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Robert H. Titran

  • Advanced materials for space nuclear power stationsAdvanced materials for space nuclear power stations
  • Creep behavior of niobium alloy PWC-11Creep behavior of niobium alloy PWC-11
  • Creep properties of PWC-11 base metal and weldments as affected by heat treatmentCreep properties of PWC-11 base metal and weldments as affected by heat treatment
  • Creep rupture behavior of Stirling engine materialsCreep rupture behavior of Stirling engine materials
  • Creep strength and niobium alloys, Nb-1%Zr and PWC-11Creep strength and niobium alloys, Nb-1%Zr and PWC-11
  • Creep strength of niobium alloys, Nb-1%Zr and PWC-11Creep strength of niobium alloys, Nb-1%Zr and PWC-11
  • Creep-rupture behavior of a developmental cast-iron-base alloy for use up to 800 [degrees] CCreep-rupture behavior of a developmental cast-iron-base alloy for use up to 800 [degrees] C
  • Creep-rupture behavior of candidate Stirling engine alloys after long-term aging at 760C in low-pressure hydrogenCreep-rupture behavior of candidate Stirling engine alloys after long-term aging at 760C in low-pressure hydrogen
  • Long-time creek behavior of the niobium alloy C-103Long-time creek behavior of the niobium alloy C-103
  • Long-time creep behavior of Nb-1Zr alloy containing carbonLong-time creep behavior of Nb-1Zr alloy containing carbon
  • Refractory metal alloys and composites for space nuclear power systemsRefractory metal alloys and composites for space nuclear power systems
  • Stirling material technologyStirling material technology