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Magnesium alloy round billet continuous casting crystallizer

A round billet continuous casting and crystallizer technology, which is applied in the field of magnesium alloy round billet continuous casting molds, can solve the problems of semi-continuous casting mold height, small heat, small contact distance, etc., and achieve the effect of improving control flexibility

Active Publication Date: 2014-10-29
CHINA NAT HEAVY MACHINERY RES INSTCO
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The height of the semi-continuous casting mold of conventional magnesium alloy is small, generally between 150-250mm, the contact distance between the magnesium alloy melt and the inner wall of the mold is small, and the heat taken away per unit time is also small, which requires the casting speed to be very low

Method used

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  • Magnesium alloy round billet continuous casting crystallizer
  • Magnesium alloy round billet continuous casting crystallizer
  • Magnesium alloy round billet continuous casting crystallizer

Examples

Experimental program
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Embodiment Construction

[0016] The present invention will be described in detail below in conjunction with the accompanying drawings.

[0017] refer to figure 1 and figure 2 , a magnesium alloy round billet continuous casting crystallizer, comprising a cooler 3, the cooler 3 is connected to the water tank body 2 by bolts, the outside of the water tank body 2 is connected to the crystallizer frame 1, and the mold frame 1 is connected to the mold body by bolts Above the bottom plate 4, the protective ring 5 and the flange 6 are connected under the bottom plate 4 by bolts, so that the entire crystallizer forms a whole, which is convenient for installation and maintenance.

[0018] refer to image 3 , the contact surface of the water tank 2 or the cooler 3 is distributed with water channels along the circumference, which are divided into upper, middle and lower parts from high to low, and the water channels of the upper, middle and lower parts are respectively connected with the respective areas The ...

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Abstract

Disclosed is a magnesium alloy round billet continuous casting crystallizer. Water flowing grooves are distributed in the contact surface of a water tank water diversion body or a cooler along the periphery, and the water flowing grooves in the upper, middle and lower portions are connected with water inlet / outlet channels in respective areas respectively and enable the upper, middle and lower portions to supply different cooling media and flowing amounts according to needs, so that segmentation cooling control over the crystallizer is achieved. Medium inlet / outlet ports of the upper, middle and lower portions are communicated with corresponding water inlet / outlet flanges respectively, and the length of the crystallizer can be increased to 800 mm to the maximum extent. A cooling area of the inner wall of the crystallizer adopts independent cooling control with an upper section, a middle section and a lower section from top to bottom, and control flexibility of the crystallization and solidification intensity of molten magnesium alloy is improved. Inert gas is introduced to the lower portion of the crystallizer for protection, so that water steam is prevented from entering the inner wall of the crystallizer and causing combustion or explosion accidents of the molten magnesium alloy. The magnesium alloy round billet continuous casting crystallizer is an important breakthrough in improving the casting speed of the magnesium alloy, and fills the blank in the field of comprehensive design schemes of the magnesium alloy continuous casting crystallizer.

Description

technical field [0001] The invention relates to the technical field of magnesium alloy round billet continuous casting machines, in particular to a magnesium alloy round billet continuous casting crystallizer. Background technique [0002] The mold is the heart of continuous casting production. In the mold area, the heat of the magnesium alloy melt is transferred to the mold, and the temperature of the magnesium alloy melt at the contact point with the inner wall of the mold drops below the solidification temperature due to the rapid heat transfer. , to promote the rapid solidification of this part of the melt to form the initial billet shell. With the continuous downward movement of the magnesium alloy melt and the solidified shell relative to the inner wall of the crystallizer, the thickness of the solidified shell gradually increases and has sufficient strength to resist the static pressure of the internal melt. resulting deformation. The height of the semi-continuous ca...

Claims

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Application Information

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IPC IPC(8): B22D11/04B22D11/055
Inventor 杨拉道雷华刘赵卫姚赟郝乐
Owner CHINA NAT HEAVY MACHINERY RES INSTCO
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