Server safety testboard
By designing a server safety compliance testing platform and employing horizontal conveying, lifting, and translation devices, the server safety compliance testing was automated, solving the problem of low production efficiency caused by manual intervention and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIONGAN BAIXIN INFORMATION TECHNOLOGY CO LTD
- Filing Date
- 2025-04-29
- Publication Date
- 2026-05-05
AI Technical Summary
The current server security testing process requires a significant amount of manual intervention, resulting in low production efficiency.
Design a server safety testing platform, including a safety testing rack and a server transfer platform, and use a horizontal transfer device, a lifting device and a translation device to realize the automated transfer and testing of servers.
It has automated server security testing, reduced manual intervention, and improved production efficiency.
Smart Images

Figure CN224203237U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of server production equipment technology, and in particular to a server safety testing bench. Background Technology
[0002] Safety testing is a series of tests that ensure server products comply with relevant safety standards and specifications in terms of electrical safety, mechanical safety, and electromagnetic compatibility.
[0003] Grounding resistance test: The effectiveness of the grounding system is ensured by measuring the resistance between the server grounding terminal and accessible metal parts. Generally, the grounding resistance is required not to exceed the specified value (such as 0.1Ω) to ensure that the current can be safely conducted to the ground in the event of an electrical fault, thus preventing electric shock to personnel.
[0004] Insulation resistance test: Use an insulation resistance tester to measure the insulation resistance between different live parts and between live parts and the casing. The insulation resistance is usually required to be above the megohm level to prevent leakage.
[0005] Electrical strength test: Apply a certain AC or DC high voltage (such as 1500V, 2000V, etc.) to the server for a certain period of time (such as 1 minute) and observe whether there are any phenomena such as breakdown or flashover, to verify that the server's insulation performance can withstand normal operating voltage and possible transient overvoltage.
[0006] Electromagnetic interference test: Measure the intensity of electromagnetic radiation generated by the server to the outside world under normal operating conditions, including conducted interference and radiated interference, to ensure that its electromagnetic radiation does not exceed the limits specified in relevant standards, so as not to interfere with surrounding electronic equipment.
[0007] Electromagnetic immunity testing: This test verifies the server's ability to resist external electromagnetic interference, such as electrostatic discharge immunity, radio frequency electromagnetic field radiation immunity, and electrical fast transient / burst immunity. It ensures that the server can work normally in various electromagnetic environments without experiencing performance degradation, crashes, or other abnormalities.
[0008] As part of the server production process, security testing is currently mainly conducted by accepting servers that have been taken offline from the pipeline. The process includes accepting servers that have been taken offline from the pipeline, transferring these services to the security testing platform for testing, and then classifying and transferring the servers according to the security test results after the testing is completed.
[0009] It can be seen that the current safety testing process requires a lot of human intervention, resulting in low production efficiency.
[0010] Therefore, it is necessary to develop a server security testing platform. Utility Model Content
[0011] This invention provides a server safety testing bench to solve the problem of manual intervention required in the server testing process in the prior art.
[0012] In a first aspect, this utility model provides a server security testing bench, comprising:
[0013] Safety testing rack and server transmission station;
[0014] The safety test frame is a cubic frame with open sides, and the server transmission platform is installed below the safety test frame with open sides.
[0015] The server transfer station includes a transfer rack, a horizontal transfer device, a lifting device, and a first translation device.
[0016] The horizontal conveying device is laid above the conveying frame along the extension direction of the conveying frame, the lifting device is located below the safety test frame, and the first translation device is located on the second side of the safety test frame closer to the server conveying platform.
[0017] When the server is transferred to the first side of the server transfer platform, the server is transferred to the area below the lifting device via the horizontal transfer device and is lifted by the lifting device.
[0018] When the server is lowered by the lifting device, the server is transferred to the second side of the server transfer platform via the horizontal transfer device, and is moved out of the server transfer platform via the first translation device if the server fails the safety test.
[0019] In some possible implementations, the horizontal conveying device includes: a power unit, a drive shaft, and a sprocket assembly;
[0020] The main body of the power unit is fixedly connected to the conveyor frame, and the power output end of the power unit is connected to the drive shaft.
[0021] The sprocket assembly includes two sprocket groups. The driving sprocket of the sprocket group is fixedly connected to the drive shaft, and the driven sprocket of the sprocket group is rotatably connected to the conveyor frame. The chain of the sprocket group surrounds the driving sprocket and the driven sprocket.
[0022] The chains of the two sprocket sets are arranged parallel to each other along the extension direction of the conveyor frame;
[0023] The drive shaft is located on the second side of the server transmission platform.
[0024] In some possible implementations, the inner side of the conveyor frame is provided with a guide groove, the bottom of which is lower than the upper surface of the conveyor chain, and the width of the guide groove is clearance-fitted with the width of the server or the width of the server support frame.
[0025] In some possible implementations, the first translation device includes: a conveyor belt and a first lifting cylinder;
[0026] The fixed end of the first lifting cylinder is fixedly connected to the conveyor frame, and the moving end of the first lifting cylinder is fixedly connected to the conveyor belt.
[0027] The conveyor belt's conveying direction is perpendicular to the extension direction of the conveyor frame, and the conveyor belt is located in the horizontal conveying device;
[0028] The conveyor belt is located on the second side of the safety testing rack, closer to the server conveyor platform;
[0029] When the moving end of the first lifting cylinder is activated, the conveying surface of the conveyor belt is higher or lower than the conveying surface of the horizontal conveying device.
[0030] In some possible implementations, the conveyor belt includes: a pulley frame and two parallel pulley assemblies;
[0031] The pulley assembly includes: a plurality of pulleys and a belt surrounding the plurality of pulleys;
[0032] The plurality of pulleys are arranged in a line and are rotatably connected to the pulley frame;
[0033] The upper surfaces of the belts of the two pulley assemblies are coplanar.
[0034] In some possible implementations, the conveyor belt further includes a support plate located between the two pulley assemblies, the support plate being fixedly connected to the pulley frame, and the upper surface of the support plate being lower than the conveying surface of the two pulley assemblies.
[0035] In some possible implementations, the lifting device includes: a pallet, a lifting cylinder, and a guide assembly;
[0036] The fixed end of the lifting cylinder and the fixed end of the guide assembly are respectively fixedly connected to the conveyor frame, and the moving end of the lifting cylinder and the moving end of the guide assembly are fixedly connected to the lower surface of the pallet.
[0037] In some possible implementations, the server security testing bench further includes: a first blocker and a second blocker;
[0038] The first blocker and the second blocker are respectively equipped with a power lifting device and a blocking end;
[0039] When the power lifting device is activated, the blocking ends of the first and second blocks are higher or lower than the transmission plane of the server transmission platform.
[0040] The first blocker is fixedly installed below the safety test rack on one side near the second side of the server transmission platform;
[0041] The second blocker is fixedly installed on the side of the server transfer station that is closer to the first side of the first translation device.
[0042] In some possible implementations, the server safety testing bench further includes a second translation device, the structure of which is the same as that of the first translation device;
[0043] The second translation device is located on the side of the safety test rack that is closer to the first side of the server transfer station.
[0044] In some possible implementations, the server safety test bench includes a limit switch, the moving end of which is located on a second side of the server transfer table relative to the first translation device.
[0045] The beneficial effects of this utility model embodiment compared with the prior art are:
[0046] This invention discloses a server safety testing bench. The four sets of sprocket assemblies in this invention are synchronized via a first rotating shaft, and the four parts of the transmission device are fixed to the four sets of sprocket assemblies. In this way, the four fixed ends of the transmission device rise and fall the same distance each time, ensuring smooth rise and fall of the server. Furthermore, this invention eliminates the need for guide rails, making installation and debugging more convenient.
[0047] This utility model automates the upgrading and transfer of servers, resulting in high operational efficiency, minimal human intervention, and improved work efficiency. Attached Figure Description
[0048] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art 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.
[0049] Figure 1This is a first perspective view of the server safety testing bench provided in this embodiment of the utility model;
[0050] Figure 2 This is a side view of the server safety testing bench provided in this embodiment of the utility model;
[0051] Figure 3 This is a first perspective view of the server transmission platform and transfer vehicle provided in the embodiments of this utility model;
[0052] Figure 4 This is a second perspective view of the server transmission platform and transfer vehicle provided in this embodiment of the utility model;
[0053] Figure 5 This is a bottom view of the server transmission platform and transfer vehicle provided in this embodiment of the utility model;
[0054] Figure 6 This is a first perspective view of the server transmission platform provided in this embodiment of the utility model;
[0055] Figure 7 This is a second perspective view of the server transmission platform provided in this embodiment of the utility model;
[0056] Figure 8 This is a third perspective view of the server transmission platform provided in this embodiment of the utility model.
[0057] In the picture:
[0058] 100 Safety testing fixtures;
[0059] 200 server transfer stations;
[0060] 210 conveyor belts;
[0061] 211 Guide groove;
[0062] 220 Horizontal conveyor;
[0063] 221 Power unit;
[0064] 222 Drive shaft;
[0065] 230 Lifting device;
[0066] 231 Pallet;
[0067] 232 Lifting cylinder;
[0068] 233 Guiding components;
[0069] 240 First translation device;
[0070] 241 First lifting cylinder;
[0071] 242 Wheeled frame;
[0072] 243 Pulley;
[0073] 244 Belt;
[0074] 245 Support plate;
[0075] 250 Second translation device;
[0076] 260 First stopper;
[0077] 270 Second stopper;
[0078] 280 Limit Switch;
[0079] 300 transfer vehicles;
[0080] 400 server. Detailed Implementation
[0081] In the following description, specific details such as particular system structures and techniques are set forth for illustrative purposes and not for limitation, in order to provide a thorough understanding of the embodiments of the present invention. However, those skilled in the art will understand that the present invention can also be implemented in other embodiments without these specific details. In other instances, detailed descriptions of well-known systems, apparatuses, and methods have been omitted so as not to obscure the description of the present invention with unnecessary detail.
[0082] To make the objectives, technical solutions, and advantages of this utility model clearer, the following description will be provided in conjunction with the accompanying drawings and specific embodiments.
[0083] The embodiments of this utility model are described in detail below. This example is implemented based on the technical solution of this utility model, and provides detailed implementation methods and specific operation processes. However, the protection scope of this utility model is not limited to the following embodiments.
[0084] The first aspect of this utility model provides a server security testing bench, comprising:
[0085] Safety testing rack 100 and server transfer station 200;
[0086] The safety test rack 100 is a cubic frame with open sides, and the server transmission platform 200 is installed below the safety test rack 100 with open sides.
[0087] The server transfer station 200 includes a transfer rack 210, a horizontal transfer device 220, a lifting device 230, and a first translation device 240.
[0088] The horizontal conveying device 220 is laid above the conveying frame 210 along the extension direction of the conveying frame 210, the lifting device 230 is disposed below the safety test frame 100, and the first translation device 240 is located on the second side of the safety test frame 100 that is closer to the server conveying platform 200.
[0089] When the server 400 is transferred to the first side of the server transfer station 200, the server 400 is transferred to the underside of the lifting device 230 via the horizontal transfer device 220 and is lifted by the lifting device 230.
[0090] When the server 400 is lowered by the lifting device 230, the server 400 is transferred to the second side of the server transfer platform 200 via the horizontal transfer device 220, and is transferred out of the server transfer platform 200 via the first translation device 240 if the server fails the safety test.
[0091] For example, such as Figure 1-8 As shown, the present invention provides a server safety testing bench, which includes a safety testing rack 100 and a server transfer table 200. The safety testing rack 100 is used to support safety testing equipment, such as a computer for safety testing and some connectors. The safety testing rack 100 is a three-dimensional frame with open sections on the lower left and right sides, through which the server transfer table 200 passes.
[0092] The function of the server transfer station 200 is to transfer the server 400 from the pipeline to below the safety test rack 100, locate the server 400 and lift it off the pipeline for testing. After the test is completed, the server 400 is transferred to the next stage. If the server 400 fails the safety test, the server 400 with the safety test problem is removed from the pipeline.
[0093] To achieve the above objectives, the server transfer station 200 includes a horizontal transfer device 220 for receiving servers 400 on the pipeline and transferring them below the safety testing rack 100; a lifting device 230 for lifting the server 400 away from the horizontal transfer device 220 when it is transferred below the safety testing rack 100 by the horizontal transfer device 220, and for returning the server 400 to the horizontal transfer device 220 after the server 400 has been tested, so that it can be transferred to the next stage; and a first translation device 240 for lifting and transferring the server 400 out of the horizontal transfer device 220 when the server 400 has a safety testing problem and is transferred to the first translation device 240.
[0094] All of the above devices are fixed by the conveyor frame 210. Among them, the first translation device 240 has the functions of lifting and conveying, and the conveying direction of the device is perpendicular to the conveying direction of the horizontal conveyor device 220.
[0095] This utility model's server safety testing platform can receive a server 400 from the production line, transfer it to the safety testing rack 100, and remove it from the production line for testing. After the test is completed, it can be returned to the production line for circulation. If the server 400 has safety testing problems, it can be transferred out of the production line. The above device is connected to a control device to complete the automated operation, reduce the process of human intervention, and improve production efficiency.
[0096] In some embodiments, the horizontal conveying device 220 includes: a power unit 221, a drive shaft 222, and a sprocket assembly;
[0097] The main body of the power unit 221 is fixedly connected to the conveyor frame 210, and the power output end of the power unit 221 is connected to the drive shaft 222.
[0098] The sprocket assembly includes two sprocket groups. The driving sprocket of the sprocket group is fixedly connected to the drive shaft 222, and the driven sprocket of the sprocket group is rotatably connected to the conveyor frame 210. The chain of the sprocket group surrounds the driving sprocket and the driven sprocket.
[0099] The chains of the two sprocket sets are arranged parallel to each other along the extension direction of the conveyor frame 210;
[0100] The drive shaft 222 is located on the second side of the server conveyor 200.
[0101] In some embodiments, the inner side of the conveyor 210 is provided with a guide groove 211, the bottom of the guide groove 211 is lower than the upper surface of the conveyor of the chain, and the width of the guide groove 211 is fitted with the width of the server 400 or the width of the server support frame.
[0102] For example, the horizontal conveying device 220 of this utility model adopts two sets of synchronously operating sprocket assemblies. The two sets of sprocket assemblies are synchronized through the drive shaft 222. The two sets of sprocket assemblies are arranged at intervals on both sides of the conveying frame 210. The power device 221 is driven by the drive shaft 222 and is arranged on one side of the conveying direction.
[0103] In some scenarios, a guide groove 211 is provided on the conveyor 210. The width of the server 400 or the server support is matched with the guide groove 211 with a clearance. The bottom of the guide groove 211 is lower than the conveying plane of the sprocket assembly. In this way, the server 400 or the server support will move forward along the guide groove 211 under the drag of the sprocket assembly, avoiding the server 400 from rotating during the forward movement and preventing the server 400 from changing its position relative to the safety inspection equipment, thus facilitating positioning.
[0104] In some embodiments, the first translation device 240 includes a conveyor belt and a first lifting cylinder 241;
[0105] The fixed end of the first lifting cylinder 241 is fixedly connected to the conveyor frame 210, and the moving end of the first lifting cylinder 241 is fixedly connected to the conveyor belt.
[0106] The conveying direction of the conveyor belt is perpendicular to the extension direction of the conveyor frame 210, and the conveyor belt is located in the horizontal conveying device 220;
[0107] The conveyor belt is located on the second side of the safety test rack 100, closer to the server conveyor platform 200.
[0108] When the moving end of the first lifting cylinder 241 is activated, the conveying surface of the conveyor belt is higher or lower than the conveying surface of the horizontal conveying device 220.
[0109] In some embodiments, the conveyor belt includes: a pulley frame 242 and two parallel pulley assemblies;
[0110] The pulley assembly includes: a plurality of pulleys 243 and a belt 244 surrounding the plurality of pulleys 243;
[0111] The plurality of pulleys 243 are arranged in a line and are rotatably connected to the pulley frame 242 respectively;
[0112] The upper surfaces of the belts 244 of the two pulley assemblies are coplanar.
[0113] In some embodiments, the conveyor belt further includes a support plate 245 located between the two pulley assemblies, the support plate 245 being fixedly connected to the pulley frame 242, and the upper surface of the support plate 245 being lower than the conveying surface of the two pulley assemblies.
[0114] For example, as described above, the first translation device 240 is used to transfer the server 400 with safety inspection problems out of the production line. It has two functions: lifting and translation. In order to achieve this purpose, the present invention drives the pulley frame 242 of the conveyor belt by the first lifting cylinder 241. When the pulley frame 242 is raised, the conveying surface of the conveyor belt is higher than the horizontal conveying device 220. When it is lowered, the conveying surface of the conveyor belt is lower than the horizontal conveying device 220.
[0115] The conveyor belt is located between the two sprocket assemblies, and the conveying direction is the same as that of the sprocket assemblies. When the first lifting cylinder 241 is raised, the server 400 is lifted by the conveyor belt, and then the server 400 is transferred to the outside of the assembly line through the transmission action of the conveyor belt.
[0116] In some scenarios, the conveyor belt consists of two synchronously running belts 244, which are coplanar and parallel, and supported and driven by multiple pulleys 243.
[0117] In other scenarios, a support plate 245 is provided between the two belts 244. The surface of the support plate 245 is lower than the upper surface of the two belts 244. The support plate 245 can reduce the supporting force of the belts 244, reduce the wear on the belts 244 and pulleys 243, and the conveyor belts 244 rely on the support plate 245 for smoother transmission.
[0118] In some embodiments, the lifting device 230 includes: a support plate 231, a lifting cylinder 232, and a guide assembly 233;
[0119] The fixed end of the lifting cylinder 232 and the fixed end of the guide assembly 233 are respectively fixedly connected to the conveyor frame 210, and the moving end of the lifting cylinder 232 and the moving end of the guide assembly 233 are fixedly connected to the lower surface of the pallet 231.
[0120] For example, the lifting device 230 is a pallet 231 driven by a lifting cylinder 232 with a guide component 233. In some scenarios, the guide component 233 is a vertically arranged slide bar and slide sleeve. When the lifting cylinder 232 drives the pallet 231 to rise and fall, it slides along the guide component 233, which ensures the lateral rigidity of the lifting device 230 and makes the lifting process smoother.
[0121] In some embodiments, the server security testing bench further includes: a first blocker 260 and a second blocker 270;
[0122] The first blocker 260 and the second blocker 270 are respectively provided with a power lifting device and a blocking end;
[0123] When the power lifting device is activated, the blocking ends of the first blocker 260 and the second blocker 270 are higher or lower than the conveying plane of the server conveyor 200.
[0124] The first blocker 260 is fixedly installed below the safety test rack 100 on one side near the second side of the server transmission platform 200;
[0125] The second blocker 270 is fixedly disposed on the side of the server transfer station 200 that is close to the first side of the first translation device 240.
[0126] For example, in some scenarios, two power stoppers are provided. When the server 400 is conveyed with the horizontal conveyor 220, if the stoppers are raised, the server 400 will complete the positioning by passing through the guide groove 211 and the stoppers.
[0127] Typically, the two barriers are located below the safety test rack 100 and behind the first translation device 240, respectively. The former is used to complete the positioning before the safety test, and the latter is used to complete the positioning of the server 400 to be transferred out.
[0128] Because the blocker is variable, when the blocker is lowered, the server 400 can move along with the horizontal conveyor 220.
[0129] In some embodiments, the server safety testing bench further includes a second translation device 250, the structure of which is the same as that of the first translation device 240;
[0130] The second translation device 250 is located on the side of the safety test rack 100 that is closer to the first side of the server transfer station 200.
[0131] In some embodiments, the server safety testing bench includes a limit switch 280, the moving end of which is located on a second side of the server conveyor 200 relative to the first translation device 240.
[0132] For example, in some scenarios, a second translation device 250 is also provided. This device has the same structure as the first translation device 240 and is set on one side of the entrance of the safety test rack 100. It is used to transfer some servers 400 outside the pipeline to the pipeline and test them again through the safety test rack.
[0133] In addition, in some scenarios, a limit switch 280 is provided behind the first translation device 240. When the server 400 moves to the position of the limit switch 280, the limit switch 280 feeds back a switching signal, which can be used to control the lifting and translation operation of the first translation device 240, making it easy to achieve automatic control.
[0134] It should be understood that the sequence number of each step in the above embodiments does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of this utility model.
[0135] The following are embodiments of the device of this utility model. For details not described in detail, please refer to the corresponding method embodiments described above.
Claims
1. A server safety testing bench, characterized in that, include: Safety testing rack (100) and server transfer station (200); The safety test rack (100) is a cubic frame with open sides, and the server transmission platform (200) is installed below the safety test rack (100) with open sides. The server transfer station (200) includes a transfer rack (210), a horizontal transfer device (220), a lifting device (230), and a first translation device (240). The horizontal conveying device (220) is laid above the conveying frame (210) along the extension direction of the conveying frame (210), the lifting device (230) is disposed below the safety test frame (100), and the first translation device (240) is located on the second side of the safety test frame (100) closer to the server conveying platform (200). When the server is transferred to the first side of the server transfer station (200), the server is transferred to the underside of the lifting device (230) via the horizontal transfer device (220) and lifted by the lifting device (230); When the server is lowered by the lifting device (230), the server is transferred to the second side of the server transfer platform (200) via the horizontal transfer device (220), and is transferred out of the server transfer platform (200) via the first translation device (240) if the server fails the safety test.
2. The server safety testing bench according to claim 1, characterized in that, The horizontal conveying device (220) includes: a power unit (221), a drive shaft (222), and a sprocket assembly; The main body of the power unit (221) is fixedly connected to the conveyor frame (210), and the power output end of the power unit (221) is connected to the drive shaft (222) in a transmission connection. The sprocket assembly includes two sprocket groups. The driving sprocket of the sprocket group is fixedly connected to the drive shaft (222), and the driven sprocket of the sprocket group is rotatably connected to the conveyor frame (210). The chain of the sprocket group surrounds the driving sprocket and the driven sprocket. The chains of the two sprocket sets are arranged parallel to each other along the extension direction of the conveyor frame (210); The drive shaft (222) is located on the second side of the server conveyor (200).
3. The server safety testing bench according to claim 2, characterized in that, The inner side of the conveyor frame (210) is provided with a guide groove (211), the bottom of the guide groove (211) is lower than the upper surface of the conveyor of the chain, and the width of the guide groove (211) is matched with the width of the server or the width of the server support frame.
4. The server safety testing bench according to claim 1, characterized in that, The first translation device (240) includes: a conveyor belt and a first lifting cylinder (241); The fixed end of the first lifting cylinder (241) is fixedly connected to the conveyor frame (210), and the moving end of the first lifting cylinder (241) is fixedly connected to the conveyor belt. The conveying direction of the conveyor belt is perpendicular to the extension direction of the conveyor frame (210), and the conveyor belt is located in the horizontal conveying device (220). The conveyor belt is located on the second side of the server conveyor (200) relative to the safety test rack (100); When the moving end of the first lifting cylinder (241) is activated, the conveying surface of the conveyor belt is higher or lower than the conveying surface of the horizontal conveying device (220).
5. The server safety testing bench according to claim 4, characterized in that, The conveyor belt includes: a pulley frame (242) and two parallel pulley assemblies; The pulley assembly includes: a plurality of pulleys (243) and a belt (244) surrounding the plurality of pulleys (243); The plurality of pulleys (243) are arranged in a line and are rotatably connected to the pulley frame (242); The upper surfaces of the belts (244) of the two pulley assemblies are coplanar.
6. The server safety testing bench according to claim 5, characterized in that, The conveyor belt further includes a support plate (245), which is located between the two pulley assemblies. The support plate (245) is fixedly connected to the pulley frame (242), and the upper surface of the support plate (245) is lower than the conveying surface of the two pulley assemblies.
7. The server safety testing bench according to claim 1, characterized in that, The lifting device (230) includes: a pallet (231), a lifting cylinder (232), and a guide assembly (233). The fixed end of the lifting cylinder (232) and the fixed end of the guide assembly (233) are respectively fixedly connected to the conveyor frame (210), and the moving end of the lifting cylinder (232) and the moving end of the guide assembly (233) are fixedly connected to the lower surface of the pallet (231).
8. The server safety testing bench according to claim 1, characterized in that, The server safety testing bench also includes: a first blocker (260) and a second blocker (270). The first blocker (260) and the second blocker (270) are respectively provided with a power lifting device and a blocking end; When the power lifting device is activated, the blocking ends of the first blocker (260) and the second blocker (270) are higher or lower than the transmission plane of the server transmission platform (200). The first blocker (260) is fixedly installed on the side below the safety test rack (100) near the second side of the server transfer station (200); The second blocker (270) is fixedly disposed on the side of the server transfer station (200) relative to the first translation device (240).
9. The server security testing bench according to any one of claims 1-8, characterized in that, The server safety testing bench also includes a second translation device (250), the structure of which is the same as that of the first translation device (240); The second translation device (250) is located on the first side of the safety test rack (100) closer to the server transfer station (200).
10. The server security testing bench according to any one of claims 1-8, characterized in that, The server safety test bench includes a limit switch (280), the moving end of which is located on the second side of the server transfer station (200) relative to the first translation device (240).