High-temperature-resistant winding and manufacturing method thereof, motor and electric appliance

A production method and high temperature resistant technology, which is applied in the manufacture of motor generators, the shape/style/structure of winding conductors, electrical components, etc., can solve the problems of poor temperature resistance of motors and difficulty reaching above 300°C, and achieve high temperature resistance The effect of high temperature

Inactive Publication Date: 2018-12-18
刘容彰
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The purpose of the present invention is to provide a method for manufacturing high temperature resistant windings to solve the problem in the prior art that the temperature resistance of motors is poor and it is difficult to reach above 300°C

Method used

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  • High-temperature-resistant winding and manufacturing method thereof, motor and electric appliance
  • High-temperature-resistant winding and manufacturing method thereof, motor and electric appliance
  • High-temperature-resistant winding and manufacturing method thereof, motor and electric appliance

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] See figure 1 Now, the manufacturing method of the high temperature resistant winding provided by the present invention will be described. The manufacturing method of the high temperature resistant winding includes the following steps:

[0045] S1 adopts a high-temperature resistant wire to be wound into a coil, the wire includes a conductor made of conductive metal and an insulating surface layer made of inorganic insulating material, the insulating surface layer is wrapped on the conductor;

[0046] S2 set a mold, and place the wound coil in the mold;

[0047] S3 provides high-temperature-resistant inorganic insulating materials and makes them into slurry;

[0048] S4 pour the slurry into the mold, and solidify the slurry and the coil into an integrated structure;

[0049] S5 opens the mold to obtain a high temperature resistant winding.

[0050] The present invention adopts a high temperature resistant wire to make a coil, and the insulating surface layer of the coil is made of...

specific Embodiment approach

[0053] Further, see figure 1 As a specific implementation of the method for manufacturing a high temperature resistant winding provided by the present invention, the manufacturing steps of the wire are as follows:

[0054] Provide electrical conductors;

[0055] A dense ceramic film is coated on the surface of the conductor by thermal spraying, vacuum ion plating or vacuum sputtering to form the insulating surface layer. This method can make the insulating surface layer of the wire a ceramic layer, so as to withstand the high temperature environment. Using thermal spraying, vacuum ion plating, vacuum sputtering, etc., a dense ceramic film is covered on the surface of the conductor, such as a layer of zirconium dioxide, aluminum oxide, etc. as an insulating surface layer. Zirconium dioxide can withstand high temperatures of 2200°C. Aluminum oxide can withstand a high temperature of 2050°C, so that the wire can achieve high temperature resistance.

[0056] Further, see figure 1 As a...

Embodiment 2

[0066] Please refer to figure 2 Now the rotor provided by the present invention will be described. The rotor includes a rotating shaft 21 and a high temperature resistant winding 10 mounted on the rotating shaft 21. The high temperature resistant winding 10 is manufactured using the above-mentioned manufacturing method of the high temperature resistant winding.

[0067] The high temperature resistant winding 10 includes a coil 11 and a potting entity 12, and the coil 11 is supported and fixed by the potting entity 12. The coil 11 is made of high-temperature resistant wire. The wire includes a conductor and an insulating surface layer. The insulating surface layer is wrapped on the conductor; the conductor is made of conductive metal for good conduction; the insulating surface is made of inorganic insulating materials for insulation , While achieving high temperature resistance. The potting entity 12 is solidified and molded with inorganic insulating materials, so that it can w...

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PUM

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Abstract

The invention provides a high-temperature-resistant winding, a manufacturing method thereof and a motor. The manufacturing method of the high-temperature-resistant winding comprises the following steps: a high-temperature-resistant conductor is wound into a coil; the conductor comprises a conductor and an insulating surface layer made of an inorganic insulating material; Placing the wound coil ina mold; Pouring slurry made of high-temperature-resistant inorganic insulating material into the mould, and solidifying the slurry and the coil into an integral structure; Opening the mold to obtain ahigh temperature resistant winding. As the high-temperature-resistant wire is wound into a coil, the insulate surface layer of the wire is made of an inorganic insulate material, so that the coil canwithstand a high-temperature environment of more than 300 DEG C; The inorganic insulating material is used for potting and solidifying the coil, which plays the role of fixing and protecting the coil, and enhances the effect of bearing current and force of the winding manufactured in the high temperature environment above 300 DEG C. The limit that existing motors and electrical appliances using polymer organic materials fpr insulation and temperature resistance are difficult to be above 300 DEG C is broken through.

Description

Technical field [0001] The invention belongs to the field of motors, and more specifically, relates to a method for manufacturing high temperature resistant windings, high temperature resistant windings manufactured using the method, a motor using the high temperature resistant windings, and an electrical appliance using the high temperature resistant windings. Background technique [0002] The current motor temperature resistance grades are Y, A, E, B, F, H, C, and the corresponding maximum operating temperatures are 90℃, 105℃, 120℃, 130℃, 155℃, 180℃, and above 180℃. , A total of seven levels. Generally speaking, the higher the temperature resistance of the motor, the greater the unit mass power of the motor and the better the overall performance. The temperature resistance of the motor is mainly determined by the temperature resistance of the insulating material used. At present, most motors use polymer organic materials as motor insulation materials. Only a few polymer materi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02K3/04H02K15/04
CPCH02K3/04H02K15/0435
Inventor 刘容彰
Owner 刘容彰
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