ASTM E1508 Accredited Testing Labs Worldwide
26 accredited laboratories in 6 countries hold ASTM E1508 in their ISO/IEC 17025 scope. Primary accreditors include American Association for Laboratory Accreditation. In the register, ASTM E1508 scope entries most often cover Hardness, Carbide Microstructure, Carbon in Metal, Steel, Cables.
Available in 6 Countries
Top matrices for ASTM E1508
Top analytes for ASTM E1508
- Hardness (2)
- Carbide Microstructure (1)
- Carbon (1)
- Carney Flow Rate (1)
- Case Depth (1)
- Hydrogen (1)
- Lead (1)
- Aluminium (1)
Sample labs
ASTM E1508 1 This laboratory’s scope contains withdrawn or superseded methods. As a clarifier, this indicates that the applicable method itself has been withdrawn or is now considered “historical” and not that the laboratory’s
ASTM E1508 Failure Analysis Using the methods listed above and on Scope of Accreditation 2208.02 in accordance with ASM Handbook Volume 11 Lab Heat Treatment MCL III
ASTM E1508 Chemical Analysis by OES Carbon and Low Alloy Steel: (Al, B, C, Co, Cr, Cu, Mn, Mo, Nb, Ni, P, Pb, S, Si, Sn, Ti, V, W) Stainless Steel: (Al, C, Co, Cr, Cu, Mn, Mo, Nb, Ni, P, S, Si, Sn, Ti, V, W) Aluminum Alloys: (C
Prüfungen in den Bereichen: Metallografie, Härteprüfung, rasterelektronenmikroskopische Analytik und Oberflächencharakterisierung von metallischen Werkstoffen und Komponenten in der Anlagentechnik und im Anlagenbau, in der Fertigungstech
ASTM E1508 High Pressure Liquid Chromatography (HPLC) Diode Detector Aldehyde/ Formaldehyde Analysis GMW15635; NES M0402 [2016-N]; PV3925 [2009-06]; TSM0508G [REV. 5] Gas Chromatography / Mass Spectroscopy (GC/MS) Ge
Test Test Method(s) Metallographic Evaluation (cont’d) Microhardness Knoop (100 to1000) gf ASTM B578, E92, E384, F606/F606M; NASM 1312-6; NAVSEA S9074-GIB-010/248 Vickers (100 to 1000) gf ASTM B578, E92, E384, F606/F60
ASTM E1508-12a(2019) Microscopia elettronica: microsonda EDS Materiali metallici/Metallic materials - solo/only leghe di Cobalto Denominazione della prova / Campi di prova Metodo di prova Tecnica di prova O&I Analisi chimica/Chemical
ASTM E1508 AWS B4.0 AWS B4.0 Chemical Optical Emission Spectroscopy (OES) Carbon and Low-Alloy Steel (Al, C, Cr, Cu, Mn, Mo, Nb, Ni, P, S, Si, V) ASTM E415 Stainless Steel (C, Cr, Cu, Mn, Mo, Ni, P, S, Si) AST
ASTM E1508 Failure Analysis1 Using the methods listed on this Scope of Accreditation in accordance with the ASM Handbook, Volume 11 Radiography Film Computed Radiography ASME BPVC Section V, Article 2,
ASTM E1508; SOP 60.361 Density – Physical Property ASTM B311 1In-house test procedure. 2 Please note that this is not a test method but rather a heat treatment specification covering the pyrometric requirements for sample and s
ASTM E1508
ASTM E1508 Chemical Spark-OES ASTM E415, E1086, E1251, E3047 Chemical analysis using ICP-AES ASTM D1976 Carbon/sulfur analysis ASTM E1019 Failure Analysis ASM Handbook Volumes 11, 12 and Methods in this Scope of Ac
ASTM E1508 Weld Operator and Procedure Qualification Testing (less Radiography) ASME Sec IX; AWS D1.1/D1.1M, D1.2/D1.2M, D1.5/D1.5M, D11.2 Nondestructive Testing Methods: Liquid Penetrant Examination Visible Fluorescent ASTM E
ASTM E1508 Spectroscopy FTIR ASTM E334, E573, E1252 Inductively Coupled Plasma (ICP) ASTM E3061, E2371, E2594, D1976; CAP-017 ICP-MS Analysis ISO 13779-3; CAP-079 Optical Emission (OES) Al, As, B, C, Co, Cr, Cu, Fe, Mn, Mo, Nb (C
ASTM E1508 FTIR ASTM E1252 Combustion Analysis of Carbon ASTM E1019
ASTM E1508 -12a 2019 Standard Guide for Quantitative Analysis by Energy -Dispersive Spectroscopy
ASTM E1508 Combustion Combustion (LECO) C, S CA-06 ASTM E1019 Chromatography Gas Chromatography/Mass Spectrometry (GC/MS) Determination of Phthalates PA-31 CPSC-CH-C1001-09.4 Thermal Analysis Differential Scanning Calorimetr
ASTM E1508 (Standardless Technique)
ASTM E1508 Hardness Rockwell (A, B, C, H, F, 15N, 30N, and 30T) ASTM E18 Brinell (500 kgf and 3000 kgf) ASTM E10 Leeb Hardness ASTM A956 Microhardness (Vickers, Knoop) (100gf, 200gf and 500gf) ASTM B578, E384 Metallographic e
ASTM E1508 Inclusion Content ASTM E45 (Method A) Determining Average Grain Size ASTM E112 (Comparison and Intercept), E1181 Volume Fraction of Delta Ferrite ASTM E562; AMS 2315 Estimating Depth of Decarburization of Steel Specimens A
ASTM E1508 Failure Analysis Using the methods listed on this and other scopes in accordance with the AMS Handbook Volume 11 Chemical Analysis Optical Emission Spectroscopy (OES) Iron-Based Alloy (Al, As, B, Bi, C, Ce, Co,
ASTM E1508 Spectroscopy FTIR ASTM E1252 Optical Emission (OES) Iron Base: (Al, As, B, C, Ca, Ce, Cr, Co, Cu, La, Mn, Mo, N, Nb (Cb), Ni, O, P, Pb, S, Sb, Si, Sn, Ta, Ti, V) ASTM A751, E415, E1009
ASTM E1508 (Qualitative Only) Secondary Ion Mass Spectrometry (SIMS) ISO 17560, 14237, 18114 (SOP 8/F1); SEMI MF2139 (SOP F4), MF1366 (SOP F5), MF1617 (SOP F6), MF1528 (SOP F2)
ASTM E1508; EM-S-05.04.16 Tensile (120,000 lbs Maximum) ASME Sec. IX (QW-150); ASTM A370, B557, E8/E8M, F606/F606M (Sec. 3.6), A536; AWS D1.1/D1.1M (Sec. 6.10.3), D1.2/D1.2M (Sec. 3.7); CSA W47.1 (Sec. 11.7) Visual Examination AS
ASTM E1508 Miscellaneous Failure Analysis Using the methods listed above in accordance with the ASM Handbook Volume 11 Density ASTM B311, B962
ASTM E1508; ASM Handbook Volume 12 (Scanning Electron Microscope Section) Weld Procedure/Welder Qualification Using the methods listed above in accordance with AWS 17.1/D17.1M Failure Analysis Using the methods listed above in