CN110618737B - Server case tray fixing structure - Google Patents

Server case tray fixing structure Download PDF

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Publication number
CN110618737B
CN110618737B CN201910782612.3A CN201910782612A CN110618737B CN 110618737 B CN110618737 B CN 110618737B CN 201910782612 A CN201910782612 A CN 201910782612A CN 110618737 B CN110618737 B CN 110618737B
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length
fixing
tray
slot
groove
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CN110618737A (en
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沙新北
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Suzhou Metabrain Intelligent Technology Co Ltd
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Suzhou Inspur Intelligent Technology Co Ltd
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    • 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
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Computer Hardware Design (AREA)
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  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Devices For Dispensing Beverages (AREA)

Abstract

The invention discloses a server case tray fixing structure, and relates to the technical field of server case tray fixing devices. Including fixed cylinder, installation department, connecting piece, the lower extreme of fixed cylinder and the tank wall connection of server machine case, the upper end and the tray of connecting piece are connected, and the lower extreme and the installation department of connecting rod are connected, and the inner tube wall of fixed cylinder is equipped with the spout that is used for preventing the installation department from reciprocating. The fixing structure of the server case tray is arranged in the server case, is protected by the server case, can realize the fixing and the splitting of the tray and the server case without direct contact of an operator, reduces the deformation, and is simple and reliable.

Description

Server case tray fixing structure
Technical Field
The invention relates to the technical field of server case tray fixing devices, in particular to a server case tray fixing structure.
Background
In order to facilitate hot plugging of the module in the server chassis, for example, the hard disk module, the power module, and the like, the module is generally pulled and pulled in the server chassis through the tray to realize the plugging and unplugging of the module, and the tray is fixed to the server chassis through the fixing structure.
For a fixing structure, for example, chinese patent application No. 201720145683.9 discloses a fixing handle for a server chassis, as shown in fig. 1, when a second chuck 201 of a handle structure 2 mounted on a tray is engaged with a first chuck 101 of a fastening structure 1 mounted on a wall of the server chassis, the handle structure 2 is limited by the fastening structure 1, so that the handle structure 2 is in a retracted state, and at this time, a pulling action cannot be performed, so as to fix the tray and the server chassis together; as shown in fig. 2, when the second chuck head 201 of the handle structure 2 is separated from the first chuck head 101 of the buckle structure 1, the handle structure 2 is in an open state, and at this time, the handle structure 2 can be pulled to perform a pulling operation.
But handle structure 2 that is in the open mode receives the exogenic action and bending deformation easily in the direction of wearing out the drawing or penetrating the drawing, makes originally handle structure 2 and the buckle structure 1 that are located the coplanar can no longer be in the coplanar to make the second dop 201 of handle structure 2 can't cooperate with the first dop 101 of buckle structure 1, thereby caused tray and server machine case can't be fixed together. Therefore, it is an urgent technical problem to be solved by those skilled in the art how to reduce the deformation of the fixing structure to reliably fix the tray and the server chassis.
Disclosure of Invention
The invention aims at the defects in the prior art and provides a server case tray fixing structure which is arranged in a server case and protected by the server case, can realize the fixing and the splitting of a tray and the server case without direct contact of an operator, reduces the deformation, and is simple and reliable.
In order to realize the purpose, the invention provides the following technical scheme:
the utility model provides a server machine case tray fixed knot constructs, includes fixed section of thick bamboo, installation department, connecting piece, and the lower extreme of fixed section of thick bamboo and the tank wall connection of server machine case, the upper end and the tray of connecting piece are connected, and the lower extreme and the installation department of connecting rod are connected, and the inner tube wall of fixed section of thick bamboo is equipped with the spout that is used for preventing the installation department from reciprocating.
Further, the spout includes from the top down mounting groove and the fixed slot that communicates in proper order, and one side of mounting groove is located to the fixed slot, and the connecting piece adopts the connecting rod, and the installation department adopts and is used for with the first slider of spout complex.
Further, the installation department includes spacing portion and fixed part, and spacing portion adopts the gag lever post, and the fixed part adopts the second slider, and the second slider is connected with the one end of gag lever post, and the gag lever post is connected with the lower extreme of connecting rod, and the gag lever post cooperates with the inner chamber of solid fixed cylinder, second slider and spout cooperation, and the length sum of the length of gag lever post and second slider is greater than the length of the inner chamber of solid fixed cylinder, and the length sum of the length of gag lever post and second slider is less than the length of the inner chamber of solid fixed cylinder and the degree of depth sum of fixed slot.
Furthermore, the limiting part adopts a first limiting plate, the fixing part adopts a third sliding block, the third sliding block is connected with one end of the first limiting plate, the first limiting plate is connected with the lower end of the connecting rod, the first limiting plate is matched with the inner cavity of the fixed cylinder, the third sliding block is matched with the sliding groove, the sum of the length of the first limiting plate and the length of the third sliding block is greater than the length of the inner cavity of the fixed cylinder, and the sum of the length of the first limiting plate and the length of the third sliding block is less than the sum of the length of the inner cavity of the fixed cylinder and the depth of the fixed groove.
Further, the connecting piece adopts the elastic component, the spout includes roll-off groove and roll-off groove, one side in the roll-off groove is located to the roll-off groove, the roll-off groove includes first spout and the second spout that from the top down set gradually, the lower extreme of first spout and the lower extreme of second spout all incline to the one side of keeping away from the roll-off groove, the upper end of second spout and the one side intercommunication that is close to the roll-off groove of first spout, the lower extreme and the lower extreme intercommunication in roll-off groove of second spout, spacing portion adopts the second limiting plate, the fixed part adopts the fourth slider, the fourth slider is connected with the one end of second limiting plate, the second limiting plate is connected with the lower extreme of elastic component, the inner chamber cooperation of second limiting plate and fixed cylinder, fourth slider and spout cooperation, the length of second limiting plate and the length sum of fourth slider are greater than the length of the inner chamber of fixed cylinder, the length sum of length of second limiting plate and the length of fourth slider is less than the length of the inner chamber of fixed cylinder.
Furthermore, the lower end of the second sliding groove is communicated with the lower end of the sliding-out groove through a transition groove, and one end of the transition groove close to the sliding-out groove is lower than one end of the transition groove close to the second sliding groove.
Furthermore, a protective cylinder is sleeved outside the elastic piece, and the upper end of the protective cylinder is connected with the tray.
Furthermore, the elastic part adopts a spring, one side of the second limiting plate, which is close to the protective cylinder, is provided with a guide shaft, and the guide shaft is matched with the middle part of the spring.
Compared with the prior art, the invention has the beneficial effects that:
1. compared with the defect that the tray and the server case cannot be fixed together due to the fact that the handle structure in the prior art is easy to deform, the design of the handle structure is omitted, the server case tray fixing structure is arranged inside the server case, the mounting part, the connecting part and the fixing cylinder of the server case tray fixing structure are protected by the server case, the tray and the server case can be fixed and detached without direct contact of an operator with the mounting part, the connecting part and the fixing cylinder, and the situation that the mounting part, the connecting part and the fixing cylinder are bent and deformed is reduced, so that the situation that the tray and the server case cannot be fixed together is avoided.
2. Through setting up mounting groove and fixed slot, can let first slider make first slider receive the last cell wall of fixed slot block and the support of the lower cell wall of fixed slot after slipping into the fixed slot, make first slider can't reciprocate in vertical direction after slipping into the fixed slot, just also make the tray can't remove in vertical direction to the tray has been realized fixing at server machine incasement.
3. Through setting up the gag lever post, can be when the second slider has the trend of level slip from the fixed slot, the gag lever post can support the second slider in the fixed slot, blocks the second slider from the fixed slot roll-off and directly slide in the inner chamber of fixed section of thick bamboo, avoids making the second slider not have the restraint in vertical direction to tray fixed mounting has improved the reliability of tray fixed mounting in server machine incasement.
4. Through setting up first limiting plate and third slider, it is the same when second slider is adopted with spacing portion adoption gag lever post and fixed part, also can prevent that the third slider from following the fixed slot roll-off and directly slipping into the inner chamber of fixed cylinder, avoid making the third slider not retrain in vertical direction, also improved the reliability of tray fixed mounting in server machine incasement.
5. Set up first spout through the slope, can be convenient for the fourth slider to slide in, set up the second spout through the slope, can enough make the fourth slider receive the support of the lower cell wall of second spout and prevent that the fourth slider from continuing to slide when the fourth slider slides the link end of first spout and second spout, can also be convenient for the fourth slider continues the lapse when the fourth slider receives the effect of decurrent power.
6. Through setting up the lead-over groove, can make the fourth slider when following the second spout and slide in and slide out the groove, can gentle transition, improved the gliding stability of fourth slider.
7. Through setting up a protection section of thick bamboo, can cover the elastic component with a protection section of thick bamboo, played the effect of protection elastic component, extension elastic component's life.
8. Because the middle part of spring is empty, so through adopting the spring, the guiding axle that can be convenient for inserts, inserts the middle part back of spring at the guiding axle, makes the spring receive the restriction of guiding axle and avoids the second limiting plate excessive wrench movement on the horizontal direction, stability when improving the second limiting plate and remove.
Drawings
FIG. 1 is a first schematic diagram of a prior art structure;
FIG. 2 is a second schematic diagram of a prior art structure;
fig. 3 is a schematic structural diagram of a tray fixing structure of a server chassis according to embodiment 1;
FIG. 4 is a first schematic view of a state in which the tray of embodiment 1 is installed in a server chassis;
FIG. 5 is a second schematic view of a state in which the tray of embodiment 1 is installed in a server chassis;
FIG. 6 is a schematic structural diagram of a server chassis with a tray according to embodiment 1 installed therein;
FIG. 7 is a cross-sectional view taken at A-A of FIG. 6;
FIG. 8 is a first schematic view of the mounting portion of the embodiment 2;
fig. 9 is a first structural diagram illustrating a tray installed in a server chassis according to embodiment 2;
FIG. 10 is a second schematic structural view of the mounting part in accordance with embodiment 2;
fig. 11 is a second structural schematic view of the tray of embodiment 2 installed in a server chassis;
FIG. 12 is a cross-sectional view taken at B-B of FIG. 11;
fig. 13 is a schematic structural diagram of a tray fixing structure of a server chassis according to embodiment 3;
FIG. 14 is a schematic structural view of a fixed cylinder in accordance with embodiment 3;
fig. 15 is a first structural diagram illustrating a tray installed in a server chassis according to embodiment 3;
fig. 16 is a second structural view illustrating the installation of the tray into the server chassis according to embodiment 3;
fig. 17 is a schematic structural view of the embodiment 3 in which the tray is detached from the server chassis.
In the figure: 1-buckle structure, 101-first chuck, 2-handle structure, 201-second chuck, 3-server case, 4-tray, 5-fixed cylinder, 501-installation groove, 502-fixed groove, upper groove wall of 502-1-fixed groove, lower groove wall of 502-2-fixed groove, 503-inner cavity of fixed cylinder, 504-first sliding groove, 505-second sliding groove, upper groove wall of 505-1-second sliding groove, lower groove wall of 505-2-second sliding groove, 506-transition groove, 507-sliding groove, 6-first slide block, 7-connecting rod, 8-limiting rod, 9-second slide block, 10-first limiting plate, 11-third slide block, 12-second limiting plate, 13-fourth slide block, 14-protective cylinder, 15-spring, 16-guide shaft.
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.
Example 1
A tray fixing structure of a server case is shown in fig. 3 and comprises a fixing cylinder 5, a mounting part and a connecting piece. The lower extreme of fixed section of thick bamboo 5 and the wall welded fastening of server machine case 3, the upper end of fixed section of thick bamboo 5 inner tube wall is equipped with the spout, and the spout includes mounting groove 501 and fixed slot 502 that from the top down communicates in proper order, and the upper end and the external world of mounting groove 501 communicate, and the left side of mounting groove 501 is located to fixed slot 502. In this embodiment, the installation department adopts first slider 6, and the connecting piece adopts connecting rod 7, and the upper end of connecting rod 7 and the tray 4 welded fastening who is used for bearing hard disk module, the lower extreme and the 6 welded fastening of first slider of connecting rod 7. The first slide 6 cooperates with the runner.
When the tray 4 needs to be installed in the server case 3, as shown in fig. 4, the tray 4 is placed downwards, so that the tray 4 with the connecting rod 7 moves downwards, the connecting rod 7 with the first sliding block 6 moves downwards, and the first sliding block 6 slides downwards along the installation groove 501; as shown in fig. 5, the tray 4 is then pushed to the left, so that the tray 4 with the connecting rod 7 moves to the left, the connecting rod 7 with the first sliding block 6 moves to the left, and the first sliding block 6 slides from the mounting groove 501 into the fixing groove 502.
After the first slider 6 slides into the fixing groove 502, as shown in fig. 6, the first slider 6 cannot move up and down in the vertical direction, and the tray 4 cannot move in the vertical direction, so that the tray 4 is fixed in the server chassis 3. The first slider 6 cannot move upward because the first slider 6 is stopped by the upper groove wall 502-1 of the fixing groove; the first slider 6 cannot move further downward because the first slider 6 is stopped by the lower groove wall 502-2 of the fixing groove, and because the tray 4 also falls on the upper end surface of the fixing cylinder 5 when the first slider 6 slides into the fixing groove 502, the tray 4 is supported by the fixing cylinder 5, and the first slider 6 cannot move downward.
When the tray 4 installed in the server case 3 needs to be detached from the server case 3, firstly, the tray 4 is pushed rightwards, so that the tray 4 with the connecting rod 7 moves rightwards, the connecting rod 7 with the first sliding block 6 moves rightwards, and the first sliding block 6 slides into the installation groove 501 from the fixing groove 502; then the tray 4 is drawn out upwards, so that the tray 4 with the connecting rod 7 moves upwards, the connecting rod 7 with the first sliding block 6 moves upwards, the first sliding block 6 slides out from the mounting groove 501, and the first sliding block 6 is separated from the fixed cylinder 5, so that the separation of the tray 4 and the server case 3 is completed.
Compared with the defect that the tray 4 and the server case 3 cannot be fixed together due to the fact that the handle structure 2 is easy to deform in the prior art, the design of the handle structure 2 is omitted, the server case tray fixing structure is arranged inside the server case 3, the mounting part, the connecting part and the fixing cylinder 5 are protected by the server case 3, the mounting part, the connecting part and the fixing cylinder 5 do not need to be directly contacted by an operator, the tray 4 and the server case 3 can be dismounted, the bending deformation of the mounting part, the connecting part and the fixing cylinder 5 is reduced, and the situation that the tray 4 and the server case 3 cannot be fixed together is avoided.
Example 2
In the embodiment of embodiment 1, as shown in fig. 7, when the tray 4 is pushed forward or the tray 4 tends to move forward due to the instability of the server casing 3, the first slider 6 cannot move up and down due to the limitation of the upper groove wall 502-1 and the lower groove wall 502-2 of the fixing groove only in the vertical direction, and the first slider 6 is easily slid forward from the fixing groove 502 to be separated from the fixing groove 502 in the horizontal direction, so that the first slider 6 is completely slid into the inner cavity 503 of the fixing cylinder. When the first sliding block 6 is completely slid into the inner cavity 503 of the fixed cylinder, the first sliding block 6 cannot be limited in the vertical direction and the horizontal direction and is in a free state, and the tray 4 is only placed on the fixed cylinder 5 and supported by the fixed cylinder 5, so that the tray 4 cannot be blocked when being lifted, and the tray 4 and the server case 3 are not effectively fixed.
So to avoid the above situation, this embodiment 2 is the same as embodiment 1 except that: in this embodiment, the mounting portion includes a limiting portion and a fixing portion, as shown in fig. 8, the limiting portion employs a limiting rod 8, the fixing portion employs a second slider 9, and the second slider 9 is welded and fixed to one end of the limiting rod 8. As shown in fig. 9, the middle of the limiting rod 8 is welded and fixed to the lower end of the connecting rod 7, the limiting rod 8 is fitted to the inner cavity 503 of the fixed cylinder, the second slider 9 is fitted to the sliding groove, the sum of the length a of the limiting rod 8 and the length b of the second slider 9 is greater than the width c of the inner cavity 503 of the fixed cylinder, and the sum of the length a of the limiting rod 8 and the length b of the second slider 9 is smaller than the sum of the width c of the inner cavity 503 of the fixed cylinder and the depth d of the fixed groove 502.
In the vertical direction, the second sliding block 9 is blocked by the upper groove wall 502-1 of the fixing groove and the lower groove wall 502-2 of the fixing groove, so that the second sliding block 9 cannot move up and down in the vertical direction. As shown in fig. 9, by providing the stopper rod 8, the second slider 9 can be prevented from sliding forward from the fixing groove 502 into the cavity 503 of the fixing cylinder because the sum of the length a of the stopper rod 8 and the length b of the second slider 9 is greater than the width c of the cavity 503 of the fixing cylinder, the sum of the length a of the stopper rod 8 and the length b of the second slider 9 is less than the sum of the width c of the cavity 503 of the fixing cylinder and the depth d of the fixing groove 502, and when the second slider 9 moves forward, the stopper rod 8 can abut the second slider 9 against the fixing groove 502 to block the forward sliding of the second slider 9, so that the second slider 9 cannot slide forward from the fixing groove 502 into the cavity 503 of the fixing cylinder in the horizontal direction, thereby improving the reliability of the fixed mounting of the tray 4 in the server chassis 3.
Besides the limiting part adopting the limiting rod 8, as shown in fig. 10, the limiting part can also adopt a first limiting plate 10, when the limiting part adopts the first limiting plate 10, the fixing part adopts a third sliding block 11, and the third sliding block 11 is welded and fixed with one end of the first limiting plate 10. As shown in fig. 11 and 12, the middle portion of the first limiting plate 10 is welded and fixed to the lower end of the connecting rod 7, the first limiting plate 10 is matched with the inner cavity 503 of the fixed cylinder, and the third sliding block 11 is matched with the sliding groove. The sum of the length e of the first limit plate 10 and the length f of the third slider 11 is greater than the width c of the inner cavity 503 of the fixed cylinder, and the sum of the length e of the first limit plate 10 and the length f of the third slider 11 is less than the sum of the width c of the inner cavity 503 of the fixed cylinder and the depth d of the fixed groove 502.
When the first limiting plate 10 is adopted in the limiting part and the third sliding block 11 is adopted in the fixing part, as when the limiting rod 8 is adopted in the limiting part and the second sliding block 9 is adopted in the fixing part, the third sliding block 11 can be prevented from sliding forwards from the fixing groove 502 to separate from the fixing groove 502, so that the third sliding block can completely slide into the inner cavity 503 of the fixing cylinder, and the reliability of the tray 4 fixedly installed in the server case 3 is improved.
Example 3
The embodiment 3 is the same as the embodiment 2, except that, in this embodiment, as shown in fig. 14, the connecting member is an elastic member, the sliding groove includes a sliding groove and a sliding groove, the sliding groove includes a first sliding groove 504 and a second sliding groove 505 which are sequentially arranged from top to bottom, the upper end of the first sliding groove 504 is communicated with the outside, the lower end of the first sliding groove 504 and the lower end of the second sliding groove 505 are both inclined to the right, the upper end of the second sliding groove 505 is communicated with the left side of the first sliding groove 504, so that the first sliding groove 504 and the second sliding groove 505 form an inclined "z" shape, the sliding groove 507 is arranged on the left side of the first sliding groove 504, the lower end of the sliding groove 507 is communicated with the lower end of the second sliding groove 505 through the transition groove 506, the left end of the transition groove 506 is lower than the right end of the transition groove 506, and the upper end. As shown in fig. 13, the limiting portion adopts a second limiting plate 12, the fixing portion adopts a fourth sliding block 13, the fourth sliding block 13 and the second limiting plate 12 are integrally formed, the second limiting plate 12 is matched with the inner cavity 503 of the fixed cylinder, and the fourth sliding block 13 is matched with the sliding chute, as shown in fig. 16, the sum of the length g of the second limiting plate 12 and the length h of the fourth sliding block 13 is greater than the length c of the inner cavity of the fixed cylinder 5, and the sum of the length g of the second limiting plate 12 and the length h of the fourth sliding block 13 is less than the sum of the length c of the inner cavity of the fixed cylinder 5 and the depth m of the second sliding chute 505. The second stopper plate 12 functions in the same manner as the stopper rod 8 or the first stopper plate 10 in embodiment 2.
In order to protect the elastic member and prolong the service life of the elastic member, as shown in fig. 13, a protective cylinder 14 is sleeved outside the elastic member, and the upper end of the protective cylinder 14 is welded and fixed with the tray 4.
As shown in fig. 13, since the elastic member has elasticity in the vertical direction and is easily twisted in the horizontal direction perpendicular to the vertical direction, in order to avoid the second limit plate 12 from excessively shaking and being unstable in the horizontal direction due to the easily twisted influence of the elastic member, the elastic member preferably employs a spring 15, and the second limit plate 12 is provided with a guide shaft 16 on the side close to the protective cylinder 14, one end of the guide shaft 16 close to the second limit plate 12 is welded and fixed to the second limit plate 12, the guide shaft 16 is inserted into the middle of the spring 15, since the middle of the spring 15 is empty, the insertion of the guide shaft 16 can be facilitated, and after the guide shaft 16 is inserted into the middle of the spring 15, the spring 15 is restricted by the guide shaft 16 to avoid the excessively twisted second limit plate in the horizontal direction.
When the tray 4 needs to be installed in the server chassis 3, the tray 4 is placed downwards, the tray 4 carries the spring 15 to move downwards, the spring 15 carries the second limit plate 12 to move downwards, the second limit plate 12 carries the fourth slider 13 to move downwards, because the lower end of the first chute 504 and the lower end of the second chute 505 are both arranged obliquely rightwards and the upper end of the second chute 505 is communicated with the left side of the first chute 504, the fourth slider 13 slides downwards into the joint part of the first chute 504 and the second chute 505 after sliding through the first chute 504, as shown in fig. 15, because the lower chute wall 505-2 of the second chute is arranged obliquely and has upward supporting force on the fourth slider 13, the fourth slider 13 cannot continue to move downwards, and the fourth slider 13 is blocked by the upper chute wall 505-1 of the second chute, so that the fourth slider 13 cannot move upwards, the fourth slider 13 cannot move up and down at this time, so that the tray 4 is mounted with the server chassis 3.
When the tray 4 installed in the server case 3 needs to be detached from the server case 3, the tray 4 is pressed downwards at first, and because the lower groove wall 505-2 of the second chute is arranged obliquely, the fourth slider 13 can not only be supported by the lower groove wall 505-2 of the second chute, but also can continuously slide downwards along the second chute 505 from the joint part of the first chute 504 and the second chute 505 when the tray 4 continues to move downwards, until the fourth slider 13 slides into the transition groove 506, because the left end of the transition groove 506 is lower than the right end of the transition groove 506, the fourth slider 13 continues to slide in the transition groove 506 when the tray 4 is pressed; then, the tray 4 is moved leftward to slide the fourth slider 13 into the slide-out groove 507. Finally, the tray 4 is lifted upwards, the fourth slider 13 slides upwards out of the sliding-out slot 507, and the fourth slider 507 is separated from the sliding slot, so that the tray 4 is detached from the server chassis 3, as shown in fig. 17. When the tray 4 is detached from the server casing 3, the deformation of the spring 15 due to the pressing of the tray 4 is restored.
In this embodiment, as in embodiment 1 or embodiment 2, the design of the handle structure 2 in the prior art is omitted, so that the defect that the tray 4 and the server chassis 3 cannot be fixed together due to the easy deformation of the handle structure 2 in the prior art is avoided. Moreover, the server chassis tray fixing structure of the embodiment is arranged inside the server chassis 3 as in embodiment 1 or embodiment 2, so that the server chassis tray fixing structure is protected by the server chassis 3, the tray 4 and the server chassis 3 can be disassembled and assembled without an operator directly contacting the server chassis tray fixing structure, the situation that the server chassis tray fixing structure is bent and deformed is reduced, and the situation that the tray 4 and the server chassis 3 cannot be fixed together is avoided.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (6)

1.一种服务器机箱托盘固定结构,其特征在于,包括固定筒、安装部、连接件,固定筒的下端与服务器机箱的箱壁连接,固定筒的内筒壁设有用于防止安装部上下移动的滑槽,滑槽包括从上到下依次连通的安装槽和固定槽,固定槽设于安装槽的一侧,连接件采用连接杆,连接杆的上端与托盘连接,安装部包括限位部和固定部,限位部采用限位杆,固定部采用第二滑块,第二滑块与限位杆的一端连接,限位杆与连接杆的下端连接,限位杆与固定筒的内腔配合,第二滑块与滑槽配合,限位杆的长度与第二滑块的长度之和大于固定筒的内腔的长度,限位杆的长度与第二滑块的长度之和小于固定筒的内腔的长度与固定槽的深度之和。1. A server chassis tray fixing structure is characterized in that, it comprises a fixing cylinder, an installation part and a connecting piece, the lower end of the fixing cylinder is connected with the box wall of the server case, and the inner cylinder wall of the fixing cylinder is provided with a structure for preventing the installation part from moving up and down. The chute includes a mounting slot and a fixing slot which are connected in sequence from top to bottom, the fixing slot is arranged on one side of the mounting slot, the connecting piece adopts a connecting rod, the upper end of the connecting rod is connected with the tray, and the mounting part includes a limit part And the fixed part, the limit part adopts a limit rod, the fixed part adopts a second slider, the second slider is connected with one end of the limit rod, the limit rod is connected with the lower end of the connecting rod, and the limit rod is connected with the inner part of the fixed cylinder. The cavity is matched, the second slide block is matched with the chute, the sum of the length of the limit rod and the length of the second slide block is greater than the length of the inner cavity of the fixed cylinder, and the sum of the length of the limit rod and the length of the second slide block is less than The sum of the length of the inner cavity of the fixing cylinder and the depth of the fixing groove. 2.如权利要求1所述的一种服务器机箱托盘固定结构,其特征在于,所述限位部采用第一限位板,固定部采用第三滑块,第三滑块与第一限位板的一端连接,第一限位板与连接杆的下端连接,第一限位板与固定筒的内腔配合,第三滑块与滑槽配合,第一限位板的长度与第三滑块的长度之和大于固定筒的内腔的长度,第一限位板的长度与第三滑块的长度之和小于固定筒的内腔的长度与固定槽的深度之和。2 . The fixing structure of a server chassis tray according to claim 1 , wherein the limiting portion adopts a first limiting plate, the fixing portion adopts a third sliding block, and the third sliding block is connected to the first limiting plate. 3 . One end of the plate is connected, and the first limit plate is connected with the lower end of the connecting rod. The sum of the lengths of the blocks is greater than the length of the inner cavity of the fixing cylinder, and the sum of the length of the first limiting plate and the length of the third sliding block is smaller than the sum of the length of the inner cavity of the fixing cylinder and the depth of the fixing groove. 3.如权利要求1所述的一种服务器机箱托盘固定结构,其特征在于,所述连接件采用弹性件,滑槽包括滑入槽和滑出槽,滑出槽设于滑入槽的一侧,滑入槽包括从上到下依次设置的第一滑槽和第二滑槽,第一滑槽的下端和第二滑槽的下端均向远离滑出槽的一侧倾斜,第二滑槽的上端与第一滑槽的靠近滑出槽的一侧连通,第二滑槽的下端与滑出槽的下端连通,限位部采用第二限位板,固定部采用第四滑块,第四滑块与第二限位板的一端连接,第二限位板与弹性件的下端连接,第二限位板与固定筒的内腔配合,第四滑块与滑槽配合,第二限位板的长度与第四滑块的长度之和大于固定筒的内腔的长度,第二限位板的长度与第四滑块的长度之和小于固定筒的内腔的长度与第二滑槽的深度之和。3. A server chassis tray fixing structure according to claim 1, wherein the connecting member adopts an elastic member, the sliding groove comprises a sliding-in groove and a sliding-out groove, and the sliding-out groove is provided in a part of the sliding-in groove. side, the sliding slot includes a first slot and a second slot that are arranged in sequence from top to bottom, the lower end of the first slot and the lower end of the second slot are inclined to the side away from the slot The upper end of the slot is communicated with the side of the first chute close to the slide-out slot, the lower end of the second chute is communicated with the lower end of the slide-out slot, the limit part adopts a second limit plate, and the fixed part adopts a fourth slider, The fourth sliding block is connected with one end of the second limiting plate, the second limiting plate is connected with the lower end of the elastic piece, the second limiting plate is matched with the inner cavity of the fixing cylinder, the fourth sliding block is matched with the chute, the second The sum of the length of the limit plate and the length of the fourth slider is greater than the length of the inner cavity of the fixed cylinder, and the sum of the length of the second limit plate and the length of the fourth slider is less than the length of the inner cavity of the fixed cylinder and the second The sum of the depths of the chutes. 4.如权利要求3所述的一种服务器机箱托盘固定结构,其特征在于,所述第二滑槽的下端与滑出槽的下端通过过渡槽连通。4 . The server chassis tray fixing structure according to claim 3 , wherein the lower end of the second chute communicates with the lower end of the sliding slot through a transition slot. 5 . 5.如权利要求4所述的一种服务器机箱托盘固定结构,其特征在于,所述弹性件外套有保护筒,保护筒的上端与托盘连接。5 . The fixing structure for a server chassis tray according to claim 4 , wherein the elastic member is covered with a protection tube, and the upper end of the protection tube is connected to the tray. 6 . 6.如权利要求5所述的一种服务器机箱托盘固定结构,其特征在于,所述弹性件采用弹簧,第二限位板靠近保护筒一侧设有导向轴,导向轴与弹簧的中部配合。6. A server chassis tray fixing structure according to claim 5, wherein the elastic member is a spring, a guide shaft is provided on the side of the second limit plate close to the protection cylinder, and the guide shaft is matched with the middle of the spring .
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