Achieving Superior Strength-ductility-conductivity Combination in TiB2p 6201 Composites via Particle Rotation and Sub-grain Refinement

Publikationen: Beitrag in FachzeitschriftArtikelForschung(peer-reviewed)

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Achieving Superior Strength-ductility-conductivity Combination in TiB2p 6201 Composites via Particle Rotation and Sub-grain Refinement. / Zhao, Kai ; Li, Xinchen ; Liu, Xiangting et al.
in: Advanced engineering materials, 2024.

Publikationen: Beitrag in FachzeitschriftArtikelForschung(peer-reviewed)

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@article{b1a02bf3d7ee45db957a40867e04167e,
title = "Achieving Superior Strength-ductility-conductivity Combination in TiB2p 6201 Composites via Particle Rotation and Sub-grain Refinement",
author = "Kai Zhao and Xinchen Li and Xiangting Liu and Shuyan Shi and Enyu Guo and Huijun Kang and Zhigang Hao and Jiehua LI and Yubo Zhang and Zongning Chen and Tongmin Wang",
year = "2024",
language = "English",
journal = " Advanced engineering materials",
issn = "1527-2648",
publisher = "Wiley-VCH ",

}

RIS (suitable for import to EndNote) - Download

TY - JOUR

T1 - Achieving Superior Strength-ductility-conductivity Combination in TiB2p 6201 Composites via Particle Rotation and Sub-grain Refinement

AU - Zhao, Kai

AU - Li, Xinchen

AU - Liu, Xiangting

AU - Shi, Shuyan

AU - Guo, Enyu

AU - Kang, Huijun

AU - Hao, Zhigang

AU - LI, Jiehua

AU - Zhang, Yubo

AU - Chen, Zongning

AU - Wang, Tongmin

PY - 2024

Y1 - 2024

M3 - Article

JO - Advanced engineering materials

JF - Advanced engineering materials

SN - 1527-2648

ER -