Support facilitating installation of big data memory
By designing plug-in, sliding support, and limiting mechanisms, the problems of difficult installation and unstable stacking of big data storage devices were solved, achieving convenient installation and stable stacking.
Patent Information
- Application Number
- CN202423111788.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing big data storage devices are difficult to install and remove, and stacked installations are unstable.
A bracket including a plug-in mechanism, a sliding support mechanism, and a limiting mechanism is designed. It can be easily installed by a rotating lifting mechanism and sliding wheels, prevented from falling off by a limiting plate, and stably stacked by plug-in columns and support cylinders.
It enables convenient installation and stable stacking of big data storage devices, reduces installation difficulty and risk of detachment, and improves installation efficiency and stability.
Smart Images

Figure CN223709075U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to big data memory technical field especially, relate to a convenient installation big data memory's support. BACKGROUND
[0002] Big data" usually refers to those huge, difficult to collect, process, analysis data set, also refers to those long-term preservation in traditional infrastructure data. Big data storage is to persist these data sets in the computer, because big data needs to collect and store huge data, and the storage capacity of single memory is limited, so it is often necessary to use cascade mode for multiple memories to store data. Most big data memories are fixed on the support by rivets or screws.
[0003] Therefore, a convenient installation big data memory's support is proposed to install big data memory.
[0004] For example, the prior art Chinese patent publication "CN221526071U" provides a convenient installation big data memory's support, which includes a support plate, the upper end of the support plate is fixedly connected with two surrounding plates distributed symmetrically left and right, and the two surrounding plates and the support plate are of an integral structure, the rear end of the two surrounding plates is fixedly connected with a vertical plate, the left end face of the two surrounding plates is provided with a plurality of sliding holes distributed front and back, the end of the two surrounding plates away from each other is fixedly connected with a plurality of fixing blocks, the lower end of the plurality of fixing blocks is fixedly connected with a slide rod, the slide rod penetrates the sliding block, and the sliding block and the slide rod are slidingly connected, a spring is arranged between the fixing block and the sliding block, one end of the spring is fixedly connected with the fixing block, and the other end of the spring is fixedly connected with the sliding block.
[0005] The device has the effect of facilitating the installation and removal of big data memory, and the structure and parts are not easy to lose during the removal and installation of big data memory, thereby facilitating the recycling.
[0006] The existing convenient installation big data memory's support is not convenient to install and take out the big data memory, because the big data memory is heavy, so it is not convenient to install the big data memory into the support, and it is not convenient to stack and install the support when stacking and installing multiple big data memories. UTILITY MODEL CONTENTS
[0007] The utility model aims at solving the problem of the prior art that it is not convenient to install and take out the big data memory because the big data memory is heavy, and proposes a convenient installation big data memory's support.
[0008] To achieve the above object, the utility model provides the following technical scheme:
[0009] The utility model provides a convenient installation big data memory's support, including bottom plate, the corner of bottom plate fixed installation has the plug -in mechanism, bottom plate's top end both sides install slide support mechanism, bottom plate's front end installs limit mechanism, the plug -in mechanism includes plug -in post and support cylinder, plug -in post is fixed in the bottom end four corners of bottom plate, its surface has opened first connecting hole, support cylinder is fixed in the top end four corners of bottom plate, its inside is provided with plug -in slot, the top end both sides of plug -in slot have opened second connecting hole, and the inside insertion of second connecting hole has first bolt, and the fixed protection fence between two support cylinders, slide support mechanism includes support strip, support frame, slide wheel and rotation lifting mechanism, support strip is fixed in the top end of bottom plate, and is located the inside of protection fence, and its top end has opened storage groove, support frame is slidably installed in the inside of storage groove, the outside of storage groove is evenly opened limit slot, the outside of support frame is evenly fixed with limit post, and limit post is slidably inserted into limit slot, the top end of support frame is provided with recess, the inside of recess is evenly fixed with support rod, slide wheel is slidably sleeved on the surface of support rod, and the surface of slide wheel is provided with protective sleeve, and rotation lifting mechanism is rotatably installed at the bottom end of support frame, rotation lifting mechanism includes rotary rod, rotary plate and jacking plate, both ends of rotary rod are rotatably penetrated through rotary hole, jacking plate is evenly fixed on the surface of rotary rod and located at the bottom end of support frame, rotary plate is fixed at both ends of rotary rod, the surface bottom end of rotary plate is provided with first positioning hole, both ends of support strip and located at the outside of rotary hole are provided with second positioning hole, and two second positioning holes are distributed in 90 degrees sector with rotary hole as center, and the inside insertion of first positioning hole and second positioning hole has third bolt, limit mechanism includes limit plate, limit plate is installed at the front end of bottom plate and is used for limiting big data memory from falling off after installation.
[0010] Further, the front end of the bottom plate is provided with a third connecting hole, and the middle of the limit plate is provided with an adjusting groove, the inside of the adjusting groove is penetrated by a second bolt, the surface of the second bolt and the outer end of the adjusting groove are sleeved with a gasket, and the inner end of the second bolt is screwed into the third connecting hole.
[0011] Further, the bottom plate is of rectangular structure and is horizontally arranged, the plug-in column and the support cylinder are both of rectangular structure and are vertically arranged and are vertically aligned, when the big data storage is stacked and installed, the two bottom plates are stacked with each other, and the plug-in column of the upper bottom plate is inserted into the support cylinder of the lower bottom plate and is fastened and connected by the first bolt, and the first connecting hole is of threaded hole structure.
[0012] Further, the support strip is of rectangular long strip structure and is horizontally arranged, the receiving groove is of rectangular groove structure and is closed at both ends, and the support frame is of long strip structure and is horizontally arranged.
[0013] Further, the limiting column is of cylindrical structure and is horizontally arranged, the limiting groove is of rectangular groove structure and is vertically arranged and is close to the top end of the support strip, the support rod is horizontally arranged, and the sliding wheel is of cylindrical structure and is horizontally arranged and protrudes the top end of the support frame upward.
[0014] Further, the rotating rod is of long rod structure and is horizontally arranged, and the jacking plate is of rectangular plate structure, when the jacking plate is in the vertical state, the sliding wheel is jacked upward and protrudes the top end of the support strip, and when the jacking plate is in the horizontal state, the sliding wheel falls above the jacking plate and is recessed in the receiving groove.
[0015] Further, the rotating plate is of rectangular plate structure and is vertically arranged and is located outside the two ends of the support strip, the first positioning hole is of threaded hole structure, one second positioning hole is located directly below the first positioning hole, and the other second positioning hole is located directly beside the first positioning hole, so that the rotating plate is used for rotating the rotating rod and the jacking plate by 90 degrees.
[0016] Further, the third connecting hole is of threaded hole structure and is horizontally arranged and is threadedly connected with the second bolt, the limiting plate is of rectangular structure and is vertically arranged, the adjusting groove is of rectangular groove structure, and the diameter of the gasket is greater than the width of the adjusting groove.
[0017] The bracket for conveniently installing big data storage has the beneficial effects that:
[0018] 1. The utility model discloses a support strip is installed on the both sides of the top of bottom plate, and support frame and sliding wheel are installed inside support strip, and therefore, when installing big data memory on support, rotate rotating plate 90 degrees and jacking plate, and then jacking plate drives support frame and sliding wheel upward, until the top of sliding wheel protrudes support strip, and third bolt is used to position rotating plate on both ends of support strip, and support frame and sliding wheel are stably arranged, and then, one end of big data memory is placed on the top of sliding wheel, and is pushed to the inside of support, and therefore, big data memory slides to the inside of support through sliding wheel, and is convenient and easy, and then, rotating plate is rotated 90 degrees reversely, and makes support frame and sliding wheel fall into storage groove, and big data memory falls on support strip and is supported, and is stably placed, and then, limit plate is rotated and moved around second bolt, and makes limit plate limit the outer end of big data memory, and prevents big data memory from falling off support.
[0019] 2. The utility model discloses the top and bottom of bottom plate four corners respectively fixed support cylinder and the plug -in column, when installing big data memory in stack, the bottom plate between mutual stack of up and down, and moreover, the plug -in column of upper bottom plate inserts the inside of support cylinder of lower bottom plate, and is fastened and is connected between plug -in column and support cylinder through first bolt and second connecting hole, and the support of up and down stack is stably installed, and can install big data memory in stack and place. DRAWINGS
[0020] Figure 1 It is whole structure schematic diagram of the utility model;
[0021] Figure 2 It is limit mechanism schematic diagram of the utility model; Figure 1
[0022] Figure 3 It is the enlarged view of A of the utility model; Figure 1
[0023] Figure 4 It is the enlarged view of B of the utility model; Figure 1
[0024] Figure 5 It is whole structure schematic diagram of the utility model; Figure 1
[0025] Figure 6 It is rotating plate and jacking plate part schematic diagram of the utility model; Figure 1
[0026] Figure 7 It is support strip part schematic diagram of the utility model; Figure 1
[0027] Figure 8 The utility model discloses Figure 1 Support frame and sliding wheel part schematic view.
[0028] In the drawing: 1, bottom plate, 2, plug-in column, 3, first connecting hole, 4, support cylinder, 5, first bolt, 6, plug-in slot, 7, guardrail, 8, second connecting hole, 9, support strip, 10, protective sleeve, 11, second bolt, 12, limiting plate, 13, adjusting groove, 14, third bolt, 15, rotating plate, 16, second positioning hole, 17, storage slot, 18, jacking plate, 19, recess, 20, sliding wheel, 21, support rod, 22, support frame, 23, gasket, 24, limiting column, 25, limiting slot, 26, first positioning hole, 27, rotating rod, 28, third connecting hole, 29, rotating hole. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. EMBODIMENT
[0030] Please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 And Figure 8 , a kind of bracket of the storage of big data for facilitating installation is shown in the drawing, including bottom plate 1, plug-in mechanism is fixedly installed at the four corners of the bottom plate 1, sliding support mechanism is installed at the top end of the bottom plate 1 two sides, limiting mechanism is installed at the front end of the bottom plate 1.
[0031] The plug-in mechanism includes plug-in column 2 and support cylinder 4, the plug-in column 2 is fixed at the bottom end four corners of the bottom plate 1, its surface is opened with first connecting hole 3, the support cylinder 4 is fixed at the top end four corners of the bottom plate 1, its inside is provided with plug-in slot 6, the top end two sides of the plug-in slot 6 are opened with second connecting hole 8, the inside of the second connecting hole 8 is inserted with first bolt 5, two support cylinders 4 are fixed with guardrail 7 between.
[0032] The sliding support mechanism comprises a support strip 9, a support frame 22, a sliding wheel 20 and a rotating lifting mechanism, the support strip 9 is fixed at the top end of the bottom plate 1 and located inside the guardrail 7, the top end of the support strip 9 is provided with a receiving groove 17, the support frame 22 is slidingly installed inside the receiving groove 17, the outer side of the receiving groove 17 is uniformly provided with a limiting groove 25, the outer side of the support frame 22 is uniformly fixed with a limiting column 24, the limiting column 24 is slidingly inserted into the limiting groove 25, the top end of the support frame 22 is provided with a groove 19, the inner side of the groove 19 is uniformly fixed with a support rod 21, the sliding wheel 20 is slidingly sleeved on the surface of the support rod 21, the surface of the sliding wheel 20 is provided with a protective sleeve 10, and the rotating lifting mechanism is rotatably installed at the bottom end of the support frame 22.
[0033] One end of the big data storage is placed at the top end of the sliding wheel 20, and is pushed into the support, so that the big data storage is slidingly moved into the support through the sliding wheel 20, which is convenient, easy and effortless, and thus the support frame 22 and the sliding wheel 20 are rotated by 90 degrees in the reverse direction through the rotating plate 15, the rotating rod 27 and the jacking plate 18, so that the support frame 22 and the sliding wheel 20 fall into the receiving groove 17, and the big data storage falls on the support strip 9 and is supported, and is stably placed.
[0034] The support strip 9 is in a rectangular strip structure and is horizontally arranged, the receiving groove 17 is in a rectangular groove structure and is provided with a closed end, and the support frame 22 is in a strip structure and is horizontally arranged.
[0035] The limiting column 24 is in a cylindrical structure and is horizontally arranged, the limiting groove 25 is in a rectangular groove structure and is vertically arranged and close to the top end of the support strip 9, the support rod 21 is horizontally arranged, and the sliding wheel 20 is in a cylindrical structure and is horizontally arranged, and the top end of the sliding wheel 20 protrudes upward beyond the top end of the support frame 22.
[0036] The rotating lifting mechanism comprises a rotating rod 27, a rotating plate 15 and a jacking plate 18, both ends of the rotating rod 27 are rotatably inserted into the rotating holes 29 at both ends of the receiving groove 17, the jacking plate 18 is uniformly fixed on the surface of the rotating rod 27 and located at the bottom end of the support frame 22, the rotating plate 15 is fixed at both ends of the rotating rod 27, the surface of the rotating plate 15 is provided with a first positioning hole 26 at the bottom end, both ends of the support strip 9 and located outside the rotating holes 29 are provided with a second positioning hole 16, the two second positioning holes 16 are distributed in a 90-degree sector with the rotating holes 29 as the center, and the first positioning hole 26 and the second positioning hole 16 are inserted with a third bolt 14.
[0037] When the big data storage is installed on the support, the rotating plate 15 is rotated by 90 degrees to rotate the rotating rod 27 and the jacking plate 18, so that the support frame 22 and the sliding wheel 20 are jacked upward by the jacking plate 18 until the top end of the sliding wheel 20 protrudes upward from the support bar 9, and the rotating plate 15 is positioned at both ends of the support bar 9 by the third bolt 14 to keep the support frame 22 and the sliding wheel 20 stably arranged.
[0038] The rotating rod 27 is a long rod structure and is arranged horizontally, and the jacking plate 18 is a rectangular plate structure, which, when in a vertical state, jacks upward the sliding wheel 20 to protrude the top end of the support bar 9, and when in a horizontal state, the sliding wheel 20 falls above the jacking plate 18 and is recessed inside the receiving groove 17.
[0039] The rotating plate 15 is a rectangular plate structure and is arranged vertically and located outside both ends of the support bar 9, the first positioning hole 26 is a threaded hole structure, one of the second positioning holes 16 is located directly below the first positioning hole 26, and the other is located directly beside the first positioning hole 26, for rotating the rotating rod 27 and the jacking plate 18 by 90 degrees in opposite directions by the rotating plate 15.
[0040] The limiting mechanism includes a limiting plate 12 installed at the front end of the bottom plate 1 for limiting and preventing the big data storage from falling off after installation.
[0041] A third connecting hole 28 is formed in the middle of the front end of the bottom plate 1, and an adjusting groove 13 is formed in the middle of the limiting plate 12, a second bolt 11 passes through the inside of the adjusting groove 13, a gasket 23 is sleeved on the surface of the second bolt 11 and located at the outer end of the adjusting groove 13, and the inner end of the second bolt 11 is screwed into the third connecting hole 28.
[0042] The limiting plate 12 is rotated and moved around the second bolt 11 to limit and clamp the outer end of the big data storage, so as to prevent the big data storage from falling off the support.
[0043] The third connecting hole 28 is a threaded hole structure and is arranged horizontally and threadedly connected with the second bolt 11, the limiting plate 12 is a rectangular structure and is arranged vertically, the adjusting groove 13 is a rectangular groove structure, and the diameter of the gasket 23 is greater than the width of the adjusting groove 13. EMBODIMENT
[0044] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 ,Figure 6 、 Figure 7 and Figure 8 One of the racks facilitating installation of large data storage in the drawings comprises a bottom plate 1, a plug-in mechanism fixedly installed at the four corners of the bottom plate 1, a sliding support mechanism installed at the top end of the bottom plate 1, and a limiting mechanism installed at the front end of the bottom plate 1.
[0045] The sliding support mechanism comprises a support bar 9, a support frame 22, a sliding wheel 20, and a rotary lifting mechanism. The support bar 9 is fixed at the top end of the bottom plate 1 and located inside the guardrail 7. A receiving groove 17 is formed at the top end of the support bar 9. The support frame 22 is slidingly installed inside the receiving groove 17. Limiting grooves 25 are uniformly formed at the outside of the receiving groove 17. Limiting columns 24 are uniformly fixed at the outside of the support frame 22. The limiting columns 24 are slidingly inserted into the limiting grooves 25. A recess 19 is formed at the top end of the support frame 22. Support rods 21 are uniformly fixed inside the recess 19. The sliding wheel 20 is slidingly sleeved on the surface of the support rod 21. A protective sleeve 10 is adjusted on the surface of the sliding wheel 20. The rotary lifting mechanism is rotationally installed at the bottom end of the support frame 22.
[0046] One end of the large data storage is placed at the top end of the sliding wheel 20 and pushed into the rack. Therefore, the large data storage is slidingly moved into the rack through the sliding wheel 20. It is convenient, easy and effortless. Thus, the support frame 22 and the sliding wheel 20 are made to fall into the receiving groove 17 by rotating the rotary plate 15 by 90 degrees in the opposite direction, rotating the rotary rod 27 and the jacking plate 18. The large data storage falls on the support bar 9 and is supported and stably placed.
[0047] The rotary lifting mechanism comprises a rotary rod 27, a rotary plate 15, and a jacking plate 18. Rotary holes 29 are formed at the two ends of the receiving groove 17. The two ends of the rotary rod 27 are rotationally inserted through the rotary holes 29. The jacking plate 18 is uniformly fixed on the surface of the rotary rod 27 and located at the bottom end of the support frame 22. The rotary plate 15 is fixed at the two ends of the rotary rod 27. A first positioning hole 26 is formed at the bottom end of the surface of the rotary plate 15. Second positioning holes 16 are formed at the two ends of the support bar 9 and located outside the rotary holes 29. The two second positioning holes 16 are distributed in a 90-degree sector with the rotary holes 29 as the center. Third bolts 14 are inserted into the first positioning hole 26 and the second positioning hole 16.
[0048] When the large data storage is installed on the rack, the rotary rod 27 and the jacking plate 18 are rotated by 90 degrees through the rotary plate 15. The support frame 22 and the sliding wheel 20 are jacked upward through the jacking plate 18. The top end of the sliding wheel 20 protrudes upward beyond the support bar 9. The rotary plate 15 is positioned at the two ends of the support bar 9 through the third bolts 14. The support frame 22 and the sliding wheel 20 are stably arranged.
[0049] The limiting mechanism comprises a limiting plate 12 installed at the front end of the bottom plate 1 for limiting and preventing the large data storage from falling off after installation.
[0050] The plug-in mechanism comprises plug-in columns 2 fixed at the bottom end of the bottom plate 1, and support cylinders 4 fixed at the top end of the bottom plate 1, wherein the plug-in columns 2 are provided with first connecting holes 3, the support cylinders 4 are provided with plug-in grooves 6, the plug-in grooves 6 are provided with second connecting holes 8 at the top end, and the second connecting holes 8 are inserted with first bolts 5.
[0051] When the large data storage is stacked and installed, the two bottom plates 1 are stacked, the plug-in columns 2 of the upper bottom plate 1 are inserted into the support cylinders 4 of the lower bottom plate 1, and the first bolts 5 pass through the first connecting holes 3 and the second connecting holes 8 to fasten and connect the plug-in columns 2 and the support cylinders 4, so that the stacked bracket is stably installed, and the large data storage can be stacked and installed.
[0052] The bottom plate 1 is in a rectangular structure and horizontally arranged, the plug-in columns 2 and the support cylinders 4 are in a rectangular structure and vertically arranged and aligned, when the large data storage is stacked and installed, the two bottom plates 1 are stacked, the plug-in columns 2 of the upper bottom plate 1 are inserted into the support cylinders 4 of the lower bottom plate 1, and the first bolts 5 are fastened and connected, and the first connecting holes 3 are in a threaded hole structure.
[0053] Working mode: the support strips 9 are installed at the top end of the bottom plate 1, and the support frames 22 and the sliding wheels 20 are installed in the support strips 9, so that when the large data storage is installed on the bracket, the rotating plate 15 is rotated by 90° to rotate the rotating rod 27 and the jacking plate 18, so that the support frames 22 and the sliding wheels 20 are jacked up by the jacking plate 18 until the top end of the sliding wheels 20 protrudes out of the support strips 9, and the third bolts 14 are positioned at the two ends of the support strips 9 to keep the support frames 22 and the sliding wheels 20 stably arranged.
[0054] Thus, one end of the big data storage is placed on the top end of the sliding wheel 20, and is pushed into the support, so that the big data storage is moved to the inside of the support through the sliding wheel 20, which is convenient, easy and not laborious. Thus, the rotating plate 15 is rotated by 90 degrees in the reverse direction, the rotating rod 27 and the jacking plate 18 are rotated, the support frame 22 and the sliding wheel 20 are fallen into the storage slot 17, the big data storage is placed on the support bar 9 and is supported, and is stably placed. Then, the limiting plate 12 is rotated and moved around the second bolt 11, so that the limiting plate 12 is clamped to the outer end of the big data storage, and the big data storage is prevented from falling off the support.
[0055] The support cylinder 4 and the insertion column 2 are respectively fixed at the top end and the bottom end of the four corners of the bottom plate 1. When the big data storage is stacked and installed, the upper and lower bottom plates 1 are stacked with each other, the insertion column 2 of the upper bottom plate 1 is inserted into the inside of the support cylinder 4 of the lower bottom plate 1, the first bolt 5 is passed through the first connecting hole 3 and the second connecting hole 8 to fasten and connect the insertion column 2 and the support cylinder 4, the stacked support is stably installed, and the big data storage can be stacked and installed.
[0056] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A bracket for facilitating installation of a large data storage device, comprising a base plate (1), characterized in that: The bottom plate (1) is fixedly installed with a plug-in mechanism at four corners, and slidably installed with a sliding support mechanism at both sides of the top end, and limitingly installed with a limiting mechanism at the front end; The plug-in mechanism comprises plug-in columns (2) and support cylinders (4), the plug-in columns (2) are fixedly installed at the bottom end of the bottom plate (1) at four corners, and a first connecting hole (3) is formed in the surface of each plug-in column (2), the support cylinders (4) are fixedly installed at the top end of the bottom plate (1) at four corners, and a plug-in groove (6) is arranged in the interior of each support cylinder (4), a second connecting hole (8) is formed in the top end of the plug-in groove (6) at both sides, and a first bolt (5) is inserted into the interior of the second connecting hole (8), and a protective fence (7) is fixedly installed between the two support cylinders (4); The sliding support mechanism comprises support strips (9), a support frame (22), sliding wheels (20) and a rotating lifting mechanism, the support strips (9) are fixedly installed at the top end of the bottom plate (1) and located inside the protective fence (7), a receiving groove (17) is formed in the top end of each support strip (9), the support frame (22) is slidably installed in the interior of the receiving groove (17), a limiting groove (25) is uniformly formed in the outer side of the receiving groove (17), a limiting column (24) is uniformly fixed on the outer side of the support frame (22), the limiting column (24) is slidably inserted into the limiting groove (25), a recess (19) is formed in the top end of the support frame (22), a support rod (21) is uniformly fixed in the interior of the recess (19), the sliding wheel (20) is slidably sleeved on the surface of the support rod (21), and a protective sleeve (10) is arranged on the surface of the sliding wheel (20), and the rotating lifting mechanism is rotatably installed at the bottom end of the support frame (22); The rotating lifting mechanism comprises rotating rods (27), rotating plates (15) and jacking plates (18), rotating holes (29) are formed at both ends of the receiving groove (17), the rotating rods (27) are rotatably inserted into the rotating holes (29) at both ends, the jacking plates (18) are uniformly fixed on the surface of the rotating rods (27) and located at the bottom end of the support frame (22), the rotating plates (15) are fixedly installed at both ends of the rotating rods (27), a first positioning hole (26) is formed in the surface of the bottom end of each rotating plate (15), second positioning holes (16) are formed in the outer sides of both ends of the support strip (9) and located outside the rotating holes (29), the second positioning holes (16) are distributed in a 90-degree sector with the rotating holes (29) as the center, and a third bolt (14) is inserted into the interiors of the first positioning hole (26) and the second positioning hole (16); The limiting mechanism comprises a limiting plate (12), and the limiting plate (12) is installed at the front end of the bottom plate (1) to limit the big data storage device from falling off after installation.
2. The bracket for conveniently installing a big data storage device according to claim 1, wherein: The third connecting hole (28) is arranged in the middle of the front end of the bottom plate (1), the adjusting groove (13) is arranged in the middle of the limiting plate (12), the second bolt (11) penetrates through the inside of the adjusting groove (13), the gasket (23) is sleeved on the surface of the second bolt (11) and located at the outer end of the adjusting groove (13), and the inner end of the second bolt (11) is screwed into the third connecting hole (28).
3. The bracket for conveniently installing a big data storage device according to claim 1, wherein: The bottom plate (1) is of a rectangular structure and is arranged horizontally, the plug-in column (2) and the supporting cylinder (4) are both of a rectangular structure and are vertically arranged and aligned in the up-down direction, when the big data storage is stacked and installed, the two bottom plates (1) are stacked with each other, the plug-in column (2) of the upper bottom plate (1) is inserted into the inside of the supporting cylinder (4) of the lower bottom plate (1), and the plug-in column (2) is fastened and connected by the first bolt (5), and the first connecting hole (3) is of a threaded hole structure.
4. The bracket for conveniently installing a big data storage device according to claim 1, wherein: The supporting strip (9) is of a rectangular long strip structure and is arranged horizontally, the receiving groove (17) is of a rectangular groove structure and is arranged with both ends being closed, and the supporting frame (22) is of a long strip structure and is arranged horizontally.
5. The bracket for conveniently installing a big data storage device according to claim 1, wherein: The limiting column (24) is of a cylindrical structure and is arranged horizontally, the limiting groove (25) is of a rectangular groove structure and is vertically arranged and close to the top end of the supporting strip (9), the supporting rod (21) is arranged horizontally, and the sliding wheel (20) is of a cylindrical structure and is arranged horizontally and protrudes upwardly beyond the top end of the supporting frame (22).
6. The bracket for conveniently installing a big data storage device according to claim 1, wherein: The rotating rod (27) is of a long rod structure and is arranged horizontally, and the jacking plate (18) is of a rectangular plate structure, when the jacking plate (18) is in a vertical state, the sliding wheel (20) is jacked upwardly and protrudes beyond the top end of the supporting strip (9), and when the jacking plate (18) is in a horizontal state, the sliding wheel (20) falls above the jacking plate (18) and is recessed in the inside of the receiving groove (17).
7. The bracket for conveniently installing a big data storage device according to claim 1, wherein: The rotating plate (15) is of a rectangular plate structure, is vertically arranged and located outside the two ends of the supporting strip (9), the first positioning hole (26) is of a threaded hole structure, one second positioning hole (16) is located directly below the first positioning hole (26), and the other second positioning hole (16) is located directly laterally of the first positioning hole (26), so as to rotate the rotating rod (27) and the jacking plate (18) by 90 degrees in the positive direction and the negative direction through the rotating plate (15).
8. The bracket for conveniently installing a big data storage device according to claim 2, wherein: The third connecting hole (28) is of a threaded hole structure, is arranged horizontally and is threadedly connected with the second bolt (11), the limiting plate (12) is of a rectangular structure and is vertically arranged, the adjusting groove (13) is of a rectangular groove structure, and the diameter of the gasket (23) is greater than the width of the adjusting groove (13).
Citation Information
Patent Citations
Support facilitating installation of big data memory
CN221526071U