Nickel alloys

JACQUET offers a large stock of nickel alloy plates for applications requiring high resistance in aggressive environments such as : corrosion, high temperatures and high pressures. Nickel alloys are mainly used in the chemical, petrochemical, pollution control, defense, marine & aerospace.

Plates

  • Thicknesses: 0.125″ to 2″
  • Max. dimension: up to 96″ x 240″

Round bars

  • Diameters: 0.25″ to 9″

Grades

W. Nr.UNSENASTMASMEThickness max. in stock (inch)ALLOY
2.4066 / 2.4068N02200 / N02201Ni99-2 / LC-Ni99B162 / B163SB162 / SB1631.25″NICKEL ALLOY 200/201
2.4360 / 2.4361N04400NiCu30FeB127SB1271.75″MONEL® ALLOY 400
2.4360 / 2.4361N04400 ARNiCu30FeB127SB1272.00″MONEL® ALLOY 400 AR
2.4816N06600NiCr15FeB168 / B906SB168 / SB906 / CASE 18271.50″INCONEL® ALLOY 600
2.4851N06601NiCr23FeB168SB1680.25″INCONEL® ALLOY 601
2.4856N06625NiCr22Mo9NbB443 GR1SB443 GR11.50″INCONEL® ALLOY 625
2.4668N07718Nb5.3Ti1Al0.5B637 / B670CASE 2222-1, SFA 5.141.00″INCONEL® ALLOY 718
1.4958 / 1.4876*N08810X5NiCrAlTi31-20B407 / B408 / B409SB407 / SB408 / SB4090.75″INCOLOY® ALLOY 800H
1.4959N08811NiCrFeMoB407 / B408 / B409SB407 / SB408 / SB4091.0″INCOLOY® ALLOY 800HT
2.4660N08020NiCr20CuMoB463 / B464 / B473 / B366SB463 / SB464 / SB473 / SB3661.0″INCOLOY® ALLOY A20
2.4858N08825NiCr21MoB424 / B906SB424 / SB9061.50″INCOLOY® 825
2.4819*N10276NiMo16Cr15WB575 / B906SB575 / SB9061.50″INCONEL® ALLOY C276
® Registered trademark of Special Metals Corporation

Other grades and dimensions, contact us.

Applications

  • Food manufacturing such as handling of cooling brine, fatty acids and fruit juices due to the material’s resistance against acids, alkalis and neutral salt solutions and against organic acids
  • Tanks in which fluorine is produced and where it reacts with hydrocarbon (CFC) due to the material’s resistance against fluorine
  • Storage and transport of phenol
  • Production and treatment of caustic soda
  • Production of synthetic fibers and soaps
  • Production of hydrogen chloride and chlorination of hydrocarbons such as benzene, methane and ethane
  • Production of vinyl chloride monomer due to the material’s resistance against dry chlorine gas and hydrogen chloride in increased temperatures
  • Electrical and electronic components
  • Electrode contacts and current conductors in batteries
  • Current conductors in alkali fuels
  • Electrodes for hydrogen production by electrolysis
  • Feedwater and steam generator tubes in power plants
  • Brine heater and recompression evaporator in saltworks
  • Sulfuric and hydrofluoric acid alkylation
  • Heat exchangers in the chemical industry
  • Plating components for mineral oil distillation plants
  • Splash zone lining on offshore platforms
  • Impellers and pump shafts in marine technology
  • Refining plants for the production of nuclear fuel
  • Pumps and valves in production lines for tetrachlorethylene (perchlorethylene) and chlorinated plastics
  • Heating tubes for monoethanolamine (MEA)
  • Sour-gas resistant components for oil and gas production
  • Transport rollers, steel pipes, ventilators and other installations in industrial furnaces
  • Industrial furnace muffles, in particular for heat treatment in N2 atmospheres
  • Thermal element protective conduits in nitriding and carburizing atmospheres
  • Pipes for dichloroethylene pyrolysis
  • Components in the production of uranium tetrafluoride from hydrofluoric acid
  • Production of caustic alkalis, especially with the presence of sulfur bonds
  • Reaction vessels and heat exchanger pipes in the production of vinyl chloride
  • Plant parts for the production of chlorinated and fluorinated hydrocarbons
  • Parts such as cladding tubes for control rods, reactor tanks and seals, steam dryers and separators in boiling water reactors
  • Pipes in TiCl4 evaporators in the production of TiO2
  • Vessels and piping used to contain caustic solutions
  • Aerospace components
  • Trays, baskets and fixtures for heat treatment plants, e.g. in carbonitriding environments
  • Refractory anchors, strand-annealing and radiant heater tubes, high-velocity gas burners, wire mesh belts in industrial furnaces
  • Isolating inserts in ammonia crackers and catalyst support grids in nitric acid production
  • High temperature components in automotive parts, e.g. manifolds, glow plug tubes or sensor caps
  • Combustion chambers in solid waste incinerators
  • Tube supports and ash-handling components
  • Components in exhaust gas systems
  • Oxygen preheaters
  • Equipment for the production of super phosphoric acid
  • Plants for the treatment of radioactive waste
  • Production pipe systems and linings of risers in oil production
  • Offshore industry and seawater exposed equipment
  • Sea water piping in shipbuilding
  • Stress corrosion cracking resistant compensators
  • Furnace linings
  • Tubes in geothermal power plants
  • Aerospace components (Bellows, expandion joints, Ducting, engine thrust reversers, turbine shroud rings)
  • Military (Navy ship exhaust systems, Submarine auxiliary propulsion systems)
  • Nuclear reactor core and control rod components
  • Developed and used for static and rotating components in aircraft turbines such as housings, mounting elements and turbine disks, where tough requirements apply for creep resistance and fatigue behavior, in particular for the rotating applications
  • Due to its properties, its good workability and efficiency, the material is additionally widely used for static and rotating components in the completion side of the Oil & Gas industry
  • Components in stationary gas turbines, rocket drives and spacecraft, motor vehicle turbo chargers
  • Fasteners (High-strength screws, springs and mounting elements, Heat-resistant tools in forgeries, extruders and separating shearers)
  • Aerospace (Jet engine components, High speed airframe parts, Wheels, buckets, spacers, high temperature bolts and fasteners)
  • Equipment for the manufacture of sulphuric acid and for processes based on sulphuric acid
  • Extraction columns in the production of amino acid and the processing of pharmaceuticals
  • Production of synthetic polymers
  • Equipment for food processing to protect against contamination
  • 800H/HT alloy has a wide range of applications in areas of elevated temperatures in furnace construction, in the chemical industry, in environmental protection equipment, in the automotive industry and in power plants
  • Typical applications include furnace muffles, containers, bins, holders in various heat treatment plants and burner components.
  • Because of their resistance to carburization and nitriding, the alloys are furthermore used in the areas of:
    • Steam/hydrocarbon reformers
    • Ethylene pyrolysis
    • Equipment for acetic anhydride and ketone production
  • Pipes, tubes and fittings in the oil and gas extraction
  • Heat exchangers, evaporators, washers, immersion pipes in phosphoric acid production
  • Evaporators
  • Scrubbers
  • Nuclear fuel reprocessing and waste handling
  • Immersion pipes in sea water cooled heat exchangers
  • Offshore piping. sour gas components
  • Components in sulfuric acid pickling plants like heating coils, vessels, boilers, baskets and chains
  • Food Industry
  • Paper and pulp industry, e.g. for digestion and bleaching tanks
  • Washers, agitators and wet ventilators in flue gas desulfurization systems
  • Equipment and components for acid gas applications
  • Reactors for acetic acid production
  • Sulfuric acid coolers
  • Methylene diphenyl isocyanate (MDI)
  • Manufacturing and processing of contaminated phosphoric acid
  • Substrates for high temperature superconductors
  • Heat exchangers, pressure vessels, tanks, evaporators
  • IPVF items
  • Scrubbers

Did you know

Nickel-based alloys have great qualities of high corrosion and high temperatures resistance. They can be resistant, resilient and withstand high temperatures by resisting creep. For example, nickel alloys for aerospace can withstand over 1832°F.

Nickel alloys can be classified in 3 categories :

  • Iron-nickel alloys: used for their physical properties (magnetism, elasticity and expansion);
  • Copper-nickel alloys (cupronickels): have great corrosion resistance in acid or marine environments, as well as good formability and weldability;
  • Superalloys: That’s an alloys family with a complex composition, often based on nickel (or titanium, iron, cobalt, etc.), with excellent resistance to dry corrosion at high temperatures and great mechanical properties (high yield strength, creep resistance).
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