904L Wires/Wire Rod/Welding Wire/Welded Wires (UNS N08904, ER385, 1.4539, Alloy 904 L)

Product Details
Customization: Available
Product Type: Wire
Material: FeTi
Manufacturer/Factory
Gold Member Since 2014

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Basic Info.

Model NO.
904L Wires
Carbon Content
Low Carbon
PCD
98mm
ET
35mm
Hole
5
as Per The Drawing
as Per The Clients
Transport Package
Plywooden Case
Specification
CE
Trademark
jj11
Origin
China
HS Code
722840000
Production Capacity
5000 Tons/Year

Product Description

We are professional 904L, 904 L, UNS N08904, ER385, ER 385, 1.4539, Alloy 904 L Wires/wire rod/welding wire/welded wire factory from china
Please send the quantity and size of 904L, 904 L, UNS N08904, ER385, ER 385, 1.4539, Alloy 904 L Wires/wire rod/welding wire, We are glad to quote the best price for your side


Grade 904L stainless steel is a non-stabilized austenitic stainless steel with low carbon content. This high alloy stainless steel is added with copper to improve its resistance to strong reducing acids, such as sulphuric acid. The steel is also resistant to stress corrosion cracking and crevice corrosion. Grade 904L is non-magnetic, and offers excellent formability, toughness and weldability.
Grade 904L contains high amounts of expensive ingredients, such as molybdenum and nickel. Today, most of the applications that employ grade 904L are replaced by low-cost duplex stainless steel 2205.
Composition
The table below provides the compositional ranges of grade 904L stainless steels:
 
Table 1. Composition ranges of grade 904L stainless steels
Chemical Formula
Fe, <0.02% C, 19-23% Cr, 23-28% Ni, 4-5% Mo, <2.0% Mn, <1.0% Si, <0.045% P, <0.035% S, 1.0-2.0% Cu
 
 Mechanical Properties
Table 2. Mechanical properties of grade 904L stainless steels
 

Grade
Tensile Strength (MPa) min Yield Strength 0.2% Proof (MPa) min Elongation (% in 50mm) min Hardness
Rockwell B (HR B) Brinell (HB)
904L 490 220 36 70-90 typical 150

 
Physical Properties
Table 3. Typical physical properties of grade 904L stainless steels

Grade
Density Elastic Modulus Mean Co-eff of Thermal Expansion (µm/m/°C) Thermal Conductivity Specific Heat 0-100°C Elec Resistivity
(kg/m3) (GPa) (W/m.K) (J/kg.K) (nΩ.m)
    0-100°C 0-315°C 0-538°C At 20°C At 500°C    
904L 7900 190 15 - - 11.5 - 500 952

 
 
Corrosion Resistance
Grade 904L stainless steels have excellent resistance to warm seawater and chloride attack. The high resistance of grade 904L against stress corrosion cracking is due to the presence of high amounts of nickel in its composition. Moreover, the addition of copper to these grades develops resistance to sulphuric acid and other reducing agents in both aggressive and mild conditions.
The corrosion resistance of grade 904L is intermediate between super austenitic grades, with 6% molybdenum content, and standard 316L austenitic grades. Grade 904L is less resistant to nitric acid than grades 304L and 310L, which are free of molybdenum. This steel grade needs to be solution treated following cold working, to achieve maximum stress corrosion cracking resistance under critical environments.
Heat Resistance
Grade 904L stainless steels offer good oxidation resistance. However, the structural stability of this grade collapses at high temperatures, particularly above 400°C.
Heat Treatment
Grade 904L stainless steels can be solution heat-treated at 1090 to 1175°C, following by rapid cooling. Thermal treatment is suitable for hardening these grades.
Welding
Welding of grade 904L stainless steels can be performed using all conventional methods. This grade does not require pre-heat and post-weld heat treatments. Grade 904L can be subjected to hot cracking in constrained weldment. Grade 904L electrodes and rods are used for welding grade 904L steels according to AS 1554.6.
Fabrication
Grade 904L stainless steels are high purity steels with low sulphur content. They can be machined using any standard methods. These grades can be readily bent to a small radius under cold conditions. Although subsequent annealing is not required in most cases, it should be carried out when the fabrication is performed under severe stress corrosion cracking conditions.

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