Haverer Group is a Hong Kong based company, facilities set up in Shanghai & Jiangsu, mainly produce super austenitic stainless steel tube, nickel based corrosion alloy tube, VSOP & VISION web offset press, PETG film, optically clear PET-G film, etc.
C276 Nickel Alloy Tube|UNS N10276|WNR 2.4819 Tube from China

Description
HAVERER GROUP produce C-276 tubing & piping in China.

Alloy C-276 is a solid solution strengthened nickel-molybdenum-chromium alloy with a small amount of tungsten. Alloy C-276 exhibits excellent corrosion resistance in a variety of harsh environments and media. Like many other nickel alloys, it is ductile, easily formed and welded. This alloy is used in most industrial settings where aggressive chemical environments are present and other alloys have failed.

Industries and Applications
Alloy C-276 is frequently used in many industries, including chemical and petrochemical processing, oil and gas, power generation, pharmaceutical, pulp and paper production and waste water treatment. End use applications include stack liners, ducts, dampers, scrubbers, stack gas reheaters, heat exchangers, reaction vessels, evaporators, transfer piping and many other highly corrosive applications.

Resistance to Corrosion
Alloy C-276 is one of the most universally corrosion resistant alloys available today. It is used in a variety of environments ranging from moderately oxidizing to strong reducing conditions. Alloy C-276 has exceptional resistance to sulfuric acid, hydrochloric acid, formic acid, acetic acid, chlorides, solvents, wet chloride gas, hypochlorite and chlorine solutions. Alloy C-276 has excellent resistance to phosphoric acid at all temperatures below boiling and concentrations lower than 65%. The limiting factor when dealing with strong oxidizing environments is the low chromium content, which means hot concentrated nitric acid environments are not desirable.
Alloy C-276 has superior resistance to pitting, stress corrosion cracking and oxidizing atmospheres. Alloy C-276 also exhibits resistance to corrosion by seawater in crevice conditions, which can induce aggressive attack in other commonly used materials.

Fabrication and Heat Treatment
Alloy C-276 can be formed using various cold and hot working processes. Like other nickel alloys, alloy C-276 work hardens quickly, though it can be cold formed using aggressive methods like deep drawing, press forming and punching. Hot forming should be performed within a temperature range between 1600°F and 2250°F (870°C and 1230°C) with heavier sections being heated to a minimum temperature of 2000°F before forming. Annealing of the material after working is advised and should be performed at a temperature between 2050°F and 2150°F, followed by a rapid quench in a protective atmosphere or agitated reducing quench bath. To obtain a reducing quench bath, add 2% (by volume) of either ethyl or propyl alcohol to water.

Chemical Composition (%)
Nickel               Molybdenum          Chromium            Iron               Tungsten        Cobalt           Manganese     
 Remainder      15.0 to 17.0          14.5 to 16.5      4.0 to 7.0         3.0 to 4.5       2.5 max       1.0 max
Vanadium          Silicon                 Phosphorus           Sulfur             Carbon      
 0.35 max         0.08 max            0.04 max             0.03 max        0.010 max

Available tube product forms
Straight     
Seamless    
cold redrawn and annealed

Typical Applications
Pollution control
Mixed acid chemicals
Pulp and paper production
Waste treatment
Very high chloride environments

Typical manufacturing specifications
ASTM B626
ASTM B622
Also individual customer specifications.


Mechanical Properties
Temper  Annealed
Tensile Rm  100  ksi (min)
Tensile Rm  690  MPa (min)
R.p. 0.2% Yield  41  ksi (min)
R.p. 0.2% Yield  290  MPa (min)
Elongation (2” or 4D gl)  40  % (min)

Physical Properties (Room Temperature)
Specific Heat (0-100°C)  427  J.kg-1.°K-1
Thermal Conductivity  9.4  W.m -1.°K-1
Thermal Expansion  11.2  μm/μm/°C
Modulus Elasticity  221  GPa
Electrical Resistivity  1.30  μohm/cm
Density  8.89  g/cm3




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