CN112911885A - Cloud disk server system safety reinforcing apparatus - Google Patents

Cloud disk server system safety reinforcing apparatus Download PDF

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Publication number
CN112911885A
CN112911885A CN202110080415.4A CN202110080415A CN112911885A CN 112911885 A CN112911885 A CN 112911885A CN 202110080415 A CN202110080415 A CN 202110080415A CN 112911885 A CN112911885 A CN 112911885A
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wall
rotating
cavity
groove
rod
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CN202110080415.4A
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CN112911885B (en
Inventor
李德源
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Shaanxi Dazhen Carbon Energy Technology Co ltd
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Tianjin Wangan Technology Co ltd
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1485Servers; Data center rooms, e.g. 19-inch computer racks
    • H05K7/1488Cabinets therefor, e.g. chassis or racks or mechanical interfaces between blades and support structures
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/70Protecting specific internal or peripheral components, in which the protection of a component leads to protection of the entire computer
    • G06F21/88Detecting or preventing theft or loss
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/0217Mechanical details of casings
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/0217Mechanical details of casings
    • H05K5/0234Feet; Stands; Pedestals, e.g. wheels for moving casing on floor
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2200/00Indexing scheme relating to G06F1/04 - G06F1/32
    • G06F2200/16Indexing scheme relating to G06F1/16 - G06F1/18
    • G06F2200/163Indexing scheme relating to constructional details of the computer
    • G06F2200/1638Computer housing designed to operate in both desktop and tower orientation

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  • Engineering & Computer Science (AREA)
  • Computer Hardware Design (AREA)
  • Theoretical Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Security & Cryptography (AREA)
  • Software Systems (AREA)
  • Power Engineering (AREA)
  • Human Computer Interaction (AREA)
  • Computer And Data Communications (AREA)

Abstract

本发明涉及电脑设备技术领域,且公开了一种云盘服务器系统安全加固装置,包括机箱,服务器本体底部与机箱腔内底部壁面之间设置有两组锁紧机构,锁紧机构包括支撑柱、固定环、限位环和转动环,支撑柱固定安装在服务器本体的底部,两个固定环之间固定安装有限位套。该云盘服务器系统安全加固装置,本发明通过在服务器本体与机箱之间设置两组相互对称的锁紧机构,服务器本体底部的支撑柱限位固定在机箱壁面的限位套内,限位套外壁套接的四组限位环实现了对支撑柱上四个卡块进行限位,则实现了将服务器本体稳固的安装在机箱腔内,本发明通过在转动环的外壁上设置从零到九的十组密码数字,实现了通过转动四组转动环可以对支撑柱进行上锁和解锁。

Figure 202110080415

The invention relates to the technical field of computer equipment, and discloses a security reinforcement device for a cloud disk server system. A fixing ring, a limiting ring and a rotating ring, the support column is fixedly installed on the bottom of the server body, and a limiting sleeve is fixedly installed between the two fixing rings. For the cloud disk server system security reinforcement device, in the present invention, two sets of mutually symmetrical locking mechanisms are arranged between the server body and the chassis. The four sets of limit rings sleeved on the outer wall can limit the four blocks on the support column, so that the server body can be stably installed in the cabinet cavity. The ten groups of cipher numbers of nine realize that the support column can be locked and unlocked by turning four groups of rotating rings.

Figure 202110080415

Description

Cloud disk server system safety reinforcing apparatus
Technical Field
The invention relates to the technical field of computer equipment, in particular to a cloud disk server system security reinforcing device.
Background
The cloud disk server body is usually fixedly installed in the case, the cloud disk server body is arranged in the case, dust and dirt in the air can be prevented from being stained by the cloud disk server body, the problem that the cloud disk server body is lost can be solved, a large amount of data and data are stored in the cloud disk server body, and therefore the problems of loss and theft need to be solved. The cloud disk server system body in the prior art is simple and single in installation mode in the case, the cloud disk server body is locked in the case mainly by locking the case, but a lock body on the case is easy to damage, so that the cloud disk server body is easily taken out of the case, and the safety is low. Therefore, in order to solve the above problems, it is desirable to provide a security reinforcing apparatus for a cloud disk server system.
Disclosure of Invention
Technical problem to be solved
Aiming at the defects of the prior art, the invention provides a security reinforcing device for a cloud disk server system.
(II) technical scheme
In order to achieve the purpose, the invention provides the following technical scheme: a cloud disk server system safety reinforcing device comprises a case, a server body is arranged in a case cavity, two groups of locking mechanisms are arranged between the bottom of the server body and the wall surface of the bottom in the case cavity, each locking mechanism comprises a supporting column, a fixing ring, a limiting ring and a rotating ring, the supporting columns are cylindrical, the supporting columns are fixedly arranged at the bottom of the server body, the two supporting columns are symmetrical to each other, the number of the fixing rings is two, a limiting sleeve is fixedly arranged between the two fixing rings, an extending groove is formed in the inner wall of the front side of the upper fixing ring, a penetrating groove in the vertical direction is formed in the front side wall surface of the limiting sleeve, the extending grooves are vertically corresponding to the penetrating groove, the extending grooves are aligned with the penetrating groove, four groups of clamping blocks are fixedly arranged on the outer wall of the front side of the supporting columns, the four groups of protruding sheets are fixedly arranged on the outer wall of, the lug is arc-shaped, the middle part of the lug is in an arc-shaped convex state, the bottom end of the support column penetrates through the fixing ring on the upper side, the bottom end of the support column extends into the cavity of the limit sleeve, the fixture blocks penetrate through the extending grooves and are positioned in the penetrating grooves, four groups of fixture blocks and four lugs are in a state of horizontal alignment, the number of the limit rings and the number of the rotating rings are four, each limit ring is arranged on the inner wall of the corresponding rotating ring, the inner wall of each limit ring is provided with nine clamping strips and one inner groove which are distributed in an annular array manner, the nine clamping strips and the one inner groove are distributed in an annular array manner on the inner wall of each limit ring, the nine clamping strips are fixedly arranged on the inner wall of each limit ring, ten groups of digital plates which are distributed in an annular array manner are fixedly arranged on the outer wall of each rotating ring, the digital plates are positioned between two adjacent clamping strips and between the inner groove and two adjacent clamping strips, ten numbers from, four spacing rings cup joint in proper order on the outer wall of stop collar from the top down respectively, and four lugs are located respectively between two adjacent card strips that correspond the spacing ring inner wall, and machine incasement bottom fixed mounting has the mounting groove of mutually supporting with two solid fixed rings and stop collar, and the rotation groove of mutually supporting with four swivel beckets is seted up to machine bottom portion front side outer wall, and the front side outer wall of four swivel beckets is located the outside of machine bottom portion.
Preferably, two groups of adjusting mechanisms which are symmetrical to each other are arranged between the limiting ring and the rotating ring, each adjusting mechanism comprises a pressing block, a positioning block and a hydraulic sleeve, a pressing groove is formed in the top of the limiting ring, a limiting plate is fixedly mounted at the bottom end of the pressing block, a lifting groove which is mutually clamped with the limiting plate is formed in the bottom of the pressing groove, the top end of the pressing block movably penetrates through the top wall surface in the lifting groove cavity, the top end of the pressing block is positioned in the cavity of the pressing groove, a push rod is fixedly mounted at the bottom of the limiting plate, a reset spring is sleeved on the outer wall of the push rod, the positioning block is arranged on the arc-shaped outer wall of the limiting ring and is positioned under the pressing block, one side of the positioning block, which is far away from the outer wall of the limiting ring, is in an arc-shaped convex state, a clamping plate is, the inner wall of the rotating ring is provided with an annular rotating groove, the inner wall of the rotating groove is provided with ten groups of positioning holes distributed in an annular array manner, the positioning holes are in an inwards concave arc shape, and each positioning hole is positioned between two adjacent digital plates.
Preferably, the upper end and the lower end of the clamping plate are fixedly provided with sliding blocks, the wall surfaces of the upper end and the lower end in the extrusion chamber are provided with sliding chutes clamped with the sliding blocks, a second telescopic rod is fixedly arranged between the inner wall of the clamping plate and the inner wall in the extrusion chamber, the outer wall of the second telescopic rod is sleeved with an extrusion spring, and the hydraulic sleeve is arranged in the inner wall of the limiting ring between the pressing block and the positioning hole.
Preferably, the hydraulic sleeve is in a Z shape, the vertical top end of the hydraulic sleeve is located right below the bottom in the lifting groove cavity, the bottom end of the push rod extends into the inner wall of the vertical top end of the hydraulic sleeve through a fixedly connected sealing piston plate, and the horizontal bottom end of the hydraulic sleeve and the sliding block on the upper side of the push rod are in a horizontally aligned state.
Preferably, the inner wall of the horizontal bottom end of the hydraulic sleeve is movably clamped with a sealing stroke plate, a stroke rod is fixedly mounted on the outer wall of one side, close to the sliding block, of the sealing stroke plate, the other end of the stroke rod is fixedly connected to the outer wall of the sliding block, and hydraulic oil is filled in the cavity of the hydraulic sleeve.
Preferably, a stabilizing mechanism is arranged between the bottom of the server body and the bottom in the case cavity, the stabilizing mechanism is positioned between the two groups of locking mechanisms and comprises two buffer rods and two support rods, the two support rods are arranged on the wall surface of the bottom of the case, the buffer rods are fixedly arranged on the wall surface of the bottom of the server body, the buffer rod is positioned between the two support rods, the inner wall surface of the bottom part of the case cavity is internally provided with a rotating bin, the left and right side wall surfaces of the top part of the rotating bin cavity are respectively provided with a through hole A, the two support rods respectively and movably penetrate through the through holes A, and the upper and lower both ends of two bracing pieces are all fixed mounting have the baffle, and the baffle of bracing piece bottom is located and rotates the warehouse, and the bracing piece at bracing piece top is located chassis bottom wall top, rotates warehouse top central point department and has seted up perforation B, and the bottom of buffer beam stretches into through perforation B and rotates the warehouse.
Preferably, it is provided with two sets of rotation posts to rotate the bin cavity, the equal fixed mounting in both ends has the dwang around two rotation posts, two sets of dwang movable mounting are on the wall around rotating the bin cavity around through the rotation post, two rotation posts are located respectively between the bracing piece of buffer beam and left and right sides, and two rotation posts are the high state setting in the left side end right side and rotate the bin cavity, the equal fixed mounting in left and right sides outer wall of two rotation posts has the balancing plate, the left side balancing plate that the top rotated the post is located the below of buffer beam, and the right side fixture block that the top rotated the post is located the below of right side bracing piece, the balancing plate on downside rotation post right side is located the below of upside rotation post left side balancing plate, the left balancing plate of downside rotation post is located the below of left.
Preferably, the downside rotate the left balance plate of post and upside on post right side and rotate all be provided with first telescopic link between the bottom of the storehouse intracavity, the equal fixed mounting in both ends has rolling ball A about first telescopic link, the rolling ball A movable mounting of first telescopic link bottom rotates on storehouse intracavity bottom wall, the rolling ball A on first telescopic link top is corresponding movable mounting then on the bottom wall of two balance plates, and the outer wall of two first telescopic links has all cup jointed supporting spring.
Preferably, the upside rotate the column right side balance plate and the downside and rotate the left balance plate of column and correspond between the baffle of one side and be provided with same first telescopic link, the equal fixed mounting in both ends has rolling ball A about first telescopic link, and the rolling ball A at first telescopic link both ends is movable mounting respectively on the bottom wall of balance plate top wall and baffle, and the outer wall of first telescopic link has cup jointed supporting spring.
(III) advantageous effects
Compared with the prior art, the invention provides a cloud disk server system security reinforcing device, which has the following beneficial effects:
1. according to the cloud disk server system safety reinforcing device, two groups of symmetrical locking mechanisms are arranged between a server body and a case, a support column at the bottom of the server body is limited and fixed in a limiting sleeve on the wall surface of the case, four groups of limiting rings sleeved on the outer wall of the limiting sleeve limit four clamping blocks on the support column, and the server body is stably installed in a case cavity.
2. According to the cloud disk server system safety reinforcing device, the two groups of locking mechanisms are arranged at the bottom of the server body, the two groups of supporting columns not only improve the limiting supporting effect on the server body and increase the stability of the server body installed in the case cavity, but also realize the number with eight groups of unlocking passwords, so that the safety and the protection of the installation of the server body are further improved, and the cloud disk server system safety reinforcing device has strong practicability and creativity.
3. According to the cloud disk server system safety reinforcing device, the two groups of pressing blocks are pressed, hydraulic oil in the hydraulic sleeve cavity is pushed through the pushing rod, the stroke rod is matched to drive the arc end of the positioning block to be pulled out of the positioning hole through the sliding block, the limiting ring and the rotating ring can rotate relatively, the inner groove of the limiting ring is aligned to the password number on the outer wall of the rotating ring needing to be changed, the unlocking password number of the locking mechanism is changed and replaced, the password is modified by periodically modifying the locking mechanism, the safety of the server body installed in the case cavity is further improved, the protection effect on the server body is enhanced, and the cloud disk server system safety reinforcing device has high practicability and creativity.
4. This cloud dish server system safety reinforcing apparatus, through setting up stabilizing mean, the server body rotates about the post through the buffer beam and is close to each other and the balance plate of upper and lower overlap carries out down extrusion down to two, these two balance plates have then played the effect of carrying out elasticity support and buffering to the buffer beam through the supporting spring and the first telescopic link of bottom, the buffer beam has not only played the effect that increases server body stability, and support through the buffer beam pressing of these two balance plates, the effect of buffering and protection server body has still been played, reduce the resonance that produces between server body and the quick-witted case, the protection effect to server body 11 has been improved.
5. This cloud dish server system safety reinforcing apparatus, through setting up stabilizing mean, when the server body through the buffer beam to two rotate the post on be close to each other and the upper and lower balanced board that overlaps down press down, make two rotate the synchronous up perk of two balanced boards of keeping away from buffer beam one side on the post, then these two balanced boards carry out up elastic support to the bracing piece of top through first telescopic link and supporting spring once more, then realized that two bracing pieces have played the effect that elastic support and buffering once more to the bottom of server body, not only further improved the stability that the server body was placed with the machine incasement chamber, and still improved the protection effect to the server body, stronger practicality and creativity have.
Drawings
FIG. 1 is a front partial cross-sectional view of the present invention;
FIG. 2 is an enlarged view taken at A of FIG. 1 in accordance with the present invention;
FIG. 3 is an enlarged view of the invention at B of FIG. 2;
FIG. 4 is a schematic view of a support post structure according to the present invention;
FIG. 5 is a schematic view of the structure of the position-limiting sleeve of the present invention;
FIG. 6 is a schematic view of the stop collar and the rotating ring of the present invention;
FIG. 7 is a schematic view of a rotating ring according to the present invention;
FIG. 8 is a cross-sectional view of the stop collar and the rotating ring of the present invention;
FIG. 9 is an enlarged view taken at C of FIG. 8 in accordance with the present invention;
FIG. 10 is an enlarged view taken at D of FIG. 9 in accordance with the present invention;
FIG. 11 is an enlarged view of the invention at E in FIG. 9.
In the figure: 1. a chassis; 11. a server body; 2. a locking mechanism; 21. a support pillar; 22. a clamping block; 23. a fixing ring; 24. a limiting sleeve; 25. a tab; 26. a limiting ring; 27. a rotating ring; 28. clamping the strip; 29. a digital board; 3. a stabilizing mechanism; 31. a buffer rod; 32. a support bar; 33. a balance plate; 34. rotating the column; 35. rotating the rod; 36. a baffle plate; 37. a support spring; 38. rotating the ball A; 39. a first telescopic rod; 4. extending out of the groove; 41. penetrating a groove; 42. an inner groove; 5. rotating the bin; 51. punching a hole A; 52. punching a hole B; 6. an adjustment mechanism; 61. a pressing block; 62. a limiting plate; 63. a return spring; 64. a push rod; 65. a hydraulic sleeve; 66. a sealing stroke plate; 67. a clamping plate; 68. positioning blocks; 7. a slider; 71. a chute; 72. pressing the groove; 73. a lifting groove; 74. a rotating groove; 75. positioning holes; 76. extruding the bin; 77. a compression spring; 78. a second telescopic rod; 79. a trip bar.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 11, the present invention provides a technical solution: a cloud disk server system safety reinforcing device comprises a case 1, a server body 11 is arranged in a cavity of the case 1, the server body 11 is a cloud disk server system body, the server body 11 is the prior art, and details are not repeated herein, two groups of locking mechanisms 2 are arranged between the bottom of the server body 11 and the wall surface of the bottom in the cavity of the case 1, each locking mechanism 2 comprises a support column 21, a fixed ring 23, a limit ring 26 and a rotating ring 27, the support column 21 is a cylinder, the support columns 21 are fixedly arranged at the bottom of the server body 11, the two support columns 21 are mutually symmetrical, the number of the fixed rings 23 is two, a limit sleeve 24 is fixedly arranged between the two fixed rings 23, an extension groove 4 is arranged on the inner wall of the front side of the upper fixed ring 23, a through groove 41 in the vertical direction is arranged on the front surface of the limit sleeve 24, the extension groove 4 is positioned above and below the through groove 41 and, four groups of clamping blocks 22 which are distributed at equal intervals from top to bottom are fixedly installed on the outer wall of the front side of the supporting column 21, four groups of protruding pieces 25 which are distributed at equal intervals from top to bottom are fixedly installed on the outer wall of the limiting sleeve 24 from top to bottom, the protruding pieces 25 are arc-shaped, the middle parts of the protruding pieces 25 are in arc-shaped protruding states, the bottom end of the supporting column 21 penetrates through the fixing ring 23 on the upper side, the bottom end of the supporting column 21 extends into the cavity of the limiting sleeve 24, the clamping blocks 22 penetrate through the extending grooves 4, the clamping blocks 22 are located in the penetrating grooves 41, the four groups of clamping blocks 22 and the four protruding pieces 25 are in horizontal alignment, the number of the limiting rings 26 and the number of the rotating rings 27 are four, each limiting ring 26 is arranged on the inner wall of the corresponding rotating ring 27, nine clamping strips 28 and one inner groove 42 which are distributed in an annular array are arranged on the inner wall of the limiting ring 26, nine clamping strips 28 are fixedly arranged on the inner wall of the limiting ring 26, ten groups of digital plates 29 distributed in an annular array are fixedly arranged on the outer wall of the rotating ring 27, the digital plates 29 are positioned between two adjacent clamping strips 28 and between the inner groove 42 and two adjacent clamping strips 28, ten numbers from zero to nine are sequentially written on the ten digital plates 29, four limiting rings 26 are sequentially sleeved on the outer wall of the limiting sleeve 24 from top to bottom respectively, four lugs 25 are respectively positioned between two adjacent clamping strips 28 corresponding to the inner wall of the limiting rings 26, mounting grooves matched with the two fixing rings 23 and the limiting sleeve 24 are fixedly arranged at the bottom of the cavity of the case 1, rotating grooves matched with the four rotating rings 27 are arranged on the outer wall of the front side of the bottom of the case 1, the outer walls of the front sides of the four rotating rings 27 are positioned on the outer side of the bottom of the case 1, two groups of symmetrical adjusting mechanisms 6 are arranged between the limiting rings 26 and the rotating rings 27, the adjusting mechanism 6 comprises a pressing block 61, a positioning block 68 and a hydraulic sleeve 65, wherein the top of the limit ring 26 is provided with a pressing groove 72, the bottom end of the pressing block 61 is fixedly provided with a limit plate 62, the bottom of the pressing groove 72 is provided with a lifting groove 73 mutually clamped with the limit plate 62, the top end of the pressing block 61 movably penetrates through the top wall surface in the cavity of the lifting groove 73, the top end of the pressing block 61 is positioned in the cavity of the pressing groove 72, the bottom of the limit plate 62 is fixedly provided with a push rod 64, the outer wall of the push rod 64 is sleeved with a return spring 63, the positioning block 68 is arranged on the arc-shaped outer wall of the limit ring 26, the positioning block 68 is positioned under the pressing block 61, one side of the positioning block 68, which is far away from the outer wall of the limit ring 26, is in an arc-shaped convex state, one side of the positioning block 68, which is close, an annular rotating groove 74 is formed in the inner wall of the rotating ring 27, ten groups of positioning holes 75 distributed in an annular array are formed in the inner wall of the rotating groove 74, the positioning holes 75 are in an inward concave arc shape, each positioning hole 75 is located between two adjacent digital plates 29, sliders 7 are fixedly mounted at the upper end and the lower end of each clamping plate 67, sliding grooves 71 clamped with the sliders 7 are formed in the upper end and the lower end of each extrusion chamber 76, a second telescopic rod 78 is fixedly mounted between the inner wall of each clamping plate 67 and the inner wall of each extrusion chamber 76, an extrusion spring 77 is sleeved on the outer wall of each second telescopic rod 78, a hydraulic sleeve 65 is arranged in the inner wall of the limiting ring 26 between each pressing block 61 and each positioning hole 75, the hydraulic sleeve 65 is in a Z-shaped form, the vertical top end of the hydraulic sleeve 65 is located right below the bottom of the cavity of the lifting groove 73, and the bottom end of each pushing rod 64 extends into the inner wall of, the horizontal bottom end of the hydraulic sleeve 65 is horizontally aligned with the slide block 7 on the upper side of the push rod 64, the inner wall of the horizontal bottom end of the hydraulic sleeve 65 is movably clamped with a sealing stroke plate 66, the outer wall of one side of the sealing stroke plate 66 close to the slide block 7 is fixedly provided with a stroke rod 79, the other end of the stroke rod 79 is fixedly connected to the outer wall of the slide block 7, hydraulic oil is filled in the cavity of the hydraulic sleeve 65, a stabilizing mechanism 3 is arranged between the bottom of the server body 11 and the bottom of the cavity of the case 1, the stabilizing mechanism 3 is positioned between two groups of locking mechanisms 2, the stabilizing mechanism 3 comprises a buffer rod 31 and support rods 32, the number of the support rods 32 is two, the two support rods 32 are arranged on the wall surface at the bottom of the case 1, the buffer rod 31 is fixedly arranged on the wall surface at the bottom of the server body 11, the left side wall and the right side wall of the top of the cavity of the rotating bin 5 are respectively provided with a through hole A51, the two support rods 32 respectively and movably penetrate through a through hole A51, the upper end and the lower end of each support rod 32 are respectively and fixedly provided with a baffle 36, the baffle 36 at the bottom of each support rod 32 is positioned in the cavity of the rotating bin 5, the support rods 32 at the top of each support rod 32 are positioned above the wall of the bottom of the case 1, the central position of the top of the cavity of the rotating bin 5 is provided with a through hole B52, the bottom end of the buffer rod 31 extends into the cavity of the rotating bin 5 through the through hole B52, two groups of rotating columns 34 are arranged in the cavity of the rotating bin 5, the front end and the rear end of each rotating column 34 are respectively and fixedly provided with a rotating rod 35, the rotating columns 34 are movably arranged on the front wall and the rear wall of the cavity of the rotating bin, the outer walls of the left side and the right side of the two rotating columns 34 are fixedly provided with balance plates 33, the left balance plate 33 of the upper rotating column 34 is positioned below the buffer rod 31, the right fixture block 22 of the upper rotating column 34 is positioned below the right support rod 32, the balance plate 33 on the right side of the lower rotating column 34 is positioned below the left balance plate 33 of the upper rotating column 34, the balance plate 33 on the left side of the lower rotating column 34 is positioned below the left support rod 32, first telescopic rods 39 are arranged between the balance plate 33 on the right side of the lower rotating column 34 and the balance plate 33 on the left side of the upper rotating column 34 and the inner bottom of the cavity of the rotating bin 5, the upper end and the lower end of each first telescopic rod 39 are fixedly provided with a rotating ball A38, the rotating ball A38 at the bottom end of the first telescopic rod 39 is movably arranged on the inner bottom wall surface of the cavity of the rotating bin 5, the rotating ball A38 at the, and two outer walls of first telescopic link 39 all cup joint supporting spring 37, be provided with same first telescopic link 39 between the baffle 36 of baffle 36 that the balance plate 33 and the left balance plate 33 of downside rotation post 34 on upside rotation post 34 right side and downside rotate the post 34, the equal fixed mounting in upper and lower both ends of first telescopic link 39 has rolling ball A38, rolling ball A38 at first telescopic link 39 both ends is respectively movable mounting on balance plate 33 top wall and baffle 36's bottom wall, and the outer wall of first telescopic link 39 has cup jointed supporting spring 37.
When the server is used, ten numbers from zero to nine are written on the ten number plates 29 respectively, so that a password number is generated on each rotating ring 27, the positions of the password numbers correspond to the positions of the inner grooves 42, after four password numbers are set, four groups of rotating rings 27 are rotated on the wall surface on the front side of the case 1, and the four password numbers are aligned up and down, then the inner grooves 42 on the four limit rings 26 are aligned up and down, the support columns 21 at the bottom of the server body 11 are positioned in the cavities of the limit sleeves 24, the fixture blocks 22 are positioned in the cavities of the through grooves 41, the implemented fixture blocks 22 are also positioned in the cavities of the inner grooves 42, and at the moment, the server body 11 can be lifted upwards to pull out the support columns 21 at the bottom of the server body 11 from the cavities of the limit sleeves 24, so as to realize the safe detachment of the server body 11 from the cavity of the case 1, the invention realizes that the support columns 21 can be locked and unlocked by rotating the four groups of rotating rings 27 by arranging ten groups of password numbers from zero to nine on the outer wall of the rotating ring 27, the fixture blocks 22 on the outer wall of the support columns 21 are positioned in the inner grooves 42 of the limiting rings 26 by vertically aligning the password numbers, so as to realize the unlocking of the support columns 21, realize the unlocking of the server body 11 and improve the safety of the server body 11 installed in the case 1, according to the invention, the two groups of locking mechanisms 2 are arranged at the bottom of the server body 11, the two groups of supporting columns 21 not only improve the limiting supporting effect on the server body 11 and increase the stability of the server body 11 installed in the cavity of the case 1, but also the two groups of locking mechanisms 2 realize the number of eight groups of unlocking passwords, so that the safety and the protection of the installation of the server body 11 are further improved, and the server has strong practicability and creativity.
When the password number to be unlocked needs to be changed, the pressing block 61 is pressed, the pressing block 61 presses the limiting plate 62 downwards, the limiting plate 62 extrudes downwards to push the push rod 64, the push rod 64 improves the sealing piston plate to extrude and push hydraulic oil in the cavity of the hydraulic sleeve 65, so that the hydraulic oil in the cavity of the hydraulic sleeve 65 pushes the sealing stroke plate 66, the sealing stroke plate 66 pushes the stroke rod 79, the stroke rod 79 pushes the sliding block 7, the sliding block 7 pushes the positioning block 68 to move towards the cavity of the extrusion bin 76 through the clamping plate 67, the arc-shaped protruding end of the positioning block 68 is pulled out from the positioning hole 75, the positioning effect of the positioning block 68 on the rotating ring 27 is cancelled, the rotating ring 27 is rotated on the outer wall of the limiting ring 26 at the moment, the inner groove 42 of the limiting ring 26 is aligned to the number on the outer wall of the rotating ring 27 to be changed, after the change is finished, two groups of pressing blocks 61 are loosened, so that the arc-shaped protruding end of the positioning block 68 is pressed and clamped into the cavity of the positioning hole 75 again, the rotating ring 27 and the limiting ring 26 are fixed again, the password number is changed, the relative rotation of the limiting ring 26 and the rotating ring 27 at the moment is realized by pressing the two groups of pressing blocks 61, the pushing rod 64 pushes hydraulic oil in the cavity of the hydraulic sleeve 65, the stroke rod 79 is matched to drive the arc-shaped end of the positioning block 68 to be pulled out from the positioning hole 75 through the sliding block 7, the inner groove 42 of the limiting ring 26 is aligned to the password number on the outer wall of the rotating ring 27 to be changed, the unlocking password number of the locking mechanism 2 is changed and replaced, and the password of the locking mechanism 2 is changed periodically, the safety of the server body 11 in the cavity of the case 1 is further improved, the protection effect on the server body 11 is enhanced, and the practicability and the creativity are stronger.
The server body 11 presses the balance plate 33 on the left side of the upper rotation column 34 downwards through the buffer rod 31 under the action of its own gravity, so that the upper rotation column 34 generates rotational deviation, the balance plate 33 on the left side of the upper rotation column 34 presses the balance plate 33 on the right side of the lower rotation column 34, at this time, the two balance plates 33, which are close to each other and overlapped with each other, have the effect of supporting and buffering the buffer rod 31, because the support springs 37 on the outer walls of the first telescopic rods 39 at the bottoms of the two balance plates 33 have the effect of elastically supporting the balance plates 33, and when the two rotation columns 34 rotate and turn over towards the pressing side, the two balance plates 33 on the sides of the two rotation columns 34 far away from the buffer rod 31 upwards perform extrusion motion, and then the two balance plates 33 upwards extrude the baffle plates 36 at the bottoms of the support rods 32 through the elastic supporting effect of the outer wall support springs 37 of the first telescopic rods 39 again, the baffle 36 at the top of the two support rods 32 plays a role of upward elastic support for the bottom of the server body 11, so by arranging the stabilizing mechanism 3, the server body 11 performs downward extrusion on the balance plates 33 which are close to each other up and down and overlapped up and down through the buffer rod 31 under the action of self gravity, the two balance plates 33 perform elastic support and buffering effects on the buffer rod 31 through the support springs 37 and the first telescopic rod 39 at the bottom, the buffer rod 31 not only performs the effect of increasing the stability of the server body 11, but also performs the effect of buffering and protecting the server body 11 by pressing and supporting the two balance plates 33 through the buffer rod 31, reduces the resonance generated between the server body 11 and the case 1, improves the protection effect on the server body 11, by arranging the stabilizing mechanism 3, when server body 11 is close to each other and the balance plate 33 of overlapping from top to bottom carries out down pressing down through buffer beam 31 on two rotation posts 34, make two synchronous upwarps of balance plate 33 who keeps away from buffer beam 31 one side on two rotation posts 34, then these two balance plates 33 carry out up elastic support to the bracing piece 32 of top through first telescopic link 39 and supporting spring 37 once more, then realized that two bracing pieces 32 have played the effect that elastic support and buffering once more to server body 11's bottom, not only further improved server body 11 and placed the stability with machine case 1 intracavity, and still improved the protective effect to server body 11, stronger practicality and creativity have.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (9)

1.一种云盘服务器系统安全加固装置,包括机箱(1),机箱(1)腔内设置有服务器本体(11),其特征在于:所述服务器本体(11)底部与机箱(1)腔内底部壁面之间设置有两组锁紧机构(2),锁紧机构(2)包括支撑柱(21)、固定环(23)、限位环(26)和转动环(27),支撑柱(21)为圆柱体,支撑柱(21)固定安装在服务器本体(11)的底部,且两个支撑柱(21)相互对称,固定环(23)的数量为两个,两个固定环(23)之间固定安装有限位套(24),上侧固定环(23)的前侧内壁开设有伸出槽(4),限位套(24)的前侧壁面开设有竖直方向上的穿槽(41),且伸出槽(4)位于穿槽(41)的位置上下对应且伸出槽(4)与穿槽(41)处于对齐的状态,支撑柱(21)的前侧外壁固定安装有四组从上到下等间距分布的卡块(22),限位套(24)的外壁从上到下固定安装有四组从上到下等间距分布的凸片(25),凸片(25)为弧形,且凸片(25)的中部呈弧形凸起的状态,支撑柱(21)的底端穿过上侧的固定环(23),且支撑柱(21)的底端伸入在限位套(24)腔内,卡块(22)穿过伸出槽(4)且卡块(22)位于穿槽(41)内,四组卡块(22)与四个凸片(25)处于水平对齐的状态;1. A security reinforcement device for a cloud disk server system, comprising a chassis (1), and a server body (11) is arranged in a cavity of the chassis (1), characterized in that: the bottom of the server body (11) and the cavity of the chassis (1) Two sets of locking mechanisms (2) are arranged between the inner bottom wall surfaces, and the locking mechanisms (2) include a support column (21), a fixing ring (23), a limit ring (26) and a rotating ring (27). (21) is a cylinder, the support column (21) is fixedly installed at the bottom of the server body (11), and the two support columns (21) are symmetrical with each other, the number of the fixing rings (23) is two, and the two fixing rings ( 23) fixedly install the limiting sleeve (24), the front inner wall of the upper fixing ring (23) is provided with a protruding groove (4), and the front side wall surface of the limiting sleeve (24) is provided with a vertical groove. Passing through the groove (41), and the protruding groove (4) is located at the position of the passing groove (41) corresponding to the top and bottom, and the protruding groove (4) and the passing groove (41) are in a state of alignment, and the front side outer wall of the support column (21) Four groups of clamping blocks (22) distributed at equal intervals from top to bottom are fixedly installed, and four groups of tabs (25) distributed at equal intervals from top to bottom are fixedly installed on the outer wall of the limiting sleeve (24) from top to bottom, The convex piece (25) is arc-shaped, and the middle of the convex piece (25) is in an arc-shaped convex state, the bottom end of the support column (21) passes through the upper fixing ring (23), and the support column (21) The bottom end extends into the cavity of the limiting sleeve (24), the clamping block (22) passes through the extending groove (4) and the clamping block (22) is located in the through groove (41). The four lugs (25) are in a state of horizontal alignment; 所述限位环(26)和转动环(27)的数量均为四个,且每个限位环(26)均设置在对应的转动环(27)内壁上,限位环(26)的的内壁设置有呈环形阵列分布的九个卡条(28)和一个内凹槽(42),九个卡条(28)和一个内凹槽(42)在限位环(26)的内壁上呈环形阵列分布,九个卡条(28)均固定安装在限位环(26)的内壁上,转动环(27)的外壁固定安装有十组呈环形阵列分布的数字板(29),且数字板(29)位于相邻两个卡条(28)之间和内凹槽(42)与相邻两个卡条(28)之间,十个数字板(29)上依次写有从零到九的十个数字,四个限位环(26)分别从上到下依次套接在限位套(24)的外壁上,且四个凸片(25)分别位于对应限位环(26)内壁的相邻两个卡条(28)之间,机箱(1)腔内底部固定安装有与两个固定环(23)和限位套(24)相互配合的安装槽,机箱(1)底部前侧外壁开设有与四个转动环(27)相互配合的转动槽,且四个转动环(27)的前侧外壁位于机箱(1)底部的外侧。The number of the limiting rings (26) and the rotating rings (27) is four, and each limiting ring (26) is arranged on the inner wall of the corresponding rotating ring (27). The inner wall of the ring is provided with nine clips (28) and an inner groove (42) distributed in an annular array, and the nine clips (28) and one inner groove (42) are on the inner wall of the limit ring (26). Distributed in a circular array, the nine clamping strips (28) are fixedly installed on the inner wall of the limit ring (26), and the outer wall of the rotating ring (27) is fixedly installed with ten groups of numeral boards (29) distributed in a circular array, and The number plate (29) is located between two adjacent card bars (28) and between the inner groove (42) and the two adjacent card bars (28), and the ten number plates (29) are sequentially written with numbers from zero. To the ten digits of nine, the four limit rings (26) are respectively sleeved on the outer wall of the limit sleeve (24) from top to bottom, and the four tabs (25) are respectively located on the corresponding limit rings (26). ) between the two adjacent clips (28) on the inner wall, the bottom of the cavity of the case (1) is fixedly installed with a mounting groove that cooperates with the two fixing rings (23) and the limit sleeve (24), and the case (1) The front outer wall of the bottom is provided with rotating grooves that cooperate with the four rotating rings (27), and the front outer walls of the four rotating rings (27) are located outside the bottom of the chassis (1). 2.根据权利要求1所述的一种云盘服务器系统安全加固装置,其特征在于:所述限位环(26)和转动环(27)之间设置有两组相互对称的调节机构(6),调节机构(6)包括按压块(61)、定位块(68)和液压套筒(65),限位环(26)顶部开设有按压槽(72),按压块(61)的底端固定安装有限位板(62),按压槽(72)的底部开设有与限位板(62)相互卡合的升降槽(73),按压块(61)的顶端活动贯穿升降槽(73)腔内的顶部壁面且按压块(61)的顶端位于按压槽(72)的腔内,限位板(62)的底部固定安装有推动杆(64),推动杆(64)的外壁套接有复位弹簧(63),定位块(68)设置在限位环(26)的弧形外壁上,且定位块(68)位于按压块(61)的正下方,定位块(68)远离限位环(26)外壁的一侧为弧形凸起的状态,定位块(68)靠近限位环(26)外壁的一侧固定安装有卡合板(67),限位环(26)的弧形外壁开设有与卡合板(67)相互卡合的挤压仓(76),转动环(27)的内壁开设有环形的转动槽(74),转动槽(74)内壁开设有十组呈环形阵列分布的定位孔(75),定位孔(75)为内凹的弧形,且每个定位孔(75)均位于相邻的两个数字板(29)之间。2. A cloud disk server system security reinforcement device according to claim 1, characterized in that: two sets of mutually symmetrical adjustment mechanisms (6) are provided between the limit ring (26) and the rotating ring (27). ), the adjustment mechanism (6) includes a pressing block (61), a positioning block (68) and a hydraulic sleeve (65), a pressing groove (72) is formed on the top of the limit ring (26), and the bottom end of the pressing block (61) The limiting plate (62) is fixedly installed, the bottom of the pressing groove (72) is provided with a lifting groove (73) mutually engaging with the limiting plate (62), and the top of the pressing block (61) moves through the cavity of the lifting groove (73) and the top of the pressing block (61) is located in the cavity of the pressing groove (72), the bottom of the limit plate (62) is fixedly installed with a push rod (64), and the outer wall of the push rod (64) is sleeved with a reset The spring (63), the positioning block (68) is arranged on the arc-shaped outer wall of the limit ring (26), and the positioning block (68) is located just below the pressing block (61), and the positioning block (68) is far away from the limit ring ( 26) One side of the outer wall is in an arc-shaped convex state, the side of the positioning block (68) close to the outer wall of the limit ring (26) is fixedly installed with a snap plate (67), and the arc-shaped outer wall of the limit ring (26) is opened. There is a squeezing chamber (76) that is mutually engaged with the engaging plate (67), the inner wall of the rotating ring (27) is provided with an annular rotating groove (74), and the inner wall of the rotating groove (74) is provided with ten groups distributed in an annular array. Positioning holes (75), the positioning holes (75) are concave arcs, and each positioning hole (75) is located between two adjacent number plates (29). 3.根据权利要求2所述的一种云盘服务器系统安全加固装置,其特征在于:所述卡合板(67)的上下两端均固定安装有滑块(7),挤压仓(76)腔内的上下两端壁面均开设有与滑块(7)相互卡合的滑槽(71),卡合板(67)内壁与挤压仓(76)腔内内壁之间固定安装有第二伸缩杆(78),第二伸缩杆(78)的外壁套套接有挤压弹簧(77),液压套筒(65)设置在按压块(61)与定位孔(75)之间的限位环(26)内壁之中。3. The security reinforcement device of a cloud disk server system according to claim 2, wherein the upper and lower ends of the engaging plate (67) are fixedly installed with sliders (7), and the extrusion chamber (76) The upper and lower end walls of the cavity are provided with chute (71) mutually engaging with the sliding block (7), and a second telescopic slot is fixedly installed between the inner wall of the engaging plate (67) and the inner wall of the extrusion chamber (76). The rod (78), the outer wall of the second telescopic rod (78) is sleeved with a compression spring (77), and the hydraulic sleeve (65) is arranged on the limit ring ( 26) In the inner wall. 4.根据权利要求2所述的一种云盘服务器系统安全加固装置,其特征在于:所述液压套筒(65)为Z字形态,液压套筒(65)的竖直顶端位于升降槽(73)腔内底部的正下方,且推动杆(64)的底端通过固定连接密封活塞板伸入在液压套筒(65)的竖直顶端内壁之中,液压套筒(65)的水平底端与推动杆(64)上侧的滑块(7)处于水平对齐的状态。4. The security reinforcement device for a cloud disk server system according to claim 2, wherein the hydraulic sleeve (65) is in a Z-shape, and the vertical top of the hydraulic sleeve (65) is located in the lift groove ( 73) Just below the bottom of the cavity, and the bottom end of the push rod (64) protrudes into the inner wall of the vertical top end of the hydraulic sleeve (65) through the fixed connection sealing piston plate, and the horizontal bottom of the hydraulic sleeve (65) The end is horizontally aligned with the slider (7) on the upper side of the push rod (64). 5.根据权利要求2所述的一种云盘服务器系统安全加固装置,其特征在于:所述液压套筒(65)的水平底端内壁活动卡合密封行程板(66),密封行程板(66)靠近滑块(7)的一侧外壁固定安装有行程杆(79),行程杆(79)的另一端固定连接在滑块(7)的外壁上,液压套筒(65)腔内填充有液压油。5 . The security reinforcement device of a cloud disk server system according to claim 2 , wherein the inner wall of the horizontal bottom end of the hydraulic sleeve (65) is movably engaged with the sealing travel plate (66), and the sealing travel plate ( 66) A stroke rod (79) is fixedly installed on the outer wall of one side close to the slider (7), the other end of the stroke rod (79) is fixedly connected to the outer wall of the slider (7), and the cavity of the hydraulic sleeve (65) is filled with There is hydraulic oil. 6.根据权利要求1所述的一种云盘服务器系统安全加固装置,其特征在于:所述服务器本体(11)的底部与机箱(1)腔内底部之间设置有稳定机构(3),且稳定机构(3)位于两组锁紧机构(2)之间,稳定机构(3)包括缓冲杆(31)和支撑杆(32),支撑杆(32)的数量为两个,两个支撑杆(32)设置在机箱(1)底部的壁面上,缓冲杆(31)固定安装在服务器本体(11)的底部壁面上,且缓冲杆(31)位于两个支撑杆(32)之间,机箱(1)腔内底部壁面内开设有转动仓(5),转动仓(5)腔内顶部左右两侧壁面上均开设有穿孔A(51),两个支撑杆(32)分别活动贯穿穿孔A(51),且两个支撑杆(32)的上下两端均固定安装有挡板(36),支撑杆(32)底部的挡板(36)位于转动仓(5)腔内,支撑杆(32)顶部的支撑杆(32)位于机箱(1)底部壁面上方,转动仓(5)腔内顶部中心位置处开设有穿孔B(52),缓冲杆(31)的底端通过穿孔B(52)伸入在转动仓(5)腔内。6. A cloud disk server system security reinforcement device according to claim 1, wherein a stabilization mechanism (3) is provided between the bottom of the server body (11) and the bottom of the cavity of the chassis (1), And the stabilization mechanism (3) is located between the two groups of locking mechanisms (2), the stabilization mechanism (3) includes a buffer rod (31) and a support rod (32), the number of support rods (32) is two, and the two support rods (32). The rod (32) is arranged on the bottom wall of the chassis (1), the buffer rod (31) is fixedly installed on the bottom wall of the server body (11), and the buffer rod (31) is located between the two support rods (32), A rotating bin (5) is provided in the bottom wall of the cavity of the cabinet (1), and through holes A (51) are formed on the left and right side walls of the top of the rotating bin (5), and two support rods (32) respectively move through the through holes. A (51), and the upper and lower ends of the two support rods (32) are fixedly installed with baffle plates (36), the baffle plates (36) at the bottom of the support rods (32) are located in the cavity of the rotating bin (5), and the support rods (32) are (32) The top support rod (32) is located above the bottom wall of the chassis (1), a hole B (52) is formed at the top center of the cavity of the rotating bin (5), and the bottom end of the buffer rod (31) passes through the hole B ( 52) Extend into the cavity of the rotating bin (5). 7.根据权利要求6所述的一种云盘服务器系统安全加固装置,其特征在于:所述转动仓(5)腔内设置有两组转动柱(34),两个转动柱(34)的前后两端均固定安装有转动杆(35),转动柱(34)通过前后两组转动杆(35)活动安装在转动仓(5)腔内前后的壁面上,两个转动柱(34)分别位于缓冲杆(31)与左右两侧的支撑杆(32)之间,且两个转动柱(34)呈左底右高的状态设置在转动仓(5)腔内,两个转动柱(34)的左右两侧外壁均固定安装有平衡板(33),上方转动柱(34)的左侧平衡板(33)位于缓冲杆(31)的下方,且上方转动柱(34)的右侧卡块(22)位于右侧支撑杆(32)的下方,下侧转动柱(34)右侧的平衡板(33)位于上侧转动柱(34)左侧平衡板(33)的下方,下侧转动柱(34)左侧的平衡板(33)位于左侧支撑杆(32)的下方。7 . The security reinforcement device of a cloud disk server system according to claim 6 , wherein two sets of rotating columns ( 34 ) are arranged in the cavity of the rotating bin ( 5 ), and the two rotating columns ( 34 ) have two sets of rotating columns ( 34 ). A rotating rod (35) is fixedly installed at the front and rear ends, and the rotating column (34) is movably installed on the front and rear wall surfaces in the cavity of the rotating bin (5) through the front and rear two sets of rotating rods (35). The two rotating columns (34) are respectively It is located between the buffer rod (31) and the support rods (32) on the left and right sides, and the two rotating columns (34) are arranged in the cavity of the rotating bin (5) in the state of the left bottom and the right height. The two rotating columns (34) Balance plates (33) are fixedly installed on the left and right outer walls of the upper rotating column (34), the left balance plate (33) of the upper rotating column (34) is located below the buffer rod (31), and the right side of the upper rotating column (34) is clamped The block (22) is located below the right support rod (32), and the balance plate (33) on the right side of the lower side rotating column (34) is located below the left side balance plate (33) of the upper side rotating column (34). The balance plate (33) on the left side of the rotating column (34) is located below the left support rod (32). 8.根据权利要求7所述的一种云盘服务器系统安全加固装置,其特征在于:下侧的所述转动柱(34)右侧的平衡板(33)和上侧转动柱(34)左侧的平衡板(33)与转动仓(5)腔内底部之间均设置有第一伸缩杆(39),第一伸缩杆(39)的上下两端均固定安装有转动球A(38),第一伸缩杆(39)底端的转动球A(38)活动安装在转动仓(5)腔内底部壁面上,第一伸缩杆(39)顶端的转动球A(38)则相应活动安装在两个平衡板(33)的底部壁面上,且两个第一伸缩杆(39)的外壁均套接有支撑弹簧(37)。8. A cloud disk server system security reinforcement device according to claim 7, characterized in that: the balance plate (33) on the right side of the rotating column (34) on the lower side and the left side of the rotating column (34) on the upper side A first telescopic rod (39) is arranged between the balance plate (33) on the side and the bottom of the cavity of the rotating bin (5), and a rotating ball A (38) is fixedly installed at the upper and lower ends of the first telescopic rod (39). , the rotating ball A (38) at the bottom end of the first telescopic rod (39) is movably installed on the bottom wall of the cavity of the rotating bin (5), and the rotating ball A (38) at the top of the first telescopic rod (39) is movably installed on the The bottom wall surfaces of the two balance plates (33) and the outer walls of the two first telescopic rods (39) are sleeved with support springs (37). 9.根据权利要求7所述的一种云盘服务器系统安全加固装置,其特征在于:上侧的所述转动柱(34)右侧的平衡板(33)和下侧转动柱(34)左侧的平衡板(33)与对应一侧的挡板(36)之间设置有同样的第一伸缩杆(39),第一伸缩杆(39)的上下两端均固定安装有转动球A(38),第一伸缩杆(39)两端的转动球A(38)分别活动安装在平衡板(33)顶部壁面和挡板(36)的底部壁面上,且第一伸缩杆(39)的外壁套接有支撑弹簧(37)。9. A cloud disk server system security reinforcement device according to claim 7, characterized in that: the balance plate (33) on the right side of the rotating column (34) on the upper side and the left side of the rotating column (34) on the lower side The same first telescopic rod (39) is arranged between the balance plate (33) on the side and the baffle plate (36) on the corresponding side, and a rotating ball A ( 38), the rotating balls A (38) at both ends of the first telescopic rod (39) are respectively movably installed on the top wall of the balance plate (33) and the bottom wall of the baffle (36), and the outer wall of the first telescopic rod (39) A support spring (37) is sleeved.
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