The hot deformation behavior of hot isostatically pressed (HIP) NIMONIC AP-1 superalloy is characterized using processing maps in the temperature range 950-degrees-C to 1200-degrees-C and strain rate range 0.001 to 100 s-1. The dynamic materials model has been used for developing the processing maps which show the variation of the efficiency of power dissipation given by [2m/(m +1)] with temperature and strain rate, with m being the strain rate sensitivity of flow stress. The processing map revealed a domain of dynamic recrystallization with a peak efficiency of 40 pct at 1125-degrees-C and 0.3 s-1, and these are the optimum parameters for hot working. The microstructure developed under these conditions is free from prior particle boundary ...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...
The hot-working characteristics of Nimonic 75, 80A and 90 are studied in the temperature range 850-1...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...
The hot deformation behavior of hot isostatically pressed (HIP) NIMONIC AP-1 superalloy is character...
The hot deformation behavior of hot isostatically pressed (HIP) NIMONIC AP-1 superalloy is character...
The hot deformation behavior of hot isostatically pressed (HIP) NIMONIC AP-1 superalloy is character...
The hot deformation behavior of hot isostatically pressed (HIPd) P/M IN-100 superalloy has been stud...
The hot deformation behavior of hot isostatically pressed (HIPd) P/M IN-100 superalloy has been stud...
The hot deformation behavior of hot isostatically pressed (HIPd) P/M IN-100 superalloy has been stud...
and strain rate range 0.001 to 100 s- ~ using hot compression tests. Processing maps for hot working...
The hot-working characteristics of IN-718 are studied in the temperature range 900 °C to 1200 °C and...
The hot-working characteristics of IN-718 are studied in the temperature range 900 °C to 1200 °C and...
The hot-working characteristics of IN-718 are studied in the temperature range 900 degrees C to 1200...
The hot working behavior of the nickel-base superalloy IN 625 produced by hot extrusion of a powder ...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...
The hot-working characteristics of Nimonic 75, 80A and 90 are studied in the temperature range 850-1...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...
The hot deformation behavior of hot isostatically pressed (HIP) NIMONIC AP-1 superalloy is character...
The hot deformation behavior of hot isostatically pressed (HIP) NIMONIC AP-1 superalloy is character...
The hot deformation behavior of hot isostatically pressed (HIP) NIMONIC AP-1 superalloy is character...
The hot deformation behavior of hot isostatically pressed (HIPd) P/M IN-100 superalloy has been stud...
The hot deformation behavior of hot isostatically pressed (HIPd) P/M IN-100 superalloy has been stud...
The hot deformation behavior of hot isostatically pressed (HIPd) P/M IN-100 superalloy has been stud...
and strain rate range 0.001 to 100 s- ~ using hot compression tests. Processing maps for hot working...
The hot-working characteristics of IN-718 are studied in the temperature range 900 °C to 1200 °C and...
The hot-working characteristics of IN-718 are studied in the temperature range 900 °C to 1200 °C and...
The hot-working characteristics of IN-718 are studied in the temperature range 900 degrees C to 1200...
The hot working behavior of the nickel-base superalloy IN 625 produced by hot extrusion of a powder ...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...
The hot-working characteristics of Nimonic 75, 80A and 90 are studied in the temperature range 850-1...
The microstructural features of hot-extruded Nimonic AP-1 superalloy powder are presented in this pa...