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Many material or standard specifications include a number of different UNS numbers that may be used within that specification. For example: UNS S30400 (SAE 304, Cr/Ni 18/10, Euronorm 1.4301 stainless steel) could be used to make stainless steel bars ( ASTM A276 ) or stainless steel plates for pressure vessels ( ASTM A240 ) or pipes ( ASTM A312 ).
Typical material properties for 6060 aluminum alloy include: [2] Density: 2.710 g/cm 3, or 169 lb/ft 3. Young's modulus: 70 GPa, or 10 Msi, or 303 EMEC; Ultimate tensile strength: 140 to 230 MPa, or 20 to 33 ksi. Yield strength: 70 to 180 MPa, or 10 to 26 ksi. Thermal Expansion: 23.4 μm/m-K. Solidus: 610 °C or 1130 °F.
The system is a catalogue of specifications in the English language, to allow buyers to purchase standardised materials all over the world. When MESC was initially introduced, materials were allocated a unique 7-digit number. This was increased to ten digits in 1946. [1] The system has a numerical "coding schedule" of 10 digits to code the ...
6061 sheet in the T4 condition can be formed with limited ductility in the cold state. For deep draw and complex shapes, and for the avoidance of spring-back, an aluminium hot stamping process ( Hot Form Quench ) can be used, which forms a blank at a elevated temperature (~ 550 C) in a cooled die, leaving a part in W-temper condition before ...
60 J: 2-20 °C 3-30 °C 4-40 °C 5 ... non-alloy and alloy electrical steel sheet/strip in the semi-processed state ... Where x is the material type (only 1 is ...
The SAE steel grades system is a standard alloy numbering system (SAE J1086 – Numbering Metals and Alloys) for steel grades maintained by SAE International.. In the 1930s and 1940s, the American Iron and Steel Institute (AISI) and SAE were both involved in efforts to standardize such a numbering system for steels.
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Microstructures of four kinds of duplex stainless steel in each direction. Duplex stainless steels are usually divided into three groups based on their pitting corrosion resistance, characterised by the pitting resistance equivalence number, PREN = %Cr + 3.3 %Mo + 16 %N.