Deformability, inherent mechanical properties and chemical bonding of Al11Nd3 in Al-Nd target material
Xue-Qian Wang, Run-Xin Song, Xu Guan, Shuan Li, Shuchen Sun, Hongbo, Yang, Daogao Wu, Ganfeng Tu, Song Li, Hai-Le Yan, Liang Zuo

TL;DR
This study combines experimental and theoretical methods to analyze the microstructure, mechanical properties, and chemical bonds of Al11Nd3 in Al-Nd alloys, aiming to improve target material quality for electronic applications.
Contribution
It provides a comprehensive understanding of the microstructure, deformability, and chemical bonding of Al11Nd3, which was previously not well characterized.
Findings
Al-3wt%Nd alloy consists of α-Al matrix and Al11Nd3 phases.
Eutectic microstructure transforms during deformation, but Al11Nd3 morphology remains stable.
Al11Nd3 exhibits high hardness and brittleness due to ionic Nd-Al bonds and weak covalent Al-Al bonds.
Abstract
Microstructure uniformity of the Al-Nd target materials with Al11Nd3 significantly affects the performance of the fabricated film, which is widely used as wiring material in largesize thin-film transistor liquid crystal display (TFT-LCD) panels. Understanding the inherent mechanical properties and chemical bonds of Al11Nd3 is crucial for homogenizing the Al-Nd target. Here, by a combined experimental and ab-initio theoretical study, the microstructure and deformability of the Al-3wt%Nd alloy and the inherent mechanical properties and chemical bonds of Al11Nd3 are investigated comprehensively. The Al-3wt%Nd alloy is composed of the pre-eutectic {\alpha}-Al matrix and the eutectic {\alpha}-Al and a high stable {\alpha}-Al11Nd3 phases. During the plastic deformation, the eutectic microstructure transforms from a cellular to a lamellar shape, while the morphology and dimension of…
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Taxonomy
TopicsBoron and Carbon Nanomaterials Research · Intermetallics and Advanced Alloy Properties · Quasicrystal Structures and Properties
