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Mud was hot rolled at four different temperatures 80, 90, 100 and 120 °C for 16 h.
Low carbon steel containing copper and Ti-Mo were hot rolled followed by interrupted cooling.
The titanium matrix composites are hot rolled with degrees of deformation of 60%, 80 %, 90 % and 95
They can be produced through the use of industrial continuous casting devices and can be hot rolled without any damage.
The magnesium alloy AZ91 was hot rolled and annealed to produce a plate with a strong basal texture.
Low carbon ferritic steel alloyed with Ti, Mo and Cu was hot rolled and interrupt cooled to produce nano-sized precipitates of copper and (Ti,Mo)C carbides.
Then the fluid cell with cuttings was hot rolled in a conventional roller oven at different temperatures (77, 100, and 120 °C) for 16 h.
The vacuum-melted ingot was hot rolled in the austenite region to a thickness of 3 mm and subsequently water-cooled to 673 K followed by furnace cooling to room temperature.
Furthermore, the best response is exhibited by the stainless-steel bars, provided that they are hot rolled, as it is generally the case for medium- and large-diameter bars.
Ti 6Al 4 V and Ti 10Ta 10Nb alloys were prepared by consumable vacuum arc melting and homogenized at 1050 °C for 24 h, and then both alloys were hot rolled at approximately 1000 °C.
A Fe 26Al 5Cr (at.%) single-phase (α A2/B2/D03) alloy and two-phase (α+TiC) alloys with different amounts of TiC particles have been hot rolled at 800 °C and the kinetics of static recrystallisation have been studied.
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