Hi! Welcome to My Portfolio

Explore the intersection of mechanical and software engineering with me.

About Me

I’m Jayant Bakolia, currently pursuing an MSc in Robotics with Extended Research at the University of Manchester. I hold a dual degree (BTech + MTech) in Mechanical Engineering from IIT Madras and two years of industry experience in R&D at JSW Steel Ltd. My interests lie at the intersection of robotic systems design, control software, and intelligent simulation. I’m passionate about developing autonomous systems that bridge mechanical reliability with AI-driven adaptability.

My goal is to contribute to next-generation autonomous robotic systems, combining multi-physics simulation and embedded AI for real-world manufacturing and mobility applications. Download my complete resume here.

Profile Image of Jayant Bakolia
Profile Image of Jayant Bakolia
Python
Python
C Sharp
C Sharp
Visual Basic
Visual Basic
SQL
SQL
Skillset

Programming :

Software & Simulation Tools :

Fusion 360, Ansys Mechanical/Fluent, CATIA, Star CCM+, Creo, Git, Power BI

Soft Skills :

Team Leadership, Project Management, Technical Writing, Japanese (eq to JLPT N4)

Projects

Showcasing my innovative work.

Before and after grain boundaries images for annealing process
Before and after grain boundaries images for annealing process
Grain Boundary Simulation Model

Created a C++ based Monte Carlo Potts model to predict grain boundary movement in electrical steel during annealing, cutting process time by 25%. Presented at IIM-ATM 2023.

Retention Screw CAD model
Retention Screw CAD model
Texture data at discrete steps of annealing
Texture data at discrete steps of annealing
FEM analysis of Retention Screw
FEM analysis of Retention Screw
Moldboard Retention Screw system

Designed a novel cam-based moldboard retention system with 176 kN preload capacity, integrating Belleville springs to cut maintenance time by over 50%.

Proposed model for quantum system
Proposed model for quantum system
Phonon antibunching depicted using curve between correlation function and temperature ratio
Phonon antibunching depicted using curve between correlation function and temperature ratio
Quantum Phononics

Designed a CNT-based mechanical resonator to achieve phonon antibunching above 1 K using non-local FEM and quantum simulation.

Contact Me

jayantbakolia@gmail.com

(+44) 7366022438

person using laptop computer beside aloe vera
person using laptop computer beside aloe vera