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Engineering and Technology

D-Index
48
Citations
7168
World Ranking
4677
National Ranking
251

Overview

Stefanie Feih is affiliated with Griffith University in Australia. Their research primarily spans the fields of Engineering and Medicine, with notable engagement in subfields including Mechanical Engineering, Surgery, Automotive Engineering, Biomedical Engineering, and Civil and Structural Engineering.

Their work focuses extensively on topics such as Additive Manufacturing and 3D Printing Technologies, Cellular and Composite Structures, Additive Manufacturing Materials and Processes, Orthopaedic Implants and Arthroplasty, Hip Disorders and Treatments, Total Knee Arthroplasty Outcomes, and Innovations in Concrete and Construction Materials.

Frequent publication venues for Stefanie Feih include:

  • Materials & Design
  • Additive Manufacturing
  • Composite Structures
  • Asian Society for Precision Engineering and Nanotechnology (ASPEN 2022)
  • Journal of Dentistry

Recent publications authored or co-authored by Stefanie Feih include:

  • Advances in additive manufacturing process simulation: Residual stresses and distortion predictions in complex metallic components, 2020, Materials & Design
  • Hierarchical sheet triply periodic minimal surface lattices: Design, geometric and mechanical performance, 2021, Materials & Design
  • Tensile Strength Enhancement of Fused Filament Fabrication Printed Parts: A Review of Process Improvement Approaches and Respective Impact, 2022, Additive Manufacturing
  • Artificial neural network-based geometry compensation to improve the printing accuracy of selective laser melting fabricated sub-millimetre overhang trusses, 2020, Additive Manufacturing
  • Influence of geometric defects on the compression behaviour of thin shell lattices fabricated by micro laser powder bed fusion, 2022, Additive Manufacturing

Stefanie Feih has collaborated frequently with the following co-authors:

  • Stephen Daynes
  • Alireza Y Bavil
  • Emmanuel Eghan-Acquah
  • Rod Barrett
  • Christopher P. Carty

Best Publications

  • Energy absorption characteristics of metallic triply periodic minimal surface sheet structures under compressive loading

    Lei Zhang;Stefanie Feih;Stephen Daynes;Shuai Chang

  • Review of fire structural modelling of polymer composites

    A.P. Mouritz;S. Feih;E. Kandare;Z. Mathys

  • Design of graded lattice structure with optimized mesostructures for additive manufacturing

    Yiqiang Wang;Lei Zhang;Stephen Daynes;Hongying Zhang

  • Tensile properties of carbon fibres and carbon fibre–polymer composites in fire

    S. Feih;S. Feih;A.P. Mouritz

  • Modelling the tension and compression strengths of polymer laminates in fire

    S. Feih;S. Feih;Z. Mathys;A.G. Gibson;A.P. Mouritz;A.P. Mouritz

  • Advances in additive manufacturing process simulation: Residual stresses and distortion predictions in complex metallic components

    Xu Song;Stefanie Feih;Wei Zhai;Chen-Nan Sun

  • Mechanical properties of thermally-treated and recycled glass fibres

    S. Feih;S. Feih;E. Boiocchi;G. Mathys;Z. Mathys

  • Optimisation of functionally graded lattice structures using isostatic lines

    Stephen Daynes;Stefanie Feih;Wen Feng Lu;Jun Wei

  • Strength degradation of glass fibers at high temperatures

    S. Feih;S. Feih;K. Manatpon;Z. Mathys;A. G. Gibson

  • Experimental determination of the structural properties and strengthening mechanisms of z-pinned composite T-joints

    T.M. Koh;S. Feih;A.P. Mouritz

  • Performance of bio-inspired Kagome truss core structures under compression and shear loading

    I. Ullah;J. Elambasseril;M. Brandt;S. Feih

  • Fire structural resistance of basalt fibre composite

    T. Bhat;T. Bhat;Venkata Chevali;Venkata Chevali;X. Liu;S. Feih

  • Failure and energy absorption characteristics of advanced 3D truss core structures

    I Inam Ullah;M Brandt;S Feih

  • Modelling the compression strength of polymer laminates in fire

    S. Feih;S. Feih;Z. Mathys;A.G. Gibson;A.P. Mouritz;A.P. Mouritz

  • High-Value SLM Aerospace Components: From Design to Manufacture

    Milan Brandt;Shou Jin Sun;Martin Leary;S. Feih

  • Tensile Strength Modeling of Glass Fiber—Polymer Composites in Fire:

    S. Feih;A.P. Mouritz;Z. Mathys;A.G. Gibson

  • Printing and characterisation of Kagome lattice structures by fused deposition modelling

    Rinoj Gautam;Sridhar Idapalapati;Stefanie Feih

  • Adhesive and composite failure prediction of single-L joint structures under tensile loading

    S. Feih;H.R. Shercliff

  • Strengthening mechanics of thin and thick composite T-joints reinforced with z-pins

    T.M. Koh;S. Feih;A.P. Mouritz

  • Testing Procedure for the Single Fiber Fragmentation Test

    Stefanie Feih;Karen Wonsyld;Daniel Minzari;Peter Westermann

Frequent Co-Authors

Adrian P. Mouritz
Adrian P. Mouritz RMIT University
A.G. Gibson
A.G. Gibson Newcastle University
Milan Brandt
Milan Brandt RMIT University
Jun Wei
Jun Wei Harbin Institute of Technology
Wen Feng Lu
Wen Feng Lu National University of Singapore
Ole Thybo Thomsen
Ole Thybo Thomsen University of Bristol
Michael Yu Wang
Michael Yu Wang Great Bay University
Peter Kingshott
Peter Kingshott Swinburne University of Technology
Chun H. Wang
Chun H. Wang University of New South Wales
Søren Linderoth
Søren Linderoth Technical University of Denmark

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