Using flexible gears in order to detect the root cause of gear damage
E-seminars

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Using flexible gears in order to detect the root cause of gear damage
E-seminars

DEVELOPING AN AEROELASTIC STABILITY ANALYSIS PROCESS FOR LARGE WIND TURBINES USING MULTIBODY SIMULATION
E-seminars

Simulation and Validation of Derailment Experiments with Simpack 2016 SIMULIA European Multibody Simulation User Group Meeting
E-seminars

DEVELOPING AN AEROELASTIC STABILITY ANALYSIS PROCESS FOR LARGE WIND TURBINES USING MULTIBODY SIMULATION
E-seminars

Using flexible gears in order to detect the root cause of gear damage
E-seminars

ADDITIVE MANUFACTURING FOR GENERATIVE DESIGN
Community News

Real-Time Execution of SIMPACK Models under Simulation Workbench
E-seminars

Researchers at Morocco’s University Hassan First were faced with compatibility problems when replacing centuries old masonry with modern construction block and mortar while restoring heritage buildings. Realistic simulation with Abaqus FEA software from Dassault Systèmes’ SIMULIA helped the university identify internal compressive stresses between dissimilar materials.
Tech Notes

SIMPACK Biomotion driver and occupant models for singletrack, multi-track and other vehicles
E-seminars

Dynamic characteristics analysis of wind turbine transmission chain
E-seminars

SIMULIA Multibody Simulation User Group Meeting 2017 PROGRAM
E-seminars

In this paper, a drone propeller is used as an example to illustrate the print failure modeling strategy. The commercial finite element software package ABAQUS is used to simulate the FDM printing process and in-service performance of the propeller. In order to analyze the printing process, a heat transfer analysis is done first to predict the temperature history of the part, which drives the stress analysis for distortion and residual stress predictions. The tool path patterns dictate how material is added during the printing and it also have direct influence in the residual stresses in the part. Abaqus uses machine tool path as a direct input and solves the local orthotropic material properties and evolving cooling surfaces using the event series and progressive element activation technologies.
Customer Papers

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