Magnetic driving device of reciprocating type magnetic conduction screen
A magnetic drive, reciprocating technology, applied in the direction of generators/motors, electrical components, etc., can solve the problems of high energy consumption and complex mechanism, and achieve the effect of small mobile input energy
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Embodiment 1
[0019] see figure 1 , figure 2 , image 3 , figure 1 It is a longitudinal sectional view. The magnetic driving device of the present invention has a frame 1. The frame is made of non-magnetic materials, such as copper, aluminum, nickel alloy, etc. The present embodiment uses aluminum alloy material, which can be processed as a whole , can also be processed separately. The processing technology belongs to common knowledge and will not be described in detail. The middle part of the frame is provided with a magnetic energy conversion slideway 101, and fixed magnets are arranged symmetrically at both ends of the frame, including a left fixed magnet 7 and a right fixed magnet 6. The fixed magnets are fixed to the frame and can be fixed by bolts or embedded , bonding and other fixing methods, the present embodiment is bolt fixing. The working surface of the fixed magnet is provided with a movable magnetic screen, including a left magnetic screen 4 and a right magnetic screen 5,...
Embodiment 2
[0024] This embodiment is an improvement on the basis of Embodiment 1. see Figure 5 , Image 6 , the magnetic energy conversion slideway in this embodiment adopts a shallow groove type, the slideway 102 is a rectangular shallow groove, and the slideway 88 is arranged on both sides of the energy-carrying slide body in the form of a suspended track, which is in the shape of a guardrail. The two ends of this chute are fixed with the frame two ends. In this embodiment, the screen opening mechanism includes a crank linkage mechanism 23 driven by a stepping motor, the connecting rod 24 in the crank linkage mechanism is hingedly connected with the magnetic shield 4, and the stepping motor is connected to the The drive control circuit is electrically connected. In addition to the attached Figure 5 The display is set on the upper part of the rack, and it can also be set on the side of the rack. The magnetic screen can be opened and closed from the side of the rack. For the settin...
Embodiment 3
[0027] This embodiment is an improvement on the basis of the second embodiment. see Figure 7 , the screen opening mechanism includes a rack and pinion mechanism driven by a stepping motor, the gear 25 is arranged at the shaft end of the stepping motor, the rack 26 is connected with the magnetic shield, and the stepping The motor is electrically connected with the drive control circuit. Due to the use of the rack and pinion mechanism, the opening mechanism can be arranged on the top of the frame or on the side of the frame. The magnetic screen can move up and down along the frame to implement opening and closing, and can also move left and right along the frame to open and close from the side.
[0028] see Figure 7 , Figure 8 , in the present invention, in order to reduce impact noise and effectively utilize magnetic energy, energy storage and deceleration mechanisms are arranged on both sides of the frame, which are arranged correspondingly to the sliding wings. Limiti...
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