Prototypes can be individual parts or complete cars, and once they’re built, they can be put through their paces to see how well they do and, in some cases, tested to destruction if necessary. Traditional prototyping was a slow and expensive process because, even with the best engineers, theory wasn’t always borne out in practice. The constant back and forth between drawing board and prototypes was costly and enormously time-consuming. Computer-aided design (CAD) and computer-aided engineering (CAE) for designing and simulating the performance of products changed things entirely, with the inevitable consequence that cars can now be engineered, prototyped, and tested in a virtual world before any physical prototypes are built. Manufacturers can get closer than ever before to the finished result before prototypes roll into a wind tunnel or onto a test track
The “Certification Program in Electric Vehicle Modeling and Design with SOLIDWORKS” is designed to equip learners with comprehensive knowledge and skills in electric vehicle (EV) design, focusing on the modeling and assembly of a two-wheeler using SOLIDWORKS. Throughout the course, students will gain hands-on experience in creating and integrating various components of an EV, from the basic frame to complex systems like suspension and steering.
Basic Knowledge: Students should have an optional fundamental understanding of engineering design principles and mechanical systems.
Every DIYguru course comes with a Do It Yourself project which you can do and learn by doing at your comfort. Our goal is to make sure you are able to implement your learning in real-world scenerio
Every candidate after successful completion of the project submit a pitch presentation video, explaining his/her project-oriented achievements and results, which enables them to do one month of internship with us.
We are the only platform in india approved by National Education Alliance for Technology - NEAT, AICTE, Ministry of Education, Govt. of India along with Automotive Skills Development Council.
This module introduces the fundamentals of SolidWorks and the initial steps in designing a two-wheeler (2W). You will learn about the SolidWorks user interface, essential tools, and basic design principles. The module covers basic 3D modeling techniques, including sketching, creating basic shapes, and assembling simple parts to form the foundation of a 2W model.
In this module, you will focus on designing the main structural components of the two-wheeler, specifically the frame and suspension system. You will learn how to create a robust and optimized frame, followed by detailed instructions on designing and assembling the suspension components to ensure proper vehicle dynamics and stability.
This module delves into the design of the swing arm, a critical component for the rear wheel suspension of the 2W. You will explore the intricacies of swing arm design, including structural considerations, material selection, and integration with the rest of the suspension system to ensure durability and performance.
Wheel design is the focus of this module, where you will learn to create alloy wheels for the two-wheeler. The lectures cover the basics of wheel geometry, material considerations, and advanced design features. You will also ensure that the wheels are both aesthetically pleasing and functional within the overall 2W model.
This module covers the design of the motor controller casing and the steering mechanism. You will learn how to create a protective and efficient casing for the motor controller, considering aspects like cooling and ease of assembly. The steering design part focuses on ensuring control, maneuverability, and user comfort.
Integration and assembly of various components designed in previous modules are the primary focus here. You will learn to integrate wheels, steering components, battery casing, and the 2W seat into the overall design. This module emphasizes ensuring that all parts fit together correctly and function as intended, leading to a cohesive and functional 2W system.
The final module covers the assembly of dynamic components and the finishing touches on the two-wheeler design. You will focus on assembling primary components, designing and integrating the front and back panels, headlight, and wheel support. The module concludes with a comprehensive review and final adjustments to ensure the model is production-ready, ensuring all components work together seamlessly and meet design specifications.
Project 1: Comprehensive Design and Analysis of an EV Bike Chassis and Suspension System
The project will involve designing and analyzing the chassis and suspension system for an EV bike, including component selection, system modeling, and performance analysis using SOLIDWORKS. Students will present their projects, demonstrating their ability to apply theoretical knowledge to practical scenarios and showcasing their problem-solving and design skills
Project 2: Design and Integration of Swingarm, Alloy Wheels, and Motor Controller for an EV Bike
The project will involve designing and integrating the swingarm, alloy wheels, and motor controller for an EV bike, including component selection, system modeling, and assembly using SOLIDWORKS. Students will present their projects, demonstrating their ability to apply theoretical knowledge to practical scenarios and showcasing their problem-solving and design skills.
Resource Library: Access to a rich library of resources, including recorded lectures, supplementary reading materials, and practical guides.
Discussion Forums: Dedicated forums for students to discuss course content, share insights, and collaborate on projects
Regular Feedback: Continuous feedback from trainers on assignments and projects to ensure comprehensive understanding and improvement. with peers and instructors
Students can book one-on-one sessions with trainers to discuss specific queries or seek guidance on projects.
Students will have round-the-clock access to a personalized trainer support portal.
This programme is tailored to help you improve your engineering skills as a student, recent graduate, or working professional with following expertise.
What will you learn?
For Professionals:
For Freshers:
Languages & Tools Covered
Download the full curriculum with topics and units explanation attached with the set of DIY Projects in this course.
Sample certificate
Certified by ASDC, Automotive Skills Development Council & NEAT, AICTE, All India Council for Technical Education, Govt. of India
Hear #PowerAhead stories of career growth from our learners
“DIYguru has helped us a lot in improvising the concepts of electric vehicle design & engineering for our experienced and fresh employees. The trainers are of high quality and knowledgeable in terms of delivering the contents and making things understandable. We look forward to having a continuous relationship.”
| R Shashi Kumar, Head HR – Robert Bosch Engineering
Here’s what some of our 40,000+ satisfied learners have to say about studying with DIYguru Team.
"Very informative course, high quality in terms of quizzes and assignments, liked the project at the end of the course. Oh, and great support. Can recommend this one to my friends and colleaugues. Being the very first player in EV industry, DIYguru has been crucial to the EV ecosystem development in india"
"I have known DIYguru since 2013 when the first version Autosports india was launched and in last 6-8 years the platform has emerged as the leading maker's learning platform in india. Form me the team behind DIYguru has been the best support all through the journey after Bachelors till my master's"
"Some of the best customer service I've ever seen. Great platform for mechanical and electrical engineers to learn EV!"
"This is truly a 5 star experience for youngsters in india! keen to learn about EV Technology"
"The platform has helped me personally to build my career in renewable energy in Canada. Hope to see DIYguru in Canada soon. Five stars!"
"liked the course with wide range of calculations in EV, all tutors are very supportive."
"Automotive design with incredible knowledgebase in terms of support from Baja Tutor community of DIYguru is wonderful experience. Documentation on the web is also good. "
"Amazing content and great support from DIYguru community"
Laws are comprehensive and leave little room for interpretation. They serve as the foundation upon which regulations are built. In the context of electric vehicles, these laws provide the overarching framework that mandates adherence to certain standards in design, development, and operation.
we delve into an essential aspect of the homologation process: understanding the various vehicle categories that shape regulatory compliance. A good grasp of these categories is crucial as the homologation criteria vary depending on the type of vehicle.
The EV Testing Procedure evaluates various vehicle subsystems to guarantee compliance with safety and environmental standards, which drives trust and adoption in the electric vehicle market.
Spend less time worrying about job availability, and more time growing your knowledge. Join DIYguru Program today.
If you’re a current student, please get in touch through the DIYguru dashboard to ask about more details of this Program.
Please note, eligibility for this course is reserved to students who have done related projects and have relevant profiles matching with the pre-requisite of this course.
The DIYguru team hold the right to cancel your admisssion into the program without any explanation via email if found unsuitable and unfit.
Our 7-day money-back guarantee starts from the moment of signup and runs through the free week. Cancellations between days 7 and 30 will get a prorated refund.
Fees for the program is charged only when the admission is approved.
Avail free Guidebook and Expert Mentorship in EV domain curated by Industry experts.