Modern manufacturing systems
Published 9/2026
Created by Prof Dr Ramesh Babu Damarla
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Intermediate | Genre: eLearning | Language: English | Duration: 15 Lectures ( 5h 0m ) | Size: 3.2 GB
Published 9/2026
Created by Prof Dr Ramesh Babu Damarla
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Intermediate | Genre: eLearning | Language: English | Duration: 15 Lectures ( 5h 0m ) | Size: 3.2 GB
For Business Management students
What you'll learn
Compare traditional production lines with Industry 4.0 IoT-integrated systems to determine where data integration yields the greatest reductions in downtime and
Analyze manufacturing workflows using Lean principles to identify and eliminate non-value-added activities, inventory buffers, and material movement inefficienc
Evaluate automated material handling, robotic transfer, and sensor-based feedback loops to determine their impact on line balancing and operational throughput.
Differentiate between the operational mechanisms of water jet, ultrasonic, and thermal machining to identify their specific effects on material integrity and suRequirements
No programming experince needed.Description
Modern Manufacturing Systems provides a comprehensive introduction to contemporary manufacturing technologies, automation, advanced machining processes, and quality improvement methodologies used in modern industries. The course develops an understanding of how manufacturing systems have evolved from manual operations to highly automated and computer-integrated production environments.
The course begins with the fundamentals ofmodern manufacturing systems, including manual work systems, worker-machine systems, automated systems, and computer-integrated manufacturing. Students learn how automation, robotics, CNC technology, and computer-based production systems contribute to improved productivity, quality, flexibility, and manufacturing efficiency.
A major component of the course focuses onLean Manufacturing and Six Sigma, covering concepts such as waste elimination, 5S, Kaizen, Just-in-Time (JIT), continuous improvement, process variation, defect reduction, and the DMAIC methodology. Students understand how Lean Six Sigma principles are applied to improve manufacturing processes and eliminate non-value-adding activities.
The course also introducesconventional and computer-controlled machining, with particular emphasis onCNC machining. Students learn the basic principles of CNC turning and milling, coordinate systems, G-code and M-code, cutting parameters, CAD/CAM integration, advantages, applications, and limitations of CNC technology.
The course further covers importantnon-traditional and advanced machining processes, including
Water Jet Machining (WJM) and Abrasive Water Jet Machining (AWJM)
Laser Beam Machining (LBM)
Electrical Discharge Machining (EDM)
Electrochemical Machining (ECM)
Ultrasonic Machining (USM)
Plasma Arc Machining (PAM)
Chemical Machining (CM)
3D Printing/Additive ManufacturingFor each process, students are introduced to its working principle, process mechanism, equipment, applications, advantages, limitations, and suitable materials.
By the end of the course, students will be able to understand and compare different manufacturing systems and select appropriate machining and automation technologies for specific manufacturing Requirements
. The course emphasizes practical understanding, industrial applications, productivity improvement, quality enhancement, and the role of advanced manufacturing technologies in Industry 4.0 and smart manufacturing environments.
Who this course is for
Students of Business Management. Manufacturing , Operations and Production specialization students of Masters and Bachelors degree students.Homepage
Code:
https://www.udemy.com/course/modern-manufacturing-systems
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