A multi-functional storage device for software development
The storage device addresses the inconvenience of existing hard drive handling by integrating a rotating door mechanism with automatic humidity detection and synchronized drive tray movement, ensuring easy and secure storage and retrieval.
Patent Information
- Application Number
- CN202510409330.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2045-04-02
AI Technical Summary
The existing storage devices are prone to shaking during movement, the positioning structure is complicated, the hard disk is not convenient to pick up and place, and the drying effect is not good.
A multi-function storage device is designed to drive the gear system and hoisting components through the rotating shaft to realize the convenient access of the hard disk and the automatic drying function of the drying box, and combine it with humidity detection to simplify the operation process.
It realizes convenient access and drying of hard disks, simplifies operation steps, improves convenience of use and drying efficiency.
Smart Images

Figure CN119911554B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of hard disk storage, and particularly to a multifunctional storage device for software development. Background Art
[0002] Software development is a process of building a software system or the software part in a system according to user requirements. Software development is a systematic project including requirement capture, requirement analysis, design, implementation, and testing. Software is generally implemented in a certain programming language, and during the software development process, a certain storage device is required to store the external hard disks used in the development process.
[0003] Currently, in order to prevent the storage device from being easily shaken during mobile transportation, which may cause the hard disk to collide with the inner wall of the device and be damaged, a positioning structure for limiting the hard disk is provided in the storage box. However, the positioning structure requires operations to release the hard disk after the box door is opened. The entire usage process is rather cumbersome, and multiple operations are required to obtain the hard disk. Moreover, when taking the innermost hard disk in the storage box, the operator needs to reach inside for operation, and the hard disk can be obtained only after the hard disk limiting structure is released. When storing the hard disk, the user also needs to first insert the external hard disk into the positioning structure and then close the box door. Whether taking or storing the external hard disk, the positioning structure needs to be operated repeatedly, resulting in inconvenient taking and storing of the external hard disk. Summary of the Invention
[0004] In order to overcome the deficiencies of the prior art, the present invention provides a multifunctional storage device for software development.
[0005] To solve the above technical problems, the present invention provides the following technical solutions: It includes a storage box, on which a box door with a handle and a lock is connected through a rotating shaft. At the center inside the storage box, a base frame is fixedly installed by bolts. On the top of the base frame, an arc-shaped placement plate is fixedly installed. On the top of the arc-shaped placement plate, a placement board for placing an external hard disk is movably arranged. On the top of the arc-shaped placement plate, a drying box for drying the external hard disk is movably arranged. A jacking component for lifting the placement board is arranged in the storage box, and the jacking component includes:
[0006] A jacking plate for driving the placement board to be jacked up. Inside the base frame, an arc-shaped moving rod is movably connected through a support seat. Both ends of the arc-shaped moving rod are connected through a rotating shaft to a loop-shaped hinge seat. One end of the arc-shaped moving rod is connected to the jacking plate through the loop-shaped hinge seat. The other end of the arc-shaped moving rod is connected to a connecting block through the loop-shaped hinge seat. The connecting block is connected to a moving plate through an arc-shaped limiting rod;
[0007] A first gear is installed at the bottom end of the rotating shaft inside the storage box. A second gear is connected to one side of the first gear through a rotating shaft. The second gear is movably meshed with the first gear. A first rack plate is movably connected to the side of the second gear close to the support base. An L-shaped connecting rod is fixedly installed on the first rack plate through bolts. The top end of the L-shaped connecting rod is installed on the moving plate. An arc-shaped groove matching the arc-shaped limiting rod is formed on the moving plate.
[0008] A second rack plate is movably arranged on the side of the second gear away from the support base. A first support rod is fixedly installed on the second rack plate, and the top of the first support rod extends through and reaches the arc-shaped placement plate. The moving plate is connected to a second support rod on the side away from the first support rod.
[0009] As a preferred technical solution of the present invention, a plurality of drying holes for drying the mobile hard disk are evenly formed in the drying box. A discharge slot is formed at the top of the drying box. A discharge plate is movably arranged in the drying box. The top of the discharge plate is slidably connected in the discharge slot and is provided with a U-shaped handle outside the top of the drying box.
[0010] A detection hole is formed at one end of the drying box away from the box door. A humidity detector is fixedly installed inside the storage box through bolts, and the detection end of the humidity detector is movably located in the detection hole. Handling handles are fixedly installed on both sides outside the storage box through bolts.
[0011] As a preferred technical solution of the present invention, a placement plate is fixedly installed at the top end of the lifting plate through bolts. Protection openings are formed around the mobile hard disk on the placement plate. A protection baffle matching the size of the protection openings is fixedly installed on the arc-shaped placement plate through bolts, and the placement plate is movably located on the protection baffle through the protection openings.
[0012] A connection plate is fixedly installed on one side of the lifting plate. A connection block is connected to the connection plate through a formed connection slot, and the connection block is installed on one side of the lifting plate.
[0013] The top ends of the first support rod and the second support rod are both fixedly installed on the drying box through bolts. Movement slots are formed on both sides at one end of the arc-shaped placement plate close to the box door, and the tops of the first support rod and the second support rod are both movably located in the movement slots.
[0014] As a preferred technical solution of the present invention, a first limit seat is fixedly installed at the bottom of the first rack plate in the storage box through bolts. A first limit groove is opened at the top of the first limit seat. A first limit block is slidably connected in the first limit groove. The bottom of the first rack plate is fixedly installed on the first limit block.
[0015] A base block is fixedly installed at one side of the bottom of the moving plate in the storage box through bolts. A base sliding groove is opened on the base block. A base sliding block is slidably connected in the base sliding groove. The top end of the base sliding block is fixedly installed on the bottom of the moving plate. The arc-shaped limit rod moves in the arc-shaped groove.
[0016] As a preferred technical solution of the present invention, a second limit seat is fixedly installed on the side of the second rack plate away from the support seat in the storage box. A second limit groove is opened at the top end of the second limit seat. A second limit block connected to the second rack plate is slidably connected in the second limit groove.
[0017] The movable grooves are opened on both sides of the protective baffle. The drying box is provided with a feed port at one end close to the box door. The drying box is filled with activated carbon desiccant. The drying holes are opened at the bottom of the drying box and on the side where the two drying boxes face each other.
[0018] Compared with the prior art, the beneficial effects that the present invention can achieve are:
[0019] When opening the box door, the rotation shaft on the box door drives the first gear to move, and the lifting plate jacks out the mobile hard disk on the placing plate from the protective opening and the protective baffle, which is convenient for taking the mobile hard disk in the storage box. When opening the box door, the limit protection of the mobile hard disk is released, and it can be directly taken. When storing, it is directly placed on the placing disk, and when closing the box door, the protection of the mobile hard disk can be achieved.
[0020] When opening the box door, the rotation shaft on the box door drives the first support rod and the second support rod to push the drying box. When the box door is opened, the drying box is on both sides of the placing plate, which is convenient for taking the mobile hard disk. When the box door is closed, the drying box is on the top of the placing plate, and the top of the mobile hard disk can also be protected by the drying box.
[0021] When the rotation shaft under the box door drives the first gear, the second gear, the first rack plate, and the second rack plate to make the drying box unfold towards both sides, the placing plate is jacked out from the arc-shaped placing disk. When the drying box covers towards the middle for drying, the placing plate falls into the protective baffle through the protective opening, which can not only store the mobile hard disks separately and classify them, but also achieve independent protection for each mobile hard disk.
[0022] When the box door is opened, the drying box moves towards both sides of the storage box. The humidity detector detects the humidity of the activated carbon adsorption package in the drying box through the detection holes, enabling the detection of the internal humidity every time the door is opened, effectively detecting the activated carbon adsorption package in the drying box in a timely manner, and without the need for additional operations by the user, which is automatically completed directly after opening the box door.
[0023] After the box door is closed, the drying box moves to the top of the placement board to cover and dry the mobile hard disk, with good drying effect. The drying box completes the convenient replacement of the activated carbon adsorption package through the U-shaped handle, the discharge chute and the discharge plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 Schematic structural diagram of the storage box in the closed state of the present invention;
[0025] Figure 2 Schematic structural diagram of the storage box in the opened state of the present invention;
[0026] Figure 3 For the present invention Figure 1 Schematic internal structural diagram of the storage box;
[0027] Figure 4 For the present invention Figure 3 Schematic connection structure diagram of the rotating shaft;
[0028] Figure 5 For the present invention Figure 2 Schematic structural diagram of the drying box;
[0029] Figure 6 For the present invention Figure 4 Schematic connection structure diagram of the first gear;
[0030] Figure 7 For the present invention Figure 4 Schematic connection structure diagram of the moving plate;
[0031] Figure 8 For the present invention Figure 4 Schematic connection structure diagram of the second gear;
[0032] Figure 9 For the present invention Figure 2 Schematic structural diagram of the arc-shaped placement plate.
[0033] Among them: 10, storage box; 11, box door; 12, rotating shaft; 13, base frame; 14, handling handle; 20, arc-shaped placement plate; 21, mobile hard disk; 22, placement board; 23, lifting plate; 24, protection opening; 25, protection baffle; 26, connection board; 27, connection groove; 28, connection block; 29, movable groove; 30, drying box; 31, drying holes; 32, discharge chute; 33, discharge plate; 34, U-shaped handle; 35, humidity detector; 36, detection holes; 37, feed inlet; 40, support seat; 41, arc-shaped moving rod; 42, loop-shaped hinge seat; 43, connection block; 44, arc-shaped limiting rod; 50, moving plate; 51, first rack plate; 52, L-shaped connecting rod; 53, arc-shaped groove; 54, second support rod; 55, first limiting seat; 56, first limiting groove; 57, first limiting block; 60, first gear; 61, second gear; 62, second rack plate; 63, first support rod; 64, second limiting seat; 65, second limiting groove; 66, second limiting block; 67, base block; 68, base chute; 69, base slider. Detailed implementation mode
[0034] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments. However, the following embodiments are only the preferred embodiments of the present invention, not all of them. 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 are all conventional methods unless otherwise specified, and the materials, reagents, etc. used in the following embodiments can all be obtained from commercial channels unless otherwise specified.
[0035] Embodiment: As Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9 shown, it includes a storage box 10. A box door 11 with a handle and a lock is connected to the storage box 10 through a rotating shaft 12. A base frame 13 is fixedly installed at the center inside the storage box 10 by bolts. An arc-shaped placement plate 20 is fixedly installed on the top of the base frame 13. A placement board 22 for placing the mobile hard disk 21 is movably arranged on the top of the arc-shaped placement plate 20. A drying box 30 for drying the mobile hard disk 21 is movably arranged on the top of the arc-shaped placement plate 20. A lifting assembly for lifting the placement board 22 is arranged in the storage box 10, and the lifting assembly includes:
[0036] The lifting plate 23 that drives the placement plate 22 to lift. Inside the base frame 13, an arc-shaped moving rod 41 is movably connected through a support base 40. The arc-shaped moving rod 41 is movably located on the top of the support base 40 through a rotating shaft. Both ends of the arc-shaped moving rod 41 are connected with a loop-shaped hinge seat 42 through a rotating shaft. One end of the arc-shaped moving rod 41 is connected with the lifting plate 23 through the loop-shaped hinge seat 42, and the loop-shaped hinge seat 42 is movably connected with the lifting plate 23. The other end of the arc-shaped moving rod 41 is connected with a connecting block 43 through the loop-shaped hinge seat 42, and the connecting block 43 is connected with a moving plate 50 through an arc-shaped limiting rod 44;
[0037] At the bottom end of the rotating shaft 12, a first gear 60 is installed in the storage box 10. One side of the first gear 60 is connected with a second gear 61 through a rotating shaft. The second gear 61 and the first gear 60 are movably meshed. The second gear 61 is movably connected with a first rack plate 51 on the side close to the support base 40. An L-shaped connecting rod 52 is fixedly installed on the first rack plate 51 through a bolt. The top end of the L-shaped connecting rod 52 is installed on the moving plate 50. Through the movement of the first rack plate 51, the moving plate 50 is driven to move synchronously, achieving the synchronous movement of the drying box 30 and the placement plate 22. An arc-shaped groove 53 that coincides with the arc-shaped limiting rod 44 is formed on the moving plate 50. The arc-shaped limiting rod 44 is used to drive the arc-shaped moving rod 41 to rotate and swing on the support base 40 by moving in the arc-shaped groove 53;
[0038] On the side of the second gear 61 away from the support base 40, a second rack plate 62 is movably arranged. A first support rod 63 is fixedly installed on the second rack plate 62, and the top of the first support rod 63 penetrates and extends to the arc-shaped placement plate 20. The moving plate 50 is connected with a second support rod 54 on the side away from the first support rod 63. The first support rod 63 and the second support rod 54 are used to drive the drying box 30 in the middle to move to both sides inside the storage box 10.
[0039] Refer to Figure 1 、 Figure 2 、 Figure 4 、 Figure 5 and Figure 6, a number of drying holes 31 for drying the external hard drive 21 are evenly formed in the drying box 30. The external hard drive 21 on the placement plate 22 is covered and dried through the drying holes 31, and the drying effect is good. An outlet slot 32 is formed at the top of the drying box 30. An outlet plate 33 is movably arranged in the drying box 30. The top of the outlet plate 33 is slidably connected in the outlet slot 32 with a U-shaped handle 34 located outside the top of the drying box 30. Pulling the U-shaped handle 34 drives the outlet plate 33 to move through the outlet slot 32. The outlet plate 33 pushes out the activated carbon adsorption package in the drying box 30 for replacement. After replacement, the outlet plate 33 is reset, and a new activated carbon adsorption package is filled into the drying box 30. On both outer sides of the storage box 10, carrying handles 14 are fixedly installed by bolts. The carrying handles 14 facilitate the transportation and movement of the storage box 10;
[0040] A detection hole 36 is formed at one end of the drying box 30 away from the box door 11. A humidity detector 35 is fixedly installed inside the storage box 10 by bolts, and the detection end of the humidity detector 35 movably extends into the detection hole 36. When the drying box 30 moves to both sides of the storage box 10 when the box door 11 is opened, the detection end of the humidity detector 35 enters the drying box 30 through the detection hole 36 to detect the humidity of the internal activated carbon adsorption package, preventing the activated carbon adsorption package from still being placed in the storage box 10 after adsorbing moisture.
[0041] Refer to Figure 4 , Figure 5 , Figure 6 , Figure 8 and Figure 9 , the top end of the lifting plate 23 is fixedly installed with a placement plate 22 by bolts. Protection openings 24 are formed around the external hard drive 21 on the placement plate 22. A protection baffle 25 that matches the size of the protection openings 24 is fixedly installed on the arc-shaped placement disc 20 by bolts, and the placement plate 22 movably extends through the protection openings 24 on the protection baffle 25. When the placement plate 22 is ejected from the protection baffle 25 through the protection openings 24, the external hard drive 21 on the placement plate 22 is exposed, facilitating the user to take it;
[0042] One side of the lifting plate 23 is fixedly installed with an adapter plate 26. An adapter block 28 is connected to the adapter plate 26 through an adapter slot 27 formed thereon. The adapter block 28 is installed on one side of the lifting plate 23. One end of the arc-shaped moving rod 41 drives the lifting plate 23 to perform stable lifting movement on the adapter plate 26 through a loop-shaped hinge seat 42.
[0043] The top ends of the first support rod 63 and the second support rod 54 are fixedly mounted on the drying box 30 by bolts. The arc-shaped placement plate 20 is provided with movable grooves 29 on both sides of one end close to the box door 11. The top ends of the first support rod 63 and the second support rod 54 are movable in the movable grooves 29. The first support rod 63 and the second support rod 54 are movable through the arc-shaped placement plate 20, thereby driving the drying box 30 to cooperate with the placement plate 22 to move synchronously.
[0044] See also Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8 A first limit seat 55 is fixedly installed at the bottom of the first rack plate 51 in the storage box 10 by bolts, a first limit groove 56 is opened on the top of the first limit seat 55, a first limit block 57 is slidably connected in the first limit groove 56, and the bottom of the first rack plate 51 is fixedly installed on the first limit block 57, so that the first rack plate 51 is stable and smooth when meshing with the second gear 61.
[0045] A base block 67 is fixedly installed on one side of the bottom of the moving plate 50 in the storage box 10 by bolts, and a base slide groove 68 is opened on the base block 67. A base slider 69 is slidably connected in the base slide groove 68, and the top of the base slider 69 is fixedly installed on the bottom of the moving plate 50. The arc limit rod 44 moves in the arc groove 53, so that the moving plate 50 can move stably horizontally under the action of the first rack plate 51. During the horizontal movement, the moving plate 50 drives the arc limit rod 44 connected to the arc moving rod 41 to move stably through the arc groove 53, so as to achieve stable and smooth connection movement of the lifting plate 23 at the other end of the arc moving rod 41.
[0046] See also Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 8 A second limiting seat 64 is fixedly installed on the side of the second rack plate 62 away from the support seat 40 in the storage box 10, and a second limiting groove 65 is opened at the top of the second limiting seat 64. A second limiting block 66 connected to the second rack plate 62 is slidably connected in the second limiting groove 65. The second limiting groove 65 and the second limiting block 66 make the second rack plate 62 stable when meshing with the second gear 61, and will not be misaligned or stuck.
[0047] The movable slots 29 are opened on both sides of the protective baffle 25. The drying box 30 is provided with a feeding port 37 at one end close to the box door 11. The drying box 30 is filled with activated carbon desiccant. The drying holes 31 are opened at the bottom of the drying box 30 and on one side where the two drying boxes 30 face each other. The drying holes 31 cover one side of the mobile hard disk 21, achieving a comprehensive moisture-proof effect on the mobile hard disk 21.
[0048] Working principle: During use, when the box door 11 is rotated and opened, the rotating shaft 12 on the box door 11 rotates synchronously on the storage box 10. The first gear 60 at the bottom end of the rotating shaft 12 meshes and drives the second gear 61 on one side to rotate. The second gear 61 meshes and drives the second rack plate 62 on the second limit seat 64 to move, so that the second rack plate 62 moves towards the right side of the storage box 10. The second rack plate 62 drives the drying box 30 on the right side of the arc-shaped placement plate 20 through the first support rod 63, so that the drying box 30 moves from the middle end of the arc-shaped placement plate 20 to the right side inside the storage box 10.
[0049] The second gear 61 meshes and drives the first rack plate 51 on the first limit seat 55 to move. The first rack plate 51 moves towards the left side of the storage box 10. The first rack plate 51 will drive the moving plate 50 on the base block 67 to move synchronously. The moving plate 50 will drive the drying box 30 on the left side of the top of the arc-shaped placement plate 20 to move to the left side inside the storage box 10 through the second support rod 54. At this time, the drying box 30 originally at the middle end of the top of the arc-shaped placement plate 20 moves to both sides inside the storage box 10.
[0050] The moving plate 50 moves stably to the left under the action of the base block 67, the base chute 68 and the base slider. The moving plate 50 will drive the arc-shaped limit rod 44 to move through the arc-shaped groove 53. The arc-shaped limit rod 44 will move towards one side of the support seat 40 in the arc-shaped groove 53. The arc-shaped limit rod 44 will drive the arc-shaped moving rod 41 to rotate under the action of the support seat 40 and the loop hinge seat 42. The other end of the arc-shaped moving rod 41 will drive the jacking plate 23 on the connection plate 26 to move upward through the loop hinge seat 42. When the jacking plate 23 moves upward, the placement plate 22 moves stably upward on the arc-shaped placement plate 20 through the connection plate 26, the connection groove 27 and the connection block 28. The placement plate 22 will rise through the protection opening 24 in the protective baffle 25, so that the mobile hard disk 21 on the placement plate 22 is pushed out of the protective baffle 25. The user can directly take out the required mobile hard disk 21 from the placement plate 22. The operation is simple. Similarly, when it is necessary to store the mobile hard disk 21, directly place the mobile hard disk 21 in the groove of the placement plate.
[0051] When the drying box 30 moves to both sides of the storage box 10, the detection head of the humidity detector 35 on the storage box 10 will be inserted into the drying box 30 through the detection hole 36 to monitor the humidity of the activated carbon adsorption package at the innermost end in the drying box 30. Once the humidity monitoring exceeds the standard, the user pulls the U-shaped handle 34 to drive the discharge plate 33 to move through the discharge slot 32, and pushes the activated carbon adsorption package in the drying box 30 out from the feed port 37 to replace the activated carbon adsorption package in the drying box 30, and then fills a new activated carbon adsorption package into the drying box 30;
[0052] When closing the box door 11, the first gear 60 drives the second gear 61 to rotate in the opposite direction, and drives the drying boxes 30 on both sides of the storage box 10 to move to the middle top of the arc-shaped placement plate 20 through the first support rod 63 and the second support rod 54. At the same time, the placement plate 22 enters the protective baffle 25 through the protective opening 24, and the protective baffle 25 is used to limit and protect the mobile hard disk 21 on the placement plate 22, and the drying holes 31 on the drying box 30 are used to cover and dry the mobile hard disk 21 on the placement plate 22, and the drying effect is very good.
[0053] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to this. Various changes can be made without departing from the spirit of the present invention within the scope of knowledge possessed by those skilled in the art to which the present invention pertains.
Claims
1. A multi-functional storage device for software development, comprising a storage box (10), characterized in that, A storage box (10) is connected with a box door (11) with a handle and a lock through a rotating shaft (12). A base frame (13) is fixedly installed at the inner center of the storage box (10) through bolts. An arc-shaped placing plate (20) is fixedly installed on the top of the base frame (13). A placing plate (22) for placing a mobile hard disk (21) is movably arranged on the top of the arc-shaped placing plate (20). A drying box (30) for drying the mobile hard disk (21) is movably arranged on the top of the arc-shaped placing plate (20). A lifting assembly for lifting the placing plate (22) is arranged in the storage box (10), and the lifting assembly includes: A lifting plate (23) for driving the placing plate (22) to lift. An arc-shaped moving rod (41) is movably connected inside the base frame (13) through a support seat (40), and the arc-shaped moving rod (41) is rotatably arranged on the top of the support seat (40) through a rotating shaft. Both ends of the arc-shaped moving rod (41) are connected with a loop-shaped hinge seat (42) through a rotating shaft. One end of the arc-shaped moving rod (41) is connected with the lifting plate (23) through the loop-shaped hinge seat (42). The other end of the arc-shaped moving rod (41) is connected with a connecting block (43) through the loop-shaped hinge seat (42), and the connecting block (43) is connected with a moving plate (50) through an arc-shaped limiting rod (44); A first gear (60) is installed at the bottom end of the rotating shaft (12) inside the storage box (10). A second gear (61) is connected to one side of the first gear (60) through a rotating shaft. The second gear (61) is movably meshed with the first gear (60). A first rack plate (51) is movably connected to one side of the second gear (61) close to the support seat (40). An L-shaped connecting rod (52) is fixedly installed on the first rack plate (51) through bolts. The top end of the L-shaped connecting rod (52) is installed on the moving plate (50). An arc-shaped groove (53) matching the arc-shaped limiting rod (44) is formed in the moving plate (50); The moving plate (50) drives the arc-shaped limiting rod (44) to move through the arc-shaped groove (53). The arc-shaped limiting rod (44) moves towards one side of the support seat (40) in the arc-shaped groove (53). The arc-shaped limiting rod (44) drives the arc-shaped moving rod (41) to perform a rotating motion under the action of the support seat (40) and the loop-shaped hinge seat (42). The other end of the arc-shaped moving rod (41) drives the lifting plate (23) to perform a rising motion through the loop-shaped hinge seat (42).
2. The multifunctional storage device for software development according to claim 1, characterized in that, A second rack plate (62) is movably arranged on the side of the second gear (61) away from the support seat (40). A first support rod (63) is fixedly installed on the second rack plate (62), and the top of the first support rod (63) penetrates and extends to the arc-shaped placing plate (20). A second support rod (54) is connected to the side of the moving plate (50) away from the first support rod (63); A plurality of drying holes (31) for drying the external hard drive (21) are uniformly formed in the drying box (30). A discharge slot (32) is formed at the top of the drying box (30). A discharge plate (33) is movably arranged in the drying box (30). The top of the discharge plate (33) is slidably connected in the discharge slot (32) with a U-shaped handle (34) located outside the top of the drying box (30). A detection hole (36) is formed at one end of the drying box (30) away from the box door (11). A humidity detector (35) is fixedly installed inside the storage box (10) by bolts, and the detection end of the humidity detector (35) is movably arranged in the detection hole (36). Handling handles (14) are fixedly installed on both outer sides of the storage box (10) by bolts.
3. A multifunctional storage device for software development according to claim 2, characterized in that, The top end of the lifting plate (23) is fixedly installed with the placement plate (22) by bolts. Protection openings (24) are formed around the external hard drive (21) on the placement plate (22). A protection baffle (25) that matches the size of the protection opening (24) is fixedly installed on the arc-shaped placement disc (20) by bolts, and the placement plate (22) is movably arranged on the protection baffle (25) through the protection opening (24). One side of the lifting plate (23) is fixedly installed with an adapter plate (26). An adapter block (28) is connected to the adapter plate (26) through an adapter slot (27) formed thereon, and the adapter block (28) is installed on one side of the lifting plate (23).
4. A multi-functional storage device for software development according to claim 3, characterized in that, The top ends of the first support rod (63) and the second support rod (54) are both fixedly installed on the drying box (30) by bolts. The second rack plate (62) drives the drying box (30) on the right side of the arc-shaped placement disc (20) to move through the first support rod (63). The moving plate (50) drives the drying box (30) on the left side of the top of the arc-shaped placement disc (20) to move to the left side inside the storage box (10) through the second support rod (54). Movement slots (29) are formed on both sides at one end of the arc-shaped placement disc (20) close to the box door (11), and the tops of the first support rod (63) and the second support rod (54) are both movably arranged in the movement slots (29).
5. A multifunctional storage device for software development according to claim 1, characterized in that, A first limit seat (55) is fixedly installed at the bottom of the first rack plate (51) inside the storage box (10) by bolts. A first limit slot (56) is formed at the top of the first limit seat (55). A first limit block (57) is slidably connected in the first limit slot (56), and the bottom of the first rack plate (51) is fixedly installed on the first limit block (57).
6. A multifunctional storage device for software development according to claim 1, characterized in that, Inside the storage box (10), a base block (67) is fixedly installed on the bottom side of the moving plate (50) by bolts. A base chute (68) is formed in the base block (67). A base slider (69) is slidably connected in the base chute (68), and the top end of the base slider (69) is fixedly installed on the bottom of the moving plate (50). The arc-shaped limiting rod (44) is movably arranged in the arc-shaped groove (53).
7. A multi-functional storage device for software development according to claim 4, characterized in that, Inside the storage box (10), a second limiting seat (64) is fixedly installed on the side of the second rack plate (62) away from the support seat (40). A second limiting groove (65) is formed at the top end of the second limiting seat (64). A second limiting block (66) connected to the second rack plate (62) is slidably connected in the second limiting groove (65).
8. A multifunctional storage device for software development according to claim 7, characterized in that, The moving grooves (29) are formed on both sides of the protective baffle (25). A feed port (37) is formed at one end of the drying box (30) close to the box door (11). The drying box (30) is filled with activated carbon desiccant. Drying holes (31) are formed at the bottom of the drying box (30) and on the opposite sides of the two drying boxes (30).
Citation Information
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