fatpack provides functions and classes for fatigue analysis of data series.
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Updated
Nov 30, 2023 - Python
fatpack provides functions and classes for fatigue analysis of data series.
ANYstructure is the ultimate steel structure design tool for plate fields and cylinders. Weight optimization for all structures with machine learning capabilities. Calculations are based on DNV standards and rules.
Fast rainflow counting written in C (C99). Including wrappers for MATLAB and Python
A short-crack finite element model incorporating both crystal plasticity and phase-field modeling of the crack geometry.
Nitinol design concepts and examples from Confluent Medical Technologies
Calculate and optimise fatigue crack growth
Me and my Advisors' 3 Months of Research and Project about Fatigue Voice Analysis using Transfer Learning and Convolutional Neural Networks
Design of a Generic IVC Filter
A web app that supports patients with chronic fatigue (ME/CFS, long COVID, ...) by tracking their energy level after each activity.
A C++ implementation of the ASTM E1049-85 rain flow cycle counting algorithm for fatigue analysis
This is the repository of the journal paper: Neural networks for fatigue crack propagation predictions in real-time under uncertainty - Giannella et al.
This is the official repository for the paper on long term fatigue using a dumbell lifting optimal control problem
This repository hosts the project reports for the 'Applied FEA' course, which delves into the application of Finite Element Analysis (FEA) to a wide range of problems. It covers a variety of analyses, such as static, pseudo-static, dynamic, modal, buckling, contact, heat transfer, thermal stress, and thermal shock, all conducted using Ansys.
Shiny apps for and load analysis - statistical evaluation of fatigue data and rainflow cycles
NonlOCAL Results Processor for Finite Element Analysis (NOCAL-FEA)
Automatic and optimized calculation of critical plane parameters by means of a semi-analytical formulation
Automatic and optimized calculation of critical plane parameters by means of an efficient formulation based on stress and strain tensors occurring at each load step of a finite element analysis.
Calculation of the Fatemi-Socie critical plane factor by means of an analytical formulation based on the hypotesis of proportional loading and linear-elastic material properties.
Automatically assign FEMFAT material files according to matching group names
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