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MODUK - DEF STAN 34-6 - FLUX, SOLDERING - ISSUE 1 (06.93) Organization: MODUK
Date: 1993-01-01
Description: This INTERIM Defence Standard specifies requirements for a flux for use in soldering.
PACKT - FLUX ARCHITECTURE - FLUX ARCHITECTURE Organization: PACKT
Date: 2016-05-24
Description: Do you find yourself asking what the Flux?! Flux Architecture will guide you through everything you need to understand the Flux pattern, and design and build powerful web applications that rely on the Flux architecture.
IPC - TM-650 2.6.15C - CORROSION, FLUX Organization: IPC
Date: 2004-06-01
Description: This test method is designed to determine the corrosive properties of flux residues under extreme environmental conditions.
IPC - TM-650 2.6.3.3B - SURFACE INSULATION RESISTANCE, FLUXES Organization: IPC
Date: 2004-06-01
Description: This test method is to characterize fluxes by determining the degradation of electrical insulation resistance of rigid printed wiring board specimens after exposure to the specified flux.
IPC - TM-650 2.3.34C - SOLIDS CONTENT, FLUX Organization: IPC
Date: 2004-06-01
Description: This test method is designed to determine the residual solids content of flux after evaporation of the volatile chemicals from within the flux; typically 15% by weight minimum.
ECIA - EIA-402 - LIQUID ROSIN FLUXES Organization: ECIA
Date: 1972-01-01
Description: This standard defines and characterizes liquid rosin fluxes of three types. PURPOSE The purpose of this standard is to provide an industry standard for liquid rosin fluxes used for soldering.
FORD M13B2-A - FLUX - SOLDERING - HEAVY Organization: FORD
Date: 1991-12-01
Description: SCOPE: The material defined by this Standard is a heavy liquid zinc chloride flux.
IPC - TM-650 2.4.47 - FLUX RESIDUE DRYNESS Organization: IPC
Date: 1995-01-01
Description: This test method specifies a qualitative method for assessment of the tackiness of soft soldering flux residues. The method is applicable to fluxes of types L and M. the method is particularly appropriate for applications where flux residues are left in place on soldered electronic and electrical equipment.
FORD M13B4-A - FLUX - SILVER BRAZING Organization: FORD
Date: 1991-12-01
Description: SCOPE: The material defined by this Standard is a paste form of flux, made up of boron and fluorine salts for silver brazing.
FORD M13B48-A - FLUX, ALUMINUM BRAZING Organization: FORD
Date: 1992-03-01
Description: SCOPE: The material described by this standard is controlled atmosphere brazing flux, made up of potassium fluoroaluminates for joining aluminum to aluminum.
IPC - J-STD-004 - REQUIREMENTS FOR SOLDERING FLUXES - INCORPORATES AMENDMENT 1: NOVEMBER 2011 Organization: IPC
Date: 2008-12-01
Description: Purpose The purpose of this standard is to classify and characterize tin/lead and lead-free soldering flux materials for use in electronic metallurgical interconnections for printed circuit board assembly. Soldering flux materials include the following: liquid flux, paste flux, solder paste, solder cream as well as flux-coated and flux-cored solder wires and preforms.
IPC - TM-650 2.3.35.2A - FLUORIDE CONCENTRATION, FLUXES - QUANITATIVE Organization: IPC
Date: 2004-06-01
Description: This test method is used to determine the concentration of fluorides in soldering flux. The fluoride content is reported as the weight percentage of fluoride to the nonvolatile portion of the flux.
SAE AMS3414 - FLUX, ALUMINUM WELDING Organization: SAE
Date: 2007-10-01
Description: Form This specification covers an aluminum welding flux in the form of powder. Application This flux has been used typically for gas welding aluminum and aluminum alloys at 1150 °F (621 °C) and over, but usage is not limited to such applications.
SAE AMS3410 - FLUX, SILVER BRAZING Organization: SAE
Date: 2016-06-01
Description: Form This specification covers a silver-brazing flux in the form of a paste. Application This flux has been used typically for silver brazing nonferrous metals, excluding aluminum, magnesium, and zinc alloys, and ferrous metals including austenitic steels, at temperatures in the range 1150 to 1600 °F (621 to 871 °C), but usage is not limited to such applications.
SAE AMS3417 - FLUX, BRAZING HIGH TEMPERATURE Organization: SAE
Date: 2007-10-01
Description: Form: This specification covers a high temperature brazing flux in the form of paste or powder. Application: This flux has been used typically with copper alloy and gold-nickel filler metals for torch brazing of nickel alloys, ferrous metals including austenitic steels, and tungsten and chromium carbides, at temperatures in the range 1700 to 2200 °F (927 to 1204 °C), but usage is not limited to such applications.
DOC - PATENT 2277064 - FLUX Organization: DOC
FORD E-MR003-016 - LADLE FLUX FOR NODULAR IRON Organization: FORD
Date: 1983-10-01
Description: SCOPE The material defined under this standard is a dry powdered flux.
FORD M3R18-A - CLEANING FLUX - ALUMINUM DIE CASTING Organization: FORD
Date: 1990-10-01
Description: SCOPE: The material defined by this standard is a granular, slightly exothermic type flux.
WRC BUL 190 - FLUXES AND SLAGS IN WELDING - TO PURCHASE CALL 1-800-854-7179 USA/CANADA OR 303-397-7956 WORLDWIDE Organization: WRC
Date: 1973-12-01
Description: The complex welding technology of today demands an understanding of the formulation, manufacture, performance and use of welding fluxes. The volume of fluxes used in covered-electrode, submerged-arc, flux-cored wire, electroslag, brazing and oxyacetylene techniques, has grown to a total of probably over 400 million pounds per year in the United States.
IPC - TM-650 2.6.3.6 - SURFACE INSULATION RESISTANCE - FLUXES - TELECOMMUNICATIONS Organization: IPC
Date: 2004-01-01
Description: This method, in conjunction with the supporting documentation in IPC-J-STD-004, is intended to be equivalent to Telcordia Technologies GR-78-CORE, Section 13.1, (Corrosiveness of Soldering Fluxes) and is used primarily by telecommunications companies to qualify the candidate flux or solder paste.

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