Datapoint Newsletter: Summer '19, Vol. 25.3
New DatapointLabs Website; High Temperature Crash Properties
Read full postVerification & Validation of LSDYNA Simulations
Interactive, online training course offered by www.lsdyna-online.com.
Read full postDatapoint Newsletter: Spring '19, Vol. 25.2
Full metals testing capability added to DatapointLabs test catalog
Read full postImproving Simulation Quality with Reliable Materials Methods
Keynote address delivered at NAFEMS seminar on "Material Properties in Structural Calculation: Modeling, Calibration, Simulation & Optimization."
Read full postDatapoint Newsletter: Vol. 24.2
New Synergies with Applus+ Laboratories, Expanded Test Catalog
Read full postA Framework for the Calibration and Validation of Multiscale Material Models
Multiscale material models are being increasingly applied for high-level simulation of complex materials, such as continuous reinforced material products (unidirectional and woven product forms). These multiscale material models require input data from a minimum of experimental tests, which are then used to characterize a multiscale material model that can be used in structural simulations within a variety of commercial finite element solvers, including OptiStruct, RADIOSS, Abaqus, and LS-Dyna. Using these models, it is possible is to predict the performance of layups from single layer properties, as well as performance of these composites under complex loadings. We present a framework where the required experimental data are collected, including a process for maintaining traceability and consistency of the experimental data using the Matereality software. Experimental test data are transmitted to the HyperWorks Multiscale Designer software for development of an appropriate multiscale material model. The resulting multiscale material model data is stored within Matereality linked to the source experimental data. Different manufactured layups are tested and compared to simulation in a validation step which provides a measure of the solution accuracy.
Read full postDatapoint Newsletter: Winter '18, Vol. 24.1
Focus on Validation of Simulation: CAETestBench Validation for crash, additive manufacturing, injection molding, rubber hyperelasticity; Review of NAFEMS publication on V&V.
Read full postSimulation Verification and Validation for Managers: Book Review
This booklet is intended to be a guide to the V&V process.
Read full postAdditive Manufacturing Workflows
Simulation uncertainties arise from different assumptions made in model creation. Mid-stage software validations improve confidence and optimize the design of additively manufactured aerospace components.
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