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A combined pressing method for continuous casting slabs

A continuous casting slab and casting slab technology, which is applied in the field of continuous casting slab combination reduction, can solve problems such as unstabilized process effects, achieve the effects of improving macro segregation and center loose defects, improving internal quality, and significant reduction effect

Active Publication Date: 2021-09-24
SUZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although a few studies have given the exact position of reduction and the range of reduction amount, there is no relevant basis for it. Therefore, it is obvious that the process effect cannot be stably and reliably exerted

Method used

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  • A combined pressing method for continuous casting slabs
  • A combined pressing method for continuous casting slabs
  • A combined pressing method for continuous casting slabs

Examples

Experimental program
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Effect test

Embodiment 1

[0083] Specification of continuous casting billet: 165*165mm square billet; the implemented steel type is 82B high carbon steel; implemented casting speed: 1.65m / min;

[0084] Through the macro-segregation model and porosity model prediction results established, the final formation position of central segregation and the reasonable position of porosity formation can be obtained. Figure 4 The evolution law of the central segregation calculated by the model is given. It can be seen that when the end of solidification is approaching, the central segregation basically does not change, that is, the central segregation will eventually form when it is close to the end of solidification. In this example, the solid phase ratio is 0.71 place. Figure 5 Shown is the evolution of the theoretical value of porosity in the solidification process calculated by the porosity model. The results show that when the solid ratio of 3 critical feeding is 0.7, the porosity diameter is 2 mm, which is...

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Abstract

The invention discloses a continuous casting slab combined reduction method, by establishing a solidification model before the continuous casting slab is pressed, determining the solidification end position and central solid phase ratio of the slab, and predicting the final formation position of the macro segregation in the center of the slab The critical solid phase ratio and the critical solid phase ratio at the position where the central porosity begins to form. At the end of the slab solidification, the central solid phase ratio is less than the critical solid phase ratio at the final formation position of the macrosegregation. Regions greater than the critical solid fraction at which central porosity begins to form are under heavy pressure. And the reduction model is used to predict the improvement effect of different reduction amounts on central segregation and porosity, so as to determine the optimal reduction position and reduction amount. The invention can effectively improve the segregation and porosity of the slab center, and can predetermine the optimal reduction parameters at the same time, realize the optimal reduction effect and reduce the experiment cost.

Description

technical field [0001] The invention relates to the technical field of continuous casting production, in particular to a combined pressing method for continuous casting slabs. Background technique [0002] Macro segregation and central porosity are the main internal defects of continuous casting slabs, and improper control will seriously affect the quality of steel products. Mechanical reduction is the main technical means to improve the internal quality of the slab, especially for macro segregation. With the advancement of technology, the current dynamic soft reduction technology can control the center segregation within a certain range, but the improvement of the center porosity by the light reduction technology With little success. This is mainly determined by the formation characteristics of macro-segregation and central porosity. The applicant’s research shows that the final formation position of macro-segregation is before the end of solidification, and the position w...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B22D11/12B22D11/16
CPCB22D11/1206B22D11/16
Inventor 董其鹏长海博文夏军屈天鹏
Owner SUZHOU UNIV
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