Haynes® HR-160 Round Bars (UNS N12160, ASTM B572) are a solid-solution-strengthened nickel-cobalt-chromium-silicon alloy engineered for resistance to a broad range of high-temperature corrosion attack, particularly sulfidation and chlorination in mixed-gas waste-to-energy environments where conventional heat-resistant grades attack quickly.

HR-160's high silicon content builds a protective oxide that holds up under sulfidizing and chlorine-bearing atmospheres where chromia-forming alloys break down, which is why it is specified for waste-to-energy boiler hardware and other mixed-gas high-temperature service. It is furnished in the solution-annealed condition and is covered under ASME Section VIII Division 1 for construction up to 815°C (1500°F).

Aurico Alloys LLP supplies Haynes® HR-160 round bars to ASTM B572, with full material test certificates to EN 10204 3.1, for waste-to-energy, chemical processing and general high-temperature industrial use.

Standard bar and rod diameters are quoted against the mill programme in force at the time of enquiry - send us your required size and quantity and we will confirm availability and lead time.

Close-up of a Haynes HR-160 round bar with a machined end

High-quality Haynes® HR-160 Round Bar ready for industrial use.

Specification Overview

SupplierAurico Alloys LLP - Haynes HR-160 round bar supplier/exporter
GradeHaynes® HR-160 (UNS N12160)
StandardsASTM B572 (bar or rod)
Diameter RangeQuoted against the mill programme in force at the time of enquiry
FinishHot or cold finished, solution annealed, per specification
DeliveryStock and indent, cut to length, MTC EN 10204 3.1, export ready

Equivalent Grades & Standards

Equivalent designations and physical constants for Haynes HR-160
PropertyValue
UNS numberN12160
Werkstoff / EN number2.4880
EN designationNiCo29Cr28Si
Density8.08 g/cm3
Rod and bar specificationASTM B572

Identifiers and physical constants for Haynes HR-160. A dash means no such designation is published for this grade.

Stock & Product Availability

Aurico Alloys LLP supplies Haynes® HR-160 round bars to waste-to-energy and chemical processing equipment fabricators across India and abroad, with full traceability and MTC EN 10204 3.1 on every order.

Chemical Composition

Chemical composition for Haynes HR-160
ElementMin (%)Max (%)
Nickel (Ni)—Balance
Cobalt (Co)29 nominal
Chromium (Cr)28 nominal
Iron (Fe)—2
Silicon (Si)2.75 nominal
Manganese (Mn)0.5 nominal
Titanium (Ti)0.5 nominal
Carbon (C)0.05 nominal
Tungsten (W)—1
Molybdenum (Mo)—1
Niobium (Nb)—1
Aluminium (Al)—0.4

Composition for Haynes HR-160. Figures given as a range or a maximum are limits and those marked nominal are not; none of them are measured values for a lot; the mill test certificate supplied with your order states the actual analysis.

Mechanical Properties

PropertyTypical Value
Tensile Strength, solution annealed, room temperature~758 MPa (110 ksi)
Yield Strength, solution annealed, room temperature~353 MPa (51.2 ksi)
Elongation, room temperature~63%
Maximum Service Temperature (ASME Sec. VIII Div. 1)815°C (1500°F)

Sourced from Haynes International's published HR-160 data; density is in the Equivalent Grades table above (the mill publishes no melting range for this grade).

Applications

  • Waste-to-Energy: Boiler hardware and components exposed to sulfidizing and chlorine-bearing combustion gases.
  • Chemical Processing: Fixtures and components in high-temperature corrosive service.
  • General High-Temperature: Construction to ASME Section VIII Division 1 up to 815°C (1500°F).

Global Export Destinations

We ship worldwide from Mumbai. See every destination we export to on our export markets page.

Domestic Supply Network

We deliver across India from our Mumbai stockyard. See every city we supply on our supply locations page.

Conclusion

Haynes® HR-160 round bars from Aurico Alloys LLP bring high-temperature sulfidation and chlorination resistance for waste-to-energy and process applications, backed by ASTM B572 certification and MTC EN 10204 3.1 traceability. Talk to us about your requirement and we will confirm size, condition and lead time against the current mill programme.