A detection assembly and a detection system
Patent Information
- Application Number
- CN202522264429.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-27
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-27
AI Technical Summary
[0003]本申请发明人在研究中发现,当遇到一些紧急情况时,经常需要临时快速进行无人机侦测系统的部署,现有的无人机侦测系统无法满足快速拆装的要求
[0015]由上可知,通过在侦测本体上设置方便拆卸的挂接部,以及在连接组件上设置挂接板和连接板,通过挂接的方式将侦测本体挂设在挂接板上,能够实现侦测组件和连接组件之间的快速组合。同时,为了保证侦测组件和连接组件之间连接的稳定性,通过在挂接部的一端设置贴合部,通过该贴合部增加与挂接板之间的接触面积,进而确保在满足快速安装的前提下,实现侦测组件和连接组件之间的连接稳定性。
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Figure CN224788948U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic device technology, specifically to a detection component and a detection system. Background Technology
[0002] A drone detection system is a comprehensive technological system specifically designed to detect, identify, locate, and track drones, serving as the first line of defense for low-altitude security. Its core mission is to provide early warnings before or at the initial stage of a drone's entry into sensitive areas, providing a basis for decision-making regarding subsequent countermeasures such as interference, capture, or destruction. Drone detection systems can be deployed in any location, including the field, airports, and office buildings, as needed.
[0003] The inventors of this application discovered during their research that in emergency situations, it is often necessary to quickly deploy a drone detection system on a temporary basis, and existing drone detection systems cannot meet the requirements for rapid assembly and disassembly. Utility Model Content
[0004] In view of the above problems, embodiments of this application provide a detection component and a detection system to solve the above-mentioned technical problems existing in the prior art.
[0005] One aspect of this application provides a detection component, including a detection body and a connection component; A fixing seat is provided on one side surface of the detection body. The fixing seat is provided with hanging parts at intervals. One end of the hanging part is fixedly connected to the fixing seat, and the other end extends in a direction parallel to the fixing seat and is provided with a fitting part. The connecting assembly includes a connecting plate and a mounting plate. One end of the connecting plate is a free end, and the other end is fixedly connected to the mounting plate at an angle. The connecting plate is used to connect to an external bracket. The surface of the mounting plate is provided with mounting holes at positions opposite to the mounting part. The mounting part on the fixed base passes through the corresponding mounting hole on the mounting plate, and under the action of the gravity of the detection body, the fitting part fits against one side surface of the mounting plate, thus setting the detection body on the mounting plate.
[0006] Preferably, in some embodiments, the fixing base is provided with three hanging parts at intervals, and the hanging parts are arranged in a triangular pattern; The mounting plate has three mounting holes spaced apart, each mounting hole corresponding to a mounting part, and arranged in a triangular pattern.
[0007] Preferably, in some embodiments, the surface of the fitting portion facing the mounting plate is provided with a snap-fit protrusion; The mounting plate is provided with a snap-fit groove at the position corresponding to the snap-fit protrusion, and the snap-fit protrusion is located in the snap-fit groove for mounting the detection body on the mounting plate.
[0008] Preferably, in some embodiments, the edge of the hook hole facing the hook portion is provided with an arc-shaped portion.
[0009] Preferably, in some embodiments, the side surface of the fitting portion facing the mounting plate is provided with a first wave structure or a first serrated structure; A second wave structure or a second sawtooth structure is provided at the position corresponding to the fitting part on the mounting plate. The first wave structure cooperates with the second wave structure, or the first sawtooth structure cooperates with the second sawtooth structure, for mounting the detection body on the mounting plate.
[0010] Preferably, in some embodiments, the connecting assembly further includes a fastener; The fixing base is also provided with a first fixing hole, and the hanging plate is provided with a second fixing hole at a position opposite to the first fixing hole; When the detection body is attached to the mounting plate, the fixing member passes through the second fixing hole and is fixedly installed in the first fixing hole, for setting the mounting plate and the fixing base together.
[0011] Preferably, in some embodiments, the fixing member is a pin, and the end of the pin facing the first fixing hole is provided with a protrusion, the protrusion abutting against the inner wall of the first fixing hole to fix the pin in the first fixing hole.
[0012] Preferably, in some embodiments, the detection body includes a heat dissipation base, and the fixing seat is fixedly disposed with the heat dissipation base.
[0013] In another aspect of the embodiments of this application, a detection system is also proposed, including a detection bracket, a connector, and the detection components described in the above embodiments; One end of the connector is fixedly connected to the connecting plate of the detection component, and the other end is connected to the detection bracket, for mounting the detection component on the detection bracket.
[0014] Preferably, in some embodiments, multiple detection components and imaging components are included; The connecting seat is disposed at one end of the detection bracket, and the connecting seat includes a plurality of symmetrically arranged connecting ends, each of which is fixedly connected to the connecting plate of each detection component. The shooting component is fixedly mounted on the detection bracket at the connection point with the connecting seat.
[0015] As can be seen from the above, by providing a detachable mounting part on the detection unit and mounting plates and connecting plates on the connecting components, the detection unit can be hung on the mounting plate, enabling rapid assembly between the detection component and the connecting component. Simultaneously, to ensure the stability of the connection between the detection component and the connecting component, a fitting part is provided at one end of the mounting part. This fitting part increases the contact area with the mounting plate, thereby ensuring connection stability between the detection component and the connecting component while meeting the requirements of rapid installation.
[0016] The above description is merely an overview of the technical solution of the present invention. In order to better understand the technical means of the present invention and to implement it in accordance with the contents of the specification, and in order to make the above and other objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention are described below. Attached Figure Description
[0017] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this application. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings: Figure 1 This is a schematic diagram of the structure of the detection component provided in some embodiments of this application; Figure 2 Exploded views of detection components provided in some embodiments of this application; Figure 3 Partial view of a detection component provided in some embodiments of this application; Figure 4 Partial view of a detection component provided for other embodiments of this application; Figure 5 This is a schematic diagram of the structure of a detection system provided in some embodiments of this application.
[0018] Figure label: 100. Detection system; 10. Detection bracket; 20. Connector; 30. Detection component; 310. Detection body; 312. Fixing base; 314. Hanging part; 3141. Fitting part; 3142. Snap-fit protrusion; 3143. First wave structure; 316. First fixing hole; 320. Connecting component; 321. Connecting plate; 322. Hanging plate; 324. Hanging hole; 3241. Snap-fit groove; 3242. Arc-shaped part; 3243. Second wave structure; 326. Second fixing hole; 328. Fixing member; 3281. Protrusion; 40. Shooting component. Detailed Implementation
[0019] The embodiments of the technical solution of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the technical solution of the present invention and are therefore intended to limit the scope of protection of the present invention.
[0020] Unless otherwise defined, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains; the terminology used in the description of this application is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms "comprising" and "having," and any variations thereof, in the description, claims, and accompanying drawings of this application are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the description, claims, or accompanying drawings of this application are used to distinguish different objects, not to describe a specific order or hierarchy.
[0021] In this application, the reference to "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment that is mutually exclusive with other embodiments.
[0022] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "attachment" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0023] In this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, in this application, the character " / " generally indicates that the preceding and following related objects have an "or" relationship.
[0024] In the embodiments of this application, the same reference numerals denote the same components, and for the sake of brevity, detailed descriptions of the same components are omitted in different embodiments. It should be understood that the thickness, length, width, and other dimensions of various components in the embodiments of this application shown in the drawings, as well as the overall thickness, length, width, and other dimensions of the integrated device, are merely illustrative and should not constitute any limitation on this application. The term "multiple" in this application refers to two or more (including two).
[0025] With societal development, drones have become increasingly prevalent, finding widespread use in both civilian and military fields. However, as their use becomes more frequent, unauthorized drone flights are increasingly common in the civilian sector. Some drones fly in no-fly zones such as airports, government offices, military facilities, and residential areas, causing significant disruption to daily life and work. Meanwhile, in the military field, drones are increasingly used for mission raids, intelligence gathering, and other tasks, bringing new challenges to the battlefield. To address these challenges, the ability to identify drones is crucial. Therefore, drone detection has become increasingly important. Drone detection technology, through methods such as radio frequency detection, radar detection, infrared detection, and video image detection, can promptly identify the flight path and type of drones, providing early warnings. This is a vital technological means for drone defense and countermeasures.
[0026] The inventors of this application discovered during their research that in some application scenarios, it is often necessary to quickly assemble the detection system and also quickly disassemble it when moving it to a new location. The operation needs to be as simple and convenient as possible, allowing a single person to complete the installation and disassembly of the entire detection system. However, existing UAV detection systems, in order to ensure the stability of the detection system, often use screws or straps for fixing and installing components such as radar and radio frequency units onto mounting brackets. This results in two problems: firstly, the installation time is relatively long and the consistency is poor; secondly, it requires multiple people to cooperate and use specialized tools for installation and fastening, failing to meet the requirements for rapid installation and disassembly.
[0027] In view of this, this application proposes a detection component and a detection system. By providing a detachable mounting part on the detection body and a mounting plate and a connecting plate on the connecting component, the detection body is hung on the mounting plate, enabling rapid assembly between the detection component and the connecting component. To ensure the stability of the connection between the detection component and the connecting component, a fitting part is provided at one end of the mounting part. This fitting part increases the contact area between the mounting part and the mounting plate, thereby ensuring connection stability between the detection component and the connecting component while meeting the requirements of rapid installation. The connecting part of the connecting component is used to connect with an external bracket. Under normal circumstances, the connecting part is first fixedly connected to the external bracket. During installation, it is only necessary to open the mounting bracket, set the mounting bracket, and then directly hang the detection component on the connecting component, which is very simple, convenient, and quick. When disassembly is required, it is only necessary to remove the detection component from the connecting component and put away the external bracket to complete the disassembly, greatly improving the disassembly and assembly speed of the detection system.
[0028] It should be noted that the detection components proposed in this application embodiment can be short-range radar, long-range radar, radio frequency unit, infrared unit, or other detection components with detection functions. The detection system proposed in this application embodiment includes, but is not limited to, drone detection, vehicle detection, and other target detection. In this application embodiment, only drone detection via radar is used as an example for illustration.
[0029] like Figure 1 and Figure 2 The diagram shows a schematic of the detection component 30 proposed in this application embodiment. The detection component 30 is used to cooperate with an external bracket and is installed on the external bracket. The detection component 30 includes a detection body 310 and a connecting component 320. A fixing seat 312 is provided on one side surface of the detection body 310. The fixing seat 312 is provided with hanging parts 314 at intervals. One end of the hanging part 314 is fixedly connected to the fixing seat 312, and the other end extends in a direction parallel to the fixing seat 312 and is provided with a fitting part 3141. The connecting component 320 includes a connecting plate 321 and a connecting plate 320. The mounting plate 322 has one free end and the other end fixedly connected to the mounting plate 322 at an angle. The connecting plate 321 is used to connect to an external bracket. The mounting plate 322 has a mounting hole 324 at a position opposite to the mounting part 314. The mounting part 314 on the fixing base 312 passes through the corresponding mounting hole 324 on the mounting plate 322. Under the action of the gravity of the detection body 310, the fitting part 3141 fits against one side surface of the mounting plate 322, thus setting the detection body 310 on the mounting plate 322.
[0030] Figure 1 This is a schematic diagram of the structure after the detection body 310 and the connecting component 320 are combined. Figure 2 An exploded view of the detection body 310 and the connecting assembly 320. The detection body 310 can be a radar, radio frequency unit, infrared unit, or other physical unit with detection function. The shape and structure of the detection body 310 can be set as needed and are not limited in this embodiment.
[0031] The detection body 310 is provided with a fixing base 312, which is usually located on the side of the detection body 310 away from the signal transmission direction to avoid affecting the signal transmission. Figure 1 and Figure 2As shown, the radar's transmitting antenna is located on one side, and the mounting base 312 is located on the other side of the radar body, opposite to the transmitting antenna. The mounting base 312 can be mounted on the detection body 310 by screwing or welding, or it can be integrally formed with the detection body 310. Preferably, to increase the heat dissipation effect of the detection body 310, in this embodiment, the mounting base 312 is preferably mounted together with the heat dissipation base of the detection body 310. The mounting base 312 further expands the heat dissipation area of the detection body, serving both a fixing function and a heat dissipation function. The mounting base 312 can be made of the same material as the heat dissipation base, such as aluminum, copper, or other heat dissipation materials.
[0032] The shape of the fixing base 312 can be freely set as needed, such as being square or circular. For better containment, the fixing base 312 can be a recessed structure with protrusions at the edges and a receiving space in the middle, within which a hook-on portion 314 is provided. Of course, the fixing base 312 can also be a planar structure, which is not limited in this application. The hook-on portion 314 extends outward from the bottom of the fixing base 312 to a certain height, which is adapted to the thickness of the hook-on plate 322 to cooperate with it. The number of hook-on portions 314 can be set as needed; generally, for better fixing effect, the number of hook-on portions 314 is greater than or equal to two. Of course, in some cases, if the stability requirement is not high, only one hook-on portion can be provided. Preferably, in this embodiment, three hook-on portions 314 can be provided, arranged in a triangular pattern, fully utilizing the principle that triangles have the strongest stability to achieve the best fixing effect.
[0033] To achieve a better fixing effect, the end of the hooking part 314 away from the fixing base 312 extends in a direction parallel to the fixing base 312 and is provided with a fitting part 3141. Here, "parallel to the fixing base 312" means approximately parallel. For the fitting part 3141 made of elastic material, the fitting part 3141 can be set at a slight angle to the fixing base 312, as long as the fitting part 3141 can be combined with the hooking plate 322. When the fitting part 3141 contacts the hooking plate, the fitting part supported by the elastic material deforms and can also fit with the hooking plate. Figure 2 The diagram shows an integrated design of the mounting part 314, the fixing base 312, and the detection body 310, which features a compact and simple structure.
[0034] Continue to refer to Figure 1 and Figure 2The connecting assembly 320 includes a connecting plate 321 and a mounting plate 322. The connecting plate 321 is used to connect with an external bracket, and the mounting plate 322 is used to connect with the mounting part 314 of the detection body 310. The connecting plate 321 and the mounting plate 322 can be set separately and then set together by screws or welding, or they can be integrally formed into two different functional parts of one component. They can also be fixed together relative to each other by hinges or other relatively rotatable accessories. Typically, to facilitate the connection between the external bracket and the detection body 310, the connecting plate 321 and the mounting plate 322 can be set at an angle, such as an acute angle or an obtuse angle, as needed. When fixed by hinges or other rotatable accessories, the angle between the connecting plate 321 and the mounting plate 322 can be freely adjusted, thereby freely adjusting the orientation of the detection body 310.
[0035] A hanging hole 324 is provided through the surface of the mounting plate 322 at a position opposite to the hanging part 314. The number of hanging holes 324 is the same as the number of hanging parts 314. The shape of the hanging hole 324 is also adapted to the shape of the hanging part 314. Since the fitting part 3141 at one end of the hanging part 314 needs to pass through the hanging hole 324, the inner diameter of the hanging hole 324 must be adapted to the length of the fitting part 3141, so that the fitting part 3141 can pass through the hanging hole 324.
[0036] During installation, the connecting plate 321 is typically first fixedly connected to the external bracket, which can be achieved through snap-fit, screw-fit, or other methods. When installing the detection body 310, the mounting part 314 is aligned with the mounting hole 324 on the mounting plate 322, and then passed through the mounting hole 324. Under the weight of the detection body 310 or the external force applied by the user, the mounting plate 322 will move relative to the mounting plate 322. The fitting part 3141 fits against one side surface of the mounting plate 322, thereby hanging the detection body 310 on the mounting plate 322.
[0037] As can be seen from the above description, the detection component 30 proposed in this application embodiment allows the detection body 310 to be directly attached to an external support via the hook-on portion 314 on the detection body 310 and the hook-on hole 324 on the hook-on plate 322. Under the weight of the detection body 310, the contact portion 3141 of the hook-on portion 314 automatically contacts the outer surface of the hook-on portion 314, thus preventing the detection body 310 from falling off during use and increasing the stability of the attachment. This method greatly facilitates the assembly and disassembly of the various parts of the detection system, allowing for rapid assembly and disassembly by a single person, significantly improving efficiency.
[0038] To increase the stability of the connection between the detection body 310 and the mounting plate 322, and to prevent the detection body 310 from falling off during use, in some embodiments, such as Figure 3 Furthermore, a snap-fit protrusion 3142 is provided on the side surface of the fitting portion 3141 facing the mounting plate 322; a snap-fit groove 3241 is provided on the mounting plate 322 at a position corresponding to the snap-fit protrusion 3142, and the snap-fit protrusion 3142 is located in the snap-fit groove 3241 for mounting the detection body 310 on the mounting plate 322.
[0039] Figure 3 This is a cross-sectional view of the fitting part 3141 after it is connected to the mounting plate 322. The free end of the fitting part 3141 is provided with a snap-fit protrusion 3142 on the side surface facing the mounting plate 322. The shape of the snap-fit protrusion 3142 can be an arc-shaped protrusion or a triangular protrusion, etc. The snap-fit protrusion 3142 protrudes from the plane of the fitting part 3141. When the fitting part 3141 moves under the drive of the detection body 310, the surface of the mounting plate 322 will squeeze the snap-fit protrusion 3142 of the fitting part 3141, causing the fitting part 3141 to produce a certain elastic deformation. Meanwhile, to cooperate with the snap-fit protrusion 3142, a snap-fit groove 3241 is provided on the mounting plate 322 at a position opposite to the snap-fit protrusion 3142. The snap-fit groove 3241 is formed by indentation on the surface of the mounting plate 322, and the shape of the snap-fit groove 3241 matches the shape of the snap-fit protrusion 3142. When the snap-fit protrusion 3142 moves into the snap-fit groove 3241, the snap-fit protrusion 3142 is accommodated in the snap-fit groove 3241 under the action of the elastic force of the fitting part 3141, and the snap-fit groove 3241 snaps the snap-fit protrusion 3142. Due to the elastic force of the fitting part 3141, the snap-fit protrusion 3142 will not easily move out of the snap-fit groove 3241, ensuring the stability of the mounting. During disassembly, only a slight external force needs to be applied to the fitting part 3141. Under the action of the external force, the fitting part 3141 will drive the snap-fit protrusion 3142 out of the snap-fit groove 3241, thereby achieving separation of the two. Therefore, in this way, the connection between the hanging part 314 and the hanging plate 322 can be made more stable and secure.
[0040] Furthermore, to further facilitate the installation between the mounting part 314 and the mounting plate 322, please refer to... Figure 3In this embodiment of the application, an arc-shaped portion 3242 is provided on the edge of the hook hole 324 facing the hook part 314. The arc-shaped portion 3242 forms a buffer zone between itself and the snap-fit protrusion 3142. During installation, the snap-fit protrusion 3142 first abuts against the arc-shaped portion 3242. The buffer structure formed by the arc-shaped portion 3242 is more conducive to the movement of the snap-fit protrusion 3142 on the surface of the hook plate 322, thereby making it easier to move the snap-fit protrusion 3142 into the snap-fit groove 3241.
[0041] Furthermore, to make the connection between the mounting part 314 and the mounting plate 322 more stable, other structures can also be adopted. (See reference for further details.) Figure 5 A friction structure, such as a first wave structure 3143 or a first serrated structure, is provided on the surface of the fitting part 3141 facing the mounting plate 322. The mounting plate 322 also has a similar friction structure at a position corresponding to the fitting part 3141, namely a second wave structure 3243 or a second serrated structure. The first wave structure cooperates with the second wave structure, or the first serrated structure cooperates with the second serrated structure, to mount the detection body 310 on the mounting plate 322. This increases the friction between the fitting part 3141 and the surface of the mounting plate 322, making the connection between the fitting part 3141 and the mounting plate 322 more secure and stable. It should be noted that the friction structure can also be other structures, as long as they can increase the friction between the fitting part 3141 and the mounting plate 322.
[0042] Furthermore, to increase the stability of the fixed detection component 30, refer to Figure 1 and Figure 2 The connecting assembly 320 further includes a fixing member 328; the fixing base is also provided with a first fixing hole 316, and the mounting plate 322 is provided with a second fixing hole 326 opposite to the first fixing hole 316; when the detection body 310 is attached to the mounting plate 322, the fixing member 328 passes through the second fixing hole 326 and is fixedly installed in the first fixing hole 316, for setting the detection body 310 and the mounting plate 322 together. The fixing member 328 can be a bolt, a pin, or other means.
[0043] After the detection body 310 is attached to the mounting plate 322, additional fasteners 328 are provided on the mounting plate 322 and the fixing seat to fix the mounting plate and the fixing seat for a second time, which restricts the movement between the mounting plate 322 and the fixing seat and further increases the stability of the connection between the mounting plate and the fixing seat.
[0044] To facilitate the assembly and disassembly of the fastener 328, in this embodiment of the application, as follows: Figure 2 As shown, the fixing member 328 is a pin. A protrusion 3281 is provided at the end of the pin facing the first fixing hole 316. The protrusion 3281 abuts against the inner wall of the first fixing hole 316, fixing the pin within the first fixing hole 316. The protrusion 3281 can be an elastic element or a ball bearing, as long as it can easily contact the inner wall of the first fixing hole 316. By providing the protrusion 3281, after the pin is inserted into the first fixing hole 316, the friction between the protrusion 3281 and the inner wall of the first fixing hole 316 can fix the pin within the first fixing hole 316, preventing it from falling out. During disassembly, only external force needs to be applied to pull the pin out of the first fixing hole 316, making the operation very convenient.
[0045] In another aspect of the embodiments of this application, a detection system 100 is also proposed, such as... Figure 5 As shown, it includes a detection bracket 10, a connecting seat 20, and a detection component 30 as described in the above embodiment; one end of the connecting seat 20 is fixedly connected to the connecting plate 321 of the detection component 30, and the other end is connected to the detection bracket 10, for mounting the detection component 30 on the detection bracket 10.
[0046] The detection bracket 10 is used to place the detection component 30 on a support platform and can adjust the height of the detection component 30. It can be a tripod or other support mechanism. A connecting seat 20 is provided on the detection bracket 10, which is used for fixed connection with the detection component 30. The connecting seat 20 has a fixing hole through which it is fixedly connected to the connecting plate 321 of the detection component 30. The connecting seat 20 can be set together with the detection bracket 10 in various ways, such as through a rotatable connection via a bearing, thus allowing free adjustment of the orientation of the detection component 30.
[0047] In some embodiments, the connector 20 includes a plurality of symmetrically arranged connector ends, each connector end being fixedly connected to the connector plate 321 of each detection component 30; for example Figure 5 As shown, it includes four symmetrically arranged connection ends, each equipped with a detection component 30, enabling detection of targets in various directions. Furthermore, to combine different detection methods, a shooting component 40 can be installed at the connection point between the detection bracket 10 and the connecting seat 20, such as... Figure 5 As shown, the shooting component 40 is located in the middle of the connecting seat 20 on the bracket, and its height can be slightly higher than other detection components 30, thereby enabling the acquisition of video or image information.
[0048] In practical use, the connecting plate 321 in the detection component 30 and the connecting seat 20 on the detection bracket 10 are pre-fixed and connected, setting the detection bracket 10 and the connecting seat 20 into a foldable storage state. During use, first open the detection bracket 10 and place it on the placement surface. Then, take out the detection component 30 and hang it on the mounting plate 322. To make it more stable, a fixing piece 328 can be inserted into the mounting plate 322 for fixation. The operation is very convenient and quick, greatly improving the assembly and disassembly speed of the detection system.
[0049] In summary, the detection component 30 and detection system 100 proposed in this application embodiment, by setting the mounting part 314 and mounting plate 322, can very conveniently set the detection component 30 on the detection bracket 10, simplifying the disassembly and assembly steps and facilitating quick disassembly and assembly in emergency situations.
[0050] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered within the scope of the claims and specification of the present invention. In particular, as long as there is no structural conflict, the various technical features mentioned in the embodiments can be combined in any way. The present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A detection component, characterized in that, Includes the detection body and connection components; A fixing seat is provided on one side surface of the detection body. The fixing seat is provided with hanging parts at intervals. One end of the hanging part is fixedly connected to the fixing seat, and the other end extends in a direction parallel to the fixing seat and is provided with a fitting part. The connecting assembly includes a connecting plate and a mounting plate. One end of the connecting plate is a free end, and the other end is fixedly connected to the mounting plate at an angle. The connecting plate is used to connect to an external bracket. The surface of the mounting plate is provided with mounting holes at positions opposite to the mounting part. The mounting part on the fixed base passes through the corresponding mounting hole on the mounting plate, and under the action of the gravity of the detection body, the fitting part fits against one side surface of the mounting plate, thus setting the detection body on the mounting plate.
2. The detection component according to claim 1, characterized in that, The fixed base is provided with three hanging parts at intervals, and the hanging parts are arranged in a triangular pattern. The mounting plate has three mounting holes spaced apart, each mounting hole corresponding to a mounting part, and arranged in a triangular pattern.
3. The detection component according to claim 1, characterized in that, The surface of the fitting part facing the hanging plate is provided with a snap-fit protrusion; The mounting plate is provided with a snap-fit groove at the position corresponding to the snap-fit protrusion, and the snap-fit protrusion is located in the snap-fit groove for mounting the detection body on the mounting plate.
4. The detection component according to claim 3, characterized in that, The edge of the mounting hole facing the mounting part has an arc-shaped portion.
5. The detection component according to claim 1, characterized in that, The surface of the bonding part facing the hanging plate is provided with a first wave structure or a first sawtooth structure. A second wave structure or a second sawtooth structure is provided at the position corresponding to the fitting part on the mounting plate. The first wave structure cooperates with the second wave structure, or the first sawtooth structure cooperates with the second sawtooth structure, for mounting the detection body on the mounting plate.
6. The detection component according to any one of claims 1-5, characterized in that, The connection assembly also includes a fastener; The fixing base is also provided with a first fixing hole, and the hanging plate is provided with a second fixing hole at a position opposite to the first fixing hole; When the detection body is attached to the mounting plate, the fixing member passes through the second fixing hole and is fixedly installed in the first fixing hole, for setting the mounting plate and the fixing base together.
7. The detection component according to claim 6, characterized in that, The fastener is a pin, and the end of the pin facing the first fixing hole has a protrusion. The protrusion abuts against the inner wall of the first fixing hole to fix the pin in the first fixing hole.
8. The detection component according to any one of claims 1-5, characterized in that, The detection body includes a heat dissipation base, and the fixing seat is fixedly installed on the heat dissipation base.
9. A detection system, characterized in that, Includes a detection bracket, a connector, and a detection component as described in any one of claims 1-8; One end of the connector is fixedly connected to the connecting plate of the detection component, and the other end is connected to the detection bracket, for mounting the detection component on the detection bracket.
10. The detection system according to claim 9, characterized in that, Includes multiple detection and imaging components; The connecting seat is disposed at one end of the detection bracket, and the connecting seat includes a plurality of symmetrically arranged connecting ends, each of which is fixedly connected to the connecting plate of each of the detection components. The shooting component is fixedly mounted on the detection bracket at the connection point with the connecting seat.