传输线以及磁驱传输系统
By using optical fiber to connect the stator and the connecting stator in series in the magnetic drive transmission line, rapid and continuous movement of the stator and real-time monitoring of its position information are achieved. This solves the problem of poor connection of the connecting mechanism, improves transmission efficiency and equipment reliability, and ensures the continuity of production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI GOLYTEC AUTOMATION CO LTD
- Filing Date
- 2025-07-25
- Publication Date
- 2026-07-17
AI Technical Summary
The lack of an effective connection method in the magnetic drive transmission line connection mechanism makes it impossible to accurately and timely obtain the stator's movement position information during transmission, affecting the efficiency and accuracy of stator transmission.
The first stator, the first upper and lower connecting stator, and the second upper and lower connecting stator are connected in series by optical fiber. The stator is driven to move by the first upper and lower connecting drive assembly and the second upper and lower connecting drive assembly, so as to realize the rapid and continuous movement of the stator. The optical fiber provides a stable and reliable information transmission channel and monitors the position information of the stator in real time.
It improves the operating efficiency of the transmission line, reduces the waiting time of the stator during transmission, ensures positional accuracy, reduces production interruptions, improves equipment availability and reliability, and guarantees the continuity of production.
Smart Images

Figure CN224512603U_ABST
Abstract
Claims
1. A transmission line, characterized by, include: First stator; The first upper and lower connection mechanism includes a first upper and lower connection drive component and a first upper and lower connection stator disposed on the first upper and lower connection drive component. The first upper and lower connection drive component is used to drive the first upper and lower connection stator to move so as to connect with the first stator at the end of the transmission direction. The second upper and lower connecting mechanism includes a second upper and lower connecting drive assembly and a second upper and lower connecting stator disposed on the second upper and lower connecting drive assembly. The second upper and lower connecting drive assembly is used to drive the second upper and lower connecting stator to move so as to connect with the first upper and lower connecting stator. as well as An optical fiber line is used to connect the first stator, the first upper and lower connecting stator, and the second upper and lower connecting stator in series.
2. The transmission line of claim 1, wherein, Also includes: The second stator is disposed downstream of the first stator along the transmission direction and spaced apart from the first stator; The second upper and lower connecting drive component is also used to drive the second upper and lower connecting stator to move so as to connect with the second stator.
3. The transmission line of claim 2, wherein, The optical fiber connects the first stator, the first upper and lower connecting stator, the second upper and lower connecting stator, and the second stator in series.
4. The transmission line of claim 2, wherein, The optical fiber includes: The first active segment connects the first stator, the first upper and lower connecting stator, and the second upper and lower connecting stator at the end of the transmission direction in series; and The second active section connects the second upper and lower connecting stators and the second stator at the beginning of the transmission direction in series. The transmission line also includes: A first cable chain, wrapped around the first movable segment; and The second cable chain wraps around the second moving section.
5. The transmission line of claim 2, wherein, The first stator and the second stator are of one type: straight stator, arc stator, bifurcated stator, and cross stator.
6. The transmission line of claim 2, wherein, Also includes: The first transmission segment includes at least one of the first stators; The second transmission segment is spaced apart from the first transmission segment along the transmission direction and includes at least one second stator; The third transmission segment includes at least one third stator and is located below the first transmission segment; The fourth transmission segment includes at least one fourth stator, which is spaced apart from the third transmission segment along the transmission direction and is located below the first transmission segment; The third upper and lower connection mechanism includes a third upper and lower connection drive component and a third upper and lower connection stator disposed on the third upper and lower connection drive component. The third upper and lower connection drive component is used to drive the third upper and lower connection stator to move so as to connect with the third stator at the end of the transmission direction. as well as The fourth upper and lower connection mechanism includes a fourth upper and lower connection drive assembly and a fourth upper and lower connection stator disposed on the fourth upper and lower connection drive assembly. The fourth upper and lower connection drive assembly is used to drive the fourth upper and lower connection stator to move so as to connect with the third upper and lower connection stator or the fourth stator at the beginning of the transmission direction.
7. The transmission line of claim 6, wherein, The optical fiber connects the first stator, the first upper and lower connecting stator, the second upper and lower connecting stator, the second stator, the third stator, the third upper and lower connecting stator, the fourth upper and lower connecting stator, and the fourth stator in series.
8. A magnetic drive transmission system, characterized in that, include: Multiple transmission lines, one of which is a transmission line as described in any one of claims 1-7, the multiple transmission lines are spliced sequentially along the transmission direction, and each transmission line includes at least an upper transmission line and a lower transmission line that are opposite each other, the upper transmission line includes multiple upper stators, the lower transmission line includes multiple lower stators, and the upper stator includes the first stator.
9. The magnetic drive transmission system of claim 8, wherein, Also includes: Multiple optical fiber lines, one of which is the optical fiber line as described in any one of claims 1-7, the multiple optical fiber lines are arranged in a one-to-one correspondence with the multiple transmission lines, and the same optical fiber line connects multiple upper stators in the upper transmission line in series, and connects multiple lower stators in the lower transmission line connected in series with the same transmission line.
10. The magnetic drive transmission system of claim 8, wherein, Also includes: A horizontal connection mechanism includes a horizontal drive assembly and a horizontal connection stator disposed on the horizontal connection drive assembly. The horizontal connection drive assembly is used to drive the horizontal connection stator to connect with the upper stator or the lower stator. as well as The upper and lower connection mechanism includes an upper and lower drive assembly and an upper and lower connection stator disposed on the upper and lower connection drive assembly. The upper and lower connection drive assembly is used to drive the upper and lower connection stator to connect with the upper stator or the lower stator. The upper and lower connecting mechanism includes a first upper and lower connecting mechanism and a second upper and lower connecting mechanism.