Corrigendum to “Thermal spraying of transition metal aluminides: An overview” [Intermetallics 24 (2012) 60–72]

Corrigendum to “Thermal spraying of transition metal aluminides: An overview” [Intermetallics 24 (2012) 60–72]

Intermetallics xxx (xxxx) xxx–xxx Contents lists available at ScienceDirect Intermetallics journal homepage: www.elsevier.com/locate/intermet Corri...

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Intermetallics xxx (xxxx) xxx–xxx

Contents lists available at ScienceDirect

Intermetallics journal homepage: www.elsevier.com/locate/intermet

Corrigendum

Corrigendum to “Thermal spraying of transition metal aluminides: An overview” [Intermetallics 24 (2012) 60–72] N. Cinca∗, J.M. Guilemany Thermal Spray Centre (CPT), Dpt. Ciència dels Materials i Enginyeria Metal.lúrgica, Universitat de Barcelona Martí i Franques 1, E-08028, Barcelona, Spain

The authors regret for the mistakes that appear in the text which are as follows and would like to apologise for any inconvenience caused: i. Figure caption 2b actually corresponds to 2a picture and caption 2a corresponds to 2b picture. Therefore it should be: “Fig. 2. FeAl coatings obtained by HVOF from two different particle size distributions: (a) 40–60 μm and (b) below 40 μm [58]” ii. Fig. 3 should be Fig. 4 and Fig. 4 should go with caption in Fig. 3. Therefore, figure caption of Fig. 3 should be “Fig. 3. Weight gain vs time for the oxidation of the iron aluminide coatings at (a) 900 °C and (b) 1100 °C [77].”, while figure caption of Fig. 4 should be “Fig. 4. Oxidation model of the FeAl Al2O3 coating during (1) 12 h; (2) 24 h; (3) 48 h; (4) 500 h corrosion test [76].” iii. Page 62 (section 4.4.1, second paragraph) “Apart from feedstock composition … Luer et al., [64] …” iv. Page 63 second column second paragraph “… Regarding the

v. vi. vii.

viii.

mechanical properties evaluated for such coatings, these can be ameliorated through a change on the spraying conditions; for example, microhardness can be enhanced from 314 to 409 HV300 and 350 to 520 HV500 by increasing particle velocity in the assprayed atomised Fe3Al [47] and FeAl [65] powders respectively.” Page 64 first column first paragraph “ …. can be reached by alloying with CeO2 [66].” Page 64 second column first paragraph “Cinca [77] observed …” Page 64 second column second paragraph “The sulfidation behaviour is also interesting since it simulates a coal combustion gas environment. By spraying a smaller particle size slightly more sulphur penetration is shown than the as-sprayed coarser particles [64]. Page 65 second column second paragraph “… whereas Luer et al., [64] examined the sulfidation …”

DOI of original article: http://dx.doi.org/10.1016/j.intermet.2012.01.020 ∗ Corresponding author. E-mail address: [email protected] (N. Cinca). http://dx.doi.org/10.1016/j.intermet.2017.09.009

0966-9795/ © 2017 Elsevier Ltd. All rights reserved.

Please cite this article as: Cinca, N., Intermetallics (2017), http://dx.doi.org/10.1016/j.intermet.2017.09.009