Experimental evidence for segregation of interstitial impurities to defects in a near α titanium alloy during dynamic strain aging using energy filtered transmission electron microscopy
Dynamic strain aging was observed in the temperature range between 300°C and 500°C in a near α titanium alloy 834 without Silicon (10.38%Al–0.16%Sn–1.86%Zr–0.37%Nb–0.25%Mo–0.27%C–0.30%O–0.006%N, all in at%) tested in the temperature range from room temperature to 500°C. Electron microscopic investig...
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Published in | Materials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 638; pp. 90 - 96 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
25.06.2015
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Abstract | Dynamic strain aging was observed in the temperature range between 300°C and 500°C in a near α titanium alloy 834 without Silicon (10.38%Al–0.16%Sn–1.86%Zr–0.37%Nb–0.25%Mo–0.27%C–0.30%O–0.006%N, all in at%) tested in the temperature range from room temperature to 500°C. Electron microscopic investigation of tensile tested samples in an energy filtered transmission electron microscopy provided direct experimental evidence for segregation of interstitial elements like carbon (C) and nitrogen (N) to lath boundaries and dislocation pile ups. On the basis of these results and the comparison of lattice strain generated by different interstitials in α-Ti, it was concluded that segregation of carbon and nitrogen and not oxygen to defects is responsible for DSA in this alloy. |
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AbstractList | Dynamic strain aging was observed in the temperature range between 300°C and 500°C in a near α titanium alloy 834 without Silicon (10.38%Al–0.16%Sn–1.86%Zr–0.37%Nb–0.25%Mo–0.27%C–0.30%O–0.006%N, all in at%) tested in the temperature range from room temperature to 500°C. Electron microscopic investigation of tensile tested samples in an energy filtered transmission electron microscopy provided direct experimental evidence for segregation of interstitial elements like carbon (C) and nitrogen (N) to lath boundaries and dislocation pile ups. On the basis of these results and the comparison of lattice strain generated by different interstitials in α-Ti, it was concluded that segregation of carbon and nitrogen and not oxygen to defects is responsible for DSA in this alloy. Dynamic strain aging was observed in the temperature range between 300 degree C and 500 degree C in a near alpha titanium alloy 834 without Silicon (10.38%Al-0.16%Sn-1.86%Zr-0.37%Nb-0.25% Mo-0.27%C-0.30%O-0.006%N, all in at%) tested in the temperature range from room temperature to 500 degree C. Electron microscopic investigation of tensile tested samples in an energy filtered transmission electron microscopy provided direct experimental evidence for segregation of interstitial elements like carbon (C) and nitrogen (N) to lath boundaries and dislocation pile ups. On the basis of these results and the comparison of lattice strain generated by different interstitials in alpha -Ti, it was concluded that segregation of carbon and nitrogen and not oxygen to defects is responsible for DSA in this alloy. |
Author | Prasad, Kartik Bhanu Sankara Rao, K. Sundararaman, M. Amrithapandian, S. Kumar, Vikas Panigrahi, B.K. |
Author_xml | – sequence: 1 givenname: Kartik surname: Prasad fullname: Prasad, Kartik email: kartik@dmrl.drdo.in organization: Defence Metallurgical Research Laboratory, Kanchanbagh, Hyderabad 500058, India – sequence: 2 givenname: S. surname: Amrithapandian fullname: Amrithapandian, S. organization: Materials Science Group, Indira Gandhi for Centre of Atomic Research, Kalpakkam 603102, India – sequence: 3 givenname: B.K. surname: Panigrahi fullname: Panigrahi, B.K. organization: Materials Science Group, Indira Gandhi for Centre of Atomic Research, Kalpakkam 603102, India – sequence: 4 givenname: Vikas surname: Kumar fullname: Kumar, Vikas organization: Defence Metallurgical Research Laboratory, Kanchanbagh, Hyderabad 500058, India – sequence: 5 givenname: K. surname: Bhanu Sankara Rao fullname: Bhanu Sankara Rao, K. organization: Mahatma Gandhi Institute of Technology, Gandipet, Hyderabad 500075, India – sequence: 6 givenname: M. surname: Sundararaman fullname: Sundararaman, M. organization: Department of Metallurgical and Materials Engineering, Indian Institute of Technology Madras, Chennai 600036, India |
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Keywords | Mechanical properties High temperature alloys Energy filtered transmission electron microscopy (EFTEM) Diffusion Dislocations Dynamic strain aging |
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Snippet | Dynamic strain aging was observed in the temperature range between 300°C and 500°C in a near α titanium alloy 834 without Silicon... Dynamic strain aging was observed in the temperature range between 300 degree C and 500 degree C in a near alpha titanium alloy 834 without Silicon... |
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SubjectTerms | Carbon Defects Diffusion Dislocations Dynamic strain aging Electron microscopy Energy filtered transmission electron microscopy (EFTEM) Energy transmission High temperature alloys Interstitials Mechanical properties Segregations Titanium base alloys |
Title | Experimental evidence for segregation of interstitial impurities to defects in a near α titanium alloy during dynamic strain aging using energy filtered transmission electron microscopy |
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