Pranjal Nautiyal

Pranjal Nautiyal

University of Pennsylvania

H-index: 19

North America-United States

About Pranjal Nautiyal

Pranjal Nautiyal, With an exceptional h-index of 19 and a recent h-index of 18 (since 2020), a distinguished researcher at University of Pennsylvania, specializes in the field of Nanostructured Materials, Cold Spray, Mechanics, Tribology.

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

Multiscale mechanics of polydimethylsiloxane: A comparison of meso‐and micro‐cyclic deformation behavior

Freeze casting to engineer gradient porosity in hydroxyapatite-boron nitride nanotube composite scaffold for improved compressive strength and osteogenic potential

A critique on boron nitride nanotube reinforced metal matrix composites

Metal oxide tribofilms: Relating antiwear additive synergy with mechanical properties

Growth and morphology of thermally assisted sinterable zirconia nanoparticle tribofilm

Unraveling the Mechanisms Governing Anisotropy in Accordion‐Shaped Honeycomb Microlattice Fabricated by Two‐Photon Polymerization

Engineering a living cardiac pump on a chip using high-precision fabrication

In‐situ Investigation of Deformation Mechanisms Induced by Boron Nitride Nanotubes and Nano‐Interphases in Ti‐6Al‐4V Alloy

Pranjal Nautiyal Information

University

Position

Mechanical Engineering and Applied Mechanics

Citations(all)

1001

Citations(since 2020)

835

Cited By

523

hIndex(all)

19

hIndex(since 2020)

18

i10Index(all)

33

i10Index(since 2020)

32

Email

University Profile Page

Google Scholar

Pranjal Nautiyal Skills & Research Interests

Nanostructured Materials

Cold Spray

Mechanics

Tribology

Top articles of Pranjal Nautiyal

Multiscale mechanics of polydimethylsiloxane: A comparison of meso‐and micro‐cyclic deformation behavior

Journal of Applied Polymer Science

2024/4

Freeze casting to engineer gradient porosity in hydroxyapatite-boron nitride nanotube composite scaffold for improved compressive strength and osteogenic potential

Journal of the Mechanical Behavior of Biomedical Materials

2024/2/1

A critique on boron nitride nanotube reinforced metal matrix composites

2023/6/26

Metal oxide tribofilms: Relating antiwear additive synergy with mechanical properties

Tribology & Lubrication Technology

2023/4/1

Pranjal Nautiyal
Pranjal Nautiyal

H-Index: 14

Growth and morphology of thermally assisted sinterable zirconia nanoparticle tribofilm

Tribology International

2022/11/1

Pranjal Nautiyal
Pranjal Nautiyal

H-Index: 14

Xue Han
Xue Han

H-Index: 1

Xia Wang
Xia Wang

H-Index: 6

Unraveling the Mechanisms Governing Anisotropy in Accordion‐Shaped Honeycomb Microlattice Fabricated by Two‐Photon Polymerization

Advanced Engineering Materials

2022/5

Engineering a living cardiac pump on a chip using high-precision fabrication

Science Advances

2022/4/22

In‐situ Investigation of Deformation Mechanisms Induced by Boron Nitride Nanotubes and Nano‐Interphases in Ti‐6Al‐4V Alloy

Advanced Engineering Materials

2022/6

Role of in-situ splat sintering on elastic and damping behavior of cold sprayed aluminum coatings

Scripta Materialia

2021/11/1

Aluminum-boron nitride nanotube composites and method for making the same

2023/10/10

Boron nitride nanotube-magnesium alloy composites and manufacturing methods thereof

2021/9/28

Interfacial deformation and failure mechanisms at the single-splat length scale revealed in-situ by indentation of cold sprayed aluminum microparticles

Materials Science and Engineering: A

2021/9/8

Shape memory-based self-healing polymer composite reinforced with graphene foam

2021/7/13

Method to produce graphene foam reinforced low temperature co-fired ceramic (LTCC) composites

2021/3/30

Metal nanoparticle composites and manufacturing methods thereof by ultrasonic casting

2021/3/9

Hydroxylated boron nitride nanotube‐reinforced polyvinyl alcohol nanocomposite films with simultaneous improvement of mechanical and thermal properties

Polymer Composites

2020/12

Boron nitride nanotube–reinforced titanium composite with controlled interfacial reactions by spark plasma sintering

Advanced Engineering Materials

2020/12

Extrusion 3D printing of porous silicone architectures for engineering human cardiomyocyte-infused patches mimicking adult heart stiffness

ACS Applied Bio Materials

2020/7/28

Densification and oxidation behavior of spark plasma sintered Hafnium Diboride-Hafnium Carbide composite

Ceramics International

2020/7/1

Interface Engineering and Direct Observation of Strengthening Behavior in Field‐Sintered Boron Nitride Nanotube‐Magnesium Alloy Composite

Advanced Engineering Materials

2020

See List of Professors in Pranjal Nautiyal University(University of Pennsylvania)

Co-Authors

academic-engine