Ansys GRANTA MI

Ansys GRANTA MI

The leading system for materials information management

Ansys GRANTA MI

Ansys is a software suite of Ansys Inc.

Ansys GRANTA MI Enterprise is the leading database system for materials information management in engineering enterprises.
This single, gold source for your organization’s materials intellectual property (IP) saves time, cuts costs and eliminates risk.

With GRANTA MI:

  • Capture and reuse vital knowledge about metals, plastics and composites
  • Provide accurate data for CAD, CAE, and PLM
  • Drive materials innovation
  • Empower design
  • Solve materials-related business problems
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GRANTA MI Materials data analysis

 

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CASE STUDY

CFD analysis of an industrial burner of a regeneration gas heater application

Using CFD analysis to save time and money in designing and testing industrial burners for the oil and gas industry

In this technical case study, EnginSoft was called in to assist in the application of Computational Fluid Dynamics (CFD) to model the flame size of a regeneration gas-fired heater for a project in Oman.

ansys mechanics energy oil-gas

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CASE STUDY

Filling and compression analysis of metallic powders composed of spherical particles

The efficiency of material design can be greatly improved by using FEM-based virtual material testing analysis

This article presents an example of the analysis of a powder composed of spherical particles. Since powders have a very fine heterogeneous structure, a multi-scale approach based on homogenization analysis is proposed.

multiscale ansys mechanics

CASE STUDY

CFD Characterization of the Ventricular Assist Device HeartAssist 5® Through a Sliding Mesh Approach

Analysis to determine possible optimizations to enhance device safety and efficacy for long-term patient use

This technical article describes how high-end numerical Computational Fluid Dynamics (CFD) simulations were applied to mimic the realistic operating conditions of a Ventricular Assist Device (VADs) and analyze its hemodynamics in order to identify potential areas for optimization of the device’s performance, safety and efficacy.

ansys cfd biomechanics

CASE STUDY

Reshaping the DEMO Tokamak’s TF Coil with high fidelity Multiphysics CAE and advanced mesh morphing

This article describes the Multiphysics optimization procedure undertaken to ensure the best compromise between electromagnetic and structural compliance for the Toroidal Field coils of the Advanced Divertor Configurations of the toroidal chamber, that holds the plasma in which the fusion reaction takes place.

energy ansys rbf-morph