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IPC-TR-467 - SUPPORTING DATA AND NUMERICAL EXAMPLES FOR ANSI/J-STD-001B: APPENDIX D (CONTROL OF FLUXES) Organization: IPC
Date: 1996-10-01
Description: During the kickoff meeting at San Diego for this task group (5/l/95), a vote ...
IPC-TR-467 CD - SUPPORTING DATA AND NUMERICAL EXAMPLES FOR ANSI/J-STD-001B: APPENDIX D (CONTROL OF FLUXES) - TO PURCHASE CALL 1-800-854-7179 USA/CANADA OR 303-397-7956 WORLDWIDE Organization: IPC
Date: 1996-10-01
AWS A5.31 - SPECIFICATION FOR FLUXES FOR BRAZING AND BRAZE WELDING Organization: AWS
Date: 1992-01-01
Description: This specification prescribes requirements for the classification of brazing fluxes used with brazing or braze welding filler metals such as those classified in ANSI/AWS A5.8, Specification for Filler Metals for Brazing and Braze Welding.
ASNT-212 - THE MFL COMPENDIUM: ARTICLES ON MAGNETIC FLUX LEAKAGE - TO PURCHASE CALL 1-800-854-7179 USA/CANADA OR 303-397-7956 WORLDWIDE Organization: ASNT
Date: 2010-01-01
Description: The Compendium is one of the references used in the development of the ASNT NDT Level III examination for magnetic flux leakage and it is also cited as a training reference in the 2011 edition of ANSI/ASNT American National Standard CP-105.
AWS A5.34/A5.34M - SPECIFICATION FOR NICKEL-ALLOY ELECTRODES FOR FLUX CORED ARCWELDING - 2ND EDITION Organization: AWS
Date: 2013-01-01
Description: This specification prescribes requirements for the classification of nickel-alloy electrodes for flux cored arc welding. It includes those compositions in which the nickel content exceeds that of any other element, but excludes nickel-base alloy compositions intended for the joining of cast irons.
AWS A5.20/A5.20M - SPECIFICATION FOR CARBON STEEL ELECTRODES FOR FLUX CORED ARC WELDING Organization: AWS
Date: 2005-01-01
Description: This specification prescribes requirements for the classification of carbon steel electrodes for flux cored arc welding (FCAW) either with or without shielding gas.
AWS A5.22 - SPECIFICATION FOR STAINLESS STEEL ELECTRODES FOR FLUX CORED ARC WELDING AND STAINLESS STEEL FLUX CORED RODS FOR GAS TUNGSTEN ARC WELDING - 3RD EDITION; INCORPORATES ERRATA: 2/2008 Organization: AWS
Date: 1995-01-01
Description: These electrodes (although they may have differing designators) will also be included in the next revision of ANSI/ AWS A5.29, Specification for Low-Alloy Steel Electrodes for Flux Cored Arc Welding.
AWS A5.36/A5.36M - SPECIFICATION FOR CARBON AND LOW-ALLOY STEEL FLUX CORED ELECTRODES FOR FLUX CORED ARC WELDING AND METAL CORED ELECTRODES FOR GAS METAL ARC WELDING - 2ND EDITION Organization: AWS
Date: 2016-01-01
Description: This specification prescribes requirements for the classification of carbon and low-alloy steel flux cored electrodes for flux cored arc welding (FCAW), either with or without shielding gas, and carbon and low-alloy steel metal cored electrodes for gas metal arc welding (GMAW).
AWS A5.29 - SPECIFICATION FOR LOW-ALLOY STEEL ELECTRODES FOR FLUX CORED ARC WELDING Organization: AWS
Date: 1998-01-01
Description: This specification prescribes requirements for the classification of low-alloy steel electrodes for flux cored arc welding (FCAW). Metal cored low-alloy steel electrodes are classified according to ANSI/AWS A5.28-96, Specification for Low-Alloy Steel Filler Metals for Gas Shielded Arc Welding.
AWS A5.23/A5.23M - SPECIFICATION FOR LOW-ALLOY STEEL ELECTRODES AND FLUXES FOR SUBMERGED ARC WELDING - SIXTH EDITION Organization: AWS
Date: 2011-01-01
Description: This specification prescribes requirements for the classification of carbon steel and low-alloy steel electrodes (both solid and composite) and fluxes for submerged arc welding. Multiple pass flux–electrode classifications include requirements for low-alloy weld metal composition.
AWS A5.22/A5.22M - SPECIFICATION FOR STAINLESS STEEL FLUX CORED AND METAL CORED WELDING ELECTRODES AND RODS - 5TH EDITION Organization: AWS
Date: 2012-01-01
Description: This specification prescribes requirements for the classification of flux cored stainless steel electrodes for flux cored arc welding, flux cored stainless steel rods for root pass welding with the gas tungsten arc process, and metal cored stainless steel electrodes for gas metal arc welding, gas tungsten arc welding, plasma arc welding, submerged arc welding, and any other process to which they may be applied.
AWS A5.17/A5.17M - SPECIFICATION FOR CARBON STEEL ELECTRODES AND FLUXES FOR SUBMERGED ARC WELDING Organization: AWS
Date: 1997-01-01
Description: This specification prescribes requirements for the classification of carbon steel electrodes (both solid and composite) and fluxes for submerged arc welding. This document is the first of the A5.17 specifications which is a combined specification providing for classification utilizing a system based upon U.S.
AWS A5.29/A5.29M - SPECIFICATION FOR LOW-ALLOY STEEL ELECTRODES FOR FLUX CORED ARC WELDING - FOURTH EDITION Organization: AWS
Date: 2010-01-01
Description: This specification prescribes requirements for the classification of low-alloy steel electrodes for flux cored arc welding (FCAW) either with or without shielding gas.
AWS A5.21 - SPECIFICATION FOR BARE ELECTRODES AND RODS FOR SURFACING Organization: AWS
Date: 2001-01-01
Description: The specification does not provide for classification of electrode-flux Combinations for submerged arc welding. Safety and health issues and concerns are beyond the scope of this standard and, therefore, are not fully addressed herein.
ASNT-2030 - ASNT QUESTIONS & ANSWERS BOOK: ELECTROMAGNETIC TESTING METHOD (ET) - THIRD EDITION; TO PURCHASE CALL 1-800-854-7179 USA/CANADA OR 303-397-7956 WORLDWIDE Organization: ASNT
Date: 2014-01-01
Description: The main change between the second and third editions is that the magnetic flux leakage (MFL) questions have been removed. Per Recommended Practice No.
IES LM-58 - APPROVED METHOD: SPECTRORADIOMETRIC MEASUREMENT METHODS FOR LIGHT SOURCES Organization: IES
Date: 2013-09-03
Description: This document describes the requirements and recommendations of the instruments and the procedures for spectroradiometric measurements including those of color performance, spectral irradiance, spectral radiance, and spectral total radiant flux, either in relative or in absolute units. The spectral range is from approximately 200 nm to 1700 nm where the characterization of light from lighting sources, visual displays and light emitting diodes, is most commonly done.
AWS A5.21/A5.21M - SPECIFICATION FOR BARE ELECTRODES AND RODS FOR SURFACING - 5TH EDITION Organization: AWS
Date: 2011-01-01
Description: The specification does not provide for classification of electrode-flux combinations for submerged arc welding. Safety and health issues and concerns are beyond the scope of this standard and, therefore, are not fully addressed herein.
IEEE C57.92 - GUIDE FOR LOADING MINERAL-OIL-IMMERSED POWER TRANSFORMERS UP TO AND INCLUDING 100 MVA WITH 55 DEGREES C OR 65 DEGREES C WINDING RISE Organization: IEEE
Date: 1981-12-14
Description: This guide covers general recommendations for loading mineral-oil-immersed power trans-formers, manufactured in accordance with ANSI C57.12.10-1976 [1]1 and ANSI C57.12.30-1977 [2] and other oil-insulated power transformers up to and including 100 MVA maximum nameplate rating.
AWS D15.2 - RECOMMENDED PRACTICES FOR THE WELDING OF RAILS AND RELATED RAIL COMPONENTS FOR USE BY RAIL VEHICLES - INCORPORATES ERRATA: 07/2005 Organization: AWS
Date: 2003-01-01
Description: Welding processes include shielded metal arc welding (SMAW), gas metal arc welding (GMAW), flux cored arc welding (FCAW), flash welding (FW), thermite welding (TW), and oxyfuel gas welding (OFW).
AWS D16.2M/D16.2 - GUIDE FOR COMPONENTS OF ROBOTIC AND AUTOMATIC ARC WELDING INSTALLATIONS Organization: AWS
Date: 2007-01-01
Description: This document is intended for the gas metal arc welding (GMAW) and flux cored arc welding (FCAW) processes. Pertinent parts may address additional welding processes.

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