Low-temperature pressure vessel diagnosis and monitoring system
A monitoring system and pressure vessel technology, applied in the field of low-temperature pressure vessel diagnosis and monitoring system, can solve problems such as affecting the safety of the vessel, inability to perform diagnosis, and poor thermal insulation of the vessel, and achieve the effect of a wide range of use scenarios
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Embodiment 1
[0030]Embodiment 1: A diagnostic and monitoring system for a cryogenic pressure vessel 4, the monitoring system includes a monitoring device, a storage device, a reaction device, a detection device, a heat preservation device and a processor, and the monitoring device is configured to monitor the internal conditions of the container 4 The pressure value is detected; the storage device is configured to store the monitoring device, the reaction device, the detection device and the heat preservation device; the reaction device is configured to store the parameters in the container 4 Collect and detect the container 4 based on the collected parameters; the detection device is configured to collect the external parameters of the container 4 and the container 4; the heat preservation device is configured to detect the container 4 4 to keep warm; the monitoring device includes an induction element 10, several telescopic rods 9, a transfer frame and a moving mechanism, and the transfer...
Embodiment 2
[0031] Embodiment 2: This embodiment should be understood as including at least all the features of any one of the foregoing embodiments, and further improvements are made on the basis thereof. Specifically, a diagnostic and monitoring system for a low-temperature pressure vessel 4 is provided, and the monitoring system Including a monitoring device, a storage device, a reaction device, a detection device, a heat preservation device and a processor, the monitoring device is configured to detect the pressure value inside the container 4; the storage device is configured to monitor the monitoring device, the The reaction device, the detection device and the heat preservation device are stored; the reaction device is configured to collect the parameters in the container 4, and detect the container 4 based on the collected parameters; the detection The device is configured to collect various parameters of the container 4 and the outside of the container 4; the heat preservation dev...
Embodiment 3
[0037] Embodiment 3: This embodiment should be understood as at least including all the features of any one of the preceding embodiments, and further improvements are made on the basis of it. Specifically, a monitoring structure for detecting the container 4 is provided. The monitoring The structure includes that the interface of the container 4 body and the inner wall of the valve are coated with a piezoelectric composite material layer, and the pressure gauge readings are transmitted to the server and software in real time for real-time monitoring and processing; when the pressure increases or decreases abnormally, the container 4 When the body is deformed under pressure, the piezoelectric composite material layer coated on the outer wall of the container 4 body also undergoes corresponding deformation at the same time. Based on the piezoelectric effect of the piezoelectric material, when the piezoelectric material is deformed, the surface of the material will generate charges...
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