杂原子单层引起的颗粒内部平面缺陷

Xingwei Liu , Haibin Wang , Hao Lu , Xuemei Liu , Zhi Zhao , Chao Hou , Lin Gu , Xiaoyan Song
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引用次数: 0

摘要

在TiC掺杂硬质合金陶瓷相中发现了一种新型的晶粒内平面缺陷。它的独特之处在于金属原子的单层稳定地存在于陶瓷晶粒中。平面缺陷是由分布在基体的某些晶面上的有序杂原子引起的,这些杂原子不同于已知的平面缺陷,如相界、晶界和孪晶界、层错和配位。对平面缺陷的组成、结构和晶体学进行了原子尺度上的详细表征,并通过建模评估了它们的能量状态和稳定性。发现Ti单层有助于新WC晶体沿其基面的法线方向成核。由于杂原子层的扰动,W和C原子的沉积偏离了完美晶格中占据的规则位置,导致晶粒结构中W–C排列的变化。实验证实,在含有晶粒内部平面缺陷的材料中,调整平面缺陷的分布密度可以获得最佳的综合力学性能,同时具有优异的强度和断裂韧性。这项研究提供了一种新的策略,通过在晶粒内部引入和剪裁平面缺陷来大大提高材料的力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Grain-interior planar defects induced by heteroatom monolayer

A new type of grain-interior planar defect in a ceramic phase in TiC doped cemented tungsten carbides was discovered. It is unique in that the monolayers of metal atoms exist stably in ceramic grains. The planar defects were induced by the ordered heteroatoms distributing on certain crystal planes of the matrix, which are distinct from the known planar defects such as phase-, grain-, and twin-boundaries, stacking faults, and complexions. Detailed characterization on the atomic scale was performed for the composition, structure, and crystallography of the planar defects, and their energy state and stability were evaluated by modeling. It was found that the Ti monolayer assists nucleation of the new WC crystal along the normal direction to its basal plane. Due to the disturbance of the heteroatom layer, the deposition of W and C atoms deviates from the regular sites occupied in the perfect crystal lattice, resulting in variations of the W–C arrangement in the grain structure. Experiments confirmed that tailoring the distribution density of the planar defects could give the best comprehensive mechanical performance with simultaneously outstanding strength and fracture toughness in the materials containing the grain-interior planar defects. This study provides a new strategy to greatly enhance the mechanical properties of materials by introducing and tailoring planar defects in the grain interiors.

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CiteScore
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