Lang YUAN

Lang YUAN

University of South Carolina

H-index: 23

North America-United States

About Lang YUAN

Lang YUAN, With an exceptional h-index of 23 and a recent h-index of 20 (since 2020), a distinguished researcher at University of South Carolina, specializes in the field of Solidification, Microstructure Modelling, Additive Manufacturing, Discrete Element Modelling.

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

Characterization of defects in additively manufactured materials from mechanical properties

Understanding Melt Pool Behavior of 316L Stainless Steel in Laser Powder Bed Fusion Additive Manufacturing

Impact of Particle Packing Density on the Frequency Response of an Additively Manufactured Particle Damper

Pulsed Laser Additive Manufacturing for 316L Stainless Steel: A New Approach to Control Subgrain Cellular Structure

Validation and application of cellular automaton model for microstructure evolution in IN718 during directed energy deposition

How to control the crystallization of metallic glasses during laser powder bed fusion? Towards part-specific 3D printing of in situ composites

muMatScale

Multi-scale model to simulate stress directionality in laser powder bed fusion: Application to thin-wall part failure

Lang YUAN Information

University

Position

___

Citations(all)

2133

Citations(since 2020)

1533

Cited By

1029

hIndex(all)

23

hIndex(since 2020)

20

i10Index(all)

32

i10Index(since 2020)

28

Email

University Profile Page

Google Scholar

Lang YUAN Skills & Research Interests

Solidification

Microstructure Modelling

Additive Manufacturing

Discrete Element Modelling

Top articles of Lang YUAN

Characterization of defects in additively manufactured materials from mechanical properties

Materials Science and Engineering: A

2024/4/1

Understanding Melt Pool Behavior of 316L Stainless Steel in Laser Powder Bed Fusion Additive Manufacturing

Micromachines

2024/1/23

Impact of Particle Packing Density on the Frequency Response of an Additively Manufactured Particle Damper

2024

Pulsed Laser Additive Manufacturing for 316L Stainless Steel: A New Approach to Control Subgrain Cellular Structure

JOM

2023/12

Validation and application of cellular automaton model for microstructure evolution in IN718 during directed energy deposition

Computational Materials Science

2023/10/25

How to control the crystallization of metallic glasses during laser powder bed fusion? Towards part-specific 3D printing of in situ composites

Additive Manufacturing

2023/8/25

muMatScale

2023/8/3

Multi-scale model to simulate stress directionality in laser powder bed fusion: Application to thin-wall part failure

Materials & Design

2023/8/1

Physics-based crack formation model for René 80 in laser blown directed energy deposition: Theory and experiment

Additive Manufacturing

2023/7/5

Investigating compressing particle damper pockets in beams manufactured by laser powder bed fusion additive manufacturing

2023/6/5

A 3D simulation of grain structure evolution during laser rescanning process of powder bed fusion additive manufacturing

IOP Conference Series: Materials Science and Engineering

2023/5/1

Real-time splatter tracking in laser powder bed fusion additive manufacturing

2023/4/25

Yanzhou Fu
Yanzhou Fu

H-Index: 1

Lang Yuan
Lang Yuan

H-Index: 15

Real-time structural validation for material extrusion additive manufacturing

Additive Manufacturing

2023/3/5

Yanzhou Fu
Yanzhou Fu

H-Index: 1

Lang Yuan
Lang Yuan

H-Index: 15

Mitigating inherent micro-cracking in laser additively manufactured RENÉ 108 thin-wall components

Thin-Walled Structures

2023/3/1

An OpenMP GPU-offload implementation of a non-equilibrium solidification cellular automata model for additive manufacturing

Computer Physics Communications

2023/3/1

Lang Yuan
Lang Yuan

H-Index: 15

Prediction of Solidification Cracking in Rene 80 Superalloy During the Directed Energy Deposition Process

2023/2/7

Additive manufacturing system and method of forming an object in a powder bed

2023/2/2

Track-scale Anisotropic Thermal Material Model as a Viable Substitution in Selective Laser Melting

Journal of Design Against Fatigue

2023

On Uncertainty Quantification in Materials Modeling and Discovery: Applications of GE's BHM and IDACE

2023

Discovering the crack formation criteria for Rene 80 superalloys in Laser Blown Directed Energy Deposition

2023

See List of Professors in Lang YUAN University(University of South Carolina)

Co-Authors

academic-engine