Internet of Things data processing equipment convenient to disassemble and assemble

By designing start-up components, coordination components and positioning components in IoT data processing equipment, the automatic disassembly of the power box of the data equipment is achieved, solving the problems of cumbersome disassembly process and easy damage to the connection line in the prior art, and improving the protection and maintenance convenience of the equipment.

CN119997420AInactive Publication Date: 2025-05-13JIANGSU OCEAN UNIV +1

Patent Information

Application Number
CN202510470345.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the disassembly process, existing IoT data processing equipment is prone to falling off and damage to the connection line due to excessive force, and the disassembly process is cumbersome, increasing the risk of damage.

Method used

An IoT data processing device including a starter component, a mating component and a positioning component is designed. Through the cooperation of the telescopic column and the mobile shell, the outer side of the data device power box is automatically unlocked to realize disassembly automation.

Benefits of technology

It effectively avoids damage to the connection line caused by excessive force during disassembly, simplifies the disassembly process, and improves the protection and convenience of maintenance of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of internet of things data processing, in particular to internet of things data processing equipment convenient to disassemble and assemble, which comprises a case, a data equipment power supply box is arranged in the case, a starting assembly for fixing the data equipment power supply box is arranged in the case, and positioning assemblies are arranged on two moving shells. A matching assembly is arranged in the machine case, two triggering assemblies are arranged at the bottom end in the machine case, a taking-out assembly is arranged on the top of each sliding shell, and a pushing assembly is arranged in the machine case. According to the invention, the device can complete one-key automatic mounting and dismounting, the protection of the device is improved, and the maintenance of the device is more convenient, so that the problem that the damage risk is increased due to the fact that connection lines in the power supply device box are damaged and the dismounting process is tedious is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of Internet of Things data processing, and in particular to an Internet of Things data processing device that is easy to assemble and disassemble. Background Art

[0002] The Internet of Things data processing equipment is a device used to process and analyze massive amounts of data collected from various Internet of Things devices. The data equipment generally needs to be placed in a chassis. When the power supply equipment encapsulated in the data equipment needs to be maintained and repaired, the encapsulated power supply equipment data equipment needs to be removed from the chassis. However, during the disassembly process, if too much force is used when unplugging and plugging the power supply equipment, the connection lines on the power supply equipment will fall off and be damaged. Therefore, the prior art has invented a push-pull power supply removal device. When the power supply equipment is removed from the chassis for repair in a push-pull manner, it will be difficult to remove the power supply equipment due to fixed reasons during pushing and pulling. Using too much force during removal will still cause the connection lines on the power supply equipment to fall off and be damaged, which makes the disassembly process more cumbersome and increases the risk of damage. Summary of the invention

[0003] In order to overcome the deficiencies of the prior art, the present invention provides an Internet of Things data processing device that is easy to assemble and disassemble.

[0004] In order to solve the above technical problems, the present invention provides the following technical solutions: comprising a chassis, a dustproof plate is provided on the chassis, a data device power box is arranged inside the chassis, and a starting component for fixing the data device power box is arranged inside the chassis; the starting component comprises: two bearing bars, a positioning plate, two positioning blocks, a starting shell, two limit blocks, a first spring, a bearing plate, a telescopic column, two movable shells, a positioning shell, a plurality of movable bars and a plurality of movable columns; wherein the two bearing bars are correspondingly fixed at the bottom end of the inner wall of the chassis, the tops of the two bearing bars are fixedly connected to a positioning block, and the sides of the two positioning blocks away from the bearing bars are connected to a positioning block. The positioning plate is fixedly connected, the starting shell is fixedly connected to the positioning plate, the first spring is arranged inside the starting shell, the two ends of the first spring are respectively fixedly connected to the inner wall of the starting shell and the bearing plate, the bearing plate is fixedly connected to the telescopic column, the telescopic column is plugged into the positioning plate, and the end of the telescopic column away from the bearing plate is fixedly connected to the positioning shell, a limit block is fixed on each positioning block, and a movable column is movably connected to the two ends of each movable bar, and the positioning shell is movably connected to the two movable shells through the movable bar, and each movable shell is provided with a movable groove, and the two limit blocks are plugged into the corresponding movable grooves of the movable shell, and a positioning component for positioning the power box of the data device is provided on the two movable shells; each positioning component The invention relates to a method for making a movable shell having a plurality of movable shells, wherein the movable shell has a plurality of movable shells and a plurality of movable shells, and the movable shell has a plurality of movable shells and a plurality of movable shells. The movable shell has a plurality of movable shells and a plurality of movable shells. The movable shell has a plurality of movable shells and a plurality of movable shells. The movable shell has a plurality of movable shells and a plurality of movable shells. The movable shell has a plurality of movable shells and a plurality of movable shells. The movable shell has a plurality of movable shells and a plurality of movable shells. A tension spring is provided inside, which is sleeved on the moving column, and two ends of the tension spring are fixedly connected to the positioning ring and the inner wall of the connecting tube respectively, the moving column is inserted into the inside of the connecting tube, the positioning ring is fixedly connected to the moving column, and a moving groove is provided at the bottom of the connecting tube, the trigger block is inserted in the moving groove at the bottom of the connecting tube, the top of the trigger block is fixedly connected to the positioning ring, and the end of the moving column away from the tension spring is fixedly connected to the blocking bar, and the blocking bar consists of a disc and a long strip, the height and size of the first trigger bar correspond to the telescopic column, and the size and height of the second trigger bar correspond to the trigger block, and when the limit bar drives the first trigger bar and the second trigger bar to move toward the inside of the chassis, the second trigger bar first fits with the trigger block.

[0005] Preferably, through the coordinated use of the starting component, the matching component and the positioning component, when the data device power box needs to be installed, the placement plate at the bottom of the data device power box is placed in the middle of the two corrugated plates, and then the two corrugated plates are opened, and the corrugated plates drive the corresponding positioning shell to move through the movable bar, and when the positioning shell moves, the supporting plate is driven to move toward the inside of the starting shell through the telescopic column, the first spring is compressed, and the moving column moves toward the end away from the connecting tube, and then the moving column drives the blocking bar to extend while driving the tension spring to stretch, and when the placement plate is fitted with the two connecting strips, the compressed first spring rebounds and drives the positioning shell to reset through the telescopic column, and then when the positioning shell is reset, the connecting strip on the moving shell is driven to contract through the movable bar, and when the connecting strip contracts, it drives the corrugated plate on the limit plate to fix the data device power box on the placement plate, and the tension spring rebounds and drives the blocking bar on the moving column to fix the back of the data device power box, thereby completing the installation of the data device power box.

[0006] As a preferred technical solution of the present invention, two trigger components for removing the power box of the data device are provided at the inner bottom end of the chassis; each trigger component includes: a groove plate, a blocking plate, a linkage block, a second spring, a blocking column, a rubber column, a connecting column, a sliding shell, a telescopic block, a third spring, a round hole block, a linkage column and a baffle; wherein, the bottom of the groove plate is fixedly connected to the bottom end of the inner wall of the chassis, the interior of the groove plate is provided with a placement groove for placing the sliding shell, the sliding shell is inserted into the placement groove of the groove plate, one end of the groove plate is fixedly connected to the blocking plate, the second spring is arranged in the placement groove of the groove plate, and the two ends of the second spring are respectively connected to the blocking plate and the sliding shell. The shell is fixedly connected, the linkage block is fixedly connected to the top of one end of the groove plate close to the blocking plate, the end of the sliding shell away from the second spring is fixedly connected to the connecting column, the end of the connecting column away from the sliding shell is fixedly connected to the rubber column, the end of the groove plate away from the blocking plate is fixedly connected to the blocking column, and the rubber column fits the blocking column, the sliding shell is provided with a cavity for placing the telescopic block, the circular hole block is fixedly connected inside the cavity of the sliding shell, the third spring is arranged inside the cavity of the sliding shell, the third spring is sleeved on the linkage column, the two ends of the third spring are respectively fixedly connected to the circular hole block and the telescopic block, the telescopic block is fixedly connected to the linkage column, and the telescopic block is inserted in the cavity of the sliding shell, the baffle is fixedly connected to the sliding shell, the linkage column passes through the circular hole block, and each of the sliding shells The top of each of the cabinets is provided with a take-out assembly for fixing the power box of the data device; each take-out assembly includes: a fixed column, a telescopic plate, a semi-arc bar and a plurality of fourth springs; wherein the fixed column is fixedly connected to the top of the corresponding sliding shell, the top of the fixed column is fixedly connected to the telescopic plate, a telescopic groove for placing the semi-arc bar is provided on the telescopic plate, a plurality of fourth springs are provided at the bottom of the semi-arc bar, both ends of each fourth spring are fixedly connected to the bottom of the semi-arc bar and the telescopic plate, the semi-arc bar is plugged into the telescopic groove of the telescopic plate, the semi-arc bar is semi-arc-shaped, and a pushing assembly for linkage is provided inside the chassis; the pushing assembly includes: a limit bar, a push bar, a first trigger bar, a second trigger bar and a push bar; wherein A translation groove for connecting a limit bar is provided at the bottom end of the inner wall of the chassis, the limit bar is inserted in the translation groove of the chassis, one end of the limit bar is fixedly connected to the push bar, and the two ends of the push bar are respectively fitted with two telescopic blocks, and the end of the limit bar away from the push bar is fixedly connected to the push bar, the second trigger bar is fixedly connected to the end of the push bar away from the limit bar, the first trigger bar is fixedly connected to the top of the limit bar, and the second trigger bar corresponds to the limit bar, the bottom of the data equipment power box is fixedly connected to the placement plate, and the top of the placement plate is provided with two linkage grooves corresponding to the semi-arc bars. When the semi-arc bar moves to the position corresponding to the linkage groove of the placement plate, the semi-arc bar is plugged into the corresponding linkage groove on the placement plate, and the outer side of the placement plate corresponds to the two connecting strips.

[0007] Preferably, through the coordinated use of the trigger component, the removal component and the pushing component, when the power box of the data equipment needs to be disassembled and inspected, the dust cover is removed and the push bar is pushed, and then the push bar drives the two telescopic blocks to move toward the inside of the chassis while moving toward the inside of the chassis, and then the telescopic block drives the telescopic plate to move toward the position of the placement plate through the fixed column, and then when the semi-arc bar moves to the bottom of the placement plate, the semi-arc bar descends and drives the fourth spring to compress, and when the semi-arc bar on the telescopic plate moves to the position of the placement plate linkage groove, the compressed fourth spring rebounds and drives the semi-arc bar to enter the linkage groove of the card placement plate, and then the push bar first drives the second trigger bar to fit with the trigger block when moving, and the fitted The trigger block drives the moving column to leave the data equipment power box while the tension spring is stretched, and then the first trigger bar pushes the telescopic column to move toward the inside of the starting shell, the first spring is compressed, and the telescopic column drives the positioning shell to move while the positioning shell drives the connecting bar on the moving shell to open through the movable bar, and then the corrugated plate on the connecting bar releases the fixation of the data equipment power box, when the telescopic block moves to the position corresponding to the linkage block, the telescopic block moves toward the inside of the sliding shell, the linkage column is compressed, and when the telescopic block moves to a state of releasing the fit with the push bar, the compressed second spring drives the corresponding sliding shell to rebound, and then when the sliding shell rebounds, the data equipment power box placed on the board is taken out for maintenance through the telescopic plate.

[0008] Compared with the prior art, the present invention can achieve the following beneficial effects: Through the coordinated use of the starting component, the matching component and the positioning component, when installing the data device power box, the telescopic column and the movable shell can be used to automatically release the fixation on the outside of the data device power box when the data device power box is taken out of the chassis, thereby avoiding excessive force during disassembly, which makes the disassembly process more cumbersome and increases the risk of damage, affecting the stability and reliability of the entire system, thereby realizing the automation of equipment disassembly, allowing maintenance personnel to easily and stably take out the data device power box, thereby improving the efficiency of disassembly.

[0009] By using the starting component, matching component, positioning component, triggering component, removing component and pushing component in coordination, it is possible to avoid damage to the internal connection lines of the equipment due to excessive force during the disassembly process. The equipment can be automatically installed and disassembled with one button, which improves the protection of the equipment and makes equipment maintenance more convenient.

[0010] By using the starting component, the matching component, the trigger component, the removal component and the pushing component in coordination, the telescopic column, the corrugated plate and the movable shell can automatically remove the power supply of the data device and automatically fix the data device power box on the outside of the data device power box while preventing the data device power box from shaking due to external shaking. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 It is a structural schematic diagram of the limiting plate of the present invention; Figure 3 It is a schematic diagram of the structure of the barrier strip of the present invention; Figure 4 It is a structural schematic diagram of the connecting strip of the present invention; Figure 5 It is a structural schematic diagram of the positioning plate of the present invention; Figure 6 It is a structural schematic diagram of the starting shell of the present invention; Figure 7 It is a structural schematic diagram of the cross section of the connecting tube of the present invention; Figure 8 It is a schematic diagram of the structure of the push bar of the present invention; Fig. 9 It is a structural schematic diagram of the groove plate of the present invention; Fig.10 It is a structural schematic diagram of the placement plate of the present invention.

[0012] Among them: 1. Chassis; 2. Data equipment power box; 3. Bearing bar; 4. Positioning plate; 5. Positioning block; 6. Starter shell; 7. Limit block; 8. First spring; 9. Bearing plate; 10. Telescopic column; 11. Moving shell; 12. Positioning shell; 13. Active bar; 14. Active column; 15. Connecting bar; 16. Limiting plate; 17. Card bar; 18. Corrugated plate; 19. Connecting tube; 20. Moving column; 21. Positioning ring; 22. Trigger block; 23. Tension spring; 24. Blocking bar; 25. Concave Slot plate; 26, blocking plate; 27, linkage block; 28, second spring; 29, blocking column; 30, rubber column; 31, connecting column; 32, sliding shell; 33, telescopic block; 34, third spring; 35, round hole block; 36, linkage column; 37, baffle; 38, placement plate; 39, fixed column; 40, telescopic plate; 41, semi-arc strip; 42, fourth spring; 43, limit strip; 44, push strip; 45, first trigger strip; 46, second trigger strip; 47, push strip; 48, dustproof plate. DETAILED DESCRIPTION

[0013] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further described below in conjunction with specific embodiments, but the following embodiments are only preferred embodiments of the present invention, not all. Based on the embodiments in the implementation mode, other embodiments obtained by those skilled in the art without creative work all belong to the protection scope of the present invention. The experimental methods in the following embodiments, unless otherwise specified, are conventional methods, and the materials, reagents, etc. used in the following embodiments, unless otherwise specified, can all be obtained from commercial channels.

[0014] Embodiment: Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7As shown, an IoT data processing device that is easy to disassemble and assemble includes a chassis 1, a dustproof plate 48 is provided on the chassis 1, a data device power box 2 is provided inside the chassis 1, and a starting component for fixing the data device power box 2 is provided inside the chassis 1; the starting component includes: two bearing bars 3, a positioning plate 4, two positioning blocks 5, a starting shell 6, two limit blocks 7, a first spring 8, a bearing plate 9, a telescopic column 10, two moving shells 11, a positioning shell 12, a plurality of movable bars 13 and a plurality of movable columns 14; wherein, The two bearing bars 3 are fixed to the bottom end of the inner wall of the chassis 1, and the tops of the two bearing bars 3 are fixedly connected to a positioning block 5. The two positioning blocks 5 are fixedly connected to a positioning plate 4 on one side away from the bearing bars 3. The starting shell 6 is fixedly connected to the positioning plate 4. The first spring 8 is arranged inside the starting shell 6. The two ends of the first spring 8 are respectively fixedly connected to the inner wall of the starting shell 6 and the bearing plate 9. The bearing plate 9 is fixedly connected to the telescopic column 10. The telescopic column 10 is plugged into the positioning plate 4. The end of the telescopic column 10 away from the bearing plate 9 is fixedly connected to the positioning shell 12. Each positioning block 5 has A limit block 7 is fixed, and both ends of each movable bar 13 are movably connected to a movable column 14. The positioning shell 12 is movably connected to the two movable shells 11 through the movable bar 13. Each movable shell 11 is provided with a movable groove. The two limit blocks 7 are plugged into the corresponding movable grooves of the movable shell 11. A positioning component for positioning the data device power box 2 is provided on the two movable shells 11; each positioning component includes: a connecting bar 15, a limiting plate 16, a card bar 17 and a corrugated plate 18; wherein the connecting bar 15 is fixedly connected to the corresponding movable shell 11 The top of the connecting strip 15 is fixedly connected to the limiting plate 16, and a slot for connecting the card strip 17 is provided on the side of the connecting strip 15 corresponding to the moving shell 11. The card strip 17 is fixedly connected to the corrugated plate 18, and the end of the card strip 17 away from the corrugated plate 18 is engaged with the slot on the limiting plate 16. The end of the corrugated plate 18 away from the card strip 17 is in a corrugated shape. The inside of the chassis 1 is provided with a matching component for matching the positioning component; the matching component includes: a connecting cylinder 19, a moving column 20, a positioning ring 21, a trigger block 22, a tension spring 23 and a blocking strip 24;Among them, the outer side of the connecting tube 19 is fixedly connected with the two bearing bars 3 respectively, and the interior of the connecting tube 19 is provided with a tension spring 23, which is sleeved on the moving column 20, and the two ends of the tension spring 23 are fixedly connected with the positioning ring 21 and the inner wall of the connecting tube 19 respectively, and the moving column 20 is inserted into the interior of the connecting tube 19, and the positioning ring 21 is fixedly connected with the moving column 20. The bottom of the connecting tube 19 is provided with a moving groove, and the trigger block 22 is inserted into the moving groove at the bottom of the connecting tube 19. The top of the trigger block 22 is fixedly connected with the positioning ring 21. The end of the moving column 20 away from the tension spring 23 is fixedly connected with the blocking bar 24, and the blocking bar 24 is composed of a disc and a long strip. The height and size of the first trigger bar 45 correspond to the telescopic column 10, and the size and height of the second trigger bar 46 correspond to the trigger block 22. When the limit bar 43 drives the first trigger bar 45 and the second trigger bar 46 to move toward the inside of the chassis 1, the second trigger bar 46 first fits with the trigger block 22. ;

[0015] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 8 , Fig. 9 and Fig.10As shown, an IoT data processing device that is easy to disassemble and assemble, two trigger components for taking out the data device power box 2 are provided at the bottom of the interior of the chassis 1; each trigger component includes: a groove plate 25, a blocking plate 26, a linkage block 27, a second spring 28, a blocking column 29, a rubber column 30, a connecting column 31, a sliding shell 32, a telescopic block 33, a third spring 34, a round hole block 35, a linkage column 36 and a baffle 37; wherein the bottom of the groove plate 25 is fixedly connected to the bottom end of the inner wall of the chassis 1, and a placement groove for placing the sliding shell 32 is provided inside the groove plate 25, and the sliding shell 32 is plugged in Inside the placement groove of the groove plate 25, one end of the groove plate 25 is fixedly connected to the blocking plate 26, the second spring 28 is arranged inside the placement groove of the groove plate 25, the two ends of the second spring 28 are respectively fixedly connected to the blocking plate 26 and the sliding shell 32, the linkage block 27 is fixedly connected to the top of the end of the groove plate 25 close to the blocking plate 26, the end of the sliding shell 32 away from the second spring 28 is fixedly connected to the connecting column 31, the end of the connecting column 31 away from the sliding shell 32 is fixedly connected to the rubber column 30, the end of the groove plate 25 away from the blocking plate 26 is fixedly connected to the blocking column 29, and the rubber column 30 is fitted with the blocking column 29, and the sliding shell 32 is provided with a cavity for placing the telescopic block 33 The circular hole block 35 is fixedly connected to the cavity of the sliding shell 32, the third spring 34 is arranged in the cavity of the sliding shell 32, the third spring 34 is sleeved on the linkage column 36, the two ends of the third spring 34 are respectively fixedly connected to the circular hole block 35 and the telescopic block 33, the telescopic block 33 is fixedly connected to the linkage column 36, and the telescopic block 33 is inserted into the cavity of the sliding shell 32, the baffle 37 is fixedly connected to the sliding shell 32, and the linkage column 36 passes through the circular hole block 35. The top of each of the sliding shells 32 is provided with a removal component for fixing the data device power box 2; each removal component includes: a fixed column 39, a telescopic plate 40, a semi-arc bar 41 and a plurality of first Four springs 42; wherein the fixed column 39 is fixedly connected to the top of the corresponding sliding shell 32, the top of the fixed column 39 is fixedly connected to the telescopic plate 40, the telescopic plate 40 is provided with a telescopic groove for placing the semi-arc bar 41, the bottom of the semi-arc bar 41 is provided with a plurality of fourth springs 42, both ends of each fourth spring 42 are fixedly connected to the bottom of the semi-arc bar 41 and the telescopic plate 40, the semi-arc bar 41 is inserted into the telescopic groove of the telescopic plate 40, the semi-arc bar 41 is semi-arc-shaped, and a pushing component for linkage is provided inside the chassis 1; the pushing component includes: a limit bar 43, a push bar 44, a first trigger bar 45, a second trigger bar 46 and a push bar 47;Among them, the bottom end of the inner wall of the chassis 1 is provided with a translation groove for connecting the limit bar 43, the limit bar 43 is inserted into the translation groove of the chassis 1, one end of the limit bar 43 is fixedly connected to the push bar 47, the two ends of the push bar 47 are respectively fitted with the two telescopic blocks 33, the end of the limit bar 43 away from the push bar 47 is fixedly connected to the push bar 44, the second trigger bar 46 is fixedly connected to the end of the push bar 47 away from the limit bar 43, the first trigger bar 45 is fixedly connected to the top of the limit bar 43, and the second trigger bar 46 corresponds to the limit bar 43, the bottom of the data equipment power box 2 is fixedly connected to the placement plate 38, and the top of the placement plate 38 is provided with two linkage grooves corresponding to the semi-arc bar 41, when the semi-arc bar 41 moves to the position corresponding to the linkage groove of the placement plate 38, the semi-arc bar 41 is plugged into the corresponding linkage groove on the placement plate 38, and the outer side of the placement plate 38 corresponds to the two connecting bars 15. ;

[0016] Working principle: When the data device power box 2 needs to be installed, the placement plate 38 at the bottom of the data device power box 2 is placed between the two corrugated plates 18, and then the two corrugated plates 18 are opened, and the corrugated plates 18 drive the corresponding positioning shell 12 to move through the movable bar 13. When the positioning shell 12 moves, the supporting plate 9 is driven to move toward the inside of the starting shell 6 through the telescopic column 10, the first spring 8 is compressed, and the moving column 20 moves toward the end away from the connecting tube 19, and then the moving column 20 drives the blocking bar 24 to extend while driving the tension spring 23 to stretch. When the placement plate 38 is in contact with the two connecting bars 15, the compressed first spring 8 rebounds and drives the positioning shell 12 through the telescopic column 10. The shell 12 is reset, and then when the positioning shell 12 is reset, the connecting strip 15 on the movable shell 11 is driven to shrink through the movable strip 13. When the connecting strip 15 shrinks, it drives the corrugated plate 18 on the limiting plate 16 to fix the data device power box 2 on the placement plate 38. The tension spring 23 rebounds and drives the blocking strip 24 on the movable column 20 to fix the back of the data device power box 2, thereby completing the installation of the data device power box 2. When the data device power box 2 needs to be disassembled and inspected, the dustproof plate 48 is removed, and the push strip 44 is pushed, and then the push strip 44 moves toward the inside of the chassis 1 while driving the two telescopic blocks 33 to move toward the inside of the chassis 1, and then the telescopic blocks 33 are fixed. The fixed column 39 drives the telescopic plate 40 to move toward the position of the placement plate 38, and then when the semi-arc bar 41 moves to the bottom of the placement plate 38, the semi-arc bar 41 descends and drives the fourth spring 42 to compress. When the semi-arc bar 41 on the telescopic plate 40 moves to the position of the linkage groove of the placement plate 38, the compressed fourth spring 42 rebounds and drives the semi-arc bar 41 to enter the linkage groove of the card placement plate 38, and then the push bar 44 first drives the second trigger bar 46 to fit with the trigger block 22 when moving. The fitted trigger block 22 drives the moving column 20 to leave the data equipment power box 2 while the tension spring 23 is stretched, and then the first trigger bar 45 pushes the telescopic column 10 to move toward the inside of the starting shell 6, and the fourth spring 42 pushes the telescopic column 10 to move toward the inside of the starting shell 6. A spring 8 is compressed, and the telescopic column 10 drives the positioning shell 12 to move. At the same time, the positioning shell 12 drives the connecting bar 15 on the movable shell 11 to open through the movable bar 13, and then the corrugated plate 18 on the connecting bar 15 releases the fixation of the data equipment power box 2. When the telescopic block 33 moves to the position corresponding to the linkage block 27, the telescopic block 33 moves toward the inside of the sliding shell 32, and the linkage column 36 is compressed. When the telescopic block 33 moves to a state of releasing the fit with the push bar 47, the compressed second spring 28 drives the corresponding sliding shell 32 to rebound, and then when the sliding shell 32 rebounds, the data equipment power box 2 on the placement plate 38 is removed for maintenance through the telescopic plate 40.

[0017] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited thereto, and various changes can be made within the knowledge scope of technicians in the relevant technical field without departing from the purpose of the present invention.

Claims

1. An IoT data processing device that is easy to assemble and disassemble, comprising a chassis (1), a dustproof plate (48) being provided on the chassis (1), and a data device power supply box (2) being provided inside the chassis (1), characterized in that: A start-up component for fixing a data device power box (2) is provided inside the chassis (1); The starting assembly comprises: two bearing bars (3), a positioning plate (4), two positioning blocks (5), a starting shell (6), two limit blocks (7), a first spring (8), a bearing plate (9), a telescopic column (10), two moving shells (11), a positioning shell (12), a plurality of movable bars (13) and a plurality of movable columns (14); The two bearing bars (3) are fixed to the bottom ends of the inner wall of the chassis (1) respectively, the tops of the two bearing bars (3) are fixedly connected to a positioning block (5), the sides of the two positioning blocks (5) away from the bearing bars (3) are fixedly connected to a positioning plate (4), the starting shell (6) is fixedly connected to the positioning plate (4), the first spring (8) is arranged inside the starting shell (6), the two ends of the first spring (8) are respectively fixedly connected to the inner wall of the starting shell (6) and the bearing plate (9), and the bearing plate (9) is fixed to the telescopic column (10). The telescopic column (10) is plugged into the positioning plate (4), one end of the telescopic column (10) away from the bearing plate (9) is fixedly connected to the positioning shell (12), a limit block (7) is fixed on each positioning block (5), both ends of each movable bar (13) are movably connected to a movable column (14), the positioning shell (12) is movably connected to the two movable shells (11) through the movable bar (13), each movable shell (11) is provided with a movable groove, and the two limit blocks (7) are plugged into the corresponding movable grooves of the movable shell (11).

2. The IoT data processing device that is easy to assemble and disassemble according to claim 1 is characterized in that: Each of the two mobile shells (11) is provided with a positioning component for positioning the data device power supply box (2); Each positioning assembly comprises: a connecting strip (15), a limiting plate (16), a clamping strip (17) and a corrugated plate (18); The connecting strip (15) is fixedly connected to the corresponding moving shell (11), the top of the connecting strip (15) is fixedly connected to the limiting plate (16), a slot for connecting the connecting strip (17) is provided on one side of the connecting strip (15) corresponding to the moving shell (11), the connecting strip (17) is fixedly connected to the corrugated plate (18), one end of the connecting strip (17) away from the corrugated plate (18) is engaged with the slot on the limiting plate (16), and one end of the corrugated plate (18) away from the connecting strip (17) is in a corrugated shape.

3. The IoT data processing device that is easy to assemble and disassemble according to claim 2 is characterized in that: A matching component for matching with a positioning component is provided inside the chassis (1); The matching assembly comprises: a connecting tube (19), a movable column (20), a positioning ring (21), a trigger block (22), a tension spring (23) and a blocking strip (24); The outer side of the connecting tube (19) is fixedly connected to the two bearing bars (3) respectively, a tension spring (23) is provided inside the connecting tube (19), the tension spring (23) is sleeved on the moving column (20), the two ends of the tension spring (23) are fixedly connected to the positioning ring (21) and the inner wall of the connecting tube (19) respectively, the moving column (20) is inserted into the inside of the connecting tube (19), the positioning ring (21) is fixedly connected to the moving column (20), a moving groove is provided at the bottom of the connecting tube (19), a trigger block (22) is inserted into the moving groove at the bottom of the connecting tube (19), the top of the trigger block (22) is fixedly connected to the positioning ring (21), and the end of the moving column (20) away from the tension spring (23) is fixedly connected to the blocking bar (24), and the blocking bar (24) is composed of a disc and a long strip.

4. The IoT data processing device that is easy to assemble and disassemble according to claim 1 is characterized in that: Two trigger components for taking out the data device power box (2) are provided at the inner bottom of the chassis (1); Each trigger assembly comprises: a groove plate (25), a blocking plate (26), a linkage block (27), a second spring (28), a blocking column (29), a rubber column (30), a connecting column (31), a sliding shell (32), a telescopic block (33), a third spring (34), a circular hole block (35), a linkage column (36) and a baffle (37); The bottom of the groove plate (25) is fixedly connected to the bottom end of the inner wall of the chassis (1); a placement groove for placing the sliding shell (32) is provided inside the groove plate (25); the sliding shell (32) is inserted into the placement groove of the groove plate (25); one end of the groove plate (25) is fixedly connected to the blocking plate (26); the second spring (28) is arranged inside the placement groove of the groove plate (25); the two ends of the second spring (28) are respectively fixedly connected to the blocking plate (26) and the sliding shell (32); the linkage block (27) is fixedly connected to the top of one end of the groove plate (25) close to the blocking plate (26); one end of the sliding shell (32) away from the second spring (28) is fixedly connected to the connecting column (31); and one end of the connecting column (31) away from the sliding shell (32) is fixedly connected to the rubber column (30). , one end of the groove plate (25) away from the blocking plate (26) is fixedly connected to the blocking column (29), and the rubber column (30) is fitted with the blocking column (29), the sliding shell (32) is provided with a cavity for accommodating the telescopic block (33), the circular hole block (35) is fixedly connected inside the cavity of the sliding shell (32), the third spring (34) is arranged inside the cavity of the sliding shell (32), the third spring (34) is sleeved on the linkage column (36), the two ends of the third spring (34) are respectively fixedly connected to the circular hole block (35) and the telescopic block (33), the telescopic block (33) is fixedly connected to the linkage column (36), and the telescopic block (33) is inserted into the cavity of the sliding shell (32), the baffle (37) is fixedly connected to the sliding shell (32), and the linkage column (36) passes through the circular hole block (35).

5. The IoT data processing device that is easy to assemble and disassemble according to claim 4 is characterized in that: The top of each sliding shell (32) is provided with a removal component for fixing the data device power box (2); Each removal assembly comprises: a fixed column (39), a telescopic plate (40), a semi-arc bar (41) and a plurality of fourth springs (42); The fixed column (39) is fixedly connected to the top of the corresponding sliding shell (32), the top of the fixed column (39) is fixedly connected to the telescopic plate (40), the telescopic plate (40) is provided with a telescopic groove for accommodating the semi-arc bar (41), the bottom of the semi-arc bar (41) is provided with a plurality of fourth springs (42), both ends of each fourth spring (42) are fixedly connected to the bottom of the semi-arc bar (41) and the telescopic plate (40), the semi-arc bar (41) is inserted into the telescopic groove of the telescopic plate (40), and the semi-arc bar (41) is semi-arc shaped.

6. The IoT data processing device that is easy to assemble and disassemble according to claim 1, characterized in that: The chassis (1) is provided with a driving component for linkage inside; The pushing component comprises: a limit bar (43), a push bar (44), a first trigger bar (45), a second trigger bar (46) and a push bar (47); The bottom end of the inner wall of the chassis (1) is provided with a translation groove for connecting a limit bar (43), the limit bar (43) is inserted into the translation groove of the chassis (1), one end of the limit bar (43) is fixedly connected to a push bar (47), two ends of the push bar (47) are respectively fitted with two telescopic blocks (33), one end of the limit bar (43) away from the push bar (47) is fixedly connected to the push bar (44), the second trigger bar (46) is fixedly connected to one end of the push bar (47) away from the limit bar (43), the first trigger bar (45) is fixedly connected to the top of the limit bar (43), and the second trigger bar (46) corresponds to the limit bar (43).

7. The IoT data processing device that is easy to assemble and disassemble according to claim 6, characterized in that: The height and size of the first trigger bar (45) correspond to the telescopic column (10), and the size and height of the second trigger bar (46) correspond to the trigger block (22); when the limit bar (43) drives the first trigger bar (45) and the second trigger bar (46) to move toward the inside of the chassis (1), the second trigger bar (46) first fits into the trigger block (22).

8. The IoT data processing device that is easy to assemble and disassemble according to claim 6, characterized in that: The bottom of the data equipment power supply box (2) is fixedly connected to the placement plate (38), and the top of the placement plate (38) is provided with two linkage grooves corresponding to the semi-arc bars (41). When the semi-arc bars (41) move to a position corresponding to the linkage grooves of the placement plate (38), the semi-arc bars (41) are plugged into the corresponding linkage grooves on the placement plate (38), and the outer side of the placement plate (38) corresponds to the two connection bars (15).

Citation Information

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