Diploma in Post-Processing, Inspection and Traceability AM

About us Diploma in Post-Processing, Inspection and Traceability AM

The Diploma in Post-Processing, Inspection, and Traceability in Additive Manufacturing (AM) focuses on the application of advanced techniques for the analysis and optimization of additive manufacturing (AM) processes, including inspection and the establishment of traceability to ensure the quality and certification of components produced using AM. It addresses the use of 3D scanning, data analysis, and non-destructive testing (NDT) techniques specific to AM, such as ultrasound, computed tomography, and microscopy, in evaluating the integrity of parts. The program also covers the implementation of digital traceability systems and the management of the supply chain for AM, ensuring compliance with regulations and industry standards.

Hands-on experience is provided in the use of simulation software for post-processing, design optimization, and manufacturing preparation, including material selection and process parameter management. Professionals are trained to ensure the quality of AM parts, meet certification requirements, and establish robust traceability systems. These professionals are essential to the industry in roles such as quality engineers, AM specialists, data analysts, and traceability managers.

Target keywords (natural in the text): additive manufacturing, post-processing, AM inspection, AM traceability, non-destructive testing, 3D scanning, process optimization, AM quality, certification, supply chain.

Diploma in Post-Processing, Inspection and Traceability AM

1,370 $

Competencies and results

What you will learn

Who this program is for:

Diploma in Post-Processing, Inspection and Traceability AM

9.9 Introduction to Rotor Modeling in Naval AM
9.9 Fundamentals of Post-Processing in Naval AM Assets
9.3 Rotor Inspection: AM Methods and Technologies
9.4 Traceability in Naval Additive Manufacturing
9.5 Rotor Design Optimization for AM Performance
9.6 Rotor Performance Evaluation: AM Metrics and Analysis
9.7 Advanced Rotor Modeling: AM Simulation and Validation
9.8 Integrating AM into the Naval Supply Chain
9.9 Case Studies: AM Rotor Modeling, Processing, and Evaluation
9.90 Future Trends in Naval AM Rotor Modeling

Capstone-type projects

Admissions, fees and scholarships

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