X5CrNiCuNb16-4 & 1.4542 Martensitic Stainless Steel - Speciality Grade - Special Steel MFRS & Stockist

X5CrNiCuNb16-4 & 1.4542 Martensitic Stainless Steel
2022-08-08 15:39:21   Origin:   Remark:0 Click:

1.4542 is A Precipitation Hardening Martensitic Stainless steel with an addition of Nb/Cu elements. Grade 1.4542 Combines High Strength, hardness (up to HRC40), and corrosion resistance. it is used for components such as fasteners, couplings, screws, bushings, studs, fittings, valve stems, roller, wear rings.

Material Technical Datasheet - Grade X5CrNiCuNb16-4 & 1.4542
Material Category - Precipitation Hardening Martensitic Stainless steel
Material Specifications - BS EN 10083-3 (2005)
Chemical Compositions (Mass weight - %)
C (%):     ≤ 0.07
Si (%):    ≤ 0.70
Mn (%):   ≤ 1.50
P (%)≤:   0.040
S (%)≤:   0.030
Cr (%):    15.0 ~ 17.0
Ni (%):    3.00 ~ 5.00
Mo (%):   ≤ 0.60
Nb (%):   5 × C ~ 0.45
Cu (%):   3.00 ~ 5.00
Mechanical Properties Under Room Temperature
Thickness/≤mm: 100
Condition of thermal treatment: AT (Solution treatment)
Hardness ≤HBS: 360
Yield strength σ0.2≥/MPa: -        
Tensile strength σb/MPa:  ≤1200
Elongation δ ≥(%):  - 
Elongation δ(transversal )≥(%):   -      
Impact absorbing power Akv≥/J : -
Condition of thermal treatment: P930
Hardness ≤HBS: -
Yield strength σ0.2≥/MPa: 720        
Tensile strength σb/MPa:  930~1100
Elongation δ ≥(%):  -16
Impact absorbing power Akv≥/J : 40
Condition of thermal treatment: P1070
Hardness ≤HBS: -
Yield strength σ0.2≥/MPa: 1000        
Tensile strength σb/MPa:  1070~1270
Elongation δ ≥(%):  10
Impact absorbing power Akv≥/J : -
Product Shapes and Dimensions
Round bar / Wire rod (Diameter): 5.5mm to 550mm
Square bar / Flat bar: 3mm to 610mm

Heavy/middle plate via hot rolled: T6 - 200mm X W1000- 2500mm X L1000-12000mm
Forging piece: stepped shafts with flanks / discs /tubes /slugs /donuts /cubes /other different shapes based on OEM.

  

Hot search:X5CrNiCuNb16-4 & 1.4542 Martensitic Stainless Steel

Previous page:Heat Resistant Steel AMS 5508 & S41800
Last page:AMS 5628

Share to: