A press plate dynamic tracking device and system
By using a dynamic tracking device and system for pressure plates, the first and second monitoring mechanisms are used to monitor the pressure plate components in real time. Combined with terminal equipment and a tracking mechanism, the problem of inaccurate monitoring during the transfer of pressure plate components is solved, and high-precision monitoring is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- DAH SOLAR CO LTD
- Filing Date
- 2023-11-15
- Publication Date
- 2026-05-15
AI Technical Summary
In the existing technology, it is difficult to achieve real-time monitoring of the pressure plate components during the transmission process, resulting in inaccurate monitoring results.
The pressure plate dynamic tracking device and system are adopted. The position and angle of the pressure plate are monitored in real time through the first monitoring mechanism and the second monitoring mechanism. Combined with terminal equipment and tracking mechanism, real-time signal transmission and alarm are carried out using signal transmitter and signal receiver.
This improved the accuracy of pressure plate monitoring results, ensured real-time tracking of pressure plate position and angle, and reduced monitoring errors.
Smart Images

Figure CN117798549B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of dynamic tracking technology for pressure plates, and in particular to a dynamic tracking device and system for pressure plates. Background Technology
[0002] Dynamic tracking is a process of monitoring and recording the location, state, and behavior of an object or event. It typically involves using devices such as sensors, cameras, and GPS to collect data and using algorithms and models to analyze that data. By tracking objects or events in real time, real-time data on their location, speed, orientation, and other relevant information can be provided.
[0003] When producing solar cell modules, the solder strips need to be conveyed to different workstations for welding via a conveyor device. During the testing process, in order to prevent the solder strips from moving, pressure plates are usually used to press and limit the solder strips. In order to monitor whether the pressure plates move during the conveying process, the pressure plates need to be monitored in real time.
[0004] Therefore, a dynamic tracking device and system for pressure plates is proposed. Summary of the Invention
[0005] (a) Technical problems to be solved
[0006] To address the shortcomings of existing technologies, this invention provides a dynamic tracking device and system for pressure plates, which can monitor pressure plate components in real time and monitor the monitoring equipment monitoring the pressure plate components in real time, thereby improving the accuracy of monitoring results.
[0007] (II) Technical Solution
[0008] This invention is achieved using the following technical solution: a pressure plate dynamic tracking device and system, applied to a conveyor belt device, comprising a placement plate disposed on the inner side of the conveyor belt device, several sets of welding strips laid on the upper part of the placement plate, and pressure plate components for limiting the welding strips, the pressure plate components being able to fix the welding strips to the placement plate; a first monitoring mechanism for real-time monitoring of the pressure plate components and a second monitoring mechanism for real-time monitoring of the first monitoring mechanism are detachably installed on the placement plate, the first monitoring mechanism being able to monitor the position and angle of the pressure plate components in real time, and the second monitoring mechanism being able to monitor the position and angle of the first monitoring mechanism in real time; wherein, the first monitoring mechanism includes several sets of components movably installed on the placement plate... The plate includes a support assembly, mounting rods detachably fixed to the support assembly, and several sets of first monitoring bodies detachably mounted on the mounting rods. These first monitoring bodies work together to monitor the pressure plate in real time. The first monitoring bodies are positioned above the pressure plate and monitor and track its placement position and angle. The second monitoring mechanism includes several sets of rotating assemblies detachably mounted on one side of the upper end of the plate and second monitoring bodies rotatably connected to the rotating assemblies. The second monitoring bodies monitor the first monitoring bodies, and each second monitoring body corresponds to one of the first monitoring bodies, enabling real-time monitoring of the first monitoring bodies. The support assembly is equipped with a sliding assembly that is slidably connected to the plate.
[0009] Preferably, a connecting seat is fixedly provided on the mounting rod base, and a first connecting block is vertically provided on the first monitoring body. The first connecting block can be threaded into the first connecting groove, which can detachably fix the first monitoring body. The bottom end surface of the connecting seat is provided with a first connecting groove that connects to the first connecting block.
[0010] Preferably, the support assembly includes support rods movably mounted on both sides of the outer surface of the placement plate and a second connecting block vertically fixed to the upper inner side of the support rods. The second connecting block and the mounting rod seat cooperate to adjust the angle of the first monitoring body. Both ends of the mounting rod seat are provided with second connecting grooves that connect to the second connecting block. The support rods have an "L" shaped structure, and the second connecting block has a cylindrical structure.
[0011] Preferably, one end of the support rod is vertically fixed with a reinforcing rod, and the sliding assembly includes several sets of sliding grooves symmetrically arranged on both sides of the outer surface of the placement plate and sliders slidably arranged in the sliding grooves. One end of the reinforcing rod extends into the sliding groove and is fixedly connected to the slider. The slider can slide in the sliding groove, thereby moving the position of the support rod.
[0012] Preferably, the bottom thread of the support rod is provided with a limiting member, and a first washer is provided on one side of the limiting member. A second washer is sleeved on the side of the reinforcing rod near the slider. The first washer and the second washer cooperate to facilitate the limiting member to fix the support rod. The support rod is fixedly connected to the placement plate through the limiting member.
[0013] Preferably, the rotating assembly includes a mounting base detachably mounted on the upper end of the placement plate, a rotating seat detachably fixed to the mounting base, and a rotating rod rotatably disposed inside the rotating seat. One end of the rotating rod is fixedly connected to the outer wall of the second monitoring body. The outer wall of the rotating seat is provided with a motor connected to the rotating rod. The motor controls the second monitoring body to adjust its angle inside the rotating seat through the rotating rod, so that the second monitoring body can monitor the first monitoring body in real time.
[0014] Preferably, a first mounting block is vertically arranged at the bottom end of the mounting base, a first mounting groove connected to the first mounting block is opened at the upper end of the placement plate, a second mounting block is vertically arranged at the bottom end of the rotating base, the first mounting block can disassemble or fix the mounting base, the second mounting block can disassemble or fix the rotating base, and a second mounting groove connected to the second mounting block is opened at the upper end of the mounting base.
[0015] Preferably, the pressure plate dynamic tracking system includes a tracking mechanism and a terminal device connected to the tracking mechanism. The pressure plate dynamic tracking system includes a pressure plate dynamic tracking device. The tracking mechanism is installed in the pressure plate dynamic tracking device and can track the first monitoring mechanism and the second monitoring mechanism in real time. The tracking mechanism includes several sets of tracking devices that can be detachably installed on the conveyor belt device and an alarm that can be detachably installed on the upper part of the tracking device. The tracking device has two sets of signal transceivers inside. The first monitoring body and the second monitoring body each have two sets of signal transmitters inside. The first monitoring body monitors the pressure plate in real time. When the position or angle of the pressure plate changes, the signal transmitter in the first monitoring body sends a signal to the signal transceiver in the tracking device. When the position or angle of the first monitoring body changes, the signal transmitter in the second monitoring body sends a signal. The signal transceiver in the tracking device receives the signal transmitted by the signal transmitter. The signal transmitter and the signal transceiver are connected by a signal.
[0016] Preferably, the terminal device includes a processor and a memory. The processor can process the signals transmitted by the signal transceiver and control the alarm to issue an alarm signal. The memory stores the signals received by the processor and the instructions for processing them.
[0017] (III) Beneficial Effects
[0018] Compared with the prior art, the present invention provides a pressure plate dynamic tracking device and system, which has the following beneficial effects:
[0019] This pressure plate dynamic tracking device and system, through the setting of a first monitoring mechanism and a second monitoring mechanism, the first monitoring body and the support rod can cooperate to monitor the pressure plate in real time, and the second monitoring body can monitor the first monitoring body in real time. When used in conjunction with terminal equipment and tracking mechanism, it improves the accuracy of the monitoring results of the pressure plate dynamic tracking device. Through the setting of a limiting part, a second connecting block and a slider, the angle and position of the first monitoring body can be adjusted, and the rotating seat and motor can adjust the angle of the second monitoring body. Attached Figure Description
[0020] Figure 1 This is an overall structural diagram of the present invention.
[0021] Figure 2 In the process of invention Figure 1 Enlarged view of point A in the middle;
[0022] Figure 3 This is a partial structural diagram of the conveyor belt device and the placement plate in the invention;
[0023] Figure 4 This is a partial structural diagram of the mounting rod and supporting rod in the invention;
[0024] Figure 5 This is a partial structural diagram of the second monitoring body and mounting base in the invention.
[0025] In the diagram: 1. Conveyor belt device; 2. Placement plate; 3. Pressure plate; 4. Mounting rod seat; 5. First monitoring body; 6. Second monitoring body; 7. Connecting seat; 8. First connecting block; 9. Supporting rod; 10. Second connecting block; 11. Reinforcing rod; 12. Slide groove; 13. Sliding block; 14. Limiting component; 15. First gasket; 16. Second gasket; 17. Motor; 18. First mounting block; 19. Second mounting block; 20. Tracking device; 21. Alarm; 22. Mounting seat; 23. Rotating seat. Detailed Implementation
[0026] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0027] Example 1: Please refer to Figure 1-5This embodiment discloses a dynamic tracking device and system for pressure plates, applied to a conveyor belt device 1. It includes a placement plate 2 disposed on the inner side of the conveyor belt device 1, several sets of welding strips laid on the upper end of the placement plate 2, and pressure plate components 3 for limiting the welding strips. The pressure plate components 3 can fix the welding strips on the placement plate 2, and the conveyor belt device 1 can convey the placement plate 2. A first monitoring mechanism for real-time monitoring of the pressure plate components 3 and a second monitoring mechanism for real-time monitoring of the first monitoring mechanism are detachably installed on the placement plate 2. The first monitoring mechanism can monitor the position and angle of the pressure plate components 3 in real-time, and the second monitoring mechanism can monitor the position and angle of the first monitoring mechanism in real-time. The first monitoring mechanism includes several sets of components movably installed on... The placement plate 2 includes a support assembly, a mounting rod 4 detachably fixed to the support assembly, and several sets of first monitoring bodies 5 detachably mounted on the mounting rod 4. The several sets of first monitoring bodies 5 cooperate to monitor the pressure plate 3 in real time. The first monitoring bodies 5 are positioned above the pressure plate 3 and monitor and track the placement position and angle of the pressure plate 3. The second monitoring mechanism includes several sets of rotating assemblies detachably mounted on one side of the upper end of the placement plate 2 and second monitoring bodies 6 rotatably connected to the rotating assemblies. The second monitoring bodies 6 monitor the first monitoring bodies 5. The second monitoring bodies 6 correspond one-to-one with the first monitoring bodies 5 and can monitor the first monitoring bodies 5 in real time. The support assembly is provided with a sliding assembly that is slidably connected to the placement plate 2.
[0028] A connecting seat 7 is fixedly installed on the mounting rod base 4, and a first connecting block 8 is vertically installed on the first monitoring body 5. The first connecting block 8 can be threaded into the first connecting groove, which can detachably fix the first monitoring body 5. The bottom end surface of the connecting seat 7 is provided with a first connecting groove that connects to the first connecting block 8. Rotating the first monitoring body 5 will drive the first connecting block 8 to rotate, thereby removing the first connecting block 8 from the first connecting groove and removing the first monitoring body 5 from the connecting seat 7.
[0029] The support assembly includes support rods 9 movably mounted on both sides of the outer surface of the placement plate 2 and a second connecting block 10 vertically fixed to the upper inner side of the support rods 9. One end of the mounting rod seat 4 is rotatably connected to a set of support rods 9, and the other end of the mounting rod seat 4 is movably connected to the support rods 9 through the second connecting block 10. The second connecting block 10 and the mounting rod seat 4 cooperate to adjust the angle of the first monitoring body 5. Both ends of the mounting rod seat 4 are provided with second connecting grooves that connect to the second connecting block 10. The support rods 9 have an "L" shaped structure, and the second connecting block 10 has a cylindrical structure. Rotating the mounting rod seat 4 causes the second connecting block 10 to rotate in the second connecting groove, thereby adjusting the angle of the first monitoring body 5.
[0030] One end of the support rod 9 is vertically fixed with a reinforcing rod 11. The sliding assembly includes several sets of sliding grooves 12 symmetrically arranged on both sides of the outer surface of the placement plate 2 and sliders 13 slidably arranged in the sliding grooves 12. One end of the reinforcing rod 11 extends into the sliding groove 12 and is fixedly connected to the slider 13. The slider 13 can slide in the sliding groove 12, thereby moving the position of the support rod 9. Moving the support rod 9 drives the reinforcing rod 11 to move, and the reinforcing rod 11 drives the slider 13 to move, so that the slider 13 slides in the sliding groove 12.
[0031] The bottom thread of the support rod 9 is provided with a limiting member 14. A first washer 15 is provided on one side of the limiting member 14. A second washer 16 is sleeved on the side of the reinforcing rod 11 near the slider 13. The first washer 15 and the second washer 16 cooperate to facilitate the limiting member 14 to fix the support rod 9. The support rod 9 is fixedly connected to the placement plate 2 through the limiting member 14. Rotating the limiting member 14 causes the first washer 15 to move, so that the first washer 15 and the outer surface of the placement plate 2 are in contact, and the second washer 16 and the inner side of the groove 12 are in contact, thus fixing the support rod 9 and the placement plate 2.
[0032] The rotating assembly includes a mounting base 22 detachably mounted on the upper end of the placement plate 2, a rotating base 23 detachably fixed to the mounting base 22, and a rotating rod rotatably disposed inside the rotating base 23. One end of the rotating rod is fixedly connected to the outer wall of the second monitoring body 6. The outer wall of the rotating base 23 is provided with a motor 17 connected to the rotating rod. The motor 17 controls the second monitoring body 6 to adjust its angle inside the rotating base 23 through the rotating rod, so that the second monitoring body 6 can monitor the first monitoring body 5 in real time. When the motor 17 is started, it drives the rotating rod to rotate, and the rotating rod drives the second monitoring body 6 to rotate inside the rotating base 23, thereby adjusting the angle of the second monitoring body 6.
[0033] The bottom end of the mounting base 22 is vertically provided with a first mounting block 18. The upper end of the placement plate 2 is provided with a first mounting groove that connects to the first mounting block 18. The bottom end of the rotating base 23 is vertically provided with a second mounting block 19. The first mounting block 18 can disassemble or fix the mounting base 22, and the second mounting block 19 can disassemble or fix the rotating base 23. The upper end of the mounting base 22 is provided with a second mounting groove that connects to the second mounting block 19. By controlling the rotating base 23 to rotate, the rotating base 23 drives the second mounting block 19 to rotate, thereby removing the second mounting block 19 from the second mounting groove and driving the mounting base 22 to rotate. The mounting base 22 then drives the first mounting block 18 to rotate, thereby removing the first mounting block 18 from the first mounting groove.
[0034] The pressure plate dynamic tracking system includes a tracking mechanism and a terminal device connected to the tracking mechanism. The system includes a pressure plate dynamic tracking device, and the tracking mechanism is installed on the device, enabling real-time tracking of the first and second monitoring mechanisms. The tracking mechanism includes several sets of tracking devices 20 detachably mounted on the conveyor belt device 1 and alarms 21 detachably mounted on the upper end of the tracking devices 20. The alarms 21 can emit two different sets of audible and visual alarms. The tracking devices 20 have two sets of signal transceivers inside. The first monitoring body 5 and the second monitoring body 6 each have two... The first monitoring body 5 monitors the pressure plate 3 in real time. When the position or angle of the pressure plate 3 changes, the signal transmitter in the first monitoring body 5 sends a signal to the signal receiver in the tracking device 20. When the position or angle of the first monitoring body 5 changes, the signal transmitter in the second monitoring body 6 sends a signal, and the signal receiver in the tracking device 20 receives the signal transmitted by the signal transmitter. The signal transmitter and the signal receiver are connected by a signal. The two sets of signal receivers can trigger an alarm 21. The alarm sound triggered by the first monitoring body 5 is different from the alarm sound triggered by the second monitoring body 6.
[0035] The terminal device includes a processor and a memory. The processor can process the signals transmitted by the signal transceiver and control the alarm 21 to issue an alarm signal. The memory stores the signals received by the processor and the instructions for processing them.
[0036] In use, a dynamic tracking device and system for pressure plates involves placing welding strips on the upper end of a placement plate 2, using a pressure plate 3 to press and limit the welding strips, moving a support rod 9 to move a reinforcing rod 11, which in turn moves a slider 13, causing the slider 13 to slide in a groove 12, thereby adjusting the position of the first monitoring body 5 so that it moves above the pressure plate 3. The mounting rod seat 4 is rotated to adjust the angle of the first monitoring body 5, allowing several groups of first monitoring bodies 5 to monitor the pressure plate 3 from all angles. A motor 17 is started to rotate a rotating rod, which in turn rotates a second monitoring body 6 inside a rotating seat 23. The angle of the second monitoring body 6 is adjusted so that it monitors the first monitoring body 5 in real time. Finally, a conveyor belt device 1 is started to move the placement plate 2 and transfer the welding strips.
[0037] When the position or angle of the pressure plate 3 changes, the signal transmitter in the first monitoring body 5 sends a signal to the signal receiver in the tracking device 20. When the position or angle of the first monitoring body 5 changes, the signal transmitter in the second monitoring body 6 sends a signal, and the signal receiver in the tracking device 20 receives the signal sent by the signal transmitter. The signal transmitter and the signal receiver are connected by a signal, so that the terminal device processes the signal sent by the tracking device 20 and controls the alarm 21 to sound an alarm and inform people.
[0038] This pressure plate dynamic tracking device and system, through the setting of a first monitoring mechanism and a second monitoring mechanism, the first monitoring body 5 and the support rod 9 cooperate to monitor the pressure plate 3 in real time, and the second monitoring body 6 can monitor the first monitoring body 5 in real time. It is used in conjunction with terminal equipment and tracking mechanism, thereby improving the accuracy of the monitoring results of the pressure plate dynamic tracking device. Through the setting of the limiting part 14, the second connecting block 10 and the slider 13, the angle and position of the first monitoring body 5 can be adjusted, and the rotating seat 23 and the motor 17 can adjust the angle of the second monitoring body 6.
[0039] The above embodiments are merely preferred embodiments of the present invention and should not be construed as limiting the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention shall fall within the scope of protection claimed by the present invention.
Claims
1. A pressure plate dynamic tracking device, applied to a conveyor belt device (1), characterized in that, include: The placement plate (2) is set on the inside of the conveyor belt device (1), several sets of welding strips laid on the upper end of the placement plate (2) and pressure plate components (3) that limit the welding strips. The placement plate (2) is detachably equipped with a first monitoring mechanism for real-time monitoring of the pressure plate (3) and a second monitoring mechanism for real-time monitoring of the first monitoring mechanism; The first monitoring mechanism includes several sets of support components that are movably installed on the placement plate (2), mounting rods (4) that are detachably fixed to the support components, and several sets of first monitoring bodies (5) that are detachably installed on the mounting rods (4). The first monitoring body (5) is located above the pressure plate (3) and monitors and tracks the placement position and placement angle of the pressure plate (3). The second monitoring mechanism includes several sets of rotating components that can be detachably installed on one side of the upper end of the placement plate (2) and a second monitoring body (6) that is rotatably connected to the rotating components. The second monitoring body (6) corresponds one-to-one with the first monitoring body (5) and can monitor the first monitoring body (5) in real time. The support component is provided with a sliding component that is slidably connected to the placement plate (2).
2. The pressure plate dynamic tracking device as described in claim 1, characterized in that, A connecting seat (7) is fixedly provided on the mounting rod base (4), and a first connecting block (8) is vertically provided on the first monitoring body (5). The bottom end surface of the connecting seat (7) is provided with a first connecting groove that connects to the first connecting block (8).
3. The pressure plate dynamic tracking device as described in claim 2, characterized in that, The support assembly includes support rods (9) movably mounted on both sides of the outer surface of the placement plate (2) and a second connecting block (10) vertically fixed on the upper inner side of the support rods (9). The mounting rod base (4) has a second connecting groove at both ends that connects to the second connecting block (10). The support rods (9) have an "L" shaped structure, and the second connecting block (10) has a cylindrical structure.
4. The pressure plate dynamic tracking device as described in claim 3, characterized in that, One end of the support rod (9) is vertically fixed with a reinforcing rod (11). The sliding assembly includes several sets of sliding grooves (12) symmetrically arranged on both sides of the outer surface of the placement plate (2) and sliders (13) slidably arranged in the sliding grooves (12). One end of the reinforcing rod (11) extends into the sliding groove (12) and is fixedly connected to the slider (13).
5. The pressure plate dynamic tracking device as described in claim 4, characterized in that, The bottom thread of the support rod (9) is provided with a limiting member (14), and a first gasket (15) is provided on one side of the limiting member (14). A second gasket (16) is sleeved on the side of the reinforcing rod (11) near the slider (13). The support rod (9) is fixedly connected to the placement plate (2) through the limiting member (14).
6. The pressure plate dynamic tracking device as described in claim 5, characterized in that, The rotating assembly includes a mounting base (22) detachably mounted on the upper end of the placement plate (2), a rotating base (23) detachably fixed to the mounting base (22), and a rotating rod rotatably disposed inside the rotating base (23). One end of the rotating rod is fixedly connected to the outer wall of the second monitoring body (6). The outer wall of the rotating base (23) is provided with a motor (17) connected to the rotating rod.
7. The pressure plate dynamic tracking device as described in claim 6, characterized in that, The bottom end of the mounting base (22) is vertically provided with a first mounting block (18), the upper end of the placement plate (2) is provided with a first mounting groove connected to the first mounting block (18), the bottom end of the rotating base (23) is vertically provided with a second mounting block (19), and the upper end of the mounting base (22) is provided with a second mounting groove connected to the second mounting block (19).
8. A dynamic tracking system for pressure plates, characterized in that, The pressure plate dynamic tracking system includes a tracking mechanism and a terminal device connected to the tracking mechanism. The pressure plate dynamic tracking system includes at least one pressure plate dynamic tracking device as described in any one of claims 1-7. The tracking mechanism is installed on the pressure plate dynamic tracking device and can track the first monitoring mechanism and the second monitoring mechanism in real time. The tracking mechanism includes several sets of tracking devices (20) that are detachably installed on the conveyor belt device (1) and an alarm (21) that is detachably installed on the upper end of the tracking device (20). The tracking device (20) is equipped with two sets of signal transceivers. The first monitoring body (5) and the second monitoring body (6) are respectively equipped with two sets of signal transmitters. The signal transmitters and signal transceivers are connected by signals.
9. The pressure plate dynamic tracking system as described in claim 8, characterized in that, The terminal device includes a processor and a memory. The processor can process the signals transmitted by the signal transceiver and control the alarm (21) to issue an alarm signal. The memory stores the signals received by the processor and the instructions for processing them.