Personlized Products Nickel Alloy Nimonic 75 UNS N06075 Manufacturer in Denmark
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HY N75 Material grades and equivalents
Nimonic 75/ UNS N06075 / W.Nr. 2.4951 / W.Nr. 2.4630 / AFNOR NC20T
Chemical Composition:
Alloy |
% |
C |
Cr |
Ni |
Ti |
Fe |
Cu |
Mn |
Si |
75 |
Min. |
0.08 |
18 |
Balance |
0.2 |
||||
Max |
0.15 |
21 |
0.6 |
5 |
0.5 |
1 |
1 |
HY N75 Physical properties:
Density |
8.37 g/cm3 |
Melting point |
2450-2520℃ |
HY N75 minimum mechanical properties in the room temperature:
Alloy |
Tensile strength |
Thermal conductivity |
Coefficient of thermal expansion |
HardnessHB |
Rm N/mm2 |
W/m °C |
μm/m/°C |
||
HY N75(solution) |
1400-2210 |
11.7 |
11 |
241 |
Alloy 75 (UNS N06075) is a nickel-chromium alloy with good mechanical properties and oxidation resistance at high temperatures. Alloy 75 is most commonly used for sheet metal fabrications which require oxidation and scaling resistance together with medium strength at high operating temperatures. Alloy 75 is also used in gas turbine engines, for components of industrial furnaces, for heat treating equipment and fixtures, and in nuclear engineering.
Specifications
Rod, Bar, Wire and Forging Stock | BS HR 5, BS HR 504, DIN 17752, AECMA PrEN2306, AECMA PrEN2307, AECMA PrEN2306, AECMA Pr EN2307, AECMA PrEN2402, ISO 9723, ISO 9724, ISO 9725 |
Plate, Sheet, Strip | BS HR 203, DIN 17750, AECMA PrEN2293, AECMA PrEN2302, AECMA PrEN2411, ISO 6208 |
Pipe and Tube | BS HR 403, DIN 17751, AECMA PrEN2294, ISO 6207 |
Other | DIN 17742, AECMA PrEN2308, Werkstoff Nr 2.4630, W. Nr 2.4951, UNS N06075, HY N75 (tradename), MSRR 7104 and MSRR 7004, AFNOR NC 20T |
Typical Mechanical Properties Alloy 75
Rupture Strength (1000 h) | ||
Temperature |
psi |
MPa |
760°C / 1400° F |
6000 |
40 |
815°C / 1500°F |
3500 |
24 |
870°C / 1600°F |
2200 |
15 |
925°C / 1700°F |
1500 |
10 |
980°C / 1800°F |
1200 |
8 |
(This material was Annealed)
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 |
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
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.