which is arranged on the inner side of the arc-shaped missing hole; and a hand screw cap, which is threadedly connected to the outer side of the screw rod and is in contact with the surface of the rotating seat.
[0015] Compared with the prior art, the technical scheme of the present application has the following beneficial technical effects: The present application takes the box body as the core, integrates the piston pushing and jacking assembly, the detection box, the fixing support and the pneumatic driving assembly, and forms a compact and complete whole. Such a design not only reduces the number of components and the overall weight, but also makes the device more portable and easier to store, significantly improves the flexibility of detection, and in terms of detection efficiency and accuracy, the piston pushing and jacking assembly can be automatically adjusted by the pneumatic driving assembly to adjust the distance between the detection card and the ultraviolet lamp, greatly simplifying the detection process and improving the detection efficiency. At the same time, due to the use of automatic adjustment, errors caused by human factors are avoided, making the detection result more accurate and reliable. In addition, through the two forms of the fixing support, the detection target can be easily switched, that is, the first ultraviolet lamp on the ceiling can be detected, and the second ultraviolet lamp on the sterilization lamp car can also be detected, without the need to replace or adjust any components, greatly enhancing the adaptability and flexibility of the device. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a connection structure diagram of the folding deformation support and the box body of the present application; Figure 2 is a connection structure diagram of the box body and the piston pushing and jacking assembly of the present application; Figure 3 is a connection structure diagram of the piston pushing and jacking assembly and the pneumatic driving assembly of the present application; Figure 4The connecting structure schematic diagram of the detection box and part of the piston pushing and jacking assembly of the application; Figure 5 The connecting structure schematic diagram of the sleeve and the piston rod of the application; Figure 6 The connecting structure schematic diagram of the folding shape change support from another perspective of the application; Figure 7 The connecting structure schematic diagram of the box body and the limiting seat of the application; Figure 8 The connecting structure schematic diagram of the folding shape change support from another perspective of the application; Figure 9 The connecting structure schematic diagram of the first moving sliding block and the second moving sliding block of the application; Figure 10 The connecting structure schematic diagram of the folding shape change support from another perspective of the application; Figure 11 The connecting structure schematic diagram of the quick release component of the application; Figure 10 The enlarged view of A in the application; Figure 12 The connecting structure schematic diagram of the second embodiment of the application; Figure 13 The connecting structure schematic diagram of the portable triangular support and the base of the application; Figure 14 The connecting structure schematic diagram of the portable support of the application; Figure 15 The connecting structure schematic diagram of the quick release component of the application.
[0017] In the figure: 1, box body; 2, piston pushing and jacking assembly; 21, sleeve; 22, piston rod; 23, connecting shaft; 24, hinged seat; 25, shaft body; 3, detection box; 4, fixed support; 41, folding shape change support; 411, first U-shaped frame; 412, second U-shaped frame; 413, first connecting plate; 414, second connecting plate; 415, first fixed sliding block; 416, second fixed sliding block; 417, first moving sliding block; 418, second moving sliding block; 419, I-shaped shaft; 42, portable support; 421, portable triangular support; 422, base; 423, protruding piece; 424, rotating seat; 425, arc-shaped missing hole; 426, screw rod; 427, hand screw cap; 5, pneumatic driving assembly; 51, electric air pumping and inflating dual-purpose pump; 52, air pipe; 53, electromagnetic valve; 54, gas conveying pipe; 55, corrugated hose; 6, connecting rod; 7, mounting block; 8, exposed hole; 9, first connecting sleeve; 10, second connecting sleeve; 11, bolt; 12, triangular support frame; 13, suction cup; 14, quick release component; 141, mounting box; 142, rectangular block; 143, pressing rod; 144, movable plate; 145, elastic piece; 146, limiting pin; 147, limiting seat; 15, laser range finder; 100, first ultraviolet lamp; 200, second ultraviolet lamp. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the present application will be apparently and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative work belong to the protection scope of the present application.
[0019] Embodiment one, combination Figures 1 to 11 and Figure 15 As shown in the figure, the ultraviolet intensity detection device of the present application comprises a first ultraviolet lamp 100 arranged on the ceiling and a second ultraviolet lamp 200 arranged on the sterilization lamp vehicle, and comprises: a box body 1, which is internally provided with a mounting area; piston pushing jacking assemblies 2, four in number, which are respectively arranged at four corner positions in the mounting area of the box body 1; a detection box 3, which is arranged on the displacement end of the piston pushing jacking assemblies 2, wherein the surface of the detection box 3 is provided with a clamping groove, and the clamping groove is provided with a detection card for detecting the first ultraviolet lamp 100 and the second ultraviolet lamp 200; a fixed support 4, one end of which is placed on the ground, and the other end is connected with the box body 1, wherein the fixed support 4 has two forms, one of which can align the detection card to the first ultraviolet lamp 100, and the other of which can align the detection card to the second ultraviolet lamp 200; a pneumatic driving assembly 5, which is arranged in the mounting area of the box body 1 and is connected with the piston pushing jacking assemblies 2, wherein the distance between the detection card and the first ultraviolet lamp 100 and the second ultraviolet lamp 200 can be adjusted by the piston pushing jacking assemblies 2 under the driving of the pneumatic driving assembly 5, so as to determine the ultraviolet intensity at the specified position by the detection card.
[0020] The whole device is taken as the main structure by the box body 1, which is internally provided with a special mounting area for accommodating and fixing other key components, and four piston push jacking assemblies 2 are respectively arranged at the four corners in the mounting area of the box body 1, which jointly constitute a lifting system of a detection box 3, and the detection box 3 is mounted on the displacement end of the piston push jacking assembly 2, which means that the detection box 3 can be adjusted in the vertical direction along with the telescopic movement of the piston push jacking assembly 2, and a clamping groove is specially designed on the surface of the detection box 3 for fixing detection cards, which are key tools for detecting the intensity of ultraviolet rays and can accurately record and reflect the radiation intensity of the first ultraviolet lamp 100 and the second ultraviolet lamp 200, in order to ensure that the detection cards can be accurately aligned with different ultraviolet lamps, the device is also provided with a fixed support 4, one end of which is fixed on the ground and the other end is connected with the box body 1, and in particular, the fixed support 4 is designed to have two forms, which correspond to the cases of aligning the detection cards with the first ultraviolet lamp 100 on the ceiling and the second ultraviolet lamp 200 on the sterilization lamp vehicle respectively, and by simply adjusting the form of the fixed support 4, the detection target can be easily switched, thereby greatly improving the flexibility and adaptability of the device, in order to drive the piston push jacking assembly 2 to move up and down, the device is also provided with a pneumatic driving assembly 5, which is connected with the piston push jacking assembly 2 and drives its movement by providing pneumatic power, and under the driving of the pneumatic driving assembly 5, the piston push jacking assembly 2 can accurately adjust the distance between the detection cards and the first ultraviolet lamp 100 and the second ultraviolet lamp 200, and this adjustment capability enables the device to accurately measure the intensity of ultraviolet rays at different detection positions, thereby ensuring the accuracy and reliability of the detection results, and it should be noted that the box body 1 is provided with a box cover, which can be opened to expose the internal device during detection.
[0021] In a preferred embodiment, the piston push jacking assembly 2 can further comprise: The sleeve 21 is four in number and is hingedly connected to the four corners in the mounting area of the box body 1. The piston rod 22 is arranged at one end inside the sleeve 21 and extends to the outside of the sleeve 21, wherein the piston rod 22 can be telescopically displaced in the sleeve 21, and the number and distribution position of the piston rod 22 are adapted to the sleeve 21. The connecting shaft 23 is fixedly installed on the side end of the piston rod 22 outside the sleeve 21. The hinged seat 24 is hingedly connected to the outside of the connecting shaft 23, and the number and distribution position of the hinged seat 24 are adapted to the connecting shaft 23. The shaft body 25 is fixedly connected with the hinge seats 24 on the outside, four hinge seats 24 are equidistantly distributed on the outside of the shaft body 25 in a ring shape, one side end of the shaft body 25 is fixedly connected with the detection box 3, the sleeve 21 serves as the base structure of the piston pushing jacking assembly 2, four sleeves 21 are hingedly connected to the four corners in the mounting area of the box body 1, which ensures the stability and load-bearing capacity of the assembly, and also provides necessary support and guidance for the telescopic movement of the piston rod 22. The piston rod 22 is a key component for realizing the lifting function of the assembly, one end is arranged on the inside of the sleeve 21 and forms a sealing fit with the inner wall of the sleeve 21, so as to ensure that the air pressure can drive the telescopic movement of the piston rod 22, the other end extends to the outside of the sleeve 21 and is connected with the hinge seat 24 through the connecting shaft 23. The number and distribution position of the piston rod 22 are matched with the sleeve 21, so as to ensure that the lifting movement of the assembly can be smoothly and uniformly performed. The connecting shaft 23 is a connecting component between the piston rod 22 and the hinge seat 24, which plays a role of transmitting force and movement. It is fixedly installed on one side end of the piston rod 22 located outside the sleeve 21, so as to ensure that the telescopic movement of the piston rod 22 can be accurately transmitted to the hinge seat 24. The hinge seat 24 is connected with the connecting shaft 23 through a hinged manner, the number and distribution position of the hinge seat 24 are matched with the connecting shaft 23, so that the hinge seat 24 can rotate under the driving of the connecting shaft 23, thereby realizing the lifting adjustment of the shaft body 25 and the detection box 3. The shaft body 25 is an output component of the piston pushing jacking assembly 2, which is fixedly connected with the hinge seats 24 on the outside. Four hinge seats 24 are equidistantly distributed on the outside of the shaft body 25 in a ring shape, which ensures that the shaft body 25 can remain stable and non-shaking during lifting. One side end of the shaft body 25 is fixedly connected with the detection box 3, so that when the piston rod 22 extends out of the outside of the sleeve 21, the shaft body 25 and the detection box 3 can be jacked through the connecting shaft 23 and the hinge seat 24, so as to adjust the distance between the detection card and the ultraviolet lamp.
[0022] The application can be further configured in a preferred embodiment that: the connecting rods 6 are fixedly installed at the four corners in the installation area of the box body 1, the outer side of the connecting rods 6 is rotatably connected with the mounting blocks 7, the mounting blocks 7 and the sleeves 21 are fixedly connected with each other, and the exposed holes 8 matched with the size and position of the detection boxes 3 are further formed in the surface of the box body 1; the connecting rods 6 are fixedly installed at the four corners in the installation area of the box body 1 of the ultraviolet intensity detection device, these connecting rods 6 serve as the rotating fulcrums and play a key role, the outer side of the connecting rods 6 is rotatably connected with the mounting blocks 7, which means that the mounting blocks 7 can rotate and displace on the connecting rods 6, and this design increases the flexibility of the piston pushing and jacking assembly 2; the mounting blocks 7 and the sleeves 21 are fixedly connected with each other, so that when the mounting blocks 7 rotate on the connecting rods 6, the sleeves 21 also rotate, and this rotating and displacing capacity enables the piston pushing and jacking assembly 2 to more flexibly adapt to different detection requirements; in addition, the exposed holes 8 matched with the size and position of the detection boxes 3 are further formed in the surface of the box body 1, and this design of the exposed holes 8 allows the detection boxes 3 to smoothly extend out of or retract into the box body 1 during the lifting process without any obstruction; when the piston rods 22 extend and displace in the sleeves 21, the detection boxes 3 can stably move up and down in the exposed holes 8 through the connection of the shaft bodies 25 and the hinged seats 24, so as to realize the detection of the intensity of the ultraviolet lamp.
[0023] The application can be further configured in a preferred embodiment that: the pneumatic driving assembly 5 comprises: The electric air pumping and charging dual-purpose pump 51 is fixedly installed in the installation area of the box body 1. The air pipe 52 is in communication with the air pumping and charging end of the electric air pumping and charging dual-purpose pump 51, and the outer side of the air pipe 52 is further provided with the electromagnetic valve 53. The gas conveying pipe 54 is provided in the installation area of the box body 1 and is in the shape of an open Chinese character, and the other end of the air pipe 52 is in communication with the gas conveying pipe 54; and The corrugated hose 55 is arranged at four corners of the gas conveying pipe 54 in communication with the gas conveying pipe 54, and the other end of the corrugated hose 55 is in communication with the sleeve 21. An electric air pumping and inflating pump 51 is fixedly installed in the mounting area of the box 1. The pump is the core component of the air driving assembly 5. The pump can pump air and inflate air, thereby realizing bidirectional control of the air. The gas pipe 52 is used as a connecting pipe between the electric air pumping and inflating pump 51 and the gas conveying pipe 54. One end of the gas pipe 52 is in communication with the air pumping and inflating end of the electric air pumping and inflating pump 51. An electromagnetic valve 53 is arranged outside the gas pipe 52. The electromagnetic valve 53 plays a key role in controlling the flow of air. When the electromagnetic valve 53 is opened, the air can flow through the gas pipe 52 smoothly. When the electromagnetic valve 53 is closed, the air in the gas pipe 52 is cut off, thereby realizing accurate control of the flow of air. The gas conveying pipe 54 is arranged in the mounting area of the box 1 and has a whole mouth-shaped structure. This design makes the flow of air in the gas conveying pipe 54 more uniform, thereby avoiding unstable air pressure in each sleeve 21. The other end of the gas pipe 52 is in communication with the gas conveying pipe 54, thereby realizing air conveying between the electric air pumping and inflating pump 51 and the sleeve 21. The corrugated hose 55 is used as a flexible pipe connecting the gas conveying pipe 54 and the sleeve 21. There are four corrugated hoses 55 arranged at four corners of the gas conveying pipe 54 in communication with the gas conveying pipe 54. The softness and scalability of the corrugated hose 55 make it adapt to the displacement change of the sleeve 21 in the lifting process, and ensure smooth conveying of the air. When the piston rod 22 needs to be displaced, the electric air pumping and inflating pump 51 starts to work, and air is conveyed to the inside of the four sleeves 21 through the gas pipe 52, the gas conveying pipe 54 and the corrugated hose 55. Since the gas conveying pipe 54 has a whole mouth-shaped structure, the air conveying is more uniform, thereby ensuring stable air pressure in each sleeve 21. When the detection card is displaced to the specified position, the electromagnetic valve 53 is closed, and the air is temporarily stored in the gas conveying pipe 54 and the corrugated hose 55, thereby maintaining the stability of the detection card at the specified position. When the detection is completed and needs to be restored, the electromagnetic valve 53 is opened again, and the gas conveying pipe 54 and the corrugated hose 55 are normally communicated. At this time, the electric air pumping and inflating pump 51 pumps air out of the sleeve 21, thereby making the piston rod 22 reversely displace in the sleeve 21, and realizing the restoration operation of the detection box 3.
[0024] In a preferred embodiment, the fixed support 4 is a folding deformation support 41, wherein the folding deformation support 41 comprises: a first U-shaped frame 411 arranged on the ground, wherein one end of the first U-shaped frame 411 is provided with a first opening; A second U-shaped frame 412 is hinged to an end of the first U-shaped frame 411, wherein the second U-shaped frame 412 is provided with a second opening near one end of the first U-shaped frame 411; A first connecting plate 413 is hinged to the first opening of the first U-shaped frame 411 at one end; A second connecting plate 414 is hinged to the second opening of the second U-shaped frame 412 at one end, wherein the other end of the second connecting plate 414 is connected to the first connecting plate 413 through a hinge; A first fixed sliding block 415 is fixedly installed at the second opening of the second U-shaped frame 412; A second fixed sliding block 416 is fixedly installed at the edge of the first connecting plate 413; A first movable sliding block 417 is slidingly connected to the edge of the first connecting plate 413, wherein a first through hole is formed in one side surface of the first movable sliding block 417; A second movable sliding block 418 is slidingly connected to the second opening of the second U-shaped frame 412, wherein a second through hole is formed in one side surface of the second movable sliding block 418; and The I-shaped shaft 419 is arranged in the first through hole of the first movable sliding block 417 and the second through hole of the second movable sliding block 418. In the initial state, the first U-shaped frame 411 and the second U-shaped frame 412 are in a vertical state, that is, perpendicular to the ground, and at the same time, the first connecting plate 413 and the second connecting plate 414 are also in a vertical state, forming a stable support structure. At this time, the box body 1 is arranged on the surface of the second connecting plate 414, and the detection card on the detection box 3 can directly detect the second ultraviolet lamp 200. When it is necessary to fold and store the device or adjust the detection angle, the folding function of the folding deformation support 41 can be used to achieve this. Specifically, the first U-shaped frame 411 and the second U-shaped frame 412 are hingedly connected, which allows them to be folded within a certain range. At the same time, the first U-shaped frame 411 and the first connecting plate 413, and the second U-shaped frame 412 and the second connecting plate 414 are also hingedly connected, so that the first connecting plate 413 and the second connecting plate 414 can also be folded accordingly with the folding of the U-shaped frame. In the folding process, the first movable sliding block 417 moves downward along the edge of the first connecting plate 413. When the first movable sliding block 417 and the second fixed sliding block 416 are in contact with each other, the second fixed sliding block 416 limits the position of the first movable sliding block 417, so that the first movable sliding block 417 no longer continues to displace along the edge of the first connecting plate 413. Due to the connecting action of the I-shaped shaft 419, the first movable sliding block 417 drives the second movable sliding block 418 to move upward along the second opening of the second U-shaped frame 412 during displacement. When the second movable sliding block 418 and the first fixed sliding block 415 are in contact with each other, the first fixed sliding block 415 limits the position of the second movable sliding block 418, thereby fixing the position of the second movable sliding block 418. In this way, the included angle between the first U-shaped frame 411 and the second U-shaped frame 412 and the first connecting plate 413 and the second connecting plate 414 can be fixed, so that they no longer fold. At this time, the second connecting plate 414 can be placed parallel to the ground, and the detection card on the detection box 3 can still detect the first ultraviolet lamp 100.
[0025] In a preferred embodiment, the second U-shaped frame 412 is provided with a first connecting sleeve 9 at the edge thereof, the first U-shaped frame 411 is provided with a second connecting sleeve 10 at the edge thereof, the first connecting sleeve 9 is provided with a bolt 11 extending into the second connecting sleeve 10, the first U-shaped frame 411 is provided with two triangular supporting frames 12 on the surface thereof, and the triangular supporting frames 12 are provided with a suction disc 13 between them. In the design of the fixing support 4, the second U-shaped frame 412 is provided with a first connecting sleeve 9 at the edge thereof, and the first U-shaped frame 411 is provided with a second connecting sleeve 10 at the edge thereof. The two connecting sleeves are designed to provide a stable and easy-to-operate connecting mechanism. Specifically, the first connecting sleeve 9 is provided with a bolt 11 extending into the second connecting sleeve 10, so as to realize the fixed connection between the first U-shaped frame 411 and the second U-shaped frame 412. When it is needed to connect the first U-shaped frame 411 and the second U-shaped frame 412 together, the bolt 11 is inserted into the first connecting sleeve 9, and then pushed until the other end of the bolt 11 enters the second connecting sleeve 10. This design not only makes the connection process simple and fast, but also ensures the stability of the connection, so that the first U-shaped frame 411 and the second U-shaped frame 412 can be supported and operated as a whole. In addition, in order to further enhance the stability and supporting capacity of the fixing support 4, two triangular supporting frames 12 are fixedly installed on the surface of the first U-shaped frame 411, and a suction disc 13 is fixedly installed between the two triangular supporting frames 12. The triangular supporting frames 12 are designed according to the stability principle of triangle, so that the fixing support 4 is more stable and can bear greater weight and pressure. The suction disc 13 is designed to provide an additional fixing way. When it is needed to fix the fixing support 4 on a plane, the suction disc 13 is tightly contacted with the plane, and the air in the suction disc 13 is discharged by a certain way such as extrusion or vacuumization, so that the suction disc 13 generates adsorption force, thereby fixing the fixing support 4 on the plane. This design not only makes the fixing way of the fixing support 4 more flexible and diverse, but also improves the stability and safety of the fixing support 4 in use.
[0026] In a preferred embodiment, the second connecting plate 414 is provided with a quick release member 14 connected with the box body 1, wherein the quick release member 14 comprises: a mounting box 141 fixedly installed on the surface of the second connecting plate 414, and provided with an accommodation area inside; a rectangular block 142 fixedly installed on the inner side of the mounting box 141 and located in the accommodation area; a pressing rod 143 penetratingly provided on the rectangular block 142 and having one end penetratingly extending to the outside of the mounting box 141; and The movable plate 144 is fixedly installed on one side end of the pressing rod 143 in the accommodating area; The elastic member 145 is fixedly installed on one surface of the movable plate 144, and the other end of the elastic member 145 is fixedly connected with the inner wall of the installation box 141; The limiting pin 146 is fixedly installed on one side surface of the movable plate 144 away from the elastic member 145, and the other end of the limiting pin 146 penetrates through the whole rectangular block 142; The limiting seat 147 is fixedly installed on one end of the surface of the box body 1, and the other end penetrates and extends to the inside of the mounting box 141, wherein the limiting seat 147 and the limiting pin 146 can be clamped and limited to each other. The quick release component 14 is mainly composed of the mounting box 141, the rectangular block 142, the pressing rod 143, the movable plate 144, the elastic element 145, the limiting pin 146 and the limiting seat 147. The mounting box 141 is fixedly installed on the surface of the second connecting plate 414, and an accommodation area is designed in the inside of the mounting box 141 for accommodating and supporting the components of the other quick release component 14. The rectangular block 142 is fixedly installed on the inside of the mounting box 141 and located in the accommodation area, which serves as a support structure of the pressing rod 143. The pressing rod 143 is arranged to penetrate the rectangular block 142, and one end of the pressing rod 143 penetrates and extends to the outside of the mounting box 141, which is convenient for the user to operate. The movable plate 144 is fixedly installed on one side end of the pressing rod 143 located in the accommodation area. When the pressing rod 143 is pressed, the movable plate 144 will move. The elastic element 145, which is preferably a spring, is fixedly installed on one end of the surface of the movable plate 144, and the other end is fixedly connected with the inner wall of the mounting box 141. In this way, when the pressing rod 143 is released, the elastic element 145 will push the movable plate 144 and the pressing rod 143 to reset. The limiting pin 146 is fixedly installed on one side surface of the movable plate 144 away from the elastic element 145, and one end of the limiting pin 146 penetrates the entire rectangular block 142 for clamping with the limiting seat 147. One end of the limiting seat 147 is fixedly installed on the surface of the box body 1, and the other end penetrates and extends to the inside of the mounting box 141 to form a clamping fit with the limiting pin 146. When connecting the box body 1 and the second connecting plate 414, the user only needs to press the pressing rod 143 to make the limiting pin 146 displace to one side of the elastic element 145. At this time, the elastic element 145 is compressed. Then, the limiting seat 147 is inserted into the mounting box 141 until the position thereof corresponds to the limiting pin 146. Next, the pressing rod 143 is released, the spring resets, pushes the movable plate 144 and the limiting pin 146 to reset, and the limiting pin 146 is inserted into the inside of the limiting seat 147, thereby completing the clamping connection between the box body 1 and the second connecting plate 414. Through the design of the quick release component 14, the user can quickly separate the second connecting plate 414 from the box body 1 when not in use, thereby facilitating subsequent storage and storage, greatly reducing the floor area. At the same time, this connection mode also ensures the stability between the box body 1 and the second connecting plate 414, and guarantees the stability and accuracy of the ultraviolet intensity detection device during use.
[0027] The application can be further configured in a preferred embodiment that the inner side of the detection box 3 is provided with a battery and a controller, wherein a laser range finder 15 is also embedded on the surface of the detection box 3, and the electric air pumping and inflating dual-purpose pump 51 and the laser range finder 15 are both electrically connected with the controller. The inner side of the detection box 3 is not only provided with a battery to provide continuous power supply, but also equipped with a controller for receiving signals and controlling the operation of each component. A laser range finder 15 is embedded on the surface of the detection box 3, which can accurately measure the distance between the detection box 3 and the ultraviolet lamp. This function is realized by emitting a laser beam by the laser range finder 15 and receiving the reflected laser beam. According to the parameters such as the time or phase difference of the laser beam back and forth, the distance between the two can be calculated. The electric air pumping and inflating dual-purpose pump 51 and the laser range finder 15 are both electrically connected with the controller, which means that the distance data measured by the laser range finder 15 can be transmitted to the controller in real time. After receiving these data, the controller will judge whether the distance between the detection box 3 and the ultraviolet lamp is within the appropriate range according to the preset algorithm or threshold value. If the distance is too far or too close, the controller will issue an instruction to control the start and stop of the electric air pumping and inflating dual-purpose pump 51 through the electric signal. Specifically, if the distance is too far, the controller may instruct the electric air pumping and inflating dual-purpose pump 51 to operate in the inflating mode to make the detection box 3 close to the ultraviolet lamp. Conversely, if the distance is too close, the controller may instruct the electric air pumping and inflating dual-purpose pump 51 to operate in the air pumping mode to make the detection box 3 away from the ultraviolet lamp. In this way, the ultraviolet intensity detection device can automatically adjust the distance between the detection box 3 and the ultraviolet lamp to ensure that the detection card is at a more appropriate distance, thereby improving the accuracy and reliability of ultraviolet intensity detection. This intelligent design not only simplifies the operation process, but also improves the detection efficiency.
[0028] The specific working principle of the ultraviolet intensity detection device is as follows: First of all, ensure that all components of the device are in good working condition. The operator needs to move the detection device to the area to be detected, which usually includes the vicinity of the first ultraviolet lamp 100 on the ceiling and the vicinity of the second ultraviolet lamp 200 on the disinfection lamp car, When the device is used to detect the first ultraviolet lamp 100, the operator needs to adjust the fixed support 4 to a specific form. Specifically, the first U-shaped frame 411 and the second U-shaped frame 412 need to be folded so that the included angle between them is within 90 degrees, and at the same time, the first connecting plate 413 and the second connecting plate 414 are also folded, and the included angle between them is also within 90 degrees. During the folding process, the first movable block 417 will move downward along the edge of the first connecting plate 413, and when the first movable block 417 and the second fixed block 416 come into contact with each other, their positions will be limited. Due to the connection of the I-shaped shaft 419, the displacement of the first movable block 417 will drive the second movable block 418 to move upward along the second opening of the second U-shaped frame 412, and when the second movable block 418 and the first fixed block 415 come into contact with each other, their positions will also be limited, thereby fixing the included angle between the first U-shaped frame 411 and the second U-shaped frame 412 and the first connecting plate 413 and the second connecting plate 414. At this time, the second connecting plate 414 will be parallel to the ground; Then, the operator can use the quick release member 14 to connect the box body 1 and the second connecting plate 414. The specific steps are as follows: press the pressing rod 143 to make the limiting pin 146 displace to one side of the elastic member 145, then extend the limiting seat 147 into the mounting box 141, release the pressing rod 143, the elastic member 145 restores, and the limiting pin 146 is inserted into the inside of the limiting seat 147, and the connection is completed. Subsequently, the controller and the laser range finder 15 in the detection box 3 are turned on, and the distance between the detection box 3 and the first ultraviolet lamp 100 is detected by the laser range finder 15. The data measured by the laser range finder 15 is transmitted to the controller in real time, and the controller determines whether the current distance is within the appropriate range according to the preset algorithm or threshold value. If the distance is not appropriate, the controller will issue an instruction to control the electrically-driven pumping assembly 5 to work through the electric signal, so as to adjust the distance between the detection card and the first ultraviolet lamp 100. Specifically, the electrically-driven pumping assembly 51 will deliver the gas to the inside of the four sleeves 21 through the air pipe 52, the gas conveying pipe 54 and the corrugated hose 55, respectively, to drive the piston rod 22 to extend and retract. Since the gas conveying pipe 54 is in the overall shape of a mouth, the gas delivery will be more uniform, avoiding the phenomenon of unstable gas pressure in each sleeve 21. When the detection card is displaced to the specified position, the gas can be temporarily stored in the gas conveying pipe 54 and the corrugated hose 55 through the electromagnetic valve 53, so as to maintain the stable position of the detection card; During the testing process, the test card records the data of ultraviolet intensity. After the test is completed, the operator can close the solenoid valve 53 to allow the air supply pipe 54 and the corrugated hose 55 to flow normally. Then, the electric vacuum pump 51 is used to pump air to reset the piston rod 22, thereby driving the test box 3 to descend back to its original position. Then, the operator can disconnect the connection between the box 1 and the second connecting plate 414 and store the device. When the second ultraviolet lamp 200 needs to be tested, the operator needs to adjust the fixed bracket 4 to another form, that is, unfold the first U-shaped bracket 411 and the second U-shaped bracket 412 to a vertical state, and at the same time, the first connecting plate 413 and the second connecting plate 414 are also in a vertical state. The operator can place the device stably on the ground and use the triangular support frame 12 and suction cup 13 to increase stability. At this time, the box 1 can be placed on the surface of the second connecting plate 414, and the above steps are repeated to test the ultraviolet intensity.
[0029] Example 2, as follows Figures 12 to 14 As shown, the difference from Embodiment 1 is that the fixed bracket 4 is a portable bracket 42, wherein the portable bracket 42 includes: Portable tripod 421, one end of which is set on the ground and the other end has a horizontal mounting surface; The base 422 is fixedly installed on the mounting surface of the portable tripod 421; The protrusion 423 is fixedly installed on the other end of the base 422; Rotary seat 424 is rotatably connected to the outside of protrusion 423, wherein the rotary seat 424 and housing 1 can be connected to each other by fasteners; An arc-shaped notch 425 is provided on the outer side of the rotating seat 424; The screw 426 has one end fixedly mounted to the outside of the protrusion 423, and the other end positioned inside the arc-shaped notch 425; and The hand screw nut 427 is threadedly connected to the outside of the screw rod 426 and in contact with the surface of the rotating seat 424. The portable support 42 is mainly composed of a portable triangular support 421, a base 422, a protruding piece 423, a rotating seat 424, an arc-shaped missing hole 425, a screw rod 426, and a hand screw nut 427. One end of the portable triangular support 421 is stably arranged on the ground, and the other end is designed with a horizontal mounting surface for supporting and fixing other components. The base 422 is fixedly installed on the horizontal mounting surface as the basis for connecting and supporting other components. The protruding piece 423 is fixedly installed on the other side end of the base 422 and serves to connect and support the rotating seat 424. The rotating seat 424 is connected to the outside of the protruding piece 423 through a certain rotating connection mode, and the rotating seat 424 and the box body 1 can be connected to each other through fasteners, so that the entire portable support 42 can stably support the box body 1. An arc-shaped missing hole 425 is arranged on the outside of the rotating seat 424, which is designed to cooperate with the screw rod 426 to adjust the angle of the rotating seat 424. One end of the screw rod 426 is fixedly installed on the outside of the protruding piece 423, and the other end is arranged inside the arc-shaped missing hole 425. The hand screw nut 427 is threadedly connected to the outside of the screw rod 426 and in contact with the surface of the rotating seat 424. In actual use, when the position of the rotating seat 424 needs to be adjusted, the hand screw nut 427 can be loosened first, and then the rotating seat 424 can be adjusted within a certain range through the cooperation of the screw rod 426 and the arc-shaped missing hole 425. When the rotating seat 424 is adjusted to the desired position, the hand screw nut 427 is rotated again to fix and limit the position of the rotating seat 424 through the friction between the hand screw nut 427 and the rotating seat 424, thereby ensuring the stability of the portable support 42 and the box body 1. It is worth noting that when the side surface of the rotating seat 424 close to the box body 1 is parallel to the mounting surface, the first ultraviolet lamp 100 on the ceiling can be detected through the detection card on the detection box 3. When the side surface of the rotating seat 424 close to the box body 1 is perpendicular to the mounting surface, the second ultraviolet lamp 200 on the sterilization lamp vehicle can be detected through the detection card on the detection box 3. This design makes the portable support 42 adapt to the detection needs of ultraviolet lamps in different scenes, improving the flexibility and convenience of its use.
[0030] In summary, the folding deformation support 41 is more suitable for detection environments that require frequent adjustment of height and angle and have high stability requirements for the support. The portable support 42 is more suitable for detection environments that require quick setup and disassembly and have high portability requirements for the support. The two supports can be selected and used according to actual detection needs.
[0031] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and implementations, it is to be understood that the terminology used is for the purpose of descriptive clarity and that it is intended to be limited only by the words recited in the appended claims. The scope of the present application shall be limited only by the claims.
[0032] While the embodiments of the application have been shown and described herein, it is to be understood that the application is not limited to these embodiments. Rather, numerous modifications are possible without departing from the spirit and scope of the present application as delineated by the claims and their equivalents.
Claims
1. An ultraviolet intensity detecting device comprising a first ultraviolet lamp (100) provided on a ceiling and a second ultraviolet lamp (200) provided on a sterilizing lamp cart, characterized in that, The utility model relates to a kind of ultraviolet intensity detection device, including: Box (1), which is provided with a mounting area inside; Piston push jacking assembly (2), four in number, are respectively arranged in the mounting area of box (1) four corners; Detection box (3) is arranged on the displacement end of piston push jacking assembly (2), wherein the surface of detection box (3) is provided with a clamping groove, and a detection card for detecting first ultraviolet lamp (100), second ultraviolet lamp (200) is arranged in the clamping groove; Fixed support (4) is placed on the ground at one end, and the other end is connected with box (1), wherein fixed support (4) has two forms, one of which can align the detection card to first ultraviolet lamp (100), and the other of which can align the detection card to second ultraviolet lamp (200); Pneumatic driving assembly (5) is arranged in the mounting area of box (1) and is connected with piston push jacking assembly (2), wherein under the driving of pneumatic driving assembly (5), the distance between the detection card and first ultraviolet lamp (100), second ultraviolet lamp (200) can be adjusted by piston push jacking assembly (2) to determine the ultraviolet intensity at the specified position by the detection card.
2. The ultraviolet intensity detecting device according to claim 1, wherein The piston push jacking assembly (2) comprises: Sleeve (21), four in number, are respectively hinged in the mounting area of box (1) four corners; Piston rod (22), one end is arranged inside sleeve (21), the other end extends to the outside of sleeve (21), wherein piston rod (22) can be telescopic displacement in sleeve (21), the number and distribution position of the piston rod (22) are matched with sleeve (21); Connecting shaft (23) is fixedly installed on the side end of piston rod (22) outside sleeve (21); Hinged seat (24) is hinged to the outside of connecting shaft (23), and the number and distribution position thereof are matched with connecting shaft (23); and Shaft body (25), which is fixedly connected with hinged seat (24) on the outside, wherein four hinged seats (24) are equidistantly distributed on the outside of shaft body (25) in ring shape, and one side end of shaft body (25) is fixedly connected with detection box (3).
3. The ultraviolet intensity detection device according to claim 2, wherein The four corners of the mounting area of the box (1) are fixedly installed with connecting rods (6), and the outer side of the connecting rod (6) is rotatably connected with a mounting block (7), which is fixedly connected between the sleeve (21) and the box (1). The surface of the box (1) is also provided with an exposed hole (8) which is matched with the size and position of the detection box (3).
4. The ultraviolet intensity detecting device according to claim 2, wherein The pneumatic driving assembly (5) comprises: Electric air pump (51) is fixedly installed in the mounting area of box (1); Air pipe (52), one end of which is communicated with the air suction and inflation end of electric air pump (51), wherein the outer side of air pipe (52) is further provided with solenoid valve (53); Gas pipe (54) is arranged in the mounting area of box (1), and the whole is arranged in the shape of a mouth, wherein the other end of air pipe (52) is communicated with gas pipe (54); and The corrugated hose (55) is arranged at four corners of the gas conveying pipe (54) and communicates with the gas conveying pipe (54), and the other end of the corrugated hose (55) communicates with the sleeve (21).
5. The ultraviolet intensity detection device according to claim 1, wherein The fixing support (4) is a folding deformation support (41), wherein the folding deformation support (41) comprises: The first U-shaped frame (411) is arranged on the ground, and one end of the first U-shaped frame (411) is provided with a first opening; The second U-shaped frame (412) is hingedly connected to the end of the first U-shaped frame (411), and one end of the second U-shaped frame (412) is provided with a second opening; The first connecting plate (413) is hingedly connected to the first opening of the first U-shaped frame (411); The second connecting plate (414) is hingedly connected to the second opening of the second U-shaped frame (412), and the other end of the second connecting plate (414) is connected to the first connecting plate (413) through a hinge; The first fixed sliding block (415) is fixedly installed at the second opening of the second U-shaped frame (412); The second fixed sliding block (416) is fixedly installed at the edge of the first connecting plate (413); The first movable sliding block (417) is slidingly connected to the edge of the first connecting plate (413), and a first through hole is formed in one side surface of the first movable sliding block (417); The second movable sliding block (418) is slidingly connected to the second opening of the second U-shaped frame (412), and a second through hole is formed in one side surface of the second movable sliding block (418); and The I-shaped shaft (419) is arranged in the first through hole of the first movable sliding block (417) and in the second through hole of the second movable sliding block (418).
6. The ultraviolet intensity detection device according to claim 5, wherein The first connecting sleeve (9) is fixedly installed at the edge of the second U-shaped frame (412), the second connecting sleeve (10) is fixedly installed at the edge of the first U-shaped frame (411), the plug (11) is inserted into the first connecting sleeve (9) and extends to the inside of the second connecting sleeve (10), and two triangular supporting frames (12) are fixedly installed on the surface of the first U-shaped frame (411).
7. The ultraviolet intensity detection device according to claim 5, wherein The surface of the second connecting plate (414) is provided with a quick release member (14) connected with the box body (1), and the quick release member (14) comprises: The mounting box (141) is fixedly installed on the surface of the second connecting plate (414), and an accommodation area is formed in the mounting box (141); The rectangular block (142) is fixedly installed on the inside of the mounting box (141) and located in the accommodation area; The pressing rod (143) is arranged through the rectangular block (142) and extends to the outside of the mounting box (141) through one end; The movable plate (144) is fixedly installed on one side end of the pressing rod (143) located in the accommodation area; The elastic member (145) is fixedly installed on one side of the surface of the movable plate (144) and fixedly connected with the inner wall of the mounting box (141) on the other side. A limiting pin (146) is fixedly installed on the surface of the movable plate (144) away from the elastic member (145), wherein the other end of the limiting pin (146) penetrates through the whole rectangular block (142); A limiting seat (147) is fixedly installed on the surface of the box (1) at one end and extends to the inner side of the mounting box (141) at the other end, wherein the limiting seat (147) and the limiting pin (146) can be clamped and limited to each other.
8. The ultraviolet intensity detection device according to claim 4, wherein The inner side of the detection box (3) is provided with a battery and a controller, and a laser range finder (15) is further embedded on the surface of the detection box (3), wherein the electric air suction and inflation dual-purpose pump (51) and the laser range finder (15) are electrically connected with the controller.
9. The ultraviolet intensity detection device of claim 1, wherein, The fixing support (4) is a portable support (42), wherein the portable support (42) comprises: A portable triangular support (421) is provided on the ground at one end and has a horizontal mounting surface at the other end; A base (422) is fixedly installed on the mounting surface of the portable triangular support (421); A protruding member (423) is fixedly installed on the other side end of the base (422); A rotating seat (424) is rotatably connected to the outside of the protruding member (423), wherein the rotating seat (424) and the box (1) can be connected through fasteners; An arc-shaped missing hole (425) is formed on the outside of the rotating seat (424); A screw rod (426) is fixedly installed on the outside of the protruding member (423) at one end and placed in the inside of the arc-shaped missing hole (425) at the other end; and A hand screw cap (427) is threadedly connected to the outside of the screw rod (426) and in contact with the surface of the rotating seat (424).