EN 10088-1 1.4596 Introduce

EN 10088-1 is a standard that sets out the thermal properties of steels. It classifies steels according to their thermal properties, such as thermal conductivity, thermal diffusivity, and upper temperature limits. At temperatures higher than the upper temperature limit specified in this standard, the physical and chemical properties of steels can be affected, leading to a reduction in their strength and durability.

Smelting temperature:1276°C - 1881°C

Application:Stainless steels. List of stainless steels

EN 10088-1 1.4596 Material Chemical Composition

The chemical composition of the EN 10088-1 1.4596 steel are as follows:

ElementMinMax
Silicon (Si)-1.0000
Sulfur (S)0.10000.2500
PhOsphorus (P)-0.0450
Nickel (Ni)10.000013.0000
Nitrogen (N)-0.1100
Molybdenum (Mo)2.00002.5000
Manganese (Mn)-2.0000
Copper (Cu)1.30001.8000
Chromium (Cr)16.500018.5000
Carbon (C)-0.0300
Titanium (Ti)0.28000.4000
Silicon (Si)-0.1000
Sulfur (S)-0.0050
PhOsphorus (P)-0.0100
Nickel (Ni)9.200010.2000
Nitrogen (N)-0.0200
Molybdenum (Mo)1.85002.1500
Manganese (Mn)-0.1000
Chromium (Cr)11.500012.5000
Carbon (C)-0.0150
Aluminum (Al)0.80001.1000

EN 10088-1 1.4596 Material Mechanical Properties

EN 10088-1 1.4596 is a commonly used stainless steel which provides a variety of useful properties, particularly for construction and engineering applications. The chemical composition of the steel makes it both corrosion resistant and strong, while also providing excellent heat resistance. All these factors make the standard a great choice for a wide range of projects.

The mechanical properties of the EN 10088-1 1.4596 steel are as follows:

YieldRp0.2 ≤ 894 (MPa)
TeileRm≤ 761 (MPa)
ImpactKV/Ku13(J)
ElongationA11%
Reduction in cross section on fractureZ34%
As-Heat-Treated ConditionSolution and Aging, Annealing, Ausaging, Q+T,etc
Brinell hardness (HBW)214

EN 10088-1 1.4596 Material Thermal Properties

The thermal performance parameters of the EN 10088-1 1.4596 steel are as follows:

Temperature (°C)34972585
Modulus of elasticity (GPa)-255-
Mean coefficient of thermal expaion ×10-6/(°C)--43
Thermal conductivity (W/m·°C)-23.311.2
Specific thermal capacity (J/kg·°C)-144-
Specific electrical resistivity (Ω mm²/m)0.21--
Deity (kg/dm³)--211
Poisson’s coefficient, ν--311

EN 10088-1 1.4596 Material Machining Technology

The machining process for EN 10088-1 1.4596 steel follows the same basic steps as other types of steel, but it can be more difficult due to the material's hardness and higher resistance to heat. First, the material must be cut, which may be done either by hand-held tools or by a machine. Hand tools such as hacksaws, files, and chisels can be used to achieve the desired shape or size. If using a machine, the appropriate feed rate and cutting tool must be determined in order to obtain the desired results.