Slot pattern generation method and charging medium manufacturing method for suppressing eddy current effect
A pattern generation and eddy current effect technology, applied in the field of electromagnetic field, to reduce eddy current loss, suppress eddy current effect, and improve energy transmission efficiency
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Embodiment 1
[0067] against figure 1 For the irregularly shaped metal plate shown, the method for generating a grooving pattern that suppresses the eddy current effect provided in this embodiment includes the following operation process:
[0068] (1) For irregular shapes (such as figure 1 As shown), select the baseline with the longest shape of the metal plate, and rotate the shape of the metal plate to adjust the baseline to be horizontal (such as figure 2 );
[0069] (2) The shape of the metal plate is divided into a plurality of small square grid units ( image 3 The solid line part in the outline).
[0070] (3) Based on the square grid unit, construct a fractal pattern in the square grid unit, such as Figure 4 The rice-shaped fractal pattern shown in the figure can also be used with other fractal patterns, such as the second-order Hilbert fractal pattern ( Figure 5 ).
[0071] (4) Connect the fractal patterns in each square grid unit sequentially (such as Figure 6-7 ), formi...
Embodiment 2
[0073] For metal plates with triangular shapes, such as Figure 10 and Figure 11 As shown, the method for generating a groove pattern that suppresses the eddy current effect provided in this embodiment includes the following operation process:
[0074] (1) For a triangular metal plate, take one side of the triangle as a benchmark, and rotate the shape of the metal plate to adjust the baseline to be horizontal;
[0075] (2) According to said benchmark, divide one layer of grid cells, then divide the second layer of network cells with the upper boundary of this layer of grid cells as a benchmark;
[0076] And so on... until the grid is covered;
[0077] (3) Build fractal patterns in each grid, such as Figure 4 The rice-shaped fractal pattern shown can also be selected from other fractal patterns, such as the 2nd-order Hilbert fractal pattern ( Figure 5 );
[0078] (4) Connect the fractal patterns in each square grid unit sequentially to form the grooving pattern of the e...
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