Ti3AlC2

98% 200 mesh

Reagent Code: #94833
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CAS Number 196506-01-1

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Formula Ti₃AlC₂
inventory_2 Storage & Handling
Storage room temperature, dry

description Product Description

Ti3AlC2 is widely used in high-temperature applications due to its excellent thermal stability and resistance to oxidation. It is employed in the aerospace industry for components such as turbine blades and heat shields, where it can withstand extreme conditions without degrading. The material is also utilized in the manufacturing of protective coatings for equipment exposed to harsh environments, such as chemical reactors and industrial furnaces. Additionally, Ti3AlC2 is being explored for use in nuclear reactors as a structural material, thanks to its ability to resist radiation damage. Its self-lubricating properties make it suitable for applications in mechanical systems where reduced friction is critical. Furthermore, it is being investigated for potential use in electronic devices, particularly in sensors and capacitors, due to its unique combination of electrical conductivity and mechanical strength.

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Test Parameter Specification
Appearance Solid
Purity 97.5
Particle Size 150-250 mush
XRD Conforms to Structure

shopping_cart Available Sizes & Pricing

Size Availability Unit Price Quantity
inventory 2g
10-20 days ฿1,160.00
inventory 10g
10-20 days ฿3,780.00
inventory 25g
10-20 days ฿7,560.00
inventory 100g
10-20 days ฿22,160.00
inventory 250g
10-20 days ฿42,800.00
Ti3AlC2
Ti3AlC2 is widely used in high-temperature applications due to its excellent thermal stability and resistance to oxidation. It is employed in the aerospace industry for components such as turbine blades and heat shields, where it can withstand extreme conditions without degrading. The material is also utilized in the manufacturing of protective coatings for equipment exposed to harsh environments, such as chemical reactors and industrial furnaces. Additionally, Ti3AlC2 is being explored for use in nuclear reactors as a structural material, thanks to its ability to resist radiation damage. Its self-lubricating properties make it suitable for applications in mechanical systems where reduced friction is critical. Furthermore, it is being investigated for potential use in electronic devices, particularly in sensors and capacitors, due to its unique combination of electrical conductivity and mechanical strength.
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