A blockchain data supervision platform
By designing a combination structure of locking pins, lock blocks and door handles, the problem of inconvenient operation of supervision servers in the blockchain data supervision platform is solved, and the convenient opening and closing of carrier doors is achieved, meeting different management needs.
Patent Information
- Application Number
- CN202211180278.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-26
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2042-09-26
AI Technical Summary
The existing blockchain data supervision platform is relatively routine to open and close the supervision server, and it is difficult to meet the needs of different management of operators, resulting in inconvenience in operation.
A blockchain data supervision platform is designed, adopting a combined structure of locking pins, lock blocks and door handles. Through the clamping and reset mechanism of locking pins, the carrier door is conveniently opened and closed, and the linkage between the key and the rotating wheel is combined to ensure the safety and operation flexibility of the carrier door.
It realizes convenient opening and closing of carrier doors, meets different management needs, improves operation flexibility and safety, avoids misoperation, and enhances the protection capabilities of the platform.
Smart Images

Figure CN116856801B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of blockchain data technology, and in particular to a blockchain data supervision platform. Background Art
[0002] Blockchain is essentially a distributed ledger, a novel application system that integrates distributed data storage, peer-to-peer transmission, consensus mechanisms, and encryption algorithms. It boasts powerful features such as decentralization, collective maintenance, anonymity, immutability, unforgeability, and traceability. Existing blockchain data monitoring platforms primarily rely on monitoring servers to oversee blockchain data. To protect these servers, most are placed within the platform's carrier, preventing them from being exposed to external forces and potentially damaging them through impact. However, the platform's conventional opening and closing mechanisms result in either a constant effort or a constant effort, making it difficult to meet the diverse management needs of operators. Summary of the Invention
[0003] In response to the shortcomings of the existing technology, the present invention provides a blockchain data supervision platform that solves the problems raised in the background technology.
[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: A blockchain data supervision platform, including a supervision server encapsulating a blockchain data supervision system and a platform carrier loaded with the supervision server, the platform carrier including a carrier frame, a carrier door and a door handle, wherein the right end of the carrier door can be hinged to the right end of the carrier frame, and the door handle is fixed to the front of the carrier door, and a lock pin, a lock pin spring, a first lock block, a second lock block, a first spring, a second spring and a separation block are provided near the left end of the carrier door, the first lock block and the second lock block are respectively arranged symmetrically up and down, and the ends of the first lock block and the second lock block away from each other are respectively connected to the first spring and the second spring, and the separation block is located on the front side between the first lock block and the second lock block, the left end of the lock pin can be inserted into the lock hole at the left end of the carrier frame, the right end of the lock pin can be inserted between the first lock block and the second lock block and clamped by the first lock block and the second lock block, and after the left end of the lock pin is completely disengaged from the lock hole, the right end of the lock pin is clamped between the first lock block and the second lock block.
[0005] Furthermore, the lock pin includes a first lock pin segment, a second lock pin segment and a third lock pin segment, the second lock pin segment is fixed between the first lock pin segment and the third lock pin segment, the first lock pin segment can extend out of the carrier door to extend into the lock hole, the lock pin spring is installed on the first lock pin segment and abuts against the second lock pin segment, and the third lock pin segment can extend between the first lock block and the second lock block.
[0006] Furthermore, the right end of the third lock pin segment is a tapered end.
[0007] Furthermore, a movable plate and a rotating wheel are provided in the carrier door. A linkage member is fixed to the movable plate. The linkage member rotates relative to the second lock pin segment. The rotating wheel is engaged with the movable plate to drive the movable plate to move.
[0008] Furthermore, an opening corresponding to the rotating wheel is provided on the front side of the carrier door, and the key extends into the carrier door from the opening to couple with the rotating wheel.
[0009] Furthermore, a first arc-shaped groove is provided on the second lock pin segment, a fixing plate and a fixing pin mounted on the fixing plate are provided in the carrier door, and the fixing pin extends into the first arc-shaped groove.
[0010] Furthermore, the carrier door can also move left and right relative to the carrier frame. The first lock pin segment is provided with a second arc-shaped groove. An arc-shaped protrusion is fixed inside the lock hole, and the arc-shaped protrusion is matched with the second arc-shaped groove.
[0011] Furthermore, the top and bottom of the carrier door are both provided with sliding grooves, and the top and bottom of the carrier frame are both fixed with fixing columns, which are located in the sliding grooves.
[0012] Furthermore, a pressing column is provided in the door handle, and the pressing column is fixedly connected to the separation block after extending into the carrier door, and a pressing column spring is provided between the pressing column and the separation block.
[0013] Furthermore, the separation block is in contact with the first locking block and the second locking block via inclined surfaces.
[0014] The present invention provides a blockchain data supervision system. It has the following beneficial effects: after the left end of the lock pin is completely disengaged from the keyhole, the right end of the lock pin is clamped between the first and second lock blocks. That is, after unlocking between the carrier door and the carrier frame, the lock pin does not automatically reset but extends out of the carrier door. This allows the carrier door to be opened and closed directly using the door handle, making opening very convenient. To restore the door, simply operate the first and second lock blocks to disengage the right end of the lock pin. This meets the needs of differentiated management for operators. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the closed structure of the blockchain data supervision platform of the present invention;
[0016] Figure 2 for Figure 1 Schematic diagram of the explosion structure;
[0017] Figure 3 for Figure 2 Schematic diagram of the structure of the middle keyhole;
[0018] Figure 4 for Figure 2Schematic diagram of the internal partial structure of the middle carrier door;
[0019] Figure 5 for Figure 2 Schematic diagram of the assembly structure of the middle locking pin, movable plate, and rotating wheel;
[0020] Figure 6 for Figure 2 Schematic diagram of the assembly structure of the first locking block, the second locking block and the separation block;
[0021] Figure 7 This is a schematic diagram of the open structure of the blockchain data supervision platform of the present invention;
[0022] Figure 8 for Figure 7 Schematic diagram of the assembly structure of the middle locking pin, movable plate, and rotating wheel;
[0023] Figure 9 This is a state diagram of the carrier door sliding in the blockchain data supervision platform of the present invention;
[0024] Figure 10 It is a structural schematic diagram of the linkage part with a buckle of the present invention.
[0025] In the figure: 100, platform carrier; 101, carrier frame; 102, carrier door; 103, door handle; 104, sliding groove; 105, fixed column; 106, lock pin; 107, lock pin spring; 108, first lock block; 109, second lock block; 110, first spring; 111, second spring; 112, separation block; 113, pressing column; 114, pressing column spring; 115, lock hole; 116, first lock pin segment; 117, second lock pin segment; 118, third lock pin segment; 119, movable plate; 120, rotating wheel; 121, linkage member; 122, key; 123, first arc groove; 124, fixed plate; 125, fixing pin; 126, second arc groove; 127, arc convex; 128, buckle. Implementation Method
[0026] 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. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0027] See also Figure 1-9The present invention provides a blockchain data supervision platform, including a supervision server encapsulated with a blockchain data supervision system and a platform carrier 100 loaded with the supervision server, the platform carrier including a carrier frame 101, a carrier door 102 and a door handle 103, the door handle 103 is fixed on the front of the carrier door 102, the carrier door 102 is hinged to the carrier frame 101, that is, the right end of the carrier door 102 can be hinged to the right end of the carrier frame 101, and the carrier door 102 can also move left and right relative to the carrier frame 101, the top and bottom of the carrier door 102 are provided with sliding grooves 104, the top and bottom of the carrier frame 101 are fixed with fixed columns 105, the fixed columns 105 are located in the sliding grooves 104 to realize the installation between the carrier door 102 and the carrier frame 101, when the carrier door 102 is hinged to the carrier frame 101, the opening and closing method of the carrier door 102 is conventional.
[0028] A lock pin 106, a lock pin spring 107, a first lock block 108, a second lock block 109, a first spring 110, a second spring 111 and a separation block 112 are provided near the left end of the carrier door 102. The first lock block 108 and the second lock block 109 are symmetrically arranged up and down, and the ends of the first lock block 108 and the second lock block 109 away from each other are connected to the first spring 110 and the second spring 111 respectively. The separation block 112 is located at the front side between the first lock block 108 and the second lock block 109. The separation block 112 and the first lock block 108 and the second lock block 109 are all in inclined contact. A pressing column 113 is provided in the door handle 103. The pressing column 113 After extending into the carrier door 102, it is fixedly connected to the separation block 112. A pressing column spring 114 is provided between the pressing column 113 and the separation block 112. Under normal circumstances, due to the relationship of the pressing column spring 114, the separation block 112 abuts between the first locking block 108 and the second locking block 109 and only makes the opening between the first locking block 108 and the second locking block 109 smaller. When the force of the pressing column spring 114 is overcome and the pressing column 113 is pressed, the opening between the first locking block 108 and the second locking block 109 can be increased through the separation block 112. After the pressing force disappears, the separation block 112, the first locking block 108 and the second locking block 109 are all reset.
[0029] The left end of the locking pin 106 can be extended into the locking hole 115 at the left end of the carrier frame 101, and the right end of the locking pin 106 can be extended between the first locking block 108 and the second locking block 109 and clamped by the first locking block 108 and the second locking block 109. After the left end of the locking pin 106 is completely disengaged from the locking hole 115, the right end of the locking pin 106 is clamped between the first locking block 108 and the second locking block 109. That is, after the carrier door 102 and the carrier frame 101 are unlocked, the lock pin 106 does not automatically reset but extends out of the carrier door 102, so that the carrier door 102 can be opened and closed directly through the door handle 103. It is very convenient to open. If you want to restore it, you only need to press the pressing column 113 to operate the first lock block 108 and the second lock block 109 to make the right end of the lock pin 106 disengage from the first lock block 108 and the second lock block 109. This can meet the needs of different management of operators, such as frequent operation or normal operation.
[0030] The lock pin 106 includes a first lock pin segment 116, a second lock pin segment 117 and a third lock pin segment 118. The second lock pin segment 117 is fixed between the first lock pin segment 116 and the third lock pin segment 118. The three can be formed in one piece. The first lock pin segment 116 can extend out of the carrier door 102 to extend into the lock hole 115. The lock pin spring 107 is installed on the first lock pin segment 116 and abuts against the second lock pin segment 117. The third lock pin segment 118 can extend into the first lock block 108 and the second lock block 108. 09, and the right end of the third lock pin segment 118 is a tapered end with a larger left end and a smaller right end, so that it is convenient for the right end of the third lock pin segment 118 to automatically open the first lock block 108 and the second lock block 109 and after sliding between the first lock block 108 and the second lock block 109, the first lock block 108 and the second lock block 109 are reset to clamp the right end of the third lock pin segment 118, thereby limiting the position of the entire lock pin 106 to avoid the lock pin 106 from automatically resetting under the action of the lock pin spring 107.
[0031] A movable plate 119 and a rotating wheel 120 are also provided in the carrier door 102. A linkage member 121 is fixed to the movable plate 119. The linkage member 121 and the second lock pin segment 117 rotate relative to each other. The rotating wheel 120 is engaged with the movable plate 119 to drive the movable plate 119 to move. An opening corresponding to the rotating wheel 120 is provided on the front side of the carrier door 102. The key 122 extends from the opening into the carrier door 102 and couples with the rotating wheel 120, such as a spline coupling, so that the key 122 is relatively special. The second lock pin segment 18 is provided with a first arcuate groove 123. A fixing plate 124 and a fixing pin 125 mounted on the fixing plate 124 are provided in the carrier door 102. The fixing pin 125 extends into the first arcuate groove 123. When the rotating wheel 120 is rotated clockwise by the key 122, the movable plate 119 can be driven to move rightward. The movable plate 119 drives the second lock pin segment 117 to move rightward through the linkage 121. Since the fixing pin 125 extends into the first arcuate groove 123, the second lock pin segment 117 will also rotate during the movement process. In this way, the first lock pin segment 116 It moves and rotates to disengage from the lock hole 115. The first lock pin segment 116 is provided with a second arcuate groove 126. An arcuate protrusion 127 is fixed inside the lock hole 115. The arcuate protrusion 127 is matched with the second arcuate groove 126. That is, if the second lock pin segment 117 is only moved to the right, the first lock pin segment 116 cannot be moved out of the lock hole 115 due to the arcuate protrusion 127 and the second arcuate groove 126. In this way, even if the carrier door 102 can slide left and right relative to the carrier frame 101, the first lock pin segment 116 can still lock the carrier door 102 and the carrier frame 101.
[0032] The working principle of the hinged or sliding connection between the carrier door 102 and the carrier frame 101 is as follows: Figure 1 As shown, the first lock pin segment 116 is matched with the lock hole 115, the carrier door 2 is in the closed state and the carrier door 2 is locked with the carrier frame 1. At this time, when the carrier door 2 is to be opened, the key 122 drives the rotating wheel 120 to rotate clockwise, which can drive the movable plate 119 to move to the right. The movable plate 119 drives the second lock pin segment 117 to move to the right through the linkage 121. The second lock pin segment 117 rotates while moving to the right, so that the first lock pin segment 116 moves and rotates to disengage from the lock hole 115 to achieve unlocking. Then, the carrier door 2 is opened by the door handle 103, which can be opened in a hinged manner as shown in FIG. Figure 7 As shown, it eventually opens to Figure 9 The carrier door 2 shown is located on the right side of the carrier frame, but it does not have to be opened. Figure 9As shown, it can be slid open again, and finally opened until the carrier door 2 is located on the right side of the carrier frame. To close the carrier door 2 in the open state, it is only necessary to close the carrier door 2 and then press the pressing column 113 to operate the first lock block 108 and the second lock block 109 so that the third lock pin segment 118 disengages the first lock block 108 and the second lock block 109. In this way, the first lock pin segment 116 automatically returns to its original position under the action of the lock pin spring 107 and inserts into the lock hole 115 to achieve locking. That is, the key 122 is not required for locking, and only a button is required.
[0033] In order to further prevent the carrier door 102 from being opened by mistake, in one embodiment, Figure 10 A buckle structure is provided between the fixing plate 124 and the linkage member 121. For example, a buckle 128 is provided on the linkage member 121, and a slot is provided on the fixing plate 124. The buckle is elastically snapped into the slot. When unlocked by the key 122, it is necessary to first use the force of overcoming the buckle structure to separate the buckle 128 from the slot, and then drive the second lock pin segment 117 to move and rotate. When locking, after pressing the pressing column 113, the right end of the third lock pin segment 118 disengages from the first lock block 108 and the second lock block 109, and the first lock pin segment 116 is inserted into the lock hole 115 under the left and right forces of the lock pin spring 107 to achieve locking, and the buckle 128 is also re-engaged with the slot to achieve further locking.
[0034] Finally, the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A blockchain data supervision platform, comprising a supervision server encapsulating a blockchain data supervision system and a platform carrier on which the supervision server is mounted, characterized in that: The platform carrier comprises a carrier frame, a carrier door and a door handle, wherein the right end of the carrier door can be hinged to the right end of the carrier frame, and the door handle is fixed to the front face of the carrier door, and a lock pin, a lock pin spring, a first lock block, a second lock block, a first spring, a second spring and a separation block are provided in the carrier door near the left end, the first lock block and the second lock block are symmetrically arranged up and down respectively, and the ends of the first lock block and the second lock block away from each other are respectively connected to the first spring and the second spring, and the separation block is located at the front side between the first lock block and the second lock block, and the left end of the lock pin can be extended into the lock hole at the left end of the carrier frame, and the right end of the lock pin can be extended between the first lock block and the second lock block and clamped by the first lock block and the second lock block, and after the left end of the lock pin is completely disengaged from the lock hole, the right end of the lock pin is clamped between the first lock block and the second lock block; The lock pin includes a first lock pin section, a second lock pin section and a third lock pin section, the first lock pin section can extend out of the carrier door to extend into the lock hole, and a movable plate and a rotating wheel are also provided in the carrier door, the movable plate is fixed with a linkage part, the linkage part and the second lock pin section rotate relative to each other, the rotating wheel is meshed with the movable plate to drive the movable plate to move, a first arc groove is provided on the second lock pin section, a fixed plate and a fixed pin installed on the fixed plate are provided in the carrier door, the fixed pin extends into the first arc groove, the first lock pin section is provided with a second arc groove, an arc convex is fixed inside the lock hole, the arc convex is matched with the second arc groove, so that the first lock pin section can be disengaged from the lock hole while moving and rotating, so that the carrier door can also move left and right relative to the carrier frame, and the top and bottom of the carrier door are provided with sliding grooves, and the top and bottom of the carrier frame are fixed with fixed columns, and the fixed columns are located in the sliding grooves.
2. A blockchain data supervision platform according to claim 1, characterized in that: The second lock pin segment is fixed between the first lock pin segment and the third lock pin segment, the lock pin spring is installed on the first lock pin segment and abuts against the second lock pin segment, and the third lock pin segment can extend between the first lock block and the second lock block.
3. A blockchain data supervision platform according to claim 2, characterized in that: The right end of the third lock pin segment is a tapered end.
4. A blockchain data supervision platform according to claim 1, characterized in that: An opening corresponding to the rotating wheel is provided on the front side of the carrier door, and the key extends into the carrier door from the opening and couples with the rotating wheel.
5. A blockchain data supervision platform according to claim 1, characterized in that: A pressing column is provided in the door handle, and the pressing column is fixedly connected to the separation block after extending into the carrier door, and a pressing column spring is provided between the pressing column and the separation block.
6. A blockchain data supervision platform according to claim 5, characterized in that: The separation block is in contact with the first locking block and the second locking block via inclined surfaces.
Citation Information
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