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Column type multi-point nanometer friction microwave power generation device

A nano-friction and power generation device technology, which is applied in the direction of friction generators, ocean energy power generation, engine components, etc., can solve the problems of complex structure of wave power generation, too large wave power generation device, poor sealing and stability, etc., and achieve improvement Maintainability, reduced maintenance costs, and high stability

Inactive Publication Date: 2020-01-10
HARBIN ENG UNIV
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Problems solved by technology

[0005] In order to solve the above-mentioned problems existing in the prior art, the present invention provides a column type multi-point nano-friction microwave power generation device to solve the problem that the current wave power generation device is too large, the wave power generation structure is complex, the sealing performance is poor, or the nanometer power generation low efficiency

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  • Column type multi-point nanometer friction microwave power generation device
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  • Column type multi-point nanometer friction microwave power generation device

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Embodiment Construction

[0017] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0018] combine Figure 1 to Figure 5 , a column-type multi-point nano-friction microwave power generation device of the present invention, the power generation device includes a cylindrical buoy 1, a friction generator set 4, and a solid cylinder 2. Three parts. The inside of the cylindrical buoy 1 is tightly inserted into the solid cylinder 2, and eight friction generators 4 are inserted between the solid cylinder 2 and the cylindrical buoy 1, and there is a gap between the friction generator 4 and the cylindrical buoy 1. The cylindrical buoy 1 has a length of 0.8 meters, a radius of 0.5 meters and is hollow inside, and a solid cylinder 2 is inserted inside with a radius of 0.15 meters. There are thin plates 2-8 at the inner busbar of the box body 2-9 in the friction generator set 4 , used to immobilize nano tribogenerator films 2-6...

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Abstract

The invention provides a column type multi-point nanometer friction microwave power generation device. The device comprises a hollow cylindrical floating drum, a solid cylinder and friction electric generator sets. The solid cylinder is located at a center position of the cylindrical floating drum, and there are at least four friction electric generator sets which are arranged in a gap between thecylindrical floating drum and the solid cylinder at equal intervals. The invention provides the column type multi-point nanometer friction microwave power generation device which is simple in structure, high in power generation efficiency and good in stability. A wave amplitude in a severe environment can be reduced by using a structure of the cylindrical floating drum to the greatest extent. Friction of relative motion of the friction electric generator sets and the relative motion of a spring are used to promote the friction between nanometer friction generator films so as to carry out waveenergy and electric energy conversion. The wave energy and electric energy conversion can be performed through using a wave amplitude difference between the floating drum and waves and the energy isprovided for coast power utilization facilities, and a purpose of emergency power supply or autonomous power supply is achieved.

Description

technical field [0001] The invention relates to a technology for generating electricity by using ocean wave energy, in particular to a column type multi-point nano-friction microwave power generation device. Background technique [0002] Nanomaterials: nanoscale structure materials are referred to as nanometer materials for short, which refers to materials that have at least one dimension in three-dimensional space that is in the nanometer size (0.1-100nm) or composed of them as basic units, which is equivalent to about 10 to 100 A scale in which atoms are packed closely together. Since its size is close to the coherence length of electrons, its properties change greatly due to self-organization brought about by strong coherence. Moreover, its scale is close to the wavelength of light, and it has the special effect of a large surface, so its properties are often different from those of the substance in its overall state. Using the characteristics of nanomaterials, the low-...

Claims

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Application Information

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IPC IPC(8): H02N1/04F03B13/20
CPCF03B13/20H02N1/04Y02E10/30
Inventor 陈海龙王玲玲刘鸣刘恒序刘伟奇柴元超
Owner HARBIN ENG UNIV
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