Shuai Ma

About Shuai Ma

Shuai Ma, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Chongqing University, specializes in the field of Additive Manufacturing, Machine Learning, Lattice Structure, Finite Element Analysis.

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

Task-driven data fusion for additive manufacturing: Framework, approaches, and case studies

Finite element analysis on mechanical properties of selective laser melting-produced stainless steel 316l lattice structures under impact loading

Laser powder bed fusion-built Ti6Al4V bone scaffolds composed of sheet and strut-based porous structures: Morphology, mechanical properties, and biocompatibility

A large compressive recoverable strain induced by heterogeneous microstructure in a Ni50. 6Ti49. 4 shape memory alloy via laser powder bed fusion and subsequent aging treatment

Prediction of mechanical properties of three-dimensional printed lattice structures through machine learning

Investigation on the mechanical properties of TPMS porous structures fabricated by laser powder bed fusion

The relationship between the macro-and microstructure and the mechanical properties of selective-laser-melted Ti6Al4V samples under low energy inputs: Simulation and experiment

Effect of remelting processes on the microstructure and mechanical behaviours of 18Ni-300 maraging steel manufactured by selective laser melting

Shuai Ma Information

University

Position

___

Citations(all)

609

Citations(since 2020)

605

Cited By

102

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

8

i10Index(since 2020)

8

Email

University Profile Page

Google Scholar

Shuai Ma Skills & Research Interests

Additive Manufacturing

Machine Learning

Lattice Structure

Finite Element Analysis

Top articles of Shuai Ma

Task-driven data fusion for additive manufacturing: Framework, approaches, and case studies

Journal of Industrial Information Integration

2023/8/1

Finite element analysis on mechanical properties of selective laser melting-produced stainless steel 316l lattice structures under impact loading

Journal of Materials Engineering and Performance

2023/1

Laser powder bed fusion-built Ti6Al4V bone scaffolds composed of sheet and strut-based porous structures: Morphology, mechanical properties, and biocompatibility

Chinese Journal of Mechanical Engineering: Additive Manufacturing Frontiers

2022/12/1

A large compressive recoverable strain induced by heterogeneous microstructure in a Ni50. 6Ti49. 4 shape memory alloy via laser powder bed fusion and subsequent aging treatment

Journal of Alloys and Compounds

2022/10/15

Dongdong Gu
Dongdong Gu

H-Index: 2

Shuai Ma
Shuai Ma

H-Index: 3

Prediction of mechanical properties of three-dimensional printed lattice structures through machine learning

Journal of Computing and Information Science in Engineering

2022/6/1

Investigation on the mechanical properties of TPMS porous structures fabricated by laser powder bed fusion

Journal of Manufacturing Processes

2022/4/1

The relationship between the macro-and microstructure and the mechanical properties of selective-laser-melted Ti6Al4V samples under low energy inputs: Simulation and experiment

Optics & Laser Technology

2022/4/1

Effect of remelting processes on the microstructure and mechanical behaviours of 18Ni-300 maraging steel manufactured by selective laser melting

Materials Characterization

2022/2/1

Investigation on the modelling approach for variable-density lattice structures fabricated using selective laser melting

Materials & Design

2021/12/15

Predicting mechanical properties of 3D printed lattice structures

2021/8/17

Design, mechanical properties and energy absorption capability of graded-thickness triply periodic minimal surface structures fabricated by selective laser melting

International Journal of Mechanical Sciences

2021/8/15

Manufacturability, mechanical properties, mass-transport properties and biocompatibility of triply periodic minimal surface (TPMS) porous scaffolds fabricated by selective …

Materials & Design

2020/10/1

Effect of Remelting Process on Surface Quality and Tensile Behaviour of a Maraging Steel Manufactured by Selective Laser Melting

2021

An Investigation of the Porosity Effects on the Mechanical Properties and the Failure Modes of Ti–6Al–4V Schwarz Primitive Structures

2021

See List of Professors in Shuai Ma University(Chongqing University)

Co-Authors

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