Hastelloy Alloy B2 Chemical Composition, Grades, Charts and PDF Online

Hastelloy Alloy B2 receives a reputation of a superior material able to withstand reducing agents such as hydrogen chloride gas, sulfuric acetic and phosphoric acids. Its chemical components basically include nickel, molybdenum, and chromium, making it has good ability to withstand corrosion. The alloy is a product in many different grades with each grade itself quiet sophisticated in nature and the various industrial applications. To become familiar with the construction principle, levels, and tags is of great importance for engineers and producers linked with chemical processing, pharmaceuticals, and oil and gas industries. We access detailed information through tables, charts and PDF documents online which makes it easier to do various research work and decision making thus ensuring that we make good use of the superior material in highly sophisticated situations. Check out multidimensional research on Hastelloy Alloy B2 to enhance its employment in numerous industrial positions.

Hastelloy Alloy B2 Chemical Composition And Grade Table

Hastelloy Alloy B2 is widely praised for its outstanding ability to resist hydrochloric, sulfuric acids and other strong reducing chemicals. The outstanding chemical structure guarantees top function in hostile conditions so it is widely used in industry for different applications. This nickel-molybdenum alloy, through the presence of nickel, molybdenum, chromium, iron, tungsten, among other elements, exhibits very high corrosion resistance properties. The grade table pinpoints specific fractions of these components to ensure that materials are of high-quality and reliability in Hastelloy Alloy B2 production.

Hastelloy Alloy B2 Composition Table
Elements Ni Mo Fe Cr C Si Mn
Min (%) - 26.0 - - - - -
Max (%) Balance 30.0 2.0 1.0 0.02 0.10 1.0

Advantages and Disadvantages of Hastelloy Alloy B2

    Advantages:

  • Excellent Corrosion Resistance: Demonstrates an unparalleled level of tolerance to various types of corrosive atmospheres, such as acid and chloride.

  • High Temperature Stability: It retains the mechanical characteristics when heated and thus is compatible with high-temperature operating conditions.

  • Weldability: B2 can be welded using various methods, thus allowing flexibility in its production process.

  • Good Fabricability: The material also exhibits good formability and also possess good machinability for ease of manufacturing.

    Disadvantages:

  • Cost: That is still relatively expensive in comparison with some other nickel base alloys and this has the effect of restricting much the use of the alloy in applications that are highly competitive on cost.

  • Limited Availability: May cost more than alloy steel because it is not very common thus the long time it may take to have it delivered.

  • Sensitivity to Oxidizing Environments: Prone to be vulnerable to attack when used under conditions that give rise to oxidation, and this calls for close monitoring of the operational conditions.

  • Embrittlement at High Temperatures: May undergo grain coarsening, embrittlement in specific situations at temperatures above 700 °C(1292 °F), restricting its employment in high-temperature applications.

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