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Amy Moore

Learners will create a roadmap to achieve their own personal goals related to the digital manufacturing and design (DM&D) profession, which will help them leverage relevant opportunities. The culminating project provides a tangible element to include in their professional portfolios that showcases their knowledge of Industry 4.0.

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Learners will create a roadmap to achieve their own personal goals related to the digital manufacturing and design (DM&D) profession, which will help them leverage relevant opportunities. The culminating project provides a tangible element to include in their professional portfolios that showcases their knowledge of Industry 4.0.

This project is part of the Digital Manufacturing and Design Technology specialization that explores the many facets of manufacturing’s “Fourth Revolution,” aka Industry 4.0. To learn more about the specialization and its courses, please watch the overview video by copying and pasting the following link into your web browser: https://youtu.be/wETK1O9c-CA

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What's inside

Syllabus

Project Definition
The purpose of this module is to introduce learners to the factors and trends motivating the transition from the current state of manufacturing to a Digital Manufacturing and Design (DMD) model. Learners will demonstrate critical thinking to define a personalized roadmap project relating to the transformation such that they can impact themselves and the future of DMD. Details of individual lessons in this module are provided below.
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Self-Assessment
The purpose of this module is for learners to identify their current situation, perform a self-assessment, and create a personalized future goal within the Digital Manufacturing and Design paradigm. Details of individual lessons in this module are provided below.
Network Exploration
This module focuses on defining and acquiring resources to help learners grow their network to assist in attaining the future goal identified within the Digital Manufacturing and Design domain. Details of individual lessons in this module are provided below.
Roadmap Execution
In this module, learners will created a realistic roadmap execution plan to transition from a current state to a future desired state in the Digital Manufacturing and Design paradigm, using concepts gleaned throughout the course and elsewhere.
Final Project Submission and Peer Review Evaluation
In this final module, learners will continue to complete final edits and submit personalized artifacts and attestations to support a transition from a current state to a future state in Digital Manufacturing and Design as a peer review. Learners will review and provide feedback of the work of classmates.

Good to know

Know what's good
, what to watch for
, and possible dealbreakers
Helps learners transition from their current state to their future state in Digital Manufacturing and Design (DMD)
Provides tangible portfolio piece that demonstrates Industry 4.0 knowledge
May feel niche or overly specific to learners not interested in Digital Manufacturing and Design (DMD)

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Reviews summary

Digital manufacturing success guide

Learners say this course is an excellent guide for success in digital manufacturing with great topics, especially those covering SWOT analysis. The roadmap approach is informative, practical, and comprehensive, providing valuable real-world examples and industry insights.
Excellent professors with clear explanations
"Very Good course; Dr. Ken English is excellent professor"
"All professors, especially Prof. Ken English has explained very well"
"Fantastic Course for ever"
Practical examples and industry insights
"Comprehensive course covering all aspects with real world example and practical inputs to succeed in Industry 4.0 adoption"
"Excellent Subject!"
"Great courses (Digital Manufacturing & Design Technology) with very exhaustive and informative"
Clear path to success in Digital Manufacturing
"This course is a good guidance to find out where we should start."
"Roadmap to Success in Digital Manufacturing & Design"
"Obviously Its Road map to complete the task in success of DMD"

Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Roadmap to Success in Digital Manufacturing & Design with these activities:
Review Computer Aided Design (CAD) Concepts
CAD will allow students to model, create, and visualize objects and structures as part of their coursework
Show steps
  • Review basic CAD terminology and concepts
  • Familiarize yourself with CAD software and its interface
  • Create basic geometric shapes and structures
Follow tutorials on 3D Printing and Fabrication Techniques
3D Printing and Fabrication Techniques are essential elements of the Digital Manufacturing and Design (DMD) process
Browse courses on 3D Printing
Show steps
  • Identify and research different types of 3D printing technologies
  • Understand the basics of slicing and modeling for 3D printing
  • Complete tutorials on preparing and operating 3D printers
Design and Create a 3D Model of a Digital Manufacturing System
Reinforce your understanding of digital manufacturing principles by designing and creating a virtual model of a manufacturing system, fostering hands-on experience and practical application.
Browse courses on Digital Manufacturing
Show steps
  • Research and gather information on digital manufacturing systems
  • Choose a specific manufacturing process to focus on
  • Design the 3D model using computer-aided design (CAD) software
  • Simulate the operation of the manufacturing system using the 3D model
Six other activities
Expand to see all activities and additional details
Show all nine activities
Create a Project Proposal for a Personal Goal Related to Digital Manufacturing and Design
The project proposal will outline your plans to leverage relevant opportunities in the field of Digital Manufacturing and Design (DMD)
Show steps
  • Define a specific goal related to Digital Manufacturing and Design
  • Research the industry and identify potential opportunities for your goal
  • Develop a plan to achieve your goal, including a timeline and milestones
Solve Digital Manufacturing Design Optimization Problems
Deepen your understanding of design optimization techniques in digital manufacturing by solving a series of problems, enhancing your problem-solving skills and analytical abilities.
Browse courses on Digital Manufacturing
Show steps
  • Review the fundamentals of design optimization
  • Identify the design parameters and constraints
  • Apply optimization techniques to find the optimal solution
  • Evaluate the results and make necessary adjustments
Practice Problem-Solving Exercises in Digital Manufacturing and Design
Solving practice problems will enhance your critical thinking abilities and problem-solving skills essential for success in Digital Manufacturing and Design
Browse courses on Digital Manufacturing
Show steps
  • Identify online resources or textbooks with practice problems
  • Set aside dedicated time for solving these problems regularly
  • Review your solutions and identify areas for improvement
Identify and Contact Potential Mentors in the Digital Manufacturing and Design Field
Having a mentor can provide guidance, support, and valuable insights into the field of Digital Manufacturing and Design
Browse courses on Mentorship
Show steps
  • Identify individuals in your network or industry who align with your career goals
  • Craft a personalized email or message introducing yourself and expressing your interest in mentorship
  • Follow up and schedule an introductory meeting to discuss potential mentorship opportunities
Review 'Additive Manufacturing Technologies: 3D Printing, Rapid Prototyping, and Direct Digital Manufacturing' by Ian Gibson
This book provides a comprehensive overview of additive manufacturing technologies, which are essential for understanding Digital Manufacturing and Design
Show steps
  • Read the book thoroughly, taking notes and highlighting key concepts
  • Complete the end-of-chapter exercises to test your understanding
  • Summarize the main ideas and how they relate to Digital Manufacturing and Design
Contribute to Open-Source Projects Related to Digital Manufacturing and Design
Contributing to open-source projects can provide hands-on experience and enhance your understanding of Digital Manufacturing and Design principles
Browse courses on Open Source
Show steps
  • Identify open-source projects on platforms like GitHub and GitLab
  • Select a project that aligns with your interests and skills
  • Follow the project's guidelines and contribute code, documentation, or other resources

Career center

Learners who complete Roadmap to Success in Digital Manufacturing & Design will develop knowledge and skills that may be useful to these careers:
Mechatronics Technician
A Mechatronics Technician designs, develops, and maintains mechatronic systems. They use their knowledge of mechatronics technologies and principles to create systems that are efficient, reliable, and safe. This course may be useful for Mechatronics Technicians because it provides a foundation in digital manufacturing and design, which are increasingly important in the mechatronics industry.
Robotics Technician
A Robotics Technician designs, develops, and maintains robotic systems. They use their knowledge of robotics technologies and principles to create systems that are efficient, reliable, and safe. This course may be useful for Robotics Technicians because it provides a foundation in digital manufacturing and design, which are increasingly important in the robotics industry.
Automation Technician
An Automation Technician designs, develops, and maintains automated systems. They use their knowledge of automation technologies and principles to create systems that are efficient, reliable, and safe. This course may be useful for Automation Technicians because it provides a foundation in digital manufacturing and design, which are increasingly important in the automation industry.
Digital Manufacturing Technician
A Digital Manufacturing Technician operates and maintains digital manufacturing equipment. They use their knowledge of digital manufacturing processes and equipment to produce high-quality products and services. This course may be useful for Digital Manufacturing Technicians because it provides a foundation in digital manufacturing and design, which are increasingly important in the digital manufacturing industry.
Additive Manufacturing Technician
An Additive Manufacturing Technician operates and maintains additive manufacturing equipment. They use their knowledge of additive manufacturing processes and equipment to produce high-quality products and services. This course may be useful for Additive Manufacturing Technicians because it provides a foundation in digital manufacturing and design, which are increasingly important in the additive manufacturing industry.
Sales Engineer
A Sales Engineer sells products and services to customers. They use their knowledge of engineering principles and products to help customers select the right products and services for their needs. This course may be useful for Sales Engineers because it provides a foundation in digital manufacturing and design, which are increasingly important in the sales process.
Design Engineer
A Design Engineer designs, develops, and tests products and components. They use their knowledge of engineering principles and materials to create products that are safe, efficient, and meet customer needs. This course may be useful for Design Engineers because it provides a foundation in digital manufacturing and design, which are increasingly important in the manufacturing industry.
Web Developer
A Web Developer creates and maintains websites. They use their knowledge of web design and development technologies to create websites that are visually appealing and easy to use. This course may be useful for Web Developers because it provides a foundation in digital manufacturing and design, which are increasingly important in the web development process.
Product Development Engineer
A Product Development Engineer designs and develops new products. They use their knowledge of engineering principles and materials to create products that meet customer needs and are safe, efficient, and manufacturable. This course may be useful for Product Development Engineers because it provides a foundation in digital manufacturing and design, which are increasingly important in the product development process.
Quality Control Manager
A Quality Control Manager ensures that products and services meet quality standards. They develop and implement quality control procedures, and they oversee the inspection and testing of products and services. This course may be useful for Quality Control Managers because it provides a foundation in digital manufacturing and design, which are increasingly important in the manufacturing industry.
Research and Development Engineer
A Research and Development Engineer designs and develops new products and technologies. They use their knowledge of engineering principles and materials to create products that are safe, efficient, and meet customer needs. This course may be useful for Research and Development Engineers because it provides a foundation in digital manufacturing and design, which are increasingly important in the research and development process.
Technical Writer
A Technical Writer creates documentation for products and services. They use their knowledge of engineering principles and products to write clear and concise documentation that helps users understand how to use and maintain products and services. This course may be useful for Technical Writers because it provides a foundation in digital manufacturing and design, which are increasingly important in the documentation process.
Manufacturing Engineer
A Manufacturing Engineer plans and oversees the production of goods and services. They use their knowledge of manufacturing processes and equipment to develop and implement efficient and cost-effective manufacturing systems. This course may be useful for Manufacturing Engineers because it provides a foundation in digital manufacturing and design, which are increasingly important in the manufacturing industry.
Production Manager
A Production Manager oversees the production of goods and services. They are responsible for planning and scheduling production, as well as managing the production team. This course may be useful for Production Managers because it provides a foundation in digital manufacturing and design, which are increasingly important in the manufacturing industry.
User Experience Designer
A User Experience Designer designs the user interface for products and services. They use their knowledge of human factors and design principles to create user interfaces that are easy to use and enjoyable. This course may be useful for User Experience Designers because it provides a foundation in digital manufacturing and design, which are increasingly important in the user experience design process.

Reading list

We've selected 14 books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Roadmap to Success in Digital Manufacturing & Design .
Provides a comprehensive overview of digital manufacturing, including its principles, technologies, and applications. It valuable resource for students and professionals in the field.
Covers the different types of additive manufacturing technologies, their advantages and disadvantages, and their applications. It good reference for students and professionals who want to learn more about this topic.
Provides an overview of the product design and development process. It covers topics such as product planning, design, and testing. It good resource for students and professionals who want to learn more about this topic.
Provides a systematic approach to engineering design. It covers topics such as problem definition, concept generation, and design evaluation. It good resource for students and professionals who want to learn more about this topic.
Provides an overview of computer-aided design and manufacturing (CAD/CAM). It covers topics such as CAD software, CAM software, and CNC machines. It good resource for students and professionals who want to learn more about this topic.
Provides an overview of engineering mechanics, including both statics and dynamics. It covers topics such as forces, moments, and motion. It good resource for students and professionals who want to learn more about this topic.
Provides an overview of electrical engineering. It covers topics such as circuits, electronics, and power systems. It good resource for students and professionals who want to learn more about this topic.
Provides an overview of computer science. It covers topics such as data structures, algorithms, and software engineering. It good resource for students and professionals who want to learn more about this topic.
Provides an overview of mathematics for engineers. It covers topics such as calculus, linear algebra, and differential equations. It good resource for students and professionals who want to learn more about this topic.
Covers basic statistical principles and hypothesis testing procedures that form an integral part of a practicing engineer or scientist's toolkit.
Provides a quick reference to manufacturing processes. It covers a wide range of topics, including metalworking, plastics processing, and composites. It good resource for students and professionals who want to learn more about this topic.

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