Flexible high-efficiency magnetization pipeline for water and magnetization device based on pipeline

A magnetized water, flexible technology, applied in water/sewage treatment equipment, magnetic/electric field water/sewage treatment, water/sewage treatment, etc. and other problems, to achieve the effect of flexible use method, stable magnetic field and reduced evaporation rate

A magnetized water, flexible technology, applied in water/sewage treatment equipment, magnetic/electric field water/sewage treatment, water/sewage treatment, etc. and other problems, to achieve the effect of flexible use method, stable magnetic field and reduced evaporation rate

CN110498493APending Publication Date: 2019-11-26XI AN JIAOTONG UNIV

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  • Flexible high-efficiency magnetization pipeline for water and magnetization device based on pipeline
  • Flexible high-efficiency magnetization pipeline for water and magnetization device based on pipeline
  • Flexible high-efficiency magnetization pipeline for water and magnetization device based on pipeline

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Embodiment Construction

[0027] The present invention will be described in detail below in conjunction with specific embodiments.

[0028] Such as Figure 5 As shown, the flexible high-efficiency magnetized water pipeline 6 of the present invention includes a plurality of annular shells 9 arranged outside the hose 8, two adjacent shells are connected by a metal bellows 11, and each shell 9 is provided with A magnetized ring 10, the magnetized ring 2 includes 8 neodymium iron boron magnets with a remanence of 0.7T, and 8 neodymium iron boron magnets are arranged in a certain arrangement to form a set of Halbach (Halbach array) structure magnetization units, neodymium iron boron The remanence vector direction of the magnetic block is distributed along the axial direction according to the K.Halbach rotation theorem. The specific arrangement of 8 NdFeB magnetic blocks is as follows Image 6 Shown: The remanence vector direction of the upper main magnetic pole piece and the lower main magnetic pole block is u...

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Abstract

The invention discloses a flexible high-efficiency magnetization pipeline for water and a magnetization device based on the pipeline. The pipeline comprises a plurality of annular shells arranged on the outer side of a hose, two adjacent shells are connected by a metal corrugated pipe, a magnetization ring is arranged in each shell, the magnetization rings sleeve the hose, each magnetization ringincludes several neodymium-iron-boron magnetic blocks, and several neodymium-iron-boron magnetic blocks form a group of Halbach array. The magnetization device provided by the invention can realize reduction of surface tension and increase of an evaporation speed at a temperature of 20-25 DEG C; the field strength required by the device is small, the volume of the magnetizer is effectively reduced, and the flexibility during use is enhanced; and the device is almost not affected by electromagnetic equipment in the working environment, and has a stable effect.

Description

Technical field [0001] The invention relates to the field of magnetic equipment, in particular to a flexible high-efficiency magnetized water pipeline and a magnetization equipment based thereon. Background technique [0002] The vertical magnetic field of water jet cutting can change the association structure of water, enhance the structure of water body, thereby reducing its surface tension, dynamic viscosity and other physical properties, thereby promoting crop water absorption, shortening spray droplet evaporation time, and improving concrete performance. [0003] At present, the water magnetizer is still in the growth stage in the domestic market, but it has been used in agricultural irrigation, spray dust removal, concrete preparation and other fields. However, due to the imperfect theory of the magnetization process of water and the large fluctuation of the magnetization effect, most of the existing magnetization equipment requires a large field strength, a long magnetizatio...

Claims

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Application Information

Patent Timeline
26 Nov 2019
Publication
CN110498493A
IPC
C02F1/48
CPC
C02F1/48; C02F2201/48
Inventors
钱疏桐; 吴浩齐