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Refined Technique for Calculating Contact Stresses during the Strip Cold Rolling. / Baranov, G. L.
In: Steel in Translation, Vol. 52, No. 9, 01.09.2022, p. 874-879.

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Baranov GL. Refined Technique for Calculating Contact Stresses during the Strip Cold Rolling. Steel in Translation. 2022 Sept 1;52(9):874-879. doi: 10.3103/S0967091222090029

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Baranov, G. L. / Refined Technique for Calculating Contact Stresses during the Strip Cold Rolling. In: Steel in Translation. 2022 ; Vol. 52, No. 9. pp. 874-879.

BibTeX

@article{1f1aea6282f348bb85e2bab9e6056235,
title = "Refined Technique for Calculating Contact Stresses during the Strip Cold Rolling",
abstract = "A criterion for the occurrence of a reduction in the contact stress at the entrance to the deformation zone during the strip cold rolling is found. Numerical integration of the Karman equation determines the influence of friction conditions, tension and hardening of the strip material on the dimensions of this area. It is shown that neglecting the area of contact stress reduction and the shape of the hardening curve in the known solutions leads to an error in determining the rolling force, reaching 20% or more. A new solution of Karman{\textquoteright}s equation is proposed, which significantly improves the accuracy of calculation of contact stresses and rolling forces by considering the area of contact stress reduction and shape of the hardening curve of the strip material.",
author = "Baranov, {G. L.}",
year = "2022",
month = sep,
day = "1",
doi = "10.3103/S0967091222090029",
language = "English",
volume = "52",
pages = "874--879",
journal = "Steel in Translation",
issn = "0967-0912",
publisher = "Allerton Press Inc.",
number = "9",

}

RIS

TY - JOUR

T1 - Refined Technique for Calculating Contact Stresses during the Strip Cold Rolling

AU - Baranov, G. L.

PY - 2022/9/1

Y1 - 2022/9/1

N2 - A criterion for the occurrence of a reduction in the contact stress at the entrance to the deformation zone during the strip cold rolling is found. Numerical integration of the Karman equation determines the influence of friction conditions, tension and hardening of the strip material on the dimensions of this area. It is shown that neglecting the area of contact stress reduction and the shape of the hardening curve in the known solutions leads to an error in determining the rolling force, reaching 20% or more. A new solution of Karman’s equation is proposed, which significantly improves the accuracy of calculation of contact stresses and rolling forces by considering the area of contact stress reduction and shape of the hardening curve of the strip material.

AB - A criterion for the occurrence of a reduction in the contact stress at the entrance to the deformation zone during the strip cold rolling is found. Numerical integration of the Karman equation determines the influence of friction conditions, tension and hardening of the strip material on the dimensions of this area. It is shown that neglecting the area of contact stress reduction and the shape of the hardening curve in the known solutions leads to an error in determining the rolling force, reaching 20% or more. A new solution of Karman’s equation is proposed, which significantly improves the accuracy of calculation of contact stresses and rolling forces by considering the area of contact stress reduction and shape of the hardening curve of the strip material.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85145882232

U2 - 10.3103/S0967091222090029

DO - 10.3103/S0967091222090029

M3 - Article

VL - 52

SP - 874

EP - 879

JO - Steel in Translation

JF - Steel in Translation

SN - 0967-0912

IS - 9

ER -

ID: 33317663