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Dr. Himanshu Pathak
Dr. Himanshu Pathak
School of Mechanical and Materials Engineering, IIT Mandi, Mandi (Himachal Pradesh), India
Подтвержден адрес электронной почты в домене iitmandi.ac.in - Главная страница
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Процитировано
Процитировано
Год
Optimization of structure-property relationships in nickel ferrite nanoparticles annealed at different temperature
LK Sanjeet Kumar Paswan, Suman Kumari, Manoranjan Kar, Astha Singh, Himanshu ...
Journal of Physics and Chemistry of Solids 151, 109928, 2021
2242021
Fatigue crack growth simulations of 3-D problems using XFEM
H Pathak, A Singh, IV Singh
International Journal of Mechanical Sciences 76, 112-131, 2013
1232013
Numerical simulation of bi-material interfacial cracks using EFGM and XFEM
H Pathak, A Singh, IV Singh
International Journal of Mechanics and Materials in Design 8, 9-36, 2012
992012
The understanding of deep learning: A comprehensive review
RK Mishra, GYS Reddy, H Pathak
Mathematical Problems in Engineering 2021 (1), 5548884, 2021
682021
A simple and efficient XFEM approach for 3-D cracks simulations
H Pathak, A Singh, IV Singh, SK Yadav
International Journal of Fracture 181 (2), 189-208, 2013
602013
Fatigue crack growth simulations of homogeneous and bi-material interfacial cracks using element free Galerkin method
H Pathak, A Singh, IV Singh
Applied Mathematical Modelling 38 (13), 3093-3123, 2014
592014
Modeling of transversely isotropic properties of CNT-polymer composites using meso-scale FEM approach
HP Gaurav Arora
Composites Part B: Engineering 166, 588-597, 2019
562019
Fabrication and characterization of microwave cured high-density polyethylene/carbon nanotube and polypropylene/carbon nanotube composites
G Arora, H Pathak, S Zafar
Journal of Composite Materials 53 (15), 2091-2104, 2019
512019
Experimental and numerical approach to study mechanical and fracture properties of high-density polyethylene carbon nanotubes composite
G Arora, H Pathak
Materials Today Communications 22, 100829, 2020
482020
Fatigue crack growth simulations of 3-D linear elastic cracks under thermal load by XFEM
H Pathak, A Singh, IV Singh, SK Yadav
Frontiers of Structural and Civil Engineering 9, 359-382, 2015
442015
Three-dimensional quasi-static fatigue crack growth analysis in functionally graded materials (FGMs) using coupled FE-XEFG approach
H Pathak
Theoretical and Applied Fracture Mechanics 92, 59-75, 2017
422017
Extended finite element simulation on Tensile, fracture toughness and fatigue crack growth behaviour of additively manufactured Ti6Al4V alloy
R Verma, P Kumar, R Jayaganthan, H Pathak
Theoretical and Applied Fracture Mechanics 117, 103163, 2022
382022
An online model-based fatigue life prediction approach using extended Kalman filter
E Kuncham, S Sen, P Kumar, H Pathak
Theoretical and Applied Fracture Mechanics 117, 103143, 2022
382022
Performance evaluation of HDPE/MWCNT and HDPE/ Kenaf composites
HP Nayan Pundhir, Sunny Zafar
Journal of Thermoplastic Composite Materials, 2019
38*2019
Three-dimensional stochastic quasi-static fatigue crack growth simulations using coupled FE-EFG approach
H Pathak, A Singh, IV Singh, M Brahmankar
Computers & Structures 160, 1-19, 2015
372015
Nanoindentation characterization of polymer nanocomposites for elastic and viscoelastic properties: Experimental and Mathematical Approach
HP Gaurav Arora
Composites Part C 4, 100103, 2020
36*2020
Crack interaction study in functionally graded materials (FGMs) using XFEM under thermal and mechanical loading environment
H Pathak
Mechanics of Advanced Materials and Structures 27 (11), 903-926, 2020
342020
Fatigue crack growth simulations of bi-material interfacial cracks under thermo-elastic loading by extended finite element method
H Pathak, A Singh, IV Singh
European Journal of Computational Mechanics/Revue Européenne de Mécanique …, 2013
342013
Crack interaction study in piezoelectric materials under thermo-electro-mechanical loading environment
R Mishra, RG Burela, H Pathak
International Journal of Mechanics and Materials in Design 15 (2), 379-412, 2019
292019
Three-dimensional quasi-static interfacial crack growth simulations in thermo-mechanical environment by coupled FE-EFG approach
H Pathak, A Singh, IV Singh
Theoretical and Applied Fracture Mechanics 86, 267-283, 2016
292016
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