Big data efficient storage device
By designing a fixed installation mechanism including the main clamp, the secondary clamp and the limit block, the instability and dimensional adaptability of the storage device during placement are solved, and the stable fixation and convenient use of the storage device are achieved.
Patent Information
- Application Number
- CN202422042435.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-22
AI Technical Summary
The existing big data storage devices are unstable when placed in the memory, easily bumped and damaged, and cannot adapt to the size adjustment of different types of memory, making them inconvenient to use.
A structure including the device main body, a fixed installation mechanism, a placement plate, a main clamp, a secondary clamp and a limit block is designed. Through the combination of knobs and slide grooves, stable fixation and precise adjustment of the storage device are achieved.
The stable fixation of the storage device is realized, adapted to storage devices of different sizes, and improved the security and convenience of operation.
Smart Images

Figure CN223123618U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of big data storage, in particular to an efficient big data storage device. Background Technique
[0002] Big data is a data set that greatly exceeds the capabilities of traditional database software tools in aspects such as acquisition, storage, management, and analysis. It has five characteristics: large volume, high speed, variety, low value density, and authenticity. "Big data" requires new processing models to have stronger decision-making power, insight discovery ability, and process optimization ability to adapt to massive, high-growth rate, and diverse information assets.
[0003] After retrieval, in a big data storage device with the publication number of CN213991405U, it includes a housing. One side of the housing is provided with a box door. The inner side of the box door is provided with a number of storage cabinets distributed along the horizontal direction. Each group of storage cabinets includes multiple groups of storage drawers arranged vertically. Each group of storage drawers includes a slide rail fixedly connected to the housing and a drawer installed on the slide rail and slidably connected to the slide rail. The rear side of the storage cabinet is also provided with an electric screw shaft. A sliding connection plate is sleeved on the electric screw shaft. One side of the sliding connection plate facing the drawer is provided with a telescopic pushing device. The big data storage device is convenient for taking and placing internal storage media to improve work efficiency. However, the placed memory cannot be stably fixed inside, and it will be bumped or even damaged during movement, with low safety. Moreover, the styles of the placed big data memories are diverse, and the size cannot be adjusted for different models of memories during replacement, making it inconvenient to use. Content of the Utility Model
[0004] The purpose of the utility model is to provide an efficient big data storage device to solve the problems raised in the above background technique.
[0005] To achieve the above object, the utility model provides the following technical solution: A high-efficiency big data storage device, comprising a device main body and a fixed installation mechanism. A protective door is arranged at the front end of the device main body, heat dissipation holes are arranged on both sides of the front end of the device main body, universal wheels are arranged at the bottom of the device main body, a fixed installation mechanism is arranged inside the device main body, a mounting plate is arranged inside the fixed installation mechanism, a placement plate is arranged inside the mounting plate, adjustment mounting holes are arranged on both sides of the placement plate, a first chute is opened at the top end of the placement plate, a main clamping plate is arranged inside the first chute, a first fixing knob is arranged at the upper end of the main clamping plate, a clamping pad is arranged at the front end of the main clamping plate, a main clamping plate chute is opened at the front end of the main clamping plate, a secondary clamping plate is arranged inside the main clamping plate chute, a second fixing knob is arranged on the outer side of the secondary clamping plate, a second chute is opened at the front side of the top end of the placement plate, a limiting block is arranged inside the second chute, and a third fixing knob is arranged at the front side of the limiting block.
[0006] Preferably, the device main body and the protective door are connected by hinges, and the heat dissipation holes are evenly and symmetrically distributed at the front end of the device main body.
[0007] Preferably, the device main body and the universal wheels are connected by screws, and the universal wheels can be locked and limited.
[0008] Preferably, the placement plate and the mounting plate are connected by screws, and six placement plates are arranged inside the mounting plate.
[0009] Preferably, the main clamping plate is slidably connected to the first chute, and the main clamping plate is limited and fixed to the first chute by the first fixing knob.
[0010] Preferably, the secondary clamping plate is slidably connected to the main clamping plate chute, and the secondary clamping plate is limited and fixed to the main clamping plate chute by the second fixing knob.
[0011] Preferably, the limiting block is slidably connected to the second chute, and the limiting block is limited and fixed to the second chute by the third fixing knob.
[0012] Compared with the prior art, the beneficial effects of the utility model are:
[0013] When preparing the storage device, it is necessary to adjust the height distance of the placement board. The placement board is connected to the mounting board by screws, and there are six adjustable placement boards inside, so that the placement board can adjust its height according to the storage devices of different sizes, ensuring that various storage devices can be properly placed. Adjust the position of the main clamping plate according to the size of the storage device. The main clamping plate is slidably connected to the first chute, and the position of the main clamping plate is limited and fixed by rotating the first fixing knob. The clamping pad at the front end of the main clamping plate provides a good clamping effect. The auxiliary clamping plate can move back and forth in the chute of the main clamping plate and is fixed by rotating the second fixing knob, so that precise adjustment can be made according to the specific size of the storage device. The limiting block is slidably connected to the second chute, and the limiting block can be fixed at the required position by rotating the third fixing knob, ensuring the stable fixation of the front end of the storage device. The operation is simple and stable. Description of the Drawings
[0014] Figure 1 It is a schematic diagram of the overall structure of the present utility model.
[0015] Figure 2 It is a schematic diagram of the internal structure of the present utility model.
[0016] Figure 3 It is a schematic diagram of the enlarged structure at point A of the present utility model.
[0017] In the figure: 1, device main body; 2, protective door; 3, heat dissipation holes; 4, universal wheels; 5, fixed installation mechanism; 501, mounting board; 502, placement board; 503, adjustment installation hole; 504, first chute; 505, main clamping plate; 506, first fixing knob; 507, clamping pad; 508, chute of the main clamping plate; 509, auxiliary clamping plate; 510, second fixing knob; 511, second chute; 512, limiting block; 513, third fixing knob. Detailed Embodiments
[0018] In order to make the technical means, creative features, achieved purposes and effects of the present utility model easy to understand, the present utility model will be further described below in conjunction with the detailed embodiments.
[0019] Please refer to Figures 1-3, an embodiment provided by the present utility model: a big data efficient storage device, including a device main body 1 and a fixed installation mechanism 5. A protective door 2 is arranged at the front end of the device main body 1, heat dissipation holes 3 are arranged on both sides of the front end of the device main body 1, universal wheels 4 are arranged at the bottom of the device main body 1, a fixed installation mechanism 5 is arranged inside the device main body 1, an installation plate 501 is arranged inside the fixed installation mechanism 5, a placement plate 502 is arranged inside the installation plate 501, adjustment installation holes 503 are arranged on both sides of the placement plate 502, a first sliding groove 504 is opened at the top end of the placement plate 502, a main clamping plate 505 is arranged inside the first sliding groove 504, a first fixing knob 506 is arranged at the upper end of the main clamping plate 505, a clamping pad 507 is arranged at the front end of the main clamping plate 505, a main clamping plate sliding groove 508 is opened at the front end of the main clamping plate 505, a sub-clamping plate 509 is arranged inside the main clamping plate sliding groove 508, a second fixing knob 510 is arranged on the outer side of the sub-clamping plate 509, a second sliding groove 511 is opened at the front side of the top end of the placement plate 502, a limiting block 512 is arranged inside the second sliding groove 511, and a third fixing knob 513 is arranged at the front side of the limiting block 512.
[0020] Furthermore, the device main body 1 and the protective door 2 are connected by hinges, and the heat dissipation holes 3 are evenly and symmetrically distributed at the front end of the device main body 1. Through such a setting, the protective door 2 can be flexibly opened, facilitating the maintenance and operation of the device, and the evenly and symmetrically distributed heat dissipation holes 3 can improve the heat dissipation effect, ensuring that the device is not easily overheated during high-load operation.
[0021] Furthermore, the device main body 1 and the universal wheels 4 are connected by screws, and the universal wheels 4 can be locked and limited. Through such a setting, it is convenient to move the device, and the locking and limiting can prevent the device from shifting at the target location, increasing safety.
[0022] Furthermore, the placement plate 502 and the installation plate 501 are connected by screws, and six placement plates 502 are arranged inside the installation plate 501. Through such a setting, the height distance between the placement plates 502 can be adjusted by itself to adapt to storage devices of different sizes and heights, with strong adaptability.
[0023] Furthermore, the main clamping plate 505 and the first sliding groove 504 are slidably connected, and the main clamping plate 505 is limited and fixed to the first sliding groove 504 through the first fixing knob 506. Through such a setting, the adjustment of the main clamping plate 505 is flexible and convenient, and the limitation of the first fixing knob 506 ensures that the main clamping plate 505 can clamp the storage device. Two main clamping plates 505 are arranged oppositely to improve the clamping effect.
[0024] Further, the auxiliary clamping plate 509 is slidably connected to the main clamping plate chute 508. The auxiliary clamping plate 509 is limited and fixed to the main clamping plate chute 508 through the second fixing knob 510. With this setting, according to the specific size specifications of the storage device, it can move back and forth in the main clamping plate chute 508. After reaching the appropriate size, it is fixed and limited through the second fixing knob 510, with stable fixation and strong adaptability.
[0025] Further, the limiting block 512 is slidably connected to the second chute 511. The limiting block 512 is limited and fixed to the second chute 511 through the third fixing knob 513. With this setting, the front end of the storage device can be limited, with simple operation and stable fixation.
[0026] Working principle: First, the equipment can be maintained and operated through the protective door 2. The protective door 2 is connected to the device main body 1 through a hinge and can be flexibly opened, facilitating inspection and adjustment of the interior of the equipment. The front end of the device main body 1 is provided with evenly and symmetrically distributed heat dissipation holes 3, which can effectively improve the heat dissipation effect and prevent the equipment from overheating during high-load operation. Then, the universal wheels 4 can be used to move the device. The universal wheels 4 are fixedly connected to the device main body 1 through screws and have a locking and limiting function. The locking state of the wheels can be adjusted according to needs, enabling the device to be stable at the target location and avoiding displacement caused by movement, increasing the safety of operation. When preparing the storage device, the height distance of the placement plate 502 needs to be adjusted. The placement plate 502 is connected to the mounting plate 501 through screws, and there are six adjustable placement plates 502 inside, which enables the placement plate 502 to adjust the height according to storage devices of different sizes, ensuring that various storage devices can be properly placed. Then, according to the size of the storage device, the position of the main clamping plate 505 is adjusted. The main clamping plate 505 is slidably connected to the first chute 504, and the position of the main clamping plate 505 is limited and fixed by rotating the first fixing knob 506. The clamping pad 507 at the front end of the main clamping plate 505 provides a good clamping effect. The auxiliary clamping plate 509 can move back and forth in the main clamping plate chute 508 and is fixed by rotating the second fixing knob 510, so that precise adjustment can be made according to the specific size of the storage device. Finally, the limiting block 512 is slidably connected to the second chute 511. By rotating the third fixing knob 513, the limiting block 512 can be fixed at the required position, ensuring the stable fixation of the front end of the storage device, with simple and stable operation. In this way, the use process of a big data efficient storage device is completed.
[0027] The above are only the embodiments of the present utility model, and common knowledge such as the specific structures and characteristics known in the solutions is not described in detail herein. For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be construed as limiting the claimed rights involved.
Claims
1. An efficient big data storage device, comprising a device main body (1) and a fixed installation mechanism (5), characterized in that: A protective door (2) is provided at the front end of the device main body (1). Heat dissipation holes (3) are provided on both sides of the front end of the device main body (1). Universal wheels (4) are provided at the bottom of the device main body (1). A fixed installation mechanism (5) is provided inside the device main body (1). An installation plate (501) is provided inside the fixed installation mechanism (5). A placement plate (502) is provided on the inner side of the installation plate (501). Adjustment installation holes (503) are provided on both sides of the placement plate (502). A first chute (504) is formed at the top end of the placement plate (502). A main clamping plate (505) is provided inside the first chute (504). A first fixing knob (506) is provided at the upper end of the main clamping plate (505). A clamping pad (507) is provided at the front end of the main clamping plate (505). A main clamping plate chute (508) is formed at the front end of the main clamping plate (505). A secondary clamping plate (509) is provided inside the main clamping plate chute (508). A second fixing knob (510) is provided on the outer side of the secondary clamping plate (509). A second chute (511) is formed at the front side of the top end of the placement plate (502). A limiting block (512) is provided inside the second chute (511). A third fixing knob (513) is provided at the front side of the limiting block (512).
2. The big data efficient storage device according to claim 1, characterized in that: The device main body (1) and the protective door (2) are connected by hinges, and the heat dissipation holes (3) are evenly and symmetrically distributed at the front end of the device main body (1).
3. An efficient big data storage device according to claim 1, characterized in that: The device main body (1) and the universal wheels (4) are connected by screws, and the universal wheels (4) can be locked and limited.
4. An efficient big data storage device according to claim 1, characterized in that: The placement plate (502) and the installation plate (501) are connected by screws, and six placement plates (502) are provided on the inner side of the installation plate (501).
5. The high-efficiency big data storage device according to claim 1, characterized in that: The main clamping plate (505) is slidably connected to the first chute (504), and the main clamping plate (505) is limited and fixed to the first chute (504) through the first fixing knob (506).
6. The high - efficiency big - data storage device according to claim 1, characterized in that: The secondary clamping plate (509) is slidably connected to the main clamping plate chute (508), and the secondary clamping plate (509) is limited and fixed to the main clamping plate chute (508) through the second fixing knob (510).
7. A high-efficiency big data storage device according to claim 1, characterized in that: The limiting block (512) is slidably connected to the second chute (511), and the limiting block (512) is limited and fixed to the second chute (511) through the third fixing knob (513).
Citation Information
Patent Citations
Big data storage device
CN213991405U