A big data storage device based on cloud space

By designing a big data storage device based on cloud space, using a mobile structure of a double-sided rod frame and a fixed frame and a protection mechanism of a data line transmission mechanism, the problem of the storage device being susceptible to collision in the prior art is solved, and stable installation and stable data transmission are achieved.

CN115019841BActive Publication Date: 2025-05-27JIANGXI YUANJU NETWORK TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202210510966.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-11
Publication Date
2025-05-27
Estimated Expiration
2042-05-11

AI Technical Summary

Technical Problem

When existing big data storage devices are moved or used as external storage, they are large in size and are susceptible to collisions, resulting in data transmission failure.

Method used

A big data storage device based on cloud space is designed, and a moving structure of a double-sided rod frame and a fixed frame is adopted. By manually rotating the fixed screw and pushing the fixed baffle frame, the device is fixed and moved, and the transmission connection line is protected and managed through the slider frame and load spring mechanism of the data line transmission mechanism.

Benefits of technology

The device is installed stably, avoiding the drop of storage devices due to computer vibration or collision, improving the stability of data transmission, and preventing lines from being messy and tripping through the protection mechanism of the rubber snap ring.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115019841B_ABST
    Figure CN115019841B_ABST
Patent Text Reader

Abstract

The present invention discloses a big data storage device based on cloud space, specifically related to the field of computer hardware, including a data line transmission mechanism. The data line transmission mechanism includes a handheld pulling frame, on the outside of which a positioning hollow block is inserted. At the bottom end of the positioning hollow block, a circular clamping plate frame is clamped. A movable connecting rope is clamped through the positioning hollow block on the outside of the handheld pulling frame. On the outer surface of the movable connecting rope, multiple groups of sliding rod frames are inserted. The double-sided clamping rod frames can move normally with the double-sided fixed frames. If the fixing screw is manually rotated to make it stuck in the positioning block, the included angle of the auxiliary curved clamping column is blocked and fixed, then the double-sided clamping rod frames cannot move, and thus the double-sided fixed frames are also fixed. Then, manually push the fixed baffle frame to make it pass through the double-sided fixed frames and fit against the outer frame of the computer. There are positioning holes on the inner side of the fixed baffle frame, and the fixed baffle frame is fixed to the outer frame of the computer through bolts passing through the positioning holes.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of computer hardware. More specifically, the present invention relates to a big data storage device based on cloud space. Background Art

[0002] Big data refers to the data volume involved is so huge that it cannot be captured, managed, processed, and organized into information that helps enterprise business decisions more actively through current mainstream software tools. Load balancing is provided by multiple servers, and resource websites are actually dynamically allocated according to needs, which is suitable for websites with more websites or website construction companies. In order to complete data sharing and transmission on multiple servers, a big data external storage device needs to be used.

[0003] However, when the current big data storage device moves the stored file to another storage computer or acts as an external storage device, there are two types of storage devices on the market. One is to directly insert the device into the computer with the USB head, and the device and the USB head are directly fixed together. This type is small in volume, slow in processing files, and small in storage capacity, and is not easy to be touched by people, so it is not suitable for big data storage. The other is that the device and the USB head are connected by a USB cable. This type is large in volume, fast in processing files, and large in storage capacity, but its volume is large and there is no fixed installation position. When connected to the computer, if it is accidentally touched or moved by people, and the USB cable is long and touched by people, it will also cause data interruption, resulting in data transmission failure. Therefore, we propose a big data storage device based on cloud space. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, an embodiment of the present invention provides a big data storage device based on cloud space. The double-sided rod holder can move normally with the double-sided fixed frame. If the fixing screw is manually rotated to make it stuck in the positioning block, the included angle of the auxiliary curved column is blocked and fixed, then the double-sided rod holder cannot move, and thus the double-sided fixed frame is also fixed. Then, manually push the fixed baffle frame to make it pass through the double-sided fixed frame and fit against the outer frame of the computer. There are positioning holes on the inner side of the fixed baffle frame, and the computer outer frame is fixed by bolts passing through the positioning holes to solve the problems raised in the above background art.

[0005] To achieve the above object, the present invention provides the following technical solution: A big data storage device based on cloud space, including a data line transmission mechanism, the data line transmission mechanism includes a hand-held pull frame, a positioning hollow block is inserted on the outer side of the hand-held pull frame, a circular card plate frame is clamped at the bottom end of the positioning hollow block, a movable connection rope is clamped through the positioning hollow block on the outer side of the hand-held pull frame, a plurality of sliding rod frames are inserted on the outer surface of the movable connection rope, and the same number of fixed card block frames are slidably connected to one side of the plurality of sliding rod frames. A plurality of fixed card slots are opened inside the circular card plate frame, and the circular card plate frame is bolted to the outer side of the fixed card block frame through the plurality of fixed card slots. The same number of insertion rods are inserted on the other side of the plurality of sliding rod frames, a load spring is bolted to the bottom end of the insertion rod, a connection sliding rod is clamped on one side of the load spring, and a rubber snap ring is clamped on one side of the connection sliding rod.

[0006] The beneficial effect of adopting the above further solution is: When the line needs to be extended, manually grasp the hand-held pull frame and move it in the opposite direction of the outer frame of the device. The hand-held pull frame passes through the positioning hollow block and moves in the same direction. The hand-held pull frame drives the sliding rod frame to pass through the fixed card block frame and move to the same side through the movable connection rope. The sliding rod frame pulls the load spring through the insertion rod, and the load spring drives the rubber snap ring to move to the outside of the outer frame of the device through the connection sliding rod. Since the rubber snap ring is made of rubber, it has restorability and elasticity. When it is not subjected to the pulling force of the connection sliding rod, it wraps the surface of the transmission connection line and restricts its stretching.

[0007] In a preferred embodiment, a storage device support mechanism is inserted in the center of the data line transmission mechanism, a connection line transmission mechanism is inserted on one side of the storage device support mechanism, and cloud computer-assisted fixing mechanisms are clamped on both sides of the storage device support mechanism.

[0008] The beneficial effect of adopting the above further solution is: Remove the bolts of the second curved fixed card block and the first curved fixed card block, then remove the cloud computer-assisted fixing mechanism from both sides of the storage device support mechanism, thereby improving the assembly of the mechanism. The distance between the two double-sided fixed frames is the spacing for clamping the outer frame of the computer.

[0009] In a preferred embodiment, the cloud computer-assisted fixing mechanism includes double-sided fixed frames, a fixed baffle frame is inserted into the inner cavity of the double-sided fixed frames, a slideway is opened on one side of the fixed baffle frame, a double-sided clamping rod frame is inserted through the slideway on one side of the fixed baffle frame, and the double-sided clamping rod frame is arranged in a sliding state with the slideway of the fixed baffle frame. A linkage clamping rod is bolted to one side of the double-sided clamping rod frame, a movable clamping rod is hinged to one side of the linkage clamping rod, a fixed rod is set on the outer surface of the double-sided fixed frames, and the movable clamping rod is clamped on the outer surface of the fixed rod of the double-sided fixed frames.

[0010] The beneficial effects of adopting the above further scheme are as follows: If the spacing of the computer outer frame is small, the double-sided fixing frame moves to one side of the equipment outer frame; if the spacing of the computer outer frame is large, the double-sided fixing frame moves to the opposite side of the equipment outer frame. Then, the double-sided fixing frame drives the double-sided rod holders to move synchronously, and the double-sided rod holders deflect to one side of the equipment outer frame or the opposite side of the equipment outer frame through the linkage rods.

[0011] In a preferred embodiment, the cloud computer-assisted fixing mechanism further includes a front-end fixing plate, which is fixedly connected to the outside of the movable rod. A second curved fixing block is welded to one side of the front-end fixing plate. Three first bolt channels are opened inside the second curved fixing block. The other side of the double-sided rod holder is hinged with an auxiliary curved clamping column. Two groups of curved clamping plates are clamped on the outside of the auxiliary curved clamping column. A plurality of torque spring blocks are clamped between the clamping openings of the auxiliary curved clamping column. Braking blocks are welded to the outside of the two groups of curved clamping plates, and a fixing screw is threadedly connected to the inner cavity of the braking block.

[0012] The beneficial effects of adopting the above further scheme are as follows: Manually rotate the fixing screw so that it is stuck in the positioning block, the included angle of the auxiliary curved clamping column is blocked and fixed. Then, the double-sided rod holder cannot move, and further the double-sided fixing frame is also fixed. Then, manually push the fixed baffle frame so that it passes through the double-sided fixing frame and fits on the computer outer frame. There are positioning holes inside the fixed baffle frame, and the computer outer frame is fixed by bolts passing through the positioning holes.

[0013] In a preferred embodiment, the cloud computer-assisted fixing mechanism further includes a positioning block. A bolt hole adapted to the fixing screw is opened inside the positioning block. One side of the auxiliary curved clamping column is fixedly connected to a rear-end fixing plate. A first curved fixing block is welded to one side of the rear-end fixing plate. Three second bolt channels are opened inside the first curved fixing block. A positioning buckle is clamped on the outside of the first curved fixing block.

[0014] The beneficial effects of adopting the above further scheme are as follows: The movable rod is fixed on the surface of the support base through the double-sided rod holder and the second curved fixing block. Then, the deflectable distance of the double-sided rod holder is limited because the movable rod is fixed. Here, it should be noted that if the computer surface does not need to be fixed or is in a relatively safe state where it will not be touched.

[0015] In a preferred embodiment, the storage device support mechanism includes an equipment outer frame. A support base is welded to the bottom end of the equipment outer frame. The first curved fixing block is fixedly connected to one side of the support base through three second bolt channels. The second curved fixing block is fixedly connected to the other side of the support base through three first bolt channels. The positioning buckle is inserted into the inner cavity of the support base.

[0016] The beneficial effects of adopting the above further solution are as follows: Since one side of the auxiliary curved clamping post is connected to the double-sided clamping rod frame, when the fixing screw is not manually rotated and inserted into the positioning block, the auxiliary curved clamping post takes the curved clamping plate and the braking block as the central fulcrum and deflects through the torque spring block. Here, it should be noted that the positioning block is fixed on the surface of the support base, and the double-sided clamping rod frame can move normally with the double-sided fixing frame.

[0017] In a preferred embodiment, the connection line transmission mechanism includes an end positioning block. A positioning tube is inserted into the inner cavity of the end positioning block. A transmission connection line is inserted into the inner cavity of the positioning tube. Connection curved blocks are clamped on both sides of the end positioning block. A limiting insertion rod is inserted into the inner side of the connection curved block. A detachable clamping block is inserted into one side of the limiting insertion rod. A threaded rotating rod is inserted into the inner side of the detachable clamping block. The detachable clamping block is bolted to one side of the support base through the threaded rotating rod. A spring rod is inserted into the inner side of the end positioning block, and the spring rod is inserted into the inner side of the support base. The transmission connection line is clamped inside the circular clamping plate frame, and the connection sliding rod passes through the positioning tube and fits on the surface of the transmission connection line.

[0018] The beneficial effects of adopting the above further solution are as follows: The detachable clamping block is fixed by connecting with the support base through the threaded rotating rod, and the external impact is buffered by the spring rod at the lower part of the end positioning block, and the position of the transmission connection line will not be affected. Here, it should be noted that the upper and lower positions of the end positioning block can be separated.

[0019] The technical effects and advantages of the present invention:

[0020] 1. The double-sided clamping rod frame can move normally with the double-sided fixing frame. If the fixing screw is manually rotated to make it stuck in the positioning block, the included angle of the auxiliary curved clamping post is blocked and fixed, then the double-sided clamping rod frame cannot move, and further the double-sided fixing frame is also fixed. Then, manually push the fixed baffle frame to make it pass through the double-sided fixing frame and fit on the outer frame of the computer. There are positioning holes inside the fixed baffle frame, and the computer outer frame is fixed by bolts passing through the positioning holes, thus realizing the setting of a fixed installation position, avoiding the situation that the storage device falls due to the computer vibrating or being collided by people during work;

[0021] 2. The detachable clamping block is fixed by connecting with the support base through the threaded rotating rod, and the external impact is buffered by the spring rod at the lower part of the end positioning block, and the position of the transmission connection line will not be affected. Here, it should be noted that the upper and lower positions of the end positioning block can be separated, thus realizing that when the storage device collides, it will not be affected by the outside and deviate from its original position, improving the stability of the connection of the storage device;

[0022] 3. The transmission connecting line can be stretched. The stretching distance of the transmission connecting line is the distance from normal to the USB interface. Release the handheld bracket, and the rubber snap ring returns to its original position. Similarly, when restoring the length of the positioning tube, pull the handheld bracket and push the positioning tube back into the positioning tube, thus protecting the line and avoiding tripping pedestrians due to the messy placement of the line. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a schematic structural diagram of the storage device support mechanism of the present invention.

[0024] Figure 2 It is a schematic structural diagram of the positioning tube of the present invention.

[0025] Figure 3 For the present invention Figure 1 Enlarged view of the structure of part A.

[0026] Figure 4 It is a schematic structural diagram of the support base of the present invention.

[0027] Figure 5 It is a schematic structural diagram of the fixed baffle bracket of the present invention.

[0028] Figure 6 It is a schematic structural diagram of the transmission connecting line of the present invention.

[0029] Figure 7 It is a schematic structural diagram of the sliding rod bracket of the present invention.

[0030] Reference numerals are: 1, storage device support mechanism; 101, equipment outer frame; 102, support base; 2, cloud computer-aided fixing mechanism; 201, bilateral fixing frame; 202, fixed baffle bracket; 203, front end fixing plate; 204, auxiliary curved clamping post; 205, torque spring curved block; 206, curved clamping plate; 207, fixed screw; 208, braking clamp block; 209, positioning clamp block; 210, rear end fixing plate; 211, first curved fixing clamp block; 212, positioning buckle; 213, bilateral clamping rod frame; 214, linkage clamping rod; 215, movable clamping rod; 216, second curved fixing clamp block; 3, data line transmission mechanism; 301, circular clamping plate frame; 302, handheld bracket; 303, positioning hollow block; 304, sliding rod bracket; 305, movable connecting rope; 306, insertion rod; 307, load spring; 308, connecting sliding rod; 309, rubber snap ring; 310, fixed clamp block frame; 311, fixed clamping groove; 4, connecting line transmission mechanism; 401, spring rod; 402, positioning tube; 403, transmission connecting line; 404, end positioning block; 405, limit insertion rod; 406, connecting curved block; 407, detachable clamp block; 408, threaded rotating rod. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0032] Embodiment 1: A storage device support mechanism 1 is centrally inserted into a data cable transmission mechanism 3. A connection line transmission mechanism 4 is inserted on one side of the storage device support mechanism 1. Cloud computer-assisted fixing mechanisms 2 are clamped on both sides of the storage device support mechanism 1. The storage device support mechanism 1 includes an equipment outer frame 101. A support base 102 is welded to the bottom end of the equipment outer frame 101. A first curved fixing block 211 is fixedly connected to one side of the support base 102 through three second bolt channels. A second curved fixing block 216 is fixedly connected to the other side of the support base 102 through three first bolt channels. A positioning buckle 212 is inserted into the inner cavity of the support base 102. The cloud computer-assisted fixing mechanism 2 includes a bilateral fixing frame 201. A fixing baffle frame 202 is inserted into the inner cavity of the bilateral fixing frame 201. A slideway is opened on one side of the fixing baffle frame 202. A bilateral clamping rod frame 213 is inserted into the fixing baffle frame 202 through the slideway. The bilateral clamping rod frame 213 is arranged in a sliding state with the slideway of the fixing baffle frame 202. A linkage clamping rod 214 is bolted to one side of the bilateral clamping rod frame 213. An active clamping rod 215 is hinged to one side of the linkage clamping rod 214. Fixing rods are set on the outer surface of the bilateral fixing frame 201. The active clamping rod 215 is clamped on the outer surface of the fixing rods of the bilateral fixing frame 201. The cloud computer-assisted fixing mechanism 2 further includes a front-end fixing plate 203. The front-end fixing plate 203 is fixedly connected to the outside of the active clamping rod 215. A second curved fixing block 216 is welded to one side of the front-end fixing plate 203. Three first bolt channels are opened on the inner side of the second curved fixing block 216. An auxiliary curved clamping column 204 is hinged to the other side of the bilateral clamping rod frame 213. Two groups of curved clamping plates 206 are clamped on the outer side of the auxiliary curved clamping column 204. A plurality of torque spring blocks 205 are clamped between the clamping mouths of the auxiliary curved clamping column 204. Braking clamping blocks 208 are welded to the outer sides of the two groups of curved clamping plates 206. A fixing screw 207 is threadedly connected to the inner cavity of the braking clamping block 208. The cloud computer-assisted fixing mechanism 2 further includes a positioning block 209. A bolt hole adapted to the fixing screw 207 is opened on the inner side of the positioning block 209. A rear-end fixing plate 210 is fixedly connected to one side of the auxiliary curved clamping column 204. A first curved fixing block 211 is welded to one side of the rear-end fixing plate 210. Three second bolt channels are opened on the inner side of the first curved fixing block 211. A positioning buckle 212 is clamped on the outer side of the first curved fixing block 211.

[0033] It should be noted that since the computers used in cloud computing are relatively large in number and size, while the storage device support mechanism 1 is relatively light and can be held by hand, the user holds the storage device support mechanism 1 and places it on the upper surface of the outer frame of the computer used. Then, manually push the double-sided fixing frame 201. If the distance between the outer frames of the computers is small, the double-sided fixing frame 201 moves to one side of the equipment outer frame 101. If the distance between the outer frames of the computers is large, the double-sided fixing frame 201 moves to the opposite side of the equipment outer frame 101. Then, the double-sided fixing frame 201 drives the double-sided rod holder 213 to move synchronously. The double-sided rod holder 213 deflects to one side of the equipment outer frame 101 or the opposite side of the equipment outer frame 101 through the linkage rod 214. The movable rod 215 is fixed on the surface of the support base 102 through the double-sided rod holder 213 and the second curved fixing block 216. Then, the deflectable distance of the double-sided rod holder 213 is limited because the movable rod 215 is fixed. Here, it is stated that if the computer surface does not need to be fixed or is in a relatively safe state where it will not be touched, then remove the bolts of the second curved fixing block 216 and the first curved fixing block 211, and then remove the cloud computer auxiliary fixing mechanism 2 from both sides of the storage device support mechanism 1, thereby improving the assembly of the mechanism. The distance between the two double-sided fixing frames 201 is the distance that can hold the outer frame of the computer. At the same time, since one side of the auxiliary curved column 204 is connected to the double-sided rod holder 213, when the fixing screw 207 is not manually rotated and inserted into the positioning block 209, the auxiliary curved column 204 deflects with the curved clamping plate 206 and the braking block 208 as the central fulcrums through the torque spring block 205. Here, it is stated that the positioning block 209 is fixed on the surface of the support base 102, and the double-sided rod holder 213 can move normally with the double-sided fixing frame 201. If the fixing screw 207 is manually rotated and stuck in the positioning block 209, the included angle of the auxiliary curved column 204 is blocked and fixed, then the double-sided rod holder 213 cannot move, and thus the double-sided fixing frame 201 is also fixed. Then, manually push the fixed baffle frame 202 so that it passes through the double-sided fixing frame 201 and fits against the outer frame of the computer. There are positioning holes on the inner side of the fixed baffle frame 202, and it is fixed to the outer frame of the computer by bolts passing through the positioning holes, thereby realizing the setting of a fixed installation position and avoiding the situation where the storage device falls due to the computer vibrating or being collided by people during operation.

[0034] Embodiment 2: The connection line transmission mechanism 4 includes an end positioning block 404. A positioning tube 402 is inserted into the inner cavity of the end positioning block 404. A transmission connection line 403 is inserted into the inner cavity of the positioning tube 402. Connection curved blocks 406 are clamped on both sides of the end positioning block 404. A limiting insertion rod 405 is inserted into the inner side of the connection curved block 406. A detachable clamping block 407 is inserted into one side of the limiting insertion rod 405. A threaded rotating rod 408 is inserted into the inner side of the detachable clamping block 407. The detachable clamping block 407 is bolted to one side of the support base 102 through the threaded rotating rod 408. A spring rod 401 is inserted into the inner side of the end positioning block 404. The spring rod 401 is inserted into the inner side of the support base 102. The transmission connection line 403 is clamped inside the circular clamping plate frame 301. The connection sliding rod 308 passes through the positioning tube 402 and fits on the surface of the transmission connection line 403.

[0035] It should be noted that if a staff member accidentally touches 104 during work, since the positioning tube 402 is fixed by the end positioning block 404, the transmission connection line 403 can be pulled out from the positioning tube 402. The external pressure received by the end positioning block 404 can be buffered by the elasticity through the expansion and contraction of the spring rod 401 in the inner cavity of the support base 102. Since the transmission connection line 403 is connected to the computer and cannot be offset due to collision and then the connection is interrupted, the positioning tube 402 part is inserted into the detachable clamping block 407 through the limiting insertion rod 405. The detachable clamping block 407 is connected and fixed to the support base 102 through the threaded rotating rod 408. The external impact is buffered by the spring rod 401 at the lower part of the end positioning block 404, and the position of the transmission connection line 403 will not be affected. Here, it is explained that the upper and lower positions of the end positioning block 404 can be separated, so that when the storage device collides, it will not deviate from its original position due to external influence, and the stability of the storage connection is improved.

[0036] Embodiment 3: A big data storage device based on cloud space includes a data line transmission mechanism 3. The data line transmission mechanism 3 includes a handheld pulling frame 302. A positioning hollow block 303 is inserted into the outer side of the handheld pulling frame 302. A circular clamping plate frame 301 is clamped at the bottom end of the positioning hollow block 303. A movable connection rope 305 is clamped through the positioning hollow block 303 on the outer side of the handheld pulling frame 302. Multiple groups of sliding rod frames 304 are inserted on the outer surface of the movable connection rope 305. The same number of fixed clamping block frames 310 are slidably connected to one side of the multiple groups of sliding rod frames 304. Multiple groups of fixed card slots 311 are opened inside the circular clamping plate frame 301. The circular clamping plate frame 301 is bolted to the outer side of the fixed clamping block frame 310 through the multiple groups of fixed card slots 311. The same number of insertion rods 306 are inserted into the other side of the multiple groups of sliding rod frames 304. A load spring 307 is bolted to the bottom end of the insertion rod 306. A connection sliding rod 308 is clamped on one side of the load spring 307. A rubber clamping ring 309 is clamped on one side of the connection sliding rod 308.

[0037] It should be noted that for the commonly used transmission connection line 403, it has no external protection itself. At the same time, it can be stretched randomly, and the line is prone to be placed in a disorderly manner. Also, due to the long length of the line, it is easier to trip others. When the length of the transmission connection line 403 needs to be extended, manually grasp the hand-held pull frame 302 and move it to the opposite side of the device outer frame 101. The hand-held pull frame 302 passes through the positioning hollow block 303 and moves in the same direction. The hand-held pull frame 302 drives the sliding rod frame 304 through the movable connection rope 305 to move through the fixed block frame 310 to the same side. The sliding rod frame 304 pulls the load spring 307 through the insertion rod 306. The load spring 307 drives the rubber clamping ring 309 to move to the outside of the device outer frame 101 through the connection sliding rod 308. Since the rubber clamping ring 309 is made of rubber, it has restorability and elasticity. When it is not subjected to the pulling force of the connection sliding rod 308, it wraps the surface of the transmission connection line 403 and restricts its stretching. At this time, the transmission connection line 403 can be stretched, and the stretching distance of the transmission connection line 403 is the distance from normal to the USB interface. Release the hand-held pull frame 302, and the rubber clamping ring 309 returns to its original position. Similarly, when the length of the positioning tube 402 needs to be restored, pull the hand-held pull frame 302 and push the positioning tube 402 back into the positioning tube 402, thus realizing the protection of the line and avoiding tripping pedestrians due to the disorderly placement of the line.

[0038] Finally, the following points should be noted: First, in the description of the present application, it should be noted that unless otherwise specified and limited, the terms "installation", "connection", and "connection" should be understood in a broad sense, which can be a mechanical connection or an electrical connection, or can also be the communication inside two components, and can be directly connected. "Up", "down", "left", "right", etc. are only used to represent relative position relationships. When the absolute position of the object being described changes, the relative position relationship may change;

[0039] Second: In the drawings of the disclosed embodiments of the present invention, only the structures related to the disclosed embodiments of the present invention are involved. For other structures, reference can be made to the usual designs. Without conflict, the same embodiment and different embodiments of the present invention can be combined with each other;

[0040] Finally: The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A big data storage device based on cloud space, including a data line transmission mechanism (3), Characterized in that: The data line transmission mechanism (3) includes a hand-held pulling frame (302). A positioning hollow block (303) is inserted on the outer side of the hand-held pulling frame (302). A circular clamping plate frame (301) is clamped at the bottom end of the positioning hollow block (303). An activity connection rope (305) is clamped through the positioning hollow block (303) on the outer side of the hand-held pulling frame (302). Multiple groups of sliding rod frames (304) are inserted on the outer surface of the activity connection rope (305). The same number of fixed clamping block frames (310) are slidably connected to one side of the multiple groups of sliding rod frames (304). Multiple groups of fixed clamping slots (311) are opened inside the circular clamping plate frame (301). The circular clamping plate frame (301) is bolted to the outer side of the fixed clamping block frame (310) through the multiple groups of fixed clamping slots (311). The same number of insertion rods (306) are inserted on the other side of the multiple groups of sliding rod frames (304). A load spring (307) is bolted to the bottom end of the insertion rod (306). A connection sliding rod (308) is clamped on one side of the load spring (307). A rubber clamping ring (309) is clamped on one side of the connection sliding rod (308); A storage device support mechanism (1) is inserted in the center of the data line transmission mechanism (3). A connection line transmission mechanism (4) is inserted on one side of the storage device support mechanism (1). Cloud computer auxiliary fixing mechanisms (2) are clamped on both sides of the storage device support mechanism (1); The cloud computer auxiliary fixing mechanism (2) includes a double-sided fixing frame (201). A fixed baffle frame (202) is inserted into the inner cavity of the double-sided fixing frame (201). A slideway is opened on one side of the fixed baffle frame (202). A double-sided clamping rod frame (213) is inserted through the slideway on one side of the fixed baffle frame (202). The double-sided clamping rod frame (213) is arranged in a sliding state with the slideway of the fixed baffle frame (202). A linkage clamping rod (214) is bolted to one side of the double-sided clamping rod frame (213). An activity clamping rod (215) is hinged to one side of the linkage clamping rod (214). A fixed rod is set on the outer surface of the double-sided fixing frame (201). The activity clamping rod (215) is clamped on the outer surface of the fixed rod of the double-sided fixing frame (201); The cloud computer-aided fixing mechanism (2) further includes a front-end fixing plate (203). The front-end fixing plate (203) is fixedly connected to the outer side of the movable clamping rod (215). A second curved fixing block (216) is welded to one side of the front-end fixing plate (203). Three first bolt channels are provided inside the second curved fixing block (216). An auxiliary curved clamping column (204) is hinged to the other side of the double-sided clamping rod frame (213). Two groups of curved clamping plates (206) are clamped to the outer side of the auxiliary curved clamping column (204). A plurality of torque spring blocks (205) are clamped between the clamping mouths of the auxiliary curved clamping column (204). A braking block (208) is welded to the outer sides of the two groups of curved clamping plates (206). A fixing screw (207) is threadedly connected to the inner cavity of the braking block (208); The cloud computer-aided fixing mechanism (2) further includes a positioning block (209). A bolt hole adapted to the fixing screw (207) is provided inside the positioning block (209). A rear-end fixing plate (210) is fixedly connected to one side of the auxiliary curved clamping column (204). A first curved fixing block (211) is welded to one side of the rear-end fixing plate (210). Three second bolt channels are provided inside the first curved fixing block (211). A positioning buckle (212) is clamped to the outer side of the first curved fixing block (211).

2. A big data storage device based on cloud space according to claim 1, characterized in that: The storage device support mechanism (1) includes an equipment outer frame (101). A support base (102) is welded to the bottom end of the equipment outer frame (101). The first curved fixing block (211) is fixedly connected to one side of the support base (102) through three second bolt channels. The second curved fixing block (216) is fixedly connected to the other side of the support base (102) through three first bolt channels. The positioning buckle (212) is inserted into the inner cavity of the support base (102).

3. A big data storage device based on cloud space according to claim 2, characterized in that: The connecting line transmission mechanism (4) includes an end positioning block (404). A positioning tube (402) is inserted into the inner cavity of the end positioning block (404). A transmission connecting line (403) is inserted into the inner cavity of the positioning tube (402). Connecting curved blocks (406) are clamped on both sides of the end positioning block (404). A limiting insertion rod (405) is inserted into the inner side of the connecting curved block (406). A detachable clamping block (407) is inserted into one side of the limiting insertion rod (405). A threaded rotating rod (408) is inserted into the inner side of the detachable clamping block (407). The detachable clamping block (407) is bolted to one side of the support base (102) through the threaded rotating rod (408). A spring rod (401) is inserted into the inner side of the end positioning block (404). The spring rod (401) is inserted into the inner side of the support base (102). The transmission connecting line (403) is clamped inside the circular clamping plate frame (301). The connecting slide rod (308) passes through the positioning tube (402) and fits on the surface of the transmission connecting line (403).

Citation Information

Patent Citations

  • Storage and installation device for network engineering instrument

    CN112423535A

  • Computer line fixing equipment for preventing lines from being disordered by using magnetic pole plates

    CN113075967A