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Analysis Software(nx) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
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Analysis Software Product List

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General-purpose finite element method analysis NX Nastran

General-purpose finite element method analysis

Nastran is widely used across all major manufacturing sectors and has unique features such as system modeling/substructuring (super elements), dynamic response analysis, and solution customization (DMAP), making it the industry standard for advanced system-level analysis in the automotive, aerospace, defense, heavy machinery, and shipbuilding industries.

  • Other analyses

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Thermal Fluid Analysis Software Simcenter FLOEFD for NX

"Siemens NX fully integrated thermal fluid analysis software" achieves high operability and advanced analysis capabilities.

Simcenter FLOEFD for NX is a thermal fluid analysis software fully integrated with Siemens NX. Its unique technology highly automates the complex setup of thermal fluid analysis, allowing general designers to easily conduct thermal fluid analyses. It is a new software that changes the perception that thermal fluid analysis is difficult. At the same time, it also has advanced analysis capabilities that meet the needs of dedicated analysts.

  • Thermo-fluid analysis

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Removing the barriers between designers and analysts: "Simcenter 3D"

It is a CAE tool that directly imports design data and handles coupled analysis (multiphysics) within a single framework.

"Simcenter 3D," a powerful tool that integrates CAE solutions from various specialized fields, can perform coupled analysis (multiphysics) simulations such as structural-fluid, structural-thermal, structural-thermal-fluid, and structural-mechanical analyses. It allows for the direct import of design data, mesh generation, and analysis all within a single framework. This is the digital tool of the future that removes the barriers between designers and analysts.

  • Plastic processing machines (cutting and rolling)
  • Analysis Services

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CAE tool "Simcenter 3D"

Support for model creation! CAD/FEM models can be used on the same platform!

"Simcenter 3D" is an integrated CAE tool of the high-end CAD [NX] series, equipped with CAD features that are advantageous for creating analysis models. Since this product inherits the capabilities of high-end CAD [NX], it excels in the manipulation of complex shape formation, simplification, and FEM mesh control. In recent years, analysis models have been trending towards increased complexity and scale, resulting in greater time and effort required for model creation. The ability to easily create the intended mesh and develop analysis models that closely resemble reality is a significant advantage. 【Features】 ■ Powerful FEM modeling ■ Seamless coupled analysis ■ Next-generation design through topology optimization ■ Integration with control and physical testing *For more details, please refer to the PDF materials or feel free to contact us.

  • Structural Analysis
  • Other analyses
  • Prototype Services

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Thermal and fluid analysis software for design verification - FloEFD

FloEFD is a user-friendly thermal and fluid analysis software for designers!

For example, when considering the thermal cooling of LEDs, when conceptualizing the design of a blade, or when presenting the efficiency of a new heat exchanger in a design review, FloEFD will be a great assistant for you as a designer. It is fully integrated with 3D CAD (CATIA V5, Creo (formerly Pro/ENGINEER), NX), so there is no need to learn separate operations; you can set conditions directly on the model and immediately perform thermal fluid analysis.

  • Thermo-fluid analysis
  • Analysis Services

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3D destruction analysis software 'FRANC3D'

Finite element method-based crack propagation analysis! Supports multiple crack front edges, multiple cracks, and multiple loading cases.

"FRANC3D" is a 3D fracture analysis software that enables the predictive analysis of crack growth in complex mechanical structural components and the evaluation of their service life. There are no limitations on the shape of components, local loading conditions, or the evolving crack shapes, regardless of complexity. Additionally, it is designed to be used in combination with general-purpose finite element (FE) analysis programs, and currently supports interfaces with three commercial programs: ANSYS, ABAQUS, and NASTRAN. 【Features】 ■ Utilizes reliable existing FE solvers and initial mesh models ■ Submodel meshing for high-precision arbitrary crack growth analysis ■ User-controlled crack growth laws for kink angles and increments ■ Fatigue model that allows for the definition of relative crack propagation ■ Multiple cracks with multiple crack surfaces and loading configurations *For more details, please refer to the PDF materials or feel free to contact us.

  • Software (middle, driver, security, etc.)

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Solid Edge Simulation (Analysis Package)

Embedded in Solid Edge, utilizing simulation technology Simcenter Femap and Nastran for designers.

Solid Edge Simulation is equipped with the industry-standard solver NASTRAN and utilizes Femap technology for pre- and post-processing, allowing for the creation of thin plate meshes and the ability to change mesh sizes on a per-part basis. 【Key Points for Selection】 - The technology of Femap with NX NASTRAN is integrated into the Solid Edge interface, making the analysis features user-friendly even for beginners. - Automatic mesh generation - Flexible mesh size adjustments in manual mode - User-friendly UI and analysis features focused on design - Types of analysis: ○ Linear static analysis ○ Linear buckling analysis ○ Eigenvalue analysis ○ Heat conduction analysis (steady/transient) ○ Optimization ○ MOTION analysis ○ Vibration response analysis Additionally, coupled analyses such as: ○ Linear static analysis + steady heat conduction ○ Linear buckling analysis + steady heat conduction are possible. - Scalable integration with the higher-level Femap is available. The Solid Edge Premium package primarily supports linear static analysis and MOTION analysis. For more details, please download the catalog or contact us.

  • Company:TAC
  • Price:Other
  • 3D CAD

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General-purpose 3D Thermal Fluid Analysis Software 'FLOW-3D' Case Study Collection

A collection of user analysis examples is packed! We are giving away a free collection of analysis cases for the thermal fluid analysis software 'FLOW-3D'!

The "FLOW-3D Analysis Case Collection" is a compilation of analysis cases from users who utilize "FLOW-3D." Our product, which possesses advanced capabilities for accurately predicting free surface flows, is an excellent CFD software that can be used not only for improving production processes but also during the design phase. This collection introduces cases where analyses of manufacturing processes were conducted using "FLOW-3D," leading to design improvements. [Featured Cases] ■ Production of metallic glass thin strips using the single roll method ■ Impact of gaps in inspection paper coating ■ Area control of soldering through coining processing ■ Welding analysis examples using "FLOW-3D" ■ Numerical analysis of selective laser melting using Ti-6Al-4V metal powder, among others *For more details, please request the materials or view the PDF data from the download section.

  • Thermo-fluid analysis

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Introduction to a fluid analysis program equipped with ease of use and a variety of analysis functions.

Simcenter Femap environment, plus fluid analysis!!

Femap Flow is a fluid analysis solver that is used as an add-on to Femap. Customers who are currently using Femap and wish to conduct fluid analysis can do so by adding it to their existing Femap environment, allowing them to perform fluid analysis using the Femap GUI. 【Features】 Not only can fluid analysis be performed, but by using the Femap GUI and model files, structural-fluid coupled analysis with NX Nastran can also be easily conducted. Additionally, by adding the Femap add-on thermal analysis software, Thermal, thermal-fluid coupled analysis can also be easily performed. 【Application Examples】 ○ Steady-state and unsteady fluid analysis are possible. ○ Analysis considering viscosity and compressibility is possible for liquid and gas layers at sonic speeds (up to Mach 4). ○ Modeling of Newtonian and non-Newtonian fluids is possible. ○ Turbulence models such as the FTV model, Mixing Length model, and k-ε model can be utilized. ○ Periodic boundary conditions can be modeled. ○ Fans can be defined not only at boundary surfaces but also in flow exposure. ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Other analyses

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[Analysis Case] Transient Flow Analysis of Vane Pumps

By utilizing the PumpLinx simulator for pump transient flow characteristics, smooth flow analysis within the vane pump can be conducted.

PumpLinx has mesh templates for various types of pumps. By using templates tailored to the specific pump type being analyzed, the time and effort typically spent on mesh generation for fluid analysis of standard pumps can be significantly reduced and streamlined. For example, even for complex mechanisms like vane pumps, optimal meshes for analysis can be quickly and automatically generated by setting parameters such as the number of vanes based on 3D CAD data. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on a single screen, making the analysis easier and faster. Furthermore, many volumetric pumps, including internal gear pumps, may experience cavitation during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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[Case Study] Transient Flow Analysis of Axial Piston Pumps

By utilizing the PumpLinx simulator for pump transient flow characteristics, smooth flow analysis within axial piston pumps can be conducted.

PumpLinx has mesh templates for various types of pumps. By using templates tailored to the specific pump type being analyzed, the time and effort typically spent on mesh generation for fluid analysis of standard pumps can be significantly reduced and streamlined. For example, even for complex mechanisms like axial piston pumps, optimal meshes for analysis can be quickly and automatically generated based on 3D CAD data by setting parameters such as the number of cylinders. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on a single screen, making the analysis easier and faster. Moreover, in many volumetric pumps, including axial piston pumps, cavitation may occur during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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[Analysis Case] Transient Flow Analysis of an Internal Gear Pump

By utilizing the PumpLinx simulator for pump transient flow characteristics, smooth flow analysis within the internal gear pump can be conducted.

PumpLinx has mesh templates for various types of pumps. By using templates tailored to the specific pump type being analyzed, the time and effort typically spent on mesh generation for fluid analysis of standard pumps can be significantly reduced and streamlined. For example, even for complex mechanisms like internal gear pumps, optimal meshes for analysis can be quickly and automatically generated based on 3D CAD data by setting parameters such as the number of teeth. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on one screen, making the analysis easier and faster. Furthermore, many volumetric pumps, including internal gear pumps, may experience cavitation during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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