Energy emission end of multi protruded type magnetic coupling mechanism applied to wireless power supply of electromobile
A wireless power supply and electric vehicle technology, applied in the direction of transformer/inductor core, transformer/inductor parts, transformer/inductor coil/winding/connection, etc., can solve the problem of large amount of magnetic core consumption and inconvenient structure adjustment Problems, to achieve low manufacturing costs, improve electromagnetic safety, excellent mechanical stress bearing effect
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specific Embodiment approach 1
[0033] Specific implementation mode one: the following combination Figure 1 to Figure 4 This embodiment is described. The energy transmitting end of the multiple convex magnetic coupling mechanism applied to the wireless power supply of electric vehicles described in this embodiment includes a power supply cable 1, m convex magnetic cores 2 and n magnetic poles 3, where m is greater than or an integer equal to 3, n is an integer greater than or equal to 2;
[0034] N magnetic poles 3 are arranged in sequence along the length direction, and the distance between adjacent magnetic poles 3 is q; each magnetic pole 3 includes at least one convex magnetic core 2, and two adjacent magnetic poles 3 include at least three convex magnetic cores 2, each All the convex magnetic cores 2 in the magnetic pole 3 are arranged in sequence along the length direction, and the distance between adjacent convex magnetic cores 2 is d; d≧0, q≧0;
[0035] Each convex magnetic core 2 is composed of a ...
specific Embodiment approach 2
[0041] Specific implementation mode two: the following combination Figure 5 to Figure 8 This embodiment is described. The energy transmitting end of the multiple convex magnetic coupling mechanism applied to the wireless power supply of electric vehicles described in this embodiment includes a power supply cable 1, m convex magnetic cores 2 and n magnetic poles 3, where m is greater than or an integer equal to 3, n is an integer greater than or equal to 2;
[0042] N magnetic poles 3 are arranged in sequence along the length direction, and the distance between adjacent magnetic poles 3 is q; each magnetic pole 3 includes at least one convex magnetic core 2, and two adjacent magnetic poles 3 include at least three convex magnetic cores 2, each All the convex magnetic cores 2 in the magnetic pole 3 are arranged in sequence along the length direction, and the distance between adjacent convex magnetic cores 2 is d; d≧0, q≧0;
[0043] Each convex magnetic core 2 is composed of a ...
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