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ABAQUS Ductile Damage Tutorial – Smashing a Pumpkin – Fidelis Fun Features

https://www.youtube.com/watch?v=cB2-cr9FnCY&t=4s We’re smashing pumpkins! The Fidelis Fun Features series is aimed at taking a lighthearted approach to learning some of the more advanced features of ABAQUS in a fun and efficient way. In this video, we take you through the steps required to build geometry, define materials that include ductile damage parameters and prescribe necessary

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ABAQUS Smoothed Particle Hydrodynamics (SPH) Tutorial – Beer Pour Simulation – Fidelis Fun Features

https://www.youtube.com/watch?v=hMjNb01JApA The Fidelis Fun Features series is aimed at taking a lighthearted approach to learning some of the more advanced features of ABAQUS in a fun and efficient way. In this video, we take you through the steps required to build geometry, define SPH materials, convert mesh to particles and define necessary interactions, loads and

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Which Abaqus Element Type Should My Finite Element Analysis (FEA) Simulation Use?

Have you ever found yourself wondering which Abaqus element formulation is most suitable for your analysis? With the vast options provided within Abaqus Standard and Abaqus Explicit, novice and experienced users alike often find themselves asking this very question, and for good reason: selecting the appropriate element type with respect to your simulation objectives is

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Fidelis Announces Strategic Partnership With Xitadel

Fidelis Engineering Associates, a premier CAE consultancy specializing in product development and technology implementation, is proud to announce that we have formed a strategic partnership with Xitadel, a leading CAE technology and services provider based in India. This partnership leverages the core strengths of both companies and allows Fidelis and Xitadel to provide our customers

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Why Won’t My Finite Element (FEA) Model Converge and Solve?

At Fidelis, we’re passionate about finite element analysis (FEA) for simulation. As analysts ourselves, we’re all too familiar with the despair and frustration that comes with developing ~what you think~ is a robust finite element model, only for it to self-terminate with errors. “What is going on?”, “Where did I go wrong?”, “Does this computer

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