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heat-affected zone

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Journal Articles
Alloy Digest (1977) 26 (9): Ni-249.
Published: 01 September 1977
... HASTELLOY alloy B-2 has outstanding corrosion resistance in the as-welded condition. It is an improved wrought version of HASTELLOY alloy B with the same excellent corrosion resistance as alloy B, but with improved resistance to knife line and heat-affected zone attack. Alloy B-2 resists...
Journal Articles
Alloy Digest (1971) 20 (9): SS-259.
Published: 01 September 1971
... Armco 18 SR is a ferritic stainless steel that provides excellent resistance to high temperature scaling. It is readily welded by conventional methods and is not subject to troublesome embrittlement or loss of corrosion resistance in the heat-affected zones that affect many other straight chromium...
Journal Articles
Alloy Digest (2005) 54 (4): SS-922.
Published: 01 April 2005
... Mar-X is a precipitation-hardening, stainless steel with excellent corrosion resistance for both atmospheric and chemical attack. The heat response characteristics of this grade provide especially good welding characteristics. Absence of hardening in the weld heat-affected zone (HAZ) offers...
Journal Articles
Alloy Digest (1986) 35 (10): Ni-341.
Published: 01 October 1986
... INCO Alloy G-3 is a nickel-chromium-iron alloy with additions of molybdenum and copper. Some of the minor elements are controlled to provide increased resistance to weld heat-affected zone corrosion. The alloy has exceptional stress-corrosion cracking resistance in chloride-containing environments...
Journal Articles
Alloy Digest (2012) 61 (3): Ni-696.
Published: 01 March 2012
... NAS NW22 is a Ni-Cr-Mo alloy with excellent corrosion resistance in both oxidizing and reducing atmospheres. In this alloy, carbide precipitation in the heat affected zone (HAZ) is suppressed, and corrosion resistance is improved by reducing the contents of C and Si. Based on these features, NAS...
Journal Articles
Alloy Digest (2021) 70 (8): Ni-774.
Published: 01 August 2021
... Special Metals Inconel G-3 is a nickel-chromium-iron alloy with additions of molybdenum and copper. Some of the minor elements are controlled to yield increased resistance to heat affected-zone (HAZ) corrosion and improved weldability. Special Metals Inconel G-3 has excellent corrosion resistance...
Journal Articles
Alloy Digest (1996) 45 (11): SS-659.
Published: 01 November 1996
... Remanit 4511 was developed as a modification of Type 430 to improve its aqueous corrosion resistance. Due to its composition, that is, an addition of niobium (columbium), the alloy maintains better corrosion resistance in welds and heat-affected zone areas than does Type 430. This datasheet...
Journal Articles
Alloy Digest (1982) 31 (6): Ni-277.
Published: 01 June 1982
... HASTELLOY Alloy G-3 is a nickel-base alloy with outstanding corrosion resistance in the as-welded condition. It is an improved wrought version of HASTELLOY Alloy G. Alloy G-3 has the same excellent general corrosion resistance as Alloy G, along with improved resistance to heat-affected zone (HAZ...
Journal Articles
Alloy Digest (2010) 59 (11): Ni-681.
Published: 01 November 2010
... NAS NW276 is Ni-Cr-Mo alloy with excellent corrosion resistance in both oxidizing and reducing atmospheres. In this alloy, carbide precipitation in the heat affected zone (HAZ) is suppressed and corrosion resistance is improved by reducing the contents of C and Si. Based on these features, NAS...
Journal Articles
Alloy Digest (2021) 70 (3): Ni-768.
Published: 01 March 2021
... during welding to maintain resistance to intergranular attack in heat-affected zones of welded joints. This datasheet provides information on composition, physical properties, hardness, elasticity, and tensile properties. It also includes information on corrosion resistance as well as forming, heat...
Journal Articles
Alloy Digest (1987) 36 (5): Ni-348.
Published: 01 May 1987
... JESSOP JS Alloy G-3 is a nickel-base alloy having excellent resistance to a variety of corrosive conditions including stress corrosion. Its low carbon content and stabilization by columbium permit welding without deterioration of corrosion resistance in the heat-affected zone. The alloy is well...
Journal Articles
Alloy Digest (1967) 16 (12): Ti-53.
Published: 01 December 1967
... operations are accomplished through use of inert-gas shielding of the tungsten or sigma arc regions. This requires a combination of inert-gas trailing shields and back-up shielding. The weld puddle and adjacent heat-affected zones on the face of the weld are protected by the nozzle gas (primary shielding...
Journal Articles
Alloy Digest (1961) 10 (12): SS-125.
Published: 01 December 1961
... - TYPICAL CHARPY IMPACT DATA - 1 Bar Test Temperature Charpy Impact, ft. lbs. oF Annealed Sensitized* R.T. Over 240 Over 240 -100 Over 230 175-186 -320 112-118 20-21 *Sensitized at 1250oF for 2 hours to simulate heat affected zones of weldments. 6.3 9.3 10.8 96 140 200 0.29 (est.) 0.12 (est.) 28.8 (est.1...
Journal Articles
Alloy Digest (2013) 62 (3): SA-673.
Published: 01 March 2013
... on the mill test certificate. Cutting. Shear cutting or sawing may be applied. Also, gas cutting or plasma cutting can be used. After a light grinding in order to obtain a bright metal finish, the heat affected zone hardness is guaranteed below 360 HV 10. Less than 0.2 mm (0.008 in.) metal removal is needed...
Journal Articles
Alloy Digest (1974) 23 (2): SS-292.
Published: 01 February 1974
... and in base metal heat-affected zones. Martensite is transformed to ferrite and carbides by annealing. Factors Affecting Impact Values: The range of lzod impact values for Type 434 is 4-85 foot pounds depending on the final size of the processed material and the heat treatment. Higher impact values can...
Journal Articles
Alloy Digest (1970) 19 (8): SA-255.
Published: 01 August 1970
...-arc welded, or submerged-arc welded. For gas metal-arc wddiag and submerged-arc welding the purchaser must contact the suppIier of welding material for recommende.d wire and wire flux combinations. To maintain optimum toughness in the heat affected zone, the preheating and heat input limitations shown...
Journal Articles
Alloy Digest (2007) 56 (11): SS-1001.
Published: 01 November 2007
... structure is to be subjected to thermal cycling, filler wire of the base metal composition should be used to avoid differences in thermal expansion which can cause buckling. Welding these alloys will cause a decrease in ductility of the weld and heat-affected zones due to the formation of martensite during...
Journal Articles
Alloy Digest (1980) 29 (11): SS-377.
Published: 01 November 1980
... heat-affected zones even more effectively than with an 0.020% carbon level without stabihzation. Both grades will, in fact, pass a demand- ing Huey test in the furnace-sensitized condition. Abusive high- heat-Input welding can, in theory, form enough sigma to impair heat-affected-zone corrosion...
Journal Articles
Alloy Digest (1968) 17 (11): CS-28.
Published: 01 November 1968
... with a carbon-manganese-nickel wire and fluxes especi- ally developed to provide notch-tough wvelds. Excessive heat input during welding should be avoided. Automatic processes can be used at normal energy inputs without downgrading joint efficiency. Part of the heat affected zone is softened but the magnitude...
Journal Articles
Alloy Digest (1967) 16 (2): Ti-50.
Published: 01 February 1967
... operations ate ac- complished through use of inert-gas shielding of the tungsten or sigma arc regions. This requites a combi- nation of inert-gas ttailing shields and back-up shield- ing. The weld puddle and adjacent heat-affected zones on the face of the weld ate protected by the nozzle gas (primary...