A multifunctional adjusting base for a data storage server
By designing a multi-functional adjustable base for the data storage server, and utilizing the sliding connection between the piston cylinder and piston rod, as well as the compression force of the spring, the problem of inconvenient loading and unloading of existing servers is solved, achieving stable support and efficient heat dissipation, and improving the ease of use and stability of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-22
- Publication Date
- 2026-03-17
AI Technical Summary
The existing big data storage servers do not have an automatic retrieval function, which makes it inconvenient for staff to retrieve and place data.
A multi-functional adjustable base for a data storage server was designed, comprising a data server body, a mounting base, a piston cylinder, a connecting rod, a piston rod, a spring, a support base, a heat dissipation mechanism, and a drive mechanism. The piston cylinder and piston rod are slidably connected, and the compression force of the spring makes the support base contact the ground. Combined with the heat dissipation mechanism and the drive mechanism, stable support and automatic locking are achieved, increasing the adaptability of the device to different placement sites and the stability of the support.
It achieves stable support and convenient access to the data server, improves the heat dissipation efficiency and support stability of the device, and enhances the device's functional versatility and ease of operation.
Smart Images

Figure CN116146835B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of server bases, and in particular to a multi-functional adjustable base for a data storage server. Background Technology
[0002] A server is a type of computer that runs faster, handles higher loads, and is more expensive than a regular computer. Servers provide computing or application services to other client machines (such as PCs, smartphones, ATMs, and even large equipment like train systems) on a network. Servers possess high-speed CPU processing power, long-term reliable operation, powerful I / O external data throughput capabilities, and better scalability. Depending on the services provided, servers generally have the ability to respond to service requests, provide services, and ensure service availability.
[0003] Currently, there are many types of such devices on the market, which can basically meet people's needs. However, there are still some problems. For example, existing big data storage servers generally do not have the function of automatically retrieving the server, which makes it inconvenient for staff to retrieve and place the server. Summary of the Invention
[0004] The main objective of this invention is to provide a multi-functional adjustable base for a data storage server, thereby effectively solving the problems mentioned in the background art.
[0005] To achieve the above objectives, the technical solution adopted by the present invention is as follows:
[0006] A multi-functional adjustable base for a data storage server includes a data server body, a mounting base, piston cylinders, connecting rods, piston rods, springs, a support base, a heat dissipation mechanism, and a drive mechanism. The data server body is mounted on the mounting base, four sets of piston cylinders are mounted on the mounting base, the connecting rods are installed inside the piston cylinder cavities, the piston rods are slidably connected to the piston cylinder cavities, and the connecting rods are slidably connected to the piston rod inner cavities. The two ends of the springs are respectively connected to the piston cylinders and the piston rods. The support base is mounted on the piston rods, and the heat dissipation mechanism and the drive mechanism are respectively mounted on the mounting base. The drive mechanism is connected to the four sets of piston rods.
[0007] Furthermore, the heat dissipation mechanism includes a drive rod, heat dissipation fan blades, a first gear, and a power mechanism. The drive rod is rotatably mounted on the mounting base, multiple sets of heat dissipation fan blades are equidistantly mounted on the drive rod, the first gear is coaxially mounted on the drive rod, and the power mechanism is mounted on the mounting base and connected to the first gear.
[0008] Furthermore, the drive mechanism includes a support shaft, a mounting plate, a drive shaft, a drive worm gear, an adjustment mechanism, and a transmission mechanism. The support shaft is rotatably mounted inside the drive shaft cavity. The mounting plate is coaxially mounted on the support shaft. Four sets of drive shafts are equidistantly mounted on the mounting plate. The drive worm gear is coaxially mounted on the support shaft. Four sets of transmission mechanisms are mounted on the mounting base. The transmission mechanisms are respectively connected to the piston rod and the drive shaft. The adjustment mechanism is mounted on the mounting base and is connected to the drive worm gear.
[0009] Furthermore, the transmission mechanism includes a support base, a positioning column, and a transmission component. Four sets of support bases are respectively fitted and installed on the mounting base. The positioning column is slidably connected to the support base. The positioning column passes through the piston cylinder through hole and is connected to the piston rod. The transmission component is installed on the positioning column, and the transmission shaft is slidably connected to the inner groove of the transmission component.
[0010] Furthermore, the adjusting mechanism includes a fixed base, a drive shaft, and a transmission worm. The fixed base is mounted on the mounting base, the drive shaft is rotatably mounted on the fixed base, the transmission worm is coaxially mounted on the drive shaft, and the transmission worm meshes with the transmission worm wheel for transmission. The drive shaft is provided with an internal hexagonal hole.
[0011] Furthermore, the power mechanism includes a drive motor, a second gear, and a temperature sensor. The drive motor is mounted on a mounting base, the second gear is coaxially mounted on the output end of the drive motor, and the second gear meshes with the first gear for transmission. The temperature sensor is mounted on the data server body and is electrically connected to the drive motor.
[0012] Furthermore, it also includes an isolation net, which is installed on the mounting base and located between the data server body and multiple sets of cooling fan blades.
[0013] Furthermore, it also includes a connecting seat, which is mounted on the mounting base, and the drive rod is rotatably connected to the connecting seat.
[0014] Furthermore, it also includes a damping pad, which is mounted on the positioning post and is slidably connected to the piston rod.
[0015] Furthermore, it also includes multiple sets of connecting recesses at the connection end between the piston rod and the positioning pin.
[0016] The beneficial effects of the present invention after adopting the above technical solution are as follows: the piston rod is slidably mounted on the mounting base by the piston cylinder; the sliding range of the piston rod and piston cylinder is limited by the connecting rod; the mounting base provides stable support for the data server body; the piston rod is compressed by the spring force so that all four sets of support bases are in contact with the ground; the mounting base is stably supported by the cooperation of multiple sets of piston rods; the piston rod is buffered by contacting the ground by the support base; the data server body is cooled by the heat dissipation mechanism; and the connection position between the piston rod and piston cylinder is locked by the drive mechanism, thereby increasing the adaptability of the device to the placement site and improving the stability of the device support. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a front view structural diagram of the present invention;
[0019] Figure 2 This is a schematic diagram of the axial structure of the present invention;
[0020] Figure 3 This is a partial top view of the present invention;
[0021] Figure 4 This is a partial bottom view of the present invention;
[0022] Figure 5 yes Figure 4 Enlarged structural diagram of section A in the middle;
[0023] The attached diagram shows the following components: 1. Data server body; 2. Mounting base; 3. Piston cylinder; 4. Connecting rod; 5. Piston rod; 6. Spring; 7. Support base; 8. Drive rod; 9. Cooling fan blades; 10. First gear; 11. Support shaft; 12. Mounting plate; 13. Transmission shaft; 14. Transmission worm gear; 15. Support base; 16. Positioning pin; 17. Transmission component; 18. Fixed base; 19. Drive shaft; 20. Transmission worm gear; 21. Drive motor; 22. Second gear; 23. Temperature sensor; 24. Isolation net; 25. Connecting base; 26. Damping pad. Detailed Implementation
[0024] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and are not intended to limit the scope of the invention.
[0025] The present invention relates to a multi-functional adjustable base for a data storage server. The installation, connection, or setting methods of all the components described above are common mechanical methods, and the specific structure, model, and coefficient indicators of all the components are their own technologies. As long as they can achieve their beneficial effects, they can be implemented, so they will not be described in detail.
[0026] In the present invention, a multi-functional adjustable base for a data storage server, unless otherwise stated, directional terms such as "up, down, left, right, front, back, inside, outside, and vertical and horizontal" in the terminology only represent the orientation of the term in its normal use state, or are common terms understood by those skilled in the art, and should not be regarded as a limitation on the term. At the same time, numerals such as "first," "second," and "third" do not represent a specific quantity or order, but are only used to distinguish names. Moreover, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a series of elements includes not only those elements, but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0027] like Figures 1 to 5 As shown, a multi-functional adjustable base for a data storage server includes a data server body 1, a mounting base 2, piston cylinders 3, connecting rods 4, piston rods 5, springs 6, a support base 7, a heat dissipation mechanism, and a drive mechanism. The data server body 1 is mounted on the mounting base 2. Four sets of piston cylinders 3 are mounted on the mounting base 2. The connecting rods 4 are installed inside the cavities of the piston cylinders 3. The piston rods 5 are slidably connected to the cavities of the piston cylinders 3 and to the inner cavities of the piston rods 5. The two ends of the springs 6 are respectively connected to the piston cylinders 3 and the piston rods 5. The support base 7 is mounted on the piston rods 5. The heat dissipation mechanism and the drive mechanism are respectively mounted on the mounting base 2. The drive mechanism is connected to the four sets of piston rods 5.
[0028] During use, the piston rod 5 is slidably mounted on the mounting base 2 via the piston cylinder 3. The connecting rod 4 limits the sliding range of the piston rod 5 and piston cylinder 3. The mounting base 2 provides stable support for the data server body 1. The piston rod 5 is compressed by the spring 6, causing all four sets of support bases 7 to contact the ground. The multiple sets of piston rods 5 work together to provide stable support for the mounting base 2. The support bases 7 provide cushioning when the piston rod 5 contacts the ground. The heat dissipation mechanism provides heat dissipation for the data server body 1. The drive mechanism locks the connection between the piston rod 5 and piston cylinder 3, increasing the adaptability of the device to different placement sites and improving the stability of the device.
[0029] As a preferred embodiment of the above, the heat dissipation mechanism includes a drive rod 8, heat dissipation fan blades 9, a first gear 10 and a power mechanism. The drive rod 8 is rotatably mounted on the mounting base 2. Multiple sets of heat dissipation fan blades 9 are equidistantly mounted on the drive rod 8. The first gear 10 is coaxially mounted on the drive rod 8. The power mechanism is mounted on the mounting base 2 and connected to the first gear 10.
[0030] During use, the drive rod 8 causes multiple sets of cooling fan blades 9 to rotate and be supported on the mounting base 2. The first gear 10 connects the drive rod 8 with the power mechanism, and the power mechanism drives the multiple sets of cooling fan blades 9 to rotate, thereby increasing the airflow speed at the bottom of the data server body 1, improving the heat dissipation efficiency of the data server body 1, and increasing the functionality of the device.
[0031] As a preferred embodiment of the above, the drive mechanism includes a support shaft 11, a mounting plate 12, a transmission shaft 13, a transmission worm gear 14, an adjustment mechanism, and a transmission mechanism. The support shaft 11 is rotatably mounted inside the shaft cavity of the drive rod 8. The mounting plate 12 is coaxially mounted on the support shaft 11. Four sets of transmission shafts 13 are equidistantly mounted on the mounting plate 12. The transmission worm gear 14 is coaxially mounted on the support shaft 11. Four sets of transmission mechanisms are mounted on the mounting base 2. The transmission mechanisms are respectively connected to the piston rod 5 and the transmission shaft 13. The adjustment mechanism is mounted on the mounting base 2 and connected to the transmission worm gear 14.
[0032] During use, the mounting plate 12 and the transmission worm gear 14 are coaxially mounted through the support shaft 11. The support shaft 11 is connected to the adjustment mechanism through the transmission worm gear 14. Four sets of transmission shafts 13 are mounted on the support shaft 11 through the mounting plate 12. The mounting plate 12 is connected to the transmission mechanism through the transmission shafts 13. The support shaft 11 drives the transmission shafts 13 on the mounting plate 12 to rotate and cooperate with the transmission mechanism to lock the piston rod 5 and piston cylinder 3 at the connection position, thereby improving the stability of the device support and increasing the convenience of slotting.
[0033] As a preferred embodiment of the above, the transmission mechanism includes a support base 15, a positioning column 16 and a transmission component 17. Four sets of support bases 15 are respectively installed on the mounting base 2. The positioning column 16 is slidably connected to the support base 15. The positioning column 16 passes through the through hole of the piston cylinder 3 and is connected to the piston rod 5. The transmission component 17 is installed on the positioning column 16. The transmission shaft 13 is slidably connected to the inner groove of the transmission component 17.
[0034] During use, the positioning column 16 is slidably supported on the mounting base 2 by the support base 15. The mounting plate 12 drives the transmission shaft 13 to rotate and slide with the inner groove of the transmission component 17, so that the positioning column 16 is provided with the moving power. The movement of the positioning column 16 cooperates with the support base 15 to lock the piston rod 5 and the piston cylinder 3 cavity at the sliding connection position, thereby improving the working stability of the device and increasing the ease of operation of the device.
[0035] As a preferred embodiment of the above, the adjustment mechanism includes a fixed seat 18, a drive shaft 19 and a transmission worm 20. The fixed seat 18 is mounted on the mounting base 2, the drive shaft 19 is rotatably mounted on the fixed seat 18, the transmission worm 20 is coaxially mounted on the drive shaft 19, the transmission worm 20 is meshed with the transmission worm wheel 14 for transmission, and the drive shaft 19 is provided with an internal hexagonal hole.
[0036] During use, the drive shaft 19 is rotated and supported on the mounting base 2 by the fixed base 18. The drive shaft 19 is connected to the support shaft 11 by the meshing of the transmission worm 20 and the transmission worm wheel 14. The rotation of the drive shaft 19 causes the transmission worm wheel 14 to drive the mounting plate 12 to provide rotational power. The drive shaft 19 is provided with an internal hexagonal hole to increase the ease of driving. The meshing of the transmission worm 20 and the transmission worm wheel 14 gives the transmission a one-way self-locking function, increasing the transmission stability.
[0037] As a preferred embodiment of the above, the power mechanism includes a drive motor 21, a second gear 22 and a temperature sensor 23. The drive motor 21 is mounted on the mounting base 2. The second gear 22 is coaxially mounted on the output end of the drive motor 21. The second gear 22 meshes with the first gear 10 for transmission. The temperature sensor 23 is mounted on the data server body 1 and is electrically connected to the drive motor 21.
[0038] During use, the temperature sensor 23 detects the temperature of the data server body 1 and controls the switching of the drive motor 21. The second gear 22 meshes with the first gear 10 to drive the drive rod 8 and drive motor 21. The drive motor 21 provides rotational power to the drive rod 8, which in turn drives multiple sets of cooling fan blades 9 to rotate, increasing the airflow at the bottom of the data server body 1 and improving the heat dissipation efficiency of the data server body 1.
[0039] As a preferred embodiment of the above embodiment, it also includes an isolation net 24, which is installed on the mounting base 2 and is located between the data server body 1 and the multiple sets of heat dissipation fan blades 9.
[0040] During use, the isolation net 24 isolates and protects the device, increasing its operational safety and preventing collisions caused by the rotation of multiple cooling fan blades 9.
[0041] As a preferred embodiment of the above embodiment, it also includes a connecting seat 25, which is mounted on the mounting base 2, and the drive shaft 19 is rotatably connected to the connecting seat 25.
[0042] During use, the drive shaft 19 is rotated and supported by the connecting seat 25, and the transmission worm 20 and the transmission worm wheel 14 mesh to increase the strength of the connection, thereby increasing the transmission stability of the device and extending its service life.
[0043] As a preferred embodiment of the above, a damping pad 26 is also included. The damping pad 26 is mounted on the positioning post 16 and is slidably connected to the piston rod 5.
[0044] During use, the damping pad 26 increases the sliding friction between the positioning pin 16 and the piston rod 5, thereby improving the connection stability between the positioning pin 16 and the piston rod 5 and increasing the connection strength of the device.
[0045] As a preferred embodiment of the above, the piston rod 5 and the positioning post 16 are provided with a plurality of connecting recesses at the connecting end;
[0046] During use, the piston rod 5 is provided with multiple sets of connecting recesses to further increase the sliding resistance between the damping pad 26 and the piston rod 5, thereby increasing the connection stability of the device.
[0047] First, the data server body 1 applies pressure to multiple sets of piston rods 5 by its weight. Then, multiple sets of springs 6 work together to ensure that the support bases 7 on the four sets of piston rods 5 are in stable contact with the ground. Next, the drive shaft 19 drives the transmission worm gear 20 to rotate. Then, the transmission worm gear 20 meshes with the transmission worm wheel 14 and drives the mounting plate 12 to rotate through the support shaft 11. Then, the transmission shaft 13 on the mounting plate 12 slides with the inner groove of the transmission component 17, causing the positioning pin 16 and the support base 15 to move relative to each other. Then, the damping pad 26 on the positioning pin 16 contacts and clamps the support base 15. When the operating temperature of the data server body 1 is high, the temperature sensor 23 starts the drive motor 21 to rotate. Then, the second gear 22 meshes with the first gear 10 and drives multiple sets of cooling fan blades 9 to rotate through the drive rod 8. The rotation of the multiple sets of cooling fan blades 9 increases the air flow rate from the data server body 1, improving the heat exchange efficiency.
[0048] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. A multi-functional conditioning base for a data storage server, characterized by, The utility model provides a data server cooling device, including data server body (1), mounting seat (2), piston cylinder (3), connecting rod (4), piston rod (5), spring (6), support base (7), heat dissipation mechanism and drive mechanism, data server body (1) is installed on mounting seat (2), four groups piston cylinder (3) cooperation is installed on mounting seat (2), connecting rod (4) is installed in the cavity inside piston cylinder (3), piston rod (5) is slidably connected with the cavity of piston cylinder (3), connecting rod (4) is slidably connected with the inner chamber of piston rod (5), spring (6) both ends are connected with piston cylinder (3) and piston rod (5) cooperation respectively, support base (7) is installed on piston rod (5), heat dissipation mechanism and drive mechanism are installed on mounting seat (2) respectively, drive mechanism is connected with four groups piston rod (5) cooperation, The drive mechanism includes support shaft (11), mounting disc (12), transmission shaft (13), transmission worm (14), adjusting mechanism and transmission mechanism, the support shaft (11) is rotatably installed in the shaft cavity of drive rod (8), the mounting disc (12) is coaxially installed on the support shaft (11), four groups of transmission shaft (13) are equidistantly installed on the mounting disc (12), the transmission worm (14) is coaxially installed on the support shaft (11), four groups of transmission mechanisms are installed on the mounting seat (2), the transmission mechanisms are connected with the piston rods (5) and the transmission shafts (13) respectively, the adjusting mechanism is installed on the mounting seat (2) and is connected with the transmission worm (14), The transmission mechanism includes support base (15), positioning column (16) and transmission part (17), four groups of support base (15) are connected with the piston rods (5) respectively, the positioning column (16) is slidably connected with the support base (15), the positioning column (16) passes through the through hole of the piston cylinder (3) and is connected with the piston rod (5), the transmission part (17) is installed on the positioning column (16), and the transmission shaft (13) is slidably connected with the inner groove of the transmission part (17); The adjusting mechanism includes fixing base (18), drive shaft (19) and transmission worm (20), the fixing base (18) is installed on the mounting seat (2), the drive shaft (19) is rotatably installed on the fixing base (18), the transmission worm (20) is coaxially installed on the drive shaft (19), the transmission worm (20) is in meshing transmission connection with the transmission worm (14), and the drive shaft (19) is provided with an internal hexagonal hole.
2. A multi-functional conditioning base for a data storage server as recited in claim 1, wherein, The heat dissipation mechanism includes drive rod (8), heat dissipation fan blade (9), first gear (10) and power mechanism, the drive rod (8) is rotatably installed on the mounting seat (2), a plurality of heat dissipation fan blades (9) are equidistantly installed on the drive rod (8), the first gear (10) is coaxially installed on the drive rod (8), and the power mechanism is installed on the mounting seat (2) and connected with the first gear (10).
3. A multi-functional conditioning base for a data storage server as recited in claim 2, wherein, The power mechanism comprises a driving motor (21), a second gear (22) and a temperature sensor (23), the driving motor (21) is installed on the mounting seat (2), the second gear (22) is coaxially installed on the output end of the driving motor (21), the second gear (22) is in meshing transmission connection with the first gear (10), and the temperature sensor (23) is installed on the data server body (1) and electrically connected with the driving motor (21).
4. A multi-functional conditioning base for a data storage server as recited in claim 2, wherein, Further comprising an isolation net (24), the isolation net (24) is installed on the mounting seat (2), and the isolation net (24) is located at the intermediate position of the data server body (1) and the plurality of heat dissipation fan blades (9).
5. A multi-functional conditioning base for a data storage server as recited in claim 1, wherein, Further comprising a connecting seat (25), the connecting seat (25) is installed on the mounting seat (2), and the driving shaft (19) is rotationally connected with the connecting seat (25).
6. The multifunctional adjusting base of the data storage server according to claim 1, further comprising a damping pad (26), the damping pad (26) is installed on the positioning column (16), and the damping pad (26) is slidably connected with the piston rod (5).
7. A multi-functional conditioning base for a data storage server as recited in claim 1, wherein, Further comprising that a plurality of connecting concave holes are arranged at the connecting end of the piston rod (5) and the positioning column (16).
Citation Information
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