Choosing the Design of a Radial-Shear Rolling Mill for Obtaining a Screw Profile

Author:

Lezhnev Sergey1,Naizabekov Abdrakhman2,Tolkushkin Andrey1,Panin Evgeniy3ORCID,Kuis Dmitry4,Arbuz Alexandr5,Tsyba Pavel6,Shyraeva Elena7

Affiliation:

1. Metallurgy and Mining Department, Rudny Industrial University, 50 let Oktyabrya Str. 38, Rudny 111500, Kazakhstan

2. Metallurgy Department, Innovative University of Eurasia, Lomov St. 45, Pavlodar 140000, Kazakhstan

3. Metal Forming Department, Karaganda Industrial University, 30 Republic Ave., Temirtau 101400, Kazakhstan

4. Materials Science and Engineering Systems Design Department, Belarusian State Technological University, 13a Sverdlova Str., 220006 Minsk, Belarus

5. Core Facilities Department, AEO Nazarbayev University, 53 Kabanbay Batyr Ave., Astana 010000, Kazakhstan

6. LLP “Promtech Perspective”, 7/2 Prigorodnaya Str., Karaganda 100000, Kazakhstan

7. Nosov Magnitogorsk State Technical University, 38 Lenin Street, Magnitogorsk 455000, Russia

Abstract

The purpose of this work is a comparative analysis of the workpiece shape, and parameters of the stress-strain state during deformation on two radial-shear rolling mills with different roll configurations to determine the most suitable scheme for obtaining a screw reinforcement profile. During the FEM simulation of the radial-shear rolling process in the DEFORM program, a comparison of the workpiece shape change after rolling, equivalent strain, damage index, and Lode–Nadai index was carried out. Steel 10 (analogue of AISI 1010) was chosen as material workpiece. The analysis of the obtained data revealed that the most rational choice for the implementation of the reinforcement profile production process is the radial-shear rolling mill RSR 10-30. Subsequent modeling of the combined process of radial-shear rolling and twisting in a screw matrix showed that when using rolls of RSR 10-30 mill, the screw profile of the workpiece is formed successfully, whereas using rolls of the SVP-08 mill, the formation of a screw profile is impossible due to jamming due to an irregular cross-section shape. A laboratory experiment confirmed the possibility of forming a screw reinforcement profile at RSR 10-30 mill, and an assessment of the geometric parameters of the final workpiece showed full compliance with the dimensions of the profiles obtained during modeling and experiment.

Funder

the Science Committee of the Ministry of Science and Higher Education of the Republic of Kazakhstan

Publisher

MDPI AG

Reference26 articles.

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3. Technology of processing railway rails for long products;Smirnov;Steel,1995

4. On the expediency of rolling worn rails into long profiles;Bakhtinov;Prod. Roll. Prod.,2000

5. Obtaining long-range rolled profiles from worn-out railway rails;Badyuk;Process. Mater. Press.,2010

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