Hastelloy B3
Hastelloy B3 is a nickel‑molybdenum alloy with improved thermal stability and resistance to reducing acids. It resists corrosion, cracking and precipitation better than B2, with excellent toughness. Widely used in chemical reactors, acid production, piping, valves and equipment handling strong corrosive media.
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Hastelloy B3

Hastelloy B3
BrandTISCO SHANXI
Alloy ProductsPlate, Coil, Pipe, Bar, Pipe Fittings, Steel Profile, etc.
Titanium StandardASTM/ASME SB 168, ASTM/ASME SB 424, ASTM/ASME SB 443, etc.
Monel StandardASTM B163, ASTM B407, ASTM B444, ASTM B751, etc.
Inconel StandardASTM B348A/B26/B337/338, ASTM F136, ASTM F67, AMS4928, etc.
Incoloy StandardASTM B409/B514/B751/B163/B407, ASMEN-20
BS 3074NA15, ASTM A240/A480, ASMESA 480, etc.
Hastelloy StandardASTM B575, ASTM B619, ASTM B622, ASTM B626
ASTM B574, ASTM B366, etc.
Nickel StandardASTMB164, ASTM B564, ASTM B127, ASTM B165, etc.

Product Introduction

Hastelloy B-3 is a nickel-molybdenum alloy (approximately 65 percent nickel, 28.5 percent molybdenum, 1.5 percent iron, with controlled additions of chromium, aluminum, and manganese). It is an improved version of Hastelloy B-2, offering outstanding resistance to pure reducing acids while eliminating the susceptibility to intermetallic phase embrittlement that can occur in B-2 during welding or thermal exposure.


The nominal chemical composition is: nickel 65.0–71.0 percent, molybdenum 27.0–32.0 percent, iron 1.0–3.0 percent, chromium 1.0–3.0 percent, manganese up to 3.0 percent, aluminum up to 0.5 percent, and smaller amounts of carbon, silicon, and cobalt.


Key mechanical properties (typical, annealed condition):

● Tensile strength: 760–860 MPa

Yield strength (0.2% offset): 350–450 MPa

Elongation: 40–50 percent

Hardness: 85–95 HRB

Density: 9.22 g/cm³


Hastelloy B-3 offers exceptional resistance to hydrochloric acid at all concentrations and temperatures up to boiling, as well as to sulfuric, phosphoric, acetic, and other reducing acids. Unlike B-2, B-3 maintains excellent ductility and corrosion resistance even after exposure to temperatures in the 650–800°C range, making it far more forgiving during welding and hot forming. The alloy remains resistant to stress corrosion cracking and pitting in reducing environments. However, it should not be used in oxidizing acids (e.g., nitric acid) or in the presence of ferric or cupric ions.


Common standards: ASTM B333 (plate, sheet, strip), B335 (rod, bar), B622 (seamless pipe and tube), B619 (welded pipe), B626 (welded tube), ASME SB-333, SB-335, SB-622, and NACE MR0175/ISO 15156 for sour service.


Typical applications include:

Chemical processing: reactors, heat exchangers, distillation columns, valves, and piping for hydrochloric acid service.

Pharmaceutical and fine chemical synthesis: equipment handling HCl, H₂SO₄, or other reducing acids.

Acetic acid and organic acid production.

Flue gas desulfurization (FGD) systems in reducing scrubber environments.


Comparison with Hastelloy B-2: B-3 has significantly better thermal stability, resisting the formation of brittle Ni₄Mo intermetallic phases during welding and high-temperature exposure. It also offers improved resistance to localized corrosion in certain environments. For new designs, B-3 is generally preferred over B-2. For mixed acids containing oxidizing species, Hastelloy C-276 or C-22 are more suitable.


Selection guidance: Choose Hastelloy B-3 for severe reducing acid service, particularly hydrochloric acid at any concentration and temperature, where fabricability and long-term thermal stability are required. For purely reducing environments without welding concerns, B-2 may still be used, but B-3 is the modern, more robust alternative. For oxidizing or mixed acids, select a C-series alloy.

Product Type

  • Alloy-Coil
    Alloy-Coil
  • Alloy-Pipe
    Alloy-Pipe
  • Alloy-Bar
    Alloy-Bar
  • Alloy-Fittings
    Alloy-Fittings
  • Alloy-Angle
    Alloy-Angle
  • Alloy-Channel
    Alloy-Channel
  • Alloy-Plate
    Alloy-Plate

Application Industry

● Titanium: Widely used in aerospace, marine engineering, and chemical equipment. It offers excellent corrosion resistance, high strength, and lightweight performance, ideal for seawater systems, medical implants, and pressure vessels.


Monel: Mainly applied in marine, oil and gas, and seawater treatment systems. With outstanding resistance to seawater corrosion and oxidation, it is suitable for pumps, valves, propellers, and heat exchangers.


● Inconel: Used in high-temperature environments such as aerospace engines, gas turbines, and industrial furnaces. It maintains strength and oxidation resistance at extreme heat, perfect for turbine blades and boiler components.


Incoloy: Applied in petrochemical plants, heat treatment furnaces, and acid processing equipment. It resists high-temperature oxidation and corrosive media, widely used in pipes, heaters, and reactor parts.


Hastelloy: Serves in severe corrosive environments including chemical processing, flue gas desulfurization, and acid production. It withstands strong acids, chlorine, and harsh chemicals for reactors and pipelines.


Nickel: Used in electronics, electroplating, batteries, and corrosion-resistant parts. As a base metal for alloys, it provides good ductility and conductivity for industrial and electrical applications.

  • Aerospace & High-Temperature Parts
    Aerospace & High-Temperature Parts
  • 6e49b644e368e940933676e8b2421816
    Chemical & Corrosive Processing
  • Marine & Seawater Engineering
    Marine & Seawater Engineering
  • General Industrial & Manufacturing
    General Industrial & Manufacturing

Inspection Report

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    ISO9001
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    SGS
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    HQTS
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    TUV

Packaging & Shipping

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CONTACT US

TISCO SHANXI STAINLESS STEEL CO., LTD.

E-mail: admin@tiscosxbxg.com

WhatsApp/WeChat/Mobile: +86 133 7050 6305

Add: No.2-1, Jiancaoping Street, Taiyuan, Shanxi Province.

Office Address: Plot A-4, Huazhi Vientiane World, No. 2 Maolingshan Road, Lixia District, Jinan City, Shandong Province.

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