OEM/ODM Supplier for Nickel Alloy Hastelloy X UNS N06002 Wholesale to Riyadh
To constantly improve the management system by virtue of the rule of "sincerely, good faith and quality are the base of enterprise development", we widely absorb the essence of related products internationally, and constantly develop new products to meet the demands of customers for OEM/ODM Supplier for Nickel Alloy Hastelloy X UNS N06002 Wholesale to Riyadh, We sincerely welcome overseas customers to consult for the long-term cooperation and the mutual development.
HY HX Material grades and equivalents
Hastelloy X / GB GH3536&GH536/UNS N06002 / SEW VDIUV W.Nr.2.4613 / AFNOR NC22FeD
| HY HX | ||||||||||||||||
| UNS | Trademark | W.Nr | ||||||||||||||
| N06002 | HY HX | 2.4613 | ||||||||||||||
| HY HX Chemical compostion: | ||||||||||||||||
| Alloy | % | Ni | Cr | Fe | C | Mn | Si | Cu | S | B | Ti | P | Co | W | Mo | Al |
| HY HX | Min. | balance | 20.5 | 17 | 0.05 | 0.5 | 0.2 | 8 | ||||||||
| Max. | 23 | 20 | 0.15 | 1 | 1 | 0.5 | 0.015 | 0.01 | 0.15 | 0.025 | 2.5 | 1 | 10 | 0.5 | ||
| HY HX Physical properties: | ||||||||||||||||
| Density | 8.28 g/cm3 | |||||||||||||||
| Melting Point | 1295-1381 ℃ | |||||||||||||||
Hastelloy X Characteristic:
Good oxidation and corrosion resistance. Below 900 °C with middle elevated temperature stress rupture and creep rupture strength; good formability with cold working and hot working and excellent welding fabrication.
Hastelloy X Applied field:
Aero-engine combustion chamber and other parts used at elevated temperatures,long term usage below 900°C,short term usage temperature can reach 1080°C.
| Regular shape for all kinds of alloys | |||
| Form | Specification | Supply Form | Others |
| Sheet | Thickness:0.40-4.75mm,General Width:1000、1219、1500mm | Whole Coil or piece of it | Cold Annealed,Surface 2B、2E |
| Plate | Thickness:4.76-60mm,Width:1500、2000、2500mm,Length:3000、6000、8000、8500mm(Under 10mm plate can be coiled) | Whole Coil or piece of it | Single hot rolling,Solid solution annealed state,Surface 1D |
| Belt | Thickness:0.10-3.0mm,Width:50-500mm | Whole Coil or Specified size | Cold Annealed,Surface 2B、2E |
| Bar & Rod | Rolled barΦ5-45mm,Length≤1500mm | Polished Bar(circle、Square) | Solution annealing,descaling |
| Forged barΦ26-245mm,Length≤4000mm | |||
| Weld tube | Outer diameterΦ4.76-135mm,Wall Thickness0.25-4.00mm,Length:≤35000 mm | Base on your requirement | |
| Seamless Tube | Outer diameterΦ3-114mm,Wall Thickness0.2-4.5mm | Base on your requirement | |
| Wire | Outer diameterΦ0.1-13mm | Base on your requirement | Ni & Ni alloy, Ti & Ti alloy |
| Forged piece | discs,rings,squares,blocks,slabs | Base on your requirement | Steel, Alloy |
| Flangs | All kinds of Flangs | Base on your requirement | Steel, Alloy |
| Welding Material | Coil wire Φ0.025mm-1.6mm | Base on your requirement | Certificate of Origin:America, Sweden, Britain, Germany, Austria, Italy, France. |
| Straight WireΦ1.6mm-4.0mm | |||
| Welding rodΦ1.2mm-4.0mm | |||
| Tube | Elbow, three links, four links, different diameter size | Base on your requirement | Ni & Ni alloy, Ti & Ti alloy |
| Explosive bonded laminate | Raw Sheet Thickness≥2mm | Base on your requirement | Ni & Ni alloy, Ti & Ti alloy |
http://www.weldingtipsandtricks.com/metals-and-how-to-weld-nickel.html
How to weld nickel alloys like hastelloy, inconel, etc. Nickel alloys have a low thermal conductivity and so limiting heat input and using lower amperage than would be used for stainless is one key to making good nickel alloy welds.
The progress of improved metallic resources is a crucial action at the leading edge of science and know-how. Metals offer unrivalled mixtures of houses and reliability at a cost which is economical. They are adaptable mainly because subtle improvements in their microstructure can cause dramatic variations in their houses. For illustration, it is feasible to purchase business steel with a energy as lower as 50 MPa or as large as 5500 MPa. They can be built with a microstructure which is finer than that of carbon nanotubes. An understanding of the progress of microstructure in metals, rooted in thermodynamics, crystallography and kinetic phenomena is crucial for the resources scientist. The bulk of the 1.4 billion tonnes of metals made annually are the outcome of developments within just the last 10 a long time
http://www.msm.cam.ac.british isles/phase-trans/2002/creep.1.html





