Repeated austenitisation and furnace cooling of homogenised 0.16 wt. % carbon steels result in ferrite grain sizes between 27 μm and 24 μm. Similarly, repeated austenitisation and normal-air cooling produces ferrite grain sizes between 17 μm and 12 μm; while repeated austenitisation and forced-air cooling produces a minimum grain size of 9.5 μm. Furnace cooling decomposes the austenite eutectoidally to lamellar pearlite; while normal-air cooling and forced-air cooling after austenitisation cause degen eration of pearlite regions producing grain boundary network as well as cluster of cementite and other carbides. Forced-air cooled samp les provide the highest YS (364 MPa) and UTS (520 MPa); while furnace cooling provides the lowest (290 ...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Five different grain sizes are produced in 0.17 wt% carbon steel using varying rates of cooling from...
The effect of grain size and cooling rates on the mechanical properties of two grades of steels has ...
In this work an annealed 0.16 wt% carbon steel was subjected to cyclic heat treatment process that c...
The average size of hot-work tools has gradually increased over the past years.This affects the effe...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Annealed AISI 1080 steel bars were subjected to cyclic heat treatment up to 3 cycles. Each cycle con...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
In industrial application, unintentional manufacturing line troubles often consequence in heating ra...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Five different grain sizes are produced in 0.17 wt% carbon steel using varying rates of cooling from...
The effect of grain size and cooling rates on the mechanical properties of two grades of steels has ...
In this work an annealed 0.16 wt% carbon steel was subjected to cyclic heat treatment process that c...
The average size of hot-work tools has gradually increased over the past years.This affects the effe...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Annealed AISI 1080 steel bars were subjected to cyclic heat treatment up to 3 cycles. Each cycle con...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
In industrial application, unintentional manufacturing line troubles often consequence in heating ra...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...
Low carbon steel with a microstructure consisting mostly of ferrite with the darker pearlite regions...