A network security server equipment anti-collision device

By introducing structures such as vibration damping blocks, vibration damping springs, support rods and reset rods into the collision prevention device of the network security server, the problem of excessive vibration amplitude after being impacted is solved, and rapid locking and stability improvement is achieved to ensure the security and service life of the server.

CN118870698BActive Publication Date: 2025-05-06BEIJING GUOTIE CHUANGWEI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411070497.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-05-06
Estimated Expiration
2044-08-06

AI Technical Summary

Technical Problem

The existing network security server anti-collision device cannot be locked quickly when the vibration amplitude is too large after being impacted, resulting in unstable device and may cause server damage.

Method used

A collision avoidance device including a collision avoidance cabinet, a vibration damping block, a vibration damping spring, a support rod and a reset rod are designed. When the device is impacted, the vibration damping block reduces vibration through friction force, and quickly locks the anti-collision cabinet through the reset rod and the positioning triangular block mechanism to avoid continuous vibration.

Benefits of technology

Effectively reduces vibrations caused by the device after impact, ensures that the server is not severely damaged, and prevents dumping and further damage by quickly locking the anti-collision cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of network security technology, and discloses an anti-collision device for network security server equipment, comprising an anti-collision cabinet, wherein a cabinet door is hingedly connected to the front side surface of the anti-collision cabinet, a mounting frame is fixedly connected to the inner wall of the anti-collision cabinet, a server body is fixedly connected to the inner surface of the mounting frame, a sliding sleeve shaft is fixedly connected to the bottom surface of the inner wall of the anti-collision cabinet, and a vibration-damping block is fixedly connected to the bottom surface of the anti-collision cabinet. The vibration-damping block in the present invention slides back and forth up and down on the surface of a support rod to generate friction, so that the force of vibration is reduced during the friction process, thereby achieving the effect of rapid vibration reduction and avoiding harmful effects of lighter collisions on the server body. The sliding inclined block extends from the card slot block through the elastic resetting action of the resetting spring rod, and is inserted between the positioning triangle block and the positioning card block, thereby jamming the anti-collision cabinet and avoiding damage to the server body caused by continuous vibration of the anti-collision cabinet.
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Description

Technical Field

[0001] The invention relates to the technical field of network security, and in particular to an anti-collision device for network security server equipment. Background Art

[0002] A network security server is a server that can provide security protection, and is designed to protect the internal network from external attacks and threats. It ensures the security and integrity of the server and the data it carries by adopting specific technologies and strategies. In order to prevent the network security server from being damaged by impact, an anti-collision device is usually installed on the outside of the network security server to avoid the impact on the network security server. The existing network security server anti-collision device cannot quickly lock the device and keep it stable when the device is hit and the vibration amplitude is too large, so the network security server will still be damaged.

[0003] The patent with patent number CN202022577654.4 discloses an anti-collision device for network security server equipment. Several anti-collision plates of the patent wrap the main body of the network security server and are fixed with anti-collision strips and anti-collision balls, so that the network security server can effectively reduce the vibration or impact it receives during transportation, and provide better protection for the network security server. By using an anti-collision plate composed of an anti-collision layer and a buffer layer, the anti-collision plate can effectively protect the network security server when it is subjected to different degrees of impact or vibration. Anti-collision balls are installed at the corners between each anti-collision plate and the adjacent anti-collision plate, so that each anti-collision plate and the adjacent The corners between the anti-collision plates can be better protected. The anti-collision strip made of silicone material has good anti-collision performance and can be easier to install. The anti-collision ball made of rubber material can stably support the server body and the anti-collision plate and has a certain shock-absorbing effect. The buffer layer made of foam board material can greatly buffer the vibration of the server body. The anti-collision layer made of plastic board material has good toughness and can greatly reduce the impact force on the server body. The outer wall of the anti-collision strip penetrates the heat dissipation holes on the inner wall of the anti-collision strip, so that the anti-collision strip has good air permeability and can improve the heat dissipation effect of the anti-collision strip.

[0004] Although this patent solves the above problems, there is still a problem that the device cannot be quickly locked to maintain stability when the device is hit and vibrates, and the vibration amplitude is too large. Therefore, a network security server equipment anti-collision device is proposed to solve the above problems. Summary of the invention

[0005] The technical problem to be solved by the present invention is to provide a network security server equipment anti-collision device in view of the deficiencies in the above-mentioned prior art.

[0006] In order to solve the above technical problems, the technical solution adopted by the present invention is: a network security server equipment anti-collision device, including an anti-collision cabinet, a cabinet door is hinged on the front side of the anti-collision cabinet, the inner wall of the anti-collision cabinet is fixedly connected with a mounting frame, the inner surface of the mounting frame is fixedly connected with a server body, the bottom surface of the inner wall of the anti-collision cabinet is fixedly connected with a sliding sleeve shaft, the bottom surface of the anti-collision cabinet is fixedly connected with a vibration-damping block, the inner wall of the sliding sleeve shaft is slidably connected with a support rod, the circumferential surface of the support rod is fixedly connected with a resistance ring, the upper surface of the resistance ring is fixedly connected with a vibration-damping spring, the bottom end of the support rod is fixedly connected with a support bottom plate, and the anti-collision cabinet The bottom surface of the described bottom plate is fixedly connected with a card slot block, the inner wall of the described card slot block is fixedly connected with a reset spring rod, one end of the described reset spring rod is fixedly connected with a sliding inclined block, the upper surface of the described support bottom plate is fixedly connected with a positioning card block, the top of the described positioning card block is fixedly connected with a positioning triangular block, an anti-dumping device for preventing the device from tipping over after being hit is arranged under the described anti-collision cabinet, closed explosion-proof devices for preventing the server from being damaged after being hit are arranged on both sides of the described anti-collision cabinet, the circumferential surface of the described support rod is slidably connected with the inner wall of the vibration damping block, the vibration damping spring is fixedly connected with the bottom surface of the vibration damping block, the sliding inclined block is slidably connected with the inner wall of the described card slot block, the described The inclined surface of the positioning triangle block and the inclined surface of the sliding inclined block contact each other. After the server body is installed on the mounting frame, the cabinet door is closed. When the device is hit, the anti-collision cabinet and the cabinet door can prevent the object from directly contacting the server body. When the device is hit lightly, the vibration generated by the impact is transmitted from the anti-collision cabinet to the vibration-damping block. When the vibration-damping block vibrates, it squeezes the vibration-damping spring downward to shrink the vibration-damping spring. The vibration-damping spring is resisted by the resistance ring and stops after shrinking to a certain extent. The process of contraction of the vibration-damping spring gives the vibration-damping block space to continue to move downward. When the vibration-damping spring stops shrinking, the vibration-damping block stops moving downward. At this time, the elastic effect of the vibration-damping spring drives the vibration reduction The block moves upward and resets, so that the vibration damping block slides back and forth up and down on the surface of the support rod to generate friction. When the vibration amplitude is too large, the anti-collision cabinet drives the slot block and the sliding inclined block down to a position where they can contact the positioning triangular block. At this time, the sliding inclined block applies downward pressure to the positioning triangular block. Because of the interaction of forces, the positioning triangular block pushes the sliding inclined block toward the inside of the slot block through the guidance of the inclined surface of the sliding inclined block, so that the sliding inclined block retracts into the slot block, and the slot block continues to move downward. When the positioning triangular block moves above the sliding inclined block, the sliding inclined block extends from the slot block through the elastic reset action of the reset spring rod, and is inserted between the positioning triangular block and the positioning card block.

[0007] Preferably, the anti-dumping device includes a slide rail support plate, a sliding card plate, a supporting slider, and an H-row supporting diagonal rod. The slide rail support plate is fixedly connected to both ends of the supporting bottom plate. The sliding card plate is slidably connected to the inner wall of the slide rail support plate. The supporting slider is fixedly connected to the upper surface of the sliding card plate. The H-row supporting diagonal rod is hinged at the front and rear sides of the supporting slider. The anti-dumping device also includes a limiting shaft, a liquid storage box, an infusion port, a sliding baffle, a U-shaped transmission rod, a delayed transmission rod, and a transmission card rod. The limiting shaft is fixedly connected to the front and rear sides of the damping block. The liquid storage box is fixedly connected to the upper surface of the slide rail support plate, the infusion port is fixedly connected to one side of the liquid storage box, and the sliding baffle is slidably connected to the bottom of the inner surface of the liquid storage box. The U-shaped transmission rod is fixedly connected to the side of the sliding baffle plate close to the supporting slider, the delayed transmission rod is fixedly connected to the side of the supporting slider close to the U-shaped transmission rod, the transmission clamping rod is fixedly connected to the side of the delayed transmission rod close to the U-shaped transmission rod, the sliding baffle plate is slidably connected to the upper surface of the slide rail support plate, the transmission clamping rod is slidably connected to the inner surface of the U-shaped transmission rod, the H-row supporting oblique rod is hinged to the circumferential surface of the limiting shaft, the supporting slider is slidably connected to the inner surface of the slide rail support plate, when the device is hit and the center of gravity is unstable, the H-row supporting oblique rod holds the anti-collision cabinet against the force of the oblique support, and a support is formed between the H-row supporting oblique rod, the vibration damping block, the support rod, the supporting bottom plate and the slide rail support plate. The triangular support structure is stable, and the slide rail support plate increases the support area of ​​the support base plate. When the vibration damping block moves downward due to vibration, it drives the limit shaft to move downward, and the limit shaft drives the top end of the H-row support diagonal rod to move downward. Because the H-row support diagonal rod and the limit shaft are hinged, the top end of the H-row support diagonal rod rotates along the axis of the limit shaft, so that the bottom end of the H-row support diagonal rod itself approaches the end of the slide rail support plate away from the support base plate, and the bottom end of the H-row support diagonal rod drives the sliding card plate and the support slider to slide toward the end of the slide rail support plate away from the support base plate. Conversely, when the vibration damping block moves upward, the sliding card plate and the support slider slide toward the end of the slide rail support plate close to the support base plate, thereby making When the anti-collision cabinet and the vibration damping block vibrate, part of the vibration force is transmitted to the sliding card plate and the supporting slider, and then the sliding card plate and the supporting slider slide back and forth in the slide rail support plate to generate more friction. When the supporting slider slides toward the end of the slide rail support plate away from the supporting bottom plate, it drives the delayed transmission rod and the transmission card rod to move in the same direction. When the transmission card rod contacts the end of the U-shaped transmission rod closest to the supporting slider, it drives the U-shaped transmission rod to move. The U-shaped transmission rod then drives the sliding baffle to slide toward the end of the slide rail support plate away from the supporting bottom plate. After losing the obstruction of the sliding baffle, the lubricating oil in the liquid storage box flows into the slide rail support plate and covers the surface of the sliding card plate, so that a layer of oil film is formed between the sliding card plate and the inner wall of the slide rail support plate.

[0008] Preferably, the closed explosion-proof device includes ventilation slots, a sliding card frame, a closed baffle, and a T-shaped push rod. The ventilation slots are opened on both sides of the anti-collision cabinet, the sliding card frame is fixedly connected to both sides of the inner wall of the anti-collision cabinet, the closed baffle is slidably connected to the inner surface of the sliding card frame, and the T-shaped push rod is fixedly connected to the side of the closed baffle away from the inner wall of the anti-collision cabinet. The closed explosion-proof device also includes a supporting partition, a resistance plate, a falling groove, a U-shaped pull plate, a U-shaped transmission member, a T-shaped pull rod, and an elastic telescopic rod. The supporting partition is slidably connected to the bottom surface of the sliding card frame. The touch plate is fixedly connected to the side of the supporting partition close to the inside of the anti-collision cabinet, the falling groove is opened on the inner side of the supporting partition, the U-shaped pull plate is fixedly connected to the side of the supporting partition away from the anti-collision cabinet, the U-shaped transmission member is fixedly connected to the side of the U-shaped pull plate away from the anti-collision cabinet, the T-shaped pull rod is fixedly connected to the side of the supporting slider, the elastic telescopic rod is fixedly connected to the side of the U-shaped pull plate close to the anti-collision cabinet, the closed baffle and the two sides of the inner wall of the anti-collision cabinet are in contact with each other, and a slide groove 1 is opened on the side of the sliding card frame away from the anti-collision cabinet, and the inner wall of the slide groove 1 and the T-shaped The outer surfaces of the pull rods are in contact with each other, two slide grooves are provided on both sides of the anti-collision cabinet, and the inner wall of the two slide grooves is in contact with the outer surface of the supporting partition, the bottom surface of the closed baffle is in contact with the upper surface of the supporting partition, the T-shaped pull rod is clamped with the inner surface of the U-shaped transmission member, and the elastic telescopic rod is fixedly connected to the two sides of the anti-collision cabinet. When the device is in normal use, the closed baffle is lifted by the T-shaped push rod to retract the closed baffle into the sliding card frame, thereby exposing the ventilation slots on both sides of the anti-collision cabinet. When the device is not started, the closed baffle can be pulled down by the T-shaped push rod to block the ventilation slot When the supporting slider slides toward the end of the slide rail support plate away from the supporting bottom plate, it drives the T-shaped pull rod to move in the same direction, the T-shaped pull rod drives the U-shaped transmission part to move in the same direction, the U-shaped transmission part drives the U-shaped pull plate to move in the same direction, and the U-shaped pull plate then drives the supporting partition and the contact plate to move in the same direction, the contact plate and the sliding card frame stop after contacting, thereby stopping the supporting partition, and the falling groove is just aligned with the opening at the bottom end of the sliding card frame, so that the closed baffle can slide down through the falling groove, so that when the device vibrates, the closed baffle automatically slides downward to block the ventilation groove.

[0009] The present invention adopts the above technical solution to bring the following beneficial effects:

[0010] 1. The anti-collision device of the network security server equipment, the anti-collision cabinet and the cabinet door can prevent objects from directly contacting the server body, avoiding damage to the server body after severe collision. The vibration-damping block slides up and down on the surface of the support rod to generate friction, so that the vibration force is reduced during the friction process, thereby achieving the effect of rapid vibration reduction, avoiding harmful effects of lighter collisions on the server body. The sliding bevel block extends from the card slot block through the elastic reset action of the reset spring rod, and is inserted between the positioning triangle block and the positioning card block, thereby jamming the anti-collision cabinet to avoid damage to the server body caused by continuous vibration of the anti-collision cabinet.

[0011] 2. The anti-collision device of the network security server equipment, the H-row supporting diagonal rods hold the anti-collision cabinet with the force of the diagonal support to prevent the anti-collision cabinet from tipping over, and a stable triangular supporting structure is formed between the supporting bottom plate and the slide rail support plate. At the same time, the slide rail support plate increases the supporting area of ​​the supporting bottom plate, so that the anti-collision cabinet can quickly stabilize after being hit, and prevent serious damage to the server body after tipping over. The sliding card plate and the supporting slider slide back and forth in the slide rail support plate to generate more friction, further accelerating the stable recovery speed of the anti-collision cabinet. The lubricating oil in the liquid storage box loses the obstruction of the sliding baffle plate and flows into the slide rail support plate and covers the surface of the sliding card plate, so that a layer of oil film is formed between the sliding card plate and the inner wall of the slide rail support plate, thereby enhancing the resistance during friction, reducing vibration more quickly, reducing the wear during friction, and improving the service life of the device.

[0012] 3. The anti-collision device of the network security server equipment has a closed baffle that is retracted into the sliding card frame, so that the ventilation slots on both sides of the anti-collision cabinet are exposed, which is convenient for ventilation and heat dissipation of the device. When the device is not started, the closed baffle can be pulled down by the T-shaped push rod to block the ventilation slots to prevent dust or other foreign matter from entering the anti-collision cabinet and contacting the server body, thereby improving the safety of the device. When the device vibrates, the closed baffle automatically slides down to block the ventilation slots to prevent the server body from being harmed and contacting the external environment or personnel, causing damage to the environment or injuries to personnel, thereby further improving the safety of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the three-dimensional overall structure of the present invention;

[0014] Figure 2 It is a schematic diagram of the front side cross-sectional three-dimensional structure of the present invention;

[0015] Figure 3 It is a schematic diagram of the front side cross-sectional three-dimensional structure of the anti-collision and vibration reduction structure of the present invention;

[0016] Figure 4 For the present invention Figure 3 A is a schematic diagram of the enlarged structure of the middle part;

[0017] Figure 5 It is a schematic diagram of the front side stereoscopic structure of the anti-dumping device of the present invention;

[0018] Figure 6 For the present invention Figure 5 A schematic diagram of the enlarged structure of B;

[0019] Figure 7 It is a schematic diagram of the front side cross-sectional three-dimensional structure of the closed explosion-proof device of the present invention.

[0020] In the figure: 1, anti-collision cabinet; 2, cabinet door; 3, mounting frame; 4, server body; 5, sliding sleeve shaft; 51, vibration reduction block; 52, support rod; 53, resistance ring; 54, vibration reduction spring; 55, support bottom plate; 56, card slot block; 57, reset spring rod; 58, sliding inclined block; 59, positioning card block; 510, positioning triangle block; 6, anti-dumping device; 61, slide rail support plate; 62, sliding card plate; 63, support slider; 64, H-row support inclined rod ; 65. Limiting shaft; 66. Liquid storage box; 67. Infusion port; 68. Sliding baffle; 69. U-shaped transmission rod; 610. Delay transmission rod; 611. Transmission clamp rod; 7. Closed explosion-proof device; 71. Ventilation slot; 72. Sliding clamp frame; 73. Closed baffle; 74. T-shaped push rod; 75. Support partition; 76. Resistance plate; 77. Drop groove; 78. U-shaped pull plate; 79. U-shaped transmission member; 710. T-shaped pull rod; 711. Elastic telescopic rod. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention.

[0022] See also Figure 1-Figure 7One embodiment of the present invention is: a network security server equipment anti-collision device, comprising an anti-collision cabinet 1, a cabinet door 2 is hinged on the front side of the anti-collision cabinet 1, a mounting frame 3 is fixedly connected to the inner wall of the anti-collision cabinet 1, a server body 4 is fixedly connected to the inner surface of the mounting frame 3, a sliding sleeve shaft 5 is fixedly connected to the bottom surface of the inner wall of the anti-collision cabinet 1, a vibration damping block 51 is fixedly connected to the bottom surface of the anti-collision cabinet 1, a support rod 52 is slidably connected to the inner wall of the sliding sleeve shaft 5, a resistance ring 53 is fixedly connected to the circumferential surface of the support rod 52, and the resistance ring 53 is fixedly connected to the circumferential surface of the support rod 52. A damping spring 54 is fixedly connected to the upper surface of the ring 53, a supporting bottom plate 55 is fixedly connected to the bottom end of the supporting rod 52, a card slot block 56 is fixedly connected to the bottom surface of the anti-collision cabinet 1, a reset spring rod 57 is fixedly connected to the inner wall of the card slot block 56, a sliding inclined block 58 is fixedly connected to one end of the reset spring rod 57, a positioning card block 59 is fixedly connected to the upper surface of the supporting bottom plate 55, and a positioning triangle block 510 is fixedly connected to the top of the positioning card block 59. The anti-collision cabinet 1 and the cabinet door 2 can prevent objects from directly contacting the server body 4. The contact between the server body 4 and the support rod 52 is avoided, and the server body 4 is prevented from being damaged after a serious impact. The vibration-damping block 51 slides up and down on the surface of the support rod 52 to generate friction, so that the vibration force is reduced during the friction process, thereby achieving the effect of rapid vibration reduction, and avoiding the harmful effects of lighter impacts on the server body 4. An anti-dumping device 6 is arranged at the bottom of the anti-collision cabinet 1 to prevent the device from tipping over after a collision. Both sides of the anti-collision cabinet 1 are provided with closed explosion-proof devices 7 to prevent the server from being damaged after a collision. The circumferential surface of the support rod 52 is slidably connected to the inner wall of the vibration-damping block 51, the vibration-damping spring 54 is fixedly connected to the bottom surface of the vibration-damping block 51, the sliding bevel block 58 is slidably connected to the inner wall of the card slot block 56, the inclined surface of the positioning triangle block 510 and the inclined surface of the sliding bevel block 58 contact each other, and the sliding bevel block 58 extends from the card slot block 56 through the elastic resetting action of the resetting spring rod 57, and is inserted between the positioning triangle block 510 and the positioning card block 59, thereby jamming the anti-collision cabinet 1 to avoid the continuous vibration of the anti-collision cabinet 1 causing damage to the server body 4.

[0023] Working principle: After installing the server body 4 on the mounting frame 3, close the cabinet door 2. When the device is hit, the anti-collision cabinet 1 and the cabinet door 2 can prevent objects from directly contacting the server body 4, thereby avoiding damage to the server body 4 after a serious impact. When the device is hit lightly, the vibration generated by the impact is transmitted from the anti-collision cabinet 1 to the vibration-damping block 51. When the vibration-damping block 51 vibrates, it squeezes the vibration-damping spring 54 downward to shrink the vibration-damping spring 54. The vibration-damping spring 54 is resisted by the resistance ring 53 and stops after shrinking to a certain extent. The process of shrinking the vibration-damping spring 54 provides space for the vibration-damping block 51 to continue to move downward. When the vibration-damping spring 54 stops shrinking, the vibration-damping block 51 stops moving downward. At this time, the elastic action of the vibration-damping spring 54 drives the vibration-damping block 51 to move upward and reset, so that the vibration-damping block 51 slides back and forth on the surface of the support rod 52 to generate friction, so that the vibration force is reduced during the friction process. The vibration is reduced in the middle, thereby achieving the effect of rapid vibration reduction, avoiding the harmful effects of lighter collisions on the server body 4. When the vibration amplitude is too large, the anti-collision cabinet 1 drives the card slot block 56 and the sliding inclined block 58 to drop to a position where they can contact the positioning triangular block 510. At this time, the sliding inclined block 58 applies downward pressure to the positioning triangular block 510. Due to the interaction of forces, the positioning triangular block 510 is guided by the inclined surface of the sliding inclined block 58 to push the sliding inclined block 58 to the inside of the card slot block 56, so that the sliding inclined block 58 is retracted into the card slot block 56, and the card slot block 56 continues to move downward. When the positioning triangular block 510 moves to the top of the sliding inclined block 58, the sliding inclined block 58 extends from the card slot block 56 through the elastic resetting action of the resetting spring rod 57, and is inserted between the positioning triangular block 510 and the positioning card block 59, thereby jamming the anti-collision cabinet 1 to avoid damage to the server body 4 caused by the continuous vibration of the anti-collision cabinet 1.

[0024] See also Figure 1-Figure 7On the basis of the above embodiment, in another embodiment of the present invention, the anti-dumping device 6 includes a slide rail support plate 61, a sliding card plate 62, a support slider 63, and an H-row support diagonal rod 64. The slide rail support plate 61 is fixedly connected to both ends of the support bottom plate 55, the sliding card plate 62 is slidably connected to the inner wall of the slide rail support plate 61, the support slider 63 is fixedly connected to the upper surface of the sliding card plate 62, and the H-row support diagonal rod 64 is hinged to the front and rear sides of the support slider 63. The H-row support diagonal rod 64 supports the anti-collision cabinet 1 through the oblique support force to prevent the anti-collision cabinet 1 from tipping over. The support bottom plate 55 and the slide rail A stable triangular support structure is formed between the support plates 61, and the slide rail support plate 61 increases the support area of ​​the support bottom plate 55, so that the anti-collision cabinet 1 can quickly stabilize after being hit, and prevent serious damage to the server body 4 after tipping over. The anti-tip device 6 also includes a limit shaft 65, a liquid storage box 66, an infusion port 67, a sliding baffle 68, a U-shaped transmission rod 69, a delayed transmission rod 610, and a transmission clamp rod 611. The limit shaft 65 is fixedly connected to the front and rear sides of the damping block 51, the liquid storage box 66 is fixedly connected to the upper surface of the slide rail support plate 61, and the infusion port 6 7 is fixedly connected to one side of the liquid storage box 66, the sliding baffle 68 is slidably connected to the bottom of the inner surface of the liquid storage box 66, the U-shaped transmission rod 69 is fixedly connected to the side of the sliding baffle 68 close to the support slider 63, the delay transmission rod 610 is fixedly connected to the side of the support slider 63 close to the U-shaped transmission rod 69, the transmission clamping rod 611 is fixedly connected to the side of the delay transmission rod 610 close to the U-shaped transmission rod 69, the sliding baffle 68 is slidably connected to the upper surface of the slide rail support plate 61, the transmission clamping rod 611 is slidably connected to the inner surface of the U-shaped transmission rod 69, the H-shaped support inclined rod 64 and the limit shaft 65 are circular The circumferential surface is hinged, and the supporting slider 63 is slidably connected to the inner surface of the slide rail support plate 61. The sliding card plate 62 and the supporting slider 63 slide back and forth in the slide rail support plate 61 to generate more friction, further accelerating the stable recovery speed of the anti-collision cabinet 1. The lubricating oil in the liquid storage box 66 loses the obstruction of the sliding baffle plate 68 and flows into the slide rail support plate 61 and covers the surface of the sliding card plate 62, so that a layer of oil film is formed between the sliding card plate 62 and the inner wall of the slide rail support plate 61, which enhances the resistance during friction, reduces vibration more quickly, reduces wear during friction, and improves the service life of the device.

[0025] Working principle: When the center of gravity of the device is unstable due to impact, the H-row support diagonal rod 64 supports the anti-collision cabinet 1 through the diagonal support force to prevent the anti-collision cabinet 1 from tipping over, and a stable triangular support structure is formed between the H-row support diagonal rod 64, the vibration reduction block 51, the support rod 52, the support bottom plate 55 and the slide rail support plate 61. At the same time, the slide rail support plate 61 increases the support area of ​​the support bottom plate 55, so that the anti-collision cabinet 1 can quickly stabilize after being impacted to prevent serious damage to the server body 4 after tipping over. When the vibration reduction block 51 moves downward due to vibration, it drives The limiting shaft 65 moves downward, and the limiting shaft 65 drives the top end of the H-row supporting inclined rod 64 to move downward. Because the H-row supporting inclined rod 64 and the limiting shaft 65 are hinged, the top end of the H-row supporting inclined rod 64 rotates along the axis of the limiting shaft 65, so that the bottom end of the H-row supporting inclined rod 64 itself approaches the end of the slide rail support plate 61 away from the support bottom plate 55. The bottom end of the H-row supporting inclined rod 64 drives the sliding card plate 62 and the supporting slider 63 to slide toward the end of the slide rail support plate 61 away from the support bottom plate 55. Conversely, when the vibration damping block 51 moves upward, the sliding card plate 62 and The support slider 63 slides toward the end of the slide rail support plate 61 close to the support bottom plate 55, so that when the anti-collision cabinet 1 and the vibration-damping block 51 vibrate, part of the vibration force is transmitted to the sliding card plate 62 and the support slider 63, and then the sliding card plate 62 and the support slider 63 slide back and forth in the slide rail support plate 61 to generate more friction, further accelerating the stable recovery speed of the anti-collision cabinet 1. When the support slider 63 slides toward the end of the slide rail support plate 61 away from the support bottom plate 55, it drives the delayed transmission rod 610 and the transmission card rod 611 to move in the same direction. When it contacts the end of the U-shaped transmission rod 69 closest to the supporting slider 63, it drives the U-shaped transmission rod 69 to move, and the U-shaped transmission rod 69 then drives the sliding baffle 68 to slide toward the end of the slide rail support plate 61 away from the supporting bottom plate 55. The lubricating oil in the liquid storage box 66 loses the obstruction of the sliding baffle 68 and flows into the slide rail support plate 61 and covers the surface of the sliding card plate 62, so that an oil film is formed between the sliding card plate 62 and the inner wall of the slide rail support plate 61, thereby enhancing the resistance during friction, reducing vibration more quickly, reducing wear during friction, and improving the service life of the device.

[0026] See also Figure 1-Figure 7On the basis of the above embodiment, in another embodiment of the present invention, the closed explosion-proof device 7 includes a ventilation slot 71, a sliding card frame 72, a closed baffle 73, and a T-shaped push rod 74. The ventilation slot 71 is opened on both sides of the anti-collision cabinet 1, the sliding card frame 72 is fixedly connected to both sides of the inner wall of the anti-collision cabinet 1, the closed baffle 73 is slidably connected to the inner surface of the sliding card frame 72, and the T-shaped push rod 74 is fixedly connected to the side of the closed baffle 73 away from the inner wall of the anti-collision cabinet 1. The closed baffle 73 is retracted into the sliding card frame 72, so that the ventilation slots 71 opened on both sides of the anti-collision cabinet 1 are exposed, which is convenient for the device For ventilation and heat dissipation, when the device is not started, the closed baffle 73 can be pulled down by the T-shaped push rod 74 to block the ventilation slot 71 to prevent dust or other foreign matter from entering the anti-collision cabinet 1 and contacting the server body 4, thereby improving the safety of the device. The closed explosion-proof device 7 also includes a supporting partition 75, a contact plate 76, a drop groove 77, a U-shaped pull plate 78, a U-shaped transmission member 79, a T-shaped pull rod 710, and an elastic telescopic rod 711. The supporting partition 75 is slidably connected to the bottom surface of the sliding card frame 72, and the contact plate 76 is fixedly connected to the side of the supporting partition 75 close to the inside of the anti-collision cabinet 1. The drop groove 77 is provided on the inner side of the supporting partition 75, the U-shaped pull plate 78 is fixedly connected to the side of the supporting partition 75 away from the anti-collision cabinet 1, the U-shaped transmission member 79 is fixedly connected to the side of the U-shaped pull plate 78 away from the anti-collision cabinet 1, the T-shaped pull rod 710 is fixedly connected to the side of the supporting slider 63, the elastic telescopic rod 711 is fixedly connected to the side of the U-shaped pull plate 78 close to the anti-collision cabinet 1, the closed baffle 73 and the inner wall of the anti-collision cabinet 1 are in contact with each other, and a slide groove 1 is provided on the side of the sliding card frame 72 away from the anti-collision cabinet 1, and the inner wall of the slide groove 1 and the outer surface of the T-shaped pull rod 710 are mutually in contact. Contact, a slide groove 2 is opened on both sides of the anti-collision cabinet 1, and the inner wall of the slide groove 2 and the outer surface of the supporting partition 75 are in contact with each other, the bottom surface of the closed baffle 73 and the upper surface of the supporting baffle 75 are in contact with each other, the T-shaped pull rod 710 and the inner surface of the U-shaped transmission member 79 are clamped, and the elastic telescopic rod 711 is fixedly connected to the two sides of the anti-collision cabinet 1. When the device vibrates, the closed baffle 73 automatically slides downward to block the ventilation slot 71, preventing the server body 4 from causing harm and contacting with the external environment or personnel, causing damage to the environment or injury to personnel, thereby further improving the safety of the device.

[0027] Working principle: When the device is in normal use, the T-shaped push rod 74 can be used to lift the closed baffle 73 so that the closed baffle 73 is retracted into the sliding card frame 72, so that the ventilation slots 71 opened on both sides of the anti-collision cabinet 1 are exposed, which is convenient for ventilation and heat dissipation of the device. When the device is not started, the closed baffle 73 can be pulled down by the T-shaped push rod 74 to block the ventilation slots 71 to prevent dust or other foreign matter from entering the anti-collision cabinet 1 and contacting the server body 4, thereby improving the safety of the device. When the support slider 63 slides toward the end of the slide rail support plate 61 away from the support bottom plate 55, it drives the T-shaped pull rod 710 to move in the same direction, and the T-shaped pull rod 710 drives the U-shaped transmission member 79 to move in the same direction The U-shaped transmission member 79 drives the U-shaped pull plate 78 to move in the same direction, and the U-shaped pull plate 78 then drives the supporting partition 75 and the contact plate 76 to move in the same direction. The contact plate 76 stops after contacting the sliding card frame 72, thereby stopping the supporting partition 75. At this time, the falling groove 77 is just aligned with the opening at the bottom end of the sliding card frame 72, so that the closed baffle 73 can slide down through the falling groove 77, so that when the device vibrates, the closed baffle 73 automatically slides downward to block the ventilation slot 71, preventing the server body 4 from causing harm and contacting with the external environment or personnel, causing damage to the environment or injury to personnel, thereby further improving the safety of the device.

[0028] The present invention provides a network security server device anti-collision device. There are many methods and ways to implement the technical solution. The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention. All components not specified in this embodiment can be implemented using existing technologies.

Claims

1. A network security server equipment anti-collision device, comprising an anti-collision cabinet (1), characterized in that: The front side of the anti-collision cabinet (1) is hinged with a cabinet door (2); the inner wall of the anti-collision cabinet (1) is fixedly connected with a mounting frame (3); the inner surface of the mounting frame (3) is fixedly connected with a server body (4); the bottom surface of the inner wall of the anti-collision cabinet (1) is fixedly connected with a sliding sleeve shaft (5); the bottom surface of the anti-collision cabinet (1) is fixedly connected with a vibration damping block (51); the inner wall of the sliding sleeve shaft (5) is slidably connected with a support rod (52); the circumferential surface of the support rod (52) is fixedly connected with a resistance ring (53); the resistance ring (53) ) is fixedly connected to the upper surface of the support rod (52) with a damping spring (54), the bottom end of the support rod (52) is fixedly connected to the support bottom plate (55), the bottom surface of the anti-collision cabinet (1) is fixedly connected to a slot block (56), the inner wall of the slot block (56) is fixedly connected to a reset spring rod (57), one end of the reset spring rod (57) is fixedly connected to a sliding inclined block (58), the upper surface of the support bottom plate (55) is fixedly connected to a positioning block (59), and the top end of the positioning block (59) is fixedly connected to a positioning triangle block (510); When the device is subjected to a relatively light impact, the vibration generated by the impact is transmitted from the anti-collision cabinet (1) to the vibration-damping block (51). When the vibration-damping block (51) vibrates, it presses the vibration-damping spring (54) downward, causing the vibration-damping spring (54) to contract. The vibration-damping spring (54) is resisted by the resistance ring (53) and stops after contracting to a certain extent. The contraction process of the vibration-damping spring (54) provides space for the vibration-damping block (51) to continue to move downward. When the vibration-damping spring (54) stops contracting, the vibration-damping block (51) stops moving downward. At this time, the elastic action of the vibration-damping spring (54) drives the vibration-damping block (51) to move upward and reset, so that the vibration-damping block (51) slides back and forth on the surface of the support rod (52) to generate friction force, so that the vibration force is reduced during the friction process, thereby achieving a rapid vibration reduction effect. When the vibration amplitude is too large, the anti-collision cabinet (1) drives the card slot block (5 6) and the sliding bevel block (58) are lowered to a position where they can contact the positioning triangular block (510). At this time, the sliding bevel block (58) applies downward pressure to the positioning triangular block (510). Due to the interaction of forces, the positioning triangular block (510) is guided by the inclined surface of the sliding bevel block (58) to push the sliding bevel block (58) toward the inside of the card slot block (56), so that the sliding bevel block (58) is retracted into the card slot block (56). The card slot block (56) continues to move downward. When the positioning triangular block (510) moves above the sliding bevel block (58), the sliding bevel block (58) is extended from the card slot block (56) by the elastic reset action of the reset spring rod (57) and inserted between the positioning triangular block (510) and the positioning card block (59), thereby blocking the anti-collision cabinet (1) and preventing the anti-collision cabinet (1) from vibrating continuously and causing damage to the server body (4); An anti-tipping device (6) is provided below the anti-collision cabinet (1) to prevent the device from tipping over after being hit, and closed explosion-proof devices (7) are provided on both sides of the anti-collision cabinet (1) to prevent the server from being damaged after being hit.

2. The anti-collision device for network security server equipment according to claim 1, characterized in that: The circumferential surface of the support rod (52) is slidably connected to the inner wall of the vibration-damping block (51), the vibration-damping spring (54) is fixedly connected to the bottom surface of the vibration-damping block (51), the sliding inclined block (58) is slidably connected to the inner wall of the slot block (56), and the inclined surface of the positioning triangle block (510) and the inclined surface of the sliding inclined block (58) are in contact with each other.

3. The anti-collision device for network security server equipment according to claim 2, characterized in that: The anti-dumping device (6) comprises a slide rail support plate (61), a sliding card plate (62), a supporting slider (63), and an H-row supporting diagonal rod (64); the slide rail support plate (61) is fixedly connected to both ends of the supporting bottom plate (55); the sliding card plate (62) is slidably connected to the inner wall of the slide rail support plate (61); the supporting slider (63) is fixedly connected to the upper surface of the sliding card plate (62); and the H-row supporting diagonal rod (64) is hinged to the front and rear sides of the supporting slider (63).

4. The anti-collision device for network security server equipment according to claim 3, characterized in that: The anti-dumping device (6) further comprises a limit shaft (65), a liquid storage box (66), an infusion port (67), a sliding baffle (68), a U-shaped transmission rod (69), a delayed transmission rod (610), and a transmission clamping rod (611); the limit shaft (65) is fixedly connected to the front and rear sides of the vibration damping block (51); the liquid storage box (66) is fixedly connected to the upper surface of the slide rail support plate (61); the infusion port (67) is fixedly connected to one side of the liquid storage box (66); the sliding baffle (68) is slidably connected to the bottom of the inner surface of the liquid storage box (66); the U-shaped transmission rod (69) is fixedly connected to a side of the sliding baffle (68) close to the support slider (63); the delayed transmission rod (610) is fixedly connected to a side of the support slider (63) close to the U-shaped transmission rod (69); and the transmission clamping rod (611) is fixedly connected to a side of the delayed transmission rod (610) close to the U-shaped transmission rod (69).

5. The anti-collision device for network security server equipment according to claim 4, characterized in that: The sliding baffle (68) is slidably connected to the upper surface of the slide rail support plate (61), the transmission clamping rod (611) is slidably connected to the inner surface of the U-shaped transmission rod (69), the H-row supporting inclined rod (64) and the limiting shaft (65) are hinged on the circumferential surface, and the supporting slider (63) is slidably connected to the inner surface of the slide rail support plate (61).

6. The anti-collision device for network security server equipment according to claim 5, characterized in that: The closed explosion-proof device (7) comprises a ventilation slot (71), a sliding card frame (72), a closed baffle plate (73), and a T-shaped push rod (74); the ventilation slot (71) is arranged on both sides of the anti-collision cabinet (1); the sliding card frame (72) is fixedly connected to both sides of the inner wall of the anti-collision cabinet (1); the closed baffle plate (73) is slidably connected to the inner surface of the sliding card frame (72); and the T-shaped push rod (74) is fixedly connected to a side of the closed baffle plate (73) away from the inner wall of the anti-collision cabinet (1).

7. The anti-collision device for network security server equipment according to claim 6, characterized in that: The closed explosion-proof device (7) also includes a supporting partition (75), a contact plate (76), a drop groove (77), a U-shaped pull plate (78), a U-shaped transmission member (79), a T-shaped pull rod (710), and an elastic telescopic rod (711). The supporting partition (75) is slidably connected to the bottom surface of the sliding card frame (72), the contact plate (76) is fixedly connected to the side of the supporting partition (75) close to the inside of the anti-collision cabinet (1), the drop groove (77) is arranged on the inner side of the supporting partition (75), the U-shaped pull plate (78) is fixedly connected to the side of the supporting partition (75) away from the anti-collision cabinet (1), the U-shaped transmission member (79) is fixedly connected to the side of the U-shaped pull plate (78) away from the anti-collision cabinet (1), the T-shaped pull rod (710) is fixedly connected to the side of the supporting slider (63), and the elastic telescopic rod (711) is fixedly connected to the side of the U-shaped pull plate (78) close to the anti-collision cabinet (1).

8. The anti-collision device for network security server equipment according to claim 7, characterized in that: The closed baffle (73) and the inner walls of the anti-collision cabinet (1) are in contact with each other on both sides; a sliding groove 1 is provided on the side of the sliding frame (72) away from the anti-collision cabinet (1), and the inner wall of the sliding groove 1 and the outer surface of the T-shaped pull rod (710) are in contact with each other; sliding grooves 2 are provided on the two side surfaces of the anti-collision cabinet (1), and the inner wall of the sliding groove 2 and the outer surface of the supporting partition (75) are in contact with each other; the bottom surface of the closed baffle (73) and the upper surface of the supporting partition (75) are in contact with each other; the T-shaped pull rod (710) and the inner surface of the U-shaped transmission member (79) are clamped together; and the elastic telescopic rod (711) and the two sides of the anti-collision cabinet (1) are fixedly connected.

Citation Information

Patent Citations

  • Anti-collision device for network security server equipment

    CN213403797U

  • Stone ancient building reinforcing device with anti-seismic structure and using method

    CN116657954A

  • Protective device for intelligent safety control equipment

    CN117279277A