Detection device for network security server
By installing multiple detection components on the server motherboard, including temperature and vibration sensors, the problem of low efficiency in manual inspection is solved, enabling efficient and accurate hardware status monitoring and fault location, and reducing the risk of server system failure.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-03-27
AI Technical Summary
In existing technologies, manually checking the hardware status of each server is labor-intensive and inefficient, and cannot detect hardware failures in a timely manner, which increases the risk of server system failure.
Multiple detection components, including temperature and vibration sensors, are used and fixed to the server motherboard by positioning components to replace manual inspection and achieve real-time monitoring and positioning of the server motherboard's operating status.
It improves detection efficiency, enables timely detection of anomalies, accurate location of faults, facilitates subsequent maintenance, and ensures the accuracy and stability of detection.
Smart Images

Figure CN224052635U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to server detection technical field, concretely relates to a detection device for network security server. BACKGROUND
[0002] With the rapid development of computer technology, the performance demand of data processing and calculation is growing, and high efficiency and high performance are constantly pursued. Distributed parallel computing mainly aims at important fields such as cloud computing internet, computing-intensive scientific research and large-scale scientific calculation. The existing distributed parallel computing server system contains multiple servers, and when one of the servers fails, it will not affect the overall use, but if not repaired in time, when the number of server hardware failures increases to the upper limit, the server system will easily be paralyzed. Now the hardware of multiple servers is detected one by one manually to determine the hardware state of each server, and the manual detection workload is large and the detection efficiency is low. Therefore, a detection device for network security server is needed to solve the above problems. SUMMARY
[0003] In order to solve the technical problem that the hardware of the server is detected one by one manually, the manual detection workload is large and the detection efficiency is low, the utility model provides a detection device for network security server, multiple detection components detect the server mainboard, instead of manual, the detection efficiency is greatly improved; The setting of the temperature sensor and the vibration sensor realizes the detection of the running state of the server mainboard in time, and the server mainboard can be accurately positioned when an abnormality occurs, so that subsequent maintenance is facilitated; And the two pressing plates limit the temperature sensor and the vibration sensor, so the temperature sensor and the vibration sensor are not easy to shift, and the detection of the temperature sensor and the vibration sensor is more accurate.
[0004] The utility model provides a kind of detection device for network security server, the network security server includes multiple server mainboards, the detection device includes multiple detection components, multiple the detection component is respectively arranged on multiple server mainboards and is used to detect, each the detection component includes temperature sensor, vibration sensor and two positioning parts, the temperature sensor and vibration sensor are all arranged on server mainboard, each the positioning part includes positioning seat, threaded rod and pressing plate, the positioning seat is detachably arranged on server mainboard, the threaded rod is rotatably arranged on positioning seat and threaded rod moves up and down relative to positioning seat, the lower portion of threaded rod is rotatably connected with pressing plate, two the pressing plate is respectively rested on temperature sensor and vibration sensor.Two pressing plates are respectively limited to temperature sensor and vibration sensor, so temperature sensor and vibration sensor are not prone to deviation, and the detection of temperature sensor and vibration sensor is more accurate.Vibration sensor is used to detect the running vibration state of server mainboard, and temperature sensor is used to detect the running temperature of server mainboard.
[0005] Further, each the positioning seat is inverted U-shaped, each the positioning seat is provided with positioning plate above server mainboard, the length of each the positioning plate is greater than the width of server mainboard, two clamping plates are movably arranged on each the positioning plate, two the clamping plate is located at the two sides of server mainboard, and two the clamping plate is in contact with the two side walls of server mainboard.Two clamping plates are fixed after moving on positioning plate, two the clamping plate is in contact with the two side walls of server mainboard, and positioning seat is fixed on server mainboard.
[0006] Further, two positioning structures are arranged on each the positioning plate, each the positioning structure includes first bar hole, sliding slot and second bar hole, the upper part of two the clamping plate is located in two sliding slots, the upper part of two the clamping plate is provided with positioning hole, positioning bolt passes through first bar hole, positioning hole and second bar hole, and clamping plate is locked on positioning plate by positioning nut, and the lower part of two the clamping plate is in contact with the two side walls of server mainboard.
[0007] Further, guide column is fixedly arranged in each the sliding slot, the upper part of each the clamping plate is provided with guide hole, and the guide column passes through guide hole.Guide column guides and supports the upper part of clamping plate, to ensure that the upper part of clamping plate remains stable in sliding slot.
[0008] Further, a threaded cylinder is fixedly arranged on each positioning seat, each threaded rod is threadedly connected with the threaded cylinder and moves up and down relative to the threaded cylinder, and the length of each threaded rod is greater than the length of the threaded cylinder; a connecting bearing is fixedly arranged on each pressing plate, and each connecting bearing is fixedly connected with the lower part of the threaded rod. By cooperation of the threaded cylinder and the threaded rod, the threaded rod is manually rotated, and the threaded rod moves up and down relative to the threaded cylinder; when the threaded rod is rotated, the threaded rod rotates relative to the outer ring of the connecting bearing, thereby driving the pressing plate to move up and down.
[0009] Further, two locking nuts are threadedly arranged on each threaded rod, and the two locking nuts are in contact with the upper part and the lower part of the threaded cylinder, respectively. After the two pressing plates abut against the temperature sensor and the vibration sensor, the two locking nuts are locked, the threaded rod cannot be rotated, and the two pressing plates are further ensured to stably abut against the temperature sensor and the vibration sensor.
[0010] Further, a groove is arranged on each pressing plate, the depth of each groove is less than the thickness of the temperature sensor and the vibration sensor, a rubber layer is fixedly arranged on the groove wall of each groove, and the two rubber layers are in contact with the temperature sensor and the vibration sensor, respectively. The two grooves further limit the positions of the temperature sensor and the vibration sensor, and ensure that the temperature sensor and the vibration sensor are tightly attached to the server mainboard. The two rubber layers avoid damage to the temperature sensor and the vibration sensor, and ensure that the temperature sensor and the vibration sensor work normally.
[0011] Further, the network security server comprises a main server and a plurality of sub-servers which are electrically connected, each sub-server comprises a server mainboard; a central processing module and a communication module are arranged on the server mainboard and are electrically connected, the temperature sensor and the vibration sensor are electrically connected with the central processing module, and the communication module is electrically connected with the main server.
[0012] Compared with the prior art, the network security server has the following beneficial effects:
[0013] In use, the detection device detects a plurality of server mainboards, replaces manual work, and greatly improves detection efficiency; the temperature sensor and the vibration sensor are arranged to detect the running state of the server mainboard in time, accurately position the server mainboard when an abnormality occurs, and thus facilitate subsequent maintenance; and the two pressing plates limit the temperature sensor and the vibration sensor, so that the temperature sensor and the vibration sensor are not easy to deviate, and the temperature sensor and the vibration sensor are more accurate in detection. BRIEF DESCRIPTION OF DRAWINGS
[0014] Fig. 1It is a structure schematic view of the detection device for the network security server of the utility model;
[0015] Fig. 2 It is the positioning plate and the side view structure schematic view of the positioning plate of the utility model;
[0016] Fig. 3 It is the positioning plate and the sectional view structure schematic view of the positioning plate of the utility model;
[0017] Fig. 4 It is the structure block diagram of the main server and the sub server of the utility model;
[0018] The label in the drawing is:
[0019] 1, server mainboard;11, central processing module;12, communication module;2, positioning part;21, positioning seat;211, threaded cylinder;22, threaded rod;23, pressing plate;231, connecting bearing;232, rubber layer;24, positioning plate;241, first bar hole;242, second bar hole;243, guide column;25, clamping plate;3, temperature sensor;4, vibration sensor;5, main server;6, sub server. Specific implementation
[0020] The utility model is further explained below in combination with the drawings and specific implementation.
[0021] For example, Figs. 1-4As shown, a network security server detection device, the network security server includes a plurality of server mainboards 1, the server mainboard 1 generally uses the pcb board, the structure of the pcb board is prior art, which will not be described here, the detection device includes a plurality of detection components, a plurality of detection components are arranged on the plurality of server mainboards 1 and are used for detecting them, each detection component includes a temperature sensor 3, a vibration sensor 4 and two positioning parts 2, the temperature sensor 3 and the vibration sensor 4 are arranged on the server mainboard 1, generally, the pcb board has a cable wiring for communication, the temperature sensor 3 and the vibration sensor 4 can be fixed on the server mainboard 1 by welding, the temperature sensor 3 and the vibration sensor 4 after welding realize electrical connection with the cable wiring, and subsequent communication with other modules through the cable wiring. Specifically, the network security server includes a main server 5 and a plurality of sub-servers 6 electrically connected, it should be noted that the composition and communication mode of the main server 5 and the sub-server 6 are prior art, which will not be described here, each sub-server 6 includes a server mainboard 1; the server mainboard 1 is provided with a central processing module 11 and a communication module 12 electrically connected, the temperature sensor 3 and the vibration sensor 4 are electrically connected with the central processing module 11, and the communication module 12 is electrically connected with the main server 5. It should be noted that the communication mode of the central processing module 11, the communication module 12, the temperature sensor 3 and the vibration sensor 4 is prior art, which will not be described here. Each positioning part 2 includes a positioning seat 21, a threaded rod 22 and a pressing plate 23, the positioning seat 21 is detachably arranged on the server mainboard 1, the threaded rod 22 is rotatably arranged on the positioning seat 21 and moves up and down relative to the positioning seat 21, the lower part of the threaded rod 22 is rotatably connected with the pressing plate 23, and the two pressing plates 23 are respectively arranged on the temperature sensor 3 and the vibration sensor 4 and make them tightly adhere to the server mainboard 1, for example, the temperature sensor 3 or the vibration sensor 4 does not occur such as warping phenomenon. Among them, the setting of the positioning part 2 does not affect the normal work of the central processing module 11 and the communication module 12.
[0022] The working process of the detection component; the positioning seat 21 is fixed on the server mainboard 1, the threaded rod 22 is manually rotated to move downward (when there is no external force, the threaded rod 22 does not rotate), the threaded rod 22 is rotatably connected with the pressing plate 23, the pressing plate 23 moves downward with the threaded rod 22, and finally the two pressing plates 23 are respectively arranged on the temperature sensor 3 and the vibration sensor 4 and make them tightly adhere to the server mainboard 1, the two pressing plates 23 limit the temperature sensor 3 and the vibration sensor 4 respectively, so that the temperature sensor 3 and the vibration sensor 4 are not easy to deviate, and the detection of the temperature sensor 3 and the vibration sensor 4 is more accurate. When the threaded rod 22 is manually rotated to move upward, the two pressing plates 23 are separated from the temperature sensor 3 and the vibration sensor 4.
[0023] The vibration sensor 4 is used for detecting the running vibration state of the server mainboard 1. When the vibration sensor 4 detects that the server mainboard 1 vibrates abnormally, the central processing module 11 sends the running vibration abnormal information of the server mainboard 1 to the main server 5 through the communication module 12. The temperature sensor 3 is used for detecting the running temperature of the server mainboard 1. When the temperature sensor 3 detects that the temperature value of the server mainboard 1 exceeds the set value, the central processing module 11 sends the temperature abnormal information of the server mainboard 1 to the main server 5 through the communication module 12. The temperature sensor 3 and the vibration sensor 4 are arranged to detect the running state of the server mainboard 1 in time, and can accurately locate the server mainboard 1 when an abnormality occurs, so as to facilitate maintenance.
[0024] In use, the detection device of the embodiment detects the server mainboard 1 through multiple detection assemblies, instead of manual detection, and the detection efficiency is greatly improved. The temperature sensor 3 and the vibration sensor 4 are arranged to detect the running state of the server mainboard 1 in time, and can accurately locate the server mainboard 1 when an abnormality occurs, so as to facilitate subsequent maintenance. The two pressing plates 23 limit the temperature sensor 3 and the vibration sensor 4, so that the temperature sensor 3 and the vibration sensor 4 are not easy to deviate, and the detection of the temperature sensor 3 and the vibration sensor 4 is more accurate.
[0025] As an implementation manner, each positioning seat 21 is inverted U-shaped, and a positioning plate 24 above the server mainboard 1 is arranged on each positioning seat 21. The length of each positioning plate 24 is greater than the width of the server mainboard 1. Two clamping plates 25 are movably arranged on each positioning plate 24. The two clamping plates 25 are respectively located on the two sides of the server mainboard 1, and are in contact with the two side walls of the server mainboard 1 to fix the positioning seat 21 on the server mainboard 1. After the two clamping plates 25 are moved on the positioning plate 24, the two clamping plates 25 are in contact with the two side walls of the server mainboard 1, and the positioning seat 21 is fixed on the server mainboard 1. When the two clamping plates 25 are loosened, the positioning seat 21 is removed from the server mainboard 1. The clamping plate 25 can be adjusted in position according to the requirement, the positioning seat 21 is fixed on the server mainboard 1 of different sizes, and the detection assembly further detects the server mainboard 1 of different sizes, so the use range is wide. Preferably, two positioning plates 24 and four clamping plates 25 are arranged on the positioning seat 21.
[0026] As an implementable mode, each positioning plate 24 is provided with two positioning structures on both sides of the server mainboard 1, each positioning structure comprises a first slot hole 241, a sliding groove and a second slot hole 242 which are arranged on the positioning plate 24 and communicate with each other, the upper parts of the two clamping plates 25 are respectively located in the two sliding grooves, the upper parts of the two clamping plates 25 are provided with positioning holes, the positioning bolt passes through the first slot hole 241, the positioning hole and the second slot hole 242 and locks the upper part of the clamping plate 25 on the positioning plate 24 through the positioning nut, and the lower parts of the two clamping plates 25 respectively contact with the two side walls of the server mainboard 1. The upper part of the clamping plate 25 slides in the sliding groove, the positioning bolt passes through the first slot hole 241, the positioning hole and the second slot hole, and the positioning bolt locks the upper part of the clamping plate 25 on the positioning plate 24 through the positioning nut, at this time, the lower parts of the two clamping plates 25 respectively contact with the two side walls of the server mainboard 1, that is, the lower parts of the two clamping plates 25 are clamped on the two side walls of the server mainboard 1, and finally the positioning seat 21 is fixed on the server mainboard 1. Loosen the positioning nut, the two clamping plates 25 are separated from the two side walls of the server mainboard 1, and the positioning seat 21 is disassembled from the server mainboard 1. The two clamping plates 25 can be adjusted in position according to requirements, and the positioning seat 21 is fixed on the server mainboard 1 of different sizes through the two clamping plates 25.
[0027] As an implementable mode, a guide column 243 is fixedly arranged in each sliding groove, and the upper part of each clamping plate 25 is provided with a guide hole, and the guide column 243 passes through the guide hole. The guide column 243 guides and supports the upper part of the clamping plate 25, so that the upper part of the clamping plate 25 remains stable in the sliding groove.
[0028] As an implementable mode, a threaded cylinder 211 is fixedly arranged on each positioning seat 21, each threaded rod 22 is in threaded connection with the threaded cylinder 211 and moves up and down relative to the threaded cylinder 211, and the length of each threaded rod 22 is greater than that of the threaded cylinder 211; each pressing plate 23 is fixedly provided with a connecting bearing 231, each connecting bearing 231 is fixedly connected with the lower part of the threaded rod 22, and the connecting bearing 231 is in interference fit with the lower part of the threaded rod 22. Through the cooperation of the threaded cylinder 211 and the threaded rod 22, the threaded rod 22 is manually rotated, and the threaded rod 22 moves up and down relative to the threaded cylinder 211; when the threaded rod 22 rotates, the threaded rod 22 rotates relative to the outer ring of the connecting bearing 231, thereby driving the pressing plate 23 to move up and down.
[0029] As an implementable mode, two locking nuts are threadedly arranged on each of the threaded rods 22, and the two locking nuts are in contact with the upper and lower portions of the threaded cylinder 211 respectively. After the two pressing plates 23 are pressed against the temperature sensor 3 and the vibration sensor 4, the two locking nuts are locked, the threaded rods 22 cannot be rotated, and the two pressing plates 23 are further ensured to be stably pressed against the temperature sensor 3 and the vibration sensor 4. When the two locking nuts are loosened, the threaded rods 22 can be rotated. The inner wall of the threaded cylinder 211 is provided with an internal thread, and the outer wall of the threaded rod 22 is provided with an external thread matched with the internal thread.
[0030] Preferably, the top of the threaded rod 22 is provided with a holding block above the two locking nuts. The holding block facilitates the rotation of the threaded rod 22.
[0031] As an implementable mode, each of the pressing plates 23 is provided with a groove, the depth of each of the grooves is less than the thickness of the temperature sensor 3 and the vibration sensor 4, and each of the groove walls is fixedly provided with a rubber layer 232, and the two rubber layers 232 are in contact with the temperature sensor 3 and the vibration sensor 4 respectively. The grooves of the two pressing plates 23 are clamped on the temperature sensor 3 and the vibration sensor 4, the positions of the two grooves are further limited to the temperature sensor 3 and the vibration sensor 4, and the temperature sensor 3 and the vibration sensor 4 are ensured to be tightly attached to the server mainboard 1. The two rubber layers 232 avoid the temperature sensor 3 and the vibration sensor 4 from being damaged, and ensure the normal work of the temperature sensor 3 and the vibration sensor 4.
[0032] The above-mentioned embodiments are only preferred embodiments of the present application, and are only used to explain the present application, and are not intended to limit the scope of the present application. For those skilled in the art, of course, other embodiments can be easily made by substitution or change according to the technical content disclosed in the present application, and therefore, any changes and improvements made on the basis of the principles and technical conditions of the present application shall be included in the scope of the present application.
Claims
1. A detection device for a network security server, the network security server comprising a plurality of server mainboards (1), characterized in that, The detection device comprises a plurality of detection assemblies, the detection assemblies are arranged on the server mainboards (1) respectively and used for detecting the server mainboards (1), each detection assembly comprises a temperature sensor (3), a vibration sensor (4) and two positioning parts (2), the temperature sensor (3) and the vibration sensor (4) are arranged on the server mainboard (1), each positioning part (2) comprises a positioning seat (21), a threaded rod (22) and a pressing plate (23), the positioning seat (21) is detachably arranged on the server mainboard (1), the threaded rod (22) is rotatably arranged on the positioning seat (21) and moves up and down relative to the positioning seat (21), the lower part of the threaded rod (22) is rotatably connected with the pressing plate (23), and the two pressing plates (23) are respectively arranged on the temperature sensor (3) and the vibration sensor (4).
2. The detection device of claim 1, wherein, Each positioning seat (21) is inverted U-shaped, a positioning plate (24) is arranged on each positioning seat (21) and located above the server mainboard (1), the length of each positioning plate (24) is greater than the width of the server mainboard (1), two clamping plates (25) are movably arranged on each positioning plate (24), and the two clamping plates (25) are respectively located on the two sides of the server mainboard (1) and are in contact with the two side walls of the server mainboard (1).
3. The detection device of claim 2, wherein, Each positioning plate (24) is provided with two positioning structures located on the two sides of the server mainboard (1), each positioning structure comprises a first slot (241), a sliding groove and a second slot (242), the upper parts of the two clamping plates (25) are located in the two sliding grooves respectively, the upper parts of the two clamping plates (25) are provided with positioning holes, a positioning bolt passes through the first slot (241), the positioning hole and the second slot (242) and locks the upper parts of the clamping plates (25) on the positioning plate (24) through a positioning nut, and the lower parts of the two clamping plates (25) are in contact with the two side walls of the server mainboard (1) respectively.
4. The detection device of claim 3, wherein, A guide column (243) is fixedly arranged in each sliding groove, and the upper part of each clamping plate (25) is provided with a guide hole.
5. The detection device of claim 2, wherein, A threaded cylinder (211) is fixedly arranged on each positioning seat (21), each threaded rod (22) is in threaded connection with the threaded cylinder (211) and moves up and down relative to the threaded cylinder (211), and the length of each threaded rod (22) is greater than the length of the threaded cylinder (211); a connecting bearing (231) is fixedly arranged on each pressing plate (23), and each connecting bearing (231) is fixedly connected with the lower part of the threaded rod (22).
6. The detection device of claim 5, wherein, Two locking nuts are threadedly arranged on each threaded rod (22), and the two locking nuts are in contact with the upper part and the lower part of the threaded cylinder (211) respectively.
7. The detection device of claim 1, wherein, Each of the pressing plates (23) is provided with a groove, the depth of each groove is less than the thickness of the temperature sensor (3) and the vibration sensor (4), and a rubber layer (232) is fixedly arranged on the groove wall of each groove, and the two rubber layers (232) are in contact with the temperature sensor (3) and the vibration sensor (4) respectively.
8. The detection device of claim 1, wherein, The network security server comprises a main server (5) and a plurality of sub-servers (6) which are electrically connected, each of the sub-servers (6) comprises a server mainboard (1); the server mainboard (1) is provided with a central processing module (11) and a communication module (12) which are electrically connected, the temperature sensor (3) and the vibration sensor (4) are electrically connected with the central processing module (11), and the communication module (12) is electrically connected with the main server (5).