Real-time data acquisition device for oiling machine
By combining the rotating drum, driving components, and locking blocks, the problem of easy theft of fuel dispenser data acquisition devices has been solved, thereby improving stability and security and ensuring real-time data monitoring.
Patent Information
- Application Number
- CN202520332095.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Existing fuel dispenser data acquisition devices are easily disassembled by criminals, making it impossible to monitor fuel dispensing data in real time. Traditional bolt connection methods are also difficult to prevent theft.
The device employs a combination structure of a rotating drum, driving component, locking pin, and locking block. It is installed or disassembled using specialized tools, which increases the difficulty of disassembly and ensures the stability and safety of the data acquisition device.
This improved the stability and security of the fuel dispenser data acquisition device, reduced the risk of theft, and enabled real-time data monitoring.
Smart Images

Figure CN223688103U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to oiling machine technical field, concretely is a kind of oiling machine real-time data acquisition device. BACKGROUND
[0002] Many illegal gas stations modify oiling data to evade government supervision and strive for more illegal income, and the time of general tampering with oiling data is indefinite, and the administrative department can only find problems through regular or temporary on-site inspection, but due to the relationship between time and space, real-time inspection cannot be carried out, resulting in a regulatory gap.
[0003] When the collector on the market is installed, bolts are usually provided on the outside of the collector and connected with the oiling machine, but this installation method needs to use traditional "cross" or "single" shaped bolt knives for fastening or fixing, and molecules are easy to disassemble the collector, so that real-time detection of oil cannot be carried out.
[0004] Therefore, we propose an oiling machine real-time data acquisition device to solve the problems raised in the above. UTILITY MODEL CONTENTS
[0005] The utility model aims to solve the technical problems raised above.
[0006] To achieve the above purpose, the utility model adopts the following technical scheme: an oiling machine real-time data acquisition device, comprising a bottom shell and a top shell located above the bottom shell; the two sides of the bottom shell are respectively fixed with mounting seats, and the side of the top shell is recessed inward with grooves matched with the mounting seats; a rotating drum is rotatably installed on the mounting seat, and a driving member is installed inside the rotating drum; one end of the driving member is fixed with a locking column arranged through the rotating drum; a plurality of locking grooves are formed on the outer surface of the locking column along the axial direction; an installation groove matched with the locking column is formed on the groove, and the two sides of the installation groove are respectively fixed with locking blocks matched with the locking grooves.
[0007] Further, a "ring" shaped groove is formed on the outer surface of the locking column along the circumferential direction, and the "ring" shaped groove and the plurality of locking grooves are in communication with each other.
[0008] Further, a compression spring is sleeved on the locking column, and the two ends of the compression spring are respectively fixedly connected with the inner side wall of the rotating drum and one side of the driving member.
[0009] Further, a guide block is fixed on the outer surface of the driving member, a guide groove matched with the guide block is formed on the inner side wall of the rotating drum along the axial direction, and a limiting groove in communication with the guide groove is also formed on the inner side wall of the rotating drum along the circumferential direction.
[0010] Further, a "ring"-shaped driving groove is formed on one side of the driving member, a plurality of driving blocks are fixed equidistantly on one side of the driving groove, and a certain gap is left between adjacent driving blocks.
[0011] The utility model discloses the beneficial effect:
[0012] The utility model discloses a bottom shell and top shell adopt the connection of rotary drum, driving member, locking post and locking block, if the bottom shell and top shell are installed or disassembled, need using separate tool only can install or disassemble the work of the work, replace traditional disassembly mode, increase the difficulty of the bottom shell and top shell disassembly of not molecule, reduce the situation of the theft of collector, can guarantee the data collection of oil. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;
[0014] Figure 2 It is the three-dimensional structure schematic diagram of the bottom shell in the utility model;
[0015] Figure 3 It is the partial structure schematic diagram of the top shell in the utility model;
[0016] Figure 4 It is the explosion structure schematic diagram of mounting seat, recess, rotary drum and driving member in the utility model;
[0017] Figure 5 It is the bottom structure schematic diagram of rotary drum in the utility model.
[0018] The name corresponding to each mark in the drawing:
[0019] 1, bottom shell;2, top shell;3, mounting seat;4, recess;5, rotary drum;6, driving member;7, locking post;8, locking groove;9, installation groove;10, locking block;11, "ring"-shaped groove;12, compression spring;13, guide block;14, guide groove;15, limit groove;16, driving groove;17, driving block. Specific implementation
[0020] The technical scheme in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art belong to the scope of protection of the utility model.
[0021] The utility model provides a kind of gasoline dispenser real-time data acquisition device, including bottom shell 1 and the top shell 2 at the top of bottom shell 1, several installation holes 20 are respectively set in the corner of bottom shell 1, bolt (not shown in drawing) is arranged in each installation hole 20, and bolt is connected with the inside wall of gasoline dispenser by installation hole 20, this bolt is installed in the inside of bottom shell 1 and top shell 2, prevent the data acquisition device from being disassembled;
[0022] The two sides of the bottom shell 1 are fixed with mounting seats 3, and the centers of the two sides of the top shell 2 are recessed inwardly with grooves 4, which can be inserted on the mounting seats 3, thereby limiting the bottom shell 1 and the top shell 2, preventing shaking or loosening, and improving the stability of the collection device.
[0023] A rotating cylinder 5 is rotatably installed in the mounting seat 3, and a driving member 6 is slidably installed in the rotating cylinder 5 along the axial direction, so that the driving member 6 can not only rotate on the mounting seat 3, but also move along the axial direction. One end of the driving member 6 is fixed with a locking column 7 that passes through the rotating cylinder 5, and a plurality of locking grooves 8 are equidistantly formed on the outer surface of the locking column 7 along the circumferential direction. The locking grooves 8 limit the top shell 2, and the outer surface of the locking column 7 is also provided with a "ring" shaped groove 11, which can take out the top shell 2 in the locked state, thereby improving the use effect of the device.
[0024] The inside of the groove 4 is provided with a mounting groove 9 matched with the locking column 7, and the two inner side walls of the mounting groove 9 are respectively fixed with locking blocks 10. When the locking blocks 10 are located in the inside of the locking grooves 8, the locking effect is achieved. When the locking blocks 10 are located in the inside of the "ring" shaped groove 11, the top shell 2 in the locked state can be opened from the top of the bottom shell 1.
[0025] A compression spring 12 is sleeved on the locking column 7, and the two ends of the compression spring 12 are respectively fixedly connected with the inner side wall of the rotating cylinder 5 and one side of the driving member 6. The setting of the compression spring 12 achieves the resetting effect of the driving member 6, and the driving member 6 in the compressed state can return to the original state.
[0026] The outer surface of the driving member 6 is fixed with a guide block 13, the inner side wall of the rotating cylinder 5 is provided with a guide groove 14 matched with the guide block 13 along the axial direction, and the inner side wall of the rotating cylinder 5 is also provided with a limiting groove 15 communicated with the guide groove 14 along the circumferential direction. The cooperation of the guide block 13 and the guide groove 14 achieves the limiting effect, preventing the driving member 6 from rotating in the rotating cylinder 5.
[0027] The driving piece 6 is provided with a "ring" shaped driving slot 16 on one side, a plurality of driving blocks 17 are fixed equidistantly on one side of the driving slot 16, and a certain gap is reserved between the adjacent driving blocks 17; through the cooperation of the driving slot 16 and the driving block 17, the separate driving structure is needed to open the bottom shell 1 and the top shell 2, replacing the traditional mode.
[0028] If the bottom shell 1 and the top shell 2 are assembled, first, one end of the driving structure is inserted into the inside of the driving slot 16, then the driving piece 6 is pressed and rotated, the driving piece 6 can drive the locking column 7 to move, if the "ring" shaped slot 11 on the locking column 7 passes through the mounting seat 3; the recess 4 at one end of the top shell 2 can be sleeved on the mounting seat 3, so that the mounting slot 9 can slide on the locking column 7, if the locking blocks 10 on both sides of the mounting slot 9 slide into the "ring" shaped slot 11, then the driving piece 6 is loosened, the compression spring 12 drives the driving piece 6 to return to the original position, so that the driving piece 6 can drive the locking column 7 to move, so that the locking blocks 10 can be clamped in the corresponding locking slots 8, thereby playing a locking role.
Claims
1. A real-time data acquisition device for fuel dispenser, comprising a bottom shell (1) and a top shell (2) above the bottom shell (1); two sides of the bottom shell (1) are respectively fixed with mounting seats (3), and the side of the top shell (2) is recessed inwardly with grooves (4) matched with the mounting seats (3); characterized in that: The rotating drum (5) is rotatably installed on the mounting base (3), and a driving member (6) is installed inside the rotating drum (5), one end of the driving member (6) is fixed with a locking column (7) penetrating through the rotating drum (5), and the outer surface of the locking column (7) is provided with a plurality of locking grooves (8) along the axial direction; the recess (4) is provided with a mounting groove (9) used in cooperation with the locking column (7), and the two sides of the mounting groove (9) are respectively fixed with locking blocks (10) used in cooperation with the locking grooves (8).
2. The real-time data acquisition device for fuel dispenser according to claim 1, characterized in that: The outer surface of the locking column (7) is provided with a "ring"-shaped groove (11) along the circumferential direction, and the "ring"-shaped groove (11) and the plurality of locking grooves (8) are in communication with each other.
3. The real-time data acquisition device for fuel dispensers of claim 1, wherein: The locking column (7) is sleeved with a compression spring (12), and the two ends of the compression spring (12) are respectively fixedly connected with the inner side wall of the rotating drum (5) and one side of the driving member (6).
4. The real-time data acquisition device for fuel dispensers of claim 2, wherein: The outer surface of the driving member (6) is fixed with a guide block (13), the inner side wall of the rotating drum (5) is provided with a guide groove (14) used in cooperation with the guide block (13) along the axial direction, and the inner side wall of the rotating drum (5) is further provided with a limiting groove (15) in communication with the guide groove (14) along the circumferential direction.
5. The real-time data collection device for fuel dispensers of claim 1 wherein: The driving member (6) is provided with a "ring"-shaped driving groove (16) on one side, a plurality of driving blocks (17) are fixed on one side of the driving groove (16) at equal intervals, and a certain gap is left between adjacent driving blocks (17).