A fixture system capable of dynamically testing electromagnetic parameters of powdered materials
A technology of electromagnetic parameters and fixture system, which is applied in the fields of analyzing materials, measuring magnetic properties, and using wave/particle radiation for material analysis, etc. It can solve the problems of high requirements for the fixture system and no fixture system, etc.
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Embodiment 1
[0056] This embodiment provides a fixture system capable of dynamically testing the electromagnetic parameters of powdery materials. The fixture system includes a closed loop system and a free space method test system; the closed loop system is used to realize the closure of the powdery material to be tested. Circulation, so that the powdery material to be tested is in a moving state; the free space method testing system is used to test the electromagnetic parameters of the powdery material in a moving state.
[0057] The closed circulation system includes a cyclone separator 10, an ejector 3, an adjustment valve 8, a sample channel 7, a recovery valve 4, a recovery bag 5 and an air compressor 1;
[0058] The cyclone separator 10 is used to separate the wind-powder mixture, and provides the powdery material to be tested for the sample channel 7; the sample channel 7 is used to guide the powdery material to be tested into the detection area of the antenna 6 The ejector 3 is u...
Embodiment 2
[0069] This embodiment provides a measurement method capable of dynamically testing the electromagnetic parameters of powdered materials. The method uses the fixture system described in Embodiment 1, and the method is specifically:
[0070] Close the adjustment valve 8 at the lower part of the cyclone separator, and pour the powdered material into the cyclone separator 10 from the exhaust port 11 at the upper part of the cyclone separator (in this embodiment, the sample addition amount can be: 50-70mL / time) , the sample is gathered to the powder drop port 9 on the upper part of the adjustment valve;
[0071] Use the filter bag 12 to seal the exhaust port 11 on the top of the cyclone separator, close the recovery valve 4 at the opening of the recovery bag, open the air compressor 1, and adjust the compressed air pressure (in this embodiment, the air pressure is 0.04~0.08 MPa), open the air valve 2 at the outlet of the air compressor, the compressed air enters the ejector 3, and...
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