Electronic information storage device
Through the combined design of support, buffering and lubrication devices, the inconvenience and wear of the electronic information storage device during use is solved, and the stable operation of the equipment and the service life are extended.
Patent Information
- Application Number
- CN202510650768.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-07-08
AI Technical Summary
The existing electronic information storage device is inconvenient when placing and removing the storage box, and it is prone to shake or fall due to gravity or external forces during use, and lacks an effective cleaning and lubrication mechanism, resulting in wear and shortening of the equipment.
Through the combined design of support device, buffer device and lubrication device, the support device provides additional support to prevent the housing box from falling, the buffer device reduces impact during opening and closing, and the lubrication device reduces friction, ensuring stable operation of the equipment.
Effectively prevent the storage box from falling due to gravity or external force when opened, keep it clean, reduce equipment wear, extend service life, and reduce maintenance costs.
Smart Images

Figure CN120267116A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of information storage devices, and particularly to an electronic information storage device. Background Art
[0002] An electronic information storage device is a device designed to improve the efficiency of information management, storage, and use. Such devices are widely used in the IT industry, data centers, offices, and personal work environments to help users organize and store electronic devices, accessories, and documents. Electronic information storage devices play an important role in modern office environments. They can not only improve the cleanliness of the space and the security of data, but also enhance work efficiency and user experience. According to specific needs, users can choose a suitable storage device to optimize their work environment.
[0003] The patent with the patent announcement number CN220441119U relates to an electronic information storage device provided by this patent, which belongs to the technical field of information storage devices and includes: a support plate, one side of the support plate is connected through a connecting pipe, a hollow groove is opened at one end of the connecting pipe, a fan is fixedly connected to one end of the connecting pipe, an upper ventilation groove and a lower ventilation groove are opened at one end of the connecting pipe, two connecting plates are fixedly penetrated at one end of the connecting pipe, a receiving and clamping mechanism is arranged on the connecting plates, and two support circular plates are fixedly connected to the bottoms of the two support plates. When it is necessary to take out the receiving box one at a high position, only need to manually rotate the connecting pipe within 90 degrees, and then extend the length of the telescopic rod to be clamped on one side of the connecting plate, then it can be easily taken out, which increases the convenience of the storage device. In the above patent, when it is necessary to take out the receiving box at a high position, only need to manually rotate the connecting pipe within 90 degrees, and then extend the length of the telescopic rod to be clamped on one side of the connecting plate, then it can be easily taken out, so the convenience of the storage device is increased. However, when putting items into the receiving box in the above patent, the receiving box may shake due to no support, and the receiving box may fall due to gravity or external force when it is opened. Therefore, an electronic information storage device is designed that can support the receiving box during use and can clean the surface of the receiving box in time. Summary of the Invention
[0004] Aiming at the deficiencies of the prior art, the present invention provides an electronic information storage device, which solves the problems raised in the above background art.
[0005] To achieve the above object, the present invention is realized through the following technical solutions: An electronic information storage device includes an equipment frame, inside which a storage frame is slidably installed. A fixing plate is fixedly installed inside the equipment frame, and a supporting device is also included. Among them, the supporting device includes a sliding plate, a supporting plate, a fixing block, a connecting block, a moving block, a connecting plate, a limiting block, a receiving plate, and a convex block. The sliding plate is fixedly installed inside the storage frame, the supporting plate is fixedly installed below the storage frame, the fixing block is fixedly installed below the supporting plate, the connecting block is hinged inside the fixing block, a sliding groove is formed inside the equipment frame, the moving block is slidably installed inside the sliding groove, the connecting plate is fixedly installed inside the equipment frame, the limiting block is slidably installed inside the equipment frame, the receiving plate is fixedly installed on the inner wall of the equipment frame, and the convex block is fixedly installed at one end of the receiving plate close to the limiting block. When the moving block moves upward and contacts and presses the inclined cutting surface of the limiting block, the limiting block moves in the direction close to the connecting plate, the limiting block moves and contacts and presses the telescopic end of the first telescopic spring to contract, the moving block moves upward, and then the first telescopic spring resets to drive the limiting block to move and provide additional support for the storage frame.
[0006] According to the above technical solution, a moving groove is formed on the surface of the fixing plate, the sliding plate is slidably connected with the inside of the moving groove, one end of the connecting block away from the fixing block is hinged with the moving block, and one side of the limiting block close to the moving block is provided with a first inclined cutting surface. The sliding plate moves along the moving groove, the fixing block moves to drive the connecting block to rotate, and the connecting block rotates to drive the moving block to move upward, and the moving block moves upward and contacts and presses the inclined cutting surface of the limiting block to move.
[0007] According to the above technical solution, one side of the convex block away from the receiving plate is provided with a first convex surface. A first telescopic spring is fixedly installed at one end of the connecting plate close to the limiting block, and the free end of the first telescopic spring is fixedly connected with the limiting block. The limiting block moves and contacts and presses the telescopic end of the first telescopic spring to contract, the moving block moves upward, and then the first telescopic spring resets to drive the limiting block to move.
[0008] According to the above technical solution, the buffer device includes a convex plate, an air box, a pressing plate, a receiving block, an arc block, an air inlet pipe, an air outlet pipe, a deceleration frame, a pushing plate and a square block. The convex plate is fixedly installed inside the object placing frame. The air box is fixedly installed at one end of the fixed plate away from the sliding plate. The pressing plate is slidably installed inside the air box. The receiving block is fixedly installed at one end of the pressing plate close to the convex plate. The arc block is fixedly installed at one end of the receiving block away from the pressing plate. The air inlet pipe fixedly penetrates through the inner and outer walls of the air box. The air outlet pipe fixedly penetrates through the inner and outer walls of the air box. The deceleration frame is fixedly installed at one end of the fixed plate away from the sliding plate. The pushing plate is slidably installed inside the deceleration frame. The square block is fixedly installed at one end of the pushing plate close to the convex plate. When the pressing plate moves and contacts and squeezes the telescopic end of the second telescopic elastic rod to contract, the air below the pressing plate is discharged through the air outlet pipe. At the same time, deceleration is carried out when the convex plate moves and contacts the convex surface of the arc block. When the convex plate continues to move, the second telescopic elastic rod resets.
[0009] According to the above technical solution, one side of the arc block away from the receiving block is provided with a second convex surface. The air inlet pipe fixedly penetrates through the inner and outer walls of the deceleration frame. A second telescopic elastic rod is fixedly installed inside the air box. The free end of the second telescopic elastic rod is fixedly connected to one end of the pressing plate away from the receiving block. The movement of the arc block drives the movement of the receiving block. The movement of the receiving block drives the movement of the pressing plate. The movement of the pressing plate contacts and squeezes the second telescopic elastic rod to make the telescopic end contract.
[0010] According to the above technical solution, a third telescopic elastic rod is fixedly installed inside the deceleration frame. The free end of the third telescopic elastic rod is fixedly connected to one end of the pushing plate away from the square block. A pressure valve is arranged inside the air inlet pipe. The gas inside the deceleration frame pushes the pushing plate to move in the direction close to the square block. The movement of the pushing plate drives the telescopic end of the third telescopic elastic rod to expand and contract. The movement of the pushing plate drives the movement of the square block.
[0011] According to the above technical solution, the lubricating rotating shaft includes an oil tank, an oil storage frame, an oil inlet frame, an L-shaped plate and a fuel injection pipe. The oil tank is fixedly installed at one end of the fixed plate away from the sliding plate. The oil storage frame is fixedly installed inside the oil tank. The oil inlet frame is slidably installed inside the oil storage frame. The L-shaped plate is fixedly installed at one end of the oil inlet frame away from the oil storage frame. The fuel injection pipe fixedly penetrates through the inner and outer walls of the oil tank. The convex plate moves and contacts and squeezes the inclined plane of the L-shaped plate to move upward. The upward movement of the L-shaped plate drives the upward movement of the oil inlet frame and closes the oil inlet at the same time. The convex plate moves and squeezes the L-shaped plate to move upward. The upward movement of the L-shaped plate drives the upward movement of the oil inlet frame. The movement of the oil inlet frame squeezes the oil inside the oil storage frame. Through the squeezing of the oil inlet frame, the oil inside the oil storage frame is sprayed out through the fuel injection pipe to lubricate the equipment.
[0012] According to the above technical solution, an oil inlet is provided on the surface of the oil inlet frame. The side of the L-shaped plate away from the oil inlet frame is set as the second inclined plane. The spray oil pipe is fixedly penetrated through the oil storage frame and the fixed plate. The spray oil pipe is in contact with the inside of the moving groove. When the L-shaped plate moves upward, it drives the oil inlet frame to move upward and closes the oil inlet at the same time. When the L-shaped plate moves upward, it drives the oil inlet frame to move upward and closes the oil inlet at the same time.
[0013] The present invention provides an electronic information storage device, which has the following beneficial effects: (1) In this electronic information storage device, through the cooperative operation among the sliding plate, the support plate, the fixed block, the connecting block, the moving block, the connecting plate, the limiting block, the receiving plate, and the convex block, additional support is provided for the object placing frame, which can effectively prevent the object placing frame from falling due to gravity or external force when it is opened, thereby protecting the safety of the device, preventing the object placing frame from shaking during use, which may cause damage to the device. At the same time, vibration is applied to the inside of the object placing frame, which can effectively remove dust, debris and other sundries on the surface of the object placing frame, keep the object placing frame clean. The vibration can also effectively prevent the items in the object placing frame from sticking together due to static electricity or gravity, facilitating quick taking out.
[0014] (2) In this electronic information storage device, through the cooperative operation among the convex plate, the air box, the pressing plate, the receiving block, the arc block, the air inlet pipe, the air outlet pipe, the speed reduction frame, the push plate, and the square block, when the object placing frame is quickly opened and closed, the internal items may fall due to inertia. Slow opening can reduce this situation and prevent the items from falling and being damaged. Slow opening and closing can reduce the impact between the object placing frame and its components, reduce the wear of the device during long-term use, extend the service life of the device. At the same time, too fast movement may cause damage to mechanical components. Effective blocking can reduce the wear caused by the device operating in an over-fast state, reduce the subsequent maintenance cost. Quickly opening the object placing frame may cause the items placed on it to slide down due to gravity. Through appropriate speed control, this risk can be effectively reduced.
[0015] (3) In this electronic information storage device, through the cooperative operation among the fuel tank, the oil storage frame, the oil inlet frame, the L-shaped plate, and the spray oil pipe, the oil inside the oil storage frame is sprayed out through the spray oil pipe by the extrusion of the oil inlet frame to lubricate the device. The lubricant can reduce the friction between components, reduce wear, and improve its working efficiency. Regular lubrication can keep the performance of the device stable, ensure its operation in the best state, increase the service life of the device. At the same time, when the sliding plate moves inside the moving groove, lubrication is carried out. Lubrication can reduce the friction noise generated when the sliding plate moves, improve the operation environment, and make the device operate more quietly. By reducing friction and wear, regular lubrication can extend the service life of the object placing frame, reduce the maintenance cost and the replacement frequency. Description of the Drawings
[0016] Figure 1Schematic diagram of the overall structure of the present invention; Figure 2 Schematic diagram of the overall sectional structure of the present invention; Figure 3 Schematic diagram of the position structure of the support plate and the fixed block of the present invention; Figure 4 For the present invention Figure 3 Enlarged schematic diagram of structure A in; Figure 5 Schematic diagram of the position structure of the air box and the fixed plate of the present invention; Figure 6 Schematic diagram of the position structure of the air box and the pressing plate of the present invention; Figure 7 Schematic diagram of the position structure of the fuel tank and the L-shaped plate of the present invention.
[0017] In the figure: 1, equipment frame; 101, chute; 2, storage box; 3, fixed plate; 301, moving groove; 4, sliding plate; 5, support plate; 6, fixed block; 7, connecting block; 8, moving block; 9, connecting plate; 10, limiting block; 11, first telescopic elastic rod; 12, bearing plate; 13, convex block; 141, convex plate; 142, air box; 143, pressing plate; 144, bearing block; 145, arc block; 146, intake pipe; 147, exhaust pipe; 148, second telescopic elastic rod; 149, deceleration box; 1410, push plate; 1411, square block; 1412, third telescopic elastic rod; 151, fuel tank; 152, oil storage box; 153, oil inlet box; 154, L-shaped plate; 155, fuel injection pipe; 156, oil inlet. Detailed implementation manners
[0018] 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.
[0019] Please refer to Figures 1 - 7, an embodiment of the present invention is: an electronic information storage device, including a device frame 1, a storage frame 2 is slidably installed inside the device frame 1, a fixing plate 3 is fixedly installed inside the device frame 1, and a supporting device is further included; wherein, the supporting device includes a sliding plate 4, a supporting plate 5, a fixing block 6, a connecting block 7, a moving block 8, a connecting plate 9, a limiting block 10, a receiving plate 12 and a convex block 13. The sliding plate 4 is fixedly installed inside the storage frame 2, the supporting plate 5 is fixedly installed below the storage frame 2, the fixing block 6 is fixedly installed below the supporting plate 5, the connecting block 7 is hinged inside the fixing block 6, a sliding groove 101 is opened inside the device frame 1, the moving block 8 is slidably installed inside the sliding groove 101, the connecting plate 9 is fixedly installed inside the device frame 1, the limiting block 10 is slidably installed inside the device frame 1, the receiving plate 12 is fixedly installed on the inner wall of the device frame 1, the convex block 13 is fixedly installed at one end of the receiving plate 12 close to the limiting block 10. The storage frame 2 provides additional support, which can effectively prevent the storage frame 2 from falling due to gravity or external force when it is opened, thereby protecting the safety of the device and preventing the storage frame 2 from shaking during use, thus causing damage to the device.
[0020] A moving groove 301 is opened on the surface of the fixing plate 3, the sliding plate 4 is slidably connected with the inside of the moving groove 301, one end of the connecting block 7 away from the fixing block 6 is hinged with the moving block 8, one side of the limiting block 10 close to the moving block 8 is set as an inclined plane one, the sliding plate 4 moves along the moving groove 301, the fixing block 6 moves to drive the connecting block 7 to rotate, the connecting block 7 rotates to drive the moving block 8 to move upward, and the moving block 8 moves upward to contact and squeeze the inclined plane of the limiting block 10 to move.
[0021] One side of the convex block 13 away from the receiving plate 12 is set as a convex surface one, a telescopic spring rod one 11 is fixedly installed at one end of the connecting plate 9 close to the limiting block 10, the free end of the telescopic spring rod one 11 is fixedly connected with the limiting block 10, the limiting block 10 moves to contact and squeeze the telescopic end of the telescopic spring rod one 11 to contract, the moving block 8 moves upward, and then the telescopic spring rod one 11 resets to drive the limiting block 10 to move.
[0022] During the operation of this embodiment: When an item needs to be placed in the storage frame 2, the storage frame 2 is pulled open. The movement of the storage frame 2 drives the movement of the sliding plate 4. The sliding plate 4 moves along the movement groove 301. The movement of the storage frame 2 drives the movement of the support plate 5. The movement of the support plate 5 drives the movement of the fixed block 6. The movement of the fixed block 6 drives the rotation of the connecting block 7. The rotation of the connecting block 7 drives the moving block 8 to move upward along the sliding groove 101. The upward movement of the moving block 8 contacts and squeezes the inclined cut surface of the limit block 10 and moves in the direction close to the connecting plate 9. The movement of the limit block 10 contacts and squeezes the telescopic end of the first telescopic spring rod 11 to contract. The moving block 8 moves upward. Subsequently, the first telescopic spring rod 11 resets to drive the movement of the limit block 10 and provides additional support for the storage frame 2, effectively preventing the storage frame 2 from falling due to gravity or external force when it is opened, thereby protecting the safety of the device and preventing the storage frame 2 from shaking during use, which may cause damage to the device. At the same time, when the moving block 8 moves upward and contacts and squeezes the convex block 13 to generate vibration, vibration is generated inside the storage frame 2. Through vibration, dust, debris and other sundries on the surface of the storage frame 2 can be effectively removed, keeping the storage frame 2 clean. Vibration can also effectively prevent the items in the storage frame 2 from sticking together due to static electricity or gravity, facilitating quick extraction.
[0023] Please refer to Figures 1 - 7 , on the basis of the above embodiment, another embodiment of the present invention further includes a buffer device and a lubricating device; the buffer device includes a convex plate 141, an air box 142, a pressure plate 143, a receiving block 144, an arc block 145, an air inlet pipe 146, an air outlet pipe 147, a deceleration frame 149, a push plate 1410 and a square block 1411. The convex plate 141 is fixedly installed inside the storage frame 2. The air box 142 is fixedly installed at one end of the fixed plate 3 away from the sliding plate 4. The pressure plate 143 is slidably installed inside the air box 142. The receiving block 144 is fixedly installed at one end of the pressure plate 143 close to the convex plate 141. The arc block 145 is fixedly installed at one end of the receiving block 144 away from the pressure plate 143. The air inlet pipe 146 is fixedly penetrated through the inner and outer walls of the air box 142. The air outlet pipe 147 is fixedly penetrated through the inner and outer walls of the air box 142. The deceleration frame 149 is fixedly installed at one end of the fixed plate 3 away from the sliding plate 4. The push plate 1410 is slidably installed inside the deceleration frame 149. The square block 1411 is fixedly installed at one end of the push plate 1410 close to the convex plate 141. When the storage frame 2 is opened and closed quickly, the items inside may fall due to inertia. Slowly opening it can reduce this situation and prevent the items from falling and being damaged. Slow opening and closing can reduce the impact between the storage frame 2 and its components, reduce the wear of the device during long-term use, and extend the service life of the device.
[0024] One side of the arc block 145 away from the receiving block 144 is set as the second convex surface. The air inlet pipe 146 is fixedly penetrated through the inner and outer walls of the retardation frame 149. A second telescopic spring rod 148 is fixedly installed inside the air box 142. The free end of the second telescopic spring rod 148 is fixedly connected to one end of the pressing plate 143 away from the receiving block 144. The movement of the arc block 145 drives the movement of the receiving block 144. The movement of the receiving block 144 drives the movement of the pressing plate 143. When the pressing plate 143 moves and contacts and presses the second telescopic spring rod 148, the telescopic end of the second telescopic spring rod 148 contracts.
[0025] A third telescopic spring rod 1412 is fixedly installed inside the retardation frame 149. The free end of the third telescopic spring rod 1412 is fixedly connected to one end of the push plate 1410 away from the square block 1411. A pressure valve is arranged inside the air inlet pipe (146). The gas inside the retardation frame 149 pushes the push plate 1410 to move in the direction close to the square block 1411. The movement of the push plate 1410 drives the telescopic end of the third telescopic spring rod 1412 to expand and contract. The movement of the push plate 1410 drives the movement of the square block 1411.
[0026] The lubricating rotating shaft includes an oil tank 151, an oil storage frame 152, an oil inlet frame 153, an L-shaped plate 154 and a fuel injection pipe 155. The oil tank 151 is fixedly installed at one end of the fixing plate 3 away from the sliding plate 4. The oil storage frame 152 is fixedly installed inside the oil tank 151. The oil inlet frame 153 is slidably installed inside the oil storage frame 152. The L-shaped plate 154 is fixedly installed at one end of the oil inlet frame 153 away from the oil storage frame 152. The fuel injection pipe 155 is fixedly penetrated through the inner and outer walls of the oil tank 151. The oil inside the oil storage frame 152 is ejected through the fuel injection pipe 155 by the extrusion of the oil inlet frame 153 to lubricate the equipment. The lubricant can reduce the friction between components, reduce wear, improve its working efficiency. Regular lubrication can keep the performance of the equipment stable, ensure its operation in the best state, and increase the service life of the equipment.
[0027] An oil inlet 156 is arranged on the surface of the oil inlet frame 153. One side of the L-shaped plate 154 away from the oil inlet frame 153 is set as the second inclined plane. The fuel injection pipe 155 is fixedly penetrated through the oil storage frame 152. The fuel injection pipe 155 is fixedly penetrated through the fixing plate 3. The fuel injection pipe 155 contacts the inside of the moving groove 301. The upward movement of the L-shaped plate 154 drives the upward movement of the oil inlet frame 153 and closes the oil inlet 156 at the same time. The upward movement of the L-shaped plate 154 drives the upward movement of the oil inlet frame 153 and closes the oil inlet 156 at the same time.
[0028] When the storage frame 2 moves, it drives the convex plate 141 to move. The convex plate 141 moves and contacts the convex surface of the arc block 145 and moves in the direction close to the pressing plate 143. The movement of the arc block 145 drives the receiving block 144 to move, and the movement of the receiving block 144 drives the pressing plate 143 to move. The pressing plate 143 moves and contacts the telescopic end of the second telescopic spring rod 148 to contract, so that the air below the pressing plate 143 is discharged through the air outlet pipe 147. At the same time, when the convex plate 141 moves and contacts the convex surface of the arc block 145, it slows down. When the convex plate 141 continues to move and the second telescopic spring rod 148 resets, when the storage frame 2 is opened and closed quickly, the internal items may fall due to inertia. Slowly opening can reduce this situation and prevent the items from falling and being damaged. Slow opening and closing can reduce the impact between the storage frame 2 and its components, reduce the wear of the equipment during long-term use, and extend the service life of the equipment. At the same time, when the storage frame 2 moves too fast, the air below the pressing plate 143 has no time to be discharged from the air outlet pipe 147, and the air will enter the slow-down frame 149 from the inside of the air inlet pipe 146. The gas inside the slow-down frame 149 pushes the push plate 1410 to move in the direction close to the square block 1411. The movement of the push plate 1410 drives the telescopic end of the third telescopic spring rod 1412 to expand and contract. The movement of the push plate 1410 drives the square block 1411 to move. The movement of the square block 1411 blocks the moving convex plate 141 to prevent the convex plate 141 from moving too fast. Fast movement may cause damage to mechanical components. Effective blocking can reduce the wear caused by the equipment operating in a too-fast state and reduce the subsequent maintenance cost. Quickly opening the storage frame 2 may cause the items placed on it to slide down due to gravity. By controlling the speed appropriately, this risk can be effectively reduced.
[0029] When the convex plate 141 moves and contacts the inclined plane of the L-shaped plate 154 and moves upward, the upward movement of the L-shaped plate 154 drives the oil inlet frame 153 to move upward and closes the oil inlet 156 at the same time. The convex plate 141 moves and squeezes the L-shaped plate 154 to move upward. The upward movement of the L-shaped plate 154 drives the oil inlet frame 153 to move upward. The movement of the oil inlet frame 153 squeezes the oil inside the oil storage frame 152. Through the squeezing of the oil inlet frame 153, the oil inside the oil storage frame 152 is sprayed out through the oil spray pipe 155 to lubricate the equipment. The lubricant can reduce the friction between components, reduce wear, and improve its working efficiency. Regular lubrication can keep the performance of the equipment stable, ensure its operation in the best state, and increase the service life of the equipment. At the same time, the upward movement of the L-shaped plate 154 drives the oil inlet frame 153 to move upward and closes the oil inlet 156 at the same time, and lubricates when the sliding plate 4 moves inside the moving groove 301. Lubrication can reduce the friction sound generated when the sliding plate 4 moves, improve the operating environment, and make the equipment operate more quietly. By reducing friction and wear, regular lubrication can extend the service life of the storage frame 2, reduce the maintenance cost and the frequency of replacement.
[0030] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art will appreciate that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An electronic information storage device, comprising a device frame (1), wherein an object placing frame (2) is slidably installed inside the device frame (1), and a fixing plate (3) is fixedly installed inside the device frame (1), characterized in that: It also includes a support device, a buffer device and a lubrication device; Among them, the support device includes a sliding plate (4), a support plate (5), a fixed block (6), a connecting block (7), a moving block (8), a connecting plate (9), a limiting block (10), a receiving plate (12) and a convex block (13). The sliding plate (4) is fixedly installed inside the storage frame (2), the support plate (5) is fixedly installed below the storage frame (2), the fixed block (6) is fixedly installed below the support plate (5), the connecting block (7) is hinged inside the fixed block (6), a chute (101) is provided inside the equipment frame (1), the moving block (8) is slidably installed inside the chute (101), the connecting plate (9) is fixedly installed inside the equipment frame (1), the limiting block (10) is slidably installed inside the equipment frame (1), the receiving plate (12) is fixedly installed on the inner wall of the equipment frame (1), and the convex block (13) is fixedly installed at one end of the receiving plate (12) close to the limiting block (10).
2. The electronic information storage device according to claim 1, wherein: A moving groove (301) is provided on the surface of the fixed plate (3), the sliding plate (4) is slidably connected to the inside of the moving groove (301), one end of the connecting block (7) away from the fixed block (6) is hinged to the moving block (8), and one side of the limiting block (10) close to the moving block (8) is set as a first inclined plane.
3. An electronic information storage device according to claim 2, wherein: One side of the convex block (13) away from the receiving plate (12) is set as a first convex surface. A first telescopic spring rod (11) is fixedly installed at one end of the connecting plate (9) close to the limiting block (10), and the free end of the first telescopic spring rod (11) is fixedly connected to the limiting block (10).
4. An electronic information storage device according to claim 3, characterized in that: The buffer device includes a convex plate (141), an air box (142), a pressure plate (143), a receiving block (144), an arc block (145), an air inlet pipe (146), an air outlet pipe (147), a speed reduction frame (149), a push plate (1410) and a square block (1411). The convex plate (141) is fixedly installed inside the storage frame (2), the air box (142) is fixedly installed at one end of the fixed plate (3) away from the sliding plate (4), the pressure plate (143) is slidably installed inside the air box (142), the receiving block (144) is fixedly installed at one end of the pressure plate (143) close to the convex plate (141), the arc block (145) is fixedly installed at one end of the receiving block (144) away from the pressure plate (143), the air inlet pipe (146) fixedly penetrates the inner and outer walls of the air box (142), the air outlet pipe (147) fixedly penetrates the inner and outer walls of the air box (142), the speed reduction frame (149) is fixedly installed at one end of the fixed plate (3) away from the sliding plate (4), the push plate (1410) is slidably installed inside the speed reduction frame (149), and the square block (1411) is fixedly installed at one end of the push plate (1410) close to the convex plate (141).
5. An electronic information storage device according to claim 4, characterized in that: One side of the arc block (145) away from the receiving block (144) is set as convex surface two. The air inlet pipe (146) fixedly penetrates through the inner and outer walls of the speed reducing frame (149). A telescopic spring rod two (148) is fixedly installed inside the air box (142). The free end of the telescopic spring rod two (148) is fixedly connected to one end of the pressing plate (143) away from the receiving block (144).
6. An electronic information storage device according to claim 5, characterized in that: A telescopic spring rod three (1412) is fixedly installed inside the speed reducing frame (149). The free end of the telescopic spring rod three (1412) is fixedly connected to one end of the pushing plate (1410) away from the square block (1411). A pressure valve is arranged inside the air inlet pipe (146).
7. An electronic information storage device according to claim 6, characterized in that: The lubricating rotating shaft includes an oil tank (151), an oil storage frame (152), an oil inlet frame (153), an L-shaped plate (154) and a fuel injection pipe (155). The oil tank (151) is fixedly installed at one end of the fixing plate (3) away from the sliding plate (4). The oil storage frame (152) is fixedly installed inside the oil tank (151). The oil inlet frame (153) is slidably installed inside the oil storage frame (152). The L-shaped plate (154) is fixedly installed at one end of the oil inlet frame (153) away from the oil storage frame (152). The fuel injection pipe (155) fixedly penetrates through the inner and outer walls of the oil tank (151).
8. An electronic information storage device according to claim 7, wherein: An oil inlet (156) is formed on the surface of the oil inlet frame (153). One side of the L-shaped plate (154) away from the oil inlet frame (153) is set as an inclined plane two. The fuel injection pipe (155) fixedly penetrates through the oil storage frame (152). The fuel injection pipe (155) fixedly penetrates through the fixing plate (3). The fuel injection pipe (155) is in contact with the inside of the moving groove (301).
Citation Information
Patent Citations
Storage device for information technology service
CN220441119U