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Online since: August 2006
Authors: Dong Bok Lee
High temperature oxidation of TiAl-1.5wt.
Experimental procedure Alloys prepared by mechanical alloying followed by the spark plasma sintering (MA-SPS) process were Ti34Al-1.5Mn in wt.% (Ti47.8Al-1.0Mn in mol%; hereafter referred to as TiAl-Mn), Ti34Al-1.5Mn-5Y2O3 in wt.% (Ti49.4Al-1.1Mn-0.9Y2O3 in mol%; hereafter TiAl-Mn-5Y2O3), and Ti34Al-1.5Mn-10Y2O3 in wt.% (Ti51.0Al-1.1Mn-1.8Y2O3 in mol%; hereafter TiAl-Mn-10Y2O3).
Table 1.
References [1] K.
Forum, 475/479 (2005) p. 767 [9] Y.
Experimental procedure Alloys prepared by mechanical alloying followed by the spark plasma sintering (MA-SPS) process were Ti34Al-1.5Mn in wt.% (Ti47.8Al-1.0Mn in mol%; hereafter referred to as TiAl-Mn), Ti34Al-1.5Mn-5Y2O3 in wt.% (Ti49.4Al-1.1Mn-0.9Y2O3 in mol%; hereafter TiAl-Mn-5Y2O3), and Ti34Al-1.5Mn-10Y2O3 in wt.% (Ti51.0Al-1.1Mn-1.8Y2O3 in mol%; hereafter TiAl-Mn-10Y2O3).
Table 1.
References [1] K.
Forum, 475/479 (2005) p. 767 [9] Y.
Online since: January 2012
Authors: Diego Mantovani, Pascal J. Jacques, Frédéric Prima, Philippe Vermaut, F. Sun, T. Gloriant
From this cluster approach, electronic parameters Bo and Md are calculated for each element, resulting in a spot on the Bo/Md map (Fig. 1).
Figure 1.
References [1] S.
France, Vol. 1 (1988), p. 1601 [15] T.
Vol. 479 (2009), P. 699-703 [17] N.T.C.
Figure 1.
References [1] S.
France, Vol. 1 (1988), p. 1601 [15] T.
Vol. 479 (2009), P. 699-703 [17] N.T.C.
Online since: January 2013
Authors: Yan Zhi Xia, Jian Fei Xia, Fei Fei Zhang, Zong Hua Wang, Dai Min Song, Lin Hua Xia
Fig.1 shows the CV curves of DA at different scan rates (from 10 to 200 mV/s) with the purpose of investigating whether the redox behaviour of DA was due to diffusion or adsorption on Nafion/Qu/G/GCE.
Fig.1.
Fig.4. shows the DPVs of 1.0×10-4 mol/L DA and 1.0×10-4 mol/L DA +1.0×10-3 mol/L AA+1.0×10-3 mol/L UA in pH 6.8 PBS, respectively.
References [1] Y.
Bioelectron. 35 (2012) 479-483
Fig.1.
Fig.4. shows the DPVs of 1.0×10-4 mol/L DA and 1.0×10-4 mol/L DA +1.0×10-3 mol/L AA+1.0×10-3 mol/L UA in pH 6.8 PBS, respectively.
References [1] Y.
Bioelectron. 35 (2012) 479-483
Online since: July 2015
Authors: Nurul Shairah Ahmad Shahrifun, Norul Nazilah Ab’lah, Azmi Aris, Hazilia Hussain, Qistina Omar, Norlaily Ahmad
However, it offers a low degradation rate of pollutants [1].
References [1] A.
Vol 2(1), (2014) 5557-572
Kendall, Selection of Suitable Dispersants for Aqueous and Titania Powders using Acoustophoresis, Journal of the European Ceramic Society 19 (4)(1999) 479–488
Technology 36:1 (2006)
References [1] A.
Vol 2(1), (2014) 5557-572
Kendall, Selection of Suitable Dispersants for Aqueous and Titania Powders using Acoustophoresis, Journal of the European Ceramic Society 19 (4)(1999) 479–488
Technology 36:1 (2006)
Online since: October 2015
Authors: Chontira Sangsubun, Panta Surakamhang
The water buffalo horns were 1, 2, 3, 4 and 5 years old.
The uniaxial tension of the water buffalo horns in 1-5 years old at different positions were shown in Fig 1(b).
References [1] P.Y.
Biomed. 1 (2008) 208-226
Biol. 213 (2010) 479-486
The uniaxial tension of the water buffalo horns in 1-5 years old at different positions were shown in Fig 1(b).
References [1] P.Y.
Biomed. 1 (2008) 208-226
Biol. 213 (2010) 479-486
Online since: July 2012
Authors: Rasoul Azari Khosroshahi, Narguess Nemati, Naghi Parvini, Ashkan Zolriasatein, Masoud Emamy
Fig. 1 shows the micrograph of nano structured Al-4.5wt.
The chemical composition of the the matrix is shown in Table 1.
a b e d c Fig. 1 (a) SEM micrograph of Al-4.5wt.
References [1] G.
Akhlaghi, Synthesis and structural characterization of Al–B4C nano-composite powders by mechanical alloying: Alloy Compd Vol 479 (2009), P. 334-341
The chemical composition of the the matrix is shown in Table 1.
a b e d c Fig. 1 (a) SEM micrograph of Al-4.5wt.
References [1] G.
Akhlaghi, Synthesis and structural characterization of Al–B4C nano-composite powders by mechanical alloying: Alloy Compd Vol 479 (2009), P. 334-341
Online since: March 2014
Authors: Yan Juan Li, Ying Chun Zhang, Jia Xun Leng
Ikesue in 1995 [1].
The precipitation solution was prepared by dissolving the ammonium hydrogen carbonate (AHC) in deionized water to get a 1 mol/L solution.
Fig.1.TG –DTA curves of the precursor produced by the AHC co-precipitation method when Al3+=0.1 mol/L TG-DTA curves of the precursor are shown in Fig.1.
References [1] A.
[8] K.VK.Gupta, A.Muley, P.Yadav, C.P.Joshi, S.V.Moharil.Combustion synthesis of YAG;Ce and related phosphors.Applied Physics B 2011;105:479-484
The precipitation solution was prepared by dissolving the ammonium hydrogen carbonate (AHC) in deionized water to get a 1 mol/L solution.
Fig.1.TG –DTA curves of the precursor produced by the AHC co-precipitation method when Al3+=0.1 mol/L TG-DTA curves of the precursor are shown in Fig.1.
References [1] A.
[8] K.VK.Gupta, A.Muley, P.Yadav, C.P.Joshi, S.V.Moharil.Combustion synthesis of YAG;Ce and related phosphors.Applied Physics B 2011;105:479-484
Online since: January 2010
Authors: Jian Sheng Wu, Ai Dang Shan, Lan Ting Zhang, Yan Jiang, Ou Zhu
Phase constitution of arc-melted ingots agrees relatively well with this
rule (Table 1).
Dimension of the as-grown crystals is 8 mm in diameter and 90 mm in length (Fig. 1(a)).
Orientation relationship of the C40/C11b lamellae from the selected electron diffraction follows strictly with that discovered by Nakano et al [5], which is: (0001)C40 // (110)C11b, < 1 2 1 0]C40 //[1 1 0]C11b, <10 1 0]C40 // [001]C11b.
References [1] T.
A, 1992, 155: 33 [7] Zhang Fang, Zhang Lanting, Yu Jinxing, Wu Jiansheng, Materials Science Forum, 2005, 475-479: 729 [8] K.
Dimension of the as-grown crystals is 8 mm in diameter and 90 mm in length (Fig. 1(a)).
Orientation relationship of the C40/C11b lamellae from the selected electron diffraction follows strictly with that discovered by Nakano et al [5], which is: (0001)C40 // (110)C11b, < 1 2 1 0]C40 //[1 1 0]C11b, <10 1 0]C40 // [001]C11b.
References [1] T.
A, 1992, 155: 33 [7] Zhang Fang, Zhang Lanting, Yu Jinxing, Wu Jiansheng, Materials Science Forum, 2005, 475-479: 729 [8] K.
Online since: July 2011
Authors: Haruyuki Inui, Katsushi Tanaka, Toru Inoue, Wataro Hashimoto
It is known that superior performances of superalloys and their degradation are closely related to the change in its microstructure as indicated in Fig. 1.
Method of calculation Fig. 1.
The total strain actually agrees with the experimental creep strain at the beginning of the secondary creep stage; see Fig. 1.
References [1] J.K.
Forum, Vol. 475-479(2005), p. 619
Method of calculation Fig. 1.
The total strain actually agrees with the experimental creep strain at the beginning of the secondary creep stage; see Fig. 1.
References [1] J.K.
Forum, Vol. 475-479(2005), p. 619