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Method for preparing semisolid alloy through centrifuging and chilling

A semi-solid and semi-solid slurry technology, which is applied in the field of centrifugal chilling to prepare semi-solid alloys, can solve the problems of short service life of the mixing chamber and stirring rods, which have not yet been put into industrial production, and affect the uniformity of the slurry. Remarkable refinement effect, flexible production mode, and the effect of avoiding air suction and slag inclusion

Inactive Publication Date: 2012-04-11
NANCHANG HANGKONG UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The mechanical stirring method has the following disadvantages: 1) The life of the stirring chamber and the stirring rod is not long, the metal is more likely to be oxidized and polluted, and the internal quality of the metal is very low; 2) There is a dead angle of stirring, which affects the uniformity of the slurry; 3) The equipment is heavy and difficult to operate Difficult, low production efficiency, solid phase fraction can only be limited in the range of 30% to 60%
These methods are currently in the stage of laboratory research and have not yet been put into industrial production.

Method used

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  • Method for preparing semisolid alloy through centrifuging and chilling
  • Method for preparing semisolid alloy through centrifuging and chilling
  • Method for preparing semisolid alloy through centrifuging and chilling

Examples

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Embodiment 1

[0030] Example 1: Melt the commercial ZL203 alloy, and preheat the chilled bucket and centrifugal bucket to 250°C and 600°C respectively; when the melt temperature drops to 700°C, pour it into the centrifugal bucket, turn on the motor, and adjust the centrifugal Rotate to 1000r / min to prepare semi-solid alloy. The prepared slurry was collected in a crucible and cooled to room temperature. Depend on figure 2 It can be seen that the microstructure of the ingot prepared by the centrifugal chilling method is a fine, uniform granular non-dendritic structure.

Embodiment 2

[0031] Example 2: Melt the AZ91D magnesium alloy, preheat the chilled barrel to 230°C, and preheat the centrifugal barrel to 600°C; when the temperature of the melt drops to 680°C, pour it into the centrifugal barrel, turn on the speed regulating motor, and adjust The rotation speed was 800r / min, and the collected slurry was collected in a crucible and then cooled to room temperature.

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Abstract

The invention relates to a semisolid alloy preparation method, in particular a method for preparing a spherical primary crystal semisolid alloy through centrifuging and chilling. The method comprises the following steps of: first, melting the alloy to a certain temperature; and then pouring the melt in a centrifugal barrel; throwing the melt to the inner wall of a chilling barrel after rotating the melt through centrifugal force; carrying out mixed convection on the melt in the centrifugal barrel under the double effects of centrifugal force and chilling force; and finally, obtaining a non-dendritic semisolid alloy blank or slurry with spherical or granular primary phase under the mutual effect of numerous nucleation and dendrite breaking of the outer barrel. The method for preparing the spherical primary crystal semisolid alloy through centrifuging and chilling, provided by the invention, has the characteristics of simple equipment, high production efficiency, wide application range of alloy, fine and rounded primary phase with semi-solid structure and the like, and can be used for the preparation and molding production of the metal semisolid alloy.

Description

technical field [0001] The invention belongs to the technical field of semi-solid metal processing, and in particular relates to a method for preparing a semi-solid alloy by centrifugal chilling. Background technique [0002] Since Professor Flemings created the concept, theory and technology of semi-solid metal forming in the 1970s, semi-solid metal processing technology has attracted extensive attention from the international materials community and has become one of the most active research fields today. This method can not only reduce costs, improve casting quality and yield, but also has the advantages of high efficiency, energy saving and environmental protection. At present, some developed countries have begun to apply it in the fields of automobile manufacturing, communications, electrical appliances, computers and their auxiliary equipment, aerospace and other fields, and have broad development prospects. Metal and alloy semi-solid forming technology is generally ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C1/00
Inventor 韩言言周全陈乐平
Owner NANCHANG HANGKONG UNIVERSITY
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