Ewr® Endless Welding Rolling System And Spooler Line. Results And Combined Application For Endless Rolling Of Spooled Coils

Associacao Brasileira de Metalurgia,  Materiais e Mineracao
Marco Castenetto
Organization:
Associacao Brasileira de Metalurgia, Materiais e Mineracao
Pages:
8
File Size:
953 KB
Publication Date:
Aug 16, 2017

Abstract

Some of the most significant Danieli innovations in the field of long products are the: i) The EWR® system, through automatic continuous head-to-tail flash welding of billets at reheating furnace exit side, enables uninterrupted production of the mill for endless rolling of straight bars, wire rod and bar in coils. The process is particularly beneficial to wire rod and bar-in-coil mills as it enables production of “customized-size coils” (any coil weight according to specific Customer request) and with extra-high final coil weight, even starting from low-weight billets; ii) The Spooler process is based on twistfree winding of hot-rolled rebars into highly-compact/ultra-heavy coils featuring a unique cobble-free un-coiling capability. This enables high-speed feeding of the downstream cold-processing lines with hot-rolled spooled coils coming directly from the rolling mill without the need of any traditional off-line operation (such as de-coiling, stretching & re-winding). The system results highly beneficial both to bar-in-coil producers and to the downstream lines operators. The latest step forward is the combined application of these two systems that has made it possible for endless rolling of spooled bar in coils, enabling to cumulate the benefits of the two processes, particularly as far as transformation costs are concerned.
Citation

APA: Marco Castenetto  (2017)  Ewr® Endless Welding Rolling System And Spooler Line. Results And Combined Application For Endless Rolling Of Spooled Coils

MLA: Marco Castenetto Ewr® Endless Welding Rolling System And Spooler Line. Results And Combined Application For Endless Rolling Of Spooled Coils. Associacao Brasileira de Metalurgia, Materiais e Mineracao, 2017.

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