MECHANICAL ENGINEERING

Dr. Manoj Vaghela

Dr. Manoj Vaghela
Dr. Manoj Vaghela
Asst. Professor

Total Experience : 8 years

Qualifications:
Specialization: Finite Element Method, XFEM, Fracture Mechanics, Computer Aided Design, Rapid Prototyping
Current Activities:
Memberships:
Industry Experience:

Numerical Analysis of an Edge Crack Isotropic Plate with Void/Inclusions under Different Loading by Implementing XFEM

2019 International Journal

Authors: Dr. Manoj Vaghela, Lal, A., Vaghela, M., Mishra, K.
Journal: Journal of Applied and Computational Mechanics

Numerical Investigation of an Orthotropic Plate with Interactions of Crack, Inclusions and Voids under Uniaxial Tensile Loading by XFEM

2020 International Journal

Authors: Dr. Manoj Vaghela, Achchhe Lal and M. B. Vaghela
Journal: International Journal of Applied Mechanics

Numerical study of edge crack interaction with inclusion and void of an isotropic plate under different loadings by extended finite element method

2020 International Journal

Authors: Dr. Manoj Vaghela, Achchhe Lal, M. B. Vaghela and Kundan Mishra
Journal: IOP Conf. Ser.: Mater. Sci. Eng. 814

ABAQUS Implementation to Analyze the Stress Intensity Factor for Laminated Composite Plate

2020 International Journal

Authors: Dr. Manoj Vaghela, Achchhe Lal and M. B. Vaghela
Journal: IOP Conf. Ser.: Mater. Sci. Eng. 1004

XFEM Analysis of the 3D Isotropic Crack Plate using ABAQUS

2020 International Conference

Authors: Dr. Manoj Vaghela, Achchhe Lal and M. B. Vaghela
Journal: 1st International Virtual Conference On Recent Advancements in Design and Manufacturing 2020 at SVNIT Surat

Numerical investigation of bimaterial interfacial crack with interaction of voids and inclusions using XFEM

2021 International Journal

This article is presented to investigate the influence of several discontinuity like interfacial-crack, void and inclusion in the bimaterial plate, to analyze the normalized mixed-mode stress intensity factor (NMMSIFs) using XFEM under the uniaxial tensile load with considering the several numerical problems. It is investigated the normalized stress intensity factors (NSIFs) for an isotropic bimaterial plate and NMMSIFs for an isotropic-orthotropic bimaterial plate through varying the single-multi voids/inclusions position while its above, aligned and away from the interfacial edge crack and center crack of the bimaterial plate. It is also analyzed the void/inclusion several shape influence in the bimaterial plate. It is observed higher and fluctuating SIFs obtained with more number of voids/inclusions, influence of elliptical and diamond shape of void/inclusion is higher.

Authors: Dr. Manoj Vaghela, Achchhe Lal and M. B. Vaghela
Journal: Mechanics Based Design of Structures and Machines