Unexpectedly large intra-grain crystal rotations in CVD-grown (Ti,Al)N coatings and their relation to internal nanolamella structures
Artikel i vetenskaplig tidskrift, 2026

The crystal growth direction within a single grain is typically assumed to be uniform. However, this study presents the first observation of spontaneous intra-grain crystal rotations in (Ti,Al)N grains with an internal nanolamella structure. The rotation occurs spontaneously during grain growth in a chemical vapor deposition process. The crystal rotations exhibit a highly symmetrical pattern linked to the (Ti,Al)N grain morphology: a pyramid comprising three {001}-faceted domains. The crystal lattices systematically rotate within each domain toward the pyramid tip, with the largest rotations concentrated at the pyramid edges. Within a single (Ti,Al)N grain, the crystal orientation can shift up to 15° from base to tip, with a typical gradient of 1°/µm. The rotation gradient reaches a peak of 3 – 4°/µm in the horizontal direction near the pyramid edges. This phenomenon is attributed to the high density of grown-in dislocations, arising from interface mismatches between the (Ti,Al)N grain domains and hexagonal AlN nano-precipitates that form at the domain boundaries. Analysis of three (Ti,Al)N samples with varying nanolamella structures reveals that the presence of more nanolamellae corresponds to larger crystal rotations. These findings provide useful insights into controlling crystal rotation and its potential influence on material properties, opening new avenues for materials design and optimization.

Författare

Ren Qiu

Chalmers, Fysik, Mikrostrukturfysik

Olof Bäcke

Walter

Chalmers, Fysik, Mikrostrukturfysik

Dirk Stiens

Walter

Hans-Olof Andrén

Chalmers, Fysik, Mikrostrukturfysik

Mats Halvardsson

Chalmers, Fysik, Mikrostrukturfysik

Materials and Design

0264-1275 (ISSN) 1873-4197 (eISSN)

Vol. 266 116146

CVD 2.0 - En ny generation av hårda beläggningar

Stiftelsen för Strategisk forskning (SSF) (RMA15-0048), 2016-05-01 -- 2021-06-30.

Ämneskategorier (SSIF 2025)

Materialkemi

Oorganisk kemi

Infrastruktur

Chalmers materialanalyslaboratorium

Styrkeområden

Materialvetenskap

DOI

10.1016/j.matdes.2026.116146

Mer information

Senast uppdaterat

2026-05-18