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Hastelloy C-276/N10276 sheet/bar/pipe
Parameter

Equivalent designations

UNS N10276

DIN W. Nr. 2.4819


Form ASTM
Rod B 574
Plate, sheet and strip B 575
Seamless pipe and tube B 622
Welded pipe B 619, B 775
Welded tube B 626, B 751
Welding fitting B 366
Forged or rolled pipe flange and forged fitting B 462
Billet and bar for reforging B 472
Forging B 564


Chemical composition

% Ni Cr Mo Fe W Co C Mn Si P S V
min balance 20.0 12.5 2.0 2.5
max 22.5 14.5 6.0 3.5 2.5 0.015 0.50 0.08 0.020 0.020 0.35


Physical properties

Density 8.69 g/cm3
Melting range 1325-1370℃


STANDARDS
BOZHONG TRADEMARKS UNS ASTM EURONORMS EN SUS
Hastelloy C-276 N10276 - 2.4819
-
-
CHEMICAL ANALYSIS (%WEIGHT)
C Cr Ni Mo N Others
< 0,030 16 bal. 16 - W = 4 Co < 2.5

Features: Hastelloy C-276 has excellent resistance to localized corrosion, stress corrosion cracking, and to both oxidizing and reducing media, thus making it suitable for a wide variety of chemical process environments, including ferric and cupric chlorides, hot contaminated media (organic and inorganic), formic and acetic acids, seawater and brine solutions. It is one of the few materials that withstands the corrosive effects of wet chlorine gas, hypochlorite and chlorine dioxide.

Applications: Chemical processing, waste treatment, pollution control, pulp and paper production, and marine engineering.


Application
APPLICATIONS
CHEMICAL INDUSTRIES PROCESS INDUSTRIES WATER TREATMENT STORAGE & TRANSPORTATION
Nitric Acid Sulfuric Acid Polymer& otheracids Fertilisers Pulp& Paper Hydrome-tallurgy Seawater& desalination Freshwater &Tanks Waste Water Chemical Tanks Cryogenic Tanks Renewable

POWER GENERATION OIL & GAS CONSTRUCTION
Nuclear Pollution control Hydroelectric Renewable Off & Onshore & production Refining & Gas processing Petrochemical Architecture Bridges

For more technical details :
Download the complete datasheet
(1) Indicative typical values
(2) Indicative typical values for thickness 20 mm at RT for transverse direction
(3) Hardening 496°C (925°F), 4h, air cooling
(4) PREN = Cr + 3.3 Mo + 16N
(5) PRENW = Cr + 3.3(Mo + 0.5W) + 16N
(6) HT: mechanical properties depend on heat treatment
*: grades only available in clad plates
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