Steber Steel Solutions is a well-known stockist and supplier of Hastelloy Alloy C22 Olets, which exhibits exceptional mechanical properties that contribute to its superior strength.
The key mechanical properties of Hastelloy WNR 2.4602 Threadolets include:
a. Tensile Strength: This alloy possesses a high tensile strength, enabling it to withstand heavy loads and resist deformation. The alloy's tensile strength typically ranges from 690 MPa to 810 MPa (100 ksi to 117 ksi).
b. Yield Strength: Yield strength refers to the stress level at which the alloy begins to exhibit permanent deformation. This alloyhas a high yield strength, typically ranging from 345 MPa to 414 MPa (50 ksi to 60 ksi), indicating its ability to withstand significant loads without undergoing plastic deformation.
c. Ductility: Despite its impressive strength, this alloymaintains excellent ductility. It possesses a high elongation and reduction in area, allowing for deformation and shaping without fracture.
d. Hardness: This alloy exhibits a desirable balance between strength and hardness. It has a hardness range of approximately 100 to 250 HB (Brinell hardness), depending on the specific heat treatment and processing conditions.
We provide the best quality UNS N06022 Outlet Fittings Specification Standard, Pure Hastelloy C22 Nipple Outlets, Hastelloy® Alloy C22 Latrolets, Werkstoff 2.4602 Olets Fittings Stockist.
Hastelloy UNS N06022 Flexolets is primarily composed of nickel, chromium, molybdenum, and tungsten, with small additions of iron, cobalt, and other elements. The alloy's composition and microstructure play a vital role in its resistance to thermal fatigue. Nickel is the primary component of this alloy and provides the foundation for its excellent resistance to thermal fatigue. Nickel enhances the alloy's thermal stability, mechanical strength, and ductility, making it well-suited for high-temperature applications.
Chromium forms a protective oxide layer on the surface of Nickel Alloy C22 Sweepolets, which acts as a barrier against oxidation and high-temperature corrosion. This oxide layer helps maintain the alloy's mechanical properties and prevents the initiation of cracks and other defects. Molybdenum contributes to the alloy's resistance to thermal fatigue by improving its high-temperature strength, creep resistance, and resistance to deformation under thermal cycling conditions. Tungsten enhances the alloy's ability to withstand thermal cycling by improving its strength, stability, and resistance to grain boundary cracking. It helps maintain the mechanical integrity of this alloy even at elevated temperatures.
Specifications | ASTM B366/ ASME SB366 |
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Dimensions | ASME / ANSI B16.11, MSS-SP-97, MSS-SP-79, JIS B2316, BS 3799 etc |
Size | 1/8"-4" (DN6-DN100) |
Connect Type | Welded, threaded, BW, SW |
Test Certificates | EN 10204/3.1B Raw Materials Certificate 100% Radiography Test Report Third Party Inspection Report, etc |
Specialized Manufacturer of | Weldolets, Threadolets, Sockolets, Elbolets, Elbolets, Nippolets, Lateral Outlet, Coupolet, Flexolet, Sweepolet, Brazolet |
We provide Material Test Certificates (MTC) as per EN 10204 3.1 and EN 10204 3.2, Test Certificates certifying NACE MR0103, NACE MR0175 |
STANDARD | UNS | WERKSTOFF NR. | AFNOR | EN | JIS | BS | GOST |
Hastelloy C22 | N06022 | 2.4602 | – | NiCr21Mo14W | NW 6022 | – | – |
NPS | A | B | C | D |
---|---|---|---|---|
1 | 1.1/16 26.99 |
2 50.80 |
1.7/16 36.51 |
1.1/32 26.19 |
1/2 | 3/4 19.05 |
1.3/8 34.93 |
15/16 23.81 |
5/8 15.88 |
3/4 | 7/8 22.23 |
1.5/8 41.28 |
1.3/16 30.16 |
13/16 20.64 |
1¼ | 1¼ 31.75 |
2.3/8 60.3 |
1.3/4 44.45 |
1.3/8 34.93 |
1½ | 1.5/16 33.34 |
2.7/8 73 |
2 50.80 |
1.5/8 41.28 |
2 | 1½ 38.10 |
3½ 88.90 |
2.9/16 65.09 |
2.1/16 52.39 |
2½ | 1.5/8 41.28 |
4.1/16 103.19 |
3 76.20 |
2.7/16 61.91 |
3 | 1.3/4 44.45 |
4.13/16 122.24 |
3.11/16 93.66 |
3.1/16 77.79 |
3½ | 2 50.80 |
5.3/8 136.53 |
3.7/8 98.43 |
3.9/16 90.49 |
4 | 2 50.80 |
6 152.40 |
4.3/4 120.65 |
4 101.60 |
5 | 2¼ 57.15 |
7.1/8 180.98 |
5.9/16 141.29 |
5.1/16 128.59 |
6 | 2.3/8 60.3 |
8½ 215.90 |
6.11/16 169.86 |
6.1/16 153.99 |
8 | 2.3/4 69.85 |
10.3/8 263.53 |
8.11/16 220.66 |
7.15/16 201.61 |
10 | 3.1/16 77.79 |
12.9/16 319.09 |
10.13/16 274.64 |
10 254.00 |
12 | 3.3/8 85.73 |
14.7/8 377.83 |
12.13/16 325.44 |
12 304.80 |
14 | 3½ 88.90 |
16.1/8 409.58 |
14.1/16 357.19 |
13¼ 336.55 |
16 | 3.11/16 93.66 |
18¼ 463.55 |
16.1/16 407.99 |
15¼ 387.35 |
18 | 4.1/16 103.19 |
20.3/4 527.05 |
18.5/8 473.08 |
17¼ 438.15 |
20 | 4.5/8 117.48 |
23.1/16 585.79 |
20.1/16 509.59 |
19¼ 488.95 |
24 | 5.3/8 136.53 |
27.7/8 708.03 |
25.1/8 638.18 |
23¼ 590.55 |
NPS | A | B | C | D |
Nominal Pipe Size | Socket (C) Minimum |
Face to Crotch (L) | |
3000 Lbs | 6000 Lbs | ||
1″ | 13 | 22 | 29 |
1/8″ | 10 | 10 | – |
1/4″ | 10 | 10 | – |
3/8″ | 10 | 13 | – |
1/2″ | 10 | 16 | 24 |
3/4″ | 13 | 16 | 25 |
1 1/4″ | 13 | 22 | 30 |
1 1/2″ | 13 | 24 | 32 |
2″ | 16 | 24 | 37 |
2 1/2″ | 16 | 25 | – |
3″ | 16 | 30 | – |
4″ | 19 | 30 | – |
Nominal Pipe Size | Face to Crotch (L) | |
3000 Lbs | 6000 Lbs | |
1″ | 33 | 40 |
1/8″ | 19 | – |
1/4″ | 19 | – |
3/8″ | 21 | – |
1/2″ | 25 | 32 |
3/4″ | 27 | 37 |
1 1/4″ | 33 | 41 |
1 1/2″ | 35 | 43 |
2″ | 38 | 52 |
2 1/2″ | 46 | – |
3″ | 51 | – |
4″ | 57 | – |
Nominal Pipe Size | Face to Crotch (L) | |
3000 Lbs | 6000 Lbs | |
1/2″ | 25 | 32 |
3/4″ | 27 | 37 |
1 1/4″ | 33 | 41 |
1″ | 33 | 40 |
1/8″ | 19 | – |
1/4″ | 19 | – |
3/8″ | 21 | – |
1 1/2″ | 35 | 43 |
2″ | 38 | 52 |
2 1/2″ | 46 | – |
3″ | 51 | – |
4″ | 57 | – |
Nominal Pipe Size | Face to Crotch (L) | |
3000 Lbs | 6000 Lbs | |
1/8″ | 19 | – |
1/4″ | 19 | – |
3/8″ | 21 | – |
1/2″ | 25 | 32 |
3/4″ | 27 | 37 |
1″ | 33 | 40 |
1 1/4″ | 33 | 41 |
1 1/2″ | 35 | 43 |
2″ | 38 | 52 |
2 1/2″ | 46 | – |
3″ | 51 | – |
4″ | 57 | – |
Nominal Elbow Size Inches |
Outlet Size Inches |
Dimensions | |||
CL 3000 Threaded & Socket Weld Std. & XS Butt-Weld |
CL 6000 Threaded & Socket Socket-Weld Sch. 160 & XXS Butt-Weld |
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C | E | C | E | ||
36 – 3/4 | 3/8 | 1 1/2 | 1 19/32 | 1 1/2 | 1 19/32 |
36 – 3/4 | 1/2 | 1 1/2 | 1 19/32 | 1 23/32 | 1 7/8 |
36 – 1 | 3/4 | 1 23/32 | 1 7/8 | 2 1/4 | 2 1/4 |
36 – 3/4 | 1/4 | 1 1/2 | 1 19/32 | 1 1/2 | 1 19/32 |
36 – 2 | 1 | 2 1/4 | 2 1/4 | 2 7/8 | 2 1/2 |
36 – 2 | 1 1/4 | 2 7/8 | 2 1/2 | 3 1/8 | 2 11/16 |
36 – 2 | 1 1/2 | 3 1/8 | 2 11/16 | 4 3/16 | 3 1/4 |
36 – 3 | 2 | 4 3/16 | 3 1/4 | ||
**2 1/2 | 4 3/16 | 3 1/4 | |||
**3 | 5 1/16 | 3 7/8 | |||
Order to Specific | **4 | 6 5/8 | 4 13/16 | ||
Elbow Sizes | **6 | 9 3/8 | 6 1/2 | ** | ** |
**8 | 13 5/16 | 8 1/16 | |||
**10 | 17 1/32 | 10 3/8 | |||
**12 | 19 5/8 | 11 1/8 |
Hastelloy C22 | Ni | C | Mo | Mn | Si | Fe | P | S | Co | Cr |
Balance | 0.010 max | 12.5 – 14.5 | 0.50 max | 0.08 max | 2 – 6 | 0.02 max | 0.02 max | 2.5 max | 20 – 22.5 |
Density | Melting Point | Yield Strength (0.2%Offset) | Tensile Strength | Elongation |
8.69 g/cm3 | 1399 °C (2550 °F) | Psi – 45000 , MPa – 310 | Psi – 1,00,000 , MPa – 690 | 45 % |