EN 10088-1 X2CrNiMoN17-13-5 Introduce

EN 10088-1 X2CrNiMoN17-13-5 is a comprehensive family of stainless steels and is highly respected in the industry. These alloys have proven to be very reliable in a variety of industrial applications and are often the choice of material due to their mechanical and physical properties. They are available in a wide variety of sizes and shapes and are often used in quantity production. They offer many benefits to the user, including a high degree of corrosion resistance and good machinability.

Smelting temperature:1415°C - 1295°C

Application:Stainless steels. List of stainless steels

EN 10088-1 X2CrNiMoN17-13-5 Material Chemical Composition

The chemical composition of the EN 10088-1 X2CrNiMoN17-13-5 steel are as follows:

ElementMinMax
Nitrogen (N)0.12000.2200
Molybdenum (Mo)4.00005.0000
Nickel (Ni)12.500014.5000
Chromium (Cr)16.500018.5000
PhOsphorus (P)-0.0450
Sulfur (S)-0.0150
Manganese (Mn)-2.0000
Silicon (Si)-1.0000
Carbon (C)-0.0300
PhOsphorus (P)-0.0400
Sulfur (S)-0.0150

EN 10088-1 X2CrNiMoN17-13-5 Material Mechanical Properties

One of the main advantages of EN 10088-1 X2CrNiMoN17-13-5 steel is its corrosion resistance. The inclusion of chromium in the alloy causes a layer of chromium oxide to form on the surface of the steel, effectively creating a barrier which prevents oxidation and corrosion. This layer is incredibly thin, but strong enough to provide excellent protection from the elements. As such, EN 10088-1 X2CrNiMoN17-13-5 steels are ideal for applications where it is necessary to maintain a neat and clean surface, such as in food processing or medical equipment.

The mechanical properties of the EN 10088-1 X2CrNiMoN17-13-5 steel are as follows:

YieldRp0.2 ≤ 228 (MPa)
TeileRm≤ 393 (MPa)
ImpactKV/Ku13(J)
ElongationA34%
Reduction in cross section on fractureZ23%
As-Heat-Treated ConditionSolution and Aging, Annealing, Ausaging, Q+T,etc
Brinell hardness (HBW)241

EN 10088-1 X2CrNiMoN17-13-5 Material Thermal Properties

The thermal performance parameters of the EN 10088-1 X2CrNiMoN17-13-5 steel are as follows:

Temperature (°C)32629715
Modulus of elasticity (GPa)-868-
Mean coefficient of thermal expaion ×10-6/(°C)--14
Thermal conductivity (W/m·°C)-44.332.2
Specific thermal capacity (J/kg·°C)-221-
Specific electrical resistivity (Ω mm²/m)0.21--
Deity (kg/dm³)--113
Poisson’s coefficient, ν--413

EN 10088-1 X2CrNiMoN17-13-5 Material Machining Technology

The machining process for EN 10088-1 X2CrNiMoN17-13-5 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.