CN214014742U - Big data platform data storage server rack - Google Patents

Big data platform data storage server rack Download PDF

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Publication number
CN214014742U
CN214014742U CN202023127440.3U CN202023127440U CN214014742U CN 214014742 U CN214014742 U CN 214014742U CN 202023127440 U CN202023127440 U CN 202023127440U CN 214014742 U CN214014742 U CN 214014742U
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China
Prior art keywords
block
spout
sliding groove
storage server
supporting
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CN202023127440.3U
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Chinese (zh)
Inventor
王昌文
刘静
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GANSU VOCATIONAL & TECHNICAL COLLEGE OF NONFERROUS METALLURGY
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GANSU VOCATIONAL & TECHNICAL COLLEGE OF NONFERROUS METALLURGY
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Abstract

The utility model discloses a big data platform data storage server rack belongs to server rack field, install the wheel components in rack body below including rack body, with rack body hinged joint's rack door and a plurality of rotation, wheel components includes connecting rod, slider, gyro wheel, shaft, supporting shoe and the spacing inserted block of upper end and rack body coupling, the lower extreme and the slider of connecting rod are fixed, the lateral wall of supporting shoe is provided with the spout, the spout is in including horizontal setting at spout A, the vertical setting of supporting shoe upside the left spout B of supporting shoe, spout A pass through spout C with spout B intercommunication. The utility model discloses when the gyro wheel part of rack bottom has the effect of removing, can satisfy the effect of fixed rack.

Description

Big data platform data storage server rack
Technical Field
The utility model belongs to server rack field specifically is a big data platform data storage server rack.
Background
The server cabinet is generally made of cold-rolled steel plates or alloys, can provide protection effects such as water resistance, dust prevention and electromagnetic interference resistance for storage equipment, and systematically solves the problems of high-density heat dissipation, large-amount cable attachment and management, high-capacity power distribution and comprehensive compatibility with rack-mounted equipment of different manufacturers in computer application, so that the data center can operate in a high-stability environment.
When the server cabinet is moved, the universal rollers arranged below the server cabinet drive the server cabinet to move, the universal wheels are provided with brakes, the cabinet is fixed to a specified position, when the cabinet is fixed, the springs inside the brakes are prone to deformation, the elasticity of the springs is invalid, the cabinet cannot be braked, and therefore the cabinet cannot be fixed or the brake state cannot be relieved, and the cabinet cannot be moved.
The utility model provides a novel gyro wheel structure for the rack need not to use the spring just can accomplish the effect of the position of fixing and removing the rack.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: the utility model provides a big data platform data storage server rack when the wheel components who makes the rack bottom has the effect of removing, can satisfy the effect of fixed rack.
The utility model adopts the technical scheme as follows:
a large data platform data storage server cabinet comprises a cabinet body, a cabinet door connected with the cabinet body in a hinge mode and a plurality of roller assemblies rotatably installed below the cabinet body, wherein each roller assembly comprises a connecting rod, a sliding block, a roller, a wheel shaft, a supporting block and a limiting insertion block, the upper end of each connecting rod is connected with the cabinet body, and the lower end of each connecting rod is fixedly connected with the corresponding sliding block;
the supporting block is a U-shaped block, the opening end of the supporting block faces downwards, the top surface of the supporting block is provided with a sliding chute, the sliding chute comprises a sliding chute A transversely arranged on the upper side of the supporting block, a sliding chute B vertically arranged on the left side of the supporting block and a sliding chute C for smoothly communicating the left end of the sliding chute A with the top end of the sliding chute B, a wheel shaft is transversely fixed in the opening of the supporting block through a wheel shaft, and the sliding block can slide in the sliding chute;
the opening size of spout is less than the tank bottom size, the shape and size of the cross section of spacing inserted block is unanimous with the shape and size of the cross section of spout, the breach that is used for conveniently taking out spacing inserted block is all seted up to spout C both sides around.
Furthermore, the cross section of spacing inserted block is the L shape, and it includes first stopper and second stopper, and the second stopper is fixed on the right side wall of first stopper upper end, and the width of first stopper with the width of slider is the same, the width of second stopper with the diameter of connecting rod is the same.
Further, the width of slider is H, spout A's right-hand member is A to spout B's right-hand member length, spout B's lower extreme is B to spout A's lower extreme height, the length of second stopper is M, and the length of first stopper is N, and H + M is A, and H + N is B.
Furthermore, the connecting rod, the sliding block and the supporting block are all made of high-carbon steel.
Furthermore, one end, far away from the connecting rod, of the right side wall of the supporting block is transversely provided with a supporting leg.
Furthermore, the right side of supporting leg is fixed to be provided with and is used for preventing damaging the silica gel cushion on ground.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
1. in the utility model, the use state of the roller component is set into two states, which not only facilitates the movement of the cabinet body, but also avoids the unfavorable condition that the cabinet can not realize braking because the spring generates deformation and the elasticity of the spring fails, so that the cabinet can not be fixed or the brake state can not be relieved, and the cabinet can not move, so that the roller component also has the function of fixing the cabinet body under the condition that the brake is not used, thereby ensuring the supporting function of the roller component, and being not easy to generate deformation, so that the service life of the roller component is prolonged; meanwhile, after the roller wheel assembly is used on uneven ground for a long time and damaged, the supporting block is rotated, the sliding block can slide out of the notch, the supporting block is separated from the sliding block, and the supporting block and the roller wheel below the supporting block can be replaced.
2. The utility model discloses further inject the shape and the size of spacing inserted block for the structure that spacing inserted block was injectd is more complete, has specifically specified concrete structure and the connected mode of the position that spacing inserted block injectd the slider, makes when inserting spacing inserted block, and the slider can not slide in spout A or spout B inside, thereby makes the rack body unstable.
3. The utility model discloses in, connecting rod, slider and supporting shoe have all played the supporting role to the rack body, and consequently these parts adopt the high carbon steel of high rigidity, and are more firm to the support of rack body, have increased wheel components's life simultaneously.
4. The utility model discloses the supporting leg is transversely installed to the one end of keeping away from the connecting rod at the right side wall of supporting shoe for the stress point falls on the supporting leg completely, makes wheel components's life increase, reduces the harm that deformation brought.
5. The utility model discloses set up the silica gel cushion and prevented that the supporting leg from scraping colored ground, can not influence the supporting role of supporting leg simultaneously.
Drawings
FIG. 1 is a diagram illustrating the usage of the present invention;
FIG. 2 is a perspective view of the present invention with no limit insert inserted;
fig. 3 is a schematic structural diagram of the present invention;
fig. 4 is a perspective view of a first usage state of the present invention;
fig. 5 is a perspective view showing a second usage state of the present invention;
fig. 6 is a perspective view of a limit insert.
The labels in the figure are: 1. a cabinet body; 2. a cabinet door; 3. a roller assembly; 4. a connecting rod; 5. a slider; 6. a roller; 7. a wheel axle; 8. a support block; 9. limiting the inserting block; 10. a chute A; 11. a chute B; 12. a chute C; 13. supporting legs; 14. a silica gel cushion; 15. and (4) a notch.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
Example 1
A large data platform data storage server cabinet comprises a cabinet body 1, a cabinet door 2 connected with the cabinet body 1 in a hinged mode and a plurality of roller assemblies 3 rotatably installed below the cabinet body 1, wherein each roller assembly 3 comprises a connecting rod 4, a sliding block 5, a roller 6, a wheel shaft 7, a supporting block 8 and a limiting insertion block 9, the upper end of each connecting rod 4 is connected with the cabinet body 1, and the lower end of each connecting rod is fixedly connected with the sliding block 5;
the supporting block 8 is a U-shaped block, the opening end of the supporting block faces downwards, the top surface of the supporting block is provided with a sliding groove, the sliding groove comprises a sliding groove A10 transversely arranged on the upper side of the supporting block 8, a sliding groove B11 vertically arranged on the left side of the supporting block 8, and a sliding groove C12 which enables the left end of the sliding groove A10 to be smoothly communicated with the top end of the sliding groove B11, the wheel shaft 7 is transversely fixed in the opening of the supporting block 8 through the wheel shaft 7, and the sliding block 5 can slide in the sliding groove;
the opening size of spout is less than the tank bottom size, the shape and size of the cross section of spacing inserted block 9 is unanimous with the shape and size of the cross section of spout, both sides are all offered and are used for conveniently taking out breach 15 of spacing inserted block 9 around the spout C12.
Roller assembly 3 rotates and installs the lower extreme at the rack body, refer to the installation of universal wheel, when the rack need be removed under the normal condition, roller assembly 3's user state is as shown in fig. 3, 4, slider 5 is located the inside of spout A10, and first stopper in the spacing inserted block 9 inserts in spout B11, and during the second stopper inserted spout A10 for the position of restriction slider 5 in spout A10, gyro wheel 6 and ground contact this moment.
As shown in fig. 5, when the cabinet body 1 needs to be fixed, the limiting insertion block 9 is taken out, after the cabinet body 1 is lifted to a certain height, the supporting block 8 is rotated to enable the sliding block 5 to slide in the sliding groove, when the supporting block 8 moves to the position where the right side wall of the supporting block contacts with the ground, the sliding block 5 slides to the position of the sliding groove B11 from the original position of the sliding groove a10 at the top of the supporting block 8, then the first limiting block of the limiting insertion block 9 is inserted into the sliding groove a10, the second limiting block is inserted into the sliding groove B11 to limit the position of the sliding block 5 in the sliding groove B11, and at this time, the right side wall of the supporting block 8 contacts with the ground.
The use states of the roller assemblies 3 are set into two states, so that the cabinet body 1 can be conveniently moved, the unfavorable condition that the cabinet cannot realize braking due to the elastic failure of the spring caused by the deformation of the spring, the cabinet cannot be fixed or the brake state cannot be relieved, and the cabinet cannot be moved is avoided, the roller assemblies 3 also have the function of fixing the cabinet body 1 under the condition that the braking is not used, the supporting function of the roller assemblies 3 is ensured, the deformation is not easily generated, and the service life of the roller assemblies 3 is prolonged; meanwhile, after the roller assembly 3 is damaged on uneven ground for a long time, the supporting block 8 is rotated, and the slider can slide out of the notch 15, so that the supporting block 8 is separated from the slider 5, and the supporting block 8 and the roller below can be replaced.
Example 2
On the basis of embodiment 1, further, the cross section of the limiting insertion block 9 is L-shaped, and includes a first limiting block and a second limiting block, the second limiting block is fixed on the right side wall of the upper end of the first limiting block, the width of the first limiting block is the same as that of the sliding block 5, and the width of the second limiting block is the same as that of the connecting rod 4.
Further, the width of the slider 5 is H, the length from the right end of the sliding groove a10 to the right end of the sliding groove B11 is a, the height from the lower end of the sliding groove B11 to the lower end of the sliding groove a10 is B, the length of the second limiting block is M, the length of the first limiting block is N, H + M is a, and H + N is B.
As shown in fig. 4, in a first use state, a first limit block in the limit insertion block 9 is inserted into the sliding groove B11, and a second limit block is inserted into the sliding groove a10 for limiting the position of the sliding block 5 in the sliding groove a10, when the cabinet moves through the roller assembly 3, the sliding block 5 presses the second limit block, the second limit block transmits force to the first limit block, since the width of the first limit block is the same as that of the sliding block 5, the first limit block is limited inside the sliding groove B11 as well as the sliding block 5, and the inward-convex inward-turned edge of the sliding groove B11 is used for limiting the movement of the first limit block; similarly, as shown in fig. 5, in the second usage state, the inward-convex inward-turned edge of the sliding groove a10 is used for limiting the movement of the first stopper.
The shape and size of spacing inserted block 9 have further been injectd to this scheme for the structure that spacing inserted block 9 was injectd is more complete, has specifically limited the concrete structure and the connected mode of slider 5's position of inserted block 9, makes when inserting spacing inserted block 9, slider 5 can not slide in spout A10 or spout B11 inside, thereby makes cabinet body 1 unstable.
Example 3
Furthermore, the connecting rod 4, the sliding block 5 and the supporting block 8 are all made of high-carbon steel.
The connecting rod 4, the sliding block 5 and the supporting block 8 all play a supporting role for the cabinet body 1, so that the parts are made of high-hardness high-carbon steel, the cabinet body 1 is supported more stably, and the service life of the roller assembly is prolonged.
Example 4
Furthermore, a supporting leg 13 is transversely installed at one end, far away from the connecting rod 4, of the right side wall of the supporting block 8.
As shown in fig. 5, in the second usage state and when the supporting leg 13 is not provided, the right side wall of the supporting block 8 directly contacts with the ground, if a force is applied to push the cabinet body 1 from the right end of the limiting insertion block 9 toward the direction of the roller 6, since one end of the supporting block 8 close to the roller 6 is not solid, one end of the supporting block 8 close to the roller 6 and contacting with the ground may generate a large stress, which may damage the wheel axle 7 and the roller 6 connected thereto due to deformation.
One end of the right side wall of the supporting block 8, which is far away from the connecting rod 4, is transversely provided with a supporting leg 13, so that the stress point completely falls on the supporting leg 8, the service life of the roller assembly 3 is prolonged, and the harm caused by deformation is reduced.
Example 5
Further, a silica gel cushion 14 for preventing the ground from being damaged is fixedly arranged on the right side of the supporting leg 13.
The silica gel cushion 14 prevents the supporting leg 13 from scratching the ground, and simultaneously does not affect the supporting function of the supporting leg 13.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (6)

1. A large data platform data storage server cabinet comprises a cabinet body (1), a cabinet door (2) connected with the cabinet body (1) in a hinged mode and a plurality of roller assemblies (3) rotatably installed below the cabinet body (1), and is characterized in that each roller assembly (3) comprises a connecting rod (4), a sliding block (5), a roller (6), a wheel shaft (7), a supporting block (8) and a limiting insertion block (9), the upper end of each connecting rod (4) is connected with the cabinet body (1), and the lower end of each connecting rod is fixedly connected with the corresponding sliding block (5);
the supporting block (8) is a U-shaped block, the opening end of the supporting block faces downwards, the top surface of the supporting block is provided with a sliding groove, the sliding groove comprises a sliding groove A (10) transversely arranged on the upper side of the supporting block (8), a sliding groove B (11) vertically arranged on the left side of the supporting block (8) and a sliding groove C (12) which enables the left end of the sliding groove A (10) to be smoothly communicated with the top end of the sliding groove B (11), the wheel shaft (7) is transversely fixed in the opening of the supporting block (8) through the wheel shaft (7), and the sliding block (5) can slide in the sliding groove;
the opening size of spout is less than the tank bottom size, the shape and size of the cross section of spacing inserted block (9) is unanimous with the shape and size of the cross section of spout, breach (15) that are used for conveniently taking out spacing inserted block (9) are all seted up to both sides around spout C (12).
2. The large data platform data storage server cabinet as claimed in claim 1, wherein the cross section of the limiting insertion block (9) is L-shaped, and the limiting insertion block comprises a first limiting block and a second limiting block, the second limiting block is fixed on the right side wall of the upper end of the first limiting block, the width of the first limiting block is the same as that of the sliding block (5), and the width of the second limiting block is the same as that of the connecting rod (4).
3. The big data platform data storage server cabinet according to claim 2, wherein the width of the slider (5) is H, the length from the right end of the chute a (10) to the right end of the chute B (11) is a, the height from the lower end of the chute B (11) to the lower end of the chute a (10) is B, the length of the second stopper is M, the length of the first stopper is N, H + M ═ a, and H + N ═ B.
4. The big data platform data storage server cabinet of claim 1, wherein the connecting rods (4), the sliders (5) and the support blocks (8) are all made of high carbon steel.
5. A large data platform data storage server cabinet according to claim 1, wherein the right side wall of the support block (8) is transversely mounted with support legs (13) at the end away from the connecting bar (4).
6. A big data platform data storage server cabinet according to claim 5, characterized in that the right side of the supporting legs (13) is fixedly provided with a silica gel cushion (14) for preventing damage to the ground.
CN202023127440.3U 2020-12-21 2020-12-21 Big data platform data storage server rack Active CN214014742U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023127440.3U CN214014742U (en) 2020-12-21 2020-12-21 Big data platform data storage server rack

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023127440.3U CN214014742U (en) 2020-12-21 2020-12-21 Big data platform data storage server rack

Publications (1)

Publication Number Publication Date
CN214014742U true CN214014742U (en) 2021-08-20

Family

ID=77290947

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023127440.3U Active CN214014742U (en) 2020-12-21 2020-12-21 Big data platform data storage server rack

Country Status (1)

Country Link
CN (1) CN214014742U (en)

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