Corrigendum to “Effect of vanadium micro-alloying on the microstructural evolution and creep behavior of Al-Er-Sc-Zr-Si alloys” [Acta Materialia 124 (2017) 501–512](S1359645416309004)(10.1016/j.actamat.2016.11.033)

Dinc Erdeniz, Wahaz Nasim, Jahanzaib Malik, Aaron R. Yost, Sally Park, Anthony De Luca, Nhon Q. Vo, Ibrahim Karaman, Bilal Mansoor, David N. Seidman, David C. Dunand

Research output: Contribution to journalComment/debate

Abstract

The authors regret that the numbers on the abscissa in Fig. 13 were incorrectly labeled. As a result, the threshold stress values reported were inaccurate in the abstract and Section 3.6. The corrected Fig. 13 is displayed below. The threshold stresses for alloy Q2 are 9.2 and 9 MPa for the peak- and over-aged conditions, respectively, whereas the threshold stresses for alloy Q1 are 9 MPa for the peak-aged specimen and 10 MPa for the over-aged one. These corrections do not affect the conclusions reached as a result of this research. The authors would like to apologize for any inconvenience caused. [Figure presented] Fig. 13. Creep properties of alloys Q1 and Q2 under compressive stresses at 400 °C for peak-aged (350 °C/16h + 400 °C/12 h) or over-aged (350 °C/16h + 450 °C/24 h) conditions. Creep data of a similar alloy (Al-0.01Er-0.05Sc-0.06Zr-0.03Si) was also plotted for comparison purposes [9].

Original languageEnglish
Number of pages1
JournalActa Materialia
Volume133
DOIs
Publication statusPublished - 1 Jul 2017

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Vanadium
Microstructural evolution
Alloying
Creep
Compressive stress
corrigendum

ASJC Scopus subject areas

  • Electronic, Optical and Magnetic Materials
  • Ceramics and Composites
  • Polymers and Plastics
  • Metals and Alloys

Cite this

Corrigendum to “Effect of vanadium micro-alloying on the microstructural evolution and creep behavior of Al-Er-Sc-Zr-Si alloys” [Acta Materialia 124 (2017) 501–512](S1359645416309004)(10.1016/j.actamat.2016.11.033). / Erdeniz, Dinc; Nasim, Wahaz; Malik, Jahanzaib; Yost, Aaron R.; Park, Sally; De Luca, Anthony; Vo, Nhon Q.; Karaman, Ibrahim; Mansoor, Bilal; Seidman, David N.; Dunand, David C.

In: Acta Materialia, Vol. 133, 01.07.2017.

Research output: Contribution to journalComment/debate

Erdeniz, Dinc ; Nasim, Wahaz ; Malik, Jahanzaib ; Yost, Aaron R. ; Park, Sally ; De Luca, Anthony ; Vo, Nhon Q. ; Karaman, Ibrahim ; Mansoor, Bilal ; Seidman, David N. ; Dunand, David C. / Corrigendum to “Effect of vanadium micro-alloying on the microstructural evolution and creep behavior of Al-Er-Sc-Zr-Si alloys” [Acta Materialia 124 (2017) 501–512](S1359645416309004)(10.1016/j.actamat.2016.11.033). In: Acta Materialia. 2017 ; Vol. 133.
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abstract = "The authors regret that the numbers on the abscissa in Fig. 13 were incorrectly labeled. As a result, the threshold stress values reported were inaccurate in the abstract and Section 3.6. The corrected Fig. 13 is displayed below. The threshold stresses for alloy Q2 are 9.2 and 9 MPa for the peak- and over-aged conditions, respectively, whereas the threshold stresses for alloy Q1 are 9 MPa for the peak-aged specimen and 10 MPa for the over-aged one. These corrections do not affect the conclusions reached as a result of this research. The authors would like to apologize for any inconvenience caused. [Figure presented] Fig. 13. Creep properties of alloys Q1 and Q2 under compressive stresses at 400 °C for peak-aged (350 °C/16h + 400 °C/12 h) or over-aged (350 °C/16h + 450 °C/24 h) conditions. Creep data of a similar alloy (Al-0.01Er-0.05Sc-0.06Zr-0.03Si) was also plotted for comparison purposes [9].",
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AU - Erdeniz, Dinc

AU - Nasim, Wahaz

AU - Malik, Jahanzaib

AU - Yost, Aaron R.

AU - Park, Sally

AU - De Luca, Anthony

AU - Vo, Nhon Q.

AU - Karaman, Ibrahim

AU - Mansoor, Bilal

AU - Seidman, David N.

AU - Dunand, David C.

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N2 - The authors regret that the numbers on the abscissa in Fig. 13 were incorrectly labeled. As a result, the threshold stress values reported were inaccurate in the abstract and Section 3.6. The corrected Fig. 13 is displayed below. The threshold stresses for alloy Q2 are 9.2 and 9 MPa for the peak- and over-aged conditions, respectively, whereas the threshold stresses for alloy Q1 are 9 MPa for the peak-aged specimen and 10 MPa for the over-aged one. These corrections do not affect the conclusions reached as a result of this research. The authors would like to apologize for any inconvenience caused. [Figure presented] Fig. 13. Creep properties of alloys Q1 and Q2 under compressive stresses at 400 °C for peak-aged (350 °C/16h + 400 °C/12 h) or over-aged (350 °C/16h + 450 °C/24 h) conditions. Creep data of a similar alloy (Al-0.01Er-0.05Sc-0.06Zr-0.03Si) was also plotted for comparison purposes [9].

AB - The authors regret that the numbers on the abscissa in Fig. 13 were incorrectly labeled. As a result, the threshold stress values reported were inaccurate in the abstract and Section 3.6. The corrected Fig. 13 is displayed below. The threshold stresses for alloy Q2 are 9.2 and 9 MPa for the peak- and over-aged conditions, respectively, whereas the threshold stresses for alloy Q1 are 9 MPa for the peak-aged specimen and 10 MPa for the over-aged one. These corrections do not affect the conclusions reached as a result of this research. The authors would like to apologize for any inconvenience caused. [Figure presented] Fig. 13. Creep properties of alloys Q1 and Q2 under compressive stresses at 400 °C for peak-aged (350 °C/16h + 400 °C/12 h) or over-aged (350 °C/16h + 450 °C/24 h) conditions. Creep data of a similar alloy (Al-0.01Er-0.05Sc-0.06Zr-0.03Si) was also plotted for comparison purposes [9].

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