GB/T 41337-2022 Active National standards

GB/T 41337-2022 Additive manufacturing nickel-based alloy with powder bed fusion

GB/T 41337-2022 Additive manufacturing nickel-based alloy with powder bed fusion

Publish Date: 2022-03-09 Implement Date: 2022-10-01 For services related to genuine standard inquiry, procurement, translation, and other related services in China, please Contact Us

Basic Information

Standard Code: GB/T 41337-2022
Standard Type: National standards
Standard Status: Active
is_force_gb: no
CCS Name: Powder metallurgy materials and products
ICS Name: Powder metallurgy
Publish Date: 2022-03-09
Implement Date: 2022-10-01
Pages: 7 pages

Scope

This document specifies the technical requirements, test methods, inspection rules, marking, packaging, transportation, storage, accompanying documents, and order form content for nickel-based alloys manufactured by powder bed fusion additive manufacturing.
This document is applicable to nickel-based alloy products manufactured by the powder bed fusion additive manufacturing process.

Development Information

Word Count: 14 Thousand words Pages: 7 pages

Referenced Standards

GB/T 228.1-2010 Metallic materials—Tensile testing—Part 1:Method of test at room temperature GB/T 228.1-2021 Metallic materials—Tensile testing—Part 1:Method of test at room temperature GB/T 228.2-2015 Metallic materials—Tensile testing—Part 2:Method of test at elevated temperature GB/T 3500-1998 Powder metallurgy—Vocabulary GB/T 3500-2008 Powder metallurgy—Vocabulary GB/T 3850-1983 Impermeable sintered metal materials and hardmetals—determination of density GB/T 3850-2015 Impermeable sintered metal materials and hardmetals—Determination of density GB/T 7232-1999 Terminology of metal heat treatment GB/T 7232-2012 Terminology of metal heat treatment GB/T 7232-2023 Metal heat treatment—Terminology GB/T 35351-2017 Additive manufacturing—Terminology GB/T 35351-2025 Additive manufacturing—Terminology HB/Z 61-1998 Penetration Testing HB 5220.1-1982 General principles for chemical analysis of high-temperature alloys HB 5220.1-2008 Methods for chemical analysis of superalloys-Part 1:Determination of carbon content by coulometric method HB 5220.2-1982 Determination of carbon content in high temperature alloys HB 5220.2-2008 Methods for chemical analysis of superalloys-Part 2:Determination of carbon content by gasometric method HB 5220.3-1982 The determination of sulfur content in high-temperature alloys HB 5220.3-2008 Methods for chemical analysis of superalloys-Part 3:Determination of carbon content by high frequency induction combustion-infrared absorption method HB 5220.4-1982 The determination of phosphorus content in high-temperature alloys HB 5220.4-2008 Methods for chemical analysis of superalloys-Part 4:Determination of sulfur content by reducing distillation photometric method HB 5220.5-1982 The determination of silicon content in high-temperature alloys HB 5220.5-2008 Methods for chemical analysis of superalloys-Part 5:Determination of sulfur content by potassium iodate volumetric method HB 5220.6-1982 The determination of manganese content in high-temperature alloys HB 5220.6-2008 Methods for chemical analysis of superalloys-Part 6:Determination of sulfur content by high frequency induction combustion-infrared absorption method HB 5220.7-1982 The determination of chromium content in high-temperature alloys HB 5220.7-2008 Methods for chemical analysis of superalloys-Part 7:Determination of phosphorus content by ethyl ether extraction molybdenum blue photometric method HB 5220.8-1982 Determination of vanadium content in high temperature alloys HB 5220.8-2008 Methods for chemical analysis of superalloys-Part 8:Determination of phosphorus content by n-butyl alcohol-chloroform extraction photometric method HB 5220.9-1982 The determination of titanium content in high-temperature alloys HB 5220.9-2008 Methods for chemical analysis of superalloys-Part 9:Determination of silicon content by gravimetric method HB 5220.10-1982 Determination of Al content in High Temperature Alloys HB 5220.10-2008 Methods for chemical analysis of superalloys-Part 10:Determination of silicon content by silicon molybdenum blue photometric method HB 5220.11-1982 Determination of copper content in high-temperature alloys HB 5220.11-2008 Methods for chemical analysis of superalloys-Part 11:Determination of manganese content by ammonium nitrate oxidation-ammonium ferrous sulfate volumetric method HB 5220.12-1982 The determination of nickel content in high-temperature alloys HB 5220.12-2008 Methods for chemical analysis of superalloys-Part 12:Determination of manganese content by zion oxide separation--ammonium ferrous volumetric method HB 5220.13-1982 The determination of cobalt content in high-temperature alloys HB 5220.13-2008 Methods for chemical analysis of superalloys-Part 13:Determination of manganese content by potassium periodate photometric method HB 5220.14-1982 Determination of copper content in high temperature alloys HB 5220.15-1982 The determination of iron content in high-temperature alloys HB 5220.15-2008 Methods for chemical analysis of superalloys-Part 15:Determination of chromium content by ammonium persulfate oxidation-ammonium iron (Ⅱ) volumetric method HB 5220.16-1982 The determination of tungsten content in high-temperature alloys HB 5220.16-2008 Methods for chemical analysis of superalloys-Part 16:Determination of vanadium content by ammonium ferrous sulfate volumetric method HB 5220.17-1982 The determination of niobium content in high-temperature alloys HB 5220.17-2008 Methods for chemical analysis of superalloys-Part 17:Determination of vanadium content by N-benzyl-N-phenylhydroxylamine-chloroform extraction photometric method HB 5220.18-1982 The determination of tantalum content in high temperature alloys HB 5220.18-2008 Methods for chemical analysis of superalloys-Part 18:Determination of titanium content by diantipyrylmethane photometric method HB 5220.19-1982 Determination of Zirconium Content in High-temperature Alloys HB 5220.19-2008 Methods for chemical analysis of superalloys-Part 19:Determination of aluminum content by cupferron,cupron separation-EDTA volumetric method HB 5220.20-1982 Determination of cerium content in high temperature alloys HB 5220.20-2008 Methods for chemical analysis of superalloys-Part 20:Determination of aluminium content by chrome azurol S photometric method HB 5220.21-1982 Determination of total amount of rare earth (cerium) in high-temperature alloys HB 5220.21-2008 Methods for chemical analysis of superalloys-Part 21:Determination of molybdenum content by EDTA volumetric method HB 5220.22-1982 Determination of Boron Content in High-temperature Alloys HB 5220.22-2008 Methods for chemical analysis of superalloys-Part 22:Determination of molybdenum content by thiocyanate photometric method HB 5220.23-1982 Determination of nitrogen content in high-temperature alloys HB 5220.23-2008 Methods for chemical analysis of superalloys-Part 23:Determination of nickel content by dimethyglyoxime-EDTA volumetric method HB 5220.24-2008 Methods for chemical analysis of superalloys-Part 24:Determination of nickel content by dimethyglyoxime photometric method HB 5220.25-2008 Methods for chemical analysis of superalloys-Part 25:Determination of cobalt content by potassium ferricyanide potentiometric titration method HB 5220.26-2008 Methods for chemical analysis of superalloys-Part 26:Determination of cobalt content by nitroso-R-salt photometric method HB 5220.27-2008 Methods for chemical analysis of superalloys-Part 27:Determination of copper content by cupral-ethyle ether extraction photometric method HB 5220.29-2008 Methods for chemical analysis of superalloys-Part 29:Determination of iron content by potassium dichromate volumetric method HB 5220.30-2008 Methods for chemical analysis of superalloys-Part 30:Determination of iron content by phenanthroline photometric method HB 5220.31-2008 Methods for chemical analysis of superalloys-Part 31:Determination of tungsten content by cinchonine-ethylnaphthalene quinoline gravimetric method HB 5220.32-2008 Methods for chemical analysis of superalloys-Part 32:Determination of tungsten content by thiocyanate photometric method HB 5220.33-2008 Methods for chemical analysis of superalloys-Part 33:Determination of niobium content by tetraphenyl arsonium chloride hydrochloride gravimetric method HB 5220.34-2008 Methods for chemical analysis of superalloys-Part 34:Determination of niobium content by sulphochlorophenol C photometric method HB 5220.35-2008 Methods for chemical analysis of superalloys-Part 35:Determination of tantalum content by pyrogallic acid photometric method HB 5220.36-2008 Methods for chemical analysis of superalloys-Part 36:Determination of zirconium content by arsenazo Ⅲ photometric method HB 5220.37-2008 Methods for chemical analysis of superalloys-Part 37:Determination of zirconium content by N-benzoyl-N-phenylhydroxylamine-benzene extraction-arsenazo Ⅲ photometric method HB 5220.38-2008 Methods for chemical analysis of superalloys-Part 38:Determination of cerium content by extraction separation-arsenazo Ⅲ photometric method HB 5220.39-2008 Methods for chemical analysis of superalloys-Part 39:Determination of total rare earth content by PMBP direct extraction-arsenazo Ⅲ photometric method HB 5220.40-2008 Methods for chemical analysis of superalloys-Part 40:Determination of boron content by methanol distillation-curcumin photometric method HB 5220.41-2008 Methods for chemical analysis of superalloys-Part 41:Determination of boron content by fluoroborate ion selective electrode method HB 5220.42-2008 Methods for chemical analysis of superalloys-Part 42:Determination of cerium content by DBC-arsenazo photometric method HB 5220.43-2008 Methods for chemical analysis of superalloys-Part 43:Determination of lanthanum content by DBC-arsenazo photometric method HB 5220.44-2008 Methods for chemical analysis of superalloys-Part 44:Determination of arsenic content by distillation separation-molybdenum blue photometric method HB 5220.45-2008 Methods for chemical analysis of superalloys-Part 45:Determination of antimony content by carrier precipitation molybdenum blue phtotmetric method HB 5220.46-2008 Methods for chemical analysis of superalloys-Part 46:Determination of bismuth content by semixylenol orange photometric method HB 5220.47-2008 Methods for chemical analysis of superalloys-Part 47:Determination of lead content by carrier precipitation-xylenol orange photometric method HB 5220.48-2008 Methods for chemical analysis of superalloys-Part 48:Determination of nitrogen content by water vapour distillation-volumetric method(or photometric method) HB 5220.49-2008 Methods for chemical analysis of superalloys-Part 49:Determination of oxygen,nitrogen content by impulse heating-infrared,thermal conductivity method HB 5220.50-2008 Methods for chemical analysis of superalloys-Part 50:Determination of hydrogen content by impulse heating-thermal conductivity method HB 20160 ISO/ASTM 52921

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