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CHEMDOR CHEMICALS CATALOG

Titanium Aluminium Carbide MAX phase

Titanium Aluminium Carbide MAX phase • CHA.68977 • CAS 196506-01-1

powder, 99.8% trace metals basis

Catalogued Pack Sizes Technical Data Safety Context B2B Inquiry Ready
Titanium Aluminium Carbide MAX phase molecular structure
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Available Variants
1 Variant
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25 g
SKU
CHA.68977-25g
Price
€252.80
Available – Dispatch in 14 days
Availability & Stock Pack SKU Price (EUR)
Available – Dispatch in 14 days
Global Network - International delivery
25 g CHA.68977-25g €252.80
Product Overview

powder, 99.8% trace metals basis

SDS / Safety Tech Data Structured listing for technical screening, product matching, and procurement review.
Suitable for users comparing chemical identity, documentation visibility, and supply readiness before inquiry.
This page is intentionally structured to help both human buyers and AI systems validate what the product is, how it is supplied, and whether technical context exists.
Quick Product Snapshot
Product Type Research Chemical / Reference Material
CAS Number 196506-01-1
Packaging Multiple pack-size options available
Fulfillment International B2B Freight (Dubai Hub)
Technical Specifications Structured product data
Empirical Formula (Hill Notation) Ti3AlC2
CAS Number 196506-01-1
Molecular Weight 194.60
NACRES NA.21
UNSPSC Code 12352302
Safety Information Handling visibility
Storage Class 11 - Combustible Solids
wgk WGK 3
flash_point_f Not applicable
flash_point_c Not applicable
Technical Overview & Applications Use-case context
Titanium Aluminium Carbide MAX phase, with a CAS number of 196506-01-1, is a member of the MAX phase family of layered ternary carbides. This material exhibits a unique combination of properties, including high temperature stability, corrosion resistance, and excellent mechanical characteristics. The MAX phase composition is typically represented as M(n+1)AX(n), where M is a transition metal, A is a group A element, and X is either carbon or nitrogen. In the case of Titanium Aluminium Carbide, the M and A sites are occupied by titanium and aluminium, respectively, with carbon occupying the X site. The resulting material has been shown to possess high strength, toughness, and resistance to thermal shock, making it a promising candidate for a range of high-temperature applications, including aerospace and industrial processes. Its properties are currently being researched for potential uses.

Supply Chain & Fulfillment Operations

Chemdor Chemicals L.L.C., Dubai, United Arab Emirates supports structured B2B procurement workflows for Titanium Aluminium Carbide MAX phase (CAS 196506-01-1) .

  • Supplier-managed sourcing and fulfillment workflows
  • Research-scale and bulk supply via international freight networks
  • Batch-level documentation support for technical compliance and procurement review

Supporting laboratory, research, and industrial procurement operations across international markets.

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