Method for converting electromagnetic energy into mechanical energy and its magnetoelectric device
A technology of electric devices and electromagnets, applied in the direction of generators/motors, electromechanical devices, electrical components, etc., can solve problems such as low efficiency, and achieve the effects of less power consumption, large output power, and high energy efficiency
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Embodiment 1
[0020] Embodiment one, the method for converting electromagnetic energy into mechanical energy of the present invention is to rely on the repulsive force between the instantaneous magnetic field generated when the electromagnet passes through direct current and the permanent magnet, so that the permanent magnet moves in a direction away from the electromagnet; rely on the iron core of the electromagnet and the permanent magnet The attractive force between the magnets makes the permanent magnet move towards the electromagnet. The permanent magnet outputs mechanism energy outwards through the mechanical transmission mechanism.
Embodiment 2
[0021] Embodiment two, the method for converting electromagnetic energy into mechanical energy of the present invention is to rely on the repulsive force between the instantaneous magnetic field and the permanent magnet produced when the electromagnet passes through direct current, so that the permanent magnet moves in a direction away from the electromagnet; rely on the iron core of the electromagnet and the permanent magnet The attractive force between the magnets makes the permanent magnet move towards the electromagnet. The permanent magnet runs along the linear slideway, transmits the force to the crankshaft through the connecting rod, and finally converts the electromagnetic energy into the rotary mechanical energy. Both ends of the electromagnet pass through the repulsive force between the instantaneous magnetic field generated when the direct current is applied and the permanent magnets arranged at both ends, so that the permanent magnets at both ends move away from the...
Embodiment 3
[0025] Embodiment three, such as image 3 As shown, the magnetoelectric device of the present invention includes a crankshaft 1, a connecting rod 2, and the upper end of the connecting rod 2 is hinged with a piston-type permanent magnet 4 with a cylinder-type slideway 3, and the slideway 3 is equipped with an electromagnetic Iron 5; electromagnet 5 is equipped with, during permanent magnet 4 runs from top dead center to bottom dead center, the electric distribution mechanism of the direct current that the electromagnetic field that passes generation repulses with permanent magnet 4. The slideway 3, the crankshaft 1 and the connecting rod 2 are made of passive magnetic material; the connecting rod 2, the permanent magnet 4, the slideway 3 and the electromagnet 5 are four sets arranged side by side in the same plane on the same crankshaft 1 . A sliding fit mechanism is arranged between the slideway and the permanent magnet. The slip-fit mechanism is such as a bearing, a roll...
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