Anais do Seminário de Laminação, Conformação de Metais e Produtos


ISSN 2594-5297

Título

PROCESS DEVELOPMENTS FOR PRODUCING TIGHTER TOLERANCE SBQ BAR

DOI

10.5151/1983-4764-30195

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Resumo

During the ABM Conference of 2015 the latest design and process features of the new 3-roll RSB® generation were presented together with a unique Size Control System SCS® for a real time closed loop control to produce an extraordinary quality SBQ – day in, day out. In the past two years, Kocks has focused on improving the repeatability of the rolling process and developed technology to enhance the performance of its equipment. These developments include Fast Remote Control (FRC), Stands Adjustable Under Load (AUL) implementation of closed loop Size Control System (SCS), and finally a state of the art laser Gauge (4D Eagle) that pulls all of these developments into a complete package of quality. Gauges used in the past generally operated with the “shadow” measuring system. The latest gauge developments are based on the “light section” method. This method is more suitable to provide real time measurement parameters of the rolled bar. Placed close to the last rolling stand, the “light section” gauge is capable of measuring around the complete diameter with a clear definition of the bar stage in relation to the axes of the rolls. It is also capable of making these measurements using a very high measurement frequency. Following requirements of the market, requiring the highest gauge measuring frequencies which display the bar in the most accurate way even at the highest rolling speeds, the “4D Eagle” gauge was developed. This paper describes all the process features and parameters of this impressive and unique newly developed gauge as well as the other described technical improvements.

 

Palavras-chave

Size Control System, Reducing, Sizing, SBQ

Size Control System, Reducing, Sizing, SBQ

Como citar

Connell, Patrick E; Schwarz, Stefan; Strobl, Franz. PROCESS DEVELOPMENTS FOR PRODUCING TIGHTER TOLERANCE SBQ BAR , p. 75-85. In: 54º Seminário de Laminação e Conformação, São Paulo, 2017.
ISSN: 2594-5297 , DOI 10.5151/1983-4764-30195