soft Product List and Ranking from 1839 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Aug 12, 2026~Sep 08, 2026
This ranking is based on the number of page views on our site.

soft Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Aug 12, 2026~Sep 08, 2026
This ranking is based on the number of page views on our site.

  1. アークシステム 本社 Kanagawa//others
  2. トプコン Tokyo//others
  3. null/null
  4. 4 B7 Tokyo//Information and Communications
  5. 5 シスメット 本社/福岡県北九州市 ・東日本オフィス/埼玉県入間市 ・北日本オフィス/北海道札幌市 Fukuoka//Information and Communications

soft Product ranking

Last Updated: Aggregation Period:Aug 12, 2026~Sep 08, 2026
This ranking is based on the number of page views on our site.

  1. Steel Frame Construction Guidance Solution Raku-Choku トプコン
  2. Benefits of digitizing details
  3. Quicker and more accurate construction cost estimation! Drawing extraction software Hiroi-kun III アークシステム 本社
  4. 4 Data extraction software "Hiroi-kun III" supports CAD and PDF drawing data. アークシステム 本社
  5. 5 [Wave Forecast Information] Weather and Ocean Conditions Comprehensive Portal Site Compass PLUS シスメット 本社/福岡県北九州市 ・東日本オフィス/埼玉県入間市 ・北日本オフィス/北海道札幌市

soft Product List

301~330 item / All 6529 items

Displayed results

Magneto-sputtering analysis available in the trial version on 【AnalysisKnowHow.com】!

The key is the magnitude of the X component at the position where the Y component crosses zero! It can be done in about 10 minutes from modeling to result display.

The magnetic field distribution analysis of magnetron sputtering was conducted using an axisymmetric model. From the distribution of the magnetic flux density components on the target, we estimate the erosion. The magnitude of the X component at the position where the Y component crosses zero is crucial. This task can be completed in about 10 minutes, from modeling to result display. Furthermore, it can be done with the free trial version of the static magnetic field! Please give it a try. For more details, please refer to NO.020 on "Analysis Know-How.com." You can download the trial version from the sample software on the special site below: https://premium.ipros.jp/mutec/product/detail/2000623620/?hub=148+2991245

  • Scientific Calculation and Simulation Software
  • soft

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How to specify flow rate with equivalent heat transfer coefficient!

Specify the flow rate of the cooling pipe in temperature analysis with an equivalent heat transfer coefficient! The calculation formula has been organized!

There are times when we evaluate the effect of cooling pipes through temperature analysis. Originally, this calculation requires a high-level analysis function known as "thermal fluid analysis." If such precision is not required, I would like to evaluate it simply using approximate calculations. Therefore, I have thought of a method to approximate the flow rate of the cooling pipe with an equivalent heat transfer coefficient. I organized the calculation formula for the heat transfer coefficient of the cooling pipe from the literature, and by providing the flow rate, I can calculate the equivalent heat transfer coefficient. The outlet temperature can also be estimated. Please refer to No. 015 on "Analysis Know-How.com."

  • Scientific Calculation and Simulation Software
  • soft

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【Analysis Know-How.com】Electromagnetism is difficult; I took a quick look at it!

You can feel like you've understood something a little without taking much time! Please take a look during your spare moments!

MUTECH is a company that provides simulation services centered around electromagnetism. However, for many engineers, electromagnetism is a difficult topic to approach. What are Maxwell's equations? Divergence, rotation, and vector operations are all so confusing! So, first, we took a rough look at it; this way, you can feel like you understand something without spending too much time. Please take your time to learn more thoroughly along this point! On the website AnalysisKnowHow.com, we have uploaded a video titled "Into the World of Electromagnetic Simulation." Please take a look during your spare time! Furthermore, MUTECH offers: - Professional consulting that delves into our customers' issues - Affordable contract analysis and custom development services.

  • Scientific Calculation and Simulation Software
  • soft

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【Analysis Know-How.com】 μ-EXCEL Analysis Know-How Video Site Launched

The video contains compact content of about 1 to 2 minutes! You can easily check the topics you want to know using your smartphone or other devices.

"Analysis Know-How.com" is a website that collects videos introducing the benefits of the analysis software μ-EXCEL, provided by Mutech, which is easy, fast, and suitable for initial assessments, along with analysis know-how. The videos are compact, lasting about 1 to 2 minutes, and can be filtered by keywords and categories. You can easily check the items you want to know using your smartphone during your spare time. In the "Home" menu, you can find a list of know-how collections. By clicking the "View Details" button, you can access the key points and videos of the know-how. In the "Category" menu, you can narrow down by genre or series. You can further refine related videos using the "Keyword Search." In the "Blog," we will introduce updated and additional videos as they become available. μ-EXCEL is available as a subscription service for 9,800 yen per month (excluding tax). Additionally, we offer: - Professional consulting that delves into your issues. - Contract analysis and custom development at affordable prices. Please feel free to contact us for more details.

  • Scientific Calculation and Simulation Software
  • soft

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Electromagnetic Field Analysis Software 【μ-EXCEL Magnetization Torque Version】

Excel-based simulation software. Check out the operation feel in the video now! A free trial version is also available for download!

"μ-Excel" is a low-cost thermal, structural, and electromagnetic analysis software that overturns the common belief that analysis software is expensive. It operates on Excel, allowing for professional simulations with a familiar user experience. You can check the user experience through videos for each work step! The video available here is "Step 10 Surface Magnetic Flux Calculation" - taking the "Magnetization Torque Version" of the "μ-Excel" series as an example, we will introduce the flow of surface magnetic flux evaluation created by the magnetized magnets unique to the magnetization torque version. ▽▼▽ Please also check out other videos! ▼▽▼ Step 0 Introduction Step 1 Starting Excel Step 2 Model Creation Step 3 DXF Import Step 4 Mesh Creation Step 5 Run Calculation Step 6 Add Materials Step 7 Display Results Step 8 Create Graphs Step 9 Save As ▼Step 10 Surface Magnetic Flux Calculation Step 11 Torque Calculation

  • Scientific Calculation and Simulation Software
  • soft

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Analysis solutions with major CAD and solver interfaces.

General-purpose finite element method pre/post processor [Simcenter Femap]. Achieve model creation and evaluation all in one, with customization possible through API!

Femap, provided by the world's number one reseller N.S.T., is software that offers pre- and post-processing capabilities for finite element method (FEM) analysis running on Windows. It integrates a series of tasks from geometry creation/modification to finite element model creation and post-processing, providing an efficient and streamlined working environment. Additionally, it features interfaces compatible with numerous CAD data and solvers, allowing for a high degree of versatility and the ability to encompass CAE from a neutral standpoint, making it possible to serve as a central element in analysis solutions. The features available in Femap include: - Comprehensive CAD/analysis program interfaces - Rapid generation of high-quality meshes - Efficient creation of finite element models - User interface designed for ease of use - Diverse and effective result display functions - Advanced customization capabilities For more detailed information, please refer to the catalog or contact us directly.

  • Architectural CAD
  • soft

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Fluid analysis solver "Femap Flow"

Fluid analysis plus in the Femap environment!

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 Femap's 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 injection. ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Scientific Calculation and Simulation Software
  • soft

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Fast and easy, thermal analysis!!! 【Thermal Analysis Solver】

I am good at radiation calculations.

Femap Thermal can perform thermal analysis faster than finite element method solvers by using the finite difference method. Customers currently using Femap who wish to conduct thermal analysis can do so by adding this capability to their existing Femap environment. 【Product Features】 ○ High-speed thermal radiation calculations. In particular, using an OpenGL-compatible GUI to compute with the Hemicube method allows for rapid calculation of shape factors. ○ Consideration of temperature-dependent material properties is possible. ○ Consideration of Joule heating is possible. ○ By adding the Advanced Thermal extension module, more advanced thermal analyses can be performed, including considerations for reflection, refraction, absorption, and transmission of transparent bodies, as well as satellite orbit analysis. 【Possible Analyses】 ○ Steady-state heat conduction analysis, transient heat conduction analysis ○ Flow network: Convection heat transfer analysis without fluid analysis ○ Thermal radiation analysis ○ Ray tracing ○ Joint models ○ Joule heating ○ Orbital thermal analysis/sunlight analysis ○ Model degradation ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Scientific Calculation and Simulation Software
  • soft

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Introduction to Desktop Structural Analysis Program

Creating geometry and analysis models, executing analysis, and post-processing, all realized in one software on one PC!!

【Features】 ○ A structural analysis solution that combines the pre- and post-processor "Femap" with the analysis solver "NX Nastran" ○ A series of tasks for finite element analysis, including the creation of analysis models from 3D-CAD generated shape data, analysis, and result display, can be accomplished with a single software on one PC ○ Operates on PCs equipped with Windows, allowing work in a familiar environment ○ High operability ○ Easy-to-implement pricing ○ Supports 64-bit environments ○ Capable of handling large-scale analyses ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Scientific Calculation and Simulation Software
  • soft

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Structural Optimization Design Software 'OPTISHAPE-TS'

Propose a structure that meets various requirements, has a lightweight design, a strong structure, and excellent vibration characteristics!!!

OPTISHAPE-TS is a Japanese software that was born as the world's first commercial phase optimization software and has continued to evolve by incorporating the latest optimization technologies for over 25 years. It enables lightweight design, strength improvement, and control of vibration characteristics while meeting various constraints such as design and manufacturing requirements. 【Features】 ○ Built-in various finite element solvers necessary for structural optimization ○ Equipped with various optimization functions tailored to applications ○ Unique non-parametric shape optimization using a force method allows for drastic shapes ○ Optimization calculations accelerated through parallel processing 【Functions】 ○ Optimization functions ○ Phase optimization (punching phase optimization, sequential outer surface phase optimization) ○ Non-parametric shape optimization ○ Level set method shape optimization ○ Finite element analysis functions ○ Static elasticity analysis ○ Eigenvalue vibration analysis ○ Steady-state heat conduction - static elasticity coupled analysis ○ Frequency response analysis ○ Eigenvalue buckling analysis ○ Structural-acoustic coupled analysis ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Scientific Calculation and Simulation Software
  • soft

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[Case Study] Heat Transfer and Thermal Stress Analysis - Casting Cooling Simulation

Efficiently perform analysis by conducting thermal stress analysis with Nastran!!!

◆◆Publication Content◆◆ ○Casting cooling simulation using heat transfer and thermal stress analysis (NX Nastran SOL 159/SOL 601) ○Keywords: Nonlinear thermal stress analysis, casting heat transfer, cooling rate, residual stress, shrinkage cavity, solidification shrinkage cavity ○Case Overview ●For other features and details, please download the catalog.

  • Scientific Calculation and Simulation Software
  • soft

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[Case Study] Rotor Dynamics Stability Analysis <Behavior of the Dewatering Tank>

Rotor dynamics using NX Nastran!!!

◆◆Publication Content◆◆ ○ Stability Analysis of the Spin Basket using Rotor Dynamics (NX Nastran) ○ Keywords: Rotor Dynamics, Spin Basket, Washing Machine, Vibration, Dangerous Speed ○ Case Summary When spinning in a washing machine, the spin basket experiences intense vibration before achieving stable rotation. This occurs as it passes through a dangerous speed, which is an essential factor for considerations such as noise reduction. In this analysis example, the spin basket was modeled, and the motion from a stationary state to a steady rotational state (5 revolutions per second) was calculated over time. ● For other features and details, please download the catalog.

  • Scientific Calculation and Simulation Software
  • soft

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Introducing Mid-Range 3D CAD for Ultra-Fast Modeling!

Equipped with powerful features that are expected to become the industry standard for 3D CAD in the future, known as Synchronous Technology.

Solid Edge ST is a completely new concept in CAD that merges the speed and flexibility of a non-history-based approach with the management capabilities of feature parametric design, achieving a high level of integration between parametric design and other functionalities.

  • Earthworks
  • soft

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[Example] Acoustic analysis of an audio room

I calculated the standing waves in a rectangular room and determined the frequency characteristics of the sound driven by a point source.

【Case Overview】 ■Product Name: NX Nastran ■Analysis: Modal Analysis and Frequency Response Analysis ■Industry: Architecture Indoor acoustic characteristics are very complex, and the influence of standing waves on acoustic properties is significant. The acoustic analysis in NX Nastran is a fluid-structure interaction analysis that examines the vibrations within a container filled with fluid. In this analysis, the standing waves in a rectangular room were calculated, and the frequency characteristics of the acoustics driven by a point sound source were determined. *Note 1: Nastran includes elements for sound absorption and damping (acoustic absorbers/acoustic barriers), but this analysis does not take them into account. The walls of the room are considered to be perfect reflectors. □For other functions and details, please refer to the catalog.

  • Scientific Calculation and Simulation Software
  • soft

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[Example] Hull strength analysis using the finite element method

A full hull model close to the actual structure was created, and strength analysis of the model was conducted.

**Case Overview** ■Product Name: NX Nastran ■Analysis: Linear Static Analysis ■Industry: Railways and Shipping Finite element method strength calculations are widely used in hull design. The hull structure, composed of many components such as decks, side plates, double bottoms, bulkheads, and longitudinal and transverse strength frames, is complex, making it difficult to analyze just a part of it. This example created a full model that closely resembles the actual structure and conducted a strength analysis of the entire hull model. - Creation of complex hull FEM models using Femap's mesh generation capabilities - Creation and management of loads such as static/dynamic water pressure and cargo conditions - Improved computational efficiency through continuous analysis of multiple load cases - Analysis of large-scale models made possible by NX Nastran's parallel processing capabilities □ For other features and details, please refer to the catalog.

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[Example] Rotor Dynamics

Introducing the rotational system analysis capabilities of NX Nastran!!!

【Case Summary】 ■Product Name: NX Nastran ■Analysis: Modal Analysis, Linear Transient Analysis, Frequency Response Analysis ■Industry: Mechanical Components Stable operation is extremely important for various rotating machinery such as turbines, jet engines, generators, fluid equipment, and electrical products, and vibration prevention is an essential challenge. This example introduces the rotating system analysis capabilities of NX Nastran using a representative model of rotor dynamics. □For other features and details, please refer to the catalog.

  • Prime movers, torque converters, hydraulic equipment, generators
  • soft

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[Example] Rotating Dynamics Eigenvalue Analysis

We conducted a modal complex eigenvalue analysis at the specified rotational speeds to investigate the whirling modes caused by rotation, changes in damping, and critical speeds.

**Case Summary** ■Product Name: NX Nastran ■Analysis: Eigenvalue Analysis ■Industry: Other The vibration characteristics of rotating bodies exhibit whirl motion due to centrifugal force, tilt vibrations, and gyroscopic effects as the axis rotates, causing changes in eigenvalues. When the direction of rotation and whirl coincide, it is referred to as forward whirl, and when they are opposite, it is called backward whirl. When the rotational speed matches the eigenvalue of the axis, the amplitude of the whirl increases, leading to instability in the rotating system and potential damage to components. The speed at this point is referred to as the critical speed. In this analysis, modal complex eigenvalue analysis was conducted for specified rotational speeds to investigate the whirl modes induced by rotation, changes in damping, and critical speeds. □ For other features and details, please refer to the catalog.

  • Scientific Calculation and Simulation Software
  • soft

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[Example] Rotor Dynamics Frequency Analysis

We conducted synchronous and asynchronous frequency analysis of rotating bodies in a fixed coordinate system.

**Case Overview** ■Product Name: NX Nastran ■Analysis: Frequency Response Analysis ■Industry: Other In this analysis example, synchronous and asynchronous frequency analyses of a rotating body in a fixed coordinate system were conducted. The former is an analysis where the rotation speed and the excitation load frequency match, resulting in a response peak at the dangerous speed point on the 1P line in the Campbell diagram. The latter involves a rotor rotating at a constant speed with varying excitation load frequencies, leading to rotor resonance at the intersection points of each mode with the vertical line in the Campbell diagram. □ For other functions and details, please refer to the catalog.

  • Scientific Calculation and Simulation Software
  • soft

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[Example] Large-scale finite element analysis of train vehicle dynamics

An eigenvalue analysis of a 10-car train model was conducted using NX Nastran, and the natural frequencies up to 20 Hz were obtained.

**Case Overview** ■Product Name: NX Nastran ■Analysis: Modal Analysis ■Industry: Railways and Shipping Since railway vehicles operate in a coupled manner, it is necessary to analyze the motion characteristics of the entire train when considering vehicle dynamics. To accurately predict the vibrations generated in various parts of the moving vehicle, a vehicle simulation using a finite element model (FEM) that closely resembles the actual structure, rather than a uniform beam or equivalent plate structure, is required. On the other hand, such analyses heavily depend on the computational environment, model creation, and result visualization capabilities, necessitating parallel computing solutions and efficient pre/post-processing software. This example involves creating the vehicle body using Femap and conducting a modal analysis of a 10-car train model with NX Nastran to determine the natural frequencies up to 20 Hz. Additionally, the application of FEMAP and GLView for post-processing large-scale finite element analyses will be introduced.

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Case Study: Thermal Fluid Analysis of a Muffler

This is an introduction to the recommended software Femap Thermal/Flow for customers who are starting thermal fluid analysis with Femap.

**Case Overview** ■Product Name: Femap Thermal, Femap Flow ■Analysis: Thermal Fluid Analysis ■Industry: Automotive Femap Thermal/Flow is software for thermal fluid analysis that operates as a Femap application. It can be used with the same operational feel as Femap. Through the combination of Femap Thermal and Femap Flow for thermal fluid analysis, we calculated the flow of exhaust gases within the muffler and the temperature distribution of the muffler due to high-temperature exhaust. By using Femap Thermal and Femap Flow simultaneously, thermal fluid analysis can be conducted. It can solve complex problems such as heat transfer at the fluid-structure interface, fluid flow, thermal conduction in structures, and consideration of radiation at the surface of structures. In this case, we conducted thermal fluid analysis focused on the muffler. We confirmed that we could obtain necessary parameters for design by determining the temperature difference of exhaust gases at the inlet and outlet, the flow of exhaust gases within the muffler, and the temperature of the surface of the muffler structure. □ For other functions and details, please refer to the catalog.

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[Example] Analysis of radiant heat transfer within a container

We conducted a heat transfer analysis of an internal radiation container composed of multiple radiation zones.

**Case Overview** ■Product Name: Femap Thermal ■Analysis: Thermal Analysis ■Industry: Other In this analysis example, a thermal radiation transfer analysis within a container composed of multiple radiation zones was conducted. In this case, the radiation zones consist of three areas: the interior of the container, which includes the heat source, heat receiving surface, and inner wall; the space between the inner and outer walls; and the area from the outer wall to the environment. The calculation of the form factor is known to take time due to the exhaustive pairwise calculations between element surfaces, resulting in a large matrix size. Femap Thermal utilizes the Hemicube method with OpenGL to process the time-consuming form factor calculations quickly. Additionally, with a dedicated interface for thermal analysis, it is easy to set up radiation settings even for models with multiple enclosures. □ For other functions and details, please refer to the catalog.

  • Scientific Calculation and Simulation Software
  • soft

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[Example] Rockfall and rock mass collapse simulation

The analysis results of the rockfall simulation using the 3D discrete element method were processed with GLview Inova.

【Case Overview】 ■Product Name: GLview Inova ■Analysis: Other ■Industry: Other Using the three-dimensional finite element method, we conducted a rockfall simulation. To clearly display the analysis results of rock masses collapsing while colliding with slopes, it is necessary to smoothly animate many analysis steps. GLview Inova enables smooth animation display, and by installing the free plugin (GLview 3D Plugin), it can be displayed as a three-dimensional model on a web page. Users can view the analysis results from any direction while running the animation. □For other features and details, please refer to the catalog.

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Safety Standards Verification & Reporting Tool 'SDC Verifier'

You can perform everything from specification verification to report creation!!!

【Features】 ◆ Load Creation and Management Easily create combinations of FEM loads, combinations of FEM analysis results, load groups, and load cycles, as well as cycle loads and proportional loads used for fatigue evaluation. ◆ Detection Tools Equipped with the ability to automatically detect complex structural elements such as frames, panels, plates, beam members, and joints, and calculate their dimensions. ◆ Standard Verification Capable of evaluating buckling of plates and beam structures, strength evaluation of tube structures, strength and buckling evaluation of frame structures such as cranes, and welding fatigue evaluation according to BS7608. ◆ Report Generation FEM analysis results, standard verification results, and contour diagrams can be directly incorporated into reports. There is a template function that allows for the reuse of a series of calculation processes. 【Application Examples】 ○ Evaluation of welding fatigue safety factors ○ Integrity evaluation of crane structural components against wind loads ○ Buckling evaluation of hull panels

  • Crane and others
  • soft

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Rotating body and bearing coupled analysis software 'MADYN2000'

We lead in the analysis of rotating bodies using specialized software for fluid film bearings, magnetic bearings, and coupled analysis with bearings, as well as optimization CAE analysis techniques.

MADYN2000 is a finite element software developed by experts in bearings for coupled analysis of rotating bodies and bearings. It allows for smooth performance analysis of rotating bodies, optimization analysis of various parameters of bearings, and coupled analysis with active magnetic bearings and their PID control systems. The calculation of support stiffness for rolling bearings utilizes software and libraries from Swiss company MESYS AG. 【Features】 ⇒ User-friendly with a sophisticated Windows interface. ⇒ Easy model creation with copy and paste functionality for input data. ⇒ Smooth unit selection and conversion with unit assistance features. ⇒ Developed on the MATLAB platform, facilitating collaboration with experimental data processing. Executable analysis functions (rotating bodies: lateral and torsional vibrations) - Support load analysis - Complex eigenvalue analysis at rated speed - Frequency response and unbalance analysis - Transient response and speed-up analysis - Parameter variable analysis → Campbell diagram → Critical speed map → Sensitivity analysis of support stiffness and dampers → Sensitivity analysis of coupling stiffness

  • Scientific Calculation and Simulation Software
  • soft

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[Example] Analysis of Aluminum Frame Structure

Automatically calculate beam cross-section performance from CAD data!!!

【Case Summary】 ■Product Name: NX Nastran ■Industry: Architecture Using high-rigidity lightweight aluminum extrusion materials, various frame structures can be assembled. When designing these structures, it is necessary to investigate the deformations, stresses, and vibration characteristics that occur during use to ensure functionality and safety. In FEM analysis of frame structures, it is common to model them using beam elements; however, the cross-section of aluminum extrusion materials is complex, and traditional beam element outputs cannot display the characteristics of detailed sections. On the other hand, modeling thin-walled structures with solid elements is challenging, and creating high-quality meshes results in large models that require substantial computational resources and high-performance post-processing. This example introduces the applicability of Femap with NX Nastran for such analyses. ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Architectural CAD
  • soft

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[Example] Vibration of liquid tanks and sloshing of liquid surfaces during an earthquake.

Case study using seismic waves from the Great East Japan Earthquake!!

**Case Summary** ■Product Name: NX Nastran ■Industry: Construction There are many structural forms for containers that store liquids and their supports. During an earthquake, the dynamic liquid pressure caused by sloshing of the liquid surface in the tank acts on the container's side walls and bottom plate, resulting in damage to the tank and rocking vibrations that can cause parts of the bottom plate to lift, leading to tank damage. This case study utilized the virtual fluid boundary and phantom elements of NX Nastran to perform transient response analysis on three types of tanks, as shown in the figure on the right, using the seismic waves from the 2011 Great East Japan Earthquake (M9). Below, we present the sloshing behavior during the earthquake and the distribution of dynamic liquid pressure. * Downloaded from K-NET For more detailed information, please refer to the catalog or contact us directly.

  • Scientific Calculation and Simulation Software
  • soft

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Introduction to a general-purpose CAE pre/post-processor for finite element method analysis!

A comprehensive analysis solution with a main CAD and solver interface. Model creation and evaluation can be achieved with this single tool, and customization via API is also possible!

Femap is software that provides pre- and post-processing capabilities for finite element method (FEM) analysis running on Windows. It integrates a series of tasks from geometry creation/modification to finite element model creation and post-processing, offering an efficient and streamlined working environment. Additionally, it features interfaces compatible with numerous CAD data and solvers, allowing for a high degree of versatility and the ability to encompass CAE from a neutral standpoint, making it possible to serve as a central component of analysis solutions. The features available in Femap include: - Comprehensive CAD/analysis program interfaces - Fast generation of high-quality meshes - Efficient creation of finite element models - User interface focused on ease of use - Diverse and effective result display functions - Advanced customization capabilities

  • Scientific Calculation and Simulation Software
  • soft

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Automotive Analysis Case Studies

Collection of automotive-related analysis cases!! There are various examples, so please take a look.

This is a collection of analysis cases including shape optimization analysis, nonlinear transient analysis of brake rotors, pressure distribution analysis of brake pads, and behavior analysis of diaphragm springs through nonlinear static analysis. Additionally, there are analysis cases not included in the collection, so please contact us if you are interested in any specific analysis case.

  • Scientific Calculation and Simulation Software
  • soft

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Collection of Examples Related to Electricity and Electronics

Collection of case studies related to electricity and electronics!! There are various examples, so please take a look!!!

This is a collection of analysis examples including the stability (behavior) analysis of washing machines, the eigenvalue optimization analysis of magnetic heads, the frequency response analysis of traveling wave ultrasonic motors, and induction heating analysis, among others. Additionally, there are analysis cases not included in the collection, so please contact us if you are interested in any specific analysis cases.

  • Scientific Calculation and Simulation Software
  • soft

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[Example] External Super Element 1

Reduction of analysis costs, enhancement of information security!!!

【Case Overview】 ■Product Name: NX Nastran There has been an image that Super Elements (SE) are only applicable in the aerospace and automotive fields and can only be used by a limited number of analysis specialists. There has been no pre- and post-processing tool that fully supports SE analysis, and the data creation process has been complicated, which has hindered its widespread adoption until now. Femap has started to support external Super Elements for Nastran from version 11. In this case study, we will use an assembly model from the Femap example collection to demonstrate that SE analysis can be used by anyone with Femap v11.

  • Scientific Calculation and Simulation Software
  • soft

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