Basic roll gap making method for wide and thick slab casting machine

A slab continuous casting machine and the technology of the continuous casting machine, applied in the field of slab continuous casting, can solve the problems of insufficient accuracy and calculation of the total shrinkage of the slab, and achieve the effect of accurate calculation and guaranteed accuracy

Active Publication Date: 2015-11-11
NORTHEASTERN UNIV
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Problems solved by technology

However, this method has the following disadvantages: the continuous casting process is divided into several solidification stages, and the total shrinkage of the slab during the entire casting process can only be roughly calculated
However, the finite element or finite difference method discretizes the entire co...

Method used

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  • Basic roll gap making method for wide and thick slab casting machine
  • Basic roll gap making method for wide and thick slab casting machine
  • Basic roll gap making method for wide and thick slab casting machine

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Embodiment Construction

[0041] The specific embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0042] In the specific embodiment of the present invention, in combination with the actual casting condition parameters of the on-site slab continuous casting machine, the large-scale commercial finite element software MSC.Marc is used as the calculation tool, and the three-dimensional finite element model and three-dimensional The heat shrinkage finite element model finally obtained the three-dimensional heat shrinkage law of the slab under the corresponding working conditions, and based on the above law, the basic roll gap of the slab continuous casting machine under the corresponding working conditions was formulated.

[0043] A method for formulating the foundation roll gap of a wide and thick slab continuous caster, such as figure 1 shown, including the following steps:

[0044] Step 1: Collect the parameters of the casting condition...

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Abstract

The invention relates to a basic roll gap making method for a wide and thick slab casting machine. The method includes the steps that casting working condition parameters of the casting machine are collected, a solidification and heat transfer three-dimensional finite element model of slabs is established, and a three-dimensional temperature field in the casting process is worked out according to the casting working condition parameters of the casting machine; and a three-dimensional thermal contraction finite element model of the slabs is established and solved with the three-dimensional temperature field in the casting process as a temperature load, a three-dimensional thermal contraction law is obtained, and basic roll gaps of the casting machine under corresponding working conditions are made according to the three-dimensional thermal contraction law and the initial thickness of the slabs. According to the method, the actually-measured flow density in a secondary cooling region serves as the boundary condition, and the computing accuracy of the solidification heat transfer and the thermal contraction law is guaranteed; and according to the feature that heterogeneity exists in solidification heat transfer and thermal contraction in different thickness directions, all fan-shaped-segment basic roll gaps are obtained further through the initial thickness of casting blanks, and the thermal contraction conditions of the casting blanks in different positions and at different casting moments can be computed more accurately.

Description

technical field [0001] The invention belongs to the field of continuous casting of slabs, and in particular relates to a method for formulating foundation roll gaps of wide and thick slab continuous casting machines. Background technique [0002] The slab continuous casting machine is mainly composed of a crystallizer and a sector section composed of different types of closely spaced segmented rolls. During the slab casting process, the molten steel is first cooled by the crystallizer to form a slab with a certain shell thickness, and then undergoes secondary cooling by spraying in the subsequent fan-shaped section and bending and straightening process, and finally it is completely cooled and solidified to form a slab. The slab becomes the final plate through the subsequent hot rolling or cold rolling process, which is widely used in various fields of national production, such as shipbuilding, bridge engineering, power station boilers, heavy machinery, offshore oil and milit...

Claims

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Application Information

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IPC IPC(8): B22D11/16
Inventor 吴晨辉祭程王磊朱苗勇
Owner NORTHEASTERN UNIV
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