Steber Steel Solutions is a recognised manufacturer and trader of a Hastelloy Alloy C276 Socket Weld Fittings, which exhibits impressive mechanical properties at high temperatures, which are essential for its thermal stability. These properties include:
a. Strength: The alloy retains its strength at elevated temperatures, allowing it to withstand mechanical stresses and loads without significant deformation or loss of structural integrity. This attribute is vital in applications where mechanical strength is critical, such as in heat exchangers and chemical reactors operating at high temperatures.
b. Creep Resistance: Creep is the tendency of a material to deform under constant stress over time, particularly at high temperatures. Hastelloy UNS N10276 Socket Weld Fittings demonstrates excellent creep resistance, enabling it to maintain dimensional stability and resist deformation during prolonged exposure to elevated temperatures.
c. Fatigue Resistance: Hastelloy C276 exhibits remarkable fatigue resistance at high temperatures. It can withstand cyclic loading and thermal cycling without experiencing fatigue cracks or failure, ensuring the material's long-term performance under challenging conditions.
We provide the best quality UNS N10276 Socket Weld Cross Specification Standard, Hastelloy C276 45 Deg Socket Weld Elbow, Pure Hastelloy Alloy C276 Socket Weld Fittings, werkstoff 2.4819 Socket Weld Nipple Stockist.
Hastelloy WNR. 2.4819 Socket Weld Fittings is primarily composed of nickel, chromium, molybdenum, and small amounts of tungsten, iron, cobalt, and other elements. The alloy's composition and microstructure play a crucial role in its thermal stability. Nickel forms the base of Hastelloy C276 and imparts high-temperature strength and stability to the alloy. It enables the material to maintain its mechanical properties and structural integrity at elevated temperatures.
Chromium enhances the alloy's resistance to oxidation and high-temperature corrosion. It forms a protective oxide layer on the surface of Hastelloy C276, preventing the material from undergoing significant degradation in harsh environments. Molybdenum contributes to the alloy's ability to withstand high-temperature conditions by providing excellent strength, creep resistance, and resistance to deformation under thermal stress. Tungsten further enhances the high-temperature strength and stability of Nickel Alloy C276 Socket Weld Fittings. It helps maintain the material's structural integrity and mechanical properties even at elevated temperatures.
Specifications | ASTM B564 / ASME SB564 |
---|---|
Size | 1/8″ NB to 4″ NB Socket Weld |
Dimensions | ASME 16.11, MSS SP-79, 83, 95, 97, BS 3799 |
Class | 3000/ 6000/ 9000lbs |
From | 90º Elbows, 45º Elbows, Tees, Cross, Couplings, Inserts, Caps, Nipples, Unions, Equal Tees & Reducing Tees. |
Hastelloy C22 Socket weld Fittings | Hastelloy C276 Socket weld Fittings | Hastelloy B2 Socket weld Fittings |
STANDARD | UNS | WERKSTOFF NR. | AFNOR | EN | JIS | BS | GOST |
Hastelloy C276 | N10276 | 2.4819 | – | NiMo16Cr15W | NW 0276 | – | ХН65МВУ |
Nominal Pipe Size | 3000 PSI Rating | 6000 PSI Rating | |||||||||||
IN | MM | Socket Bore B • | Socket Depth D | Socket Thickness | A | Body Bore * | G | Socket Thickness | A | Body Bore * | G | ||
Average | MIN | Average | MIN | ||||||||||
1/4 | 06 | 14.1 | 09.65 | 3.78 | 3.30 | 11.2 | 10.0 | 3.02 | 04.60 | 4.00 | 13.5 | 07.10 | 3.68 |
3/8 | 10 | 17.5 | 09.65 | 4.00 | 3.50 | 13.5 | 13.3 | 3.20 | 05.03 | 4.37 | 15.8 | 09.90 | 4.00 |
1/2 | 15 | 21.7 | 09.65 | 4.67 | 4.10 | 15.8 | 16.6 | 3.75 | 05.97 | 5.18 | 19.0 | 12.06 | 4.78 |
3/4 | 20 | 27.0 | 09.65 | 4.90 | 4.27 | 19.0 | 21.7 | 3,91 | 06.96 | 6.05 | 22.3 | 1603 | 5.56 |
1 | 25 | 33.8 | 12.07 | 5.70 | 4.98 | 22.3 | 27.4 | 4.55 | 07.92 | 6.93 | 27.0 | 21.05 | 6.35 |
1 1/4 | 32 | 42.5 | 12.07 | 6.04 | 5.28 | 27.0 | 65.8 | 4.85 | 07.92 | 6.93 | 31.8 | 30.02 | 6.35 |
1 1/2 | 40 | 48.6 | 12.07 | 6.35 | 5.54 | 31.8 | 41.7 | 5.08 | 08.92 | 7.80 | 38.0 | 34.07 | 7.15 |
2 | 50 | 61.1 | 12.07 | 6.93 | 6,06 | 38.0 | 53.3 | 5.54 | 10.92 | 9.52 | 41.2 | 43.06 | 8.75 |
2 1/2 | 65 | 73.8 | 15.08 | 8.76 | 7.67 | 41.2 | 64.2 | 7.00 | |||||
3 | 80 | 89.8 | 15.08 | 9.50 | 8.30 | 57.2 | - | 7.68 |
Pipe Size | A | B | QTY | Weight Chart |
---|---|---|---|---|
¼ | 0.81 | 0.88 | 160 | 0.20 |
⁄ | 0.97 | 1.00 | 130 | 0.26 |
½ | 1.12 | 1.31 | 100 | 0.57 |
¾ | 1.31 | 1.5 | 75 | 0.71 |
1 | 1.5 | 1.81 | 40 | 1.08 |
1 ¼ | 1.75 | 2.19 | 25 | 1.68 |
1 ½ | 2.00 | 2.44 | 18 | 2.38 |
2 | 2.38 | 2.97 | 10 | 3.55 |
2 ½ | 3.00 | 3.62 | 4 | 6.22 |
3 | 3.38 | 4.31 | 2 | 10.36 |
4 | 4.19 | 5.75 | 1 | 23.91 |
Grade | C | Mn | Si | P | S | Co | Mo | Ni | Fe | Cr |
Hastelloy C276 | 0.10 max | 1.00 max | 0.08 max | 0.04 max | 0.03 max | 2.50 max | 15-17 | 50.99 min* | 4.00 – 7.00 | 14.50-16.50 |
Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
8.89 g/cm3 | 1370 °C (2500 °F) | Psi – 1,15,000 , MPa – 790 | Psi – 52000 , MPa – 355 | 40 % |