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Relationship between macroscopic and microscopic structures of brittle fractures
Electron fractographic investigation of structure of standard impact specimens and specimens tested with temperature gradient was carried out to study ability of steel to resist propagation of brittle cracks; 10G2S hot-rolled steel with ferritic-pearlitic structure containing (in %) 0.105 C, 1.43 Mn, 1.00 Si, 0.06 Cr, 0.06 Ni, 0.10 Cu, 0.023 S, 0.02 P, and 0.015 Ti was investigated. (see also English translation in Indus Laboratory v 31 n 11 Nov 1965 p 1719-23)
Relationship between macroscopic and microscopic structures of brittle fractures
Electron fractographic investigation of structure of standard impact specimens and specimens tested with temperature gradient was carried out to study ability of steel to resist propagation of brittle cracks; 10G2S hot-rolled steel with ferritic-pearlitic structure containing (in %) 0.105 C, 1.43 Mn, 1.00 Si, 0.06 Cr, 0.06 Ni, 0.10 Cu, 0.023 S, 0.02 P, and 0.015 Ti was investigated. (see also English translation in Indus Laboratory v 31 n 11 Nov 1965 p 1719-23)
Relationship between macroscopic and microscopic structures of brittle fractures
O sootvetstvii mezhdu makroskopicheskim i mikroskopicheskim stroeniem khrupkikh izlomov
Arone, R.G. (author) / Sokolovskii, P.I. (author) / Bernshtein, S.V. (author) / Arnol'D, G.E. (author)
1965
5 pages
Article (Journal)
Russian
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