Overview The global computer-aided design (CAD) software market was valued at $8,325.0 million in 2017 and is predicted to progress …

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Overview

The global computer-aided design (CAD) software market was valued at $8,325.0 million in 2017 and is predicted to progress at a CAGR of 6.6% during 2018–2023. The increasing use of CAD software in the packaging industry and automotive industry is one of the key factors positively impacting the growth of the market. On the basis of technology, the market has been bifurcated into 3D software and 2D software. Of these, 3D CAD software held a larger share in the CAD software market in 2017, owing to the growing need for design efficiency and accuracy and enhanced product visualization and presentation. In addition, 3D CAD also accelerates the development cycle with virtual testing and optimization.

 

Program Objective

This course deals with creating and designing parts, models and assemblies using Solidworks. It covers a complete walk around of the software tools and commands to enhance your skill as a CAD design engineer.

The course aims to give students and professionals the essentials that are needed to become a certified SOLIDWORKS associate. The course will help individuals use the software with confidence and design/draft the next innovative thing. The course is designed to be a process or task-based approach to learning the individual features and functions of SOLIDWORKS, thereby emphasizing processes and procedures for completion of any task. By building actual parts and assemblies, the student should learn the necessary commands, options, and menus in the context of completing a design task..

DIYguru presents the certification program on SolidWorks – Drafting, Assembly and Simulation. You will be learning how to make 3D models, 2D engineering drawing, assembly and high-quality render of an Electric Scooter in SolidWorks.  It will take you from the very beginning of opening SolidWorks and teach you the entire designing workflow within SolidWorks. This course is ideal for Engineering Drawing students and can also be opted by students looking for project-based training. This program provides you with the most flexible learning environment possible. This program is offered as a self-paced program often referred to as an asynchronous online program which is time-independent, meaning that it can be accessed 24X7 within the tenure of 21 days. This program can be accessed from multiple devices which makes it easy to learn on the go. Lectures that are pre-recorded with voice-over commentary, interactive discussion boxes that foster student to student interaction, Email communication with the instructor are part of this process.

 

Learning Outcomes

  1. Demonstrate competency with multiple drawing and modification commands in SOLIDWORKS.

  2. Create three-dimensional solid models.

  3. Create three-dimensional assemblies incorporating multiple solid models.

  4. Apply industry standards in the preparation of technical mechanical drawings.

 

Main Highlights

  1. Learn without a career break with online classes available 24*7.

  2. One can access the course at their own pace, but with the investment of 3-5 hours/week, it can be finished within a month.

  3. The program uses a Continuous Evaluation System that assesses the learners over convenient and regular intervals. Such a system provides timely and frequent feedback and helps busy working professionals stay on course with the program.

  4. The education delivery method is a blend of classroom and experiential learning.

  5. Participants who will complete the program become eligible for Mentorship and Placement help through our Job Fairs.

 

Eligibility Criteria

The program is designed for students or professionals who are:

  1. Having a Diploma, BE / B.Tech or equivalent in domains such as Automotive, Mechanical, EEE, ECE, Instrumentation, Mechatronics.

  2. Designing enthusiasts (No academic qualification mandatory)

  3. Working in industries such as Automotive, Auto component, Design, Manufacturing, etc.

  4. Working in Functional areas such as R&D, Analysis, Maintenance, Projects, component design, etc.

  5. Interested in pursuing further studies on the part-time or full-time basis in Design and Engineering Sector.

Technical Requirements

The program to give its best will need the following requirements:

  1. Computer/ Laptop will provide you with the best experience, but this program is quite compatible with smartphones to make it feasible for students worldwide.

  2. High-speed internet for crystal clear experience, but this program can also run without buffering with below-average connectivity for reaching out to students from suburban and rural areas.

  3. A student should make their notes for future reference.

  4. A student should have basic knowledge about high-school physics, maths, and chemistry, even though the pre-requisite of this program will be to brush up one’s basic concepts.

  5. A student should have a compatible computer for SOLIDWORKS CAD software so that they can practice with the progress of the course

 

Course Curriculum

    • Introduction to SOLIDWORKS 00:11:00
    • Two Wheeler Chassis Part 1 00:14:00
    • Two Wheeler Chassis Part 2 00:12:00
    • Rear Shock Absorber – 1 00:05:00
    • Rear Shock Absorber – 2 00:11:00
    • Rear Shock Absorber Part 3 00:11:00
    • Swing Arm scooter 00:18:00
    • Two Wheeler Tyre 00:09:00
    • Two wheeler Alloy wheel 00:20:00
    • Front suspension Scooter 00:14:00
    • Disc brake Rotor Scooter 00:16:00
    • Hub motor part 1 00:14:00
    • Hub Motor part 2 00:15:00
    • Hub Motor part 3 00:17:00
    • Motor controller scooter 00:22:00
    • Handle bar scooter 00:21:00
    • Scooter Assembly part 1 00:14:00
    • Scooter Assembly part 2 00:12:00
    • Front panel scooter 00:20:00
    • Scooter Headlight 00:12:00
    • Front mudguard 00:07:00
    • Middle body panel part1 00:27:00
    • Middle body panel part 2 00:17:00
    • Rear body panel scooter 00:24:00
    • Taillight 00:08:00
    • Swing arm panel 00:12:00
    • Modified taillight 00:25:00
    • Editing scooter mask 00:19:00
    • Final assembly scooter 00:16:00