ASTM A515/A515M A515 Grade 65 [450] Introduce

ASTM A515/A515M, the American Society for Testing and Materials (ASTM) standard for Pressure Vessel Plates, is a standard that covers carbon-silicon steel plates primarily used for intermediate- and higher-temperature service in welded boilers and other pressure vessels. The A515/A515M specification covers carbon-silicon steel plates primarily for intermediate- and higher-temperature service in welded boilers and other pressure vessels.

Smelting temperature:1443°C - 1322°C

Application:Medium and high temperature pressure vessel plate, carbon steel

ASTM A515/A515M A515 Grade 65 [450] Material Mechanical Properties

One of the great benefits of ASTM A515/A515M A515 Grade 65 [450] steel is its excellent weldability. The combination of low carbon and manganese creates an even and consistent level of hardness throughout the steel, which allows it to be welded without risk of cracking or hard spots. High manganese levels also provide good arc stability, allowing for smooth and clean welds.

The mechanical properties of the ASTM A515/A515M A515 Grade 65 [450] steel are as follows:

YieldRp0.2 ≤ 487 (MPa)
TeileRm≤ 553 (MPa)
ImpactKV/Ku13(J)
ElongationA41%
Reduction in cross section on fractureZ44%
As-Heat-Treated ConditionSolution and Aging, Annealing, Ausaging, Q+T,etc
Brinell hardness (HBW)144

ASTM A515/A515M A515 Grade 65 [450] Material Thermal Properties

The thermal performance parameters of the ASTM A515/A515M A515 Grade 65 [450] steel are as follows:

Temperature (°C)11891456
Modulus of elasticity (GPa)-592-
Mean coefficient of thermal expaion ×10-6/(°C)--42
Thermal conductivity (W/m·°C)-22.312.2
Specific thermal capacity (J/kg·°C)-124-
Specific electrical resistivity (Ω mm²/m)0.33--
Deity (kg/dm³)--214
Poisson’s coefficient, ν--213

ASTM A515/A515M A515 Grade 65 [450] Material Machining Technology

Due to the high strength of ASTM A515/A515M A515 Grade 65 [450] steel, the machining of this material must be done with precision and accuracy. As such, it requires the use of certain tools and methods in order to achieve the desired size, shape, and finish of the finished product. As with machining any material, the speed and performance of the process should also be taken into consideration.