Mizabi Asl M, Belbasi* M. Evaluation of heat input on microstructural and mechanical properties of dissimilar joints of D6AC steel to VCN 200 (1.6580) in GTAW welding. JWSTI 2024; 10 (2) :51-61
URL:
http://jwsti.iut.ac.ir/article-1-474-en.html
1- Department of Petroleum, Materials and Mineral Engineering, Faculty of Civil Engineering and Land Resources, Islamic Azad University, Central Tehran Branch, Tehran
2- Department of Petroleum, Materials and Mineral Engineering, Faculty of Civil Engineering and Land Resources, Islamic Azad University, Central Tehran Branch, Tehran , dr.belbasi@gmail.com
Abstract: (310 Views)
In this research, the effect of heat input on the microstructure and mechanical properties of the joint of two dissimilar steels D6AC and VCN 200 steel was investigated. For this purpose, the samples were welded with the current intensity of 130, 145 and 160 Ampers by GTAW process and using ER120 SG welding wire with a diameter of 2.4 mm. The metallographic results showed that the microstructure of the weld metal consisted of lath martensite and acicular ferrite phases, which increased the volume fraction of ferrite from 5 to 32% with the increase of heat input, and the morphology of the ferrite changed from acicular to polygonal ferrite due to the decrease in the cooling rate. The HAZ area microstructure consist of bainite, lath martenrite and ferrite. The highest strength value was obtained in the welded sample with low heat input. With the increase of heat input, the tensile strength has decreased from 1154 to 965 MPa. Also, with the increase of heat input, the impact energy has increased in the welding zone due to the increase of stable phases, and in the HAZ zone due to the growth of the primary austenite grains and the reduction of the grain boundary locking effect. The results of the fracture analysis showed that the fracture occurred in the weld zone with low heat input, brittle fracture, and in the HAZ area, combination of ductil and brittle fracture occurred. With the increase in heat input, dutil fracture occurred in the welding zone and brittle fracture occurred in the HAZ zone due to grain growth.
Type of Study:
Research |
Subject:
Special