Theories of elastic failure-Forming limit diagram-Failure criteria in simulation software

What you will learn

Theories of elastic failure for design problems

Forming limit diagram

Evaluation of metal forming process based on FLD

Nakajima test and ISO12004

Formability chart in FE-solvers

Why take this course?

πŸ‘©β€πŸ« **Course Title:** Material Failure Criteria for FE-solvers UsersπŸš€ **Headline:** Master the Theories of Elastic Failure, Forming Limit Diagrams, and Failure Criteria in Simulation Software!

πŸ“˜ **Course Description:**
Are you an engineer or a designer working with finite element analysis (FE-solvers) to simulate metal forming processes? Do you want to gain a deep understanding of material failure criteria and how to apply them effectively in your simulations? If so, this course is tailored just for you!

This comprehensive course, led by the experienced instructor Amr Shaaban, delves into the fundamental theories behind elastic failure and guides you through the practical application of these concepts. With six informative lectures, you’ll explore everything from stress-strain curves to the intricacies of the forming limit diagram (FLD).

**Course Highlights:**

– **Lecture 1 & 2: Stress Strain Curve Mastery**
– Dive into true and engineering stress data.
– Understand various types of stresses.
– Learn about the theories of elastic failure.


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– **Lectures 3 to 6: Beyond Elasticity**
– Grasp the concept of major and minor strain.
– Examine the Nakajima test and its significance.
– Get familiar with ISO 12004 standards for material testing.
– Interpret data effectively.
– **🌟 Special Focus on Lsdyna Simulations**
– Apply your knowledge to deep drawing process simulation using Lsdyna.
– Understand how to utilize the FLD in evaluating the deep drawing process.
– Explore graphs like formability and triaxility to enhance your analysis.

– **Practical Implementation & Real-World Application**
– The course culminates with a practical application of failure criteria within the context of FE-solvers, particularly focusing on Lsdyna software.

– **Additional Resources**
Each lecture includes valuable material to support your learning journey and complement the video recordings.

– **Integration with Related Courses**
This course is seamlessly integrated with our other Udemy courses: “Mechanical Design – A Comprehensive Course” and “Ansys Explicit Dynamics Course,” which will soon be available in English to enhance your multidisciplinary understanding.

**Why Take This Course?**
– **Industry-Relevant Skills:** Enhance your skills for professional simulation software usage.
– **Practical Knowledge:** Combine theoretical background with practical implementation.
– **Enhanced Decision Making:** Evaluate and improve metal forming processes through effective application of failure criteria.
– **Expert Insights:** Learn from an instructor with extensive knowledge in the field.

πŸŽ“ Whether you’re a beginner or looking to refine your skills, this course is designed to equip you with the knowledge you need to confidently tackle material failure criteria and apply them within your FE-solvers simulations. Don’t miss this opportunity to elevate your expertise in mechanical design and simulation! Enroll now and join a community of professionals who are at the forefront of their field! πŸŽ“

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