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Fluid fast electromagnetic heater

An electromagnetic heater and fluid technology, applied in fluid heaters, water heaters, lighting and heating equipment, etc., can solve the problems of limited high-temperature heating efficiency, loss, and inability to reduce the overall volume

Inactive Publication Date: 2019-09-20
潘正友
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The Chinese utility model patent 201620405822.2 "instantaneous heating device" previously applied by the applicant has been certified, which includes a high-permeability magnetic-conductive heating component, and a heat-conductive component with excellent thermal conductivity is wound around the magnetic-conductive heating component , and then wrap a heat-insulating layer on the outer peripheral side of the heat-conducting component, wind the outer peripheral side of the heat-insulating layer with an electromagnetic winding, and another hollow magnetic-conducting outer-conducting magnet is used to accommodate the aforementioned heat-conducting component, magnetic-conducting heating component and electromagnetic winding, After the electromagnetic winding is energized, a high-frequency magnetic field circuit will be generated between the aforementioned external magnet and the magnetically conductive heating plate, and the high-frequency magnetic field loop will act on the aforementioned magnetically conductive heating plate to induce eddy currents on the surface of the magnetically conductive heating plate to generate loss and heat generation. The thermal energy generated by the aforementioned magnetic conduction heating plate is directly conducted to the aforementioned heat conduction component and then transmitted outward; however, the inventor believes that the utility model patent still has imperfections
[0004] When the electromagnetic winding is wrapped on the outside of the magnetic conduction heating component and the heat conduction component, a heat insulation layer must be provided in the middle. Therefore, its overall volume cannot be reduced. The contact area of ​​the magnetic heating element is limited, so that the heat energy generated by the magnetic heating element cannot be completely conducted to the heat conduction element, and the efficiency for high temperature heating is limited. Generation of the present invention

Method used

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Embodiment Construction

[0017] see Figure 1 to Figure 3 As shown, it can be seen that the structure of the present invention mainly includes: a first magnetic conduction heating component 1, a heat pipe 2, a plurality of second magnetic conduction heating components 3, and a heat insulation shell 4, wherein:

[0018] The first magnetically conductive heating component 1 is made of high magnetically permeable metal, which can induce the formation of eddy current on the surface under the action of a magnetic field to generate loss and heat generation;

[0019] The heat pipe 2 is made of metal with high thermal conductivity, and is wound on the surface of the aforementioned first magnetic conduction heating element 1. The two ends of the heat pipe 2 are provided with an inlet 21 and an outlet 22, and the inlet 21 and the outlet are 22 are respectively provided with a terminal 23, it should be noted that, in a feasible embodiment, the heat pipe 2 is set as a flat structure, and the flat heat pipe 2 is b...

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Abstract

The invention discloses a fluid quick electromagnetic heater. The fluid quick electromagnetic heater includes: a first magnetic conductive heating assembly made of high magnetic conductive metal, a plurality of second magnetic conductive heating assemblies, and a thermal conductive pipe; the thermal conductive pipe winds around a surface of the first magnetic conductive heating assembly; the second magnetic conductive heating assemblies are arranged on two side surfaces of the thermal conductive pipe; a lead-in opening having a wiring end and a lead-out opening having a wiring end are formed in two ends of the thermal conductive pipe respectively; after being powered-on, the thermal conductive pipe generates a high frequency magnetic field loop; the high frequency magnetic field loop induces the first magnetic conductive heating assembly and the second magnetic conductive heating assemblies to form inducing magnetism loss so as to generate heat energy; the heat energy generated by the first magnetic conductive heating assembly and the second magnetic conductive heating assemblies is directly transmitted to the thermal conductive pipe, and an electric heating effect of the thermal conductive pipe can achieve comprehensive multiple heating sources; and the fluid inflowing form the lead-in opening is heated, and then outflows via the lead-out opening.

Description

technical field [0001] The invention relates to a fluid rapid electromagnetic heater, in particular to a fluid rapid electromagnetic heater with high heating efficiency and small volume, capable of rapidly heating circulating fluid. Background technique [0002] Traditional electric heating devices are relatively simple, such as general electric furnaces or electric rice cookers, which use electric heating wires or electric heating tubes to generate heat after being energized (Q=0.24*I 2 Rt), to directly heat the default item or device. [0003] The Chinese utility model patent 201620405822.2 "instantaneous heating device" previously applied by the applicant has been certified, which includes a high-permeability magnetic-conductive heating component, and a heat-conductive component with excellent thermal conductivity is wound around the magnetic-conductive heating component , and then wrap a heat-insulating layer on the outer peripheral side of the heat-conducting component...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F24H1/16F24H9/18F24H9/20
CPCF24H1/162F24H9/1818F24H9/2028F24H2250/08
Inventor 潘正友
Owner 潘正友