Effects of Microstructural Anisotropy on the Mechanical Properties of Aluminum Alloy AA 7010 — T7651

Author:

Cranston A. L.,Hazell P. J.,Appleby-Thomas G. J.,Zakaria Q. Md,Escobedo J. P.

Publisher

Springer International Publishing

Reference19 articles.

1. Seco tools. (2014) ‘Material background: The essential material characteristics of Aluminium 7010’, (online) Available: https://www.secotools.com/en/Global/Segment-Solutions/Aerospace-Solutions/ASMaterial-main/Heat-resistant-super-alloys2/Inconel-71871/ [Accessed 01 May 2014]

2. ASTM. (2009). ‘Standard Test Methods of Compression Testing of Metallic Materials at Room Temperature.’ ASTM E9–09

3. Instron, ‘Tension testing of metallic materials (ASTM E8)’, (online) Available http://www.instron.com.au/wa/solutions/astm_e8_tension_testing_metallic_materials.a [Accessed 01 june 2014]

4. J.P. Escobedo, E.K. Cerreta, and D. Dennis-Koller, (2013), ‘Effect of Crystalline Structure on Intergranular Failure during Shock Loading’,JOM Vol 66, 156, 2014

5. A. Gfinicki, A. Vautrin, P. Soukatchoff, J. Franfois-Brazier, ‘Plate Impact Testing Method for GRC Materials’, ELSEVIER Cement & Concrete Composites (1994), 241

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