Design and Evaluation of an Experimental Technique for Mechanical and Fatigue Testing of Sub-Sized Samples

Author:

Lomakin I. V.,Arutyunyan A. R.,Valiev R. R.,Gadzhiev F. A.,Murashkin M. Yu.

Funder

Saint Petersburg State University

Ministry of Education and Science of the Russian Federation

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials

Reference32 articles.

1. Legros M, Elliott BR, Rittner MN, Weertman JR, Hemker KJ (2000) Microsample tensile testing of nanocrystalline metals. Philos Mag A 80:1017–1026

2. Murase Y, Nagakawa J, Yamamoto N (2002) In-beam fatigue response of a low activation ferritic steel at 60°C. In: Sokolov MA, Lamdes JD, Lucas GE (eds) Small specimen test techniques: fourth volume. ASTM International, West Conshohoken

3. Meimei L, Stubbins LF (2002) Subsize specimens for fatigue crack growth rate testing of metallic materials. Small specimen test techniques: fourth volume. In: Sokolov MA, Lamdes JD, Lucas GE (eds) ASTM STP. ASTM International, West Conshohoken

4. Sriharsha HK, Pandey RK, Chatterjee S (1999) Towards standartising a sub-size specimen for fatigue crack propagation behavior of a nuclear pressure vessel steel. Eng Fract Mech 64:607–624

5. Farrell K, Sang Byun T, Wade Jones J, Gibson LT, Sitterson RG, Hashimoto N, Bailey JL, Gardner MJ (2002) Small specimen procedures for determination of deformation maps. Small specimen test techniques: fourth volume. In: Sokolov MA, Lamdes JD, Lucas GE (eds) ASTM STP. ASTM International, West Conshohoken

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