![]() ![]() The basis is applied themodynamics (CalPhaD), which have been extended with physically based models from materials engineering in a practical way.ICME is defined as “the integration of personnel (e.g., engineers, designers, etc.), computational models, experiments, design, and manufacturing processes across the product development cycle, for the purpose of accelerating and reducing the cost of development of a materials system or manufacturing process” For example, JMatPro supports these systems (alphabetically): Abaqus, Comsol Multiphysics, Deform, Forge, LS-Dyna, Magmasoft, ProCast, Qform, Simufact and Sysweld.Įven without in-depth knowledge of a material scientist, the user gets the material-physically coherent data at the push of a button. The material data sets are consistent for the different FEM programs. This goes as far as the prediction of flow curves and transformation diagrams, e.g. Often, the input of the chemical composition is sufficient to calculate the values for physical properties with analytical precision. For metallic structural materials, the new JMatPro V12.4 offers a simple and cost-efficient way to create material maps for different target systems without the need for time-consuming material tests. ![]() With the new version of JMatPro®, consistent material maps can be generated for different FEM systems. ![]() Important boundary conditions for these simulations are the material parameters, which are often summarised in so-called material cards. There are a number of popular software solutions whose performance and practical applicability are continuously being improved. Today, FEM simulation is used as standard in the development of new products and the optimisation of manufacturing processes. ![]()
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