Ma Qian

Ma Qian

RMIT University

H-index: 69

Oceania-Australia

About Ma Qian

Ma Qian, With an exceptional h-index of 69 and a recent h-index of 58 (since 2020), a distinguished researcher at RMIT University, specializes in the field of Metal Additive Manufacturing, Powder Metallurgy, Solidification Processing, Metallic Biomaterials.

His recent articles reflect a diverse array of research interests and contributions to the field:

The impact of surface orientation on surface roughness and fatigue life of laser-based powder bed fusion Ti-6Al-4V

In-situ elimination of β-flecks in additively manufactured Ti-3.5 wt% Fe alloy

Laser directed energy deposition of Ti-1Al-8V-5Fe alloy: From zero to significant tensile plasticity

Massive transformations in titanium alloys: Role of relative orientation of adjacent parent grains

Titanium Multi‐Topology Metamaterials with Exceptional Strength

Superelastic alloys

AlSi10Mg hollow-strut lattice metamaterials by laser powder bed fusion

Fixation strength of conformal additively manufactured Ti6Al4V implants in large animal model

Ma Qian Information

University

Position

___

Citations(all)

25525

Citations(since 2020)

16105

Cited By

14889

hIndex(all)

69

hIndex(since 2020)

58

i10Index(all)

267

i10Index(since 2020)

215

Email

University Profile Page

Google Scholar

Ma Qian Skills & Research Interests

Metal Additive Manufacturing

Powder Metallurgy

Solidification Processing

Metallic Biomaterials

Top articles of Ma Qian

The impact of surface orientation on surface roughness and fatigue life of laser-based powder bed fusion Ti-6Al-4V

Additive Manufacturing

2024/4/16

In-situ elimination of β-flecks in additively manufactured Ti-3.5 wt% Fe alloy

Journal of Materials Research and Technology

2024/3/1

Laser directed energy deposition of Ti-1Al-8V-5Fe alloy: From zero to significant tensile plasticity

Scripta Materialia

2024/1/15

Massive transformations in titanium alloys: Role of relative orientation of adjacent parent grains

Scripta Materialia

2024/1/15

Titanium Multi‐Topology Metamaterials with Exceptional Strength

Advanced Materials

2024/1/7

Superelastic alloys

2024/1/4

AlSi10Mg hollow-strut lattice metamaterials by laser powder bed fusion

Materials Advances

2024

Martin Leary
Martin Leary

H-Index: 26

Ma Qian
Ma Qian

H-Index: 46

Fixation strength of conformal additively manufactured Ti6Al4V implants in large animal model

The International Journal of Advanced Manufacturing Technology

2024/4/17

Excellent tensile yield strength with ultrafine grain and tailored microstructure in plastically deformed Ti–Re alloys

Journal of Alloys and Compounds

2023/12/10

Additively Manufactured Functionally Graded Lattices: Design, Mechanical Response, Deformation Behavior, Applications, and Insights

2023/12

Melt pool dynamics on different substrate materials in high-speed laser directed energy deposition process

Journal of Laser Applications

2023/11/1

Ultralight, ductile metal mechanical metamaterials with super elastic admissible strain (0.1)

Journal of Materials Science & Technology

2023/11/1

Modelling and verification for dual time-dependent chloride diffusion of circular concrete columns in marine environment

Journal of Building Engineering

2023/10/1

Low-density, high-strength metal mechanical metamaterials beyond the Gibson-Ashby model

Materials Today

2023/9/1

Raj Das
Raj Das

H-Index: 26

Ma Qian
Ma Qian

H-Index: 46

Node-reinforced hollow-strut metal lattice materials for higher strength

Scripta Materialia

2023/9/1

Fatigue test data applicability for additive manufacture: A method for quantifying the uncertainty of AM fatigue data

Materials & Design

2023/7/1

Ti-6Al-4V hollow-strut lattice materials by laser powder bed fusion

Additive Manufacturing

2023/6/25

Microstructural characterisation and mechanical evaluation of Ti-15Mo manufactured by laser metal deposition

Journal of Alloys and Compounds

2023/6/25

Analysing the effect of defects on stress concentration and fatigue life of L-PBF AlSi10Mg alloy using finite element modelling

Progress in Additive Manufacturing

2023/6/22

Strong and ductile titanium–oxygen–iron alloys by additive manufacturing

Nature

2023/6/1

See List of Professors in Ma Qian University(RMIT University)