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Properties of 904L material

2023-10-13View Original

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904L is a highly alloyed austenitic stainless steel with very low carbon content. This steel is designed for environments with severe corrosion conditions. Originally, this alloy was developed to resist corrosion in dilute sulfuric acid. This feature has been proven to be very successful through years of practical use. Now, 904L has been standardized in many ** and approved for use in manufacturing pressure vessels. Like other commonly used CrNi austenitic steels, the 904L alloy exhibits good resistance to pitting and crevice corrosion, high resistance to stress corrosion cracking, good resistance to intergranular corrosion, as well as good machinability and weldability. During hot forging, the maximum heating temperature can reach 1180 degrees Celsius, while the minimum temperature at which forging stops must be no less than 900 degrees Celsius. The hot forming of this steel can be carried out at 1000–1150 degrees Celsius. The heat treatment process for this steel involves heating to 1100–1150 degrees Celsius, followed by rapid cooling. Although this steel can be welded using conventional welding processes, the most suitable welding methods are shielded metal arc welding and tungsten inert gas welding. When using manual arc welding to weld sheets no thicker than 6 millimeters, the diameter of the electrode shall not exceed 2.5 millimeters ; When the plate thickness is greater than 6 millimeters, the electrode diameter is less than 3.2 millimeters. When heat treatment is required after welding, it can be carried out by heating to 1075–1125 degrees Celsius followed by rapid cooling. For TIG welding, the filler metal can be the same material as the electrode used; after welding, the weld seam must be pickled and passivated. Microstructural structure of 904L: 904L has a fully austenitic structure. Compared to other austenitic stainless steels with high molybdenum content, 904L is less sensitive to the formation of ferrite and alpha phases. Corrosion resistance of 904L: Due to its very low carbon content (up to 0.020%), no carbides are formed under normal heat treatment and welding conditions. This eliminates the risk of intergranular corrosion that occurs after conventional heat treatment and welding. Due to its high chromium, nickel, and molybdenum content, as well as the addition of copper, 904L can be passivated even in reducing environments such as sulfuric acid and formic acid. Its high nickel content results in a low corrosion rate even when it is in an active state. In pure sulfuric acid within a concentration range of 0–98%, the operating temperature for 904L can reach up to 40 degrees Celsius. In pure phosphoric acid within the concentration range of 0–85%, its corrosion resistance is very good. In industrial phosphoric acid produced by wet-process methods, impurities have a strong impact on corrosion resistance. Among all types of phosphates, 904L has better corrosion resistance than ordinary stainless steel. In strongly oxidizing nitric acid, 904L has lower corrosion resistance compared to highly alloyed steel grades without molybdenum. In hydrochloric acid, the use of 904L is limited to lower concentrations of 1-2%. Within this concentration range. The corrosion resistance of 904L is better than that of conventional stainless steels. 904L steel has a high resistance to pitting corrosion. Its resistance to crevice corrosion in chloride solutions is also very good. The high nickel content of 904L reduces the corrosion rate in pits and crevices. Ordinary austenitic stainless steels may be susceptible to stress corrosion in a chloride-rich environment at temperatures above 60 degrees Celsius; increasing the nickel content of the stainless steel can reduce this susceptibility. Due to its high nickel content, 904L exhibits excellent resistance to stress corrosion cracking in chloride solutions, concentrated hydroxide solutions, and environments rich in hydrogen sulfide. Application areas of 904L: The 904L alloy is a versatile material that can be used in many industrial fields: 1. Petroleum and petrochemical equipment, such as reactors in such facilities. 2. Equipment for the storage and transportation of sulfuric acid, such as heat exchangers, etc. 3. Flue gas desulfurization units in power plants are mainly used in components such as the tower body of the absorption tower, flues, damper plates, internal components, and spraying systems. 4. Washers and fans in the organic acid treatment system. Similar grades GB/T UNS AISI/ASTM ID W.Nr 00Cr20Ni25Mo4.5Cu N08904 904L F904L 1.4539 Chemical composition of 904L: C Si Mn P S Cr Ni Mo Cu Fe 0.02 1 2 0.045 0.035 19–23 23–28 4–5 1–2; the remainder constitutes other elements. Mechanical properties: Density, Melting point, Tensile strength Rm in N/mm, Yield strength Rp0.2 in N/mm, Elongation A5%: 8.0 g/cm3, 1300–1390℃
Reply #22023-10-13
904L is a highly alloyed austenitic stainless steel with the following properties: 1. Corrosion resistance: 904L boasts extremely high corrosion resistance, making it particularly suitable for corrosive environments such as those containing sulfuric and phosphoric acids. It also possesses resistance to pitting and crevice corrosion in chloride solutions. 2. Microstructural structure: 904L has a fully austenitic structure and is not sensitive to the precipitation of ferrite and α-phase. 3. Low carbon content: The carbon content of 904L is very low, which means that almost no carbides are formed during heat treatment and welding, thereby reducing the risk of intergranular corrosion. 4. High-alloy composition: 904L contains high levels of chromium, nickel, molybdenum, and copper, which enables it to be passivated even in reducing environments and results in a low corrosion rate. 5. Resistance to stress corrosion cracking: 904L exhibits high resistance to stress corrosion cracking in environments containing chlorides, concentrated hydroxides, and hydrogen sulfide. Applications of 904L include petroleum and petrochemical equipment, sulfuric acid storage and transportation equipment, flue gas desulfurization units in power plants, as well as washers and fans in organic acid treatment systems. It is a versatile material, particularly suitable for industrial applications that require extremely high corrosion resistance. The chemical composition of 904L includes low carbon content, as well as elements such as chromium, nickel, molybdenum, and copper. Its mechanical properties include tensile strength, yield strength, and elongation. The density is approximately 8.0 g/cm3, and the melting point lies between 1300 and 1390 degrees Celsius. .

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