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Path Category
Guided learning journeys that build knowledge step by step.
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7806 Paths · page 285 / 781
This learning path equips junior manufacturing engineering students with the knowledge to design and apply tooling used in manufacturing processes. It covers the fundamentals of manufacturing processes, material properties, tool materials, and the design principles for cutting tools, jigs, fixtures, and dies. The path emphasizes practical application and design considerations for real-world manufacturing.
This learning path introduces junior manufacturing engineering students to the principles and practices of dimensional metrology, tolerance interpretation, and inspection methods used in quality control. It covers measurement systems, geometric dimensioning and tolerancing (GD&T), coordinate measuring machines (CMM), and statistical process control, culminating in a practical inspection planning exercise.
This learning path equips junior manufacturing engineering students with the knowledge and skills to apply core quality principles in manufacturing. It covers foundational quality concepts, essential statistics, SPC and control charts, process capability, Six Sigma methodology, and practical quality tools, culminating in a capstone project.
This learning path introduces junior manufacturing engineering students to the core principles of Computer-Aided Manufacturing (CAM). Starting with CAD fundamentals, it progresses through CNC machining basics, G-code programming, tool path generation, and simulation, culminating in a practical project that integrates these concepts.
A structured learning path covering the fundamentals of manufacturing systems, production processes, and automation principles. It progresses from basic manufacturing concepts to the design and analysis of automated production lines, suitable for junior university students.
This learning path provides a systematic introduction to joining and assembly processes in manufacturing, covering welding, brazing, soldering, adhesive bonding, and mechanical fastening. It builds on fundamental materials science and manufacturing principles to help learners understand process selection, applications, and quality considerations.
A systematic learning path for sophomore university students to understand machining processes including turning, milling, drilling, grinding, and the underlying principles of cutting forces and tool wear. The path builds from foundational materials science and manufacturing principles through to process-specific analysis.
This learning path provides a systematic understanding of major casting and forming processes in manufacturing engineering. It covers the fundamental principles of materials science, then explores sand casting, investment casting, forging, rolling, and extrusion, including their process parameters, capabilities, and applications.
A beginner-friendly path introducing essential safety practices in manufacturing environments, covering hazard identification, PPE, machine safety, hazardous materials, and emergency procedures. Designed for high school students and newcomers to workshop settings.
This learning path introduces high school students to the fundamental manufacturing processes: casting, forming, machining, joining, and additive manufacturing. It builds from basic material properties and measurement skills to understanding how each process works, its applications, and how to select the right process for a given product.