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TS1380 Alumina 3% Titanium Oxide Powder for Thermal Spraying

Catalog No. TS1380
Purity 99.95%+, 99.5%+, 98.0%+
CAS Number 1344-28-1, 13463-67-7
Appearance White powder
Particle Size Customized

Alumina 3% Titanium Oxide Powder is utilized in thermal spraying for creating coatings that offer improved wear resistance and thermal protection in industrial applications. Stanford Advanced Materials (SAM) provides high-quality powder consisting of alumina and 3% titanium oxide for thermal spraying.

Related products: Aluminum Oxide (Alumina, Al2O3), Aluminum Oxide 13% Titanium Oxide, Aluminum Silicate (Mullite, 3Al2O3•2SiO2), Aluminum Oxide 40% Titanium Oxide, etc.

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Description
Specification
Technical Data Sheet
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Alumina 3% Titanium Oxide for Thermal Spraying Description

Alumina 3% Titanium Oxide Powder combines the properties of alumina and titanium oxide to offer enhanced characteristics suitable for thermal spraying applications. This powder is known for its ability to create coatings that exhibit improved wear resistance, corrosion resistance, and thermal insulation properties. It is utilized extensively in industries requiring durable surface protection against abrasive wear, chemical corrosion, and high temperatures. The blend of alumina and titanium oxide ensures robust performance in diverse environments, making it a valuable choice for extending the service life and reliability of critical components in industrial sectors such as aerospace, automotive, energy, and manufacturing.

Alumina 3% Titanium Oxide for Thermal Spraying Specification

Purity

 99.95%+, 99.5%+, 98.0%+

Particle Size

 Customized

Manufacture

 Fused & Crushed

Alumina 3% Titanium Oxide for Thermal Spraying Advantages

-Resists abrasion, sliding wear, friction, oxidation, acids, alkalis
-Tougher than pure alumina
-Service up to 1100 °C (2010 °F)

Alumina 3% Titanium Oxide for Thermal Spraying Applications

1. Surface Protection: Creating durable coatings that resist wear, abrasion, and corrosion in industrial components and machinery.

2. High-Temperature Applications: Providing thermal insulation and protection against thermal cycling in aerospace, gas turbine engines, and other high-temperature environments.

3. Chemical Resistance: Protecting against chemical corrosion in harsh industrial and marine environments.

4. Energy Sector: Used in power generation equipment for enhancing durability and performance under demanding operating conditions.

5. Automotive Industry: Applied in automotive components to improve resistance to wear and thermal stress.

6. Manufacturing: Utilized for coating tools and machinery parts to extend their service life and maintain operational efficiency.

Alumina 3% Titanium Oxide for Thermal Spraying Packaging

Our Powder is clearly tagged and labeled externally to ensure efficient identification and quality control. Great care is taken to avoid any damage which might be caused during storage or transportation.

FAQs

Q1: What is Alumina 3% Titanium Oxide Powder?

A1: Alumina 3% Titanium Oxide (Al2O3-3TiO2) powder is a ceramic-based thermal spray material used for wear-resistant and corrosion-resistant coatings. The combination of alumina and titania enhances toughness, adhesion, and thermal stability, making it ideal for demanding applications.

Q2: What are the main applications of this powder?

A2: This thermal spray powder is widely used in:

Aerospace (engine components, turbine blades)

Automotive industry (piston rods, brake discs, wear-resistant coatings)

Industrial machinery (hydraulic cylinders, pump components, textile equipment)

Medical devices (implants, surgical tools requiring biocompatible coatings)

Q3: What are the advantages of using Alumina 3% Titania coatings?

A3: High wear resistance – Provides excellent protection against abrasion and erosion.

Improved toughness – The addition of titanium oxide enhances coating durability.

Excellent corrosion resistance – Suitable for harsh environments.

High-temperature stability – Withstands extreme heat and oxidation.

Smooth surface finish – Reduces friction and enhances performance.

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