Overview
FrançaisRead this article from a comprehensive knowledge base, updated and supplemented with articles reviewed by scientific committees.
Read the articleAUTHORS
-
Annick POKORNY: Assistant at the University of Metz
-
Jean POKORNY: Ingénieur des Arts et manufactures, Doctor-engineer
INTRODUCTION
Hot plastic deformation (wrought forming) of cast products, whether obtained by conventional ingot casting, continuous casting or ESR (electroslag remelting) casting, is a shaping process that is accompanied by metallurgical modifications. One might think that the large-scale, multiple deformations achieved by rolling or forging would completely erase the original structure, that of the cast state. In fact, many of the characteristics of the latter affect the metal's behavior during processing, and are transmitted to the finished product by a kind of heredity.
The current development of continuous casting for near-net-shape casting and of direct shaping with thermomechanical treatments combined with wrought-iron working is leading to savings in investment and energy. This change is driving new quality requirements, particularly during the hot forming of steels.
Exclusive to subscribers. 97% yet to be discovered!
You do not have access to this resource.
Click here to request your free trial access!
Already subscribed? Log in!
The Ultimate Scientific and Technical Reference
This article is included in
Metal forming and foundry
This offer includes:
Knowledge Base
Updated and enriched with articles validated by our scientific committees
Services
A set of exclusive tools to complement the resources
Practical Path
Operational and didactic, to guarantee the acquisition of transversal skills
Doc & Quiz
Interactive articles with quizzes, for constructive reading
The effect of wrought iron on the structure of steel castings
References
Exclusive to subscribers. 97% yet to be discovered!
You do not have access to this resource.
Click here to request your free trial access!
Already subscribed? Log in!
The Ultimate Scientific and Technical Reference