Pawan Kumar, Mamookho Elizabeth Makhatha
The casting of metal alloys followed by hot forging is a widely used manufacturing technology to produce a homogeneous microstructure. The combination of mechanical and thermal energy envisages the microstructural properties of metal alloys. In the present investigation, a metal alloy of composition 0.05C-1.52Cu-1.51Mn (in weight %) was cast in an induction furnace using a zirconia crucible. The melt pool was monitored using optical emission spectroscopy (OES) to maintain the desired composition. The as-cast block was then subjected to forging under a pneumatic hammer of 0.5 t capacity so that any casting defects were eliminated. The as-cast block was reheated to a temperature of 1050 ◦C and held at that temperature for 6 h to homogenize, followed by hammering with a 50% strain using a pneumatic hammer. The microhardness was calculated using a Vickers microhardness testing apparatus. The microstructure characterization of the processed alloy was carried out using an optical microscope, electron backscattered diffraction (EBSD), energy-dispersive X-ray spectroscopy (EDXA), and a transmission electron microscope (TEM). The sample for optical microscopy investigation revealed significant improvements in the alloy's microstructural features and mechanical properties.
@article{d241f5e2-acb2-4d9a-b0dd-55d27ee497d3,
title={The Casting and Hot Forging of Low Carbo},
author={Pawan Kumar and Mamookho Elizabeth Makhatha},
year={2026},
language={en}
}TY - JOUR TI - The Casting and Hot Forging of Low Carbo AU - Pawan Kumar AU - Mamookho Elizabeth Makhatha PY - 2026 LA - en ER -
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