Cabinet of multifunctional data server
Through the bevel gear system driven by servo motor and the worm gear design, combined with the two-way electric push rod and clamping components, the uneven heat dissipation and dust blockage of the server cabinet are solved, achieving uniform air flow and stable server work.
Patent Information
- Application Number
- CN202510755866.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-07
- Publication Date
- 2025-07-22
AI Technical Summary
When used in existing server cabinets, servers at different locations cannot get better heat dissipation, which is prone to temperature stratification, which reduces the service life.
The active bevel gear and driven bevel gear system driven by servo motor drives the impeller on the rotating rod and the movable rod, and combines the worm and worm gear system and universal wheel design to achieve uniform flow of air in the cabinet; the filter frame is knocked through the two-way electric push rod to prevent dust from being blocked, and the clamping component is held to stabilize the server.
It realizes uniform flow of air in the cabinet, avoids temperature stratification, improves the service life of the server, prevents dust from clogging the heat dissipation holes, ensures stability and normal heat dissipation, and makes the server work more stable.
Smart Images

Figure CN120358718A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of server cabinets, and specifically relates to a cabinet for a multifunctional data server. Background Art
[0002] With the rapid development of information technology, servers, as the core devices for data processing and storage, mainly consist of a processor, a hard disk, a memory, and a system bus. Due to their own advantages, they have been widely used. In order to ensure the stable operation of data servers, a special cabinet for data servers is required at this time.
[0003] After retrieval, Chinese Patent Publication No.: CN109101087B discloses a cabinet for a multifunctional data server, including a cabinet body, a first motor, an impeller, universal self-locking wheels, a second motor, a threaded rod, a slider, a cleaning brush, a cross plate, a support plate, a sliding column, a sleeve, a partition plate, a clamping plate, a cabinet door, a control panel, a vertical plate, and a baffle. Two vertical plates are symmetrically fixed to the inner bottom wall of the cabinet body. A partition plate is fixed to the top of the vertical plates. Two side walls of the partition plate are respectively fixedly connected to the inner side walls of both sides of the cabinet body. A through hole is opened at the top of the partition plate. A first motor is arranged above the partition plate. The bottom of the first motor is fixedly connected to the inner top wall of the cabinet body. An impeller is fixed to the output shaft of the first motor. Three cross plates are equidistantly fixed between adjacent side walls of the vertical plates. This data server can remove the dust on the dust-proof nets on both sides of the cabinet body, has better heat dissipation performance, can play a role in shock protection when placing the server, and can better stabilize the server. However, when this cabinet body is in use, only the first motor on the inner top of the cabinet body drives the impeller to rotate to accelerate the flow of air inside the cabinet body, and servers at different positions cannot be well cooled, and temperature stratification is likely to occur, thereby reducing the service life of the servers inside the cabinet body. Summary of the Invention
[0004] Aiming at the deficiencies of the prior art, the present invention provides a cabinet for a multifunctional data server, which solves the problem that servers at different positions cannot be well cooled when the existing cabinets for servers are in use.
[0005] To achieve the above objectives, the present invention is realized through the following technical solutions: A cabinet for a multifunctional data server includes a cabinet body. Heat dissipation mechanisms are arranged on both the upper and lower sides inside the cabinet body. The heat dissipation mechanisms are used to facilitate the heat dissipation work inside the cabinet body. A storage mechanism is arranged at the bottom of the cabinet body. The storage mechanism is used to facilitate further improving the placement stability of the cabinet body. A collection mechanism is arranged inside the cabinet body. The collection mechanism is used to prevent dust from blocking the filter holes and affecting the normal heat dissipation of the cabinet body; The heat dissipation mechanism includes a servo motor, which is fixedly connected to the rear side of the cabinet. The output end of the servo motor passes through the cabinet and is fixedly connected to a driving bevel gear. The rear sides of the upper and lower ends of the cabinet are rotatably connected to rotating rods, one end of the rotating rod is fixedly connected to a driven bevel gear, and the two driven bevel gears are respectively meshed with the upper and lower sides of the driving bevel gear. The upper and lower sides of the cabinet are rotatably connected to movable rods, one end of the movable rod is fixedly connected to an impeller, the upper and lower sides of the cabinet are fixedly connected to baffles, and a transmission assembly is arranged on the outside of the movable rod.
[0006] Preferably, the storage mechanism includes a hollow base, which is fixedly connected to the bottom of the cabinet, and the right side of the hollow base is rotatably connected to a double-headed worm gear, and the left end of the double-headed worm gear passes through the hollow base, and the left and right sides of the inside of the hollow base are rotatably connected to a rotating shaft, and the outer side of the rotating shaft is fixedly connected to a worm gear, and the two worm gears are respectively meshed and connected to the left and right sides of the double-headed worm gear, and the front and rear ends of the adjacent sides of the two rotating shafts are fixedly connected to a connecting rod, and one end of the connecting rod is fixedly connected to a universal wheel.
[0007] Preferably, the collecting mechanism includes a filter frame and a placement plate, the two filter frames are respectively slidably connected to the left and right sides of the top of the corresponding baffle plate, the top of the lower baffle plate is fixedly connected with a two-way electric push rod, the output end of the two-way electric push rod is fixedly connected with a pushing block, and the adjacent sides of the two filter frames are equidistantly fixedly connected with a plurality of U-shaped plates, the interiors of the plurality of U-shaped plates are respectively slidably connected to the left and right sides of the corresponding placement plates, and a clamping assembly is arranged inside the placement plate.
[0008] Preferably, the transmission assembly includes a synchronous wheel and a synchronous belt, and the multiple synchronous wheels are respectively fixedly connected to the corresponding outer sides of the movable rod and the rotating rod, and every two synchronous wheels are respectively connected through the synchronous belt transmission, and multiple holes are equidistantly opened on one side of the two baffles.
[0009] Preferably, the clamping assembly includes an open groove, and a plurality of the open grooves are respectively opened on the front and rear sides of the top of the corresponding placement plate, the interior of the front opening groove is rotatably connected with a bidirectional screw rod, and the middle part of the outer side of the bidirectional screw rod is fixedly connected with a second bevel gear, the front side of the placement plate is rotatably connected with a rotating shaft, the rear end of the rotating shaft passes through the open groove and is fixedly connected with a first bevel gear, and a plurality of the first bevel gears are respectively meshed and connected with the corresponding second bevel gears, and the left and right sides of the outer walls of the plurality of the bidirectional screw rods are threadedly connected with clamping plates.
[0010] Preferably, a cabinet door is provided on the front side of the cabinet body, and hinges are fixedly connected to the upper and lower sides of the front end of the cabinet door. The cabinet door is rotatably connected to the front side of the cabinet body through the hinges, and an armrest is rotatably connected to the right side of the front end of the cabinet door.
[0011] Preferably, the collecting mechanism further includes rubber pads, and a plurality of the rubber pads are respectively fixedly connected to one side of the corresponding clamping plates, and the sizes of the plurality of rubber pads respectively match the sizes of the corresponding clamping plates.
[0012] Preferably, a plurality of heat dissipation holes are equidistantly formed in the left and right sides and the top of the cabinet body, and wire bundling columns are communicated with the left and right sides of the top of the cabinet body.
[0013] Preferably, the front and rear sides of the plurality of clamping plates are respectively slidably connected to the inside of the corresponding opening grooves, and the sizes of the front and rear sides of the bottoms of the plurality of clamping plates respectively match the sizes of the inside of the corresponding opening grooves.
[0014] Preferably, a control panel is fixedly connected to the upper middle part of the right side of the cabinet body, and the control panel is electrically connected to the servo motor.
[0015] The present invention provides a cabinet for a multifunctional data server. It has the following beneficial effects: 1. In the present invention, the servo motor can drive the rotation of the driving bevel gear, and the driven bevel gear meshing with it will rotate accordingly, thereby driving the two side rotating rods to rotate in opposite directions. At the same time, the synchronous wheels on the outer sides of the rotating rods will rotate, and the synchronous wheels on the movable rods will also rotate through the synchronous belt, thereby driving the impellers to rotate. Since the rotation directions of the two impellers are opposite, the air can flow more evenly in the cabinet body, avoiding the occurrence of temperature stratification, and thus improving the service life of the servers inside the cabinet body.
[0016] 2. In the present invention, when the double-headed worm is rotated, the worm gear meshing with the double-headed worm will rotate accordingly, thereby driving the rotating shaft to rotate until the universal wheels are parallel to the hollow base. At this time, the universal wheels can be retracted into the hollow base, and the cabinet body is not easily affected by external factors and moves, thereby meeting the needs of users.
[0017] 3. In the present invention, the two-sided electric push rod can drive the two side pushing blocks to continuously strike the filter screen frame. Since the filter screen frame is in direct contact with the cabinet body, it can prevent dust from blocking the heat dissipation holes and affecting the normal heat dissipation work of the cabinet body. Rotating the rotating shaft can drive the first bevel gear to rotate, and the second bevel gear meshing with it will rotate accordingly, thereby limiting servers of different sizes. When the cabinet body is impacted, the servers inside it will not shake, enabling the servers to work more stably. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a perspective view of the present invention; Figure 2 is a front view of the present invention; Figure 3 is a top view of the present invention; Figure 4 The bottom view of the present invention; Figure 5 The partial structure display diagram of the present invention; Figure 6 The partial structure cross-sectional view of the present invention; Figure 7 The partial structure split diagram of the present invention; Figure 8 is Figure 7 The enlarged view of part A in Figure 9 The split diagram of the filter screen frame structure of the present invention.
[0019] Wherein, 1, cabinet body; 2, heat dissipation mechanism; 201, servo motor; 202, driving bevel gear; 203, rotating rod; 204, driven bevel gear; 205, movable rod; 206, impeller; 207, synchronous pulley; 208, synchronous belt; 209, baffle; 210, hole; 3, storage mechanism; 301, hollow base; 302, double-headed worm; 303, rotating shaft; 304, worm gear; 305, connecting rod; 306, universal wheel; 4, collection mechanism; 401, filter screen frame; 402, bidirectional electric push rod; 403, pushing block; 404, U-shaped plate; 405, placing plate; 406, opening groove; 407, rotating shaft; 408, first bevel gear; 409, bidirectional lead screw; 410, second bevel gear; 411, clamping plate; 412, rubber pad; 5, cabinet door; 6, hinge; 7, handrail; 8, control panel; 9, heat dissipation hole; 10, wire bundling column. Specific embodiments
[0020] Next, in combination with the accompanying drawings of the present invention specification, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0021] Referring to Figure 1 , Figure 5 and Figure 6 , an embodiment of the present invention provides a cabinet for a multifunctional data server. A cabinet for a multifunctional data server includes a cabinet body 1. Heat dissipation mechanisms 2 are arranged on both the upper and lower sides inside the cabinet body 1. The heat dissipation mechanisms 2 are used to facilitate the heat dissipation work inside the cabinet body 1. A storage mechanism 3 is arranged at the bottom of the cabinet body 1. The storage mechanism 3 is used to facilitate further improving the placement stability of the cabinet body 1. A collection mechanism 4 is arranged inside the cabinet body 1. The collection mechanism 4 is used to prevent dust from blocking the filter holes and affecting the normal heat dissipation of the cabinet body 1; The heat dissipation mechanism 2 includes a servo motor 201, which is fixedly connected to the rear side of the cabinet 1. The output end of the servo motor 201 passes through the cabinet 1 and is fixedly connected to a driving bevel gear 202. The rear sides of the upper and lower ends of the interior of the cabinet 1 are rotatably connected to a rotating rod 203, one end of the rotating rod 203 is fixedly connected to a driven bevel gear 204, and the two driven bevel gears 204 are respectively meshed with the upper and lower sides of the driving bevel gear 202. When the driving bevel gear 202 rotates, the driven bevel gear 204 will rotate along with it. The upper and lower sides of the interior of the cabinet 1 are rotatably connected to a movable rod 205, one end of the movable rod 205 is fixedly connected to an impeller 206, and the rotation of the impeller 206 can dissipate heat inside the cabinet 1. The upper and lower sides of the interior of the cabinet 1 are fixedly connected to a baffle 209, and a transmission component is arranged on the outer side of the movable rod 205. The transmission component includes a synchronous Wheel 207 and synchronous belt 208, multiple synchronous wheels 207 are respectively fixedly connected to the corresponding movable rod 205 and the outer side of the rotating rod 203, and each two synchronous wheels 207 are respectively connected by a synchronous belt 208. A plurality of holes 210 are evenly spaced on one side of the two baffles 209. The collecting mechanism 4 also includes a rubber pad 412, and multiple rubber pads 412 are respectively fixedly connected to one side of the corresponding clamping plate 411. The sizes of the multiple rubber pads 412 are respectively matched with the sizes of the corresponding clamping plates 411. The rubber pad 412 can further increase the friction between the clamping plate 411 and the server, so that the server can be placed more stably. Multiple heat dissipation holes 9 are evenly spaced on the left and right sides and the top of the cabinet 1. The left and right sides of the top of the cabinet 1 are connected with a cable tie post 10. The cable tie post 10 can be used to facilitate the connection lines between the server and the outside world to pass through; Specifically, starting the servo motor 201 can drive the active bevel gear 202 to rotate. Once the active bevel gear 202 starts to rotate, it will be tightly meshed with the driven bevel gear 204, so that the driven bevel gear 204 also starts to rotate, and the rotating rods 203 on both sides will rotate in opposite directions. At the same time, the synchronous wheel 207 on the outside of the rotating rod 203 will also start to rotate with the rotation of the rotating rod 203. The synchronous wheel 207 on the movable rod 205 is connected to it through a synchronous belt 208, so it will also rotate accordingly. This rotation will eventually be transmitted to the impeller 206, causing the two impellers 206 to rotate in opposite directions. This design ensures that the air can flow more evenly in the cabinet 1, effectively avoiding the occurrence of temperature stratification, thereby significantly improving the service life of the server inside the cabinet 1.
[0022] Reference Figure 1 , Figure 2 and Figure 4, the storage mechanism 3 includes a hollow base 301, the hollow base 301 is fixedly connected to the bottom of the cabinet 1, a double-headed worm 302 is rotatably connected to the right side of the hollow base 301, the left end of the double-headed worm 302 penetrates through the hollow base 301, and both the left and right sides inside the hollow base 301 are rotatably connected with a rotating shaft 303. A worm gear 304 is fixedly connected to the outer side of the rotating shaft 303. The two worm gears 304 are respectively meshed and connected to the left and right sides of the double-headed worm 302. Rotating the double-headed worm 302 and the meshed worm gears 304 will rotate accordingly, facilitating subsequent operations. At the adjacent front and rear ends of the adjacent sides of the two rotating shafts 303, a connecting rod 305 is fixedly connected, and a universal wheel 306 is fixedly connected to one end of the connecting rod 305. The universal wheel 306 can be used to move the cabinet 1; Specifically, rotating the double-headed worm 302, the closely meshed worm gear 304 will rotate accordingly, thereby driving the rotation of the rotating shaft 303. When the universal wheel 306 is perpendicular to the hollow base 301, the entire cabinet 1 can be moved through the universal wheel 306. After the moving operation is completed, just operate according to the reverse steps, that is, rotate the double-headed worm 302 again until the universal wheel 306 is completely retracted into the hollow base 301. This design can improve the stability of the cabinet 1, better meeting the needs of users.
[0023] Refer to Figure 5 , Figure 6 and Figure 7 , the collection mechanism 4 includes a filter screen frame 401 and a placement plate 405. The filter screen frame 401 can be used to collect the dust that falls due to vibration. The two filter screen frames 401 are respectively slidably connected to the left and right sides of the top of the corresponding baffle 209. A double-acting electric push rod 402 is fixedly connected to the top of the lower baffle 209. The output end of the double-acting electric push rod 402 is fixedly connected with a pushing block 403. A plurality of U-shaped plates 404 are equidistantly fixedly connected to the adjacent sides of the two filter screen frames 401. The left and right sides of the corresponding placement plate 405 are respectively slidably connected inside the plurality of U-shaped plates 404, which can limit the placement plate 405 to make it more stable. A clamping assembly is arranged inside the placement plate 405; Specifically, when the double-acting electric push rod 402 is started, the device can effectively drive the pushing blocks 403 on both sides to apply continuous knocking actions to the filter screen frame 401. Since there is a direct contact relationship between the filter screen frame 401 and the cabinet 1, when the filter screen frame 401 vibrates due to being knocked, the left and right walls of the cabinet 1 will also correspondingly feel this vibration effect. The design purpose of this vibration mechanism is to prevent dust particles from blocking the heat dissipation holes 9 after long-term accumulation, thereby ensuring that the cabinet 1 can maintain normal heat dissipation function and avoiding affecting the performance and lifespan of the equipment due to poor heat dissipation.
[0024] Refer to Figure 7 ,Figure 8 and Figure 9 The clamping assembly includes an opening groove 406. A plurality of opening grooves 406 are respectively formed in the front and rear sides of the top of the corresponding placement plate 405. A bidirectional lead screw 409 is rotatably connected inside the front-side opening groove 406. A second bevel gear 410 is fixedly connected to the middle of the outer side of the bidirectional lead screw 409. A rotating shaft 407 is rotatably connected to the front side of the placement plate 405. The rear end of the rotating shaft 407 penetrates through the opening groove 406 and is fixedly connected to a first bevel gear 408. A plurality of first bevel gears 408 are respectively meshed and connected with the corresponding second bevel gears 410. When the first bevel gear 408 rotates, the second bevel gear 410 meshed with it will rotate accordingly. Clamping plates 411 are respectively threadedly connected to the left and right sides of the outer walls of a plurality of bidirectional lead screws 409. The clamping plates 411 can be used to limit and fix the server. The front and rear sides of a plurality of clamping plates 411 are respectively slidably connected inside the corresponding opening grooves 406, which can limit the movement track of the clamping plates 411 and make them move more smoothly. The front and rear side dimensions of the bottoms of a plurality of clamping plates 411 respectively match the internal dimensions of the corresponding opening grooves 406; Specifically, rotating the rotating shaft 407 can drive the first bevel gear 408 to rotate. The first bevel gear 408 is tightly meshed with the second bevel gear 410. Therefore, when the first bevel gear 408 rotates, the second bevel gear 410 will also rotate accordingly. This linkage effect will be further transmitted to the bidirectional lead screw 409, causing it to rotate. The rotation of the bidirectional lead screw 409 will cause the clamping plates 411 on its outer side to move closer to the center, thereby realizing the function of precisely limiting servers of different sizes. This design can effectively prevent the internal servers from shaking unnecessarily when the cabinet 1 is impacted and can ensure that the servers maintain a stable working state.
[0025] Refer to Figure 1 、 Figure 2 and Figure 3 A cabinet door 5 is provided on the front side of the cabinet 1. Hinges 6 are fixedly connected to the upper and lower sides of the front end of the cabinet door 5. The cabinet door 5 is rotatably connected to the front side of the cabinet 1 through the hinges 6. An armrest 7 is rotatably connected to the right front end of the cabinet door 5; Specifically, by rotating the armrest 7, the cabinet door 5 can be opened, and then the subsequent work of placing and taking out the server can be carried out.
[0026] Refer to Figure 1 and Figure 4 A control panel 8 is fixedly connected to the upper middle part of the right side of the cabinet 1. The control panel 8 is electrically connected to the servo motor 201; Specifically, the operation of the servo motor 201 can be controlled through the control panel 8. The model of the servo motor 201 is MHMJ082G1U.
[0027] Working principle: When using the cabinet 1, first open the cabinet door 5 through the handrail 7, then place the server to be placed on the corresponding placement board 405. Subsequently, rotating the rotating shaft 407 can drive the first bevel gear 408 to rotate, and the second bevel gear 410 engaged with it will rotate accordingly. The bidirectional lead screw 409 will rotate accordingly, so as to limit servers of different sizes. When the cabinet 1 is impacted, the servers inside it will not shake, enabling the servers to work more stably. When the server is running, start the servo motor 201. The servo motor 201 can drive the driving bevel gear 202 to rotate, and the driven bevel gear 204 engaged with it will rotate accordingly, so as to drive the rotating rods 203 on both sides to rotate in opposite directions. At the same time, the synchronous wheels 207 on the outer sides of the rotating rods 203 will rotate. The synchronous wheels 207 on the movable rod 205 will also rotate through the synchronous belt 208, so as to drive the impellers 206 to rotate. Since the rotation directions of the two impellers 206 are opposite, combined with the heat dissipation holes 9, the air can flow more evenly inside the cabinet 1, avoiding the occurrence of temperature stratification phenomenon, and thus improving the service life of the servers inside the cabinet 1; And when it is necessary to move the cabinet 1, rotate the double-headed worm 302, and the worm wheel 304 engaged with the double-headed worm 302 will rotate accordingly, so as to drive the rotating shaft 303 to rotate until the universal wheel 306 is perpendicular to the hollow base 301. At this time, the cabinet 1 can be moved through the universal wheel 306. After the movement is completed, reverse the above steps until the universal wheel 306 is retracted into the hollow base 301, which can improve the stability of the cabinet 1. The cabinet 1 is not easily affected by external factors and moves, and thus can meet the needs of users; When using the cabinet 1, start the bidirectional electric push rod 402 at the same time. The bidirectional electric push rod 402 can drive the push blocks 403 on both sides to continuously strike the filter screen frame 401. Since the filter screen frame 401 is in direct contact with the cabinet 1, when the filter screen frame 401 vibrates, the left and right walls of the cabinet 1 are simultaneously affected by the vibration, which can prevent dust from blocking the heat dissipation holes 9 and affecting the normal heat dissipation work of the cabinet 1.
[0028] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A cabinet for a multifunctional data server, comprising a cabinet body (1), characterized in that, Heat dissipation mechanisms (2) are provided on both the upper and lower sides inside the cabinet body (1). The heat dissipation mechanisms (2) are used to facilitate the heat dissipation work inside the cabinet body (1). A storage mechanism (3) is provided at the bottom of the cabinet body (1). The storage mechanism (3) is used to facilitate further improving the placement stability of the cabinet body (1). A collection mechanism (4) is provided inside the cabinet body (1). The collection mechanism (4) is used to prevent dust from blocking the filter holes and affecting the normal heat dissipation of the cabinet body (1). The heat dissipation mechanism (2) includes a servo motor (201). The servo motor (201) is fixedly connected to the rear side of the cabinet body (1). The output end of the servo motor (201) penetrates the cabinet body (1) and is fixedly connected to a driving bevel gear (202). Rotating rods (203) are rotatably connected to the rear sides of the upper and lower ends inside the cabinet body (1). One end of the rotating rod (203) is fixedly connected to a driven bevel gear (204). The two driven bevel gears (204) are respectively meshed with the upper and lower sides of the driving bevel gear (202). Movable rods (205) are rotatably connected to the upper and lower sides inside the cabinet body (1). One end of the movable rod (205) is fixedly connected to an impeller (206). Baffles (209) are fixedly connected to the upper and lower sides inside the cabinet body (1). A transmission assembly is arranged on the outer side of the movable rod (205).
2. The cabinet of a multifunctional data server according to claim 1, wherein, The storage mechanism (3) includes a hollow base (301). The hollow base (301) is fixedly connected to the bottom of the cabinet body (1). A double-headed worm (302) is rotatably connected to the right side of the hollow base (301). The left end of the double-headed worm (302) penetrates the hollow base (301). Rotating shafts (303) are rotatably connected to the left and right sides inside the hollow base (301). A worm gear (304) is fixedly connected to the outer side of the rotating shaft (303). The two worm gears (304) are respectively meshed with the left and right sides of the double-headed worm (302). Connecting rods (305) are fixedly connected to the front, rear, and adjacent sides of the two rotating shafts (303). One end of the connecting rod (305) is fixedly connected to a universal wheel (306).
3. The cabinet of a multi-functional data server according to claim 1, characterized in that, The collection mechanism (4) includes a filter screen frame (401) and a placement plate (405). The two filter screen frames (401) are respectively slidably connected to the left and right sides of the top of the corresponding baffle (209). A double-acting electric push rod (402) is fixedly connected to the top of the lower baffle (209). The output end of the double-acting electric push rod (402) is fixedly connected to a pushing block (403). A plurality of U-shaped plates (404) are equidistantly and fixedly connected to the adjacent sides of the two filter screen frames (401). The left and right sides of the corresponding placement plate (405) are respectively slidably connected to the inside of the plurality of U-shaped plates (404). A clamping assembly is arranged inside the placement plate (405).
4. The cabinet of a multifunctional data server according to claim 1, characterized in that, The transmission assembly includes a synchronous pulley (207) and a synchronous belt (208). A plurality of the synchronous pulleys (207) are respectively fixedly connected to the outer sides of the corresponding movable rods (205) and rotating rods (203). Each two of the synchronous pulleys (207) are respectively connected by the synchronous belt (208) for transmission connection. A plurality of holes (210) are equidistantly formed on one side of each of the two baffles (209).
5. The cabinet of a multifunctional data server according to claim 3, characterized in that, The clamping assembly includes an opening groove (406). A plurality of the opening grooves (406) are respectively formed on the front and rear sides of the top of the corresponding placement plate (405). A bidirectional lead screw (409) is rotatably connected inside the front opening groove (406). A second bevel gear (410) is fixedly connected to the middle of the outer side of the bidirectional lead screw (409). A rotating shaft (407) is rotatably connected to the front side of the placement plate (405). The rear end of the rotating shaft (407) penetrates through the opening groove (406) and is fixedly connected to a first bevel gear (408). A plurality of the first bevel gears (408) are respectively meshed with the corresponding second bevel gears (410). Clamping plates (411) are respectively threadedly connected to the left and right sides of the outer walls of the plurality of bidirectional lead screws (409).
6. The cabinet of a multifunctional data server according to claim 1, characterized in that, A cabinet door (5) is arranged on the front side of the cabinet body (1). Hinges (6) are fixedly connected to the upper and lower sides of the front end of the cabinet door (5). The cabinet door (5) is rotatably connected to the front side of the cabinet body (1) through the hinges (6). An armrest (7) is rotatably connected to the right side of the front end of the cabinet door (5).
7. The cabinet of a multi-functional data server according to claim 5, characterized in that, The collection mechanism (4) further includes rubber pads (412). A plurality of the rubber pads (412) are respectively fixedly connected to one side of the corresponding clamping plates (411). The sizes of the plurality of rubber pads (412) respectively match the sizes of the corresponding clamping plates (411).
8. A cabinet of a multifunctional data server according to claim 1, characterized in that, A plurality of heat dissipation holes (9) are equidistantly formed on the left and right sides and the top of the cabinet body (1). Cable bundling columns (10) are communicated with the left and right sides of the top of the cabinet body (1).
9. The cabinet of a multifunctional data server according to claim 5, characterized in that, The front and rear sides of the plurality of clamping plates (411) are respectively slidably connected to the inside of the corresponding opening grooves (406). The sizes of the front and rear sides of the bottoms of the plurality of clamping plates (411) respectively match the sizes of the inside of the corresponding opening grooves (406).
10. The cabinet of a multifunctional data server according to claim 1, characterized in that, A control panel (8) is fixedly connected to the upper middle part of the right side of the cabinet body (1). The control panel (8) is electrically connected to the servo motor (201).
Citation Information
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A rack for a multi-functional data server
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