Can stainless steel 310/310S furnace tubes withstand high temperatures and harsh environments?
Stainless Steel 310/310S Furnace Tubes are renowned for their exceptional ability to withstand high temperatures and harsh environments. The composition of these tubes includes a high concentration of chromium, nickel, and a moderate amount of carbon, which imparts superior heat resistance and oxidation resistance properties. That makes them well-suited for extreme heat applications, such as industrial furnaces, kilns, and high-temperature processing equipment.

Stainless steel 310/310S furnace tubes exhibit excellent resistance to oxidation and scaling at elevated temperatures, ensuring their durability and longevity in demanding environments. Moreover, their high chromium content forms a protective oxide layer on the surface, further enhancing their resistance to corrosion and ensuring reliable performance even in corrosive atmospheres. These tubes provide a reliable solution for industries where thermal stability, resistance to thermal cycling, and resistance to chemical corrosion are crucial factors for optimal operational performance.

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What are the main advantages and benefits of using stainless steel 310/310S furnace tubes over other materials?
Stainless Steel 310 Furnace Tubes offer several advantages and benefits over other materials. They exhibit exceptional high-temperature strength and resistance, enabling them to withstand extreme heat conditions without deformation or failure. Their excellent oxidation resistance ensures prolonged service life in elevated temperatures and corrosive atmospheres. Additionally, stainless steel 310 furnace tubes possess superior creep resistance, making them suitable for applications involving long-term exposure to high temperatures.

Stainless Steel 310S Furnace Tubes offer numerous advantages and benefits compared to other materials. Firstly, their exceptional high-temperature strength and resistance make them highly suitable for demanding heat-intensive applications. They exhibit superior resistance to oxidation and scaling, ensuring prolonged service life in corrosive and high-temperature environments. The addition of low carbon content in stainless steel 310S furnace tubes improves their weldability and reduces the risk of sensitization, thereby enhancing their overall performance and durability. Moreover, their excellent creep resistance allows them to withstand prolonged exposure to elevated temperatures without deformation.

Specification Of 310 Stainless Steel Furnace Tubes

Specifications ASTM, ASME, AISI
Outer Diameters 6mm – 300 mm OD
Thickness 1.0mm to 40mm
Length 5.8m, 6, Custom Lengths
Finish Annealed & Pickled, Bright Annealing, Polished
Test Certificate EN 10204 3.1

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Check Stainless Steel 310/310S Other Pipes Tubes Types In Detail

310 Stainless Steel Furnace Tubes Equivalent Grades

STANDARD WERKSTOFF NR. UNS JIS BS GOST AFNOR EN
SS 310 1.4841 S31000 SUS 310 310S24 20Ch25N20S2 X15CrNi25-20
SS 310S 1.4845 S31008 SUS 310S 310S16 20Ch23N18 X8CrNi25-21

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Stainless Steel 310 Furnace Tubes Manufacturing Process

Selection of Materials

The materials used to make furnace tubes are typically resistant to corrosion and high temperatures. Stainless steel, alloy steel, and nickel-based alloys are common materials.

Tube Formation

The creation of the tubes is the first step in the procedure. This can be accomplished using a variety of techniques, including cold drawing, welded tube manufacture, and seamless tube extrusion. Due to their homogeneity and lack of seams that could compromise the structure, seamless tubes are frequently used for high-temperature applications.

Heating and Annealing

The tubes are subsequently put through heat-treating procedures, such as annealing. In order to reduce internal tensions, increase ductility, and improve the material's general qualities, annealing entails heating the tubes to a certain temperature and then gradually cooling them.

Cutting and Sizing

The tubes are sized and cut to the required lengths in accordance with the application's requirements. In order to ensure a perfect fit inside the furnace or heat exchanger, precise cutting and sizing are essential.

Surface Treatment

Depending on the application, the tubes may also go through passivation or pickling as additional surface treatments. By removing oxides, scale, and other contaminants from the surface, these processes increase corrosion resistance.

Quality Control

Quality control procedures are used all through the manufacturing process to guarantee that the tubes meet the necessary requirements. This entails a variety of tests, including visual inspections, non-destructive testing techniques like ultrasonic or radiographic testing, and dimensional checks.

Final Heat Treatment (Optional)

To achieve the appropriate mechanical and metallurgical qualities, the tubes may go through a final heat treatment procedure, such as stress relieving or solution annealing, depending on the material and desired properties.

Finishing

The tubes might undergo further finishing processes such as polishing, buffing, or coating to meet specific application requirements or aesthetic preferences.

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Chemical Composition Of Stainless Steel 310S Furnace Tubes

Grade C Mn Si P S Cr Mo Ni Fe
SS 310 0.015 max 2.0 max 0.15 max 0.020 max 0.015 max 24.00 – 26.00 0.10 max 19.00 – 21.00 54.7 min
SS 310S 0.08 max 2.0 max 1.00 max 0.045 max 0.030 max 24.00 – 26.00 0.75 max 19.00 – 21.00 53.095 min

Mechanical Properties Of 310 Stainless Steel Furnace Tubes

Density Melting Point Tensilee Strength Yield Strength (0.2%Offset) Elongation
7.9 g/cm3 1402 °C (2555 °F) Psi – 75000 , MPa – 515 Psi – 30000 , MPa – 205 40 %

Testing & Inspection of 310 Stainless Steel Furnace Tubes

Testing (Destructive, Non Destructive)

Positive Material Identification – PMI Testing Hydrostatic Test
Chemical Analysis – Spectro Analysis Hydrogen-Induced Cracking (HIC) Test
Mechanical Testing Such as Tensile, Elongation, Reduction of Area Sulfide Stress Corrosion Cracking (SSC), NACE TM 0177
Micro Test Radiography Test
Macro Test Dye Penetrant Test (DP Test)
Hardness Test Ultra Sonic Test (UT)
Pitting Resistance Test Eddy Current Testing
Intergranular Corrosion (IGC) Test Impact Test
Flaring Test Bend Test
Flattening Test

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Supply Cities Of Stainless Steel 310 And 310S Furnace Tubes

The cities listed here are where we have supplied our grade 310S stainless steel Furnace Tubes in bulk or small orders. Cities from metropolitan to rural areas we can provide SS 310 Furnace Tubes to satisfy the needs of our clients.

Surat, Busan, Jeddah, Milan, Brisbane, Ernakulam, Coimbatore, Perth, Visakhapatnam, Rajkot, Istanbul, Karachi, Ahmedabad, Moscow, Rio de Janeiro, Madrid, Dallas, Doha, Port-of-Spain, Pune, Los Angeles, Al Khobar, Jamshedpur, Seoul, Chennai, Manama, Bhopal, Santiago, Calgary, Nagpur, Secunderabad, Atyrau, Ludhiana, Bogota, Thiruvananthapuram, Vadodara, Ahvaz, Al Jubail, Kuwait City, Caracas, Hyderabad, Navi Mumbai, Kolkata, Noida, Howrah, Bengaluru, New Delhi, Mexico City, Hong Kong, Pimpri-Chinchwad, Vung Tau, Tehran, Geoje-si, Thane, Baroda, Abu Dhabi, Kuala Lumpur, Gimhae-si, Aberdeen, Lahore, Ankara, Ho Chi Minh City, Mumbai, La Victoria, New York, Lagos, Granada, Montreal, Bangkok, Toronto, Haryana, Hanoi, London, Houston, Edmonton, Faridabad, Cairo, Riyadh, Indore, Jakarta, Dubai, Colombo, Ranchi, Gurgaon, Petaling Jaya, Chiyoda, Muscat, Nashik, Kanpur, Chandigarh, Sharjah, Dammam, Jaipur, Singapore, Melbourne, Mumbai, Courbevoie, Algiers, Ulsan, Sydney.

Documents Provided at the time of Domestic Sales or Export of 310/310S Stainless Steel Furnace Tubes

Certificate of Origin Raw Material Test Reports
Commercial Invoice Heat Treatment Charts
Packing List Quality Assurance Plan (QAP)
Fumigation Certificates NABL approved Laboratory Test Reports
Letter of Guarantee Material Test Certificates
ROHS Certificate Certificate of Compliance/Conformity

Application Industries We Supply Stainless Steel 310 Furnace Tubes

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