Some recent innovations in small specimen testing
Autor: | Ming Y. He, G.E. Lucas, G.R. Odette, D. Klingensmith, D. Gragg |
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Rok vydání: | 2002 |
Předmět: |
Nuclear and High Energy Physics
Materials science Composite number Alloy chemistry.chemical_element engineering.material Finite element method Fracture toughness Nuclear Energy and Engineering chemistry Indentation Fracture (geology) engineering General Materials Science Composite material Helium Diffusion bonding |
Zdroj: | Journal of Nuclear Materials. :1643-1648 |
ISSN: | 0022-3115 |
DOI: | 10.1016/s0022-3115(02)01173-x |
Popis: | New innovative small specimen test techniques are described. Finite element simulations show that combinations of cone indentation pile-up geometry and load–penetration depth relations can be used to determine both the yield stress and strain-hardening behavior of a material. Techniques for pre-cracking and testing sub-miniaturized fracture toughness bend bars, with dimensions of 1.65×1.65×9 mm3, or less, are described. The corresponding toughness–temperature curves have a very steep transition slope, primarily due to rapid loss of constraint, which has advantages in some experiments to characterize the effects of specified irradiation variables. As one example of using composite specimens, an approach to evaluating helium effects is proposed, involving diffusion bonding small wires of a 54Fe-based ferritic–martensitic alloy to a surrounding fracture specimen composed of an elemental Fe-based alloy. Finally, we briefly outline some potential approaches to multipurpose specimens and test automation. |
Databáze: | OpenAIRE |
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