Measurement method for bulk conductivity of dielectric material for satellites under temperature gradient and measurement device of measurement method
A technology of dielectric materials and temperature gradients, applied in measuring devices, measuring electrical variables, measuring resistance/reactance/impedance, etc., can solve problems such as blank research and unreported test devices, achieve accurate test results, improve test efficiency, The effect of saving test time
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Embodiment 1
[0028] like figure 1 As shown in the figure, the measurement device for the body conductivity under the temperature gradient of the dielectric material for the satellite includes a heat source 5, a temperature acquisition device, a voltage and current acquisition circuit, and a multi-layer circuit board processing technology. layer metal layer. The tested dielectric material 1 is one of epoxy resin, polyimide or polytetrafluoroethylene or a modified dielectric material of one of them. The modified dielectric material is mainly made by doping glass powder, glass cloth, etc. For the new dielectric material formed by the material, the measured dielectric material 1 is made into a cube shape. Each metal layer is provided with a metal sheet 2 with an area S, each metal sheet 2 is a circular copper sheet of the same size, the center of the metal sheet 2 is on a straight line, and the diameter of the metal sheet 2 is close to the measured The side length of the dielectric material ...
Embodiment 2
[0036] Figure 4 Another embodiment of the present invention is given. The difference between the device for measuring the bulk electrical conductivity under the temperature gradient of the dielectric material 1 for satellites and the embodiment 1 lies in the number of metal sheets 2 on the metal layer of the dielectric material 1 to be measured. If there is more than one, the structures of the upper and lower adjacent metal sheets 2 are the same, and the positions are corresponding. like Figure 4 shown, given that each metal layer is Metal sheets 2 arranged in an array. The temperature sensor 8 is arranged in the measured dielectric material 1 on each piece of metal sheet 2 . This embodiment is mainly aimed at the situation where the temperature is three-dimensionally distributed in the medium when the heat source distribution is uneven or the boundary thermal insulation conditions are asymmetrical. That is, by arranging multiple metal sheets 2 on each layer, the three-...
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