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The macroscopic behavior of polycrystalline materials is influenced by the local variation of properties caused by the presence of impurities and defects. The effect of these impurities at the atomic scale can either embrittle or strengthen…

材料科学 · 物理学 2014-01-23 M. Rajagopalan , M. A. Tschopp , K. N. Solanki

Light elements play an important role in influencing the macroscale properties of engineering alloys through grain boundary (GB) segregation phenomena. However, the scarcity and scattered nature of ab initio datasets for light elements in…

材料科学 · 物理学 2026-05-05 Han Lin Mai , Xiang-Yuan Cui , Tilmann Hickel , Simon P. Ringer , Jörg Neugebauer

Elements with low thermal neutron absorption cross-sections are ideal for enhancing structural materials in nuclear systems. In this study, We systematically investigate the segregation and co-segregation behaviors of eleven elements at the…

材料科学 · 物理学 2025-11-26 Guanlin Lyu , Yuguo Sun , Panpan Gao , Ping Qian

Grain boundary (GB) segregation is a powerful approach for optimizing the thermal and mechanical properties of metal alloys. In this study, we report significant GB interstitial segregation in a representative substitutional binary alloy…

材料科学 · 物理学 2025-05-27 Zuoyong Zhang , Chuang Deng

Grain boundary segregation controls properties of polycrystalline materials such as their susceptibility to intergranular cracking. It is of interest to engineer alloy chemistry to enhance grain boundary cohesion to prevent intergranular…

材料科学 · 物理学 2025-02-04 Nutth Tuchinda , Gregory B. Olson , Christopher A. Schuh

Molecular static simulations of 190 symmetric tilt grain boundaries in HCP metals were used to understand the energetics of vacancy segregation, which is important for designing stable interfaces in harsh environments. Simulation results…

材料科学 · 物理学 2014-01-06 M. A. Bhatia , K. N. Solanki

The segregation and ordering behavior of light interstitials (B, C, and N) in Cr30-Ni is examined, as these elements are critical for grain boundary stability and high-temperature mechanical performance in Ni-based superalloys. Using Monte…

材料科学 · 物理学 2025-07-22 Tyler D. Doležal , Rodrigo Freitas , Ju Li

The effects of micro-alloying element, vanadium, on a bcc Fe \Sigma 3(111)[1-10] symmetric tilt grain boundary strength are studied using density functional theory calculations. The lowest energy configuration of the grain boundary…

材料科学 · 物理学 2012-01-31 Sungho Kim , Seong-Gon Kim , Mark F. Horstemeyer , Hongjoo Rhee

Amorphous complexions have recently been demonstrated to simultaneously enhance the ductility and stability of certain nanocrystalline alloys. In this study, three quinary alloys (Cu-Zr-Hf-Mo-Nb, Cu-Zr-Hf-Nb-Ti, and Cu-Zr-Hf-Mo-W) are…

材料科学 · 物理学 2022-02-02 Charlette M. Grigorian , Timothy J. Rupert

Engineering structure of grain boundaries (GBs) by solute segregation is a promising strategy to tailor the properties of polycrystalline materials. Theoretically it has been suggested that solute segregation can trigger phase transitions…

材料科学 · 物理学 2025-01-28 Vivek Devulapalli , Enze Chen , Tobias Brink , Timofey Frolov , Christian H. Liebscher

Impurities are often driven to segregate to grain boundaries, which can significantly alter a material's thermal stability and mechanical behavior. To provide a comprehensive picture of this issue, the influence of a wide variety of common…

材料科学 · 物理学 2020-01-17 Zhifeng Huang , Fei Chen , Qiang Shen , Lianmeng Zhang , Timothy J. Rupert

Molecular dynamics simulations of 50 Fe grain boundaries were used to understand their interaction with vacancies and self-interstitial atoms at all atomic positions within 20 Angstroms of the boundary, which is important for designing…

介观与纳米尺度物理 · 物理学 2013-09-02 M. A. Tschopp , M. F. Horstemeyer , F. Gao , X. Sun , M. Khaleel

Grain boundaries often exhibit ordered atomic structures. Increasing amounts of evidence have been provided by transmission electron microscopy and atomistic computer simulations that different stable and metastable grain boundary…

材料科学 · 物理学 2023-02-14 Tobias Brink , Lena Langenohl , Hanna Bishara , Gerhard Dehm

There are still debates regarding the mechanisms that lead to hot cracking in parts build by additive manufacturing (AM) of non-weldable Ni-based superalloys. This lack of in-depth understanding of the root causes of hot cracking is an…

Grain boundary segregations were investigated by Atom Probe Tomography in an Al-Mg alloy, a carbon steel and Armco\trademark Fe processed by severe plastic deformation (SPD). In the non-deformed state, the GBs of the aluminium alloy are Mg…

Grain boundaries (GBs) are defects originating in multi-crystalline silicon during crystal growth for device Si solar cell fabrication. The presence of GBs changes the coordination of Si, making it advantageous for charge carriers to…

材料科学 · 物理学 2022-01-20 Rita Maji , Julia Contreras-García , Nathalie Capron , Elena Degoli , Eleonora Luppi

Yttrium and its alloys are promising materials for high-tech applications, particularly in aerospace and nuclear reactors. The doping of metallic elements at grain boundaries can significantly influence the stability, strength, and…

材料科学 · 物理学 2024-11-20 Guanlin Lyu , Yuguo Sun , Ping Qian , Panpan Gao

Solute segregation in materials with grain boundaries (GBs) has emerged as a popular method to thermodynamically stabilize nanocrystalline structures. However, the impact of varied GB crystallographic character on solute segregation has…

材料科学 · 物理学 2025-03-10 Lydia Harris Serafin , Ethan R. Cluff , Gus L. W. Hart , Eric R. Homer

Nanostructured materials consist of crystalline and grain boundary components. In the simplest case, both components are chemically identical. Here, we present the results of a study of a system consisting of a crystalline component built…

材料科学 · 物理学 2009-10-31 W. Krauss , H. Gleiter

Grain boundaries play a critical role in applications of superconducting Nb$_3$Sn: in dc applications, grain boundaries preserve the material's inherently high critical current density by pinning flux, while in ac applications grain…

材料科学 · 物理学 2020-11-12 Michelle M. Kelley , Nathan S. Sitaraman , Tomás A. Arias
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