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Assembling type external shell used for power generator

An outer shell, assembled technology, which is applied in the directions of electromechanical devices, casing/cover/support, application, etc., can solve the problem of inconvenient maintenance of the cylindrical generator casing, and achieve the convenience of chemical bonding or physical bonding, The effect of increased contact area and large specific surface area

Active Publication Date: 2017-07-21
华电福新江门能源有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to solve the problem that the integrally formed cylindrical generator casing in the prior art is inconvenient for maintenance, the present invention provides an assembled outer casing for a generator, which is assembled from two symmetrical parts. When the connecting plate and bolts are combined to form a closed cylinder, when the parts need to be repaired, the bolts can be opened to easily open the two parts of the metal shell, so that the maintenance work is more convenient and quick

Method used

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  • Assembling type external shell used for power generator
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Examples

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Effect test

Embodiment 1

[0060] The ceramic layer 102 is made by mixing ceramic powder with a fineness of no more than 200 meshes and metal aluminum wires with a diameter of no more than 1 mm and a length of no more than 3 mm at a weight ratio of 100:3, and then fired at 1600°C. Weight ratio, the ceramic powder consists of 40 parts of kaolin, 10 parts of silicon micropowder, 20 parts of quartz sand, 6 parts of kyanite fine powder with a fineness of no more than 100 microns, and 5 parts of active kyanite powder with a fineness of no more than 5 microns. Composed of alumina micropowder, 3 parts of silicon carbide micropowder and 4 parts of elemental silicon powder;

[0061] The firing method of the metal and ceramic high-temperature bonding layer 101 and the ceramic layer 102 includes the following steps:

[0062] 1) Weigh the metal aluminum wire and the raw materials that make up the ceramic powder according to the above ratio, and mix them, and add water equal to the total weight of the material, acet...

Embodiment 2

[0071] The ceramic layer 102 is made by mixing ceramic powder with a fineness of no more than 200 meshes and metal aluminum wires with a diameter of no more than 1mm and a length of no more than 3mm in a weight ratio of 100:5, and then fired at 1600°C. Weight ratio, the ceramic powder consists of 45 parts of kaolin, 15 parts of silicon micropowder, 24 parts of quartz sand, 8 parts of kyanite fine powder with a fineness of no more than 100 microns, and 7 parts of active kyanite with a fineness of no more than 5 microns. Composed of alumina micropowder, 5 parts of silicon carbide micropowder and 6 parts of elemental silicon powder;

[0072] The firing method of the metal and ceramic high-temperature bonding layer 101 and the ceramic layer 102 includes the following steps:

[0073] 1) Weigh the metal aluminum wire and the raw materials that make up the ceramic powder according to the above ratio, and mix them, and add water equal to the total weight of the material, acetone of 3%...

Embodiment 3

[0082] The ceramic layer 102 is made by mixing ceramic powder with a fineness of no more than 200 meshes and metal aluminum wires with a diameter of no more than 1mm and a length of no more than 3mm at a weight ratio of 100:4, and then fired at 1600°C. Weight ratio, the ceramic powder consists of 42.5 parts of kaolin, 12.5 parts of silicon micropowder, 22 parts of quartz sand, 7 parts of kyanite fine powder with a fineness of no more than 100 microns, and 6 parts of active kyanite with a fineness of no more than 5 microns. Composed of alumina micropowder, 4 parts of silicon carbide micropowder and 5 parts of elemental silicon powder;

[0083] The firing method of the metal and ceramic high-temperature bonding layer 101 and the ceramic layer 102 includes the following steps:

[0084] 1) Weigh the group of metal aluminum wire and the raw materials that make up the ceramic powder according to the above ratio, and mix them, and add water equal to the total weight of the material, ...

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Abstract

The invention provides an assembling type external shell used for a power generator. The external shell is formed by two symmetrical semicircular metal shells through splicing. The two side edges of each metal shell are provided with an adapter plate and a connecting plate. The surface of the connecting plate is provided with multiple sealing grooves which are internally provided with sealing rubber strips I protruding out of the sealing grooves so that the gap between the two connecting plates can be sealed by the sealing rubber strips I after the two metal shells are spliced and the two connecting plates are fixed through a fixing bolt. The external side of the adapter plate is connected with a rotating shaft in an adapter manner through a connecting member, and the surface along the length direction of the adapter plate is provided with a bar-shaped groove. The bar-shaped groove is internally provided with a compression spring so that the compression spring is enabled to be in the compression state and generate elastic force after the two metal shells are spliced and the two connecting plates are fixed through the fixing bolt, and separating of the two metal shells is facilitated. The external shell is manufactured in a manner of being formed by the two symmetrical semicircular metal shells through splicing so that the external shell is enabled to be openable, and maintenance work is facilitated.

Description

technical field [0001] The invention belongs to a generator in the field of mechanical physics, in particular to an assembled outer casing for a generator. Background technique [0002] A generator is a mechanical device that converts other forms of energy into electrical energy. It is driven by a water turbine, steam turbine, diesel engine or other power machinery, and converts the energy generated by water flow, air flow, fuel combustion or nuclear fission into mechanical energy and transmits it to the generator. Converted to electrical energy by a generator. Generators are widely used in industrial and agricultural production, national defense, science and technology, and daily life. There are many forms of generators, but their working principles are based on the law of electromagnetic induction and the law of electromagnetic force. Therefore, the general principle of its construction is: use appropriate magnetic and conductive materials to form magnetic circuits and ci...

Claims

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Application Information

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IPC IPC(8): H02K5/06H02K5/24C04B33/04C04B33/13
CPCC04B33/04C04B33/13C04B2235/3217C04B2235/3418C04B2235/3826C04B2235/428H02K5/06H02K5/24
Inventor 马静婕
Owner 华电福新江门能源有限公司
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