Fire assaying experimental equipment parameter monitoring system based on intelligent control
The invention relates to the technical field of fire assaying experimental equipment parameter monitoring, in particular to a fire assaying experimental equipment parameter monitoring system based on intelligent control. The working process of the system comprises the following steps: acquiring the...
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creator | MA YUNRONG SUN ZHAOJIE LIN LIU YU SHUANGMIN LIN QIAN ZHANG KUN |
description | The invention relates to the technical field of fire assaying experimental equipment parameter monitoring, in particular to a fire assaying experimental equipment parameter monitoring system based on intelligent control. The working process of the system comprises the following steps: acquiring the heating rate of a sample melting furnace according to sample melting data; when the heating rate is stagnated, acquiring a sample melting image of the experimental sample in the sample melting furnace; judging whether the melting degree of the experimental sample reaches a sample melting standard or not according to the sample melting image of the experimental sample, and if yes, performing soot blowing refining on the experimental sample; and acquiring soot blowing experiment data to calculate the restoration completeness of the experiment sample, and recording experiment equipment parameters according to the restoration completeness. Whether the experimental sample is fully melted or not can be judged without man |
format | Patent |
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The working process of the system comprises the following steps: acquiring the heating rate of a sample melting furnace according to sample melting data; when the heating rate is stagnated, acquiring a sample melting image of the experimental sample in the sample melting furnace; judging whether the melting degree of the experimental sample reaches a sample melting standard or not according to the sample melting image of the experimental sample, and if yes, performing soot blowing refining on the experimental sample; and acquiring soot blowing experiment data to calculate the restoration completeness of the experiment sample, and recording experiment equipment parameters according to the restoration completeness. 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The working process of the system comprises the following steps: acquiring the heating rate of a sample melting furnace according to sample melting data; when the heating rate is stagnated, acquiring a sample melting image of the experimental sample in the sample melting furnace; judging whether the melting degree of the experimental sample reaches a sample melting standard or not according to the sample melting image of the experimental sample, and if yes, performing soot blowing refining on the experimental sample; and acquiring soot blowing experiment data to calculate the restoration completeness of the experiment sample, and recording experiment equipment parameters according to the restoration completeness. Whether the experimental sample is fully melted or not can be judged without man</abstract><oa>free_for_read</oa></addata></record> |
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subjects | INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIRCHEMICAL OR PHYSICAL PROPERTIES MEASURING MEASURING QUANTITY OF HEAT MEASURING TEMPERATURE PHYSICS TESTING THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR |
title | Fire assaying experimental equipment parameter monitoring system based on intelligent control |
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