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Published: 01 December 2004
Fig. 2 Ingot pattern in a low-carbon alloy steel billet. Acceptable in any degree ( Ref 4 ). Etch: 50% HCl. 0.5×. Source: Ref 7 , courtesy of Republic Steel More
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Published: 01 January 2002
Fig. 38 SEM view of fatigue fracture surface of annealed medium-carbon alloy steel tested in rotating bending. No distinct fatigue striations could be resolved. Crack growth direction from right to left More
Series: ASM Handbook
Volume: 1
Publisher: ASM International
Published: 01 January 1990
DOI: 10.31399/asm.hb.v01.a0001013
EISBN: 978-1-62708-161-0
... and medium-carbon constructional grades, with the low-carbon grades predominating. Many alloy steels are also produced as plate. In the final structure, however, alloy steel plate is sometimes heat treated to achieve mechanical properties superior to those typical of the hot-finished product. Steelmaking...
Series: ASM Handbook
Volume: 1
Publisher: ASM International
Published: 01 January 1990
DOI: 10.31399/asm.hb.v01.a0001011
EISBN: 978-1-62708-161-0
... Abstract This article addresses classifications and designations for carbon and low-alloy steel sheet and strip product forms based on composition, quality descriptors, mechanical properties, and other factors. Carbon steel sheet and strip are available as hot-rolled and as cold-rolled products...
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Published: 01 January 1990
Fig. 13 Relaxation of carbon steel (1070, 1095) and SAE 52100 alloy steel circular flat springs (piston rings) at elevated temperatures. Spring hardness was 35 HRC. Springs were exposed to the indicated temperatures for 3 to 4 h. More
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Published: 01 January 2006
Fig. 39 Springback of a carbon steel and a high-strength low-alloy steel More
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Published: 01 January 2003
Fig. 3 Oxidation of carbon steel and high-strength low-alloy (HSLA) steel in air. Source: Ref 2 More
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Published: 01 January 2003
Fig. 3 Wear of mild steel (MS), high-carbon low-alloy steel (HCLA), and austenitic stainless steel (SS-A) balls as a function of pyrrhotite addition under different aeration conditions. Source: Ref 10 More
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Published: 31 December 2017
Fig. 24 Wear of carburized alloy steel castings and of carbon steel castings hardfaced with iron-base hardfacing alloys. See text for details. More
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Published: 01 January 2005
Fig. 21 Example of a carbon steel/alloy steel galvanic couple. Source: Ref 21 More
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Published: 01 August 2013
Fig. 15 Temperature ranges of martensite formation in 14 carbon and low-alloy steels More
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Published: 01 August 2013
Fig. 4 Hardness distribution of carbon steel (1045) and alloy steels (6140) in various section sizes with water quench (a, b) and oil quench (c, d). Source: Ref 4 More
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Published: 01 August 2013
Fig. 7 Comparison of nitrogen gradients in a low-carbon steel and in a low-alloy steel containing chromium, both nitrided by the aerated bath process More
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Published: 30 September 2015
Fig. 23 Carbon-free, powder forged, low-alloy steel processed with a two-step chemical/tint etch. Illumination using polarized light with a sensitive tint filter. Etched with 2 vol% nital plus 4 wt% picral, then Beraha's 3-10 More
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Published: 30 September 2015
Fig. 13 Attempt to co-reduce cast cobalt alloy rods in low-carbon steel matrix. See Fig. 14 More
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Published: 30 September 2015
Fig. 14 Low-carbon steel drilled billet with seven cobalt alloy rods introduced (see Fig. 13 ). (a) Longitudinal section B-B′. (b) Cross section A-A′ More
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Published: 30 September 2015
Fig. 4 Powder metallurgy alloy FL-4405 (6.95 g/cm 3 ) joined to low-carbon steel rod without different filler wire diameter More
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Published: 30 September 2015
Fig. 7 Interaction of titanium alloy with a low carbon steel during HIP More
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Published: 30 September 2015
Fig. 8 Interaction of titanium alloy 6Al-4V with a carbon steel with higher strength (H13, UNS T20813 tool steel) during HIP More
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Published: 01 December 2008
Fig. 7 Schematic of carbon and low-alloy steel argon oxygen decarburization refining More