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SAE - SAE J1887 - AUTOMOTIVE COMPACTED GRAPHITE IRON CASTINGS Organization: SAE
Date: 2002-07-01
Description: This SAE Standard covers the mechanical and physical requirements for Compacted Graphite Iron (CGI) castings used in automotive and allied industries.
SAE - SAE AMS2518 - THREAD COMPOUND, ANTI-SEIZE, GRAPHITE-PETROLATUM Organization: SAE
Date: 2012-02-01
Description: Jurisdiction This specification is the responsibility of SAE Committee AMS-M, because the materials under this specification are formulated and tested as greases.
FORD ESE-M2C74-B - OIL, GRAPHITIC - COLLOIDAL ***TO BE USED WITH FORD WSS-M99P1111-A*** Organization: FORD
Date: 2009-10-26
Description: The material defined by this specification is a colloidal graphite suspended in SAE 50 lubricating oil of specific chemical and physical properties.
ASTM B848 - STANDARD SPECIFICATION FOR POWDER FORGED (PF) FERROUS MATERIALS Organization: ASTM
Date: 2015-11-01
Description: This specification covers powder forged parts made from the following materials: Compositions: PF-10XX Carbon Steel (produced from atomized iron powder and graphite powder),  PF-10CXX Copper-Carbon Steel (produced from atomized iron powder, copper and graphite powders), PF-11XX Carbon Steel with manganese sulfide for enhanced machinability (produced from atomized iron powder, manganese sulfide, and graphite powders), PF-11CXX, PF-1130CXX, and PF-1135CXX Copper-Carbon Steels with manganese sulfide for enhanced machinability (produced from atomized iron powder, copper, manganese sulfide, and graphite powders), PF-42XX Nickel-Molybdenum Steel (produced from prealloyed atomized iron-nickel-molybdenum powder and graphite powder), PF-46XX Nickel-Molybdenum Steel (produced from prealloyed atomized iron-nickel-molybdenum powder and graphite powder), PF-44XX Molybdenum Steel (produced from prealloyed atomized iron-molybdenum powder and graphite powder), and PF-49XX Molybdenum Steel (produced from prealloyed atomized iron-molybdenum powder and graphite powder).
SAE - SAE AIR5774 - COMPOSITE FUEL TANKS, FUEL SYSTEM DESIGN CONSIDERATIONS Organization: SAE
Date: 2012-12-01
Description: As an example these may include low electrical and thermal conductivity, greater design sensitivity to penetrations, reduced shielding from electromagnetic radiation, reduced conductivity of lightning, and potential corrosion in graphite aluminum interfaces. Field of Application This AIR applies to the aerospace industry and specifically to aircraft that use common petroleum fuels.
SAE/TP - 2010-01-1784 - VACUA BUOYANCY IS PROVIDED BY A VACUUM BAG COMPRISING A VACUUM MEMBRANE FILM WRAPPED AROUND A THREE-DIMENSIONAL (3D) FRAME TO DISPLACE AIR, ON WHICH 3D GRAPHENE “FLOATS” A FIRST STACK OF TWO-DIMENSIONAL PLANER SHEETS OF SIX- MEMBER CARBON ATOMS WITHIN THE SAME 3D SPACE AS A SECOND STACK OF GRAPHENE ORIENTED AT A 90- DEGREE ANGLE Organization: SAE/TP
Date: 2010-11-02
Description: In a new airship, a Vacua Dirigible, vacuum bags displace air with a vacuum more buoyant than helium or hydrogen dirigibles. New graphite ultrathin nanomembranes made of layered graphene make vacuum bags gastight.

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