A blockchain management operation device for a computer and its usage method
By designing a blockchain management computing device with automatic heat dissipation and timed cleaning, the cumbersome problems of equipment heating and dustproof network cleaning are solved, and the stable operation and convenient maintenance of the equipment are achieved.
Patent Information
- Application Number
- CN202411789373.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2044-12-06
AI Technical Summary
Existing blockchain management computing equipment is prone to heat damage when running for a long time, and the dustproof network is cumbersome to clean, affecting the practicality and convenience of the equipment.
A computer blockchain management computing device is designed, including a heat dissipation component, a linkage trigger device and a release device. It realizes automatic heat dissipation through the linkage component, and triggers the release device to clean the dustproof network regularly after the energy storage component reaches the threshold, to assist the components to ensure the cleaning effect.
It realizes long-term heat dissipation of the equipment, avoids equipment damage, simplifies the cleaning steps of dustproof nets, and improves the practicality and convenience of the equipment.
Smart Images

Figure CN119271008B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of computer technology, and more particularly to a blockchain management computing device for a computer and a method for using the same. Background Art
[0002] In the prior art, when blockchain management computing equipment is working normally, the equipment is usually placed in a box. Since the entire equipment is in a relatively small space, the equipment is prone to heat up. Long-term operation can easily cause damage to the equipment, resulting in the equipment being unable to work normally, which is not practical enough. At the same time, if a heat dissipation port is opened on the box and a dust net is placed at the heat dissipation port, a large amount of dust will usually adhere to the surface of the dust net after the equipment is used for a long time. The dust net needs to be cleaned and replaced in time to avoid the temperature of the equipment from rising and affecting its normal operation. The working steps are cumbersome and the convenience is low. Therefore, a device is needed that can dissipate heat for a long time while regularly cleaning the dust net to avoid insufficient practicality and low convenience. Summary of the Invention
[0003] The object of the present invention is to provide a blockchain management and operation device for a computer and a method for using the same, so as to solve the problems raised in the above background technology. To achieve the above object, the present invention provides the following technical solution: a blockchain management and operation device for a computer, comprising a body, a device body for operation is provided at the bottom of the body, vents are provided on four sides of the top of the body for dissipating heat when the body is in operation, a through-hole is provided on the top of the body, a dust net is installed in the through-hole, a heat dissipation component is provided in the body, a linkage trigger device is provided at the side end of the heat dissipation component, a release device is provided on the linkage trigger device, the release device is located on one side of the dust net and at the top outside the body, an auxiliary component is provided at the side end of the release device, two auxiliary components are provided, and the two auxiliary components are symmetrically arranged on both sides of the dust net, the linkage trigger device includes an energy storage component and a linkage component, the energy storage component is provided at the side end of the heat dissipation component, and the linkage component is provided at the side end of the energy storage component.
[0004] The bridge has one end fixed to the top of the drive shaft, the other end of the bridge being connected to the crankshaft, the other end of the bridge being connected to the crankshaft, and the other end of the bridge being connected to the crankshaft.
[0005] The top of the gear selector is connected with the top of the gear selector, and the bottom of the gear selector is connected with the gear selector respectively.
[0006] Preferably, the linkage assembly includes a linkage shaft, the top of the linkage shaft is rotatably connected to the top of the machine body, the bottom of the linkage shaft is sleeved with a first transmission belt, the other end of the first transmission belt is sleeved on the outside of the energy storage disk, a linkage frame is provided on one side of the linkage shaft, the top of the linkage frame is fixedly connected to the top of the machine body, a toggle disk is rotatably connected to the linkage frame, the side end of the toggle disk is sleeved with a second transmission belt, the other end of the second transmission belt is sleeved on the top of the linkage shaft, and the linkage frame is hinged with the first toggle The cam is hinged on the end of the toggle plate to move the cam, and the cam is hinged on the end of the toggle plate to move the cam.
[0007] The top of the mating gear is rotatably connected to the top of the machine body by a mating shaft, and the side end of the mating gear is movably connected to the inner wall of the mating box by a telescopic spring.
[0008] Preferably, the cleaning assembly includes a crank, one end of the crank is mounted on the mating shaft through a one-way bearing sleeve, and the crank is located at the top of the outer side of the machine body, the side end of the crank is provided with a connecting rod, and the other end of the crank is hinged with a cleaning drive rod, the end of the cleaning drive rod away from the crank is hinged to one end of the connecting rod, the center of the connecting rod is rotatably connected to the top of the machine body, cleaning support rods are symmetrically provided on both sides of the connecting rod, and the ends of the cleaning support rods are rotatably connected to the top of the machine body, the cleaning support rod is hinged with a swing rod at one end close to the connecting rod, and the other end of the swing rod is respectively hinged at both ends of the connecting rod, and when the connecting rod rotates, it can drive the two cleaning support rods to deflect toward the dust net.
[0009] The bottom of the U-shaped cleaning rod is fixedly connected to the top of the machine body, and the fixing frame is rotatably connected to the L-shaped cleaning member, and the side end of the U-shaped cleaning member is connected to the U-shaped rod. The side end of the U-shaped rod is provided with a fixing frame, and the bottom of the fixing frame is fixedly connected to the top of the machine body. The fixing frame is rotatably connected to a tilting rod, and the bottom of the tilting rod is hinged with an L-shaped pull rod, and the end of the L-shaped pull rod away from the fixing frame is connected to a horizontally arranged clamping rod, and the end of the clamping rod away from the L-shaped pull rod is clamped in a groove on the U-shaped rod, and the side end of the clamping rod slides with the inner wall of the groove, and when the cleaning support rod deflects toward the dustproof net, it can abut against the other end of the tilting rod through the side end of the cleaning support rod, so that the tilting rod rotates on the fixing frame.
[0010] Preferably, the method for using a computer-based blockchain management computing device comprises the following steps:
[0011] S1: When the main body of the device is in operation, the drive motor is controlled to operate, thereby mobilizing the drive shaft to rotate, thereby driving the worm and the heat dissipation fan to rotate synchronously. During the rotation of the worm, the driving gear meshing with it rotates synchronously. Under the cooperation of the linkage rod and the auxiliary connecting rod, the entire mounting bracket swings around one end of the drive rod, thereby causing the rotating heat dissipation fan to swing. Under the cooperation of the vents, the interior of the body is cooled in all directions.
[0012] S2: When the heat dissipation fan blade is in the process of swinging, it drives the mounting bracket and the driving gear to swing synchronously. Whenever the driving gear swings toward one side of the auxiliary gear, since the driving gear always keeps rotating, whenever the driving gear contacts and meshes with the auxiliary gear, it synchronously drives the auxiliary gear and the control frame to rotate, thereby driving the two first control rods to slide in the arc-shaped slide groove and move away from the second control rod, thereby stretching the control spring. At this time, the energy storage disk rotates at the bottom of the energy storage frame through the rotating shaft under the action of the control spring. Whenever the driving gear moves away from the auxiliary gear and disengages, since the control spring has not reset at this time, the energy storage disk still keeps rotating until the next time the driving gear and the auxiliary gear mesh. Through the provided first transmission belt, the linkage shaft is driven to rotate, and through the provided second transmission belt, the toggle plate is driven to rotate synchronously on the linkage frame, and then through the provided auxiliary rod and pull rod, under the action of the first toggle rod and the second toggle rod, the toggle member and the linkage toggle member are driven to regularly move away from and approach the toggle plate, and during the movement, the toggle member swings at the end hinged to the pull rod;
[0013] S3: When the toggle plate rotates and drives the toggle member to move, it cooperates with the connecting frame, thereby driving the matching toothed rod to compress the telescopic spring in the matching box through the sliding block, and after the toggle member is separated from the connecting frame, the matching toothed rod slides under the release force of the telescopic spring, thereby driving the matching gear meshed with it to drive the matching shaft to rotate, and then driving the crank to rotate. During the rotation of the crank, the connecting rod is driven to swing back and forth by the cleaning drive rod, and the cleaning support rod is driven to deflect back and forth regularly by the swing rod, and the dust screen is cleaned during the deflection process;
[0014] S4: When the cleaning support rod is deflected to a certain angle, it contacts one end of the tilting rod, causing the tilting rod to deflect on the fixed frame, thereby driving the L-shaped cleaning member to deflect on the auxiliary frame through the L-shaped pull rod, the card rod and the slot, so that the L-shaped cleaning member and the cleaning support rod fit together, thereby self-cleaning the cleaning support rod.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] In the present invention, when the device is in use, when the main body of the device is running, by controlling the operation of the heat dissipation component, the heat dissipation work inside the body is performed for a long time with the cooperation of the heat dissipation component and the vent, thereby avoiding heating of the device during long-term use, and further avoiding damage to the device and malfunction, thereby improving practicality. At the same time, during the operation of the heat dissipation component, energy is stored by the set energy storage component. After reaching a certain threshold, the release device is triggered to work through the linkage component, thereby automatically cleaning the dust net on the top of the body. In the cleaning process, the cleaning end on the release device is self-cleaned by the set auxiliary component, thereby avoiding a large amount of dust adhering to the surface of the dust net, thereby avoiding the need for staff to clean and replace the dust net, and further avoiding the temperature rise of the device. At the same time, the auxiliary component is used to ensure the cleaning effect, simplify the working steps and improve the convenience, thereby achieving the effect of long-term heat dissipation of the device while regularly cleaning the dust net, thereby avoiding the effect of insufficient practicality and low convenience.
[0017] In the present invention, when the main body of the device is running, the drive motor is controlled to work, thereby mobilizing the drive shaft to rotate, thereby driving the worm and the heat dissipation fan to rotate synchronously. During the rotation of the worm, the drive gear engaged with it rotates synchronously. With the cooperation of the linkage rod and the auxiliary connecting rod, the mounting bracket as a whole swings around one end of the drive rod as the center, thereby causing the rotating heat dissipation fan to swing. With the cooperation of the vents, the interior of the body is cooled in multiple directions, thereby avoiding heat generation during long-term use of the device, thereby avoiding damage to the device and malfunctioning, thereby improving practicality.
[0018] In the present invention, when the heat dissipation fan blade is in the process of swinging, it drives the mounting bracket and the driving gear to swing synchronously. Whenever the driving gear swings toward one side of the auxiliary gear, since the driving gear always keeps rotating, whenever the driving gear contacts and meshes with the auxiliary gear, the auxiliary gear and the control frame are synchronously driven to rotate, thereby driving the two first control rods to slide in the arc-shaped slide groove and away from the second control rod, thereby stretching the control spring. At this time, the energy storage disk rotates at the bottom of the energy storage frame through the rotating shaft under the action of the control spring. Whenever the driving gear is away from the auxiliary gear and disengages, since the control spring has not yet reset, the energy storage disk still rotates. Then it keeps rotating until the next driving gear and the auxiliary gear are meshed, so that the energy storage disk always rotates, and the linkage shaft is driven to rotate through the first transmission belt, and the toggle disk is driven to rotate synchronously on the linkage frame through the second transmission belt, and then through the auxiliary rod and the pull rod, under the action of the first toggle rod and the second toggle rod, the toggle member and the linkage toggle member are driven to regularly move away from and approach the toggle disk, and in the process of moving, the toggle member swings with the end hinged to the pull rod, thereby facilitating the completion of the process of storing and releasing energy, thereby further improving the convenience of using the device.
[0019] When the cam is in a state of being rotated, the cam is moved along the axis of rotation of the gear train, and the gear train is moved along the axis of rotation of the gear train, so that the gear train is moved along the axis of the gear train, and the gear train is moved along the axis of the gear train, so that the cam is moved along the axis of the gear train, and the gear train is moved along the axis of the gear train, so that the cam is moved along the axis of the gear train, and the gear train is moved along the axis of the gear train, so that the cam is moved along the axis of the gear train,
[0020] In the present invention, when the cleaning support rod is deflected to a certain angle, it abuts against one end of the tilting rod, causing the tilting rod to deflect on the fixed frame, thereby driving the L-shaped cleaning member to deflect on the auxiliary frame through the cooperation of the L-shaped pull rod, the clamping rod and the slot, so that the L-shaped cleaning member and the cleaning support rod fit together, thereby self-cleaning the cleaning support rod, thereby ensuring the cleaning effect of the dustproof net on each time the cleaning support rod is used, and further improving the stability of the device during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1It is a schematic diagram of the three-dimensional structure of the present invention;
[0022] Figure 2 is a cross-sectional view of the body of the present invention;
[0023] Figure 3 It is a schematic diagram of the local three-dimensional structure of the present invention Figure 1 ;
[0024] Figure 4 Schematic diagram of the three-dimensional structure of the heat dissipation component in the present invention;
[0025] Figure 5 It is a partial three-dimensional structural diagram of the heat dissipation component and the linkage trigger device in the present invention;
[0026] Figure 6 Schematic diagram of the three-dimensional structure of the energy storage component in the present invention;
[0027] Figure 7 It is a schematic diagram of the partial explosion three-dimensional structure of the energy storage component in the present invention;
[0028] Figure 8 The schematic diagram of the partial three-dimensional structure of the linkage trigger device in the present invention is as follows: Figure 1 ;
[0029] Figure 9 It is a schematic diagram of the local three-dimensional structure of the present invention Figure 2 ;
[0030] Figure 10 for Figure 9 A magnified schematic diagram of area A in the middle;
[0031] Figure 11 Schematic diagram of the partial three-dimensional structure of the release device in the present invention Figure 1 ;
[0032] Figure 12 Schematic diagram of the partial three-dimensional structure of the release device in the present invention Figure 2 ;
[0033] Figure 13 Schematic diagram of the three-dimensional structure of the auxiliary component in the present invention;
[0034] Figure 14 for Figure 13 A magnified schematic diagram of area B in the middle;
[0035] Figure 15 The schematic diagram of the partial three-dimensional structure of the linkage trigger device in the present invention is as follows: Figure 2 ;
[0036] Figure 16 The schematic diagram of the partial three-dimensional structure of the linkage trigger device in the present invention is as follows: Figure 3 .
[0037] In the figure: 1. body; 2. main body of the device; 3. vent; 4. through-hole; 5. dust screen; 6. heat dissipation assembly; 61. heat dissipation base; 62. drive rod; 63. mounting bracket; 64. drive shaft; 65. heat dissipation fan; 66. drive motor; 67. worm; 68. drive gear; 69. linkage rod; 70. auxiliary linkage; 8. linkage trigger device; 81. energy storage assembly; 811. energy storage frame; 812. energy storage disk; 813. rotating shaft; 814. auxiliary gear; 815. control frame; 816. first control lever; 817. arc-shaped slide; 818. second control lever; 819. control spring; 82. linkage assembly; 821. linkage shaft; 822. first transmission belt; 823. linkage frame; 824. toggle plate; 825. second transmission Belt; 826, first toggle lever; 827, toggle member; 828, linkage toggle member; 829, auxiliary rod; 830, pull rod; 831, second toggle lever; 9, release device; 91, matching component; 911, matching box; 912, matching toothed rod; 913, telescopic spring; 914, sliding block; 915, connecting frame; 916, matching gear; 917, matching shaft; 92, cleaning component; 921, crank; 922, one-way bearing; 923, connecting rod; 924, cleaning drive rod; 925, cleaning support rod; 926, swing rod; 10, auxiliary component; 101, auxiliary frame; 102, L-shaped cleaning member; 103, U-shaped rod; 104, fixing frame; 105, tilting rod; 106, L-shaped pull rod; 107, clamping rod; 108, slotting. DETAILED DESCRIPTION
[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0039] See also Figures 1 to 16The present invention provides a technical solution: a blockchain management and computing device for a computer, comprising a body 1, wherein the bottom of the body 1 is provided with a device main body 2 for operation, the top four sides of the body 1 are provided with vents 3 for heat dissipation when the body 1 is running, the top of the body 1 is opened with a through-hole 4, a dustproof net 5 is installed in the through-hole 4, a heat dissipation component 6 is provided in the body 1, and a linkage trigger device 8 is provided at the side end of the heat dissipation component 6, and a release device 9 is provided on the linkage trigger device 8, the release device 9 is located on one side of the dustproof net 5 and at the top outside the body 1, an auxiliary component 10 is provided at the side end of the release device 9, two auxiliary components 10 are provided, and the two auxiliary components 10 are symmetrically arranged on both sides of the dustproof net 5, the linkage trigger device 8 includes an energy storage component 81 and a linkage component 82, the energy storage component 81 is arranged at the side end of the heat dissipation component 6, and the linkage component 82 is arranged at the side end of the energy storage component 81.
[0040] In this embodiment, Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 As shown, the heat dissipation assembly 6 includes a heat dissipation base 61, the top of the heat dissipation base 61 is fixedly connected to the top of the body 1, the bottom of the heat dissipation base 61 is fixedly connected to the drive rod 62, one end of the drive rod 62 is hinged to one end of the mounting bracket 63, and the mounting bracket 63 is rotatably connected to a drive shaft 64, and the end of the drive shaft 64 away from the mounting bracket 63 is provided with a heat dissipation fan 65, and the side of the mounting bracket 63 away from the heat dissipation fan 65 is provided with a drive motor 66, and the output end of the drive motor 66 is connected to the end of the drive shaft 64. Then, a worm 67 is sleeved on the drive shaft 64, and the inner wall of the worm 67 is fixedly connected to the outer side of the drive shaft 64. The bottom of the other end of the mounting bracket 63 is rotatably connected to a drive gear 68, and the side end of the drive gear 68 is engaged with the side end of the worm 67. A linkage rod 69 is provided on the top of the mounting bracket 63, and the end of the linkage rod 69 is connected to the center of the drive gear 68. The other end of the linkage rod 69 is hinged to an auxiliary link 70, and the other end of the auxiliary link 70 is hinged to the end of the drive rod 62 away from the mounting bracket 63;
[0041] When the device body 2 is running, the drive motor 66 is controlled to work, thereby mobilizing the drive shaft 64 to rotate, thereby driving the worm 67 and the heat dissipation fan 65 to rotate synchronously. During the rotation of the worm 67, the drive gear 68 engaged with it rotates synchronously. With the cooperation of the linkage rod 69 and the auxiliary connecting rod 70, the mounting bracket 63 as a whole swings around one end of the drive rod 62 as the center, thereby causing the rotating heat dissipation fan 65 to swing. With the cooperation of the vent 3, the interior of the body 1 is cooled in multiple directions, thereby avoiding heat generation during long-term use of the device, thereby avoiding damage to the device and malfunctioning, thereby improving practicality.
[0042] In this embodiment, Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 、 Figure 10 、 Figure 15 and Figure 16 As shown, the energy storage assembly 81 includes an energy storage frame 811, the top of the energy storage frame 811 is fixedly connected to the top of the body 1, and the energy storage frame 811 is located on one side of the heat dissipation base 61, the bottom of the energy storage frame 811 is rotatably connected to the energy storage disk 812, and the center of the bottom of the energy storage disk 812 is rotatably connected to the auxiliary gear 814 through the rotating shaft 813, and the tooth groove end of the auxiliary gear 814 can be engaged with the tooth groove end of the driving gear 68, and the top of the auxiliary gear 814 is connected to the control frame 815, and the center of the control frame 815 is fixedly connected to the center of the auxiliary gear 814. Both ends of the 812 are fixedly connected to a first control rod 816, the top of the first control rod 816 slides through the bottom of the energy storage disk 812 and is respectively located in an arc-shaped slide groove 817, the side end of the first control rod 816 slides with the inner wall of the arc-shaped slide groove 817, and each side end of the arc-shaped slide groove 817 is provided with a vertically arranged second control rod 818, and the second control rod 818 is located in the energy storage disk 812, the bottom of the second control rod 818 is connected to the bottom of the energy storage disk 812, and the side end of the second control rod 818 is movably connected to the side end of the first control rod 816 through a control spring 819;
[0043] The linkage assembly 82 includes a linkage shaft 821, the top of the linkage shaft 821 is rotatably connected to the top of the body 1, the bottom of the linkage shaft 821 is sleeved with a first transmission belt 822, the other end of the first transmission belt 822 is sleeved on the outside of the energy storage disk 812, and a linkage frame 823 is provided on one side of the linkage shaft 821. The top of the linkage frame 823 is fixedly connected to the top of the body 1, and the linkage frame 823 is L-shaped as a whole. A toggle disk 824 is rotatably connected to the linkage frame 823, and a side end of the toggle disk 824 is sleeved with a second transmission belt 825. The other end of the second transmission belt 825 is sleeved on the top of the linkage shaft 821, and a first toggle rod is hinged on the linkage frame 823. 826 and is located on one side of the toggle disk 824, and the two ends of the first toggle rod 826 are respectively hinged with a toggle member 827 and a linkage toggle member 828, one end of the linkage toggle member 828 is coaxially arranged with the end of the toggle disk 824 to which the first toggle rod 826 is hinged, and the other end of the linkage toggle member 828 is hinged with an auxiliary rod 829, and the other end of the auxiliary rod 829 is hinged on the toggle disk 824, and the auxiliary rod 829 is hinged on the end of the toggle disk 824 to which a pull rod 830 is hinged, and the other end of the pull rod 830 is hinged on the end of the toggle member 827 close to the toggle disk 824, and the toggle member 827 and the linkage toggle member 828 are adjacent and away from the toggle disk 824 and are hinged through a second toggle rod 831;
[0044] When the heat dissipation fan 65 is in the process of swinging, it drives the mounting bracket 63 and the driving gear 68 to swing synchronously. Whenever the driving gear 68 swings toward one side of the auxiliary gear 814, since the driving gear 68 always keeps rotating, whenever the driving gear 68 contacts and meshes with the auxiliary gear 814, it synchronously drives the auxiliary gear 814 and the control frame 815 to rotate, thereby driving the two first control rods 816 to slide in the arc-shaped slide groove 817 and away from the second control rod 818, thereby stretching the control spring 819. At this time, the energy storage disk 812 rotates at the bottom of the energy storage frame 811 through the rotating shaft 813 under the action of the control spring 819. Whenever the driving gear 68 is away from the auxiliary gear 814 and disengages, since the control spring 819 has not yet reset, the energy storage disk 812 It continues to rotate until the next drive gear 68 and the auxiliary gear 814 engage, so that the energy storage disk 812 always rotates, and the linkage shaft 821 is driven to rotate through the first transmission belt 822, and the second transmission belt 825 is driven to drive the toggle disk 824 to rotate synchronously on the linkage frame 823, and then through the auxiliary rod 829 and the pull rod 830, under the action of the first toggle rod 826 and the second toggle rod 831, the toggle member 827 and the linkage toggle member 828 are driven to regularly move away from and approach the toggle disk 824, and in the process of moving, the toggle member 827 swings at the end hinged to the pull rod 830, thereby facilitating the completion of the process of storing and releasing power, thereby further improving the convenience of using the device.
[0045] In this embodiment, Figure 9 、 Figure 10 、 Figure 11 and Figure 12As shown, the release device 9 includes a matching component 91 and a cleaning component 92, the matching component 91 is arranged at the side end of the linkage frame 823, the cleaning component 92 is arranged at the top of the outside of the body 1 and is located on the matching component 91, the matching component 91 includes a matching box 911, the matching box 911 is arranged at the side end of the linkage frame 823, the top of the matching box 911 is fixedly connected to the top inside the body 1, a matching toothed groove rod 912 is slidingly provided in the matching box 911, the side end of the matching toothed groove rod 912 is movably connected to the inner wall of the matching box 911 through a telescopic spring 913, the toothed groove end of the matching toothed groove rod 912 is arranged away from the linkage frame 823, and the matching toothed groove rod 912 is close to the linkage frame A sliding block 914 is fixedly connected to one side of 823, and the side end of the sliding block 914 passes through the side wall of the matching box 911 and is located on the outside of the matching box 911. A connecting frame 915 is fixedly connected to one side of the sliding block 914 and is located at the side end of the toggle member 827. When the toggle member 827 moves, it can drive the matching toothed rod 912 to compress the telescopic spring 913 through the connecting frame 915, and disengage from the connecting frame 915 when swinging. A matching gear 916 is provided on the side of the matching box 911 away from the linkage frame 823. The top of the matching gear 916 is rotatably connected to the top of the body 1 through a matching shaft 917. The side end of the matching gear 916 can be meshed with the toothed end of the matching toothed rod 912;
[0046] The cleaning assembly 92 includes a crank 921, one end of which is sleeved on the matching shaft 917 through a one-way bearing 922, and the crank 921 is located at the top of the outer side of the machine body 1. The side end of the crank 921 is provided with a connecting rod 923, and the other end of the crank 921 is hinged to a cleaning drive rod 924. The cleaning drive rod 924 is hinged to one end of the connecting rod 923 away from the crank 921. The center of the connecting rod 923 is rotatably connected to the top of the machine body 1. Cleaning support rods 925 are symmetrically provided on both sides of the connecting rod 923, and the ends of the cleaning support rods 925 are rotatably connected to the top of the machine body 1. The cleaning support rod 925 is hinged to a swing rod 926 at one end close to the connecting rod 923, and the other ends of the swing rod 926 are respectively hinged at both ends of the connecting rod 923. When the connecting rod 923 rotates, it can drive the two cleaning support rods 925 to deflect toward the dustproof net 5.
[0047] When the toggle plate 824 rotates and drives the toggle member 827 to move, it cooperates with the connecting frame 915, thereby driving the matching toothed rod 912 to compress the telescopic spring 913 in the matching box 911 through the sliding block 914, and after the toggle member 827 is separated from the connecting frame 915, the matching toothed rod 912 slides under the release force of the telescopic spring 913, thereby driving the matching gear 916 meshing therewith to drive the matching shaft 917 to rotate, and then drives the crank 921 to rotate. The one-way bearing 922 is provided, so that the crank 921 can only rotate in one direction. During the rotation of 921, the connecting rod 923 is driven to swing back and forth by the cleaning driving rod 924, and the cleaning support rod 925 is driven to deflect back and forth regularly by the swing rod 926, and the dust net 5 is cleaned during the deflection, so that the cleaning support rod 925 can be controlled to work regularly, thereby avoiding a large amount of dust adhering to the surface of the dust net 5, thereby avoiding the need for staff to clean and replace the dust net 5, and further avoiding the temperature rise of the equipment. At the same time, the auxiliary component 10 is used to ensure the cleaning effect, simplify the working steps and improve convenience.
[0048] In this embodiment, Figure 13 and Figure 14 As shown, the auxiliary component 10 includes an auxiliary frame 101, which is arranged at the side end of the through-hole 4, and the bottom of the auxiliary frame 101 is fixedly connected to the top of the machine body 1, and an L-shaped cleaning member 102 is rotatably connected to the auxiliary frame 101. A U-shaped rod 103 is connected to the side of the auxiliary frame 101 away from the L-shaped cleaning member 102, and a fixing frame 104 is provided at the side end of the U-shaped rod 103. The bottom of the fixing frame 104 is fixedly connected to the top of the machine body 1, and a tilting rod 105 is rotatably connected to the fixing frame 104. The bottom of the tilting rod 105 is hinged with an L-shaped pull rod 106, and the end of the L-shaped pull rod 106 away from the fixing frame 104 is connected to a horizontally arranged clamping rod 107. The end of the clamping rod 107 away from the L-shaped pull rod 106 is clamped in the slot 108 on the U-shaped rod 103. The side end of the clamping rod 107 slides with the inner wall of the slot 108. When the cleaning support rod 925 deflects toward the dustproof net 5, the side end of the cleaning support rod 925 can abut against the other end of the tilting rod 105, so that the tilting rod 105 can rotate on the fixing frame 104;
[0049] When the cleaning support rod 925 is deflected to a certain angle, it contacts one end of the tilting rod 105, causing the tilting rod 105 to deflect on the fixing frame 104, thereby driving the L-shaped cleaning member 102 to deflect on the auxiliary frame 101 through the cooperation of the L-shaped pull rod 106, the clamping rod 107 and the slot 108, so that the L-shaped cleaning member 102 and the cleaning support rod 925 fit together, thereby self-cleaning the cleaning support rod 925, thereby ensuring the cleaning effect of the cleaning support rod 925 on the dustproof net 5 every time, and further improving the stability of the device during use.
[0050] The method of use and advantages of the present invention: The method of using a computer blockchain management computing device has the following working process:
[0051] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 、 Figure 10 、 Figure 11 、 Figure 12 、 Figure 13 、 Figure 14 、 Figure 15 and Figure 16 As shown:
[0052] S1: When the device body 2 is in operation, the drive motor 66 is controlled to operate, thereby mobilizing the drive shaft 64 to rotate, thereby driving the worm 67 and the heat dissipation fan 65 to rotate synchronously. During the rotation of the worm 67, the driving gear 68 meshing with it rotates synchronously. Under the cooperation of the linkage rod 69 and the auxiliary connecting rod 70, the mounting bracket 63 as a whole swings around one end of the drive rod 62 as the center, thereby causing the rotating heat dissipation fan 65 to swing, and under the cooperation of the vent 3, the interior of the body 1 is cooled in all directions.
[0053] S2: When the heat dissipation fan 65 is in the process of swinging, it drives the mounting bracket 63 and the driving gear 68 to swing synchronously. Whenever the driving gear 68 swings toward the side of the auxiliary gear 814, since the driving gear 68 always keeps rotating, whenever the driving gear 68 contacts and meshes with the auxiliary gear 814, it synchronously drives the auxiliary gear 814 and the control frame 815 to rotate, thereby driving the two first control rods 816 to slide in the arc-shaped slide groove 817 and away from the second control rod 818, thereby stretching the control spring 819. At this time, the energy storage disc 812 rotates at the bottom of the energy storage frame 811 through the rotating shaft 813 under the action of the control spring 819. Whenever the driving gear 68 is away from the auxiliary gear 814 and disengages, At this time, since the control spring 819 has not yet reset, the energy storage disc 812 still keeps rotating until the next drive gear 68 and the auxiliary gear 814 are meshed, and the first transmission belt 822 is provided to drive the linkage shaft 821 to rotate, and the second transmission belt 825 is provided to drive the toggle disc 824 to rotate synchronously on the linkage frame 823, and then through the auxiliary rod 829 and the pull rod 830, under the action of the first toggle rod 826 and the second toggle rod 831, the toggle member 827 and the linkage toggle member 828 are regularly moved away from and close to the toggle disc 824, and in the process of moving, the toggle member 827 swings at the end hinged to the pull rod 830;
[0054] S3: When the toggle plate 824 rotates and drives the toggle member 827 to move, it cooperates with the connecting frame 915, thereby driving the matching toothed rod 912 to compress the telescopic spring 913 in the matching box 911 through the sliding block 914, and after the toggle member 827 is separated from the connecting frame 915, the matching toothed rod 912 slides under the release force of the telescopic spring 913, thereby driving the matching gear 916 meshing therewith to drive the matching shaft 917 to rotate, and then drives the crank 921 to rotate. During the rotation of the crank 921, the connecting rod 923 is driven to swing back and forth by the cleaning drive rod 924, and the cleaning support rod 925 is driven to deflect back and forth regularly by the provided swing rod 926, and the dustproof net 5 is cleaned during the deflection process;
[0055] S4: When the cleaning support rod 925 is deflected to a certain angle, it contacts one end of the tilting rod 105, causing the tilting rod 105 to deflect on the fixed frame 104, thereby driving the L-shaped cleaning member 102 to deflect on the auxiliary frame 101 through the cooperation of the L-shaped pull rod 106, the clamping rod 107 and the slot 108, so that the L-shaped cleaning member 102 and the cleaning support rod 925 fit together, thereby self-cleaning the cleaning support rod 925.
[0056] The basic principles, main features, and advantages of the present invention are shown and described above. It should be understood by those skilled in the art that the present invention is not limited to the above-described embodiments. The above-described embodiments and descriptions are merely preferred examples of the present invention and are not intended to limit the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and modifications fall within the scope of the invention claimed.
Claims
1. A blockchain management computing device for a computer, characterized by: The invention comprises a machine body (1), wherein the bottom of the machine body (1) is provided with a device body (2) for operation, the top four sides of the machine body (1) are provided with ventilation holes (3) for heat dissipation during the operation of the machine body (1), the top of the machine body (1) is provided with a through hole (4), a dustproof net (5) is installed in the through hole (4), a heat dissipation component (6) is provided in the machine body (1), a linkage trigger device (8) is provided at the side end of the heat dissipation component (6), a release device (9) is provided on the linkage trigger device (8), and the release device (9) is provided. The device (9) is located on one side of the dustproof net (5) and on the top of the outer side of the body (1). The side end of the release device (9) is provided with an auxiliary component (10). Two auxiliary components (10) are provided. The two auxiliary components (10) are symmetrically arranged on both sides of the dustproof net (5). The linkage trigger device (8) includes an energy storage component (81) and a linkage component (82). The energy storage component (81) is arranged on the side end of the heat dissipation component (6), and the linkage component (82) is arranged on the side end of the energy storage component (81). The heat dissipation assembly (6) includes a heat dissipation base (61), the top of the heat dissipation base (61) is fixedly connected to the top of the body (1), the bottom of the heat dissipation base (61) is fixedly connected to a driving rod (62), one end of the driving rod (62) is hinged to one end of the mounting bracket (63), a driving shaft (64) is rotatably connected to the mounting bracket (63), an end of the driving shaft (64) away from the mounting bracket (63) is provided with a heat dissipation fan (65), a side of the mounting bracket (63) away from the heat dissipation fan (65) is provided with a driving motor (66), and the output end of the driving motor (66) is connected to the end of the driving shaft (64); The energy storage assembly (81) includes an energy storage frame (811), the top of the energy storage frame (811) is fixedly connected to the top of the body (1), and the energy storage frame (811) is located on one side of the heat dissipation base (61), the bottom of the energy storage frame (811) is rotatably connected to the energy storage disk (812), the center of the bottom of the energy storage disk (812) is rotatably connected to the auxiliary gear (814) through the rotating shaft (813), the tooth groove end of the auxiliary gear (814) can be engaged with the tooth groove end of the driving gear (68), the top of the auxiliary gear (814) is connected to the control frame (815), the center of the control frame (815) is fixedly connected to the center of the auxiliary gear (814), and the control frame (81 5) are fixedly connected to the first control rod (816) at both ends, the top of the first control rod (816) slides through the bottom of the energy storage disk (812) and is respectively located in an arc-shaped slide groove (817), the side end of the first control rod (816) is slidably matched with the inner wall of the arc-shaped slide groove (817), and each side end of the arc-shaped slide groove (817) is provided with a vertically arranged second control rod (818), and the second control rod (818) is located in the energy storage disk (812), the bottom of the second control rod (818) is connected to the bottom inside the energy storage disk (812), and the side end of the second control rod (818) is movably connected to the side end of the first control rod (816) through a control spring (819); The linkage assembly (82) includes a linkage shaft (821), the top of the linkage shaft (821) is rotatably connected to the top of the body (1), the bottom of the linkage shaft (821) is sleeved with a first transmission belt (822), the other end of the first transmission belt (822) is sleeved on the outside of the energy storage disk (812), a linkage frame (823) is provided on one side of the linkage shaft (821), the top of the linkage frame (823) is fixedly connected to the top of the body (1), a toggle disk (824) is rotatably connected to the linkage frame (823), the side end of the toggle disk (824) is sleeved with a second transmission belt (825), the other end of the second transmission belt (825) is sleeved on the top of the linkage shaft (821), a first toggle rod (826) is hingedly connected to the linkage frame (823) and is located at the toggle position. On one side of the disk (824), the two ends of the first toggle rod (826) are respectively hinged with a toggle member (827) and a linkage toggle member (828), one end of the linkage toggle member (828) is coaxially arranged with one end of the toggle disk (824) hinged to the first toggle rod (826), the other end of the linkage toggle member (828) is hinged with an auxiliary rod (829), the other end of the auxiliary rod (829) is hinged to the toggle disk (824), the auxiliary rod (829) is hinged to one end of the toggle disk (824) and is hinged with a pull rod (830), the other end of the pull rod (830) is hinged to one end of the toggle member (827) close to the toggle disk (824), and the toggle member (827) and the linkage toggle member (828) are adjacent to each other and away from the toggle disk (824) and are hinged via a second toggle rod (831); The release device (9) includes a matching component (91) and a cleaning component (92), wherein the matching component (91) is arranged at the side end of the linkage frame (823), and the cleaning component (92) is arranged at the top of the outer side of the body (1) and is located on the matching component (91), and the matching component (91) includes a matching box (911), wherein the matching box (911) is arranged at the side end of the linkage frame (823), and the top of the matching box (911) is fixedly connected to the top inside the body (1), and a matching toothed groove rod (912) is slidably provided in the matching box (911), and the side end of the matching toothed groove rod (912) is movably connected to the inner wall of the matching box (911) through a telescopic spring (913), and the toothed groove end of the matching toothed groove rod (912) is arranged away from the linkage frame (823), and the matching toothed groove rod (912) is close to the linkage frame. A sliding block (914) is fixedly connected to one side of (823), and the side end of the sliding block (914) passes through the side wall of the matching box (911) and is located on the outside of the matching box (911). A connecting frame (915) is fixedly connected to one side of the sliding block (914) and is located at the side end of the toggle member (827). When the toggle member (827) moves, it can drive the matching toothed rod (912) to compress the telescopic spring (913) through the connecting frame (915), and disengage from the connecting frame (915) when swinging. A matching gear (916) is provided on the side of the matching box (911) away from the linkage frame (823). The top of the matching gear (916) is rotatably connected to the top of the body (1) through the matching shaft (917). The side end of the matching gear (916) can be meshed with the toothed end of the matching toothed rod (912); The cleaning assembly (92) includes a crank (921), one end of the crank (921) is sleeved on the matching shaft (917) through a one-way bearing (922), and the crank (921) is located at the top of the outer side of the body (1). A connecting rod (923) is provided at the side end of the crank (921), and a cleaning drive rod (924) is hingedly connected to the other end of the crank (921). The end of the cleaning drive rod (924) away from the crank (921) is hingedly connected to one end of the connecting rod (923). The connecting rod (923) The center of the connecting rod (923) is rotatably connected to the top of the body (1), cleaning rods (925) are symmetrically provided on both sides of the connecting rod (923), and the ends of the cleaning rods (925) are rotatably connected to the top of the body (1), and the cleaning rod (925) is hinged with a swing rod (926) at one end close to the connecting rod (923), and the other end of the swing rod (926) is hinged to the two ends of the connecting rod (923), and when the connecting rod (923) rotates, it can drive the two cleaning rods (925) to deflect toward the dustproof net (5); A worm (67) is sleeved on the drive shaft (64), and the inner wall of the worm (67) is fixedly connected to the outer side of the drive shaft (64). The bottom of the other end of the mounting bracket (63) is rotatably connected to a drive gear (68), and the side end of the drive gear (68) is meshed with the side end of the worm (67). A linkage rod (69) is provided on the top of the mounting bracket (63), and the end of the linkage rod (69) is connected to the center of the drive gear (68). The other end of the linkage rod (69) is hinged to an auxiliary connecting rod (70), and the other end of the auxiliary connecting rod (70) is hinged to one end of the drive rod (62) away from the mounting bracket (63).
2. A computer-based blockchain management and computing device according to claim 1, characterized in that: The auxiliary component (10) comprises an auxiliary frame (101), the auxiliary frame (101) is arranged at the side end of the through-opening (4), and the bottom of the auxiliary frame (101) is fixedly connected to the top of the machine body (1), the auxiliary frame (101) is rotatably connected to an L-shaped cleaning member (102), the side of the auxiliary frame (101) away from the L-shaped cleaning member (102) is connected to a U-shaped rod (103), the side end of the U-shaped rod (103) is provided with a fixing frame (104), the bottom of the fixing frame (104) is fixedly connected to the top of the machine body (1), the fixing frame (104) is rotatably connected to a tilting rod (105), the The bottom of the tilting rod (105) is hinged with an L-shaped pull rod (106), and the end of the L-shaped pull rod (106) away from the fixing frame (104) is connected to a horizontally arranged clamping rod (107), and the end of the clamping rod (107) away from the L-shaped pull rod (106) is clamped in the slot (108) on the U-shaped rod (103), and the side end of the clamping rod (107) is slidably engaged with the inner wall of the slot (108). When the cleaning support rod (925) deflects toward the dustproof net (5), the side end of the cleaning support rod (925) can abut against the other end of the tilting rod (105), so that the tilting rod (105) rotates on the fixing frame (104).
3. A method for using a computer blockchain management and operation device, using a computer blockchain management and operation device according to any one of claims 1-2, characterized in that: The steps include: S1: When the device body (2) is in operation, the driving motor (66) is controlled to work, thereby mobilizing the driving shaft (64) to rotate, thereby driving the worm (67) and the heat dissipation fan (65) to rotate synchronously. During the rotation of the worm (67), the driving gear (68) meshing with it rotates synchronously. Under the cooperation of the linkage rod (69) and the auxiliary connecting rod (70), the mounting bracket (63) as a whole swings around one end of the driving rod (62), thereby swinging the rotating heat dissipation fan (65). Under the cooperation with the vent (3), the interior of the body (1) is cooled in all directions. S2: When the heat dissipation fan blade (65) is in the process of swinging, it drives the mounting bracket (63) and the driving gear (68) to swing synchronously. Whenever the driving gear (68) swings toward the side of the auxiliary gear (814), since the driving gear (68) always keeps rotating, whenever the driving gear (68) contacts and meshes with the auxiliary gear (814), it synchronously drives the auxiliary gear (814) and the control frame (815) to rotate, thereby driving the two first control rods (816) to slide in the arc-shaped slide groove (817) and away from the second control rod (818), thereby stretching the control spring (819). At this time, the energy storage disc (812) rotates at the bottom of the energy storage frame (811) through the rotating shaft (813) under the action of the control spring (819). Whenever the driving gear (68) is away from the auxiliary gear (814) and disengages, When the gears are closed, since the control spring (819) has not yet been reset, the energy storage disc (812) still keeps rotating until the next drive gear (68) and the auxiliary gear (814) are meshed, and the linkage shaft (821) is driven to rotate through the first transmission belt (822), and the toggle disc (824) is driven to rotate synchronously on the linkage frame (823) through the second transmission belt (825), and then the toggle disc (824) and the linkage toggle disc (828) are driven to regularly move away from and approach the toggle disc (824) through the auxiliary rod (829) and the pull rod (830) under the action of the first toggle rod (826) and the second toggle rod (831), and during the movement, the toggle disc (827) is caused to swing at the end hinged to the pull rod (830); S3: When the toggle plate (824) rotates and drives the toggle member (827) to move, the toggle member (827) is driven to compress the telescopic spring (913) in the matching box (911) through the sliding block (914) by cooperating with the connecting frame (915), and after the toggle member (827) is separated from the connecting frame (915), the toggle member (912) slides under the release force of the telescopic spring (913), thereby driving the meshing gear (916) to drive the matching shaft (917) to rotate, and then driving the crank (921) to rotate. During the rotation of the crank (921), the cleaning drive rod (924) drives the connecting rod (923) to swing back and forth, and the swing rod (926) drives the cleaning support rod (925) to deflect back and forth regularly, and the dust screen (5) is cleaned during the deflection process; S4: When the cleaning support rod (925) is deflected to a certain angle, it contacts one end of the tilting rod (105), causing the tilting rod (105) to deflect on the fixed frame (104), thereby driving the L-shaped cleaning member (102) to deflect on the auxiliary frame (101) through the cooperation of the L-shaped pull rod (106), the clamping rod (107) and the slot (108), so that the L-shaped cleaning member (102) and the cleaning support rod (925) fit together, thereby performing self-cleaning on the cleaning support rod (925).
Citation Information
Patent Citations
Server for detecting and acquiring signals
CN215729624U