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The writer gratefully acknowledges the aid of the universidad del valle through the challenge no. Ci 71108, colciencias (colombia) for the finances required in pursuit the doctorate degree, and to the f.P.I.T. (Banco de l. A. República-colombia) through venture furnish no. 4067.
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Warm compression checks were carried out on an a homogenized as-forged az91d magnesium alloy at temperatures ranging from 220 °c to 380 °c and pressure costs ranging from zero.001 to ten s−1 by a gleeble-3500 thermo mechanical simulator. True pressure-–genuine stress curves were given. A constitutive modeling of the homogenized alloy changed into proposed to describe the waft characteristic. The deformation activation strength became anticipated to be 142.27 kj mol−1. Non-stop 3-dimensional (3-d) processing maps had been evolved based at the genuine strain–real stress records as a feature of pressure, temperature, and stress fee. A detailed interpretation of the installed three-d processing maps was conducted. The effects confirmed that the version of the 3-d processing maps became appreciably pressure dependent. Dynamic recrystallization domains with high-strength dissipation efficiencies and instability domains with bad instability coefficient had been identified from the three-d strength dissipation maps and the 3d instability maps, respectively. It was also revealed that the instability domains particularly have become enlarged with the growing pressure. Optimized temperature and strain rate stages at diverse strains have been determined. Furthermore, hot workability characteristics had been clarified through inspecting the microstructures received below situations falling within stability and instability domain names with numerous traces. The outcomes proved that the developed 3-d processing maps can provide an correct prediction of the new deformation behavior for the homogenized az91d alloy.