Xinwei Li

About Xinwei Li

Xinwei Li, With an exceptional h-index of 21 and a recent h-index of 21 (since 2020), a distinguished researcher at National University of Singapore, specializes in the field of Metamaterials, Lattice Structures, Finite Element Analysis, 3D printing.

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

LattSAC: a software for the acoustic modelling of lattice sound absorbers

A ribbed strategy disrupts conventional metamaterial deformation mechanisms for superior energy absorption

Horsetail-inspired lattice structures for bone scaffold applications

Robust and sensitive conductive nanocomposite hydrogel with bridge cross-linking–dominated hierarchical structural design

3D‐Printed Lattice Structures for Sound Absorption: Current Progress, Mechanisms and Models, Structural‐Property Relationships, and Future Outlook

Superior Strength, Toughness, and Damage‐Tolerance Observed in Microlattices of Aperiodic Unit Cells

Architected lightweight, sound-absorbing, and mechanically efficient microlattice metamaterials by digital light processing 3D printing

3D printing microlattice interpenetrating phase composites for energy absorption, damage resistance, and fracture toughness

Xinwei Li Information

University

Position

Mechanical Engineering

Citations(all)

1127

Citations(since 2020)

1121

Cited By

149

hIndex(all)

21

hIndex(since 2020)

21

i10Index(all)

29

i10Index(since 2020)

29

Email

University Profile Page

Google Scholar

Xinwei Li Skills & Research Interests

Metamaterials

Lattice Structures

Finite Element Analysis

3D printing

Top articles of Xinwei Li

LattSAC: a software for the acoustic modelling of lattice sound absorbers

Virtual and Physical Prototyping

2024/12/31

A ribbed strategy disrupts conventional metamaterial deformation mechanisms for superior energy absorption

Virtual and Physical Prototyping

2024/12/31

Horsetail-inspired lattice structures for bone scaffold applications

International Journal of Bioprinting

2024/3/13

Robust and sensitive conductive nanocomposite hydrogel with bridge cross-linking–dominated hierarchical structural design

Science Advances

2024/2/2

3D‐Printed Lattice Structures for Sound Absorption: Current Progress, Mechanisms and Models, Structural‐Property Relationships, and Future Outlook

Advanced Science

2024/1/26

Superior Strength, Toughness, and Damage‐Tolerance Observed in Microlattices of Aperiodic Unit Cells

Small

2024/1/6

Architected lightweight, sound-absorbing, and mechanically efficient microlattice metamaterials by digital light processing 3D printing

Virtual and Physical Prototyping

2023/12/31

3D printing microlattice interpenetrating phase composites for energy absorption, damage resistance, and fracture toughness

Composite Structures

2023/12/1

Multifunctional and customizable lattice structures for simultaneous sound insulation and structural applications

Materials & Design

2023/10/1

Customizable plateau in face-centered cubic hierarchical lattices achieved by self-similar embedded design

Materials & Design

2023/9/1

Bioinspired hierarchical diamond triply periodic minimal surface lattices with high energy absorption and damage tolerance

Additive Manufacturing

2023/8/25

Superior broadband sound absorption in hierarchical ultralight graphene oxide aerogels achieved through emulsion freeze-casting

Chemical Engineering Journal

2023/6/6

Truss and plate hybrid lattice structures: Simulation and experimental investigations of isotropy, large-strain deformation, and mechanisms

Materials Today Communications

2023/6/1

Interpenetrating Hollow Microlattice Metamaterial Enables Efficient Sound-Absorptive and Deformation-Recoverable Capabilities

ACS Applied Materials & Interfaces

2023/4/22

TPMS-based interpenetrating lattice structures: Design, mechanical properties and multiscale optimization

International Journal of Mechanical Sciences

2023/4/15

Geometry effect on mechanical properties and elastic isotropy optimization of bamboo-inspired lattice structures

Additive Manufacturing

2023/2/25

New Class of Multifunctional Bioinspired Microlattice with Excellent Sound Absorption, Damage Tolerance, and High Specific Strength

ACS Applied Materials & Interfaces

2023/1/19

Novel slow-sound lattice absorbers based on the sonic black hole

Composite Structures

2023/1/15

Design, mechanical properties and optimization of lattice structures with hollow prismatic struts

International Journal of Mechanical Sciences

2023/1/15

Enhanced energy-absorbing and sound-absorbing capability of functionally graded and helicoidal lattice structures with triply periodic minimal surfaces

International Journal of Minerals, Metallurgy and Materials

2023

See List of Professors in Xinwei Li University(National University of Singapore)

Co-Authors

academic-engine