World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
73
Citations
19590
World Ranking
323
National Ranking
40

Materials Science

D-Index
72
Citations
19288
World Ranking
4035
National Ranking
1277

Overview

Guoxing Lu is affiliated with Swinburne University of Technology in Australia and has established a substantial body of work in the field of engineering, with a particular focus on mechanical engineering and related subfields. Their research explores various aspects of materials behavior, structural analysis, and advanced manufacturing technologies.

The principal topics covered in their work include:

  • Cellular and Composite Structures
  • Advanced Materials and Mechanics
  • Structural Analysis and Optimization
  • High-Velocity Impact and Material Behavior
  • Structural Response to Dynamic Loads
  • Mechanical Behavior of Composites
  • Additive Manufacturing and 3D Printing Technologies

Research output by Guoxing Lu spans several notable journals and venues where multiple papers have been published:

  • Thin-Walled Structures
  • International Journal of Mechanical Sciences
  • International Journal of Impact Engineering
  • SSRN Electronic Journal
  • Composites Part B Engineering

Frequent collaboration with other researchers includes partnerships with:

  • Ngoc San Ha
  • Jianjun Zhang
  • Kwong Ming Tse
  • Shanqing Xu
  • Xinmei Xiang

Examples of recent published papers illustrate the thematic focus and research interests:

  • Large deformation and energy absorption of additively manufactured auxetic materials and structures: A review, 2020, Composites Part B Engineering
  • Thin-walled corrugated structures: A review of crashworthiness designs and energy absorption characteristics, 2020, Thin-Walled Structures
  • Energy absorption characteristics of bio-inspired hierarchical multi-cell square tubes under axial crushing, 2021, International Journal of Mechanical Sciences
  • Mechanical properties and energy absorption of bio-inspired hierarchical circular honeycomb, 2022, Composites Part B Engineering
  • Energy absorption of origami inspired structures and materials, 2020, Thin-Walled Structures

Guoxing Lu's contributions primarily engage with the understanding of energy absorption, structural integrity, and material behavior under dynamic and static loading conditions. The research involves bio-inspired and advanced material designs, combining elements of additive manufacturing with mechanical and structural engineering principles.

Best Publications

  • Energy absorption of structures and materials

    Guoxing Lu;Tong Xi Yu

  • A review of recent research on bio-inspired structures and materials for energy absorption applications

    Ngoc San Ha;Guoxing Lu

  • Quasi-static axial compression of thin-walled circular aluminium tubes

    S.R. Guillow;G. Lu;R.H. Grzebieta

  • In-plane dynamic crushing of honeycombs—a finite element study

    Dong Ruan;Guoxing Lu;Bin Wang;Tong X. Yu

  • Large deformation and energy absorption of additively manufactured auxetic materials and structures: A review

    Jianjun Zhang;Jianjun Zhang;Guoxing Lu;Zhong You

  • Axial crushing of thin-walled structures with origami patterns

    Jie Song;Yan Chen;Guoxing Lu

  • Thin-walled corrugated structures: A review of crashworthiness designs and energy absorption characteristics

    Ngoc San Ha;Guoxing Lu

  • Deformation and failure of blast-loaded metallic sandwich panels: experimental investigations

    Feng Zhu;Longmao Zhao;Longmao Zhao;Guoxing Lu;Guoxing Lu;Zhihua Wang;Zhihua Wang

  • Mechanical properties and energy absorption of bio-inspired hierarchical circular honeycomb

    Unknown

  • Quasi-static axial compression of thin-walled tubes with different cross-sectional shapes

    Z. Fan;G. Lu;K. Liu

  • Ballistic impact experiments of metallic sandwich panels with aluminium foam core

    Weihong Hou;Feng Zhu;Guoxing Lu;Guoxing Lu;Dai-Ning Fang

  • Experimental study of the out-of-plane dynamic compression of hexagonal honeycombs

    Shanqing Xu;Shanqing Xu;John H. Beynon;Dong Ruan;Guoxing Lu

  • Compressive behaviour of aluminium foams at low and medium strain rates

    D Ruan;G Lu;F.L Chen;E Siores

  • Energy absorption of a bio-inspired honeycomb sandwich panel

    Ngoc San Ha;Guoxing Lu;Xinmei Xiang

  • Energy absorption characteristics of bio-inspired hierarchical multi-cell square tubes under axial crushing

    Ngoc San Ha;Thong M. Pham;Hong Hao;Guoxing Lu

  • Compressive behaviour of closed-cell aluminium foams at high strain rates

    Jianhu Shen;Guoxing Lu;Dong Ruan

  • Full-field measurement and fracture characterisations of rocks under dynamic loads using high-speed three-dimensional digital image correlation

    H.Z. Xing;Q.B. Zhang;D. Ruan;S. Dehkhoda

  • A numerical simulation of the blast impact of square metallic sandwich panels

    Feng Zhu;Longmao Zhao;Longmao Zhao;Guoxing Lu;Guoxing Lu;Emad Gad

  • Experiments on curved sandwich panels under blast loading

    Jianhu Shen;Guoxing Lu;Zhihua Wang;Longmao Zhao

  • Crashworthiness analysis of bio-inspired fractal tree-like multi-cell circular tubes under axial crushing

    Ngoc San Ha;Thong M. Pham;Wensu Chen;Hong Hao

  • Crushing response of square aluminium tubes filled with polyurethane foam and aluminium honeycomb

    Rafea Dakhil Hussein;Dong Ruan;Guoxing Lu;Stephen Guillow

  • Quasi-static axial compression of thin-walled tubes with different cross-sectional shapes

    Zhihua Fan;B. Wong;G. Lu

Frequent Co-Authors

Dong Ruan
Dong Ruan Swinburne University of Technology
Tongxi Yu
Tongxi Yu Hong Kong University of Science and Technology
Zhihua Wang
Zhihua Wang Arizona State University
Longmao Zhao
Longmao Zhao Taiyuan University of Technology
Xiaodong Huang
Xiaodong Huang Swinburne University of Technology
Yan Chen
Yan Chen Tianjin University
Aimin Yu
Aimin Yu Swinburne University of Technology
Liyun Cao
Liyun Cao Shaanxi University of Science and Technology
Jiayin Li
Jiayin Li Shaanxi University of Science and Technology
Jianfeng Huang
Jianfeng Huang Shaanxi University of Science and Technology

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