Discountable price Nickel Alloy Hastelloy B-2 UNS N10665 for India Manufacturers
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HY B-2 Chemical compostion:
Alloy |
% |
Ni |
Mo |
Fe |
Cr |
Co |
C |
Mn |
V |
Si |
P |
S |
HY B-2 |
Min. |
Balance |
26 |
4 |
0.2 |
|||||||
Max. |
30 |
6 |
1 |
2.5 |
0.05 |
1 |
0.4 |
1 |
0.04 |
0.03 |
||
HY B-2-2 |
Min. |
Balance |
26 |
2 |
||||||||
Max. |
30 |
7 |
1 |
1 |
0.02 |
1 |
0.1 |
0.04 |
0.03 |
HY B-2 Physical properties:
Density |
9.24g/cm3 |
Melting point |
1330-1380℃ |
HY B-2 Alloy minimum mechanical properties in the room temperature:
Alloy state |
Tensile strength |
Yield strength |
Elongation |
HY B-2 |
690 |
310 |
40 |
Characteristic:
1. Control of iron and chromium content to a minimum to prevent the generation of β-phase Ni4Mo.
2. Excellent corrosion resistance of restore environment.
3. An excellent resist to concentration sulfuric acid medium and large number of non-oxidizing acid corrosion.
4. A very good resistance of chloride reduction of stress corrosion cracking (SCC).
5. Good corrosion resistance of various organic acids.
Metallurgical structure
HY B-2-2 is the face-centered cubic lattice structure. By controlling the content of iron and chromium at the minimum to reduce the processing brittle, prevent Ni4Mo precipitation during 700-870 ℃.
Corrosion resistance
Ni-Mo alloy HY B-2-2, the carbon and silicon content is extremely low, reducing the HAZ carbon and other impurities precipitation, so the weld has sufficient corrosion resistance. Alloy HY B-2-2 in the reduction of medium with very good corrosion resistance, such as a various temperature and concentration of hydrochloric acid. In the middle of the concentration of sulfuric acid solution (or contain a certain amount of chloride ions) also has very good corrosion resistance. At the same time can be used to acetic acid and phosphoric acid environment. Alloy material suitable only in the metallurgical structure and pure crystal structure in order to have the best corrosion resistance.
Applied field:
Alloy HY B-2-2 with a wide range of applications in the field of chemical, petrochemical, energy manufacturing and pollution control , particularly in the sulfuric acid, hydrochloric acid, phosphoric acid, acetic acid, and other industries.
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 |
Experimentální odlévání monelu na katedře strojírenské technologie při TU v Liberci – Monel je slitina niklu a mědi. Název Monel je registrován jako trademark americké firmy Specific Metals Corporation. Monel vyrobil v roce 1901 Robert Crooks Stanley, slitinu pojmenoval po tehdejším prezidentu firmy Ambrose Monellovi.
Monel vykazuje výborné mechanické vlastnosti a chemickou odolnost v náročném prostředí, např. v dlouhodobém kontaktu se slanou vodou, ale i v chemickém průmyslu. Často bývá využit tam, kde již nedostačují vlastnosti nerezových ocelí.
Monel is a group of nickel alloys, largely composed of nickel (up to sixty seven%) and copper, with tiny quantities of iron, manganese, carbon, and silicon. More powerful than pure nickel, Monel alloys are resistant to corrosion by quite a few agents, like promptly flowing seawater. They can be fabricated quickly by very hot- and chilly-working, machining, and welding.[2]
Monel was made by David H. Browne, main metallurgist for Global Nickel Co. Monel alloy four hundred is a binary alloy of the identical proportions of nickel and copper as is found naturally in the nickel ore from the Sudbury (Ontario) mines and is thus thought of a puritan alloy. Monel was named following business president Ambrose Monell, and patented in 1906.[three] Just one L was dropped, for the reason that loved ones names were being not allowed as trademarks at that time.[one] The title is now a trademark of Specific Metals Corporation.
To comprehend that the utilizes for particular metals relate to their unique qualities.
To comprehend that the qualities of metals can be improved by generating alloys.
To recall that some of the hottest alloys, called ‘Smart Alloys’ can change their qualities on demand from customers.
Duplicate the table beneath. Working with a companion, entire as a great deal of the table as you can.
Very low density, powerful, resistant to corrosion, very good conductor of energy
Good conductor of energy, resistant to corrosion, quickly formed, flexible
Shiny, very resistant to corrosion, very unreactive, soft, quickly formed
Extremely powerful, very dense.
Lightweight buildings, plane, drinks cans, higher voltage cables.
Electrical wiring, h2o pipes.
Jewelry.
Substantial buildings and significant responsibility engineering these as bridges, trains, autos and so forth.
In pure metals the atoms prepare them selves closely collectively into regular styles. This tends to make them dense and also presents them numerous of their other helpful qualities.
The layer arrangement of the atoms permits the metals to transform form if a pressure is utilized. The layers can slip around every other.
This can be helpful if you want to form the steel but not so helpful if you want it to resist the pressure and be powerful.
By mixing two or additional metals collectively the regular arrangement of the atoms is disrupted. This stops the atoms forming layers and tends to make it harder for the atoms to slide around every other. The alloy is more robust than the pure metals.
Steel B
Steel A
Steel is an alloy. Pure iron is not powerful enough to be employed in buildings. Steel contains a smaller amount of carbon. This disrupts the layers of atoms in the steel and improves the toughness of the steel considerably.
Despite the fact that it is very powerful metal will corrode (rust) quickly and it has to be regularly protected from the consequences of h2o and air.
Stainless metal is an alloy that contains other metals these as Nickel and Chromium. Stainless metal has the toughness of metal mixed with the corrosion resistance of nickel and the shininess of chromium. This tends to make it a helpful materials in programs exactly where you will need toughness mixed with magnificence and corrosion resistance..
Clever Alloys
These are alloys that can ‘remember’ their primary form. If they are deformed they can return to their primary form.
Condition memory glasses
Condition memory Stent to continue to keep a blocked blood vessel open
Metals, Alloys and Clever Alloys
Finding out Objectives:
To comprehend that the utilizes for particular metals relate to their unique qualities.
To comprehend that the qualities of metals can be improved by generating alloys.
To recall that some of the hottest alloys, called ‘Smart Alloys’ can change their qualities on demand from customers.