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LUKS, T. HORSKÝ, J. NILSSON, A. JONSSONS, N. LAGERGREN, J.
Original Title
Contact stress distribution and roll surface temperature in the roll gap analyzed with different sensors
Type
journal article in Web of Science
Language
English
Original Abstract
In this work, the contact stresses and temperatures during hot and cold rolling have been measured. A work roll containing three different sensors was used for the measurements. There were two contact devices for directly measuring forces and one temperature sensor. One sensor was the ROLLSURF sensor. Results obtained with this sensor have been presented earlier [1-3]. The measurement principle is based on deformation measurements with strain gauges which were placed on an internal cradle-type roll insert. The second sensor was a fiction pin sensor. The forces on the top of the pin were measured by three axis piezoelectric-transducers. The pin sensor was mounted inside the work roll opposite to the ROLLSURF sensor. The third sensor was a thermocouple placed next to the pin sensor. The temperatures were measured very close to the roll surface. The surface boundary conditions including the heat flux and surface temperatures were computed using inverse modelling calculations developed at Brno University of Technology. The main task of this paper is to show a comparison of the contact forces and contact length measured with the strain-gauge sensor and the pin-sensor.
Keywords
Roll gap; contact stresses; friction coefficient; hot rolling; cold rolling; heat flux
Authors
LUKS, T.; HORSKÝ, J.; NILSSON, A.; JONSSONS, N.; LAGERGREN, J.
RIV year
2013
Released
1. 1. 2014
Publisher
Associazione Italiana di Metallurgia
Location
ITALY
ISBN
9788885298958
Book
Rollling2013
0026-0843
Periodical
La Metallurgia Italiana
Year of study
160
Number
1
State
Republic of Italy
Pages from
19
Pages to
25
Pages count
6
BibTex
@article{BUT102630, author="Tomáš {Luks} and Jaroslav {Horský} and Annika {Nilsson} and Nils-Göran {Jonssons} and Jonas {Lagergren}", title="Contact stress distribution and roll surface temperature in the roll gap analyzed with different sensors", journal="La Metallurgia Italiana", year="2014", volume="160", number="1", pages="19--25", issn="0026-0843" }