Big data processing equipment based on Internet of Things
By designing data cabinets, fixtures and wire mechanisms in big data processing equipment, the chaos and damage problems in power cord installation and maintenance are solved, and rapid disassembly and assembly are achieved, reducing maintenance costs and improving work efficiency.
Patent Information
- Application Number
- CN202510470065.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-04-15
AI Technical Summary
When installing and maintaining power cords, existing big data processing equipment based on the Internet of Things can easily lead to confusion in the power cord and damage to the connector, which increases maintenance costs and reduces work efficiency.
A big data processing device including a data cabinet, a fixture and a wire mechanism is designed. The data cabinet is equipped with a fixing device, which includes a guide rail, a gear lever and a wire mechanism. Through these structures, the fast disassembly and assembly of the big data processing components and the power cord are realized.
Through the design of this equipment, the rapid disassembly and assembly of big data processing components and power cords are realized, which reduces maintenance costs, improves work efficiency, and increases protection of power connectors.
Smart Images

Figure CN119997419A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of big data processing equipment, and in particular to a big data processing equipment based on the Internet of Things. Background Art
[0002] The concept of big data is defined as: a data set so large that it far exceeds the capabilities of traditional database software tools in terms of acquisition, storage, management, and analysis. Its main advantage is that big data can be captured, managed, processed, and organized into information that helps companies make more proactive business decisions within a reasonable time. It also has four major advantages: massive data scale, fast data flow, diverse data types, and low value density. When processing big data, big data processing equipment based on the Internet of Things is generally required. Big data processing equipment based on the Internet of Things is a device that integrates hardware and software for the storage, processing, and display of big data. Generally, big data processing equipment based on the Internet of Things refers to an integrated device that integrates server, storage, network, software and other configurations through a standardized architecture to reduce the complexity of data center infrastructure deployment and operation and maintenance management.
[0003] Existing big data processing equipment based on the Internet of Things is generally equipped with several big data processing components, and the big data processing components include multiple servers, multiple storage devices and multiple network switches. Therefore, when installing the big data processing components, multiple different power cords need to be installed to power the servers, storage devices and network switches inside. Therefore, when installing the power cords between the servers, storage devices and network switches, the power cords need to be plugged and unplugged from the servers, storage devices and network switches multiple times, which not only makes it easy to confuse the power cords with the power cords of the servers, storage devices and network switches, but also makes it easy to damage the unconnected power cord connectors. In addition, it requires staff to classify the various power cords for a long time, which increases maintenance costs and reduces work efficiency. Therefore, we propose a big data processing equipment based on the Internet of Things. Summary of the invention
[0004] In order to overcome the deficiencies of the prior art, the present invention provides a big data processing device based on the Internet of Things.
[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: A big data processing device based on the Internet of Things, comprising: A data cabinet, wherein a cabinet door is provided on the front of the data cabinet, and the middle of the data cabinet is recessed inward to form a placement cavity, wherein a plurality of big data processing components for processing big data are provided inside the placement cavity, and a plurality of power cords for providing power are also provided on the big data processing components, and a heat dissipation port for cooling the big data processing components is provided on the top of the data cabinet, and a plurality of heat pipes for cooling the big data processing components are also provided on both sides of the data cabinet; The data cabinet is provided with a plurality of fixing devices for facilitating the installation of the big data processing components and the power cord, and a switch mechanism for adjusting the fixing devices is also provided between the big data processing components and the fixing devices; The fixing device includes a fixing plate fixed inside the data cabinet, two guide rails are arranged on the top of the fixing plate for facilitating the sliding of the big data processing component, a lever for limiting the power cord is fixed between the two guide rails, a plurality of wire holes are provided on the lever for facilitating the movement of the power cord, a plurality of wire mechanisms are provided on the lever for facilitating the insertion of the power cord into the big data processing component, a wire clamping mechanism for clamping the power cord is provided at one end of the wire mechanism away from the big data processing component, the switch mechanism is arranged below the fixing plate, and the switch mechanism contacts the wire clamping mechanism below, the power cord is fixed by the wire clamping mechanism so that the power cord is fixed in the wire mechanism to prevent the power cord from slipping from the wire mechanism when moving, the power cord is driven to move by the wire mechanism so that the power cord is inserted into the inside of the big data processing component after passing through the lever, and the power cord installed on the big data processing component is uniformly opened and closed by the switch mechanism; The big data processing component is provided with a clamping block, and an extension portion is extended toward the middle of two clamping blocks at one end away from the big data processing component, and a protrusion matched with the clamping block is provided on the opposite side of the two guide rails, and a groove matched with the extension portion is provided on the protrusion, and the protrusion is set to be T-shaped, and the clamping block is slidably installed on the protrusion. Through the cooperation between the clamping block and the protrusion, the big data processing component is convenient to slide quickly on the guide rail.
[0006] As a preferred technical solution of the present invention, the wire mechanism includes a main wire harness sleeve inserted on the gear rod and a support rod fixed on the gear rod, a driving disk is provided at the end of the support rod away from the gear rod, the end of the main wire harness sleeve away from the gear rod is connected to the wire clamping mechanism, a positioning plate is also fixed to the side of the gear rod, a wire harness ring is fixed to the end of the positioning plate away from the gear rod, a secondary transmission block is fixed to the top of the wire harness ring, a main spring is provided between the secondary transmission block and the wire clamping mechanism, the bottom of the driving disk is rotatably mounted on the support rod, and the side of the driving disk is in contact with the wire clamping mechanism, pushing the driving disk to rotate around the support rod, so that the driving disk contacts the wire clamping mechanism and then pushes the wire clamping mechanism to move, so that the wire clamping mechanism drives the power cord and the main wire harness sleeve to move, so that the power cord is separated from the big data processing component.
[0007] As a preferred technical solution of the present invention, the wire clamping mechanism includes a secondary wiring harness sleeve fixed on the main wiring harness sleeve, two through grooves are provided on the secondary wiring harness sleeve, two spring plates for clamping the power cord are fixed inside the two through grooves, a number of pressure blocks are arranged on the opposite sides of the two spring plates, a main transmission block is fixed on the top of the secondary wiring harness sleeve, the free end of the main spring is fixed to the side of the main transmission block, the side of the main transmission block away from the main spring is in contact with the driving disk, after the power cord is inserted into the interior of the secondary wiring harness sleeve, the power cord pushes the spring plate to deform, so that the spring plate releases the elastic force to apply pressure to the power cord, and the pressure blocks on the spring plates clamp and fix the power cord, so that the power cord is inserted into the interior of the main wiring harness sleeve and the secondary wiring harness sleeve.
[0008] As a preferred technical solution of the present invention, one end of the driving disk is provided with an inclined surface adapted to the main transmission block, and a positioning groove is also provided on the outer wall of the driving disk, and a handle is also provided on the end of the driving disk away from the support rod for facilitating driving the driving disk to rotate. The driving disk is driven to rotate by pushing the handle, so that the driving disk rotates around the support rod, so that the inclined surface of the driving disk contacts with a side of the main transmission block away from the main spring, so that the driving disk drives the secondary wiring harness sleeve to move through the main spring, so that the secondary wiring harness sleeve drives the power cord to separate from the big data processing component, and the cooperation between the main transmission block and the inclined surface limits the driving disk to prevent the elastic force released by the main spring from pushing the driving disk to move. The driving disk can also be driven to rotate by pushing the handle, so that the driving disk rotates around the support rod, so that the positioning groove of the driving disk contacts with the gear lever, so that the gear lever cooperates with the positioning groove of the driving disk to limit the driving disk, and the main spring releases the elastic force to drive the secondary transmission block to move, so that the secondary transmission block drives the power cord to move through the secondary wiring harness sleeve, so that the power cord is plugged into the inside of the big data processing component.
[0009] As a preferred technical solution of the present invention, a limiting rod is fixed to the outer wall of the main wiring harness sleeve, and two limiting blocks are fixed to the outer wall of the wiring ring. The end of the limiting rod away from the main wiring harness sleeve passes through the limiting block and extends to the other side of the limiting block. The limiting block is used to limit the limiting rod, so that the limiting rod limits the main wiring harness sleeve to prevent the main wiring harness sleeve from rotating when moving, thereby causing the power cord to rotate, resulting in poor contact between the power cord and the big data processing component, affecting the normal use of the big data processing component.
[0010] As a preferred technical solution of the present invention, the switch mechanism includes a lock frame arranged below the guide rail, the bottom of the lock frame is recessed inward to form a drive groove, the lock frame is slidably installed at the bottom of the guide rail, and the handle is arranged inside the drive groove. By pushing the lock frame to move, the lock frame drives several handles to move, and the several handles drive several drive disks to rotate, so that the lock frame moves several power cords at the same time, and several power cords are connected and separated from the big data processing component at the same time.
[0011] As a preferred technical solution of the present invention, a secondary spring is fixed on the top of the lock frame, a slider is fixed on the top of the secondary spring, a wedge block is fixed on the top of the slider, a wedge-shaped groove matched with the wedge block is provided at the bottom of the guide rail, and a lifting groove matched with the lever is provided in the middle of the slider, and the lock frame is pulled upward by the elastic force of the secondary spring to move the lock frame above the handle, thereby facilitating people to push several drive disks separately.
[0012] As a preferred technical solution of the present invention, a flip plate and a plurality of ventilation plates are provided at one end of the data cabinet away from the cabinet door, a plurality of ventilation holes are provided on the flip plate, the flip plate is rotatably installed on the upper half of the data cabinet, and the plurality of ventilation plates are rotatably installed on the lower half of the end of the data cabinet away from the cabinet door. By pulling the flip plate to rotate, the flip plate is separated from the data cabinet, so that people can turn the drive disk from the back of the data cabinet conveniently and quickly. The air intake of the data cabinet is adjusted by a plurality of rotatable ventilation plates, so that the interior of the data cabinet can be quickly cooled down.
[0013] Compared with the prior art, the present invention can achieve the following beneficial effects: Through the coordination of structures such as the wire mechanism, the wire clamping mechanism, the fixing plate, the guide rail and the shift lever, the big data processing components and the power cord can be quickly disassembled and assembled, and the power connector of the power cord can also be protected by the main wire harness sleeve, the auxiliary wire harness sleeve and the shift lever. Thus, several power cords can be distinguished by the main wire harness sleeve, the auxiliary wire harness sleeve and the shift lever, so that the staff can quickly distinguish and locate different power cords, which not only reduces the maintenance cost of the big data processing components and the power cord, but also reduces the time for disassembly and assembly of the big data processing components and the power cord, thereby improving work efficiency.
[0014] The power cord is inserted into the inside of the auxiliary wiring harness sleeve, so that the power cord pushes the spring sheet to deform, and the spring sheet releases elastic force to apply pressure to the power cord, so that the pressure block on the spring sheet clamps and fixes the power cord, and the power cord is inserted into the inside of the main wiring harness sleeve and the auxiliary wiring harness sleeve, so that people can quickly classify and fix several power cords, reduce the preparation work before installation, and further shorten the installation time.
[0015] The main wiring harness sleeve is inserted into the interior of the gear lever, so that the gear lever and the limit rod cooperate to limit the gear lever, and the gear lever limits the limit rod, to prevent the main wiring harness sleeve from colliding with the big data processing component due to excessive elastic force released by the main spring, thereby damaging the main wiring harness sleeve or the big data processing component, thereby improving the safety of the device.
[0016] By pushing the lock frame to move, the lock frame drives several handles to move, and several handles drive several drive disks to rotate, so that the lock frame moves several power cords at the same time, and several power cords are plugged in and disconnected from the big data processing component at the same time, which is convenient for staff to quickly disassemble and assemble the big data processing component, thereby improving the convenience of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 It is a schematic diagram of the structure of the heat conducting pipe of the present invention; Figure 3 It is a schematic diagram of the structure of the fixing device of the present invention; Figure 4 It is a structural schematic diagram of the fixing plate of the present invention; Figure 5 It is a structural schematic diagram of the guide rail of the present invention; Figure 6 It is a structural schematic diagram of the gear lever of the present invention; Figure 7 It is a structural schematic diagram of the main wiring harness sleeve of the present invention; Figure 8 It is a structural schematic diagram of the auxiliary wiring harness sleeve of the present invention; Fig. 9 It is a structural schematic diagram of the through slot of the present invention; Fig.10 For the present invention Figure 5 A schematic diagram of the local enlarged structure at point A in the middle; Fig.11 It is a schematic diagram of the structure of the shrapnel of the present invention; Fig.12 It is a structural schematic diagram of the through groove of the present invention.
[0018] Among them: 1. data cabinet; 2. cabinet door; 3. heat dissipation port; 4. heat pipe; 5. big data processing component; 6. fixing device; 7. power cord; 601. fixing plate; 602. guide rail; 603. gear lever; 604. lock frame; 605. main wiring harness sleeve; 606. drive disk; 607. support rod; 608. limit rod; 609. secondary wiring harness sleeve; 610. harness ring; 611. limit block; 612. main spring; 613. main transmission block; 614. secondary transmission block; 615. positioning plate; 616. lever; 617. through groove; 618. spring; 619. slider; 620. wedge block; 621. secondary spring; 101. flip plate; 102. ventilation plate. DETAILED DESCRIPTION
[0019] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further described below in conjunction with specific embodiments, but the following embodiments are only preferred embodiments of the present invention, not all. Based on the embodiments in the implementation mode, other embodiments obtained by those skilled in the art without creative work all belong to the protection scope of the present invention. The experimental methods in the following embodiments, unless otherwise specified, are conventional methods, and the materials, reagents, etc. used in the following embodiments, unless otherwise specified, can all be obtained from commercial channels.
[0020] Embodiment: The present invention provides as Figure 1 A big data processing device based on the Internet of Things is shown, comprising: A data cabinet 1 is provided with a cabinet door 2 on the front side of the data cabinet 1, and the middle part of the data cabinet 1 is recessed inward to form a placement cavity, a plurality of big data processing components 5 for processing big data are arranged inside the placement cavity, a plurality of power cords 7 for providing power are also arranged on the big data processing components 5, a heat dissipation port 3 for cooling the big data processing components 5 is arranged on the top of the data cabinet 1, and a plurality of heat pipes 4 for cooling the big data processing components 5 are also arranged on both sides of the data cabinet 1, and the big data processing components 5 are composed of a server of model R4900G3, a data storage device of NS8500G2 and a fiber optic switch of FS8730.
[0021] As can be seen from the above, when in use, after placing several big data processing components 5 that need to be installed into the data cabinet 1, several power cords 7 are connected to the big data processing components 5, and then several big data processing components 5 are fixed inside the data cabinet 1, and data is transmitted to the big data processing components 5 through the power cords 7, and the big data processing components 5 are used to process the data, and the data cabinet 1 and the big data processing components 5 are cooled through the heat dissipation ports 3 and the big data processing components 5.
[0022] refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Fig.12 As shown, the data cabinet 1 is provided with a plurality of fixing devices 6 for facilitating the installation of the big data processing component 5 and the power cord 7, and a switch mechanism for adjusting the fixing device 6 is also provided between the big data processing component 5 and the fixing device 6; The fixing device 6 includes a fixing plate 601 fixed inside the data cabinet 1, and two guide rails 602 are arranged on the top of the fixing plate 601 for facilitating the sliding of the big data processing component 5. A lever 603 for limiting the power cord 7 is fixed between the two guide rails 602. The lever 603 is provided with a plurality of wire holes for facilitating the movement of the power cord 7. The lever 603 is provided with a plurality of wire mechanisms for facilitating the insertion of the power cord 7 into the big data processing component 5. A wire clamping mechanism for clamping the power cord 7 is arranged at one end of the wire mechanism away from the big data processing component 5. The switch mechanism is arranged below the fixing plate 601, and the bottom of the switch mechanism is in contact with the wire clamping mechanism. The power cord 7 is fixed by the wire clamping mechanism so that the power cord 7 is fixed in the wire mechanism to prevent the power cord 7 from slipping from the wire mechanism when moving. The power cord 7 is driven to move by the wire mechanism so that the power cord 7 passes through the lever 603 and is inserted into the inside of the big data processing component 5. The power cord 7 installed on the big data processing component 5 is opened and closed uniformly by the switch mechanism. A clamping block is provided on the big data processing component 5, and an extension portion is extended toward the middle of the two clamping blocks from one end away from the big data processing component 5. A protrusion matched with the clamping block is provided on the opposite side of the two guide rails 602, and a groove matched with the extension portion is provided on the protrusion. The protrusion is set to be T-shaped, and the clamping block is slidably installed on the protrusion. Through the cooperation between the clamping block and the protrusion, the big data processing component 5 is convenient to slide quickly on the guide rail 602.
[0023] The wire mechanism includes a main wire harness sleeve 605 inserted on the gear lever 603 and a support rod 607 fixed on the gear lever 603. The end of the support rod 607 away from the gear lever 603 is provided with a drive disk 606. The end of the main wire harness sleeve 605 away from the gear lever 603 is connected to the wire clamping mechanism. A positioning plate 615 is also fixed on the side of the gear lever 603. The end of the positioning plate 615 away from the gear lever 603 is fixed with a wire tie ring 610. The top of the wire tie ring 610 is fixed with an auxiliary A main spring 612 is arranged between the transmission block 614, the auxiliary transmission block 614 and the wire-holding mechanism, the bottom of the driving disk 606 is rotatably mounted on the support rod 607, and the side of the driving disk 606 is in contact with the wire-holding mechanism, pushing the driving disk 606 to rotate around the support rod 607, so that the driving disk 606 contacts the wire-holding mechanism and then pushes the wire-holding mechanism to move, so that the wire-holding mechanism drives the power cord 7 and the main wiring harness sleeve 605 to move, so that the power cord 7 is separated from the big data processing component 5.
[0024] One end of the driving disk 606 is provided with an inclined surface adapted to the main transmission block 613, and a positioning groove is also provided on the outer wall of the driving disk 606. The end of the driving disk 606 away from the support rod 607 is also provided with a handle for driving the driving disk 606 to rotate. The driving disk 606 is driven to rotate by pushing the handle, so that the driving disk 606 rotates around the support rod 607, so that the inclined surface of the driving disk 606 contacts the side of the main transmission block 613 away from the main spring 612, so that the driving disk 606 drives the secondary wiring harness sleeve 609 to move through the main spring 612, so that the secondary wiring harness sleeve 609 drives the power cord 7 to separate from the big data processing component 5, and the main The cooperation between the transmission block 613 and the inclined surface limits the driving disk 606 to prevent the elastic force released by the main spring 612 from pushing the driving disk 606 to move. The driving disk 606 can also be driven to rotate by pushing the handle to make the driving disk 606 rotate around the support rod 607, so that the positioning groove of the driving disk 606 contacts the gear lever 603, and the gear lever 603 cooperates with the positioning groove of the driving disk 606 to limit the driving disk 606. The main spring 612 releases the elastic force to drive the auxiliary transmission block 614 to move, so that the auxiliary transmission block 614 drives the power cord 7 to move through the auxiliary wiring harness sleeve 609, so that the power cord 7 is plugged into the interior of the big data processing component 5.
[0025] A secondary spring 621 is fixed to the top of the lock frame 604, a slider 619 is fixed to the top of the secondary spring 621, a wedge block 620 is fixed to the top of the slider 619, a wedge groove matched with the wedge block 620 is provided at the bottom of the guide rail 602, and a lifting groove matched with the lever 616 is provided in the middle of the slider 619. The elastic force of the secondary spring 621 pulls the lock frame 604 upward and moves the lock frame 604 to the top of the handle, thereby facilitating people to push several drive disks 606 individually.
[0026] A flip plate 101 and a plurality of ventilation plates 102 are provided at one end of the data cabinet 1 away from the cabinet door 2. A plurality of ventilation holes are provided on the flip plate 101. The flip plate 101 is rotatably installed on the upper half of the data cabinet 1, and the plurality of ventilation plates 102 are rotatably installed on the lower half of the end of the data cabinet 1 away from the cabinet door 2. By pulling the flip plate 101 to rotate, the flip plate 101 is separated from the data cabinet 1, so that it is convenient for people to turn the drive disk 606 from the rear of the data cabinet 1, which is convenient and quick. The air intake of the data cabinet 1 is adjusted by a plurality of rotatable ventilation plates 102, so that the interior of the data cabinet 1 can be quickly cooled.
[0027] By adopting the above technical solution: When in use, the driving disk 606 is driven to rotate by pushing the handle, so that the driving disk 606 rotates around the support rod 607, so that the inclined surface of the driving disk 606 contacts the side of the main transmission block 613 away from the main spring 612, so that the driving disk 606 drives the secondary wiring harness sleeve 609 to move through the main spring 612, so that the secondary wiring harness sleeve 609 drives the power cord 7 to separate from the big data processing component 5, and the power cord 7 moves to the inner wall of the blocking rod 603 to protect the power connector of the power cord 7. The main transmission block 613 cooperates with the inclined surface to limit the driving disk 606 to prevent the elastic force released by the main spring 612 from pushing the driving disk 606 to move. The driving disk 606 can also be driven to rotate by pushing the handle so that the driving disk 606 rotates around the support rod 6 07 rotates, so that the positioning groove of the driving disk 606 contacts the shift rod 603, so that the shift rod 603 cooperates with the positioning groove of the driving disk 606 to limit the driving disk 606, and the main spring 612 releases the elastic force to drive the auxiliary transmission block 614 to move, so that the auxiliary transmission block 614 drives the power cord 7 to move through the auxiliary wiring harness sleeve 609, and the power cord 7 is inserted into the inside of the big data processing component 5, thereby realizing rapid disassembly and assembly of the big data processing component 5 and the power cord 7, and the main wiring harness sleeve 605 and the auxiliary wiring harness sleeve 609 can also protect the power cord 7, which not only reduces the maintenance cost of the big data processing component 5 and the power cord 7, but also reduces the time for disassembly and assembly of the big data processing component 5 and the power cord 7, thereby improving work efficiency.
[0028] Secondly, refer to Figure 7 , Figure 8 , Fig. 9 and Fig.11As shown, the wire clamping mechanism includes a secondary wiring harness sleeve 609 fixed on the main wiring harness sleeve 605, and two through grooves 617 are provided on the secondary wiring harness sleeve 609. Two spring pieces 618 for clamping the power cord 7 are fixed inside the two through grooves 617, and a plurality of pressure blocks are arranged on the opposite sides of the two spring pieces 618. A main transmission block 613 is fixed on the top of the secondary wiring harness sleeve 609, and the free end of the main spring 612 is fixed to the side of the main transmission block 613. The side of the main transmission block 613 away from the main spring 612 is in contact with the driving disk 606. After the power cord 7 is inserted into the interior of the secondary wiring harness sleeve 609, the power cord 7 pushes the spring piece 618 to deform, so that the spring piece 618 releases the elastic force to apply pressure to the power cord 7, so that the pressure blocks on the spring piece 618 clamp and fix the power cord 7, so that the power cord 7 is inserted into the interior of the main wiring harness sleeve 605 and the secondary wiring harness sleeve 609.
[0029] By adopting the above technical solution: When in use, after the power cord 7 is inserted into the inside of the secondary wiring harness sleeve 609, the power cord 7 pushes the spring piece 618 to deform, so that the spring piece 618 releases the elastic force to apply pressure to the power cord 7, and the pressure block on the spring piece 618 clamps and fixes the power cord 7, so that the power cord 7 is inserted into the inside of the main wiring harness sleeve 605 and the secondary wiring harness sleeve 609, thereby facilitating people to quickly classify and fix several power cords 7, reducing the preparation work before installation, and further shortening the installation time.
[0030] Again, reference Figure 6 , Figure 7 and Figure 8 As shown, a limiting rod 608 is fixed to the outer wall of the main wiring harness sleeve 605, and two limiting blocks 611 are fixed to the outer wall of the wiring ring 610. One end of the limiting rod 608 away from the main wiring harness sleeve 605 passes through the limiting block 611 and then extends to the other side of the limiting block 611. The limiting block 611 limits the limiting rod 608, so that the limiting rod 608 limits the main wiring harness sleeve 605 to prevent the main wiring harness sleeve 605 from rotating when moving, thereby causing the power cord 7 to rotate, resulting in poor contact between the power cord 7 and the big data processing component 5, affecting the normal use of the big data processing component 5.
[0031] By adopting the above technical solution: When in use, when the main wiring harness sleeve 605 is inserted into the interior of the gear lever 603, the gear lever 603 is limited by the cooperation between the gear lever 603 and the limiting rod 608, so that the gear lever 603 limits the limiting rod 608 to prevent the main spring 612 from releasing excessive elastic force, causing the main wiring harness sleeve 605 to collide with the big data processing component 5, thereby damaging the main wiring harness sleeve 605 or the big data processing component 5, thereby improving the safety of the device.
[0032] Finally, reference Figure 1and Fig.12 As shown, the switch mechanism includes a lock frame 604 arranged below the guide rail 602, the bottom of the lock frame 604 is recessed inward to form a drive groove, the lock frame 604 is slidably installed at the bottom of the guide rail 602, and the handle is arranged inside the drive groove. By pushing the lock frame 604 to move, the lock frame 604 drives several handles to move, and the several handles drive several drive disks 606 to rotate, so that the lock frame 604 moves several power cords 7 at the same time, so that the several power cords 7 can be plugged in and disconnected from the big data processing component 5 at the same time.
[0033] By adopting the above technical solution: When in use, by pushing the lock frame 604 to move, the lock frame 604 drives several handles to move, and the several handles drive several drive disks 606 to rotate, so that the lock frame 604 moves several power cords 7 at the same time, and several power cords 7 are connected and disconnected from the big data processing component 5 at the same time, which is convenient for the staff to quickly disassemble and assemble the big data processing component 5, thereby improving the convenience of the device.
[0034] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited thereto, and various changes can be made within the knowledge scope of technicians in the relevant technical field without departing from the purpose of the present invention.
Claims
1. A big data processing device based on the Internet of Things, characterized in that: include: A data cabinet (1), wherein a cabinet door (2) is arranged on the front of the data cabinet (1), and the middle of the data cabinet (1) is recessed inward to form a placement cavity, a plurality of big data processing components (5) for processing big data are arranged inside the placement cavity, and a plurality of power cords (7) for providing power are also arranged on the big data processing components (5), a heat dissipation port (3) for cooling the big data processing components (5) is arranged on the top of the data cabinet (1), and a plurality of heat conduction pipes (4) for cooling the big data processing components (5) are also arranged on both sides of the data cabinet (1); The data cabinet (1) is provided with a plurality of fixing devices (6) for facilitating the installation of the big data processing components (5) and the power cord (7), and a switch mechanism for adjusting the fixing devices (6) is also provided between the big data processing components (5) and the fixing devices (6); The fixing device (6) comprises a fixing plate (601) fixed inside the data cabinet (1), two guide rails (602) are arranged on the top of the fixing plate (601) for facilitating the sliding of the big data processing component (5), a lever (603) for limiting the position of the power cord (7) is fixed between the two guide rails (602), a plurality of wire holes for facilitating the movement of the power cord (7) are provided on the lever (603), a plurality of wire guide mechanisms for facilitating the insertion of the power cord (7) into the big data processing component (5) are provided on the lever (603), and a wire clamping mechanism for clamping the power cord (7) is provided at one end of the wire guide mechanism away from the big data processing component (5); The big data processing component (5) is provided with a clamping block, and an extension portion is provided at one end of the two clamping blocks away from the big data processing component (5) and extending toward the middle, and a protrusion matched with the clamping block is provided on the opposite side of the two guide rails (602), and a groove matched with the extension portion is provided on the protrusion.
2. The big data processing device based on the Internet of Things according to claim 1, characterized in that: The wire mechanism comprises a main wire harness sleeve (605) inserted into the gear lever (603) and a support rod (607) fixed to the gear lever (603); a driving disk (606) is provided at one end of the support rod (607) away from the gear lever (603); one end of the main wire harness sleeve (605) away from the gear lever (603) is connected to the wire clamping mechanism; a positioning plate (615) is also fixed to the side of the gear lever (603); a wire harness ring (610) is fixed to one end of the positioning plate (615) away from the gear lever (603); a secondary transmission block (614) is fixed to the top of the wire harness ring (610); and a main spring (612) is provided between the secondary transmission block (614) and the wire clamping mechanism.
3. The big data processing device based on the Internet of Things according to claim 1, characterized in that: The wire clamping mechanism comprises a secondary wire harness sleeve (609) fixed on the main wire harness sleeve (605), two through slots (617) are provided on the secondary wire harness sleeve (609), two spring pieces (618) for clamping the power line (7) are fixed inside the two through slots (617), a plurality of pressure blocks are arranged on the opposite sides of the two spring pieces (618), and a main transmission block (613) is fixed on the top of the secondary wire harness sleeve (609).
4. The big data processing device based on the Internet of Things according to claim 2, characterized in that: One end of the driving disk (606) is provided with an inclined surface adapted to the main transmission block (613), and an outer wall of the driving disk (606) is also provided with a positioning groove. An end of the driving disk (606) away from the support rod (607) is also provided with a handle for driving the driving disk (606) to rotate.
5. The big data processing device based on the Internet of Things according to claim 2, characterized in that: A limiting rod (608) is fixed to the outer wall of the main wiring harness sleeve (605), and two limiting blocks (611) are fixed to the outer wall of the harness ring (610); one end of the limiting rod (608) away from the main wiring harness sleeve (605) passes through the limiting block (611) and then extends to the other side of the limiting block (611).
6. The big data processing device based on the Internet of Things according to claim 4, characterized in that: The switch mechanism comprises a lock frame (604) arranged below the guide rail (602), the bottom of the lock frame (604) is recessed inwards to form a drive groove, the lock frame (604) is slidably mounted on the bottom of the guide rail (602), and the handle is arranged inside the drive groove.
7. The big data processing device based on the Internet of Things according to claim 6, characterized in that: A secondary spring (621) is fixed to the top of the lock frame (604), a slider (619) is fixed to the top of the secondary spring (621), a wedge block (620) is fixed to the top of the slider (619), a wedge groove matching the wedge block (620) is provided at the bottom of the guide rail (602), and a lifting groove matching the lever (616) is provided in the middle of the slider (619).
8. The big data processing device based on the Internet of Things according to claim 1, characterized in that: The data cabinet (1) is provided with a flip plate (101) and a plurality of ventilation plates (102) at one end away from the cabinet door (2); the flip plate (101) is provided with a plurality of ventilation holes; the flip plate (101) is rotatably mounted on the upper half of the data cabinet (1); and the plurality of ventilation plates (102) are rotatably mounted on the lower half of the end of the data cabinet (1) away from the cabinet door (2).
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