Sunil Kumar Kashyap

About Sunil Kumar Kashyap

Sunil Kumar Kashyap, With an exceptional h-index of 6 and a recent h-index of 6 (since 2020), a distinguished researcher at Indian Institute of Technology Kharagpur, specializes in the field of Ultra High Temperature Ceramic (UHTCs) Composites, Processing of Ceramic, Creep, Oxidation, Ablation.

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

Controlled directionality in 3D printing of graphite-reinforced polymer composite with enhanced mechanical properties

Effect of LaB6 addition on compressive creep behavior with simultaneous oxide scale growth of spark plasma sintered ZrB2‐SiC composites

Densification Behavior and Structure-Property Relations of LaB6-Added ZrB2-SiC Based Ultra High Temperature Ceramic Composites

Oxidation Resistance and Evolution of Multi-layered Oxide Scale During Isothermal and Cyclic Exposure of ZrB2–SiC–LaB6 Composites at 1300 °C to 1500 °C

Effect of Ti addition on the kinetics and mechanism of non-isothermal and isothermal oxidation of Nb–Si–Mo alloys at 900 C–1200 C

Microstructure and composition of multi-layered oxide scale evolved during isothermal exposure of ZrB2–SiC–LaB6 composite to air at 1500°C

Kinetics and evolution of oxide scale during various stages of isothermal oxidation at 1300 C in spark plasma sintered ZrB2–SiC–LaB6 composites

Densification behavior involving creep during spark plasma sintering of ZrB2-SiC based ultra-high temperature ceramic composites

Sunil Kumar Kashyap Information

University

Position

___

Citations(all)

105

Citations(since 2020)

105

Cited By

26

hIndex(all)

6

hIndex(since 2020)

6

i10Index(all)

4

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

Sunil Kumar Kashyap Skills & Research Interests

Ultra High Temperature Ceramic (UHTCs) Composites

Processing of Ceramic

Creep

Oxidation

Ablation

Top articles of Sunil Kumar Kashyap

Controlled directionality in 3D printing of graphite-reinforced polymer composite with enhanced mechanical properties

Composites Science and Technology

2023/4/12

Effect of LaB6 addition on compressive creep behavior with simultaneous oxide scale growth of spark plasma sintered ZrB2‐SiC composites

Journal of the American Ceramic Society

2023/2

Sunil Kumar Kashyap
Sunil Kumar Kashyap

H-Index: 3

Rahul Mitra
Rahul Mitra

H-Index: 12

Densification Behavior and Structure-Property Relations of LaB6-Added ZrB2-SiC Based Ultra High Temperature Ceramic Composites

2022

Sunil Kumar Kashyap
Sunil Kumar Kashyap

H-Index: 3

Oxidation Resistance and Evolution of Multi-layered Oxide Scale During Isothermal and Cyclic Exposure of ZrB2–SiC–LaB6 Composites at 1300 °C to 1500 °C

Metallurgical and Materials Transactions A

2022/1

Effect of Ti addition on the kinetics and mechanism of non-isothermal and isothermal oxidation of Nb–Si–Mo alloys at 900 C–1200 C

Intermetallics

2021/11/1

Microstructure and composition of multi-layered oxide scale evolved during isothermal exposure of ZrB2–SiC–LaB6 composite to air at 1500°C

Philosophical Magazine Letters

2021/7/3

Sunil Kumar Kashyap
Sunil Kumar Kashyap

H-Index: 3

Rahul Mitra
Rahul Mitra

H-Index: 12

Kinetics and evolution of oxide scale during various stages of isothermal oxidation at 1300 C in spark plasma sintered ZrB2–SiC–LaB6 composites

Journal of the European Ceramic Society

2020/12/1

Sunil Kumar Kashyap
Sunil Kumar Kashyap

H-Index: 3

Ankit Kumar
Ankit Kumar

H-Index: 2

Rahul Mitra
Rahul Mitra

H-Index: 12

Densification behavior involving creep during spark plasma sintering of ZrB2-SiC based ultra-high temperature ceramic composites

Ceramics International

2020/3/1

Sunil Kumar Kashyap
Sunil Kumar Kashyap

H-Index: 3

Rahul Mitra
Rahul Mitra

H-Index: 12

High-Temperature Environmental Degradation Behavior of Ultrahigh-Temperature Ceramic Composites: Case Examples of Zirconium and Hafnium Diboride

Handbook of Advanced Ceramics and Composites: Defense, Security, Aerospace and Energy Applications

2020

See List of Professors in Sunil Kumar Kashyap University(Indian Institute of Technology Kharagpur)

Co-Authors

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