Network integrated working equipment for information encryption and loss prevention
By designing information encryption and preventing loss of network integrated working equipment, using plugs, connecting rods, fans and noise prompt mechanisms, the problems of heat dissipation and information loss after the equipment is connected are solved, and the safe and efficient use of the equipment is achieved.
Patent Information
- Application Number
- CN202510289615.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2045-03-12
AI Technical Summary
Network integrated working equipment causes heat dissipation problems after connection, and cannot understand the connection situation in time, affecting safe use.
A network integrated working device for information encryption and anti-loss is designed. The plug and connecting rod are electrically connected by wires, combined with the fan and noise prompt mechanism to prevent theft and information loss, while avoiding heat dissipation problems through the support device.
It effectively prevents the loss and theft of equipment information, avoids the heat dissipation problem between the equipment and other electronic devices, and promptly informs the plug to be disengaged through noise prompts to ensure safe use.
Smart Images

Figure CN120145462A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of network integration, and specifically to a network integration working device for information encryption and anti-loss. Background Art
[0002] Network integration working devices refer to various devices or tools related to network integration and communication.
[0003] The patent with the patent announcement number CN215910897U relates to a network integration working device for information encryption and anti-loss, belonging to the technical field of communication. It includes a hard disk main body, a total control device, and an information receiving end. An early warning cavity is opened on one side inside the hard disk main body, and a balance gyroscope is arranged inside the early warning cavity. The total control device is located inside the hard disk main body. A fingerprint panel is arranged on one side of the top surface of the hard disk main body close to the early warning cavity. A speaker is arranged at the center position on the side of the top surface of the hard disk main body far from the fingerprint panel. Warning lights are symmetrically arranged on both sides of the speaker, and the warning lights are fixed to the top surface of the hard disk main body. By adding a balance gyroscope inside the hard disk main body to judge the movement stability of the hard disk main body, the plugging and unplugging of the information receiving end is carried out after successfully identifying the fingerprint through the fingerprint panel. When the identification fails or the fingerprint is identified for plugging and unplugging, the speaker and the indicator light give warnings, effectively carrying out the anti-theft work of the hard disk main body, preventing loss, and increasing the security of the hard disk main body.
[0004] In the above patent, the plugging and unplugging of the information receiving end is carried out after successfully identifying the fingerprint through the fingerprint panel. When the identification fails or the fingerprint is identified for plugging and unplugging, the speaker and the indicator light give warnings, effectively carrying out the anti-theft work of the hard disk main body, preventing loss, and increasing the security of the hard disk main body. However, after the network integration device is connected, it will cause the network integration to adhere to other electronic devices, resulting in heat dissipation problems for the network integration and the electronic devices. At the same time, after unplugging the network integration device, it is impossible to timely understand the connection status of the network integration device, making it impossible to understand the safe use situation of the network integration device. Summary of the Invention
[0005] Aiming at the deficiencies of the prior art, the present invention provides a network integration working device for information encryption and anti-loss, which solves the problems raised in the above background art.
[0006] To achieve the above object, the present invention is realized by the following technical solutions: A network integrated working device for information encryption and anti-loss, including a device body, further including a protection device and a support device. Among them, the device body is electrically connected to a plug through a wire. A connecting rod is fixedly installed at the top of the plug, and the connecting rod is slidably installed on the top of the device body. A fan is provided inside the device body. Among them, the protection device includes a contact rod, a moving plate, a clamping block, a cross plate, a telescopic plate, a plug board, a concave block, a bending rod, a filter board and an impact rod. When the cross plate moves downward, it will drive the bending rod to move downward. When the bending rod moves downward, the inclined surface of the bending rod will push the impact rod to move in the direction of the fan. The contact rod is slidably installed on the top of the plug, the moving plate is slidably installed on the surface of the connecting rod, the clamping block is slidably installed on the surface of the moving plate, the cross plate is slidably installed on the surface of the device body, the telescopic plate is fixedly installed on the surface of the cross plate, and the free end of the telescopic plate is slidably connected to the connecting rod. The plug board is fixedly installed at the bottom of the free end of the telescopic plate. The concave block is fixedly installed on the top of the moving plate, and a groove is provided on the surface of the concave block. The bending rod slidably penetrates the cross plate, the filter board is fixedly installed on the surface of the device body, the impact rod slidably penetrates the filter board, and a notch is provided at the top of the contact rod. The bending rod will push the impact rod to move in the direction of the fan. When the fan rotates, the impact rod generates noise, so as to prompt that the plug is about to be detached from the socket, preventing the information inside the device body from being lost due to theft.
[0007] According to the above technical solution, a first spring is provided between the contact rod and the plug, and the first spring will drive the contact rod to reset. A second spring is provided between the moving plate and the connecting rod, and the second spring can drive the moving plate to reset. A third spring is provided between the clamping block and the moving plate, and the third spring can drive the clamping block to reset. A fourth spring is provided between the cross plate and the device body, a fifth spring is provided between the bending rod and the cross plate, and a sixth spring is provided between the impact rod and the filter board.
[0008] According to the above technical solution, the support device includes a movable rod, a support rod, a concave frame, a rotating wheel, an arc-shaped block, a push rod, a hollow frame, a pressing plate, a limiting block, an inclined plate, and a pressing plate. The movable rod is slidably installed at the bottom of the device body. The support rod is hinged to the bottom of the movable rod. The concave frame is hinged to the bottom of the support rod. The rotating wheel is rotatably installed inside the concave frame. The arc-shaped block is fixedly installed on the surface of the rotating wheel. The push rod is slidably installed on the surface of the concave frame. The hollow frame is fixedly installed on the surface of the plug. The pressing plate is slidably installed inside the hollow frame. A return spring is arranged between the pressing plate and the hollow frame. When the pressing plate moves, it will contact the triangular groove, so that when the pressing plate moves, it will push the limiting block downward. A limiting groove is formed on the surface of the pressing plate. When the limiting block moves downward, it will disengage from the limiting groove of the pressing plate and will push the pressing plate to move toward the socket under the action of the return spring. The limiting block slidably penetrates through the bottom of the hollow frame. The inclined plate is fixedly installed on the top of the push rod. The pressing plate is slidably installed at the bottom of the plug. A triangular groove is formed on the surface of the limiting block. The pressing plate will push the plug to disengage from the socket, avoiding damage to the plug on the socket when the device body is squeezed.
[0009] According to the above technical solution, a seventh spring is arranged between the movable rod and the device body. A first torsion spring is arranged between the support rod and the movable rod. A second torsion spring is arranged between the concave frame and the support rod. A scroll spring is arranged between the rotating wheel and the concave frame. An eighth spring is arranged between the push rod and the concave frame. A ninth spring is arranged between the limiting block and the hollow frame. An expansion rod is fixedly installed between the plug and the concave frame, which can improve the stability of the concave frame and the plug.
[0010] According to the above technical solution, a deceleration device and a protection device are further included. A deceleration device is arranged inside the hollow frame. The deceleration device includes a sealed frame and a convex rod. When the pressing plate moves, it will contact the convex rod, so that when the pressing plate moves, it will push the convex rod to move. The sealed frame is fixedly installed inside the hollow frame. The convex rod slidably penetrates through the sealed frame. A non-Newtonian fluid is arranged inside the sealed frame. When the non-Newtonian fluid is impacted, it will instantaneously solidify. At the same time, the slow flow of the non-Newtonian fluid will limit the convex rod to only move slowly, thereby reducing the speed at which the plug disengages from the socket and preventing damage to the plug due to too fast disengagement speed.
[0011] According to the above technical solution, a support frame is rotatably installed at the bottom of the movable rod. A third torsion spring is arranged between the support frame and the movable rod. An L-shaped rod slidably penetrates through the surface of the support rod. A triangular block is fixedly installed at the top of the L-shaped rod. A transmission rod is fixedly installed on the surface of the convex rod. When the transmission rod moves, it will push the triangular block and the L-shaped rod to move. When the L-shaped rod moves, the limit on the support frame will be released. The support frame can buffer and support the device body, avoiding damage caused by the direct fall of the device body.
[0012] According to the above technical solution, the protection device includes a mounting plate and a T-shaped plate. The mounting plate is slidably installed on the top of the device body. A shrapnel is arranged between the mounting plate and the device body. The T-shaped plate slidably penetrates through the top of the mounting plate. A card slot is opened at the top of the connecting rod. Pulling the T-shaped plate upward will cause the T-shaped plate to disengage from the card slot on the connecting rod, thereby releasing the limit on the device body and enabling adjustment of the distance between the device body and the plug for convenient use of the device body.
[0013] According to the above technical solution, a Z-shaped rod is fixedly installed on the surface of the mounting plate. An inclined rod is fixedly installed on the surface of the Z-shaped rod. When the bending rod moves, it will contact the inclined surface of the inclined rod, causing the inclined surface of the inclined rod to push the bending rod downward. The impact rod will collide with the fan to generate a noise prompt to avoid further pulling of the device body.
[0014] The present invention provides a network integration working device with information encryption and anti-loss functions, having the following beneficial effects: (1) For the network integration working device with information encryption and anti-loss functions, after the plug is connected, the device body can be supported by the connecting rod, avoiding the device body being attached to other devices and affecting the heat dissipation of the device body and other devices. At the same time, when the plug is disconnected from the socket, the socket will no longer be able to push the contact rod, and the contact rod will move away from the plug. The contact rod will push the clamping block and the moving plate to move. When the moving plate moves, it will drive the concave block to move, causing the plug board to insert into the inside of the groove and drive the telescopic plate to move downward. When the telescopic plate moves downward, it will drive the cross plate and the bending rod to move downward. The bending rod will push the impact rod to move towards the fan. When the fan rotates, the impact rod generates noise, thereby prompting that the plug is about to be disconnected from the socket.
[0015] (2) The network integration working device for information encryption and anti-loss can support the device body through the movable rod, the support rod and the concave frame, avoiding all the gravity of the device body acting on the connection position of the plug and the socket. When the device body is pressed, it will push the rotating wheel to rotate on the device. When the rotating wheel rotates, the arc-shaped block will push the push rod upward. When the push rod moves upward, the inclined plate will push the pressing plate into the triangular groove of the limiting rod and push the limiting rod downward. The downward movement of the limiting rod will release the limit on the pressing plate. Under the action of the reset spring, the pressing plate will move towards the device, so that the pressing plate will push the plug to disengage from the socket, avoiding damage to the plug on the socket when the device body is squeezed.
[0016] (3) In the network integration working device for information encryption and anti-loss, when the pressing plate moves, it will move into the sealing frame together with the convex rod. The convex rod will squeeze the non-Newtonian fluid inside the sealing frame, so that the convex rod will reduce the moving speed of the pressing plate, thereby reducing the speed at which the plug disengages from the socket and preventing damage to the plug due to too fast disengagement speed. At the same time, the L-shaped rod will release the limit on the support frame, enabling the support frame to buffer and support the device body, avoiding damage caused by the direct fall of the device body.
[0017] (4) In the network integration working device for information encryption and anti-loss, the T-shaped plate can limit the connecting rod, thereby adjusting the distance between the plug and the device body. At the same time, when the device body is directly pulled, the mounting plate and the elastic sheet can buffer the device body, so that the inclined rod will push the bending rod downward to push the impact rod to move. The impact rod will collide with the fan to generate a noise prompt to avoid further pulling of the device body. Brief Description of the Drawings
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 For the present invention Figure 1 Schematic enlarged view of the structure of part A in; Figure 3 It is a schematic cross-sectional structure diagram of the device body of the present invention; Figure 4 It is a schematic diagram of the internal structure of the hollow frame of the present invention; Figure 5 It is a schematic diagram of the positional structure of the device body and the movable rod of the present invention; Figure 6 For the present invention Figure 4 Schematic enlarged view of the structure of part B in; Figure 7 It is a schematic diagram of the positional structure of the hollow frame and the pressing plate of the present invention; Figure 8 For the present invention Figure 4Schematic enlarged view of part C structure Figure 9 This is a schematic view of the position structure of the mounting plate and the T-shaped plate of the present invention
[0019] In the figure: 1, device body; 2, connecting rod; 3, plug; 4, fan; 51, contact rod; 52, moving plate; 53, clamping block; 54, cross plate; 55, telescopic plate; 56, inserting plate; 57, concave block; 58, bending rod; 59, filter plate; 510, impact rod; 61, movable rod; 62, support rod; 63, concave frame; 64, rotating wheel; 65, arc block; 66, push rod; 67, hollow frame; 68, extrusion plate; 69, limiting block; 610, inclined plate; 611, pressing plate; 71, sealing frame; 72, convex rod; 73, transmission rod; 74, support frame; 75, L-shaped rod; 76, triangular block; 81, mounting plate; 82, T-shaped plate; 83, Z-shaped rod; 84, inclined rod Specific embodiments
[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention
[0021] Please refer to Figures 1-7, an embodiment of the present invention is: a network integrated working device for information encryption and anti-loss, including a device body 1, further including a protection device and a support device. Among them, the device body 1 is electrically connected to a plug 3 through a wire. A connecting rod 2 is fixedly installed at the top of the plug 3. The connecting rod 2 is slidably installed on the top of the device body 1. A fan 4 is arranged inside the device body 1. Among them, the protection device includes a contact rod 51, a moving plate 52, a clamping block 53, a cross plate 54, a telescopic plate 55, an insertion plate 56, a concave block 57, a bending rod 58, a filter plate 59 and an impact rod 510. When the moving plate 52 moves, it will drive the concave block 57 to move. The cross plate 54, the telescopic plate 55 and the insertion plate 56 move downward, and the insertion plate 56 will insert into the inside of the groove. When the cross plate 54 moves downward, it will drive the bending rod 58 to move downward. When the bending rod 58 moves downward, the inclined surface of the bending rod 58 will push the impact rod 510 to move in the direction of the fan 4. The contact rod 51 is slidably installed on the top of the plug 3. The moving plate 52 is slidably installed on the surface of the connecting rod 2. The clamping block 53 is slidably installed on the surface of the moving plate 52. The cross plate 54 is slidably installed on the surface of the device body 1. The telescopic plate 55 is fixedly installed on the surface of the cross plate 54. The free end of the telescopic plate 55 is slidably connected to the connecting rod 2. The insertion plate 56 is fixedly installed at the bottom of the free end of the telescopic plate 55. The concave block 57 is fixedly installed on the top of the moving plate 52. A groove is formed on the surface of the concave block 57. The bending rod 58 slidably penetrates through the cross plate 54. The filter plate 59 is fixedly installed on the surface of the device body 1. The impact rod 510 slidably penetrates through the filter plate 59. A notch is formed at the top of the contact rod 51. The bending rod 58 will push the impact rod 510 to move in the direction of the fan 4. When the fan 4 rotates, the impact rod 510 generates noise, so as to prompt that the plug 3 is about to be detached from the socket, preventing the information inside the device body 1 from being lost due to theft.
[0022] A first spring is arranged between the contact rod 51 and the plug 3. The first spring will drive the contact rod 51 to reset. A second spring is arranged between the moving plate 52 and the connecting rod 2. The second spring can drive the moving plate 52 to reset. A third spring is arranged between the clamping block 53 and the moving plate 52. The third spring can drive the clamping block 53 to reset. A fourth spring is arranged between the cross plate 54 and the device body 1. A fifth spring is arranged between the bending rod 58 and the cross plate 54. A sixth spring is arranged between the impact rod 510 and the filter plate 59.
[0023] The supporting device includes a movable rod 61, a support rod 62, a concave frame 63, a rotating wheel 64, an arc-shaped block 65, a push rod 66, a hollow frame 67, a pressing plate 68, a limiting block 69, an inclined plate 610 and a pressing plate 611. The movable rod 61 is slidably installed at the bottom of the device body 1. The support rod 62 is hinged to the bottom of the movable rod 61. The concave frame 63 is hinged to the bottom of the support rod 62. The rotating wheel 64 is rotatably installed inside the concave frame 63. The arc-shaped block 65 is fixedly installed on the surface of the rotating wheel 64. The push rod 66 is slidably installed on the surface of the concave frame 63. The hollow frame 67 is fixedly installed on the surface of the plug 3. The pressing plate 68 is slidably installed inside the hollow frame 67. A return spring is arranged between the pressing plate 68 and the hollow frame 67. When the inclined plate 610 moves upward, the inclined surface of the inclined plate 610 will push the pressing plate 611 to move. When the pressing plate 611 moves, it will contact the triangular groove, so that when the pressing plate 611 moves, it will push the limiting block 69 to move downward. A limiting groove is formed on the surface of the pressing plate 68. When the limiting block 69 moves downward, it will disengage from the limiting groove of the pressing plate 68. Under the action of the return spring, it will push the pressing plate 68 to move towards the socket. The limiting block 69 slidably penetrates through the bottom of the hollow frame 67. The inclined plate 610 is fixedly installed on the top of the push rod 66. The pressing plate 611 is slidably installed at the bottom of the plug 3. A triangular groove is formed on the surface of the limiting block 69. The pressing plate 68 will push the plug 3 to disengage from the socket, avoiding the plug 3 being damaged on the socket when the device body 1 is squeezed.
[0024] A seventh spring is arranged between the movable rod 61 and the device body 1. A first torsion spring is arranged between the support rod 62 and the movable rod 61. A second torsion spring is arranged between the concave frame 63 and the support rod 62. A volute spring is arranged between the rotating wheel 64 and the concave frame 63. An eighth spring is arranged between the push rod 66 and the concave frame 63. A ninth spring is arranged between the limiting block 69 and the hollow frame 67. A telescopic rod is fixedly installed between the plug 3 and the concave frame 63, which can improve the stability of the concave frame 63 and the plug 3.
[0025] When this embodiment works, insert the plug 3 into the socket of the device. When the plug 3 moves towards the socket, it will drive the contact rod 51 to move towards the socket. When the contact rod 51 contacts the socket, under the action of the reaction force, it will push the contact rod 51 to move towards the clamping block 53. When the contact rod 51 contacts the inclined surface of the clamping block 53, it will push the clamping block 53 to move upward. When the contact rod 51 continues to move, under the action of the third spring, it will push the clamping block 53 into the inside of the notch, so that the contact rod 51 and the clamping block 53 can be connected together. When the connection between the contact rod 51 and the clamping block 53 is not released and the plug 3 is pulled loose from the socket, the socket cannot resist the movement of the contact rod 51. Under the action of the first spring, it will drive the contact rod 51 to move away from the clamping block 53. When the contact rod 51 moves, it will drive the clamping block 53 and the moving plate 52 to move. When the moving plate 52 moves, it will drive the concave block 57 to move. When the concave block 57 moves, under the action of the fifth spring, it will drive the cross plate 54, the telescopic plate 55 and the insertion plate 56 to move downward. The insertion plate 56 will insert into the inside of the groove. When the cross plate 54 moves downward, it will drive the bending rod 58 to move downward. When the bending rod 58 moves downward, the inclined surface of the bending rod 58 will push the impact rod 510 to move towards the fan 4. When the fan 4 works, it will impact the impact rod 510 to generate noise; The concave frame 63 fits on the device. Through the movable rod 61 and the support rod 62, it can support the device body 1. When the device body 1 is squeezed, the device body 1 will drive the movable rod 61, the support rod 62 and the concave frame 63 to move downward. When the concave frame 63 moves downward, it will drive the rotating wheel 64 to rotate on the device. When the rotating wheel 64 rotates, it will drive the arc-shaped block 65 to rotate. When the arc-shaped block 65 rotates, the arc surface of the arc-shaped block 65 will push the push rod 66 to move upward. When the push rod 66 moves upward, it will drive the inclined plate 610 to move upward. When the inclined plate 610 moves upward, the inclined surface of the inclined plate 610 will push the pressing plate 611 to move. When the pressing plate 611 moves, it will contact the triangular groove, so that when the pressing plate 611 moves, it will push the limiting block 69 to move downward. When the limiting block 69 moves downward, it will disengage from the limiting groove of the pressing plate 68. Under the action of the reset spring, it will push the pressing plate 68 to move towards the socket. When the pressing plate 68 contacts the socket, through the reaction force, it will push the plug 3 to disengage from the socket.
[0026] Please refer to Figures 1-9, on the basis of the above embodiments, in another embodiment of the present invention, a deceleration device and a protection device are further included. A deceleration device is arranged inside the hollow frame 67. The deceleration device includes a sealing frame 71 and a convex rod 72. When the extrusion plate 68 moves, it will contact the convex rod 72, so that when the extrusion plate 68 moves, it will push the convex rod 72 to move. The sealing frame 71 is fixedly installed inside the hollow frame 67. The convex rod 72 slides through the sealing frame 71. A non-Newtonian fluid is arranged inside the sealing frame 71. When the non-Newtonian fluid is impacted, it will instantaneously solidify. At the same time, the slow flow of the non-Newtonian fluid will limit the convex rod 72 to only move slowly, so as to reduce the speed at which the plug 3 is detached from the socket and prevent damage to the plug 3 caused by too fast detachment speed.
[0027] A support frame 74 is rotatably installed at the bottom of the movable rod 61. A third torsion spring is arranged between the support frame 74 and the movable rod 61. An L-shaped rod 75 slides through the surface of the support rod 62. A triangular block 76 is fixedly installed at the top of the L-shaped rod 75. A transmission rod 73 is fixedly installed on the surface of the convex rod 72. When the transmission rod 73 moves, it will push the triangular block 76 and the L-shaped rod 75 to move. When the L-shaped rod 75 moves, the limit on the support frame 74 will be released. The support frame 74 can play a buffering and supporting effect on the device body 1, avoiding damage caused by the direct fall of the device body 1.
[0028] The protection device includes a mounting plate 81 and a T-shaped plate 82. The mounting plate 81 is slidably installed on the top of the device body 1. A shrapnel is arranged between the mounting plate 81 and the device body 1. The T-shaped plate 82 slides through the top of the mounting plate 81. A card slot is opened at the top of the connecting rod 2. Pulling the T-shaped plate 82 upward will cause the T-shaped plate 82 to disengage from the card slot on the connecting rod 2, so as to release the limit on the device body 1 and adjust the distance between the device body 1 and the plug 3 to facilitate the use of the device body 1.
[0029] A Z-shaped rod 83 is fixedly installed on the surface of the mounting plate 81. An inclined rod 84 is fixedly installed on the surface of the Z-shaped rod 83. When the device body 1 moves, it will drive the cross plate 54 and the bending rod 58 to move. When the bending rod 58 moves, it will contact the inclined surface of the inclined rod 84, so that the inclined surface of the inclined rod 84 will push the bending rod 58 to move downward, and the impact rod 510 will collide with the blower 4 to generate a noise prompt to avoid further pulling the device body 1.
[0030] During the operation of this embodiment, when the extrusion plate 68 moves, it will contact the convex rod 72, causing the extrusion plate 68 to push the convex rod 72 to move when it moves. When the convex rod 72 moves, it will extrude the non-Newtonian fluid inside the sealing frame 71. The non-Newtonian fluid inside the sealing frame 71 will restrict the rapid movement of the extrusion plate 68 and the convex rod 72, causing the extrusion plate 68 to move slowly after contacting the socket. When the convex rod 72 moves, it will drive the transmission rod 73 to move. When the transmission rod 73 moves, it will push the triangular block 76 and the L-shaped rod 75 to move. When the L-shaped rod 75 moves, the limit on the support frame 74 will be released, and the support frame 74 will rotate to the left under the action of the third torsion spring, enabling the support frame 74 to support the dropped device body 1. When the plug 3 is inserted into the socket, pulling the T-shaped plate 82 upward will cause the T-shaped plate 82 to disengage from the card slot on the connecting rod 2, thereby releasing the limit on the device body 1 and allowing the distance between the device body 1 and the plug 3 to be adjusted. Pushing the T-shaped plate 82 downward to insert it into the inside of the card slot can limit the device body 1. When the device body 1 is forcibly pulled to move, when the device body 1 moves, the elastic sheet will buffer the device body 1. At the same time, when the device body 1 moves, it will drive the cross plate 54 and the bending rod 58 to move. When the bending rod 58 moves, it will contact the inclined surface of the inclined rod 84, causing the inclined surface of the inclined rod 84 to push the bending rod 58 downward. When the bending rod 58 moves downward, the inclined surface of the bending rod 58 will push the impact rod 510 in the direction of the blower 4. When the blower 4 operates, it will impact the impact rod 510 to generate noise.
[0031] 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. A network integrated working device for information encryption and anti-loss, comprising a device body (1), characterized in that: It also includes guards, supports and protection devices; The device body (1) is electrically connected to a plug (3) via a wire, a connecting rod (2) is fixedly mounted on the top of the plug (3), the connecting rod (2) is slidably mounted on the top of the device body (1), and a fan (4) is arranged inside the device body (1); The protective device comprises a contact rod (51), a movable plate (52), a positioning block (53), a horizontal plate (54), a telescopic plate (55), a plug plate (56), a concave block (57), a bent rod (58), a filter plate (59) and an impact rod (510), wherein the contact rod (51) is slidably mounted on the top of the plug (3), the movable plate (52) is slidably mounted on the surface of the connecting rod (2), the positioning block (53) is slidably mounted on the surface of the movable plate (52), the horizontal plate (54) is slidably mounted on the surface of the device body (1), and the telescopic plate (55) is slidably mounted on the surface of the device body (1). The movable plate (52) is fixedly mounted on the surface of the horizontal plate (54); the free end of the telescopic plate (55) is slidably connected to the connecting rod (2); the plug plate (56) is fixedly mounted on the bottom of the free end of the telescopic plate (55); the concave block (57) is fixedly mounted on the top of the movable plate (52); a groove is provided on the surface of the concave block (57); the bending rod (58) slides through the horizontal plate (54); the filter plate (59) is fixedly mounted on the surface of the device body (1); the impact rod (510) slides through the filter plate (59); and a notch is provided on the top of the contact rod (51).
2. The network integrated working device for information encryption and anti-loss according to claim 1 is characterized by: A No. 1 spring is arranged between the contact rod (51) and the plug (3), a No. 2 spring is arranged between the movable plate (52) and the connecting rod (2), a No. 3 spring is arranged between the positioning block (53) and the movable plate (52), a No. 4 spring is arranged between the transverse plate (54) and the device body (1), a No. 5 spring is arranged between the bending rod (58) and the transverse plate (54), and a No. 6 spring is arranged between the impact rod (510) and the filter plate (59).
3. The network integrated working device for information encryption and anti-loss according to claim 2 is characterized in that: The supporting device comprises a movable rod (61), a supporting rod (62), a concave frame (63), a rotating wheel (64), an arc block (65), a pushing rod (66) and a hollow frame (67), an extrusion plate (68), a limiting block (69), an inclined plate (610) and a pressing plate (611); the movable rod (61) is slidably mounted on the bottom of the device body (1); the supporting rod (62) is hinged on the bottom of the movable rod (61); the concave frame (63) is hinged on the bottom of the supporting rod (62); the rotating wheel (64) is rotatably mounted inside the concave frame (63); and the arc block (65) is fixedly mounted on the rotating wheel (64). The push rod (66) is slidably mounted on the surface of the concave frame (63), the hollow frame (67) is fixedly mounted on the surface of the plug (3), the extrusion plate (68) is slidably mounted inside the hollow frame (67), a return spring is provided between the extrusion plate (68) and the hollow frame (67), a limit groove is provided on the surface of the extrusion plate (68), the limit block (69) slides through the bottom of the hollow frame (67), the inclined plate (610) is fixedly mounted on the top of the push rod (66), the pressing plate (611) is slidably mounted on the bottom of the plug (3), and a triangular groove is provided on the surface of the limit block (69).
4. The network integrated working device for information encryption and loss prevention according to claim 3 is characterized in that: A No. 7 spring is arranged between the movable rod (61) and the device body (1), a No. 1 torsion spring is arranged between the support rod (62) and the movable rod (61), a No. 2 torsion spring is arranged between the concave frame (63) and the support rod (62), a volute spring is arranged between the rotating wheel (64) and the concave frame (63), a No. 8 spring is arranged between the pushing rod (66) and the concave frame (63), a No. 9 spring is arranged between the limit block (69) and the hollow frame (67), and a telescopic rod is fixedly installed between the plug (3) and the concave frame (63).
5. The network integrated working device for information encryption and anti-loss according to claim 4 is characterized in that: A deceleration device is arranged inside the hollow frame (67), the deceleration device comprising a sealing frame (71) and a convex rod (72), the sealing frame (71) is fixedly mounted inside the hollow frame (67), the convex rod (72) slides through the sealing frame (71), and a non-Newtonian fluid is arranged inside the sealing frame (71).
6. The network integrated working device for information encryption and anti-loss according to claim 5, characterized in that: A support frame (74) is rotatably mounted on the bottom of the movable rod (61), a third torsion spring is arranged between the support frame (74) and the movable rod (61), an L-shaped rod (75) is slidably penetrated through the surface of the support rod (62), a triangular block (76) is fixedly mounted on the top of the L-shaped rod (75), and a transmission rod (73) is fixedly mounted on the surface of the convex rod (72).
7. The network integrated working device for information encryption and loss prevention according to claim 6 is characterized in that: The protective device comprises a mounting plate (81) and a T-shaped plate (82); the mounting plate (81) is slidably mounted on the top of the device body (1); a spring sheet is provided between the mounting plate (81) and the device body (1); the T-shaped plate (82) slides through the top of the mounting plate (81); and a slot is provided on the top of the connecting rod (2).
8. The network integrated working device for information encryption and anti-loss according to claim 7 is characterized in that: A Z-shaped rod (83) is fixedly mounted on the surface of the mounting plate (81), and a tilting rod (84) is fixedly mounted on the surface of the Z-shaped rod (83).
Citation Information
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