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A chamfered crystallizer narrow surface copper plate

A technology of chamfering crystallizers and narrow-faced copper plates, which is applied to the field of components on the mold, can solve problems such as small amount of arc chamfering, limited temperature increase at the corner of the billet, and steel leakage accidents, so as to make up for shrinkage and strengthen Effect of coagulation uniformity

Active Publication Date: 2017-02-08
SHOUGANG CORPORATION
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The application provides a chamfered mold narrow-faced copper plate, which solves the problem of limited temperature increase at the corner of the billet due to the small amount of arc chamfering of the transitional surface in the prior art, which fails to fully solve the problem of heat transfer, resulting in casting There are more longitudinal cracks in the billet, and even steel leakage accidents, which lead to the technical problem that the actual application effect of the chamfered crystallizer is poor

Method used

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  • A chamfered crystallizer narrow surface copper plate
  • A chamfered crystallizer narrow surface copper plate
  • A chamfered crystallizer narrow surface copper plate

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Embodiment 1

[0025] figure 1 It is a top view of the chamfering crystallizer narrow surface copper plate in a preferred embodiment of the present application. Such as figure 1 As shown, the narrow copper plate 100 of the chamfering crystallizer includes a working surface 10, while referring to figure 2 and image 3 , the working surface 10 is a concave curved surface, and the working surface 10 includes a first part 11 and a second part 12 . Wherein, the first part 11 is the part on the working face 10 within the range of 200 mm to 400 mm from the upper mouth of the crystallizer, and the second part 12 is the part on the working face 10 that is outside the range of 200 mm to 400 mm from the upper mouth of the crystallizer. part.

[0026] The first part 11 includes a first curved area 111 , two second curved areas 112 , and two transitional curved areas 113 .

[0027] The first curved area 111 is a quadratic parabolic area. Preferably, in this embodiment, the quadratic parabola equat...

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Abstract

The invention discloses a narrow-face copper plate for a chamfer crystallizer. A working face of the narrow-face copper plate for the chamfer crystallizer comprises a first part and a second part; the first part is a sunken curved surface; the first part is a part on the working face in a range of 200mm to 400mm apart from an upper port of the crystallizer. The first part comprises a first curved surface region, two second curved surface regions and two transition curved surface regions, wherein the first curved surface region is a second degree parabola region; the two second curved surface regions are curved surfaces of which the crown heights are 1mm to 3mm; the two transition curved surface regions are curved surfaces with radii of 5mm to 35mm; the two transition curved surface regions are respectively connected with two opposite sides of the first curved surface region and the two second curved surface regions. The second part is connected with the first curved surface region, the two second curved surface regions and the two transition curved surface regions; the second part is a linear conical surface. The narrow-face copper plate for the chamfer crystallizer is also provided with a cooling waterway for cooling the working face; the distance between the cooling waterway and the edge, which is far away from the transition curved surface regions, on each second curved surface region is 20mm to 40mm; the distance between the cooling waterway and each transition curved surface region is 10mm to 30mm.

Description

technical field [0001] The invention relates to parts on a crystallizer in the field of continuous steel casting equipment in the metallurgical industry, in particular to a chamfering mold narrow-faced copper plate. Background technique [0002] With the development of continuous casting technology, the slab continuous casting production line continues to develop high-quality steel grades, and the casting elements containing niobium, boron, vanadium and other elements are gradually increasing. Due to the 2-dimensional heat transfer at the corner of the slab, this part solidifies quickly and shrinks greatly, and it is easy to generate air gaps at the corner of the slab, resulting in poor solidification structure at the corner. Such elements widen the third brittle zone of the steel grade. In the bending section and straightening section of the secondary cooling, the corner temperature of the billet can easily enter the brittle zone range of this kind of steel grade. When nio...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B22D11/059
Inventor 朱国森刘国梁季晨曦李海波包春林陈斌张涛李树森张颖华马威刘洋隋大鹏
Owner SHOUGANG CORPORATION
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