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A New Type of a Magnetic Plane Motor Coupled Mechanical Vibration with Electromagnetic Force 被引量:2
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作者 Hiroyuki Yaguchi Kazuya Iino Takaaki Eguchi 《Engineering(科研)》 2014年第9期491-499,共9页
This paper proposes a new magnetic plane motor capable of rotation by the resonance energy of double-cantilever beam model excited by an electromagnetic force. This magnetic plane motor has two double-cantilever model... This paper proposes a new magnetic plane motor capable of rotation by the resonance energy of double-cantilever beam model excited by an electromagnetic force. This magnetic plane motor has two double-cantilever models, and the rotational direction is able to change by changing of the vibration mode. Basic characteristics of a prototype for the magnetic plane motor, such as rotational speed, output torque and efficiency were determined experimentally. Experimental results demonstrated that the rotational speed of 8.1 rpm was obtained with output torque of 0.07 Ncm for the magnetic plane motor having double-cantilever model. The output torque characteristics of the magnetic plane motor with two double-cantilever models improved 200 percent compared with double-cantilever model. 展开更多
关键词 MAGNETIC PLANE MOTOR INERTIA Force High TORQUE resonance-drive Vibration Mode
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A New Motor of Stick Type with Coupled Mechanical Vibration of Bimorph Beam and Frictional Force
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作者 Hiroyuki Yaguchi 《Engineering(科研)》 2015年第7期446-454,共9页
This paper proposes a new non-magnetic motor with a rotor rotated by using the resonance energy of a bimorph cantilever beam excited by electrostatic force. The use of flexible material enables conversion of translati... This paper proposes a new non-magnetic motor with a rotor rotated by using the resonance energy of a bimorph cantilever beam excited by electrostatic force. The use of flexible material enables conversion of translational vibration to rotary movement in one direction. Basic characteristics of a prototype motor with two bimorph cantilever beams, such as rotational speed, output torque, and efficiency were determined experimentally. Results show that a maximum rotational speed of 2800 rpm was obtained without a load torque. It is also observed that this motor produces the output torque of 98 μNm when the rotational speed was 980 rpm. The maximum efficiency was 24% when the input power was 0.065 W. 展开更多
关键词 Frictional FORCE Flexible Material BIMORPH Beam resonance-drive Vibration Mode
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