A server assembly positioning platform and server assembly production line

By designing a server assembly positioning platform and adopting a one-way blocking and limiting mechanism, the problem of unreliable carrier board limiting is solved, and the server assembly is achieved quickly, efficiently and safely, which reduces labor costs and risks and improves assembly efficiency and product quality.

CN116852095BActive Publication Date: 2025-10-10INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202310903176.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-21
Publication Date
2025-10-10
Estimated Expiration
2043-07-21

AI Technical Summary

Technical Problem

During the traditional server assembly process, the carrier board positioning is unreliable, resulting in high product defect rates, increased labor costs, low assembly efficiency, and high safety risks.

Method used

A server assembly positioning platform is designed, which adopts a one-way blocking mechanism and a limit mechanism. Through the cooperation of support springs and tension springs, reliable positioning of the carrier is achieved. Combined with the control linkage mechanism, the stable positioning of the carrier in the front, back, left and right directions is ensured, simplifying the assembly process.

Benefits of technology

It achieves fast, efficient and safe server assembly, reduces manpower input costs, reduces product defect rates and safety risks, and improves operational reliability and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of server assembly positioning platform and server assembly production line, belong to server assembly technical field, including support table and platform, support table includes support plate, support plate both sides are equipped with guard plate, and the other side is equipped with one-way blocking mechanism and limiting mechanism;One-way blocking mechanism includes mounting seat and rotationally installed blocking block, and is supported by support spring;Limiting mechanism includes limiting bottom plate and rotationally installed limiting frame and block. Place in corner position, platform enters from front side, and exits from right side. Platform is pushed and crosses pressure dynamic inclined surface by extrusion, and is limited to front and back by blocking block and guard plate. Left and right of platform are limited by guard plate and limiting frame. It can be quickly, efficiently, high quality, safe assembly to server. By operating linkage mechanism to the block rotation, remove the blocking of limiting frame, limiting frame overturns under the tension of second tension spring, realize the right side of platform to pass, enter next process. Overall structure is simple, realizes easily, and good practicability.
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Description

Technical Field

[0001] The invention belongs to the technical field of server assembly, in particular to a server assembly positioning platform and a server assembly production line. Background Art

[0002] Servers offer high-speed CPU computing power, long-term reliable operation, strong I / O external data throughput, and enhanced scalability. Based on the services they provide, servers generally possess the ability to respond to service requests, provide services, and guarantee services. Servers are essential data processing hardware products, supporting applications in AI, big data processing, edge computing, and other fields. Their manufacturing process is complex and quality control is rigorous.

[0003] At present, the server production and assembly process is manually supported by a bull's eye wheel support platform. The server is positioned on a carrier plate, and the upper limit of the carrier plate on the support platform is unreliable and prone to sliding and offsetting. This will lead to low server assembly efficiency and low operational safety, affecting the quality of server products.

[0004] During the traditional server assembly process, when the carrier board is pushed to the next workstation, the carrier board is only limited by the two end faces on the bull's eye wheel support table, resulting in incomplete limit fixation. Especially during the assembly of heavy servers, two people are required to collaborate, one to assist in pressing and fixing the carrier board, and the other to assemble the server; repeated and uninterrupted auxiliary pressing can easily lead to increased fatigue intensity of employees, and it is very easy for the two people to operate out of sync, which will lead to increased product defect rates, increased labor costs, and increased safety risks. Summary of the Invention

[0005] In order to solve the problems of unreliable carrier board positioning in traditional server assembly, which easily leads to increased product defect rate, increased labor cost investment, low assembly efficiency, and increased safety risks, the present invention provides a server assembly positioning platform and a server assembly production line.

[0006] On the one hand, the present invention is achieved through the following technical solutions:

[0007] A server assembly positioning platform includes a support platform and a carrier platform. The support platform includes a support plate and a plurality of bull's eye wheels mounted on the upper surface of the support plate. Side end guard plates and rear end guard plates are respectively provided on two adjacent sides of the support plate, and a one-way blocking mechanism and a limiting mechanism are respectively provided on the other adjacent sides of the support plate.

[0008] The one-way blocking mechanism includes a mounting seat mounted on the feed side of the support plate, a blocking block is rotatably mounted on the mounting seat, and a pressing inclined surface is provided on the upper side of the blocking block, which is inclined upward along the feed direction, and a support spring is installed between the blocking block and the mounting seat;

[0009] The limiting mechanism includes a limiting base plate installed on the lower side of the discharging side of the support plate, a limiting frame that can limit the carrier and a block that can block the lower end of the limiting frame are rotatably installed on the limiting base plate, and a control linkage mechanism is connected to the block; a second tension spring that can make the limiting base plate flip down and move is connected between the limiting base plate and the limiting frame.

[0010] A further improvement of the present invention is that the front portion of the blocking block is rotatably connected and installed with the mounting seat via a rotating shaft, and the support spring is supported between the lower side of the rear portion of the blocking block and the mounting seat.

[0011] A further improvement of the present invention is that the limiting frame has a T-shaped structure.

[0012] A further improvement of the present invention is that two supporting columns are installed on the upper side of the limiting base plate; and a limiting frame installation shaft connected to the limiting frame is rotatably installed between the two supporting columns.

[0013] A further improvement of the present invention is that the limit frame installation shaft is connected to the limit frame key; and two locking nuts for abutting and limiting the two sides of the limit frame are screwed onto the limit frame installation shaft.

[0014] A further improvement of the present invention is that the control linkage mechanism includes a floating joint, a connecting rod and a pressure rod that are rotatably connected and installed in sequence; a support block is provided on the lower side of the limit base plate, which is rotatably connected to the end of the pressure rod away from the connecting rod, and a block mounting seat and a middle seat are provided on the upper side of the limit base plate, which are rotatably connected to the block; a fastener is connected between the block and the pressure rod, and the two ends of the fastener are rotatably connected to the block and the pressure rod respectively, and the fastener slides through the limit base plate; a first tension spring is hung on the middle seat, and a pressure rod hanging hole is provided on the pressure rod, and the first tension spring slides downward through the limit base plate and is hung on the pressure rod hanging hole; at least two mounting frames are also positioned and installed on the lower side of the support platform, and linear bearings are installed on the mounting frames, and a push rod connected to the floating joint is slidably installed in at least two linear bearings, and a handle is provided at the end of the push rod away from the floating joint.

[0015] A further improvement of the present invention is that a buffer block capable of providing buffer support to the pressure rod is installed on the lower side of the limiting base plate.

[0016] A further improvement of the present invention is that a limiting plate is provided on one side of the horizontal section of the limiting frame.

[0017] A further improvement of the present invention is that a buffer is installed on the limiting bottom plate to provide buffer support for the downward turning of the limiting frame.

[0018] Another aspect of the present invention is achieved through the following technical solutions:

[0019] A server assembly production line comprises the server assembly positioning platform; the server assembly positioning platform is arranged at a corner of the production line.

[0020] It can be seen from the above technical solutions that the beneficial effects of the present invention are:

[0021] During use, the platform is placed at a corner of the server production line. The platform carrying the server enters from the front (the side with the one-way blocking mechanism), is assembled on the server assembly positioning platform, and is released from the right (the side with the limiting mechanism). When the platform carrying the server is transported through the production line to the front end of the server assembly positioning platform, it is pushed against the upper pressure-actuated inclined surface of the blocking block. The blocking block overcomes the elastic force of the support spring and tilts downward. The bull's eye wheel on the support plate supports the platform in rolling motion until the platform contacts the rear guard plate, at which point the platform completely passes over the blocking block. The blocking block, supported by the elastic support of the support spring, tilts upward, raising the rear edge of the blocking block above the lower surface of the platform, thereby reliably limiting the platform (carrying the server) in the front-to-back direction. The limiting frame then tilts upward, overcoming the tension of the second tension spring. The blocking block blocks the limiting frame, blocking the right side of the platform. The side guard plates on the support plate block the left side of the platform (carrying the server), thus reliably limiting the platform (carrying the server) in the left-to-right direction. This allows for fast, efficient, high-quality, and safe server assembly on the server assembly positioning platform. After assembly is complete, the linkage mechanism is manipulated to rotate the block, releasing it from its positional restraint on the limit frame. The limit frame, under the tension of the second tension spring, flips downward, releasing the platform (carrying the server) to the right, thereby pushing the platform from the right side to the next process. The overall structure is simple, easy to implement, and highly practical, effectively preventing the risk of collision and damage, saving labor intensity, and reducing labor costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the technical solution of the present invention, the following is a brief introduction to the drawings required for the description. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0023] Figure 1 This is a schematic diagram of the usage status of a specific embodiment of the present invention.

[0024] Figure 2 This is a schematic structural diagram from the first perspective of a specific embodiment of the present invention.

[0025] Figure 3 This is a schematic structural diagram from a second perspective of a specific embodiment of the present invention.

[0026] Figure 4 It is a schematic diagram of the support platform structure of a specific embodiment of the present invention.

[0027] Figure 5 This is a schematic diagram of the protective plate structure according to a specific embodiment of the present invention.

[0028] Figure 6 It is a structural schematic diagram of a one-way blocking mechanism according to a specific embodiment of the present invention.

[0029] Figure 7 This is a schematic structural diagram of the limiting mechanism according to a specific embodiment of the present invention from the first perspective.

[0030] Figure 8 This is a schematic structural diagram of the limiting mechanism according to a specific embodiment of the present invention from a second viewing angle.

[0031] Figure 9 This is a schematic structural diagram of the limiting mechanism according to a specific embodiment of the present invention from the third viewing angle.

[0032] In the figure: 1, server, 2, carrier, 201, carrier plate, 202, protective plate, 203, server limit rod, 3, support platform, 301, side end guard plate, 302, rear end guard plate, 303, bull's eye wheel, 304, support plate, 4, one-way blocking mechanism, 401, mounting seat, 402, rotating shaft, 403, blocking block, 404, supporting spring, 5, limiting mechanism, 501, handle, 502, push rod, 503, mounting bracket, 504, linear bearing, 505, floating joint, 5 06. Connecting rod, 507. Pressure rod, 508. Pressure rod hanging hole, 509. Limiting base plate, 510. Support block, 511. Fastener, 512. Middle seat, 513. First tension spring, 514. Buffer block, 515. Stopper mounting seat, 516. Stopper, 517. Support column, 518. Limiting frame mounting shaft, 519. Limiting frame, 520. Limiting plate, 521. Buffer, 522. Second tension spring, 523. Locking nut, 524. Rotating bearing, 525. Limiting base plate hanging hole. DETAILED DESCRIPTION

[0033] In order to make the purpose, features, and advantages of the present invention more obvious and easy to understand, the technical solutions of the present invention will be clearly and completely described below in conjunction with the drawings in this specific embodiment. Obviously, the embodiments described below are only part of the embodiments of the present invention, not all of them. Based on the embodiments in this patent, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this patent.

[0034] like Figure 1 、 4As shown, the server assembly positioning platform in an optional embodiment of the present application comprises a support table 3 and a carrier 2 capable of positioning and placing a server 1. The support table 3 comprises a rectangular support plate 304 and a plurality of cow eye wheels 303 mounted on the upper surface of the support plate 304. The cow eye wheels 303 are arranged in an array on the upper surface of the support plate 304. The left side and the rear side of the support plate 304 are respectively provided with a side end guard plate 301 and a rear end guard plate 302. The front side (feeding side) and the right side (discharging side) of the support plate 304 are respectively provided with a one-way blocking mechanism 4 and a limiting mechanism 5. The one-way blocking mechanism 4 comprises a mounting seat 401 mounted on the feeding side of the support plate 304. A blocking block 403 is rotatably mounted on the mounting seat 401. An upwardly inclined pressing inclined surface is arranged on the upper side of the blocking block 403 in the feeding direction. A support spring 404 capable of making the blocking block 403 tilt up and capable of blocking the carrier 2 is mounted between the blocking block 403 and the mounting seat 401. The limiting mechanism 5 comprises a limiting bottom plate 509 positioned and mounted on the lower side of the discharging side of the support plate 304. A limiting frame 519 capable of limiting the carrier 2 and a blocking block 516 capable of blocking the lower end of the limiting frame 519 are rotatably mounted on the limiting bottom plate 509. The blocking block 516 is connected with a control linkage mechanism capable of rotating and controlling the same. A second tension spring 522 capable of making the limiting bottom plate 509 flip down to release is connected between the limiting bottom plate 509 and the limiting frame 519.

[0035] During use, the server assembly and positioning platform is placed at a corner of the server production line. Platform 2 carrying server 1 enters from the front (on the side of the one-way blocking mechanism 4), is assembled on the server assembly and positioning platform, and is released from the right side (on the side of the limiting mechanism 5). When platform 2 carrying server 1 is transported to the front end of the server assembly and positioning platform through the production line, platform 2 is pushed by the pressing inclined surface on the upper side of the blocking block 403. Blocking block 403 overcomes the elastic force of the support spring 404 and flips downward. Platform 2 is supported by the bull's eye wheel 303 on the support plate 304 until platform 2 contacts and limits the rear end of the guard plate 302. At this point, platform 2 just completely passes blocking block 403. Blocking block 403, supported by the elastic support of the support spring 404, flips upward and tilts, causing the rear edge of blocking block 403 to protrude above the lower surface of platform 2, thereby reliably limiting the front-to-back direction of platform 2 (carrying server 1). Overcoming the tension of the second tension spring 522, the limit frame 519 tilts upward and is blocked by the stopper 516, blocking the right side of the platform 2. The side guard plates 301 on the support plate 304 also block the left side of the platform 2 (supporting server 1), effectively limiting the left and right positions of the platform 2 (supporting server 1). This allows for fast, efficient, high-quality, and safe assembly of server 1 on the server assembly positioning platform. After assembly is complete, the linkage mechanism is manipulated to rotate the stopper 516, releasing the block on the limit frame 519. The limit frame 519, under the tension of the second tension spring 522, tilts downward, releasing the platform 2 (supporting server 1) to the right, thereby pushing the platform 2 from the right side to the next process step. The overall structure is simple, easy to implement, and highly practical, effectively preventing the risk of collision and damage, saving labor intensity, and reducing labor costs.

[0036] It should be noted that the height of the rear end guard plate 302 and the side end guard plate 301 is higher than the bull's eye wheel 303; when the limit frame 519 is erected, the height of the limit frame 519 is higher than the bull's eye wheel 303; when the blocking block 403 is supported and lifted by the support spring 404, the height of the rear side of the blocking block 403 is higher than the bull's eye wheel 303; thereby achieving reliable limitation of the carrier 2 (carrying server 1).

[0037] Among them, such as Figure 7 、 9 As shown, the limiting base plate 509 is provided with a limiting base plate hanging hole 525 that can be hung with the lower end of the second tension spring 522. The reliable hanging of the lower end of the second tension spring 522 is achieved through the limiting base plate hanging hole 525.

[0038] Among them, such as Figure 2As shown, the carrier 2 comprises a carrier plate 201 and a protection plate 202 mounted on the lower side of the carrier plate 201; the server limiting rod 203 is positioned and mounted on the carrier plate 201 by screws. The carrier plate 201 is made of foam composite board material and supports the server 1 in a close manner; the protection plate 202 is made of anti-static PP plate material, effectively prevents static electricity, and directly contacts and supports the bull's eye wheel 303 to avoid direct wear of the carrier plate 201; the server limiting rod 203 is made of excellent glue material and reliably positions the two sides of the server 1.

[0039] In another optional embodiment of the present application, a server assembling and positioning platform is disclosed, which comprises a support table 3 and a carrier 2 capable of positioning and placing a server 1; the support table 3 comprises a rectangular support plate 304 and a plurality of bull's eye wheels 303 mounted on the upper surface of the support plate 304, and the bull's eye wheels 303 are arranged in an array on the upper surface of the support plate 304; the left side and the rear side of the support plate 304 are respectively provided with a side end protection plate 301 and a rear end protection plate 302, and the front side (feeding side) and the right side (discharging side) of the support plate 304 are respectively provided with a one-way blocking mechanism 4 and a limiting mechanism 5; the one-way blocking mechanism 4 comprises a mounting seat 401 mounted on the feeding side of the support plate 304, a blocking block 403 rotatably mounted on the mounting seat 401, an upwardly inclined pressing inclined surface on the upper side of the blocking block 403 in the feeding direction, and a supporting spring 404 mounted between the blocking block 403 and the mounting seat 401 and capable of lifting the blocking block 403 and blocking the carrier 2; the limiting mechanism 5 comprises a limiting bottom plate 509 positioned and mounted on the lower side of the discharging side of the support plate 304, a limiting frame 519 rotatably mounted on the limiting bottom plate 509 and capable of limiting the carrier 2, a blocking block 516 capable of blocking the lower end of the limiting frame 519, and a control linkage mechanism connected to the blocking block 516 and capable of rotating and controlling the blocking block 516; a second tension spring 522 is connected between the limiting bottom plate 509 and the limiting frame 519 and capable of enabling the limiting bottom plate 509 to be flipped down to release. As shown in the accompanying drawings, Figure 6As shown, the front portion of the blocking block 403 is rotatably connected to the mounting base 401 via a rotating shaft 402, and the support spring 404 is supported between the lower side of the rear portion of the blocking block 403 and the mounting base 401. One end of the rotating shaft 402 has a boss, which passes through the mounting base 401 and the blocking block 403 and is screwed with a nut, thereby enabling convenient disassembly and assembly of the various components of the one-way blocking mechanism 4, and facilitating maintenance and component replacement. Furthermore, mounting grooves for positioning the support spring 404 are respectively provided on the mounting base 401 and the blocking block 403. The mounting grooves clamp the two ends of the support spring 404, ensuring that the support spring 404 reliably and elastically supports the mounting base 401 and the blocking block 403, and ensuring the accuracy and firmness of the installation of the support spring 404, thereby preventing the support spring 404 from falling off. In order to ensure the stability of the elastic support of the blocking block 403, the support springs 404 are symmetrically arranged in multiple numbers; further, the front side of the upper surface of the blocking block 403 is a transition surface, and the rear side is a pressing inclined surface. When the blocking block 403 is in a natural state (when it is elastically supported and lifted by the support springs 404), the transition surface is horizontal and lower than the height of the bull's eye wheel 303, the pressing inclined surface is inclined 30 degrees, and the rear edge of the pressing inclined surface is higher than the height of the bull's eye wheel 303, which effectively enables the platform 2 (loading server 1) to smoothly pass the one-way blocking mechanism 4, and enables the blocking block 403 to reliably block and limit the front side of the platform 2.

[0040] During use, the server assembly and positioning platform is placed at a corner of the server production line. Platform 2 carrying server 1 enters from the front (on the side of the one-way blocking mechanism 4), is assembled on the server assembly and positioning platform, and is released from the right side (on the side of the limiting mechanism 5). When platform 2 carrying server 1 is transported through the production line to the front end of the server assembly and positioning platform, platform 2 first passes over the horizontal transition surface on the upper side of blocking block 403 and pushes against the pressing inclined surface. Blocking block 403 overcomes the elastic force of support spring 404 and flips downward. The bull's eye wheel 303 on the support plate 304 supports platform 2 in a rolling manner until platform 2 contacts and limits the rear end guard plate 302. At this point, platform 2 has just completely passed blocking block 403. Blocking block 403, supported by the elastic support of support spring 404, flips upward and tilts, causing the rear edge of blocking block 403 to protrude above the lower surface of platform 2, thereby reliably limiting the front-to-back position of platform 2 (carrying server 1). Overcoming the tension of the second tension spring 522, the limit frame 519 flips upward and is blocked and limited by the stopper 516, causing the limit frame 519 to block and limit the right side of the platform 2. The side end guard 301 on the support plate 304 also blocks and limits the left side of the platform 2 (carrying server 1), achieving reliable left-right positioning of the platform 2 (carrying server 1). This allows for quick, efficient, high-quality, and safe assembly of server 1 on the server assembly positioning platform. After assembly is complete, the linkage mechanism is manipulated to rotate the stopper 516, releasing the block on the limit frame 519. The limit frame 519 flips downward under the tension of the second tension spring 522, releasing the platform 2 (carrying server 1) to the right, thereby pushing the platform 2 from the right side to the next process. The overall structure is simple, easy to implement, and highly practical.

[0041] In another optional embodiment of the present invention, a server assembly positioning platform is disclosed, including a support platform 3 and a carrier platform 2 capable of positioning and placing a server 1. The support platform 3 includes a rectangular support plate 304 and a plurality of bull's eye wheels 303 installed on the upper surface of the support plate 304. The bull's eye wheels 303 are arranged in an array on the upper surface of the support plate 304; the left and rear sides of the support plate 304 are respectively provided with a side end guard plate 301 and a rear end guard plate 302, and the front side (feeding side) and right side (discharging side) of the support plate 304 are respectively provided with a one-way blocking mechanism 4 and a limiting mechanism 5; the one-way blocking mechanism 4 includes a mounting seat 401 installed on the feeding side of the support plate 304, and a blocking block is rotatably installed on the mounting seat 401 403, the upper side of the blocking block 403 is provided with a pressing inclined surface that is inclined upward along the feeding direction, and a support spring 404 is installed between the blocking block 403 and the mounting seat 401, which can make the blocking block 403 tilt up and block the carrier 2; the limiting mechanism 5 includes a limiting bottom plate 509 positioned and installed on the lower side of the discharging side of the support plate 304, a limiting frame 519 that can limit the carrier 2 and a blocking block 516 that can block the lower end of the limiting frame 519 are rotatably installed on the limiting bottom plate 509, and a control linkage mechanism that can control its rotation is connected to the blocking block 516; a second tension spring 522 that can make the limiting bottom plate 509 flip down and release is connected between the limiting bottom plate 509 and the limiting frame 519. Figures 7-9 As shown, the limit frame 519 has a T-shaped structure. The horizontal section of the limit frame 519 blocks and limits the position of the platform 2 over a large area, ensuring reliable positioning of the platform 2 (loaded with the server 1). Furthermore, two support columns 517 are mounted on the upper side of the limit base plate 509. Rotary bearings 524 are mounted on the support columns 517. A limit frame mounting shaft 518, which is rotatably mounted between the two rotating bearings 524 and connected to the limit frame 519, is rotatably mounted between the two rotating bearings 524. The limit frame mounting shaft 518 is keyed to the limit frame 519. Two locking nuts 523 are screwed onto the limit frame mounting shaft 518, which abut against the vertical sections of the limit frame 519 on either side. The limit frame mounting shaft 518 is keyed to the limit frame 519, enabling circumferential positioning. Two locking nuts 523 lock and limit the vertical section of the limit frame 519 on both sides, achieving axial positioning, preventing the limit frame 519 from shifting or shaking left or right, and ensuring that the limit frame 519 reliably blocks and limits the platform 2. The limit frame mounting shaft 518 is mounted on two support columns 517 via rotating bearings 524, ensuring the flexibility of the limit frame 519 when turning and preventing it from getting stuck. Furthermore, the upper end of a second tension spring 522 is mounted on the upper end of the vertical section of the limit frame 519.

[0042] Among them, such as Figures 8-9As shown, the control linkage mechanism includes a fork-shaped floating joint 505, a connecting rod 506 and a pressure rod 507 that are rotatably connected and installed in sequence; a support block 510 is provided on the lower side of the limiting base plate 509 and is rotatably connected to the end of the pressure rod 507 away from the connecting rod 506, and a stopper mounting seat 515 and a middle seat 512 are provided on the upper side of the limiting base plate 509 and are rotatably connected to the stopper 516; a pull fastener 511 is connected between the stopper 516 and the pressure rod 507, and the two ends of the pull fastener 511 are rotatably connected to the stopper 516 and the pressure rod 507 respectively, and the pull fastener 511 is provided on the upper side of the limiting base plate 509. 1 slides through the limit base plate 509; a first tension spring 513 is hung on the middle seat 512, and a pressure rod hanging hole 508 is opened on the pressure rod 507. The first tension spring 513 slides downward and penetrates the limit base plate 509 and is hung with the pressure rod hanging hole 508; at least two mounting brackets 503 are also positioned and installed on the lower side of the support platform 3, and linear bearings 504 are installed on the mounting brackets 503. A push rod 502 connected to the floating joint 505 is slidably installed in the at least two linear bearings 504, and a handle 501 is provided at the end of the push rod 502 away from the floating joint 505.

[0043] During use, the server assembly and positioning platform is placed at a corner of the server production line. Platform 2 carrying server 1 enters from the front (on the side of the one-way blocking mechanism 4), is assembled on the server assembly and positioning platform, and is released from the right side (on the side of the limiting mechanism 5). When platform 2 carrying server 1 is transported to the front end of the server assembly and positioning platform through the production line, platform 2 is pushed by the pressing inclined surface on the upper side of the blocking block 403. Blocking block 403 overcomes the elastic force of the support spring 404 and flips downward. Platform 2 is supported by the bull's eye wheel 303 on the support plate 304 until platform 2 contacts and limits the rear end of the guard plate 302. At this point, platform 2 just completely passes blocking block 403. Blocking block 403, supported by the elastic support of the support spring 404, flips upward and tilts, causing the rear edge of blocking block 403 to protrude above the lower surface of platform 2, thereby reliably limiting the front-to-back direction of platform 2 (carrying server 1). The limit frame 519 is tilted upward to overcome the tension of the second tension spring 522. The limit frame mounting shaft 518 rotates and guides on the rotating bearings 524 on the two support columns 517, ensuring the flexibility and accuracy of the limit frame 519's tilting. After the lower end of the limit frame 519 passes the stopper 516, the pressure rod 507 is forced to tilt upward under the tension of the first tension spring 513. The pull fastener 511 pushes up the right side of the stopper 516, thereby automatically engaging the right side of the stopper 516 with the lower end of the limit frame 519, keeping the limit frame 519 upright and blocking the right side of the platform 2. The side end guard plate 301 on the support plate 304 blocks the left side of the platform 2 (carrying server 1), thus reliably limiting the left and right positions of the platform 2 (carrying server 1). This allows for quick, efficient, high-quality, and safe assembly of server 1 on the server assembly positioning platform. After assembly is complete, handle 501 is grasped and push rod 502 is pushed rightward. Guided by linear bearing 504, push rod 502 pushes pressure rod 507 downward (overcoming the tension of first tension spring 513) via floating joint 505 and connecting rod 506. This pulls down the right side of stopper 516 via fastener 511 (stopper 516 rotates on stopper mounting seat 515), disengaging the right end of stopper 516 from the lower end of the vertical section of limit frame 519. Limit frame 519 then flips downward under the tension of second tension spring 522, releasing platform 2 (carrying server 1) to the right, thereby pushing platform 2 from the right side to the next process. The overall structure is simple, easy to implement, and highly practical.

[0044] Further, such as Figure 9 As shown, a limit plate 520 is provided on the left side of the horizontal section of the limit frame 519. The limit plate 520 is made of elastomeric material, which can achieve good protection for the carrier 2 and avoid collision and wear caused by direct contact between the limit frame 519 and the carrier 2.

[0045] Further, such as Figure 7As shown, a buffer 521 is also installed on the limiting base plate 509 to provide buffer support for the downward tilt of the limiting frame 519. Specifically, the buffer 521 is installed obliquely through the limiting base plate 509, and nuts are screwed onto it to abut against the upper and lower sides of the limiting base plate 509. By turning the adjustment nuts, the buffer distance of the buffer 521 can be flexibly adjusted. The upper end of the buffer 521 is spherical, and a ball socket that matches the spherical upper end of the buffer 521 is provided at a corresponding position on the limiting frame 519. The mating of the spherical upper end of the buffer 521 with the ball socket on the limiting frame 519 ensures a large interlocking area, achieving reliable buffer support for the downward tilt of the limiting frame 519 and flexible adaptation to different buffer distances.

[0046] Further, such as Figure 8 As shown, a buffer block 514 is mounted on the underside of the limiting base plate 509 to provide cushioning support for the compression rod 507. When the compression rod 507 is reset under the pull of the first tension spring 513, the buffer block 514 provides cushioning support for the compression rod 507, preventing damage from bumps and collisions. This also ensures that the compression rod 507 has a certain initial rotation angle, ensuring the reliability of the floating joint 505 and connecting rod 506 in pushing the compression rod 507 downward. The buffer block 514 is made of elastomeric rubber and has a certain degree of elasticity.

[0047] The positioning connection between the limiting base plate 509 and the support plate 304 can be achieved through the intermediate seat 512, that is, the two ends of the intermediate seat 512 are respectively connected to the upper side of the limiting base plate 509 and the lower side of the support plate 304. Similarly, the positioning connection between the limiting base plate 509 and the support plate 304 can be achieved through two supporting columns 517, that is, the two ends of the supporting columns 517 are respectively connected to the upper side of the limiting base plate 509 and the lower side of the support plate 304; a combination of the two can also be used.

[0048] In addition, the limiting bottom plate 509 and the support plate 304 can be fixedly installed on the base surface of the assembly line respectively, so that the relative positions of the limiting bottom plate 509 and the support plate 304 are fixed.

[0049] The present invention also discloses a server assembly production line, including the aforementioned server assembly positioning platform; the server assembly positioning platform is positioned at a corner of the production line. A platform 2 carrying a server 1 enters from the front (on the side of a one-way blocking mechanism 4), undergoes assembly on the server assembly positioning platform, and is released from the right side (on the side of a limiting mechanism 5). Operators can assemble the server 1 from both the left and rear sides, making the operation convenient and efficient, and flexibly applicable to production lines with corners.

[0050] When in use, the server assembly positioning platform and server assembly production line are placed at a corner of the server production line. The platform 2 carrying the server 1 enters from the front side (the side of the one-way blocking mechanism 4), is assembled on the server assembly positioning platform, and is released from the right side (the side of the limiting mechanism 5). When the platform 2 carrying the server 1 is transported to the front end of the server assembly positioning platform through the production line, the platform 2 is pushed by the pressing inclined surface on the upper side of the blocking block 403. The blocking block 403 overcomes the elastic force of the support spring 404 and flips downward. The bull's eye wheel 303 on the support plate 304 supports the platform 2 in a rolling manner until the platform 2 contacts the rear end guard plate 302 for limiting position. At this time, the platform 2 just completely passes the blocking block 403. The blocking block 403 flips upward under the elastic support of the support spring 404, so that the rear edge of the blocking block 403 is higher than the lower surface of the platform 2, thereby achieving reliable limiting of the front and rear directions of the platform 2 (carrying the server 1). Overcoming the tension of the second tension spring 522, the limit frame 519 tilts upward and is blocked by the stopper 516, blocking the right side of the platform 2. The side guard plates 301 on the support plate 304 also block the left side of the platform 2 (supporting server 1), effectively limiting the left and right positions of the platform 2 (supporting server 1). This allows for fast, efficient, high-quality, and safe assembly of server 1 on the server assembly positioning platform. After assembly is complete, the linkage mechanism is manipulated to rotate the stopper 516, releasing the block on the limit frame 519. The limit frame 519, under the tension of the second tension spring 522, tilts downward, releasing the platform 2 (supporting server 1) to the right, thereby pushing the platform 2 from the right side to the next process step. The overall structure is simple, easy to implement, and highly practical, effectively preventing the risk of collision and damage, saving labor intensity, and reducing labor costs.

[0051] The various embodiments in this specification are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. The same and similar parts between the various embodiments can be referenced to each other.

[0052] The terms "upper," "lower," "outer," "inner," and the like, if used in the present description and claims, and in the accompanying drawings, are used to distinguish relative positions and are not necessarily qualitative. It should be understood that the terms used in this manner are interchangeable where appropriate, such that the embodiments of the present invention described herein can be implemented in sequences other than those illustrated or described herein. Furthermore, the terms "including," "having," and any variations thereof, are intended to cover non-exclusive inclusions.

[0053] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A server assembly positioning platform, comprising a support platform (3) and a carrier platform (2), characterized in that: The support platform (3) comprises a support plate (304) and a plurality of bull's eye wheels (303) mounted on the upper surface of the support plate (304); a side end guard plate (301) and a rear end guard plate (302) are respectively provided on two adjacent sides of the support plate (304); and a one-way blocking mechanism (4) and a limiting mechanism (5) are respectively provided on the other adjacent sides of the support plate (304); the one-way blocking mechanism (4) comprises a mounting seat (401) mounted on the feed side of the support plate (304); a blocking block (403) is rotatably mounted on the mounting seat (401); a pressing inclined surface inclined upward along the feed direction is provided on the upper side of the blocking block (403); and a support spring (404) is installed between the blocking block (403) and the mounting seat (401). The limiting mechanism (5) comprises a limiting base plate (509) mounted on the lower side of the discharging side of the support plate (304), a limiting frame (519) capable of limiting the carrier (2) and a stopper (516) capable of blocking the lower end of the limiting frame (519) are rotatably mounted on the limiting base plate (509), and a control linkage mechanism is connected to the stopper (516); a second tension spring capable of causing the limiting frame (519) to flip down and release is connected between the limiting base plate (509) and the limiting frame (519); two supporting columns (517) are mounted on the upper side of the limiting base plate (509); a limiting frame mounting shaft (518) connected to the limiting frame (519) is rotatably mounted between the two supporting columns (517); the limiting frame mounting shaft (518) is connected to the limiting frame (519). The limit frame (519) is connected by a key; two locking nuts (523) are screwed on the limit frame mounting shaft (518) to limit the position of the limit frame (519) on both sides; the control linkage mechanism includes a floating joint (505), a connecting rod (506) and a pressure rod (507) that are rotated and installed in sequence; the lower side of the limit base plate (509) is provided with a support block (510) that is rotatably connected and installed with one end of the pressure rod (507) away from the connecting rod (506), and the upper side of the limit base plate (509) is provided with a stopper mounting seat (515) and a middle seat (512) that are rotatably connected and installed with the stopper (516); a fastener (511) is provided between the stopper (516) and the pressure rod (507), and both ends of the fastener (511) are connected to the stopper The block (516) and the pressure rod (507) are respectively installed in a rotationally connected manner, and the pull fastener (511) slides through the limiting base plate (509); a first tension spring (513) is hung on the middle seat (512), and a pressure rod hanging hole (508) is opened on the pressure rod (507); the first tension spring (513) slides downward through the limiting base plate (509) and is hung with the pressure rod hanging hole (508); at least two mounting frames (503) are also positioned and installed on the lower side of the support platform (3), and linear bearings (504) are installed on the mounting frames (503). A push rod connected to the floating joint (505) is slidably installed in the at least two linear bearings (504), and a handle is provided at one end of the push rod away from the floating joint (505).

2. The server assembly and positioning platform according to claim 1, characterized in that: The front portion of the blocking block (403) is rotatably connected and installed with the mounting seat (401) via the rotating shaft (402), and the supporting spring (404) is supported between the lower side of the rear portion of the blocking block (403) and the mounting seat (401).

3. The server assembly and positioning platform according to claim 1, characterized in that: The limiting frame (519) is in a T-shaped structure.

4. The server assembly and positioning platform according to claim 1, characterized in that: A buffer block (514) capable of providing buffer support to the pressure rod (507) is also installed on the lower side of the limiting base plate (509).

5. The server assembly and positioning platform according to claim 3, characterized in that: A limiting plate (520) is provided on one side of the horizontal section of the limiting frame (519).

6. The server assembly and positioning platform according to claim 1, characterized in that: A buffer (521) capable of providing buffer support for the downward turning of the limiting frame (519) is also installed on the limiting bottom plate (509).

7. A server assembly production line, characterized in that: It comprises the server assembly positioning platform described in any one of claims 1 to 6; the server assembly positioning platform is arranged at a corner of the production line.

Citation Information

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