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更新日: 集計期間:Oct 15, 2025~Nov 11, 2025
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softの製品一覧

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AUTODESK(R)SIMULATION MECHANICAL

High analysis capabilities of Autodesk Simulation Mechanical and high-precision analysis achieved with an automatic hexahedral mesher!

Autodesk Simulation Mechanical is a structural analysis package with a wide range of analysis capabilities. It can perform static stress analysis with linear and nonlinear material models, mechanical event simulation (MES: nonlinear dynamic analysis), linear dynamic analysis, steady-state and transient heat conduction, electrostatic analysis, and multiphysics (coupled analysis). As part of the family of CAE software, it includes resin flow analysis Moldflow and thermal-fluid analysis CFD, allowing for coupling between resin flow-structure and fluid-structure. Additionally, the cloud CAE service Sim360 enables cost-effective utilization of Autodesk Simulation family products whenever needed.

  • Structural Analysis
  • Thermo-fluid analysis
  • Magnetic field analysis/electromagnetic wave analysis

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Creo Simulate

Enabling 3D virtual typing to develop higher quality products at lower development costs!

Creo Simulate is a simulator option that allows for structural strength analysis, thermal analysis, vibration analysis, and more within the Creo Parametric operating environment. This comprehensive functionality enables you to verify the performance of a 3D virtual prototype before creating the first physical part. It provides valuable insights that can shorten time-to-market while improving product durability, reliability, and safety. With Creo Simulate, the need for physical prototypes is reduced, which also lowers manufacturing costs. By using these solutions, you can quickly and easily modify designs, reduce errors, and lightweight products, ensuring a cost-effective manufacturing process and material selection. **Key Benefits** - You can understand product performance early on and detect design flaws, which enhances the quality of the initial design. - An intuitive and user-friendly interface improves work efficiency.

  • 3D CAD

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Material Microstructure Analysis Software MICRESS

Analyzing material microstructures! Microstructure analysis software based on the multi-phase field method.

MICRESS is software that calculates the alloy microstructure formation process based on the multi-phase field method. It can evaluate and predict changes in microstructure from the solidification process to the crystallization process, grain growth, and eutectoid reactions. 【Examples of MICRESS Calculations】 〇 Crystal grain growth and recrystallization 〇 Solidification processes (equi-axed/columnar grains/precipitates, etc.) 〇 Growth of graphite phase (such as ductile cast iron) 〇 3D additive manufacturing 〇 Diffusion bonding (brazing) 〇 Austenite-ferrite transformation 〇 CFD calculations of dendritic interstitial flow in molten metal 〇 Coupled calculations of microstructure growth and natural convection in molten metal *Calculations considering molten metal flow and stress/strain are available as an option. ★ For more details, please download the PDF or feel free to contact us. ★

  • Other metal materials

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When it comes to structural analysis, Abaqus is the go-to. It predicts contact and crack propagation with high precision.

Integration of implicit and explicit methods. For elucidating a wide range of phenomena such as heat, electricity, magnetic fields, and fluids.

In nonlinear structural analysis, the three key nonlinearities are material, geometry, and boundary conditions. In recent design practices, there is a necessity to consider contact in assembly components using complex material models. Abaqus can accurately model not only classical metal material constitutive laws but also failure models due to rate dependence and polymers such as rubber and resin. Additionally, the innovative formulation of surface-to-surface contact achieves more robust convergence and higher analysis accuracy compared to other structural analysis tools. The general contact feature requires minimal user setup, significantly reducing the time needed to define contact in complex assemblies found in automobiles, aircraft, consumer electronics, and portable electronic devices.

  • 企業:IDAJ
  • 価格:Other
  • Structural Analysis
  • Stress Analysis
  • Other analyses

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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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General-purpose acoustic analysis system "Actran" *Free case study collection available!

Sound simulation in 3D detailed models is now possible! Analyze radiated sound and noise generated from various structures! Large-scale acoustic analysis is also possible.

"Actran" is a general-purpose tool for acoustic analysis. By selecting the optimal solver (finite element method, finite volume method, statistical energy analysis) according to the target, it enables analysis tailored to objectives (accuracy, cost) and development phases. It also allows for understanding the sound propagation mechanism through animation and auditory prediction using sound playback functionality. 【Features】 ■ Supports both structural vibration sound and fluid sound ■ Coupled calculations between flow-structural vibration-sound ■ Compatible with not only FEM (finite element method) but also SEA (statistical energy analysis) ■ Includes thermal and simplified CFD functions, considering the effects of background differences on sound propagation. ■ Large-scale acoustic analysis with hundreds of millions of degrees of freedom, essential for high-frequency analysis beyond the audible range ■ Supports three fluid sound sources (Lighthill, Mohring, pressure fluctuations on structural surfaces) ■ Supports random sound fields. Acoustic transmission loss analysis using diffuse boundary conditions is also possible. ■ Capable of both frequency response and time history response analysis ■ Analysis using experimental data is also possible ■ Optimization through automatic continuous execution of parameter studies *For more details, please refer to the PDF materials or feel free to contact us.

  • Acoustic Analysis
  • Other analyses
  • Contract Analysis

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General-purpose thermal fluid analysis software 'Simerics MP+'

It is possible to perform everything from mesh generation to analysis and post-processing in the same environment!

Simerics MP+ is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements for oil pumps used in automobiles and construction machinery, with examples including vane pumps for power steering and CVTs, as well as trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. In particular, please see a demo for the actual mesh creation and movement!!

  • Thermo-fluid analysis
  • Contract Analysis
  • simulator

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Simerics MP+ is also used for cooling analysis of motors and batteries.

Not only applicable to hydraulic circuits such as engines and transmissions, but also has numerous application results in the analysis of oil cooling, water cooling, and air cooling circuits for motors and batteries!

PumpLinx is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, please see a demo presentation for the actual mesh creation and movement!

  • Thermo-fluid analysis
  • Contract Analysis
  • simulator

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[Case Study] Flow Field Analysis of Axial Flow Fan 'AICFD'

Elevate the efficiency and performance of fan design with precise flow field analysis!

This introduction discusses the flow field analysis of axial fans using the general-purpose intelligent thermal fluid analysis software AICFD. Flow field analysis is an important means of visualizing and predicting the complex movement of fluids inside the fan. Through flow field analysis, detailed information such as turbulence, pressure loss, and temperature distribution can be obtained, allowing for early detection of issues during the design phase and the implementation of improvements. After the simulation is completed, post-processing can be performed on the same GUI, enabling efficient result verification. In addition to basic visualizations such as distribution maps, vector diagrams, and streamlines, the built-in post-processing function "TurboPost" for turbo machinery allows for even more advanced visualization of analysis results. *For more details, please download the PDF or feel free to contact us.*

  • 【AICFD】軸流ファンのCFDシミュレーション2.png
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  • 【AICFD】軸流ファンのCFDシミュレーション6.png
  • fan
  • Thermo-fluid analysis

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[Case Study] Cooling Analysis of Electric Vehicle Motors 'AICFD'

Control heat through cooling analysis! Supporting innovative product development that exceeds design limits!

We will introduce a case study on cooling analysis of motors for electric vehicles using the general-purpose intelligent thermal fluid analysis software AICFD. As the adoption of electric vehicles accelerates, there is a demand for the development of more efficient and high-performance drive motors. Improving motor performance involves factors such as optimizing energy conversion efficiency and reducing weight, among which thermal management is a key element. The heat generated inside the motor can not only lead to a decrease in output and efficiency but also significantly impact durability and long-term reliability. Therefore, it is essential to implement appropriate cooling design and achieve efficient thermal control. In this analysis, we examined the temperature distribution around the coils, which are the main heat sources within the electric vehicle motor, and evaluated the cooling performance. By visualizing the temperature distribution obtained through simulation, we can confirm the effectiveness of the cooling design. *For more details, please download the PDF or feel free to contact us.*

  • simulator
  • Thermo-fluid analysis

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Analysis software BARRACUDA-CPFD

Analysis of non-spherical particles is possible.

This is an announcement from CPFD Corporation regarding "BARRACUDA-CPFD."

  • others

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[Case Study] Performance Analysis of Centrifugal Pumps 'AICFD'

Improving the performance of centrifugal pumps! A case study applying general-purpose thermal fluid analysis software.

We would like to present a case study where the general-purpose thermal fluid analysis software "AICFD" was used to analyze the head and shaft power of a centrifugal pump, comparing the results with experimental values. The mesh model adopted an unstructured mesh with a total cell count of 1.2 million. When comparing the experimental values with the analysis results, a deviation of 1.70% was confirmed for both output (kW) and head (m). 【Analysis Conditions】 ■ Inlet Condition: 69.46 [L/s] ■ Outlet Condition: Static Pressure 0 [Pa] ■ Rotational Speed: 980 [RPM] ■ Turbulence Model: Standard k-epsilon *For more details, please download the PDF or feel free to contact us.

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  • Other analysis software

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Aspherix

Latest DEM analysis solver. It can simulate the shapes and mixing states of complex particles and powders in civil engineering, chemistry, food, pharmaceuticals, and more! Coupling with fluids is also possible.

Aspherix, released in 2020 by the Austrian company DCS, which promotes the open-source projects CFDEMproject and LIGGGHTS, is a commercial DEM analysis software designed to simulate complex particle shapes and particle behavior in multiphase flows in conjunction with CFDEMcoupling. The domestic distributor, CAE Solutions, will leverage its experience in contract analysis and support for CFDEM, LIGGGHTS, and OpenFOAM to promote the use of particle and powder simulation, which is increasingly in demand in civil engineering, chemistry, food, and pharmaceuticals. Note: Product names and other terms are registered trademarks of their respective manufacturers and organizations.

  • Powder Molding Machine
  • Food Processing Equipment
  • Food Testing/Analysis/Measuring Equipment

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[Case Study] Water Cooling Analysis of IGBT Module 'AICFD'

You can understand the pressure loss of the heat sink water jacket!

We will introduce a case study analyzing the cooling performance of a water-cooled IGBT module using the general-purpose thermal fluid analysis software "AICFD." The model being analyzed is a simplified version, representing 1/6 of the original module. Additionally, a water-cooled heat sink has been added to the underside of the substrate, and the mesh model consists of 8.78 million unstructured cells. By conducting such analyses, we can understand the pressure loss of the heat sink water jacket and the cooling state of the module, which provides valuable information for thermal design and thermal countermeasures. 【Boundary Conditions】 ■ Inlet Velocity (m/s): 8.0 ■ Inlet Water Temperature (K): 295.14 ■ Water Side Heat Exchange Area (m²): 4.062×10^-3 *For more details, please download the PDF or feel free to contact us.

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  • Other analysis software

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[Heat-Fluid-Structure Coupling Example] Cooling of a Metal Pipe

Cooling water absorbs heat from the metal pipe while flowing! The solver uses the high-precision version R10.1.0 of MPPDYNA.

We will introduce a case where cold water is flowed through a high-temperature metal pipe for cooling, analyzed as a thermal-fluid-structure coupled problem. The solver used is the R10.1.0 high-precision version of MPPDYNA, with parallel computation on 16 CPUs. As a result, the metal pipe is cooled and the temperature decreases, while the cooling water absorbs heat from the metal pipe as it flows, resulting in higher temperatures downstream. Additionally, the temperature at the surface in contact with the solid becomes higher than that on the inside, and in the final state, the temperature of the metal pipe approaches the temperature of the fluid (283.15[K]). 【Key Keywords】 ■*ICFD_BOUNDARY_FSI: Specify the fluid-structure coupling boundary ■*ICFD_CONTROL_FSI: Set default values for fluid-structure coupled analysis ■*ICFD_BOUNDARY_CONJ_HEAT: Perform heat exchange with the solid at the fluid-structure coupling boundary ■Other: Input *CONTROL_SOLUTION, soln=2 to set up thermal-structure coupled analysis *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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