A New Method of Predicting the Parameters of the Rotational Friction Welding Process Based on the Determination of the Frictional Heat Transfer in Ti Grade 2/AA 5005 Joints

Author:

Lacki Piotr1ORCID,Adamus Janina1,Więckowski Wojciech2ORCID,Motyka Maciej3ORCID

Affiliation:

1. Faculty of Civil Engineering, Częstochowa University of Technology, J.H. Dąbrowskiego 69 Str., 42-201 Częstochowa, Poland

2. Faculty of Mechanical Engineering and Computer Science, Częstochowa University of Technology, J.H. Dąbrowskiego 69 Str., 42-201 Częstochowa, Poland

3. Faculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, Powstancow Warszawy 12 Av., 35-959 Rzeszow, Poland

Abstract

The article presents an original approach to determining the basic parameters of rotational friction welding (RFW) based on the analysis of friction heat transfer at the faying surfaces. Dissimilar Ti Grade 2/AA 5005 joints were used to demonstrate the method. The work established that for the analyzed joint, the optimum temperature at the faying surface that allow for a good quality weld to be obtained should be ~505 °C. On this basis, a map of optimal parameters was developed to achieve this temperature. This approach could potentially allow for more precise control of the welding process, leading to better joint quality and performance. The paper includes both a description of the technological process of friction welding and an attempt to explain the mechanism of the phenomena occurring in the welding area. The numerical calculations presented in the article were carried out using the ADINA System v. 9.8.2, which allows for the consideration of heat friction in the axial symmetric thermo-mechanical model. Frictional resistance was determined by the temperature-dependent friction coefficient. The assumed thermo-mechanical model required the determination of elastic-plastic properties versus temperature for the analyzed materials. The simulations of the friction welding were carried out for the different welding parameters and time. The different variants of friction welding were modelled.

Funder

Czestochowa University of Technology

Publisher

MDPI AG

Subject

General Materials Science

Reference18 articles.

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2. Peride, N. (2009). IWCMM 2009 XIX International Workshop on Computational Mechanics of Materials, Proceedings of the 19th International Workshop on Computational Mechanics of Materials IWCMM19, Constanta, Romania, 1–4 September 2009, Ovidius University Press.

3. Zgrzewanie tarciowe stopów tytanu z aluminium: Ang. Friction welding of titanium alloys with aluminum;Wojsyk;Inżynieria Mater.,2009

4. Vill, V.I. (1962). Friction Welding of Metals, American Welding Society, Inc.

5. Thermo-mechanical and diffusion modelling in the process of ceramic–metal friction welding;Zimmerman;J. Mater. Process. Technol.,2009

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