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Powder metallurgy oil content

Powder metallurgy oil content, Total:44 items.

In the international standard classification, Powder metallurgy oil content involves: Powder metallurgy, Internal combustion engines, Bearings, Products of non-ferrous metals, Non-ferrous metals, Testing of metals.


American Society for Testing and Materials (ASTM), Powder metallurgy oil content

  • ASTM B963-13 Standard Test Methods for Oil Content, Oil-Impregnation Efficiency, and Interconnected Porosity of Sintered Powder Metallurgy (PM) Products Using Archimedes’ Principle
  • ASTM B963-14 Standard Test Methods for Oil Content, Oil-Impregnation Efficiency, and Surface-Connected Porosity of Sintered Powder Metallurgy 40;PM41; Products Using Archimedesrsquo; Principle
  • ASTM B963-22 Standard Test Methods for Oil Content, Oil-Impregnation Efficiency, and Surface-Connected Porosity of Sintered Powder Metallurgy (PM) Products Using Archimedes’ Principle
  • ASTM B963-17 Standard Test Methods for Oil Content, Oil-Impregnation Efficiency, and Surface-Connected Porosity of Sintered Powder Metallurgy (PM) Products Using Archimedes’ Principle
  • ASTM B311-93(2002)e1 Test Method for Density Determination for Powder Metallurgy (P/M) Materials Containing Less Than Two Percent Porosity
  • ASTM B311-22 Standard Test Method for Density of Powder Metallurgy (PM) Materials Containing Less Than Two Percent Porosity
  • ASTM B438-21 Standard Specification for Bronze-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B438-17 Standard Specification for Bronze-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B439-12 Standard Specification for Iron-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B439-07 Standard Specification for Iron-Base Powder Metallurgy (PM) Bearings (Oil Impregnated)
  • ASTM B43-96 Standard Specification for Seamless Red Brass Pipe, Standard Sizes
  • ASTM B43-91 Standard Specification for Seamless Red Brass Pipe, Standard Sizes
  • ASTM B439-08 Standard Specification for Iron-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B438-08 Standard Specification for Bronze-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B439-18 Standard Specification for Iron-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B439-21 Standard Specification for Iron-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B438-13 Standard Specification for Bronze-Base Powder Metallurgy (PM) Bearings (Oil-Impregnated)
  • ASTM B439-06 Standard Specification for Iron-Base Powder Metallurgy (PM) Bearings (Oil Impregnated)
  • ASTM B963-08 Standard Test Methods for Oil Content, Oil-Impregnation Efficiency, and Interconnected Porosity of Sintered Powder Metallurgy (PM) Products Using Archimedesx2019; Principle
  • ASTM B963-11 Standard Test Methods for Oil Content, Oil-Impregnation Efficiency, and Interconnected Porosity of Sintered Powder Metallurgy (PM) Products Using Archimedesx2019; Principle
  • ASTM B311-93(1997) Test Method for Density Determination for Powder Metallurgy (P/M) Materials Containing Less Than Two Percent Porosity
  • ASTM B311-17 Standard Test Method for Density of Powder Metallurgy (PM) Materials Containing Less Than Two Percent Porosity
  • ASTM B311-17(2017) Standard Test Method for Density of Powder Metallurgy (PM) Materials Containing Less Than Two Percent Porosity

HU-MSZT, Powder metallurgy oil content

Professional Standard - Machinery, Powder metallurgy oil content

  • JB/T 7381-2010 Powder metallurgy oil-retaining bearing pv value determination
  • JB/T 7381-1994 Determination of pv value of powder metallurgy oil bearing
  • JB/T 7907-1999 Specifications for powder metallurgy oil pump gears
  • JB/T 7907-2011 Specifications for powder metallurgy oil pump gears
  • JB/T 7908-1999 Specifications for P/M oil pump rotor of the internal combustion engines
  • JB/T 7379-1994 Specifications for JZS series powder metallurgy oil pump rotor
  • JB/T 14395-2022 Technical specifications for powder metallurgy inner and outer rotors for automotive oil pumps
  • JB/T 8413.3-2008 Internal combustion engines.Oil pumps.Part 3: Powder metallurgy rotors.Specigcation
  • JB/T 8413.5-2008 Internal combustion engines.Oil pumps.Part 3: Powder metallurgy gears.Specification
  • JB/T 53330-1999 Quality classification of powder metallurgy iron-based oil-impregnated bearings (for internal use)

Professional Standard - Aviation, Powder metallurgy oil content

  • HB 5441.2-1989 Performance testing of powder metallurgy products and powders Test method for oil content of permeable sintered metal materials

IT-UNI, Powder metallurgy oil content

Association Francaise de Normalisation, Powder metallurgy oil content

  • NF A95-312:1971 Powder metallurgy. Determination of the oil content of porous sintered products.
  • NF A95-184:1984 Powder metallurgy. Lubricated metallic powders. Determination of lubricant content by soxhlet extraction method.
  • NF A95-311:1977 POWDER METALLURGY. PERMEABLE SINTERED METAL MATERIALS. DETERMINATION OF DENSITY AND OPEN POROSITY.

RU-GOST R, Powder metallurgy oil content

  • GOST 18898-1989 Powder products. Methods for determination of density, oil content and porosity

YU-JUS, Powder metallurgy oil content

  • JUS C.N2.005-1988 Powder metallurgy. Sintered metal materials, excluding hardmetals. PrepaPowder metallurgy. Sintered metal materials, excluding hardmetals. Preparation of samples for chemical analysis for determination of carbon content

Korean Agency for Technology and Standards (KATS), Powder metallurgy oil content

American Society of Mechanical Engineers (ASME), Powder metallurgy oil content

  • ASME N-673-2001 Boron Containing Powder Metallurgy Aluminum Alloy for Storage and Transportation of Spent Nuclear Fuel Section III, Division 1; (SUPP 11)

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Powder metallurgy oil content

  • GB/T 3658-2022 Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens




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