Effect of Multiple Thermal Cycles on the Microstructure and Mechanical Properties of AISI 1045 Weldments.
Muhammad Atif MakhdoomFurqan AhmedIftikhar Ahmed ChannaAqil InamFahad RiazSajid Hussain SiyalMuhammad Ali SharAbdulaziz AlhazaaPublished in: ACS omega (2022)
AISI 1045 medium carbon steel sheets having 10 mm thickness were subjected to the shielded metal arc welding process with three, five, and seven passes. The variations in the microstructure due to multiple thermal cycles in the heat-affected zone (HAZ), base metal (BM), and fusion zone (FZ) have been investigated and correlated with measured mechanical properties. Upon comparing fracture mechanics and mechanical properties with microstructural observations, it is elucidated that samples become ductile by increasing the number of thermal cycles which can be attributed to the transformations in the ferrite morphology in the HAZ. Based on mechanical, microstructural, and fracture analysis, it is concluded that post-weld heat treatment can be avoided if the number of passes during welding is increased.