CPC F16L 23/006 (2013.01) [F16L 55/02 (2013.01); F16L 58/187 (2013.01); F16L 2201/20 (2013.01)] | 7 Claims |
1. A detachable anti-vibration sealing protection device for a pipe flange, comprising:
a casing, wherein left and right end surfaces of the casing have through holes for pipelines to pass through, the casing has an accommodation cavity for placing a flange;
a first shock absorption assembly for radial shock absorption of the flange;
a second shock absorption assembly which is installed in a one-to-one correspondence with the flange, and is configured for axial shock absorption of the flange; wherein the first shock absorption assembly and the second shock absorption assembly are installed in the accommodation cavity;
a vibration monitoring component, wherein the vibration monitoring component includes a vibration transmission rod, a vibration sensor, and an accumulative vibration collector, one end of the vibration transmission rod is connected to the casing, and the other end of the vibration transmission rod is connected to the vibration sensor for monitoring the vibration of the detachable anti-vibration sealing protection device for the pipe flange, wherein the accumulative vibration collector comprises:
a particle storage box used for storing several vibration monitoring particles, wherein at least one end face of the particle storage box provided with at least one first through hole among remaining end faces of the particle storage box except for a bottom end face; and
at least one particle storage chamber, wherein at least one end surface of the particle storage chamber is provided with at least one second through hole among other end surfaces of the particle storage chamber except for a bottom end surface; and
a processor, wherein the processor is configured to:
in response to receiving sensing information collected by an information collection component, determine an estimated failure time of the detachable anti-vibration sealing protection device for the pipe flange based on the sensing information; and
in response to a determination that the estimated failure time meets a preset early warning condition, generate early warning information, the early warning information including at least one of sound information or image information;
wherein the vibration transmission rod includes a first vibration transmission rod and a second vibration transmission rod, and the vibration sensor includes a first vibration sensor and a second vibration sensor; and the sensing information includes first vibration sensing information generated by the first vibration sensor and second vibration sensing information generated by the second vibration sensor;
the first vibration transmission rod is connected to the casing and the first vibration sensor, and is configured to amplify vibration signals; and
the second vibration transmission rod is connected to the casing and the second vibration sensor, and is configured to reduce the vibration signals.
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