Avik Samanta

Avik Samanta

University of Iowa

H-index: 18

North America-United States

About Avik Samanta

Avik Samanta, With an exceptional h-index of 18 and a recent h-index of 16 (since 2020), a distinguished researcher at University of Iowa, specializes in the field of Laser Material Processing, Wettability Modification, Ultrasonic Welding, Friction Stir Processing.

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

3D printing synthesis of catalysts

Enhanced toughness and tear resistance of thin-walled High-Pressure Die-Cast aluminum alloys through Friction stir processing

A Micro-Scale Numerical Investigation of Internal and Interfacial Void Defects in Adhesive on Failure Behavior of Adhesively-Bonded Materials With Rough Surfaces

Nanosecond laser textured superhydrophobic/superhydrophilic patterned surface for efficient fog harvesting

Effect of surface wetting on tribological behavior for laser textured steel using ionic liquid-based lubricants

A study of adhesive bonding in metal-metal, metal-CFRP, and CFRP-CFRP material combinations under shear deformation: Fracture morphologies and damage mechanisms

Efficient fog harvesting on metal surfaces with venation-inspired wetting patterns fabricated via laser-based maskless approach

Role of surface wetting on tribological behavior for laser nanotextured steel using ionic liquid lubricants

Avik Samanta Information

University

Position

The

Citations(all)

919

Citations(since 2020)

872

Cited By

278

hIndex(all)

18

hIndex(since 2020)

16

i10Index(all)

28

i10Index(since 2020)

27

Email

University Profile Page

Google Scholar

Avik Samanta Skills & Research Interests

Laser Material Processing

Wettability Modification

Ultrasonic Welding

Friction Stir Processing

Top articles of Avik Samanta

Enhanced toughness and tear resistance of thin-walled High-Pressure Die-Cast aluminum alloys through Friction stir processing

Materials Letters

2024/2/15

Avik Samanta
Avik Samanta

H-Index: 10

Amrita Lall
Amrita Lall

H-Index: 3

A Micro-Scale Numerical Investigation of Internal and Interfacial Void Defects in Adhesive on Failure Behavior of Adhesively-Bonded Materials With Rough Surfaces

2023/10/9

Nanosecond laser textured superhydrophobic/superhydrophilic patterned surface for efficient fog harvesting

Manufacturing letters

2023/8/1

Effect of surface wetting on tribological behavior for laser textured steel using ionic liquid-based lubricants

Manufacturing Letters

2023/8/1

A study of adhesive bonding in metal-metal, metal-CFRP, and CFRP-CFRP material combinations under shear deformation: Fracture morphologies and damage mechanisms

International Journal of Adhesion and Adhesives

2023/9/9

Efficient fog harvesting on metal surfaces with venation-inspired wetting patterns fabricated via laser-based maskless approach

Journal of manufacturing processes

2023/7/28

Role of surface wetting on tribological behavior for laser nanotextured steel using ionic liquid lubricants

Journal of manufacturing processes

2023/6/9

On the Utility of the Thermal-Pseudo Mechanical Model’s Residual Stress Prediction Capability for the Development of Friction Stir Processing

The International Journal of Advanced Manufacturing Technology

2023/5

Kranthi Balusu
Kranthi Balusu

H-Index: 3

Avik Samanta
Avik Samanta

H-Index: 10

Method for maskless patterning of metal alloys

2023/2/9

Enhanced Tensile and Tear Toughness Properties of Thin-Wall Vacuum-Assisted High-Pressure Die-Cast Aural-5 Alloy by Friction Stir Processing

2023/2

Avik Samanta
Avik Samanta

H-Index: 10

Effect of tool design and pass strategy on defect elimination and uniform, enhanced tensile properties of friction stir processed high-pressure die-cast A380 alloy

Materials Science and Engineering: A

2022/11

Avik Samanta
Avik Samanta

H-Index: 10

Superhydrophobic surface processing for metal 3D printed parts

Applied materials today

2022/12/1

Superhydrophobic surface processing for selective laser melting of metal parts

Procedia CIRP

2022/1/1

Microstructure-refinement–driven enhanced tensile properties of high-pressure die-cast A380 alloy through friction stir processing

Journal of Manufacturing Processes

2022/4

Microstructural Modification of a High-Pressure Die-Cast A380 Alloy Through Friction Stir Processing and Its Effect on Mechanical Properties

2022/1

Avik Samanta
Avik Samanta

H-Index: 10

David Garcia
David Garcia

H-Index: 5

Quantification of superhydrophobic functionalization for laser textured metal surfaces

Colloids and Surfaces A: Physicochemical and Engineering Aspects

2022/3/5

Enabling Superhydrophobicity-Guided Superwicking in Metal Alloys via a Nanosecond Laser-Based Surface Treatment Method

ACS Applied Materials & Interfaces

2021/8/20

Machine learning model for understanding laser superhydrophobic surface functionalization

Journal of Manufacturing Processes

2021/9/1

Large-Area Surface Wettability Patterning of Metal Alloys via a Maskless Laser-Assisted Functionalization Method

Applied surface science

2021/12/1

See List of Professors in Avik Samanta University(University of Iowa)

Co-Authors

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