Steber Steel Solutions is a well-known trader and distributor of a Monel Alloy 400 Socket Weld Fittings, which have different objectives of rapid cooling. The primary objectives of rapid cooling in this alloy are as follows:
a. Enhancement of Mechanical Properties: Rapid cooling modifies the alloy's microstructure, leading to improved mechanical properties such as strength, hardness, and wear resistance. It allows for the development of a fine-grained structure, which can enhance the alloy's overall strength and performance.
b. Reduction of Grain Growth: Rapid cooling prevents excessive grain growth, which can occur during slow cooling or annealing processes. By quickly quenching the material, the formation of large grains is inhibited, resulting in a more refined microstructure with improved mechanical properties.
c. Preservation of Corrosion Resistance: Rapid cooling helps maintain the excellent corrosion resistance of Monel UNS N04400 Socket Weld Fittings. By minimizing the time at high temperatures, the alloy is less susceptible to the precipitation of detrimental phases that can reduce its corrosion resistance.
We provide the best quality Monel 400 45 Deg Socket Weld Elbow, UNS N04400 Socket Weld Cross Specification Standard, werkstoff 2.4360 Socket Weld Nipple, Pure Monel Alloy 400 Socket Weld Fittings Stockist.
The rapid cooling process has significant effects on the mechanical properties of Monel 400. These effects include:
a. Increased Strength: Rapid cooling refines the microstructure of Monel WNR 2.4360 Socket Weld Fittings, resulting in a higher density of dislocations and a finer grain structure. This, in turn, leads to increased strength and hardness of the alloy, making it more resistant to deformation and wear.
b. Improved Toughness: The rapid cooling process helps improve the toughness of Monel 400 by reducing the size of the grains and enhancing the alloy's resistance to crack propagation. This is particularly beneficial in applications that require resistance to impact or fatigue loading.
c. Enhanced Wear Resistance: The refined microstructure achieved through rapid cooling contributes to improved wear resistance in Nickel Alloy 400 Socket Weld Fittings. The fine-grained structure reduces the tendency for material removal, thereby enhancing the alloy's ability to withstand abrasive and erosive wear.
d. Preserved Corrosion Resistance: Rapid cooling minimizes the formation of detrimental phases that can reduce the corrosion resistance of Monel WNR 2.4361 Socket Weld Fittings. By quickly quenching the material, the alloy's corrosion resistance, including its resistance to pitting and crevice corrosion, is maintained.
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.<0/td> |
STANDARD | WERKSTOFF NR. | UNS | JIS | BS | GOST | AFNOR | EN |
Monel 400 | 2.4360 | N04400 | NW 4400 | NA 13 | МНЖМц 28-2,5-1,5 | NU-30M | NiCu30Fe |
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 | Cu | Mo | Ni | Fe |
Monel 400 | 0.30 max | 2 max | 0.50 max | – | 0.024 max | 28 – 34 | – | 63.00 min | 2.50 max |
Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
8.8 g/cm3 | 1350 °C (2550 °F) | Psi – 80000 , MPa – 550 | Psi – 35000 , MPa – 240 | 40 % |