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NK5115 Nickel-Based Brazing Alloy Powder (BNi-12)

Catalog No. NK5115
Compositions Ni, Cr, P
Form Gray Powder
Particle Size 10-30, 15-45, 20-40 μm

Nickel-Based Brazing Alloy Powder (BNi-12) is a nickel brazing filler alloy that is high in chromium and free of boron, offering excellent resistance to oxidation along with improved flow characteristics. Stanford Advanced Materials (SAM) possesses extensive experience in the manufacturing and supply of high-quality Nickel-Based Brazing Alloy Powder (BNi-12).

Related products: Spherical Inconel X-750 Powder, Spherical Nimonic 80A Powder, Spherical Inconel 617 Powder, Nickel-Based Brazing Alloy Powder (BNi-1)

 

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Nickel-Based Brazing Alloy Powder (BNi-12)
Nickel-Based Brazing Alloy Powder (BNi-12)
Nickel-Based Brazing Alloy Powder (BNi-12)
Nickel-Based Brazing Alloy Powder (BNi-12)
Description
Specification
Technical Data Sheet

Nickel-Based Brazing Alloy Powder (BNi-12) Description

Nickel-Based Brazing Alloy Powder refers to a type of brazing material composed mainly of nickel and other elements such as copper, chromium, and boron. BNi-12 Powder is a nickel-chromium-phosphorus brazing alloy. It is used in high-temperature, high-strength, and oxidation applications. Typically, this alloy is used for joining super alloys, stainless steels, and alloys requiring good joint strength at high temperatures while maintaining good corrosion and oxidation-resistant characteristics. It provides better corrosion and oxidation resistance than its analog BNi-7.

Nickel-Based Brazing Alloy Powder is known for its high strength, good corrosion resistance, and ability to form strong metallurgical bonds between the base metals. It is commonly used in industries such as aerospace, automotive, and electronics, where high-performance joints are required.

Nickel-Based Brazing Alloy Powder (BNi-12) Specifications

EN ISO 17672

Ni 720

AWS A5.8

BNi-12

Melting Range

880-950

Nominal Chemical Composition (%)

Ni

Cr

P

Bal.

25

10

Nickel-Based Brazing Alloy Powder (BNi-12) Applications

Nickel-based brazing alloy powder (BNi-12) is commonly used for applications such as brazing honeycomb structures, thin-walled tube assemblies, and in nuclear applications where the addition of boron is not permitted. It is also suitable as a coating alloy to provide resistance against oxidation.

Nickel-Based Brazing Alloy Powder (BNi-12) Packaging

Our Nickel-Based Brazing Alloy Powder (BNi-12) is carefully handled during storage and transportation to preserve the quality of our product in its original condition.

FAQ: Nickel-Based Brazing Alloy Powder

1. What is Nickel-Based Brazing Alloy Powder?

Nickel-Based Brazing Alloy Powder is a powdered form of an alloy containing nickel as the primary metal. These alloys typically include other elements such as boron, silicon, or phosphorus to enhance flow characteristics, strength, and resistance to oxidation. Nickel-based brazing alloys are commonly used for high-temperature applications, especially where excellent strength, corrosion resistance, and thermal conductivity are required.

2. What are the typical applications of Nickel-Based Brazing Alloy Powder?

Nickel-Based Brazing Alloy Powders are used in a variety of applications, including: Brazing of High-Temperature Alloys: These powders are used in brazing high-temperature metal parts, such as turbine blades, heat exchangers, and other components in the aerospace and power generation industries.

Automotive: In automotive manufacturing, these powders are used to join parts made from high-strength steel and other materials.

Electronics: They are used to bond metals in electronic components that need to perform under high stress or temperature conditions.

Aerospace: Applied in the aerospace industry to join components exposed to high thermal and mechanical stresses.

Repair and Maintenance: Used in repairing damaged or worn parts that are exposed to high heat, such as engine components.

3. What are the key benefits of using Nickel-Based Brazing Alloy Powder?

High-Temperature Resistance: Nickel-based alloys offer superior strength and stability at elevated temperatures, making them ideal for high-stress applications.

Corrosion and Oxidation Resistance: They provide excellent resistance to corrosive environments, particularly in industries like aerospace, automotive, and power generation. Good Flow Characteristics: The alloys typically have low melting points and excellent fluidity, enabling smooth bonding between materials.

Durability: These alloys produce joints that can withstand mechanical and thermal stresses over long periods, increasing the lifespan of components.

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    15-53um

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