World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
55
Citations
10278
World Ranking
915
National Ranking
40

Overview

Anh Kiet Tieu is affiliated with the University of Wollongong in Australia. Their research primarily focuses on engineering and materials science, with significant contributions in mechanical engineering, mechanics of materials, and materials chemistry. The scientific work also extends into aerospace engineering and atomic and molecular physics, reflecting a broad interdisciplinary approach.

The researcher has published extensively on topics related to lubricants and their additives, tribology and wear analysis, and metal and thin film mechanics. Other areas of investigation include advanced materials and composites, high entropy alloys studies, high-temperature coating behaviors, and diamond as well as carbon-based materials research.

Key recent papers authored or coauthored by Anh Kiet Tieu include:

  • Investigation into reciprocating dry sliding friction and wear properties of bulk CoCrFeNiMo high entropy alloys fabricated by spark plasma sintering and subsequent cold rolling processes: Role of Mo element concentration, 2020, Wear
  • Nano-coupled heterostructure induced excellent mechanical and tribological properties in AlCoCrFeNi high entropy alloy, 2020, Tribology International
  • Effects of oxidation on friction and wear properties of eutectic high-entropy alloy AlCoCrFeNi2.1, 2021, Tribology International
  • Tribological performance of a cost-effective CrFeNiAl0.3Ti0.3 high entropy alloy based self-lubricating composite in a wide temperature range, 2022, Tribology International
  • Surface characteristics and wettability of superhydrophobic silanized inorganic glass coating surfaces textured with a picosecond laser, 2020, Applied Surface Science

The scientist frequently publishes in venues such as:

  • Tribology International
  • Wear
  • Applied Surface Science
  • Surface and Coatings Technology
  • Friction

Frequent collaborators in their research include:

  • Hongtao Zhu
  • Sang T. Pham
  • Guanyu Deng
  • Long Wang
  • Bach H. Tran

Across their career, Anh Kiet Tieu has contributed to approximately 265 scientific publications covering a diverse range of engineering and materials science topics, signifying a productive research output within their fields of study.

Best Publications

  • Effects of normal load and velocity on the dry sliding tribological behaviour of CoCrFeNiMo0.2 high entropy alloy

    Guanyu Deng;Anh Kiet Tieu;Xiaodong Lan;Lihong Su

  • Acoustic emission-based condition monitoring methods: Review and application for low speed slew bearing

    Wahyu Caesarendra;Wahyu Caesarendra;Buyung Kosasih;Anh Kiet Tieu;Hongtao Zhu

  • Effect of carbides on the creep properties of a Ni-base superalloy M963

    L.Z. He;L.Z. He;Q. Zheng;X.F. Sun;H.R. Guan

  • An overview of inorganic polymer as potential lubricant additive for high temperature tribology

    Shanhong Wan;A. Kiet Tieu;Yana Xia;Hongtao Zhu

  • Investigation into reciprocating dry sliding friction and wear properties of bulk CoCrFeNiMo high entropy alloys fabricated by spark plasma sintering and subsequent cold rolling processes: Role of Mo element concentration

    Guanyu Deng;Anh Kiet Tieu;Lihong Su;Pei Wang;Pei Wang

  • Finite element simulation of cold rolling of thin strip

    Z.Y. Jiang;A.K. Tieu;X.M. Zhang;C. Lu

  • Toward a heuristic optimum design of rolling schedules for tandem cold rolling mills

    D.D. Wang;A.K. Tieu;F.G. de Boer;B. Ma

  • Oxide scales growth of low-carbon steel at high temperatures

    Weihua Sun;A.K. Tieu;Zhengyi Jiang;Hongtao Zhu

  • Investigation of ultrafine grained AA1050 fabricated by accumulative roll bonding

    Lihong Su;Cheng Lu;Huijun Li;Guanyu Deng

  • Tribological performance of a cost-effective CrFeNiAl0.3Ti0.3 high entropy alloy based self-lubricating composite in a wide temperature range

    Unknown

  • Nano-coupled heterostructure induced excellent mechanical and tribological properties in AlCoCrFeNi high entropy alloy

    Yushan Geng;Hui Tan;Long Wang;Anh Kiet Tieu

  • High temperature oxide scale characteristics of low carbon steel in hot rolling

    Weihua Sun;A.K. Tieu;Zhengyi Jiang;Cheng Lu

  • Special Rolling Techniques for Improvement of Mechanical Properties of Ultrafine-Grained Metal Sheets: a Review †

    Hai Liang Yu;Cheng Lu;Anh Kiet Tieu;Hui Jun Li

  • Annealing effect on microstructure and mechanical properties of Al/Ti/Al laminate sheets

    Hailiang Yu;Cheng Lu;A Kiet Tieu;Huijun Li

  • Ultrafine grained AA1050/AA6061 composite produced by accumulative roll bonding

    Lihong Su;Lihong Su;Cheng Lu;Anh Kiet Tieu;Guanyu Deng;Guanyu Deng

  • Effects of oxidation on friction and wear properties of eutectic high-entropy alloy AlCoCrFeNi2.1

    Tri Dinh Vo;Bach Tran;A. Kiet Tieu;David Wexler

  • Atomistic Simulation of Tensile Deformation Behavior of ∑5 Tilt Grain Boundaries in Copper Bicrystal

    Liang Zhang;Cheng Lu;A Kiet Tieu

  • In-situ investigation of oxidation behaviour in high-speed steel roll material under dry and humid atmospheres

    Q Zhu;H T Zhu;A K Tieu;Mark H Reid

  • Mechanical properties of Al–Mg–Si alloy sheets produced using asymmetric cryorolling and ageing treatment

    Hai-liang Yu;Hai-liang Yu;A. Kiet Tieu;Cheng Lu;Xiang-hua Liu

  • Condition monitoring of naturally damaged slow speed slewing bearing based on ensemble empirical mode decomposition

    Wahyu Caesarendra;Wahyu Caesarendra;Prabuono Buyung Kosasih;Anh Kiet Tieu;Craig Alexander Simpson Moodie

  • Identification of sixteen force coefficients of two journal bearings from impulse responses

    Z.L. Qiu;A.K. Tieu

  • An experimental investigation of steel surface characteristic transfer by cold rolling

    B Ma;A.K Tieu;C Lu;Z Jiang

  • A 3D dynamic model to investigate wheel–rail contact under high and low adhesion

    K.D. Vo;K.D. Vo;A.K. Tieu;A.K. Tieu;H.T. Zhu;H.T. Zhu;P.B. Kosasih

Frequent Co-Authors

Zhengyi Jiang
Zhengyi Jiang University of Wollongong
Cheng Lu
Cheng Lu University of Wollongong
Huijun Li
Huijun Li University of Wollongong
David R. G. Mitchell
David R. G. Mitchell University of Wollongong
Zushu Hu
Zushu Hu Chinese Academy of Sciences
Jingcheng Hao
Jingcheng Hao Shandong University
Guodong Wang
Guodong Wang Northeastern University
Liping Wang
Liping Wang Chinese Academy of Sciences
Lin He
Lin He Shanghai Jiao Tong University
David Wexler
David Wexler University of Wollongong

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