Lianyi Chen

Lianyi Chen

University of Wisconsin-Madison

H-index: 38

North America-United States

About Lianyi Chen

Lianyi Chen, With an exceptional h-index of 38 and a recent h-index of 30 (since 2020), a distinguished researcher at University of Wisconsin-Madison, specializes in the field of Metal additive manufacturing, In-situ characterization, Solidification, Metal matrix nanocomposites, Metallurgy.

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

Deep-Learning-Based Segmentation of Keyhole in In-Situ X-ray Imaging of Laser Powder Bed Fusion

Melting and solidification dynamics during laser melting of reaction-based metal matrix composites uncovered by in-situ synchrotron X-ray diffraction

Additive manufacturing with sealed pores

Solidification modes during additive manufacturing of steel revealed by high-speed X-ray diffraction

In-situ experimental and high-fidelity modelling tools to advance understanding of metal additive manufacturing

Machine learning–aided real-time detection of keyhole pore generation in laser powder bed fusion

Switching of control mechanisms during the rapid solidification of a melt pool

Powder spreader

Lianyi Chen Information

University

Position

Assistant Professor

Citations(all)

6829

Citations(since 2020)

4800

Cited By

3573

hIndex(all)

38

hIndex(since 2020)

30

i10Index(all)

79

i10Index(since 2020)

60

Email

University Profile Page

University of Wisconsin-Madison

Google Scholar

View Google Scholar Profile

Lianyi Chen Skills & Research Interests

Metal additive manufacturing

In-situ characterization

Solidification

Metal matrix nanocomposites

Metallurgy

Top articles of Lianyi Chen

Title

Journal

Author(s)

Publication Date

Deep-Learning-Based Segmentation of Keyhole in In-Situ X-ray Imaging of Laser Powder Bed Fusion

Materials

William Dong

Jason Lian

Chengpo Yan

Yiran Zhong

Sumanth Karnati

...

2024/1/21

Melting and solidification dynamics during laser melting of reaction-based metal matrix composites uncovered by in-situ synchrotron X-ray diffraction

Acta Materialia

Minglei Qu

Jiandong Yuan

Ali Nabaa

Junye Huang

Chihpin Andrew Chuang

...

2024/3/30

Additive manufacturing with sealed pores

2023/1/26

Solidification modes during additive manufacturing of steel revealed by high-speed X-ray diffraction

Acta Materialia

Hans-Henrik König

Niklas Holländer Pettersson

A Durga

Steven Van Petegem

Daniel Grolimund

...

2023/3/1

In-situ experimental and high-fidelity modelling tools to advance understanding of metal additive manufacturing

Lu Wang

Qilin Guo

Lianyi Chen

Wentao Yan

2023/10/3

Machine learning–aided real-time detection of keyhole pore generation in laser powder bed fusion

Science

Zhongshu Ren

Lin Gao

Samuel J Clark

Kamel Fezzaa

Pavel Shevchenko

...

2023/1/6

Switching of control mechanisms during the rapid solidification of a melt pool

Physical Review Materials

Yijia Gu

Jiandong Yuan

Lianyi Chen

2023/10/3

Powder spreader

2023/9/14

Time-resolved absorption spectroscopy in electron beam melting with blue vertical-cavity surface-emitting lasers

Optics Express

Matthias Beuting

Luis I Escano

Lianyi Chen

Scott T Sanders

2023/5/22

Effects of Particle Size Distribution with Efficient Packing on Powder Flowability and Selective Laser Melting Process

Materials

Zachary Young

Minglei Qu

Meelap Michael Coday

Qilin Guo

Seyed Mohammad H Hojjatzadeh

...

2022/1/18

An instrument for in situ characterization of powder spreading dynamics in powder-bed-based additive manufacturing processes

Review of Scientific Instruments

Luis I Escano

Niranjan D Parab

Qilin Guo

Minglei Qu

Kamel Fezzaa

...

2022/4/1

An electron beam melting system for in-situ synchrotron X-ray monitoring

Additive Manufacturing Letters

Luis I Escano

Samuel J Clark

Andrew C Chuang

Jiandong Yuan

Qilin Guo

...

2022/12/1

Defects and anomalies in powder bed fusion metal additive manufacturing

Amir Mostafaei

Cang Zhao

Yining He

Seyed Reza Ghiaasiaan

Bo Shi

...

2022/4/1

Controlling melt flow by nanoparticles to eliminate surface wave induced surface fluctuation

Additive Manufacturing

Minglei Qu

Qilin Guo

Luis I Escano

Jiandong Yuan

S Mohammad H Hojjatzadeh

...

2022/11/1

Controlling process instability for defect lean metal additive manufacturing

Nature communications

Minglei Qu

Qilin Guo

Luis I Escano

Ali Nabaa

S Mohammad H Hojjatzadeh

...

2022/2/28

Phase transformation dynamics guided alloy development for additive manufacturing

Additive Manufacturing

Qilin Guo

Minglei Qu

Chihpin Andrew Chuang

Lianghua Xiong

Ali Nabaa

...

2022/8/2

Revealing melt flow instabilities in laser powder bed fusion additive manufacturing of aluminum alloy via in-situ high-speed X-ray imaging

International Journal of Machine Tools and Manufacture

Qilin Guo

Minglei Qu

Luis I Escano

S Mohammad H Hojjatzadeh

Zachary Young

...

2022/4/1

Alloy composition, method and apparatus therefor

2022/6/23

Nanoparticle-enabled increase of energy efficiency during laser metal additive manufacturing

Additive Manufacturing

Minglei Qu

Qilin Guo

Luis Izet Escano

Ali Nabaa

Kamel Fezzaa

...

2022/12/1

Uncertainties Induced by Processing Parameter Variation in Selective Laser Melting of Ti6Al4V Revealed by In-Situ X-ray Imaging

Materials

Zachary A Young

Meelap M Coday

Qilin Guo

Minglei Qu

S Mohammad H Hojjatzadeh

...

2022/1/11

See List of Professors in Lianyi Chen University(University of Wisconsin-Madison)

Co-Authors

H-index: 102
Song Jin

Song Jin

University of Wisconsin-Madison

H-index: 82
Anthony Rollett

Anthony Rollett

Carnegie Mellon University

H-index: 61
Hans Fecht

Hans Fecht

Universität Ulm

H-index: 59
Xiaochun Li

Xiaochun Li

University of California, Los Angeles

H-index: 51
Shaoxing Qu

Shaoxing Qu

Zhejiang University

H-index: 47
Mingyuan Ge

Mingyuan Ge

University of Southern California

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