System and method for valve automatic adjustment in particle foaming process
An automatic adjustment and valve technology, which is applied in the direction of control/regulation system, valve details, engine components, etc., can solve the problems of low degree of automation and unstable flow control, achieve high degree of automation, avoid foaming failure, and shorten the collection of data cycle effect
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Embodiment 1
[0032] See figure 1 , the present invention provides a system for automatic adjustment of valves in the particle foaming process, including a data acquisition module 1, which is used to collect the necessary parameters of each reaction vessel end, and upload the collected necessary parameters of the reaction vessel end;
[0033] The data processor 2 is used to analyze the necessary parameters of the reaction kettle terminal uploaded by the data acquisition module 1, and perform processing and analysis;
[0034] The valve control module 3 is an execution unit downstream of the data processor 2, and is used to receive the instruction information issued by the data processor 2 and obtain the state of the flow control valve, and control the flow control valve according to the instruction information;
[0035] The server 4 is used to store the real-time data of the data processor 2, display the interface and issue instructions through the display device of the server 4.
Embodiment 2
[0037] The present invention provides a system for automatically adjusting valves in particle foaming process, which includes a data collection module 1 for collecting necessary parameters of each reactor terminal and uploading the collected necessary parameters of reactor terminals. The necessary parameters of the above-mentioned reaction kettle terminal include the real-time parameters of the temperature sensor 5 in the kettle and the real-time parameters of the pressure sensor 6 in the kettle, wherein the real-time parameters of the temperature sensor 5 in the kettle are specifically the temperature in the kettle uploaded by the thermistor through the transmitter. to data acquisition module 1.
[0038] The data processor 2 is used to analyze the necessary parameters uploaded by the data acquisition module 1 at the end of the reactor, and perform processing and analysis. The above-mentioned data acquisition module 1 communicates with the data processor 2 through wireless or ...
Embodiment 3
[0042] See figure 2 A method for automatically adjusting valves in a particle foaming process, comprising the following steps:
[0043] Step a: system initialization parameter setting, initial setting is carried out to flow control valve parameter, temperature sensor parameter and pressure sensor parameter;
[0044] Step b: the data acquisition module 1 collects the necessary parameters of each reaction kettle terminal, and uploads data through wireless or wired communication. The data acquisition cycle is T. The wireless communication method can be LORA wireless communication, and the wired communication adopts RS485 for communication. The above-mentioned wireless or wired communication are all equipped with corresponding interfaces;
[0045] Step c: upload the data obtained in step b to the data processor 2;
[0046] Step d: the data processor 2 analyzes the data, compares the received data with the temperature sensor parameters and the pressure sensor parameters set when...
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