A pin connection structure for a computer blockchain operation device
Through the combined design of self-locking mechanism, stabilizing mechanism and auxiliary mechanism, the problems of stability and convenience of the pin connection structure of computer blockchain computing equipment during the installation process are solved, and the stable fixation of the equipment and the reliability of data transmission are achieved.
Patent Information
- Application Number
- CN202510174757.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2045-02-18
AI Technical Summary
The pin connection structure of existing computer blockchain computing devices is difficult to ensure convenience and stability during installation, and is prone to shaking and loosening, resulting in unstable data transmission.
The combination design of self-locking mechanism, stabilizing mechanism and auxiliary mechanism is adopted, including U-shaped slider, T-shaped support frame, U-shaped plate, etc., and the pins are stably clamped and shock-absorbed through spring and chain transmission, ensuring the stability of the equipment during installation and the reliability of data transmission.
It realizes stable fixation of the equipment during installation, prevents loosening and vibration, ensures the stability of data transmission, and provides a convenient disassembly and installation process.
Smart Images

Figure CN119645206B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of pin connection, and particularly to a pin connection structure for a computer blockchain operation device. Background Art
[0002] The pin connection structure for a computer blockchain operation device is usually an important part for ensuring stable and reliable connections between various components in the blockchain operation device. The pin connection structure can achieve precise positioning to ensure that different components can accurately align with corresponding interfaces when connected. This is crucial for the efficient operation of the blockchain operation device because any misalignment may lead to signal transmission errors or the device failing to work properly.
[0003] The existing patent (Publication No.: CN111679724A) discloses a pin connection structure for a computer blockchain operation device, including a housing, an adjusting bolt, a rotating block, a pressing pad, a sliding rod, a connecting rod, an installation opening, a blower, a sliding sleeve, an installation groove, a first spring, a connecting block, a rotating sleeve, a limiting frame, a chip body, a second spring, a telescopic rod, a drying groove, a third spring, a pressing pad, a spring groove, a backing plate, and a door leaf. For the above-mentioned pin connection structure for a computer blockchain operation device, through the pressing pad, the sliding rod, the connecting rod, the sliding sleeve, the first spring, the connecting block, the second spring, the telescopic rod, the adjusting bolt, the rotating block, the rotating sleeve, the pressing pad, and the third spring, it is possible to avoid the situation of shaking and dropping during pin connection. However, in the actual installation process, more factors need to be considered to ensure stability. While ensuring convenient installation, stability also needs to be maintained. Therefore, a pin connection structure for a computer blockchain operation device is required. Summary of the Invention
[0004] The purpose of the present invention is to provide a pin connection structure for a computer blockchain operation device to solve the problems raised in the above background art. To achieve the above purpose, the present invention provides the following technical solution: A pin connection structure for a computer blockchain operation device, including an outer shell, an upper cover plate, and an operation device, characterized in that: ventilation holes are provided on the side surface of the outer shell, a main board is installed inside the outer shell, a pin card slot is fixedly connected to the surface of the main board, a self-locking mechanism is arranged inside the pin card slot, a stabilizing mechanism is fixedly connected to the surface of the main board, an auxiliary mechanism is fixedly connected to the lower surface of the upper cover plate, and the operation device includes a device body, and pins are fixedly connected to the lower end of the device body.
[0005] Preferably, the self-locking mechanism includes a U-shaped slider, which is slidably connected to the inner side of the pin slot, a spring is installed between the U-shaped slider and the inside of the pin slot, a notch is fixedly connected to the side of the U-shaped slider, a card plate is rotatably connected to the inner side of the pin slot, the lower end of the card plate is fixedly connected to an inclined panel, and the side of the inclined panel is fixedly connected to a horizontal plate.
[0006] Preferably, the stabilizing mechanism comprises a T-shaped support frame, the T-shaped support frame is fixedly connected to the surface of the main board, the side of the T-shaped support frame is rotatably connected to a sprocket wheel one, the other side of the sprocket wheel one is fixedly connected to a rotating wheel, the side of the rotating wheel is fixedly connected to a round rod, the surface of the main board is fixedly connected to a Y-shaped support frame, the side of the Y-shaped support frame is rotatably connected to a sprocket wheel two, a chain is transmission-connected between the sprocket wheel two and the sprocket wheel one, the side of the sprocket wheel two is fixedly connected to a telescopic rod, the surface of the main board is fixedly connected to a vortex groove, the surface of the main board is fixedly connected to a coil spring plate, the upper end of the coil spring plate is fixedly connected to a connecting rod, and a through groove is provided on the surface of the coil spring plate.
[0007] Preferably, the auxiliary mechanism includes a U-shaped plate, the U-shaped plate is fixedly connected to the lower surface of the upper cover plate, the interior of the U-shaped plate is fixedly connected with shock-proof cotton, the interior of the U-shaped plate is fixedly connected with a hollow rod, the interior of the hollow rod is slidably connected with a sliding rod, the upper end of the sliding rod is fixedly connected with a button, the interior of the hollow rod is provided with a telescopic spring, the outer surface of the hollow rod is rotatably connected with a diamond-shaped clamping rod, and the lower end of the sliding rod is fixedly connected with an extrusion rod.
[0008] Preferably, the notch is slidably connected to the side of the pin slot via a U-shaped slider.
[0009] Preferably, the round rod is slidably connected inside the notch, and the connecting rod passes through the vortex groove and is fixedly connected to the other side of the telescopic rod.
[0010] Preferably, the diamond-shaped clamping rod is composed of four connecting rods, which are connected together by torsion spring rods.
[0011] Preferably, the device body is clamped in the pin clamping slot through pins, and the upper cover plate is clamped on the upper surface of the shell.
[0012] In the present invention, when the two coil spring plates are spirally wound, the distance between the two coil spring plates will become smaller, and at the same time, the two sides of the device body will be clamped to further fix and stabilize the device body. At the same time, in the spirally wound state of the coil spring plates, they will have a certain elasticity. After the device body is installed, the coil spring plates on both sides will play a certain shock-absorbing role, preventing some vibrations caused by human or non-human factors, and avoiding the stability of data transmission in this process.
[0013] In the present invention, when the pin slides to the bottom end, the cross plate will be parallel to the pin. When the clamping plate rotates through the inclined panel, it starts to rotate. When the clamping plate rotates to a vertical state, it will be stuck on both sides of the pin and clamp the pin to prevent the pin and the device body from loosening, resulting in unstable data transmission.
[0014] In the present invention, the upper cover plate drives the U-shaped plate to just cover the device body. At the same time, the diamond-shaped clamping rod on the side of the U-shaped plate will be squeezed into a straight line by the through groove, and then pass through the through groove. Then, the diamond-shaped clamping rod will reset through its own torsion spring rod and clamp the coil spring plate to prevent the coil spring plate from being misaligned after being fixed, further ensuring the stability of the device body. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a three-dimensional external view schematic diagram of the present invention;
[0016] Figure 2 is an exploded structure schematic diagram inside the housing of the present invention;
[0017] Figure 3 is an enlarged structure schematic diagram of the main board of the present invention;
[0018] Figure 4 is an enlarged structure schematic diagram of the pin slot of the present invention;
[0019] Figure 5 is a side enlarged structure schematic diagram of the pin slot of the present invention;
[0020] Figure 6 is a side cross-sectional structure schematic diagram of the pin slot of the present invention;
[0021] Figure 7 is a structure schematic diagram of the self-locking mechanism of the present invention;
[0022] Figure 8 is a structure schematic diagram of the stability mechanism of the present invention;
[0023] Figure 9 is a structure schematic diagram of the lower surface of the upper cover plate of the present invention;
[0024] Figure 10 is a structure schematic diagram of the auxiliary mechanism of the present invention;
[0025] Figure 11 is the present invention Figure 10 an enlarged structure schematic diagram of A in.
[0026] In the figure: 1. Outer shell; 2. Upper cover plate; 3. Computing device; 4. Ventilation hole; 5. Motherboard; 6. Pin slot; 7. Self-locking mechanism; 8. Stabilizing mechanism; 9. Auxiliary mechanism; 31. Device body; 32. Pin; 71. U-shaped slider; 72. Spring; 73. Notch; 74. Clamping plate; 75. Inclined panel; 76. Horizontal plate; 81. T-shaped support frame; 82. Chain wheel one; 83. Runner; 84. Round rod; 85. Y-shaped support frame; 86. Chain wheel two; 87. Chain; 88. Telescopic rod; 89. Spiral chute; 810. Coil spring plate; 811. Connecting rod; 812. Through slot; 91. U-shaped plate; 92. Shock-absorbing cotton; 93. Hollow rod; 94. Sliding rod; 95. Button; 96. Telescopic spring; 97. Extrusion rod; 98. Diamond-shaped clamping rod. Detailed implementation mode
[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present invention.
[0028] Please refer to Figures 1 to 11 , the present invention provides a technical solution: a pin connection structure for a computer blockchain computing device, including an outer shell 1, an upper cover plate 2, and a computing device 3. Ventilation holes 4 are provided on the side of the outer shell 1. A motherboard 5 is installed inside the outer shell 1. A pin slot 6 is fixedly connected to the surface of the motherboard 5. A self-locking mechanism 7 is arranged inside the pin slot 6. A stabilizing mechanism 8 is fixedly connected to the surface of the motherboard 5. An auxiliary mechanism 9 is fixedly connected to the lower surface of the upper cover plate 2. The computing device 3 includes a device body 31. A pin 32 is fixedly connected to the lower end of the device body 31. The device body 31 is stuck in the pin slot 6 through the pin 32. The upper cover plate 2 is stuck on the upper surface of the outer shell 1.
[0029] The self-locking mechanism 7 includes a U-shaped slider 71. The U-shaped slider 71 is slidably connected inside the pin slot 6. A spring 72 is installed between the U-shaped slider 71 and the inside of the pin slot 6. A notch 73 is fixedly connected to the side of the U-shaped slider 71. A clamping plate 74 is rotatably connected to the inside of the pin slot 6. An inclined panel 75 is fixedly connected to the lower end of the clamping plate 74. A horizontal plate 76 is fixedly connected to the side of the inclined panel 75. The notch 73 is slidably connected to the side of the pin slot 6 through the U-shaped slider 71. When the pin 32 slides to the bottom end, the horizontal plate 76 will be parallel to the pin 32. When the clamping plate 74 rotates through the inclined panel 75, the clamping plate 74 will start to rotate. When the clamping plate 74 rotates to a vertical state, it will be stuck on both sides of the pin 32 and clamp the pin 32 to prevent the pin 32 and the device body 31 from loosening, resulting in unstable data transmission.
[0030] The stabilizing mechanism 8 includes a T-shaped support frame 81 which is fixedly connected to the surface of the main board 5. A first chain wheel 82 is rotatably connected to the side surface of the T-shaped support frame 81. The other side of the first chain wheel 82 is fixedly connected to a rotating wheel 83. A round rod 84 is fixedly connected to the side surface of the rotating wheel 83. A Y-shaped support frame 85 is fixedly connected to the surface of the main board 5. A second chain wheel 86 is rotatably connected to the side surface of the Y-shaped support frame 85. A chain 87 is drivingly connected between the second chain wheel 86 and the first chain wheel 82. A telescopic rod 88 is fixedly connected to the side surface of the second chain wheel 86. A spiral chute 89 is fixedly connected to the surface of the main board 5. A coil spring plate 810 is fixedly connected to the surface of the main board 5. A connecting rod 811 is fixedly connected to the upper end of the coil spring plate 810. A through groove 812 is formed in the surface of the coil spring plate 810. The round rod 84 is slidably connected inside the notch 73. The connecting rod 811 passes through the spiral chute 89 and is fixedly connected to the other side of the telescopic rod 88. When the coiling of the two coil spring plates 810 is completed, the distance between the two coil spring plates 810 will become smaller, and at the same time, the two sides of the device body 31 will be clamped, further fixing and stabilizing the device body 31. At the same time, in the coiled state of the coil spring plate 810, it has a certain elasticity. After the device body 31 is installed, the coil spring plates 810 on both sides will play a certain shock-absorbing role, preventing some vibrations caused by humans or non-humans, and avoiding the instability of data transmission during the process.
[0031] The auxiliary mechanism 9 includes a U-shaped plate 91 which is fixedly connected to the lower surface of the upper cover plate 2. A shock-proof cotton 92 is fixedly connected inside the U-shaped plate 91. A hollow rod 93 is fixedly connected inside the U-shaped plate 91. A sliding rod 94 is slidably connected inside the hollow rod 93. A button 95 is fixedly connected to the upper end of the sliding rod 94. A telescopic spring 96 is arranged inside the hollow rod 93. A diamond-shaped clamping rod 98 is rotatably connected to the outer surface of the hollow rod 93. An extrusion rod 97 is fixedly connected to the lower end of the sliding rod 94. The diamond-shaped clamping rod 98 is composed of four connecting rods and is connected together by a torsion spring rod. The upper cover plate 2 drives the U-shaped plate 91 to just cover the device body 31. At the same time, the diamond-shaped clamping rod 98 on the side surface of the U-shaped plate 91 will be squeezed into a straight line by the through groove 812, and then pass through the through groove 812. Then the diamond-shaped clamping rod 98 will reset through its own torsion spring rod and clamp the coil spring plate 810, preventing the dislocation of the coil spring plate 810 after the fixation is completed, and further ensuring the stability of the device body 31.
[0032] The usage method and advantages of the present invention: For the pin connection structure of the computer blockchain operation device, during use, the working process is as follows:
[0033] Such as Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 as shown;
[0034] During use, first align the pin 32 at the lower end of the device body 31 with the pin slot 6, then gently press down. The pin 32 slides down inside the pin slot 6. At the same time, the lower surface of the side of the T-shaped pin 32 will squeeze the U-shaped slider 71. After being squeezed, the U-shaped slider 71 will slide down inside the pin slot 6, and the side of the pin 32 will slide down along the surface of the inclined panel 75. Then it will squeeze the inclined panel 75. When the inclined panel 75 is squeezed, it will start to rotate around the axis at the lower end of the clamping plate 74. When the pin 32 slides to the bottom end, the cross plate 76 will be parallel to the pin 32. When the clamping plate 74 rotates through the inclined panel 75, it will start to rotate. When the clamping plate 74 rotates to a vertical state, it will be stuck on both sides of the pin 32 and clamp the pin 32 to prevent the pin 32 and the device body 31 from loosening, resulting in unstable data transmission.
[0035] When the U-shaped slider 71 slides down, it will drive the slot 73 fixed to the side to slide down at the same time. The slot 73 slides down on the side of the pin slot 6, and at the same time drives the round rod 84 in the slot 73 to move down. When the round rod 84 moves down, it is limited by the rotating wheel 83 and drives the rotating wheel 83 to rotate clockwise. At the same time, the round rod 84 gradually slides to the left inside the slot 73. When the rotating wheel 83 rotates, it drives the chain wheel one 82 on the side to rotate. When the chain wheel one 82 rotates, it drives the chain 87 to transmit. The chain 87 is transmitted to the chain wheel two 86. When the chain wheel two 86 rotates, it drives the telescopic rod 88 fixed to the side to rotate. When the telescopic rod 88 rotates, it drives the connecting rod 811 fixed to the side to slide inside the spiral chute 89. The connecting rod 811 drives the spring plate 810 to coil along the track of the spiral chute 89. When the spring plate 810 coils, it will first contact the side of the device body 31. Then, during the coiling process of the spring plate 810, it will assist the device body 31 to slide down. At the same time, when the coiling of the two spring plates 810 is completed, the distance between the two spring plates 810 will become smaller, and at the same time, it will clamp both sides of the device body 31, further fixing and stabilizing the device body 31. At the same time, in the coiled state of the spring plate 810, it has a certain elasticity. After the device body 31 is installed, the spring plates 810 on both sides will play a certain shock-absorbing role to prevent some vibrations caused by humans or non-humans and avoid the instability of data transmission during this process. After the coiling of the spring plate 810 is completed, the through slots 812 on the surface of the spring plate 810 will be on the same vertical line.
[0036] Finally, the upper cover plate 2 is closed, and the upper cover plate 2 drives the U-shaped plate 91 to cover the equipment body 31. At the same time, the diamond-shaped clamping rod 98 on the side of the U-shaped plate 91 will be squeezed into a straight line by the through groove 812, and then pass through the through groove 812. Then the diamond-shaped clamping rod 98 will be reset through its own torsion spring rod to clamp the coil spring plate 810, preventing the coil spring plate 810 from being misaligned after the fixation is completed, thereby further ensuring the stability of the equipment body 31.
[0037] When the device needs to be replaced or cleaned after long-term use, it is only necessary to press the button 95. The button 95 drives the sliding rod 94 to slide downward inside the hollow rod 93. The sliding rod 94 also drives the squeezing rod 97 at the lower end to slide downward and squeeze the lower end of the diamond-shaped clamping rod 98, so that the diamond-shaped clamping rod 98 forms a straight line. Then the upper cover 2 is opened, and the diamond-shaped clamping rod 98 will also come out from the inside of the through groove 812. Then, the thumb is used to move the other side of the clamping plate 74. When the clamping plate 74 is pressed, the inclined panel 75 at the lower end will be driven to rotate inward and squeeze the side of the pin 32. Then, the elastic force of the spring 72 pushes the U-shaped slider 71, and the pin 32 and the device body 31 are ejected, which is also convenient for disassembly.
[0038] At the same time, the slot 73 slides upward, driving the round rod 84 in the slot 73 to move upward. When the round rod 84 moves downward, it is limited by the rotating wheel 83 and drives the rotating wheel 83 to rotate counterclockwise. At the same time, the round rod 84 gradually slides to the right inside the slot 73. When the rotating wheel 83 rotates, it drives the sprocket wheel 1 82 on the side to rotate. When the sprocket wheel 1 82 rotates, it drives the chain 87 to transmit. The chain 87 is transmitted to the sprocket wheel 2 86. When the sprocket wheel 2 86 rotates, it drives the telescopic rod 88 fixed on the side to rotate. When the telescopic rod 88 rotates, it drives the connecting rod 811 fixed on the side to slide inside the vortex groove 89. The connecting rod 811 drives the spiral spring plate 810 to be vertical along the trajectory of the vortex groove 89. In the vertical process, the auxiliary equipment body 31 moves upward, which is convenient for taking out the equipment body 31.
[0039] The above shows and describes the basic principles, main features and advantages of the present invention. Technical personnel in this industry should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention to be protected. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. A pin connection structure for a computer blockchain operation device, comprising a housing (1), an upper cover plate (2), and an operation device (3), characterized in that: A ventilation hole (4) is provided on the side of the housing (1); a mainboard (5) is installed inside the housing (1); a pin slot (6) is fixedly connected to the surface of the mainboard (5); a self-locking mechanism (7) is provided inside the pin slot (6); a stabilizing mechanism (8) is fixedly connected to the surface of the mainboard (5); an auxiliary mechanism (9) is fixedly connected to the lower surface of the upper cover (2); and the computing device (3) comprises a device body (31); a pin (32) is fixedly connected to the lower end of the device body (31); The self-locking mechanism (7) comprises a U-shaped slider (71), the U-shaped slider (71) is slidably connected to the inner side of the pin slot (6), a spring (72) is installed between the U-shaped slider (71) and the inside of the pin slot (6), a notch (73) is fixedly connected to the side of the U-shaped slider (71), a clamping plate (74) is rotatably connected to the inner side of the pin slot (6), a lower end of the clamping plate (74) is fixedly connected to an inclined plate (75), and a side of the inclined plate (75) is fixedly connected to a horizontal plate (76); The stabilizing mechanism (8) comprises a T-shaped support frame (81), the T-shaped support frame (81) is fixedly connected to the surface of the main board (5), a sprocket wheel (82) is rotatably connected to the side of the T-shaped support frame (81), a rotating wheel (83) is fixedly connected to the other side of the sprocket wheel (82), a round rod (84) is fixedly connected to the side of the rotating wheel (83), a Y-shaped support frame (85) is fixedly connected to the surface of the main board (5), and a round rod (84) is fixedly connected to the side of the Y-shaped support frame (85). Sprocket wheel 2 (86), a chain (87) being transmission-connected between sprocket wheel 2 (86) and sprocket wheel 1 (82), a telescopic rod (88) being fixedly connected to the side of sprocket wheel 2 (86), a spiral groove (89) being fixedly connected to the surface of the main board (5), a coil spring plate (810) being fixedly connected to the surface of the main board (5), a connecting rod (811) being fixedly connected to the upper end of the coil spring plate (810), and a through groove (812) being provided on the surface of the coil spring plate (810); The auxiliary mechanism (9) comprises a U-shaped plate (91), wherein the U-shaped plate (91) is fixedly connected to the lower surface of the upper cover plate (2), a shockproof cotton (92) is fixedly connected to the interior of the U-shaped plate (91), a hollow rod (93) is fixedly connected to the interior of the U-shaped plate (91), a sliding rod (94) is slidably connected to the interior of the hollow rod (93), a button (95) is fixedly connected to the upper end of the sliding rod (94), a telescopic spring (96) is arranged inside the hollow rod (93), a diamond-shaped clamping rod (98) is rotatably connected to the outer surface of the hollow rod (93), and a squeezing rod (97) is fixedly connected to the lower end of the sliding rod (94).
2. A pin connection structure for a computer blockchain computing device according to claim 1, characterized in that: The notch (73) is slidably connected to the side of the pin slot (6) via a U-shaped slider (71).
3. The pin connection structure for a computer blockchain operation device according to claim 2, characterized in that: The round rod (84) is slidably connected inside the notch (73), and the connecting rod (811) passes through the vortex sliding groove (89) and is fixedly connected to the other side of the telescopic rod (88).
4. The pin connection structure for a computer blockchain operation device according to claim 3, wherein: The rhombic clamping rod (98) is composed of four connecting rods and is connected together by a torsion spring rod.
5. A pin connection structure for a computer blockchain computing device according to claim 4, characterized in that: The device body (31) is clamped in the pin slot (6) through the pins (32), and the upper cover plate (2) is clamped on the upper surface of the housing (1).
Citation Information
Patent Citations
Pin connection structure for computer block chain computing equipment
CN111679724A
Multi-module pin insertion machine for thick film hybrid integrated circuit
CN114420612A