Detection machine box for network security
By designing an independent chassis structure and built-in heat dissipation components, the problems of poor heat dissipation and dust ingress during use of the testing chassis have been solved, enabling rapid cleaning and real-time heat dissipation, and extending the life of the components.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2026-04-03
AI Technical Summary
Existing testing boxes are not easy to dissipate heat in real time during use, which shortens the lifespan of internal components and makes it easy for dust to enter, affecting cleaning efficiency.
The design features an independent casing structure, with the upper and lower casings easily connected or disassembled for quick cleaning; it has a built-in heat dissipation component, using a fan and buttons in conjunction with the rotor and stator rotation to dissipate heat, which is then expelled through heat dissipation holes.
It enables rapid cleaning and real-time heat dissipation inside the enclosure, extending the lifespan of components and improving cleaning efficiency and equipment stability.
Smart Images

Figure CN224083547U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of testing box technology, specifically a testing box for network security. Background Technology
[0002] Network security testing refers to the comprehensive testing and evaluation of computer networks to identify security risks and vulnerabilities, and then taking corresponding security measures to ensure the safe and stable operation of the network. Network security testing mainly includes vulnerability scanning, intrusion detection, and behavior monitoring of network devices and systems. Network security testing equipment is usually equipped with an external enclosure to protect the internal components, facilitating the joint operation of the internal components to achieve the testing effect. The enclosure mainly serves a protective function in the equipment to ensure its normal use.
[0003] Existing enclosures, during protection, suffer from the problem of internal components generating heat that cannot dissipate, leading to accelerated damage from prolonged high temperatures and impacting the lifespan of the testing equipment. Furthermore, dust and dirt easily enter the equipment during use, and the inconvenience of cleaning the enclosure's interior and components due to the sealed design makes external installation and disassembly difficult, further hindering cleaning efficiency. Therefore, we propose a network security testing enclosure to address these issues. Utility Model Content
[0004] The purpose of this invention is to provide a network security testing enclosure that solves the problems of existing testing enclosures, such as difficulty in real-time heat dissipation affecting the lifespan of internal components, and the easy entry of dust into the device, which makes it difficult to clean quickly.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model relates to a network security testing chassis, comprising a chassis structure, an upper housing, a lower housing at the bottom of the upper housing, and connecting structures fitted onto both ends of the chassis structure; the connecting structures include a fixing plate and a snap-fit plate, with snap-fit plates installed on both outer sides of the fixing plate, and a heat dissipation assembly connected to the bottom of the fixing plate; the heat dissipation assembly includes a control panel, a battery compartment embedded in the control panel, buttons on both outer sides of the control panel, and a base and fan blades installed at the bottom of the control panel.
[0007] The independent housing structure allows for quick assembly and disassembly through the corresponding movable connection or disassembly of the upper and lower housings and connecting structures. This facilitates rapid cleaning of the internal components, making internal maintenance easier and improving the overall cleaning efficiency of the device.
[0008] Furthermore, the lower housing is movably connected to the bottom of the upper housing, and through holes are fixedly opened on both sides of the outer side of the upper and lower housings. Heat dissipation holes are opened on both sides of the outer side of the upper and lower housings, and the heat dissipation holes extend into the interior of the housing structure. Connecting structures are movably fitted on both sides of the outer side of the housing structure.
[0009] Furthermore, the connection structure includes a fixed sleeve plate, which is adapted to be movably sleeved at both ends of the upper and lower housings, and a snap-on plate is movably provided on the inner side of the fixed sleeve plate.
[0010] Furthermore, each of the buckle plates has a protrusion fixedly installed at its bottom, the protrusion being movably connected to the inner wall of the through hole, and a heat dissipation component being movably connected to the bottom of the fixing sleeve plate.
[0011] A heat dissipation component is installed inside the chassis structure. A fan is installed inside the chassis structure. In conjunction with the external buttons and the rotation of the rotor and stator, heat is dissipated from the inside. The heat is accelerated out of the heat dissipation holes by the fan, thereby achieving a real-time heat dissipation effect. By dissipating heat, the internal components are kept at a lower temperature, thus extending the service life of the components.
[0012] Furthermore, the heat dissipation assembly includes a control panel, a battery compartment is embedded and fixedly installed in the control panel, buttons are symmetrically fixedly installed on both sides of the control panel, a base is fixedly installed at the bottom of the control panel, several sets of rotors are installed around the outside of the base, a stator is fixedly installed in the middle of the rotor, fan blades are movably installed on the top of the rotor, and a protective cover is movably fitted over the fan blades, the protective cover extending into the inside of the upper housing.
[0013] Furthermore, a rotating shaft is connected to the outside of the fan blade, and the bottom of the rotating shaft is movably connected to a groove in the bottom of the stator. Several sets of grilles are fixedly provided on the outside of the protective cover.
[0014] Furthermore, a charging hole is fixedly provided on one side of the outer side of the control panel, and the charging hole is electrically connected to the battery compartment.
[0015] This utility model has the following beneficial effects:
[0016] (1) This utility model: It is equipped with an independent housing structure. During use, the upper housing, lower housing and connecting structure are connected or disassembled in a corresponding manner to quickly complete the disassembly and assembly work, thereby quickly cleaning the components inside the housing structure, facilitating internal maintenance and improving the overall cleaning efficiency of the device.
[0017] (2) This utility model: A heat dissipation component is provided. By installing a fan inside the chassis structure, and cooperating with the external buttons and the rotor stator rotation, heat dissipation is carried out inside. The heat inside is accelerated out of the heat dissipation holes by the fan, thereby achieving a real-time heat dissipation effect. By dissipating heat, the internal components are kept at a low temperature, and the service life of the components is extended.
[0018] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the overall design of this utility model;
[0021] Figure 2 This is a schematic diagram of the overall structure of this utility model;
[0022] Figure 3 This is a schematic diagram of the connection structure of this utility model;
[0023] Figure 4 This is a schematic diagram of the internal structure of the housing of this utility model;
[0024] Figure 5 This is a schematic diagram of the heat dissipation component of this utility model;
[0025] The attached diagram lists the components represented by each number as follows:
[0026] In the diagram: 1. Chassis structure; 101. Upper casing; 102. Lower casing; 103. Heat dissipation holes; 2. Connection structure; 201. Fixing plate; 202. Snap-on plate; 3. Heat dissipation assembly; 301. Control panel; 302. Battery compartment; 303. Buttons; 304. Base; 305. Rotor; 306. Fan blades; 307. Protective cover. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] Please see Figures 1-5 As shown, this utility model is a network security testing box, including a box structure 1. The box structure 1 includes an upper shell 101, and a lower shell 102 is provided at the bottom of the upper shell 101. Connecting structures 2 are sleeved on both ends of the box structure 1. The connecting structures 2 include a fixing plate 201 and a buckle plate 202. Buckle plates 202 are installed on both sides of the fixing plate 201. A heat dissipation component 3 is connected to the bottom of the fixing plate 201. The heat dissipation component 3 includes a control panel 301. A battery compartment 302 is embedded in the control panel 301. Buttons 303 are provided on both sides of the control panel 301. A base 304 and a fan blade 306 are installed at the bottom of the control panel 301.
[0029] An independent housing structure 1 is set up. During use, the upper housing 101 and lower housing 102 are connected or disassembled with the connecting structure 2 to quickly complete the disassembly and assembly work. This allows for quick cleaning of the components inside the housing structure 1, facilitating internal maintenance and improving the overall cleaning efficiency of the device.
[0030] The lower housing 102 is movably connected to the bottom of the upper housing 101. Through holes are fixedly opened on both sides of the upper housing 101 and the lower housing 102. Heat dissipation holes 103 are opened on both sides of the upper housing 101 and the lower housing 102. The heat dissipation holes 103 extend into the interior of the housing structure 1. Connecting structures 2 are movably fitted on both sides of the exterior of the housing structure 1. By setting multiple sets of heat dissipation holes 103, the internal heat is discharged, so that the components inside the housing structure 1 are prevented from overheating and thus the working time of the components is extended.
[0031] The connecting structure 2 includes a fixed sleeve plate 201, which is adapted to and movably sleeved on the outer ends of the upper housing 101 and the lower housing 102. The inner side of the fixed sleeve plate 201 is provided with a snap-on plate 202. Through the movable connection of the fixed sleeve plate 201 and the snap-on plate 202, the housing structure 1 can quickly install and disassemble the upper housing 101 and the lower housing 102, which facilitates the cleaning of the interior.
[0032] The bottom of the buckle plate 202 is fixedly installed with protrusions, which are movably connected to the inner wall of the through hole. The bottom of the fixed sleeve plate 201 is movably connected with the heat dissipation component 3.
[0033] A heat dissipation component 3 is provided, which includes a control panel 301. A battery compartment 302 is embedded in the control panel 301. Buttons 303 are symmetrically fixed on both sides of the control panel 301. A base 304 is fixedly installed at the bottom of the control panel 301. Several sets of rotors 305 are installed around the outside of the base 304. A stator is fixedly installed in the middle of the rotor 305. The rotors 305 rotate in conjunction with the buttons 303 and the stator to dissipate heat. Fan blades 306 are movably installed on the top of the rotors 305. A protective cover 307 is movably fitted over the fan blades 306 and extends into the upper casing 101. This allows the heat inside to escape through the heat dissipation holes 103 at an accelerated speed by the fan, thereby achieving a real-time heat dissipation effect. By dissipating heat, the internal components are kept at a lower temperature, extending the service life of the components.
[0034] The fan blade 306 is externally connected to a rotating shaft, and the bottom of the rotating shaft is movably connected to a groove in the bottom of the stator. Several sets of grilles are fixedly installed on the outside of the protective cover 307. By rotating the rotating shaft, the fan blade 306 is driven to rotate, which accelerates the dissipation of internal heat and achieves the effect of real-time heat dissipation when the equipment is working.
[0035] A charging port is fixedly provided on one side of the control panel 301. The charging port is electrically connected to the battery compartment 302. The battery compartment 302 is charged through the charging port to ensure the power supply of the fan.
[0036] Working principle: During use, the upper housing 101 and the lower housing 102 are fixedly connected to the through holes by the snap-fit plate 202. This movable connection makes it easy to disassemble and assemble the upper housing 101 and the lower housing 102, enabling cleaning of the inside of the housing structure 1. A network security detection module is installed inside. The fixing sleeve 201 is fitted on both ends of the housing. The protrusions of the snap-fit plate 202 are engaged with the through holes, making the connection structure 2 firmly fixed and forming a closed structure. The battery compartment 302 provides power, and charging can be performed through the charging port to ensure that the device can still work when there is no external power supply. The button 303 controls the device switch. The heat dissipation holes 103 on both sides of the housing allow natural air convection to dissipate internal heat. When the temperature is high, the control panel 301 activates the heat dissipation component 3. The rotor 305 drives the fan blades 306 to rotate, accelerating airflow and improving heat dissipation efficiency. This achieves real-time heat dissipation for the internal components, thereby preventing the components from overheating and extending the service life of the device.
[0037] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A detection machine case for network security, characterized by: Including machine box structure (1), The machine box structure (1) comprises an upper casing (101), the bottom of the upper casing (101) is provided with a lower casing (102), and the two ends of the machine box structure (1) are externally sleeved with a connecting structure (2). The connecting structure (2) comprises a fixed sleeve plate (201) and a buckle plate (202), the two sides of the outer part of the fixed sleeve plate (201) are provided with the buckle plate (202), and the bottom of the fixed sleeve plate (201) is connected with a heat dissipation assembly (3). The heat dissipation assembly (3) comprises a control panel (301), the control panel (301) is embedded with a battery compartment (302), the two sides of the outer part of the control panel (301) are provided with a key (303), and the bottom of the control panel (301) is provided with a base (304) and a fan blade (306).
2. The detection machine box for network security according to claim 1, characterized in that: The bottom of the upper casing (101) is movably connected with the lower casing (102), the two sides of the outer part of the upper casing (101) and the lower casing (102) are fixedly provided with through holes, the two sides of the outer part of the upper casing (101) and the lower casing (102) are provided with heat dissipation holes (103), the heat dissipation holes (103) extend to the inside of the machine box structure (1), and the two sides of the outer part of the machine box structure (1) are movably sleeved with the connecting structure (2).
3. The detection machine box for network security according to claim 2, characterized in that: The connecting structure (2) comprises a fixed sleeve plate (201), the fixed sleeve plate (201) is movably sleeved with the upper casing (101) and the lower casing (102) at the two ends of the outer part, and the inner side of the fixed sleeve plate (201) is movably provided with a buckle plate (202).
4. The detection machine box for network security according to claim 3, characterized in that: The bottom of the buckle plate (202) is fixedly provided with a protruding block, the protruding block is movably connected with the inner wall of the through hole, and the bottom of the fixed sleeve plate (201) is movably connected with a heat dissipation assembly (3).
5. The detection machine box for network security according to claim 4, characterized in that: The heat dissipation assembly (3) comprises a control panel (301), the control panel (301) is embedded with a battery compartment (302), the two sides of the outer part of the control panel (301) are provided with a key (303), and the bottom of the control panel (301) is provided with a base (304), a plurality of rotors (305) are installed on the outer part of the base (304), a stator is fixedly installed in the rotor (305), a fan blade (306) is movably installed on the top of the rotor (305), a protective cover (307) is movably sleeved on the outer part of the fan blade (306), and the protective cover (307) extends to the inside of the upper casing (101).
6. The detection machine box for network security according to claim 5, characterized in that: The outer part of the fan blade (306) is connected with a rotating shaft, the bottom of the rotating shaft is movably connected with a groove in the bottom of the stator, and a plurality of gratings are fixedly arranged on the outer part of the protective cover (307).
7. The detection machine box for network security according to claim 5, characterized in that: One side of the outer part of the control panel (301) is fixedly provided with a charging hole, and the charging hole is electrically connected with the battery compartment (302) in the inside.