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Canadian Metallurgical Quarterly
The Canadian Journal of Metallurgy and Materials Science
Volume 8, 1969 - Issue 1
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Fracture in quench-aged low-carbon steels

Pages 51-58 | Published online: 18 Jul 2013

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Read on this site (3)

J. Zhou & W. O. Soboyejo. (2004) A Statistical Approach to the Prediction of Brittle Fracture in Heat-Affected Zones of A707 Steel Welds. Materials and Manufacturing Processes 19:5, pages 921-947.
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E. A. Almond & R. S. Irani. (1981) Mechanical properties and microstructure of 0·06C–2·0Mn–0·14V steel. Metals Technology 8:1, pages 339-351.
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T. C. Lindley & C. E. Richards. (1970) The Effect of Quench-Ageing on the Cleavage Fracture of a Low-Carbon Iron. Metal Science Journal 4:1, pages 81-84.
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Articles from other publishers (5)

P.A. Ferreirós, U.A. Sterin, P.R. Alonso, A.J. Knowles & G.H. Rubiolo. (2022) Influence of precipitate and grain sizes on the brittle-to-ductile transition in Fe–Al–V bcc-L21 ferritic superalloys. Materials Science and Engineering: A 856, pages 144031.
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M. A. Przystupa, M. G. Stout & T. H. Courtney. (1980) The interaction between deformation, fracture initiation and fracture propagation in two phase Co-CoAl alloys. Metallurgical Transactions A 11:4, pages 643-652.
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J. D. Embury, J. D. Evensen & A. Filipovic. 1977. Fundamental Aspects of Structural Alloy Design. Fundamental Aspects of Structural Alloy Design 67 107 .
Eric A. Almond. (1970) Delamination in banded steels. Metallurgical Transactions 1:7, pages 2038-2041.
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P. A. Ferreirós, U. A. Sterin, P. R. Alonso, A. J. Knowles & G. H. Rubiolo. (2022) Influence of Precipitate and Grain Sizes on the Brittle-to-Ductile Transition in Fe-Al-V Bcc-L21 Ferritic Superalloys. SSRN Electronic Journal.
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