Composition and Characteristics
The unique properties of 904L stainless steel are attributed to its carefully balanced chemical composition. The typical chemical composition includes:
Chromium (Cr): 19-23%
Nickel (Ni): 23-28%
Molybdenum (Mo): 4-5%
Copper (Cu): 1-2%
Carbon (C): 0.02% max
Manganese (Mn): 2% max
Silicon (Si): 1% max
Phosphorus (P): 0.045% max
Sulfur (S): 0.035% max
This composition ensures that 904L stainless steel has outstanding resistance to a wide range of corrosive environments, including reducing acids and chloride-rich settings. The addition of copper enhances its resistance to sulfuric acid, while the high chromium and nickel content provide robust protection against oxidation and corrosion.
Key Properties
904L stainless steel coil is renowned for several key properties that make it an exceptional material for demanding applications:
Superior Corrosion Resistance: 904L stainless steel is highly resistant to a wide variety of corrosive environments, including sulfuric and phosphoric acids, as well as chlorides, making it ideal for use in aggressive environments.
High Strength and Durability: The alloy maintains excellent mechanical properties, providing high tensile and yield strength, even in harsh conditions. This ensures that components made from 904L stainless steel can withstand heavy loads and resist wear and tear.
Good Weldability and Formability: Despite its high alloy content, 904L stainless steel can be easily welded and formed into various shapes, making it versatile for different manufacturing processes.
Excellent Resistance to Pitting and Crevice Corrosion: The high molybdenum content in 904L enhances its resistance to pitting and crevice corrosion, particularly in environments containing chlorides, making it suitable for marine and coastal applications.
Non-Magnetic in All Conditions: 904L stainless steel is non-magnetic, even after cold working, which can be beneficial in specific applications where magnetism is undesirable.
Applications of 904L Stainless Steel Coil
Due to its exceptional corrosion resistance, strength, and durability, 904L stainless steel coil is widely used across various industries, particularly in environments where lesser alloys might fail. Common applications include:
Chemical Processing: 904L stainless steel is extensively used in chemical processing equipment, including heat exchangers, reactors, and storage tanks, where resistance to strong acids and chlorides is critical.
Oil and Gas Industry: The material is used in the oil and gas industry for components exposed to highly corrosive environments, such as piping systems, valves, and offshore equipment.
Pharmaceutical Industry: 904L stainless steel is employed in pharmaceutical manufacturing equipment, where its non-reactive surface and resistance to corrosive chemicals ensure compliance with stringent hygiene and safety standards.
Marine and Coastal Applications: The alloy’s resistance to seawater and chloride-induced corrosion makes it ideal for marine applications, including seawater cooling devices, desalination plants, and boat fittings.
High-End Applications: 904L stainless steel is also used in luxury goods, including watches and jewelry, where its superior corrosion resistance, durability, and aesthetic appeal are valued.
Advantages of Choosing 904L Stainless Steel Coil
When selecting a material for corrosive environments, 904L stainless steel coil offers several compelling advantages:
Unmatched Corrosion Resistance: The alloy’s ability to resist a wide range of corrosive environments, including strong acids and chlorides, ensures long-lasting performance even in the most challenging conditions.
Versatility in Application: 904L stainless steel’s combination of strength, durability, and corrosion resistance makes it suitable for a wide range of industries, from chemical processing to luxury goods.
Long-Term Durability: The high mechanical strength and resistance to pitting and crevice corrosion mean that components made from 904L stainless steel have a long service life, reducing maintenance costs and downtime.
Ease of Fabrication: Despite its high alloy content, 904L stainless steel can be easily welded and formed, allowing for versatile manufacturing options without compromising performance.
Conclusion
904L stainless steel coil is a premium material that offers superior corrosion resistance, strength, and durability in the most demanding environments. Whether you are working in the chemical processing, oil and gas, or marine industries, or require a material that combines performance with aesthetic appeal for high-end applications, 904L stainless steel coil delivers the quality and reliability you need. Explore our range of 904L stainless steel coils today and discover the perfect solution for your toughest applications.
Common surfaces
Stainless Steel Standards Comparison Table
STS | USA | UNS | CHINA | EURONORM | RUSSIA | SWEDISH | JAPANESE | |
---|---|---|---|---|---|---|---|---|
GRADE | AISI/ASTM | NO | GB | NO | NAME | GOST | SS | JIS |
201 | 201 | S20100 | 12Cr17Mn6Ni5N | 1.4372 | - | - | - | SUS 201 |
301 | 301 | S30100 | 12Cr17Ni7 | 1.4310 | X 12 CrNi 17 7 | - | 2331 | SUS 301 |
303 | 303 | S30300 | 1Cr18Ni9MoZr | 1.4305 | X 10 CrNiS 18 9 | - | 2346 | SUS 303 |
304 | 304 | S30400 | 06Cr18Ni9 | 1.4301 | X 6 CrNi 18 10 | 08KH18N10 06KH18N11 |
2332 | SUS 304 |
304L | 304L | S30403 | 022Cr19Ni10 | 1.4307 | X 3 CrNi 18 10 | 03KH18N11 | 2352 | SUS 304L |
316 | 316 | S31600 | 0Cr17Ni12Mo2 | 1.4401 | X 6 CrNiMo 17 12 2 | - | 2347 | SUS 316 |
316L | 316L | S31603 | 022Cr17Ni12Mo2 | 1.4404 | X 3 CrNiMo 17 12 2 | - | 2348 | SUS 316L |
316Ti | 316Ti | S31635 | 0Cr18Ni12Mo2Ti | 1.4571 | X 6 CrNiMoTi 17 12 2 | 08KH17N13M2T 10KH17N13M2T |
2350 | - |
321 | 321 | S32100 | 0Cr18Ni11Ti | 1.4541/1.4878 | X 6 CrNiTi 18 10 | 12KH18N10T | 2337 | SUS 321 |
347 | 347 | S34709 | 0Cr18Ni11Nb | 1.4550 | X 6 CrNiNb 18 10 | - | 2338 | SUS 347 |
309S | 309S | S30908 | 0Cr23N13 | 1.4833 | X 6 CrNi 22 13 | 20KH23N18 | - | SUS 309S |
310S | 310S | S31008 | 06Cr25Ni20 | 1.4842 | X 6 CrNi 25 20 | 20KH25N20S2 | 2361 | SUS 310S |
416 | 416 | S41600 | Y1Cr13 | 1.4005 | X12CrS13 | - | 2380 | SUS 416 |
2205 | 2205 | S32205/S31803 | 00Cr22Ni5Mo3N | 1.4462 | X2CrNiMoN22-5-3 | 02Ch22N5AM2 | 2377 | SUS 329J3L |
2507 | 2507 | S32750 | 00Cr25Ni7Mo4N | 1.4410 | X 2 CrNiMoN 25-7-4 | - | - | - |
904L | 904L | N08904 | - | 1.4539 | - | - | - | - |
254SMO | 254SMO | S31254 | - | 1.4547 | X1CrNiMoCuN20-18-7 | - | 2378 | - |
253MA | 253MA | S30815 | - | 1.4835 | X9CrNiSiNCe21-11-2 | - | 2368 | - |
17-4PH/630 | 17-4PH/630 | S17400 | 0Cr17Ni4Cu4Nb | 1.4542 | X5CrNiCuNb16-4 | 05Ch16N4D2B | - | SUS630 |