Maulana Azad National Institute of Technology Logo
Wednesday, 15 Oct 2025

Dr. Ashish Das

You are here

Dr. Ashish Das

Dr. Ashish Das

Assistant Professor Grade-I

 

U.G

Manufacturing Processes I

Micro Electro Mechanical Systems

Additive Manufacturing

Manufacturing of Composite Materials

Product Design and Development

Advance Casting Technology

Advanced Materials

Emerging Trends in Manufacturing Technology

P.G

Product Design and Development

Manufacturing Systems

Organization

Start Date

End Date

Designation

Nature of Work

MANIT Bhopal 23/01/2024 Till Date  Assistant Professor Grade-I  Teaching, Research, Administrative
NIT Jamshedpur 22/05/2018 22/01/2024 Assistant Professor Grade-I Teaching Research Administrative
KIIT Bhubaneswar 19/06/2017 16/05/2018 Assistant Professor II Teaching Research and Administrative

Name of the Student

Topic

Year of Award

Co-Supervisor (if any)

Mr. Kundan Kumar

"Biodegradable Magnesium Matrix Composite for Orthopaedic Implant Applications: Fabrication and Characterization"

Thesis Submitted on 14 July 2023

Dr. S B Prasad

Mr. Mukesh Kumar “Friction Stir Welding of Aluminium and Magnesium Alloys: Fabrication and Characterization” Thesis Submitted on 24 July 2023 Dr. Raj Ballav

Title

Sponsoring Agency

Duration

Amount

Co-PI (if any)

“Fabrication of Welded Joints using an Energy Efficient Green Technology for Automobile, Aerospace and Ship Applications” TEQIP III 1 year (October 2019- September 2020) 3 Lakhs NA

Title

Sponsoring Agency

Duration

Amount

Co-Investigator                       (if any)

NA NA NA NA NA
 

Authors

Title

Journal

VOL. NO.,

PAGE NO

YEAR

SCI/

Scopus

IMPACT FACTOR

Kundan Kumar, Ashish Das, Shashi Bhushan

Prasad

Effect of multi-pass friction stir processing on mechanical, microstructural, bioactivity, and corrosion properties of novel magnesium-hopeite composite for biomedical applications

Materials Today

Communications

35, 105584

2023

SCIE

3.8

Mukesh Kumar, Ashish Das, Raj Ballav

Influence of the Zn interlayer on the mechanical strength, corrosion and microstructural behavior of friction stir-welded 6061-T6 aluminium alloy and AZ61 magnesium alloy dissimilar joints

Materials Today

Communications

35, 105509

2023

SCIE

3.8

Kundan Kumar, Ashish Das, Shashi Bhushan Prasad

Novel Bioactive Magnesium-

Hopeite composite by friction stir processing for orthopedic implant applications

Proceedings of

the Institution of

Mechanical

Engineers, Part

H: Journal of

Engineering in

Medicine

237, 502-516

2023

SCI

1.8

Mukesh Kumar, Ashish Das, Raj Ballav, Neeraj

Kumar, Keshav Kumar Sharma

Enhancing the tensile performance of Al/Mg alloy dissimilar friction stir welded joints by reducing brittle intermetallic compounds

International

Journal of Materials

Research

115, 69-80

2023

SCIE

0.8

Rishabh Swarnkar,

Ashish Das, Shashi Bhushan Prasad

Enhancement of Tensile and

Microhardness of AA 6082-T6

Friction Stir Welds via Brass

Interlayers

Russian Journal

of Non-Ferrous

Metals

62, 333-340

2021

SCIE

0.8

Rishabh Swarnkar, Sohan Chaudhary,

Ashish Das, Shashi Bhushan Prasad, Mukesh Kumar, Raj Ballav

Effects of Brass Interlayer on

Mechanical Properties of Friction Stir Welded AA 6061-T6 Joint

Transactions of

the Indian

Institute of

Metals

74, 705-711

2021

SCIE

1.6

Ashish Das, Mukul Shukla

Multifunctional hopeite nanocoating on Ti64 substrates by pulsed laser

deposition and radio frequency magnetron sputtering for orthopedic

implant applications: A comparative

study

Journal of

Central South

University

(Science &

Technology of

Mining and

Metallurgy)

27, 2198-2209

2020

SCIE

4.4

Ashish Das, Mukul Shukla

Bioactive multifunctional hopeite coatings on new generation SS254 steel by laser rapid manufacturing for bone implant applications

Transactions of

the IMF (The

International

Journal of

Surface

Engineering and

Coatings)

98, 209-216

2020

SCI

1.9

Ashish Das, Mukul Shukla

Multifunctional hydroxyapatite and hopeite coatings on SS254 by laser

rapid manufacturing for improved osseointegration and antibacterial character: A comparative study

Proceedings of

the Institution of

Mechanical

Engineers, Part

H: Journal of

Engineering in

Medicine

234, 720-727

2020

SCI

1.8

Ashish Das, Mukul Shukla

New generation hopeite coating on Ti6Al4V (TC4) by radio frequency magnetron sputtering for prosthetic orthopaedic implant applications: synthesis and

characterisation

Transactions of

the IMF (The

International

Journal of

Surface

Engineering and

Coatings)

98, 88-96

2020

SCI

1.9

Ashish Das, Mukul Shukla

Surface Design Using Laser Rapid Manufacturing for Ti64-Hopeite Orthopedic Implants

Metals and

Materials

International

27, 2461-2471

2020

SCIE

3.5

Ashish Das, Mukul Shukla

Pulsed laser-deposited hopeite coatings on titanium alloy for orthopaedic implant applications: surface characterization, antibacterial and bioactivity studies

Journal of the

Brazilian Society

of Mechanical

Sciences and

Engineering

41, 214

2019

SCIE

2.2

Ashish Das, Mukul Shukla

Hydroxyapatite coatings on high nitrogen stainless steel by laser rapid manufacturing

JOM, The

Journal of The

Minerals, Metals

& Materials

Society (TMS)

69, 2292-

2296

2017

SCI

2.6

Ashish Das, Mukul Shukla

Surface morphology and in vitro bioactivity of biocompatible hydroxyapatite coatings on medical grade S31254 steel by RF magnetron sputtering deposition

Transactions of

the IMF (The

International

Journal of Surface

Engineering and

Coatings

95, 276-281

2017

SCI

1.9

Ashish Das, Mukul Shukla

Surface morphology, bioactivity, and antibacterial studies of pulsed laser

deposited hydroxyapatite coatings on Stainless Steel 254 for orthopedic implant applications

Proceedings of

the Institution of

Mechanical

Engineers, Part

L: Journal of

Materials:

Design and

Applications

233, 120-127

2016

SCIE

2.5

Title

Year

Agency

Co-Investigator(if any)

Published/Granted

NA NA NA NA NA

 

h-index

i-10 index

Total Citations

 Google Scholar

11

12

245

  Scopus   8   -   162

 

Detailed Bio-data