Harshita Stainless produces and distributes high-quality Stainless Steel U Tubes in Delhi, India. Our U-shaped tubes are finely crafted from high-grade stainless steel for applications in heat exchangers, condensers, and boilers. The tubes provide maximum thermal efficiency, resistance to corrosion, and lifespan in pressure and high-temperature environments. Harshita Stainless provides customized solutions with precise bend radius, wall thickness, and tube diameter according to client specifications, guaranteeing performance for both industrial and domestic applications.
Our U Tubes are made of grades like 304, 316, and 321 stainless steel. They ensure tensile strength of 500–750 MPa and yield strength of 200–350 MPa. Durable creep and oxidation resistance, with elongation of up to 40%. The tubes are resistant to thermal expansion and deformation and ensure error-free heat transmission. The surface finish is polished for better cleanliness and flow behavior.
Size Range | 10 mm OD to 50.8 mm OD |
Stainless Steel U Tube Outside Diameter | 6.00 mm to 101.60 mm |
Wall Thickness | 0.70 mm to 8.00 mm |
Length | up to 20 m (65.62 ft) Length & Customed Required Length |
Stainless Steel Heat Exchanger Tube Dimenisons | ASTM, AISI, ASME/ ANSI, JIS, DIN, EN, GB, BS, SUS |
Standard | ASTM A 213, A 268, A 269, A 789, Equivalent to ASME, EN, JIS Etc. |
Stainless Steel U tube Grade | C | Mn | Si | P | S | Cr | Mo | Ni | N | Ti | Fe | |
304 | min. | 18.0 | 8.0 | |||||||||
max. | 0.08 | 2.0 | 0.75 | 0.045 | 0.030 | 20.0 | 10.5 | 0.10 | ||||
304L | min. | 18.0 | 8.0 | |||||||||
max. | 0.030 | 2.0 | 0.75 | 0.045 | 0.030 | 20.0 | 12.0 | 0.10 | ||||
304H | min. | 0.04 | 18.0 | 8.0 | ||||||||
max. | 0.010 | 2.0 | 0.75 | 0.045 | 0.030 | 20.0 | 10.5 | |||||
SS 310 | 0.015 max | 2 max | 0.015 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 max | 1.00 max | 0.045 max | 0.030 max | 24.00 26.00 | 0.75 max | 19.00 21.00 | 53.095 min | |||
SS 310H | 0.04 0.10 | 2 max | 1.00 max | 0.045 max | 0.030 max | 24.00 26.00 | 19.00 21.00 | 53.885 min | ||||
316 | min. | 16.0 | 2.03.0 | 10.0 | ||||||||
max. | 0.035 | 2.0 | 0.75 | 0.045 | 0.030 | 18.0 | 14.0 | |||||
316L | min. | 16.0 | 2.03.0 | 10.0 | ||||||||
max. | 0.035 | 2.0 | 0.75 | 0.045 | 0.030 | 18.0 | 14.0 | |||||
316TI | 0.08 max | 10.00 14.00 | 2.0 max | 0.045 max | 0.030 max | 16.00 18.00 | 0.75 max | 2.00 3.00 | ||||
317 | 0.08 max | 2 max | 1 max | 0.045 max | 0.030 max | 18.00 20.00 | 3.00 4.00 | 57.845 min | ||||
SS 317L | 0.035 max | 2.0 max | 1.0 max | 0.045 max | 0.030 max | 18.00 20.00 | 3.00 4.00 | 11.00 15.00 | 57.89 min | |||
SS 321 | 0.08 max | 2.0 max | 1.0 max | 0.045 max | 0.030 max | 17.00 19.00 | 9.00 12.00 | 0.10 max | 5(C+N) 0.70 max | |||
SS 321H | 0.04 0.10 | 2.0 max | 1.0 max | 0.045 max | 0.030 max | 17.00 19.00 | 9.00 12.00 | 0.10 max | 4(C+N) 0.70 max | |||
347/ 347H | 0.08 max | 2.0 max | 1.0 max | 0.045 max | 0.030 max | 17.00 20.00 | 9.0013.00 | |||||
410 | min. | 11.5 | ||||||||||
max. | 0.15 | 1.0 | 1.00 | 0.040 | 0.030 | 13.5 | 0.75 | |||||
446 | min. | 23.0 | 0.10 | |||||||||
max. | 0.2 | 1.5 | 0.75 | 0.040 | 0.030 | 30.0 | 0.50 | 0.25 | ||||
904L | min. | 19.0 | 4.00 | 23.00 | 0.10 | |||||||
max. | 0.20 | 2.00 | 1.00 | 0.045 | 0.035 | 23.0 | 5.00 | 28.00 | 0.25 |
Stainless Steel U tube Grade | Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
304/ 304L | 8.0 g/cm3 | 1400 °C (2550 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 35 % |
304H | 8.0 g/cm3 | 1400 °C (2550 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 40 % |
310 / 310S / 310H | 7.9 g/cm3 | 1402 °C (2555 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 40 % |
306/ 316H | 8.0 g/cm3 | 1400 °C (2550 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 35 % |
316L | 8.0 g/cm3 | 1399 °C (2550 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 35 % |
317 | 7.9 g/cm3 | 1400 °C (2550 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 35 % |
321 | 8.0 g/cm3 | 1457 °C (2650 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 35 % |
347 | 8.0 g/cm3 | 1454 °C (2650 °F) | Psi 75000 , MPa 515 | Psi 30000 , MPa 205 | 35 % |
904L | 7.95 g/cm3 | 1350 °C (2460 °F) | Psi 71000 , MPa 490 | Psi 32000 , MPa 220 | 35 % |
Contact us to get a quick quote for your requirement.
Client satisfaction by all means forms the top priority with regard to the quality of our Stainless Steel U Tubes. In pursuit of this objective, all our products are given stringent quality assurance regime, which includes hardness tests, chemical analysis by way of spectro analysis, positive material identification (PMI), flattening tests, micro and macro tests, pitting resistance tests, flaring tests and intergranular corrosion (IGC) tests.
To maintain Stainless Steel U Tubes, regularly clean them with mild soap and water to remove dirt and grime. Avoid harsh chemicals and abrasive cleaners. Inspect for signs of corrosion or damage and address any issues promptly.
Yes, Stainless Steel U Tubes can be welded using appropriate techniques like TIG or MIG welding. Ensure proper surface preparation and use compatible filler materials for optimal strength and corrosion resistance.
Stainless Steel U Tubes are highly resistant to corrosion due to their chromium content. However, under extreme conditions like exposure to harsh chemicals or saltwater, corrosion can still occur over time.
Yes, Stainless Steel U Tubes can be used for natural gas applications. They offer excellent corrosion resistance and durability, making them suitable for handling natural gas in various industrial systems.
Stainless steel U tubes play a critical role in heat exchangers, boilers, condensers, and superheaters in petrochemical industries, power plants, and HVAC systems. Their design enables them to be compactly arranged in small spaces, enhancing efficiency. These U tubes find applications in oil refining, pharmaceuticals, food processing, and ship cooling systems in various industries in Delhi and India. They are resistant to thermal stress, vibration, and corrosion, thus making them a critical component in thermal and fluid management systems.
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