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GENERAL CHARACTERISTICS OF Alloy 718
Alloy 718 is a nickel-based precipitation-hardening alloy designed for very high yield strength, tensile strength and creep rupture properties at temperatures up to 1300ºF (705ºC.) The alloy has excellent weldability.
Production Name | Nickel Alloy Steel Pipes |
Standard | ASME/ANSI B16.9, ISO, JIS, DIN, BS,GB, SH, HG,QOST,ETC. |
Size | 1/2’’~48’’(Seamless);16’’~72’’(Welded) |
Wall thickness | Sch5~Sch160XXS |
Manufacturing process | Push, Press, Forge, Cast, etc. |
Nickel alloy steel | Alloy 200/Nickel 200/NO2200/2.4066/ASTM B366 WPN; Alloy 201/Nickel 201/NO2201/2.4068/ASTM B366 WPNL; Alloy 400/Monel 400/NO4400/NS111/2.4360/ASTM B366 WPNC; Alloy K-500/Monel K-500/NO5500/2.475; Alloy 600/Inconel 600/NO6600/NS333/2.4816; Alloy 601/Inconel 601/NO6001/2.4851; Alloy 625/Inconel 625/NO6625/NS336/2.4856; Alloy 718/Inconel 718/NO7718/GH169/GH4169/2.4668; Alloy 800/Incoloy 800/NO8800/1.4876; Alloy 800H/Incoloy 800H/NO8810/1.4958; Alloy 800HT/Incoloy 800HT/NO8811/1.4959; Alloy 825/Incoloy 825/NO8825/2.4858/NS142; Alloy 925/Incoloy 925/NO9925; Hastelloy C/Alloy C/NO6003/2.4869/NS333; Alloy C-276/Hastelloy C-276/N10276/2.4819; Alloy C-4/Hastelloy C-4/NO6455/NS335/2.4610; Alloy C-22/Hastelloy C-22/NO6022/2.4602; Alloy C-2000/Hastelloy C-2000/NO6200/2.4675; Alloy B/Hastelloy B/NS321/N10001; Alloy B-2/Hastelloy B-2/N10665/NS322/2.4617; Alloy B-3/Hastelloy B-3/N10675/2.4600; Alloy X/Hastelloy X/NO6002/2.4665; Alloy G-30/Hastelloy G-30/NO6030/2.4603; Alloy X-750/Inconel X-750/NO7750/GH145/2.4669; Alloy 20/Carpenter 20Cb3/NO8020/NS312/2.4660; Alloy 31/NO8031/1.4562; Alloy 901/NO9901/1.4898; Incoloy 25-6Mo/NO8926/1.4529/Incoloy 926/Alloy 926; Inconel 783/UNS R30783; NAS 254NM/NO8367; Monel 30C Nimonic 80A/Nickel Alloy 80a/UNS N07080/NA20/2.4631/2.4952 Nimonic 263/NO7263 Nimonic 90/UNS NO7090; Incoloy 907/GH907; Nitronic 60/Alloy 218/UNS S21800 |
Package | Wooden cases, pallets, nylon bags or according to the customers' requirements |
Delivery time | 10-100 days depending on quantity |
Payment terms | T/T or Western Union or LC |
Shipment | FOB Tianjin/Shanghai, CFR, CIF, etc |
Application | Petroleum/Power/Chemical/Construction/Gas/Metallurgy/Shipbuilding etc |
Remarks | Other materials and drawings are available. |
The third party inspection: | BV,SGS,LOIYD,TUV,and other party alloyed by clients. |
Trade Name | ASTM Pipe | Pipe Fittings | UNS | Forging & Flanges |
Monel@ 400 | B165 | B366 WPNC | N04400 | B564 N04400 |
Inconel@ 600 | B167 | B366 WPNCI | N06600 | B564 N06600 |
Inconel@ 625 | B444 | B366 WPNCMC | N06625 | B564 N06625 |
Incoloy@ 800 | B163 | B366 WPNIC | N08800 | B564 N08800 |
Incoloy@ 800H | B407 | B366 WPNIC10 | N08810 | B564 N08810 |
Incoloy@ 800HT | B407 | B366 WPNIC11 | N08811 | B564 N08811 |
Incoloy@ 825 | B423 | B366 WPNICMC | N08825 | B564 N08825 |
Hastelloy@ B2 | B619/622 | B366 WPHB-2 | N10665 | B564 N10665 |
Hastelloy@ C276 | B619/622 | B366 WPHC276 | N10276 | B564 N10276 |
Hastelloy@ C22 | B619/622 | B366 WPHC22 | N06022 | B564 N06022 |
Carpenter 20Cb-3@ | B729 | B366 WP20Cb | N08820 | B462 N08820 |
SANICRO 28@ | B668 | N08028 |
Chemical Properties
CHEMICAL ANALYSIS | |
---|---|
C | Carbon 0.08 max |
Mn | Manganese 0.35 max |
P and S | Phosphorus and Sulfur 0.015 maxx |
Si | Silicon 0.35 max |
Ni(+Co) | Nickel Colbalt 50.0/55.0 |
Cr | Chromium 17/21 |
Co | Cobalt 1.00 max |
Cu | Copper 0.15 max/td> |
Al | Aluminium 0.35/0.80 |
Mo | Molybdenum 2.80/3.30 |
Ti | Titanium 0.65/1.15 |
Cb + Ta | Columbium + Tantalum 4.75/5.50 |
B | Boron 0.001/0.006 |
Application
The alloy is used in jet engine and high-speed airframe parts such as wheels, buckets and spacers, and high-temperature bolts and fasteners. Inconel 718 is also used in the oil and gas drilling and production industries due to its high strength and resistance to chlorides, stress corrosion and sulfide stress cracking. Within these industries the alloy has been used for valves, pump shafts and wellhead components.
WELDABILITY
The alloy may be welded in either the aged or annealed conditions. Welding an age-hardened material will result in the formation of a softened heat-affected zone
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