Electromagnetically fixed server hanger and method thereof

Through electromagnetic fixing components and reinforced fixing mechanism, the fixing inconvenience caused by the simple structure of the server ears is solved, and the server is easily installed and efficiently disassembled, improving the installation firmness and operation convenience.

CN120406673AActive Publication Date: 2025-08-01SHENZHEN BUMBLEBEE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510563165.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2025-08-01
Estimated Expiration
2045-04-30

AI Technical Summary

Technical Problem

The existing server hooking structure is simple, which makes the server inconvenient to fix it, especially in a small space, and the screws are easy to loosen, affecting the installation firmness and disassembly efficiency.

Method used

The electromagnetic fixing components are adopted, including electromagnets and mating iron plates, and the server is quickly fixed and unlocked through electromagnetic adsorption, combined with the mobile carrier plate and the reinforced fixing mechanism to enhance connection stability.

Benefits of technology

It realizes convenient installation and disassembly of the server, improves operation efficiency, ensures the firmness of the installation and the portability of the tools, and is convenient for maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of servers, in particular to an electromagnetically-fixed server hanging lug and a method thereof.The electromagnetically-fixed server hanging lug comprises hanging lug bodies, the hanging lug bodies are fixedly arranged at the two ends of a device body bearing plate strip, and the device body bearing plate strip is fixedly installed on a server body; the server body is fixedly installed on the machine body frame through the hanging lug body, electromagnetic fixing assemblies are symmetrically installed at the two ends of the machine body bearing plate strip, a fixed matching assembly is arranged on the machine body frame, the electromagnetic fixing assemblies are matched with the fixed matching assembly to fix the server body, and an electromagnetic driving mechanism is installed on the hanging lug body. The electromagnetic driving mechanism is driven through the electromagnetic fixing assembly, and the invention further relates to an electromagnetic fixing method which comprises the following steps that firstly, an electromagnet is positioned; step 2, positioning the server body; 3, fixing the electromagnet and the server body; and 4, fixing the server body.
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Description

Technical Field

[0001] The present invention relates to the technical field of servers, and specifically to an electromagnetic-fixed server ear and its method. Background Technique

[0002] During the computer manufacturing process, it is usually necessary to set ears outside the server to facilitate the user to later fix and install the server on the rack through the ears when using the server. However, the existing server ears have a relatively simple structure. When fixing the server, it is usually necessary to use screws in cooperation with the ears to fix the server on the rack, making the installation and disassembly of the server rather troublesome. It is often impossible to achieve convenient installation and disassembly of the server. Moreover, when installing and disassembling the server in some relatively narrow spaces, the operating tools are often restricted by the space, resulting in inconvenient operation of the ears and screws, further affecting the installation and disassembly efficiency of the server. In addition, the screws may also become loose, affecting the firmness of the server installation. Furthermore, when installing the server by cooperating the screws with the ears, after a long time, the screws will have the phenomenon of difficult screwing, causing certain obstacles to the disassembly of the server. Summary of the Invention

[0003] The purpose of the present invention is to provide an electromagnetic-fixed server ear and its method to solve the problems raised in the above background technique.

[0004] To achieve the above purpose, the present invention provides the following technical solutions: An electromagnetic-fixed server ear, including an ear body, the ear body is fixedly arranged at both ends of the body support strip, the body support strip is fixedly installed on the server body, and the server body is fixedly installed on the machine body rack through the ear body; Electromagnetic fixing components are symmetrically installed at both ends of the body support strip, a fixing cooperation component is arranged on the machine body rack, and the electromagnetic fixing components cooperate with the fixing cooperation component to realize the fixation of the server body; An electromagnetic driving mechanism is installed on the ear body, and the electromagnetic driving mechanism is driven by the electromagnetic fixing components; The electromagnetic driving mechanism is connected with a strengthening fixing mechanism, and the strengthening fixing mechanism fixes the electromagnetic fixing components to strengthen the connection between them and the server body; The electromagnetic driving mechanism is also connected with a server auxiliary fixing mechanism, and the server auxiliary fixing mechanism can assist in fixing the server body.

[0005] Preferably, the electromagnetic fixing component is an electromagnet, an upper limit jack is opened at the upper end of the electromagnet, and a strengthening jack is also opened on one side of the electromagnet.

[0006] Preferably, the reinforced fixing mechanism cooperates with the upper limit jack to achieve the first level of fixation of the electromagnet.

[0007] Preferably, the reinforced fixing mechanism cooperates with the reinforced socket to achieve a second level of fixation of the electromagnet.

[0008] Preferably, the fixed fitting component is a fitting iron plate, and the electromagnet is adsorbed onto the fitting iron plate to fix the server body.

[0009] Preferably, the electromagnetic driving mechanism is a movable carrier plate, an adsorption iron plate is fixedly provided on the movable carrier plate, and the electromagnet drives the movable carrier plate to move by adsorbing the adsorption iron plate.

[0010] Preferably, the reinforcing and fixing mechanism includes a receiving strip and a movable reinforcing plate, and the movable bearing plate drives the receiving strip to move; A reinforcing stabilizing block is fixedly provided on the receiving strip, and the reinforcing stabilizing block is matched with the reinforcing socket.

[0011] Preferably, a downward pressure reinforcing column is fixedly provided on the movable reinforcing plate, and the receiving strip drives the movable reinforcing plate to move, so that the downward pressure reinforcing column on the movable reinforcing plate cooperates with the upper limit insertion hole.

[0012] Preferably, the server auxiliary fixing mechanism is a movable reinforcement bar, and the movable reinforcement bar cooperates with the matching iron plate.

[0013] An electromagnetic fixing method comprises the following steps: Step 1: Positioning of the electromagnet: Position the electromagnet on the support strip of the device body; Step 2: Positioning the server body: Position the server body on the body frame; Step 3: Fixing the electromagnet to the server body: Powering on the electromagnet drives the movable carrier plate to move, which in turn drives the receiving strip and the movable reinforcing plate to move, thereby achieving a fixed connection between the electromagnet and the server body. Step 4: Fixing the server body: After the electromagnet is energized, it is adsorbed on the matching iron plate, and at the same time, the moving bearing plate drives the movable reinforcement bar to move, further strengthening the fixation of the server body.

[0014] Compared with the prior art, the present invention has the following advantages: 1. An electromagnet is installed on the mounting ear of the server body. The server is fixed by the adsorption force between the electromagnet and the matching iron plate on the body frame. The operation is very simple. Just press the push switch to energize the electromagnet to complete the fixed installation of the server. No tools are required, which greatly improves the installation and removal efficiency of the server. The electromagnetic fixation is stable and efficient, and it is very convenient to use.

[0015] 2. After the electromagnet is energized, it will also move the movable carrier plate, thereby causing the movable carrier plate to move toward the direction of the electromagnet. As the movable carrier plate moves, it will drive the receiving plate to move, thereby causing the reinforcing stabilizing block on the receiving plate to be inserted into the reinforcing socket on the electromagnet, thereby strengthening the connection strength between the electromagnet and the server body. As the receiving plate moves, it will also drive the movable reinforcing plate to move downward, thereby causing the downward pressure reinforcing column on the movable reinforcing plate to be inserted into the upper limit socket on the electromagnet, thereby further strengthening the connection strength between the server body and the electromagnet.

[0016] 3. In addition, after the electromagnet is energized, it is adsorbed with the matching iron plate to realize the electromagnetic fixation of the server. At the same time, as the movable carrier plate moves, it will also drive the movable reinforcement bar to move, so that the connecting columns on the movable reinforcement bar are plugged into the plug-in holes. In this way, with the cooperation of the connecting columns and the plug-in holes, the firmness of the installation of the server body can be further enhanced. When the server body needs to be disassembled, it is only necessary to turn off the power to the electromagnet to unlock the server body. In the power-off state, the electromagnet is also in the unlocked state, which is convenient for quick removal of the electromagnet. When it fails, it is convenient to repair or replace it. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the assembly of the server body and the body frame.

[0018] Figure 2 for Figure 1 Enlarged schematic diagram of point A in the middle.

[0019] Figure 3 It is a structural diagram of the body frame.

[0020] Figure 4 Schematic diagram of the first perspective of the assembly of the body support strips.

[0021] Figure 5 Schematic diagram of the second perspective of the assembly of the body support strips.

[0022] Figure 6 for Figure 5 Enlarged schematic diagram of point B in the middle.

[0023] Figure 7 This is a first-person perspective structural diagram of the body support strips.

[0024] Figure 8 This is a schematic structural diagram of the body support strips from a second perspective.

[0025] Figure 9 Schematic diagram of the structure of the electromagnet.

[0026] Figure 10 It is a schematic diagram of the assembly of the movable carrying plate and the receiving strip.

[0027] Figure 11 Schematic diagram of the structure of the movable reinforcement plate.

[0028] In the figure: 1. Body support strip; 11. Ear body; 12. Supporting vertical rod; 13. Limiting top plate; 14. Through channel; 15. Support inner plate; 151. Bearing rod; 152. Limiting block; 16. Assembly through hole; 17. Matching connecting plate; 171. Conductive column; 18. Lower convex guide plate; 181. Inner bearing groove; 182. Support connecting hole; 183. Support inner rod; 19. Press switch; 191. Wire; 2. Server body; 3. Body frame; 31. Matching iron plate; 32. Guide channel; 33. Connecting hole; 4. Electromagnet; 41. Upper limit jack; 42. Reinforcement Socket; 43, matching cavity hole; 44, conductive hole; 5, movable bearing plate; 51, movable guide hole; 52, reset spring; 53, adsorption iron plate; 54, lower connecting bar; 55, first matching connecting rod; 56, second matching connecting rod; 6, receiving plate; 61, connecting strip plate; 62, reinforcing stabilizing block; 63, bearing matching rod; 64, connecting vertical plate; 65, connecting bearing bar; 66, connecting supporting column; 7, movable reinforcing plate; 71, limiting through hole; 72, downward pressing reinforcing column; 73, extended bearing bar; 74, downward driving frame; 8, movable reinforcing bar; 81, bearing channel; 82, connecting bearing column. DETAILED DESCRIPTION

[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] The present invention provides a technical solution: like Figure 1As shown in the figure, an electromagnetic fixed server ear includes an ear body 11. The ear body 11 is fixedly arranged at both ends of the server body supporting strip 1, and the server body supporting strip 1 is fixedly installed on the server body 2. The server body 2 is fixedly installed on the machine body frame 3 through the ear body 11. Symmetrically installed at both ends of the server body supporting strip 1 are electromagnetic fixing components, and on the machine body frame 3 is provided a fixing and matching component. The electromagnetic fixing component cooperates with the fixing and matching component to realize the fixation of the server body 2. An electromagnetic driving mechanism is installed on the ear body 11. The electromagnetic driving mechanism is driven through the electromagnetic fixing component. The electromagnetic driving mechanism is connected with a strengthening fixing mechanism, and the strengthening fixing mechanism fixes the electromagnetic fixing component to strengthen the connection between it and the server body 2. The electromagnetic driving mechanism is also connected with a server auxiliary fixing mechanism, and the server auxiliary fixing mechanism can assist in fixing the server body 2.

[0031] As Figure 7 and Figure 8 shown in the figure, a receiving vertical rod 12 is fixedly arranged at the upper end of the ear body 11, a limiting top plate 13 is fixedly arranged at the upper end of the receiving vertical rod 12, and a through channel 14 is opened on the ear body 11. A supporting inner plate 15 is fixedly arranged in the through channel 14. A bearing rod 151 is fixedly arranged on the supporting inner plate 15, and a limiting block 152 is fixedly arranged on the bearing rod 151. An assembly through hole 16 is opened on the lower side of the ear body 11. Symmetrically and fixedly installed at both ends of the server body supporting strip 1 are matching connecting plates 17. A conductive column 171 is fixedly arranged on the matching connecting plate 17, and a downward convex guiding plate 18 is fixedly arranged on the server body supporting strip 1 on the lower side of the matching connecting plate 17. An inner bearing groove 181 is opened on the downward convex guiding plate 18, and supporting connecting holes 182 are symmetrically opened on both sides of the inner bearing groove 181. A supporting inner rod 183 is fixedly arranged in the inner bearing groove 181. A pressing switch 19 is also fixedly installed on the server body supporting strip 1. The pressing switch 19 is connected with a wire 191, and the other end of the wire 191 is connected to a power supply in the prior art.

[0032] As Figure 1 and Figure 9 shown in the figure, the electromagnetic fixing component is an electromagnet 4. An upper limiting jack 41 is opened at the upper end of the electromagnet 4, and a strengthening jack 42 is also opened on one side of the electromagnet 4. The strengthening fixing mechanism cooperates with the upper limiting jack 41 to realize the first layer of fixation of the electromagnet 4. A matching cavity hole 43 is also arranged at the lower end of the electromagnet 4, and a conductive hole 44 is arranged in the matching cavity hole 43. When the electromagnet 4 is installed on the server body supporting strip 1, the matching connecting plate 17 is inserted into the matching cavity hole 43, and at this time the conductive column 171 is inserted into the conductive hole 44, and the matching connecting plate 17 is in contact with the inner wall of the matching cavity hole 43.

[0033] The strengthening fixing mechanism cooperates with the strengthening jack 42 to realize the second layer of fixation of the electromagnet 4.

[0034] AsFigure 1 、 Figure 2 and Figure 3 As shown, the fixed matching component is a matching iron plate 31, and the electromagnet 4 is adsorbed on the matching iron plate 31 to fix the server body 2. A guide channel 32 is opened on the matching iron plate 31, and plug-in holes 33 are symmetrically opened on both sides of the guide channel 32. When the server body 2 is positioned on the body frame 3, the lower protruding guide plate 18 is inserted into the guide channel 32.

[0035] like Figure 4 and Figure 10 As shown, the electromagnetic drive mechanism is a movable carrier plate 5, on which an adsorption iron plate 53 is fixedly provided. The electromagnet 4 drives the movable carrier plate 5 to move by adsorbing the adsorption iron plate 53. A movable guide hole 51 is provided on the movable carrier plate 5, in which a carrier rod 151 is inserted. A return spring 52 is sleeved on the carrier rod 151, and the two ends of the return spring 52 are respectively fixed on the movable carrier plate 5 and the supporting inner plate 15. A lower connecting bar 54 is fixed at the lower end of the movable carrier plate 5, and a first mating connecting rod 55 is hinged on the lower connecting bar 54, and a second mating connecting rod 56 is symmetrically hinged at the lower end of the lower connecting bar 54.

[0036] like Figure 4 、 Figure 5 and Figure 10 As shown, the reinforcing fixing mechanism includes a receiving slat 6 and a movable reinforcing plate 7. The movable bearing plate 5 drives the receiving slat 6 to move. A reinforcing stabilizing block 62 is fixedly provided on the receiving slat 6. The reinforcing stabilizing block 62 cooperates with the reinforcing socket 42. A connecting strip plate 61 is fixedly provided on the receiving slat 6. The connecting strip plate 61 is hinged to the other end of the first matching connecting rod 55. A bearing matching rod 63 is also fixedly provided on the receiving slat 6. The bearing matching rod 63 is inserted into the assembly through hole 16, and the other end of the bearing matching rod 63 is fixedly provided with a connecting vertical slat 64. The upper end of the connecting vertical slat 64 is fixedly provided with a connecting carrier 65, and a connecting support column 66 is fixedly provided between the connecting carriers 65.

[0037] like Figure 2 、 Figure 4 and Figure 11 As shown, a downward pressure reinforcing column 72 is fixedly provided on the movable reinforcing plate 7, and the receiving plate strip 6 drives the movable reinforcing plate 7 to move, so that the downward pressure reinforcing column 72 on the movable reinforcing plate 7 cooperates with the upper limit insertion hole 41, and a limiting through hole 71 is opened on the movable reinforcing plate 7, and a receiving vertical rod 12 is inserted into the limiting through hole 71, and an extended load bar 73 is also fixedly provided on the movable reinforcing plate 7, and a downward driving frame 74 is fixedly provided on the extended load bar 73, and a connecting support column 66 is inserted into the downward driving frame 74, and the connecting support column 66 is in contact with the inner wall of the downward driving frame 74.

[0038] likeFigure 6 As shown, the server-assisted fixing mechanism is the movable reinforcing bar 8. The movable reinforcing bar 8 cooperates with the mating iron plate 31. One end of the movable reinforcing bar 8 is hinged to the second mating connecting rod 56. The movable reinforcing bar 8 is located in the inner bearing groove 181. A bearing channel 81 is formed at one end of the movable reinforcing bar 8. A support inner rod 183 is inserted into the bearing channel 81. And a connecting load column 82 is fixedly arranged at the other end of the movable reinforcing bar 8. The connecting load column 82 is inserted into the support connecting hole 182.

[0039] An electromagnetic fixing method includes the following steps: Step 1: Positioning of the electromagnet 4: Position the electromagnet 4 on the device body bearing strip 1; Step 2: Positioning of the server body 2: Position the server body 2 on the body frame 3; Step 3: Fixing between the electromagnet 4 and the server body 2: Energize the electromagnet 4. The electromagnet 4 drives the movable bearing plate 5 to move. Then, under the action of the movable bearing plate 5, the bearing plate strip 6 and the movable reinforcing plate 7 are driven to move, realizing the fixed connection between the electromagnet 4 and the server body 2; Step 4: Fixing of the server body 2: After the electromagnet 4 is energized, it adsorbs on the mating iron plate 31. At the same time, the movable bearing plate 5 drives the movable reinforcing bar 8 to move, further strengthening the fixing of the server body 2.

[0040] When installing the server body 2, first position the electromagnet 4 at both ends of the body support strip 1, that is, sleeved the mating cavity hole 43 on the electromagnet 4 onto the mating connecting plate 17, and at the same time insert the conductive column 171 into the conductive hole 44. Then position the server body 2 on the body frame 3, that is, insert the lower convex guide plate 18 into the guide channel 32 so that the electromagnet 4 contacts the mating iron plate 31 to complete the positioning of the server body 2. At this time, the push switch 19 can be pressed to energize the electromagnet 4. After the electromagnet 4 is energized, it will generate a magnetic force. After the electromagnet 4 generates a magnetic force, it will adsorb to the mating iron plate 31, and then the server body 2 can be fixed on the body frame 3. And with the energization of the electromagnet 4, the magnetic force generated by it will also adsorb the moving carrier plate 5, and then drive the moving carrier plate 5 to move in the direction of the electromagnet 4. With the movement of the moving carrier plate 5, under the action of the first mating link 55, the receiving strip 6 will be driven to move in the direction of the electromagnet 4, so that the strengthening and stabilizing block 62 on the receiving strip 6 is inserted into the strengthening jack 42 on the electromagnet 4 and the two are closely matched, realizing the first layer of fixed connection between the server body 2 and the electromagnet 4. When the receiving strip 6 moves in the direction of the electromagnet 4, since the connecting support column 66 on the receiving strip 6 is inserted into the downward movement driving frame 74 on the movable strengthening plate 7, when the receiving strip 6 moves, under the cooperation of the connecting support column 66 and the downward movement driving frame 74, the movable strengthening plate 7 will be driven to move downward, so that the downward pressing strengthening column 72 on the movable strengthening plate 7 is inserted into the upper limit jack 41 on the electromagnet 4, and the inner wall of the downward pressing strengthening column 72 contacts the inner wall of the upper limit jack 41. In this way, under the cooperation of the downward pressing strengthening column 72 and the upper limit jack 41, the fixed connection between the server body 2 and the electromagnet 4 will be further strengthened, fully ensuring the firmness of the connection between the electromagnet 4 and the server body 2. In addition, when the moving carrier plate 5 moves in the direction of the electromagnet 4, under the action of the second mating link 56, the movable strengthening strip 8 will also be driven to move, so that the connecting carrier column 82 on the movable strengthening strip 8 is inserted into the insertion connecting hole 33 on the mating iron plate 31, further strengthening the fixed connection between the server body 2 and the body frame 3, fully ensuring the firmness of the installation of the server body 2. When the server body 2 needs to be disassembled, just cut off the power supply of the electromagnet 4. At this time, the electromagnet 4 loses its magnetism and will no longer adsorb the mating iron plate 31 and the adsorption iron plate 53. In this way, under the action of the return spring 52, the moving carrier plate 5 will be driven to move in the reverse direction and reset. With the reverse movement of the moving carrier plate 5, under the action of the second mating link 56, the movable strengthening strip 8 will be driven to move in the reverse direction, so that the connecting carrier column 82 can be driven to withdraw from the insertion connecting hole 33, making the server body 2 completely in the unlocked state, and the server body 2 can be removed from the body frame 3. At the same time, with the reset of the moving carrier plate 5, the receiving strip 6 will also be driven to reset under the action of the first mating link 55.With the reset of the receiving strip 6, the strengthening and stabilizing block 62 will exit the mating cavity hole 43. At the same time, under the cooperation of the connecting support column 66 and the downward movement driving frame 74, the movable strengthening plate 7 will be driven to move upward, so that the downward pressing strengthening column 72 exits the upper limit jack 41, that is, the electromagnet 4 is also in a completely unlocked state. Such a setting enables the electromagnet 4 to be quickly installed and removed when it fails and needs to be repaired, facilitating the repair work of the staff, which is very convenient.

[0041] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An electromagnetic fixed server ear, comprising an ear body, the ear body is fixedly arranged at both ends of the body bearing strip, and is characterized in that: The device body support strip is fixedly installed on the server body, and the server body is fixedly installed on the body frame through the hanging ear body; Electromagnetic fixing components are symmetrically installed at both ends of the body support strip, and a fixing matching component is provided on the body frame. The electromagnetic fixing component cooperates with the fixing matching component to fix the server body; An electromagnetic drive mechanism is installed on the ear hook body, and the electromagnetic drive mechanism is driven by an electromagnetic fixing component; The electromagnetic drive mechanism is connected to a reinforcing fixing mechanism, which fixes the electromagnetic fixing assembly and strengthens the connection between the electromagnetic fixing assembly and the server body; The electromagnetic driving mechanism is also connected to a server auxiliary fixing mechanism, which can assist in fixing the server body.

2. The electromagnetic fixed server ear according to claim 1, characterized in that: The electromagnetic fixing component is an electromagnet, an upper limit socket is provided on the upper end of the electromagnet, and a reinforcement socket is also provided on one side of the electromagnet.

3. The electromagnetic fixed server ear according to claim 2, wherein: The reinforced fixing mechanism cooperates with the upper limit insertion hole to achieve the first level of fixing of the electromagnet.

4. The electromagnetic fixed server ear according to claim 3, wherein: The reinforced fixing mechanism cooperates with the reinforced socket to achieve the second level of fixation of the electromagnet.

5. The electromagnetic fixed server ear according to claim 4, wherein: The fixed matching component is a matching iron plate, and the electromagnet is adsorbed onto the matching iron plate to fix the server body.

6. The electromagnetic fixed server ear according to claim 5, characterized in that: The electromagnetic driving mechanism is a movable carrier plate, on which an adsorption iron plate is fixedly provided. The electromagnet drives the movable carrier plate to move by adsorbing the adsorption iron plate.

7. An electromagnetic fixed server ear according to claim 6, characterized in that: The reinforcing and fixing mechanism includes a receiving strip and a movable reinforcing plate, and the movable bearing plate drives the receiving strip to move; A reinforcing stabilizing block is fixedly provided on the receiving strip, and the reinforcing stabilizing block is matched with the reinforcing socket.

8. An electromagnetic fixed server ear according to claim 7, characterized in that: The movable reinforcing plate is fixedly provided with a downward-pressing reinforcing column, and the receiving strip drives the movable reinforcing plate to move, so that the downward-pressing reinforcing column on the movable reinforcing plate is matched with the upper-limit insertion hole.

9. The electromagnetic fixed server ear according to claim 8, wherein: The server auxiliary fixing mechanism is a movable reinforcement bar, and the movable reinforcement bar is matched with the matching iron plate.

10. An electromagnetic fixing method, characterized in that: The electromagnetic fixing method is applicable to the server mounting ear according to any one of claims 1 to 9, comprising the following steps: Step 1: Positioning of the electromagnet: Position the electromagnet on the support strip of the device body; Step 2: Positioning the server body: Position the server body on the body frame; Step 3: Fixing the electromagnet to the server body: Powering on the electromagnet drives the movable carrier plate to move, which in turn drives the receiving strip and the movable reinforcing plate to move, thereby achieving a fixed connection between the electromagnet and the server body. Step 4: Fixing the server body: After the electromagnet is energized, it is adsorbed on the matching iron plate, and at the same time, the moving bearing plate drives the movable reinforcement bar to move, further strengthening the fixation of the server body.

Citation Information

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