Swapnil Morankar

Swapnil Morankar

Purdue University

H-index: 5

North America-United States

About Swapnil Morankar

Swapnil Morankar, With an exceptional h-index of 5 and a recent h-index of 5 (since 2020), a distinguished researcher at Purdue University, specializes in the field of Nuclear Materials, Bioinspired Materials, X-ray Tomography, Mechanical Behavior.

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

Interwoven lattice structure and method for designing ultra-compliant interwoven meta-materials

Cholla cactus wood (Cylindropuntia imbricata): Hierarchical structure and micromechanical properties

Influence of Hydration on the Micromechanical Properties of Silica Spicules from the Venus Flower Basket (Euplectella Aspergillum)

UNRAVELING MICROSTRUCTURE-PROPERTY CORRELATIONS IN NATURAL BIOLOGICAL MATERIALS BY MULTISCALE AND MULTIMODAL CHARACTERIZATION

Bio-inspired selective nodal decoupling for ultra-compliant interwoven lattices

In situ investigations of failure mechanisms of silica fibers from the venus flower basket (Euplectella Aspergillum)

The comparative approach to bio-inspired design: integrating biodiversity and biologists into the design process

Tensile and fracture behavior of silica fibers from the Venus flower basket (Euplectella aspergillum)

Swapnil Morankar Information

University

Position

PhD Student

Citations(all)

68

Citations(since 2020)

68

Cited By

7

hIndex(all)

5

hIndex(since 2020)

5

i10Index(all)

5

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Swapnil Morankar Skills & Research Interests

Nuclear Materials

Bioinspired Materials

X-ray Tomography

Mechanical Behavior

Top articles of Swapnil Morankar

Interwoven lattice structure and method for designing ultra-compliant interwoven meta-materials

2024/3/21

Cholla cactus wood (Cylindropuntia imbricata): Hierarchical structure and micromechanical properties

Acta Biomaterialia

2024/1/15

Influence of Hydration on the Micromechanical Properties of Silica Spicules from the Venus Flower Basket (Euplectella Aspergillum)

JOM

2023/9

UNRAVELING MICROSTRUCTURE-PROPERTY CORRELATIONS IN NATURAL BIOLOGICAL MATERIALS BY MULTISCALE AND MULTIMODAL CHARACTERIZATION

2023/8/7

Bio-inspired selective nodal decoupling for ultra-compliant interwoven lattices

Communications Materials

2023/5/23

In situ investigations of failure mechanisms of silica fibers from the venus flower basket (Euplectella Aspergillum)

Acta Biomaterialia

2023/5/1

The comparative approach to bio-inspired design: integrating biodiversity and biologists into the design process

Integrative and comparative biology

2022/11

Tensile and fracture behavior of silica fibers from the Venus flower basket (Euplectella aspergillum)

International Journal of Solids and Structures

2022/10/15

Effect of Ti or Fe addition and annealing on microstructural evolution and mechanical properties of hypereutectic Nb-Si-Mo alloys

Metallurgical and Materials Transactions A

2021/4

A descriptive model on the grain size dependence of deformation and martensitic transformation in austenitic stainless steel

Metallurgical and Materials Transactions A

2020/6/11

See List of Professors in Swapnil Morankar University(Purdue University)

Co-Authors

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