Alternatives to VPS-MICRO
Compare VPS-MICRO alternatives for your business or organization using the curated list below. SourceForge ranks the best alternatives to VPS-MICRO in 2026. Compare features, ratings, user reviews, pricing, and more from VPS-MICRO competitors and alternatives in order to make an informed decision for your business.
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Ansys Motor-CAD
Ansys
Ansys Motor-CAD is a dedicated electric machine design tool for fast multiphysics simulation across the full torque-speed operating range. Motor-CAD enables design engineers to evaluate motor topologies and concepts across the full operating range, to produce designs that are optimized for performance, efficiency and size. Motor-CAD software’s four integrated modules—EMag, Therm, Lab, Mech—enable multiphysics calculations to be performed quickly and iteratively, so users can get from concept to final design in less time. Fast calculations and streamlined data input processes leave time for Motor-CAD users to explore more motor topologies and fully assess the impact of advanced loss effects in the initial stages of an electromechanical design. The release includes powerful new features for design optimization, multi-physics analysis and system modelling for electric motors. Fast multiphysics simulation across a full torque-speed operating range. -
2
DC-E DigitalClone for Engineering
Sentient Science Corporation
DigitalClone® for Engineering is the world's only gearbox reliability prediction solution integrating multiple scales of analysis in a single software package. In addition to modeling and analysis capabilities at the gearbox and gear/bearing levels, DC-E is the only solution available that models fatigue life based on detailed, physics-based models of the material microstructure (US Patent 10474772B2). DC-E enables construction of a gearbox digital twin with high value across all stages of the lifecycle of the physical asset - from design and manufacturing optimization to component supplier selection to failure root cause analysis to condition-based maintenance and to prognostics. This computational environment drives down the time and cost to bring new designs to the market and to sustain them over time.Starting Price: Upon request -
3
DC-AM DigitalClone for Additive Manufacturing
Sentient Science
Defining the state-of-the-art, DigitalClone for Additive Manufacturing (DC-AM) integrates a suite of metal additive manufacturing modeling and simulation capabilities for comprehensive design and analysis support with seamless interoperability. DC-AM implements a multiscale, multi-physics analysis approach linking the process - microstructure - fatigue relationship of additively manufactured parts to enable computational assessment of quality and performance. DC-AM promotes adoption of AM in safety-critical industries by providing unprecedented insight into the relationship between build conditions and the characteristics of the final part while enabling reduction in time and cost required to qualify parts and processes.Starting Price: Upon request -
4
GENOA 3DP
AlphaSTAR
GENOA 3DP is an Additive Manufacturing design tool and software suite for polymers, metals and ceramics. The simulate to print toolset showcases robust capabilities and seamless user interactivity making it a suitable solution for various applications. Providing users with accuracy down to the micro-scale and reducing material waste & engineering time considerably, GENOA 3DP can quickly be integrated into any process for an optimum AM build. Founded on progressive failure analysis methods, and combined with multi-scale material modeling, GENOA 3DP allows engineers to accurately predict void, net-shape, residual stress, crack growth and other anomalies associated with as-built AM parts. Providing a repeatable methodology to improve part quality, reduce scrap rate, and meet specification, GENOA 3DP bridges the gap between material science and finite element analysis. -
5
Digimat-AM
e-Xstream engineering
Digimat-AM is a solution of Digimat Software that simulates the printing process and helps printer manufacturers and end-users to identify manufacturing issues. It also optimizes printing parameters for productivity and final part performance prior to printing the first part. The use of numerical simulation allows you to turn hundreds of trials and errors into a couple of clicks in Digimat-AM. Digimat -AM empowers engineers with a process simulation solution that helps. Simulate the FFF, FDM, SLS and CFF processes of unfilled and reinforced materials Predict the as-printed part warpage, residual stresses and process-induced microstructure. Analyze the coupled thermal-structural response of the process for unfilled and reinforced polymers. Set up the right manufacturing parameters for high precision printing and further bridge the gap between printing process, material and part performances. -
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SOLIDWORKS Simulation
SolidWorks
Subject your designs to real world conditions to raise product quality while reducing prototyping and physical testing costs. SOLIDWORKS® Simulation is an easy-to-use portfolio of structural analysis tools that use Finite Element Analysis (FEA) to predict a product’s real-world physical behavior by virtually testing CAD models. The portfolio provides linear, non-linear static and dynamic analysis capabilities. SOLIDWORKS Simulation Professional enables you to optimize your design, determine product mechanical resistance, product durability, topology, natural frequencies, and test heat transfer and buckling instabilities. It can also perform sequential multi-physics simulations. SOLIDWORKS Simulation Premium lets you efficiently evaluate your designs for nonlinear and dynamic response, dynamic loading, and composite materials. SOLIDWORKS Simulation Premium includes three advanced studies: Non-Linear Static, Non-Linear Dynamic, and Linear Dynamics. -
7
Simufact Additive
Hexagon
Simufact Additive is a powerful and scalable software solution for the simulation of metal-based additive manufacturing processes. Discover how to use Simufact Additives to optimize your metal 3D printing / rapid prototyping. Simufact Additive helps you to significantly reduce the number of test prints. Our goal is to provide you with a software solution which helps you produce AM components with repeatable dimensional accuracy first time right. Simufact Additive´s multi-scale approach combines the best approaches in a unique software solution - from an extremely fast mechanical method to a full thermal-mechanical coupled transient analysis with the highest accuracy of simulation results. You can choose the right simulation method for your situation. Simufact Additive is a specialised software solution dedicated exclusively to the simulation of additive manufacturing processes. For the user, this is reflected in a lean operating concept. -
8
Inventor Nastran
Autodesk
CAD-embedded finite element analysis software. Use a wider variety of study types and materials in your analysis. Inventor® Nastran® delivers finite element analysis (FEA) tools for engineers and analysts. Simulation covers multiple analysis types, such as linear and nonlinear stress, dynamics, and heat transfer. Inventor Nastran is available only in the Product Design & Manufacturing Collection. The Product Design & Manufacturing Collection delivers tools that work right inside Inventor—including advanced simulation, 5-axis CAM, and nesting, plus AutoCAD and Fusion 360. -
9
FLOW-3D
Flow Science
Optimize product designs and reduce time to market with FLOW-3D, a highly-accurate CFD software that specializes in solving transient, free-surface problems. FLOW-3D‘s complete multiphysics suite includes our state-of-the-art postprocessor, FlowSight. FLOW-3D provides a complete and versatile CFD simulation platform for engineers investigating the dynamic behavior of liquids and gas in a wide range of industrial applications and physical processes. FLOW-3D focuses on free surface and multi-phase applications, serving a broad range of industries including microfluidics, bio-medical devices, water civil infrastructure, aerospace, consumer products, additive manufacturing, inkjet printing, laser welding, automotive, offshore, energy and automotive. A uniquely powerful, multiphysics tool, FLOW-3D provides the functionality, ease-of-use and power that helps engineers advance their modeling objectives. -
10
Ansys Sherlock
Ansys
Ansys Sherlock is the only reliability physics-based electronics design tool that provides fast and accurate life predictions for electronic hardware at the component, board and system levels in early stage design. Ansys Sherlock automated design analysis provides fast and accurate life predictions for electronic hardware at the component, board and system levels in early design stages. Sherlock bypasses the ‘test-fail-fix-repeat’ cycle by empowering designers to accurately model silicon–metal layers, semiconductor packaging, printed circuit boards (PCBs) and assemblies to predict failure risks due to thermal, mechanical and manufacturing stressors--all before prototype. With embedded libraries containing over 500,000 parts, Sherlock rapidly converts electronic computer-aided design (ECAD) files into computational fluid dynamics (CFD) and finite element analysis (FEA) models. Each model contains accurate geometries, material properties and translates stress information. -
11
Simcenter Femap
Siemens Digital Industries
Simcenter Femap is an advanced simulation application for creating, editing, and inspecting finite element models of complex products or systems. You can use advanced workflows in Simcenter Femap to model components, assemblies, or systems, to then determine a model’s behavioral response when subjected to real-world conditions. In addition, Simcenter Femap provides powerful data-driven and graphical results visualization and evaluation, which in combination with the industry-leading Simcenter Nastran, delivers a comprehensive CAE solution that improves product performance. In the quest to make products lighter yet stronger, manufacturers are increasing their use of composite materials. Simcenter is at the leading edge of composites analysis through continuous development of material models and element types. Simcenter speeds the entire process for simulating laminate composite materials through a seamless connection to composites design. -
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SIMULIA
Dassault Systèmes
Powered by the 3DEXPERIENCE® platform, SIMULIA delivers realistic simulation applications that enable users to reveal the world we live in. SIMULIA applications accelerate the process of evaluating the performance, reliability and safety of materials and products before committing to physical prototypes. Delivers powerful simulation of structures, fluids, multibody, and electromagnetics scenarios including complex assemblies directly linked with the product data. Modeling, simulation, and visualization technology are fully integrated on the 3DEXPERIENCE Platform, including process capture, publication, and re-use. The value of the customer’s existing investment in simulation horsepower is maximized by allowing simulation data, results, and IP to connect to the platform and become true corporate assets that powers innovation for all users. -
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MASTA
SMT
MASTA is a complete suite of CAE software for the design, simulation & analysis of driveline systems from concept through to manufacture. MASTA benefits accurately and rapidly design transmission systems from scratch or imported concepts. Comprehensively understand the life of a mechanical part over the customer duty cycle. Identify potential failure modes early in the product development cycle. Rapidly predict key performance characteristics at the design stage. Easily explore changes in transmission layout, component selection and/or design, materials and manufacturing processes in the convenience of a virtual environment. Perform full system simulations for any transmission or driveline configuration. Incorporate manufacturing simulation at the design stage to reduce process development time & cost. MASTA’s unique and modern architecture written from the ground up in C# makes it a significantly more stable comparative solution for current and future operating systems. -
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DYNAFORM Die Simulation
TST Tooling Software Technology
DYNAFORM Die Simulation Software is the sixth-generation DYNAFORM product. It provides a user-friendly and intuitive interface with a streamlined design. The analysis process is fully based on the stamping process, which requires less CAE knowledge and minimal geometry and element operations. This latest release offers features and improvements such as an intuitive and streamlined interface, a tree structure to manage operations, a simulation data manager, customized icon grouping for drop-down menu functions, separate and independent applications, unified pre-and post-processing, multi-window view, access functions using right mouse button clicks, and more. It has support for large forming simulation models, a geometry manager, a process wizard for blank size engineering, minimal geometry and element operations, a new material library window, new draw bead shapes and library, and a coordinate system manager. -
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Autodesk Fusion
Autodesk
Autodesk Fusion is a cloud-based product design and manufacturing platform that combines CAD, CAM, CAE, PCB, and data management in one solution. It helps teams connect design, engineering, manufacturing, electronics, and collaboration workflows in a unified workspace. The software supports product development from concept to production with tools for modeling, simulation, machining, PCB design, and drawing automation. Autodesk Fusion also includes built-in PDM and PLM capabilities to reduce version conflicts, improve collaboration, and keep project data secure and up to date. Teams can choose from Fusion, Fusion for Manufacturing, and Fusion for Design depending on their needs for advanced manufacturing, simulation, generative design, and data management. With cloud collaboration, integrated workflows, and AI-powered assistance, Autodesk Fusion helps companies bring products to market faster.Starting Price: $495 per year -
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Simpleware
Synopsys
Unlock the power of Simpleware software to seamlessly process 3D & 4D image data from MRI, CT, and micro-CT. Dive into your data with advanced visualization, detailed analysis, and accurate quantification. Create precise models ready for design, simulation, and 3D printing workflows. The Simpleware W-2024.12 release advances Simpleware software's further adoption of AI-assisted segmentation tools and streamlined design features to accelerate all your 3D image processing and analysis workflows. Our industry-leading 3D image processing and model generation platform allows you to create products and workflows from 3D & 4D image data and integrate seamlessly with design and simulation tools. Intuitive interface with quick-and-easy access to all tools and features. Comprehensive analysis of even the most complex 3D image data. Generate design and simulation-ready models of the highest quality. -
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Ansys Additive Suite
Ansys
Ansys Additive Suite delivers the critical insights required by designers, engineers and analysts to avoid build failure and create parts that accurately conform to design specifications. This comprehensive solution spans the entire workflow — from design for additive manufacturing (DfAM) through validation, print design, process simulation and exploration of materials. Additive Suite includes Additive Prep, Print and Science tools in addition to access to Ansys Workbench Additive. As with most features within Ansys Workbench, parametric analysis systems can be created so you can study the optimization of parameters such as part position and orientation. Available as an add-on to the Ansys Mechanical Enterprise license. -
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DIGIMU
TRANSVALOR
DIGIMU® generates digital polycrystalline microstructures representative of the material's heterogeneities (compliance with the topological characteristics of the microstructure). The boundary conditions applied to the REV are representative of that experienced by a material point at the macroscopic scale (thermomechanical cycle of the considered point). Based on a Finite Elements formulation, the various physical phenomena involved during metal forming processes are simulated (recrystallization, grain growth, Zener pinning due to second phase particles, etc.). In order to improve digital precision and to reduce computation times, the software is capable of providing a precise description of the interfaces (grain boundaries) while using an appropriate number of elements thanks to a fully automated anisotropic meshing and remeshing adaptation technology. -
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Simcenter 3D
Siemens
Address complex engineering challenges by enhancing simulation efficiency. Simcenter 3D is one of the most comprehensive, fully-integrated CAE solutions. Simcenter 3D helps you model and evaluate complex product performance through revolutionary improvements in simulation efficiency. By integrating multiple physics domains together from a single simulation modeling environment, you gain better insight into your product’s performance faster. Simcenter 3D is an integrated environment in which you perform all of your CAE pre- and post-processing. Unrivaled geometry manipulation tools help you intuitively defeature and abstract computer-aided design (CAD) geometry from any source. Comprehensive meshing and modeling tools support multiple simulation applications and give you the unique capability to associate your analysis model with design data. This helps you speed up the tedious modeling process and keep analysis models in sync with the latest design. -
20
COMSOL Multiphysics
Comsol Group
Simulate real-world designs, devices, and processes with multiphysics software from COMSOL. General-purpose simulation software based on advanced numerical methods. Fully coupled multiphysics and single-physics modeling capabilities. Complete modeling workflow, from geometry to postprocessing. User-friendly tools for building and deploying simulation apps. The COMSOL Multiphysics® software brings a user interface and experience that is always the same, regardless of engineering application and physics phenomena. Add-on modules provide specialized functionality for electromagnetics, structural mechanics, acoustics, fluid flow, heat transfer, and chemical engineering. Choose from a list of LiveLink™ products to interface directly with CAD and other third-party software. Deploy simulation applications with COMSOL Compiler™ and COMSOL Server™. Create physics-based models and simulation applications with this software platform. -
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COLDFORM
TRANSVALOR
The tools of cold forming undergo strong mechanical and tribological stresses during their life cycle. These can lead in certains cases of damaged premature tools. The tools represent an important part of the manufacturing cost of a part; thus it is essential to anticipate well these problems during the designs. COLDFORM® allows you to analyze mechanical die strength in order to extend their service life. The software can compute stress distribution within the die, along with deformations, wear, temperatures and damage at any time during the process. COLDFORM® can carry out rapid analyzes which consist in applying stresses obtained during the forming process computation, to the tools. Moreover, COLDFORM® is capable of performing coupled part/tool computations, giving extremely precise results. Thanks to the functionalities dedicated to pre-stressed dies, it is possible to accurately determine the value of the necessary pre-stressing of the interference fit of the tools. -
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Luminary Cloud
Luminary Cloud
Luminary Cloud is the world’s first modern computer-aided engineering SaaS platform that provides engineers insights in minutes, allowing for quick simulation, analysis, and iteration that were once impossible. Experience the magic of running simulations in minutes on the most advanced GPUs in the cloud. Securely store, access, and analyze all your raw simulation data to discover insights and optimize engineering designs. Run experiments faster for better product design and quality while reducing the chance of defects. Accelerate time to market by optimizing engineering efficiency and dramatically lower hardware, prototyping, and physical testing costs. Empower your team to create their best designs with faster insights and results, with the most accessible simulation platform. Run fast simulations at any scale, collaborate around the world with project sharing, and start analyzing results instantly.Starting Price: $5 per credit -
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NeuralMould
Emmi AI
NeuralMould is Emmi AI’s Large Engineering Model for injection molding, described as a new gold standard in AI for engineering: any geometry, any material, any injection gates, one model. It lets users select from a range of geometries and test injection, material, and gate placement parameters to simulate filling behavior in seconds, rapidly compare multiple scenarios, optimize process KPIs, and avoid frozen flow fronts. Injection molding simulation is highly complex because it involves multi-physics calculations that model transient flow of viscous plastic through thin-walled geometries under extreme temperature and pressure conditions. NeuralMould captures these phenomena across a wide range of injecting conditions and mold geometries, achieving performance comparable to traditional solvers with a fraction of the computation time. The model supports multi-material scenarios, fast prototyping, multi-gate configurations, and multiple process parameters.Starting Price: Free -
24
MapleSim
Waterloo Maple
From digital twins for virtual commissioning to system-level models for complex engineering design projects, MapleSim is an advanced modeling tool that helps you reduce development time, lower costs, and diagnose real-world performance issues. Remove vibrations with better control code, not hardware upgrades. Diagnose root-cause performance issues with detailed simulation results. Validate new design performance before physical prototyping. MapleSim is an advanced system-level modeling and simulation tool that applies modern techniques to dramatically reduce model development time, provide greater insight into system behavior, and produce fast, high-fidelity simulations. Scale and connect as the needs of your simulations grow more complex. Take your designs further with our flexible modeling language. Combine components across different domains in a virtual prototype. Solve tough machine performance problems. -
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TRANSWELD
TRANSVALOR
In markets where the safety of welded assemblies is essential, analysis with TRANSWELD® offers a global and innovative solution to anticipate welding defects. Our simulation software integrates multi-physical models to simulate the real behavior of the metal in the liquid/mushy state to perform a complete analysis of the material evolution. TRANSWELD® also makes it possible to study the microstructure of the solid-state assembly. Then, you ensure the conformity of your welded part without going through the prototyping stage. Our software is 100% predictive. It allows you to observe your welding processes numerically by applying real conditions. For example, you can visualize the heat source movement during the simulation of laser welding or arc welding. -
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Amphyon
Oqton
Additive Works provides software solutions aiming at a "first-time-right" additive manufacturing process by integrating new analysis and simulation tools into the process chain of Laser Beam Melting processes (LBM, SLM, DMLS, Metal 3D Printing). Driven by current requirements and challenges of industrial additive manufacturing, the software suite Amphyon aims to significantly reduce pre-processing costs and take metal AM to the next level of automation. The ASAP-Principle describes four ideal steps on the way to a stable, efficient and reliable process chain: Assessment, Simulation, Adaption and the Process itself. By examining all possible build-up orientations with respect to economical and physical aspects of the process on the Assessment stage, both, limitations of the design and optimal orientations can be calculated. -
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Ansys Autodyn
Ansys
Simulate the response of materials to events ranging from short duration severe mechanical loadings, high pressures and even explosions. Ansys Autodyn provides advanced solution methods without compromising ease of use. Ansys Autodyn makes it easy to quickly understand and simulate large material deformation or failure. Autodyn has a range of models to represent complex physical phenomena such as the interaction of liquids, solids and gases; the phase transitions of materials; and the propagation of shock waves. By Integrating within Ansys Workbench and its own native-user interface, Ansys Autodyn has long led the industry in ease of use, enabling you to produce accurate results with the least amount of time and effort. The smooth particle hydrodynamics (SPH) solver completes the picture to provide everything needed for explicit analysis. Ansys Autodyn lets you select from different solver technologies so the most effective solver can be used for a given part of the model. -
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PowerFLOW
Dassault Systèmes
By leveraging our unique, inherently transient Lattice Boltzmann-based physics PowerFLOW CFD solution performs simulations that accurately predict real world conditions. Using the PowerFLOW suite, engineers evaluate product performance early in the design process prior to any prototype being built — when the impact of change is most significant for design and budgets. PowerFLOW imports fully complex model geometry and accurately and efficiently performs aerodynamic, aeroacoustic and thermal management simulations. Automated domain discretization and turbulence modeling with wall treatment eliminates the need for manual volume meshing and boundary layer meshing. Confidently run PowerFLOW simulations using large number of compute cores on common High Performance Computing (HPC) platforms. -
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VoluMill
VoluMill
VoluMill improves the way that tools cut their way through the material, using high-speed continuous tangent motion rather than sharp, interrupted movements. VoluMill is the fastest, most cost-effective method of bulk-material removal for all non-finishing milling operations. VoluMill is perfect for the airframe, automotive, mold & die, medical, machinery component, and consumer-products markets, for all roughing needs on free-form or prismatic parts. VoluMill's constant material removal rates enable machine tools and cutting tools to operate under ideal milling conditions throughout, regardless of a part's shape or complexity. Using volumill™, you'll never worry about over-engaging cutting tools or work-hardening materials. VoluMill's unique patented technology makes programming simple by automatically controlling material removal rates regardless of geometry or it's complexity. -
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ProModel Optimization Suite
ProModel
ProModel is a discrete-event simulation technology that is used to plan, design and improve new or existing manufacturing, logistics and other operational systems. It empowers you to accurately represent real-world processes, including their inherent variability and interdependencies, in order to conduct predictive analysis on potential changes. Optimize your system around your key performance indicators. Create a dynamic, animated computer model of your business environment from CAD files, process or value stream maps, or Process Simulator models. Clearly see and understand current processes and policies in action. Brainstorm using the model to identify potential changes and develop scenarios to test improvements which will achieve business objectives. Run scenarios independently of each other and compare their results in the Output Viewer developed through the latest Microsoft® WPF technology. -
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Ansys LS-DYNA
Ansys
Ansys LS-DYNA is the industry-leading explicit simulation software used for applications like drop tests, impact and penetration, smashes and crashes, occupant safety, and more. Ansys LS-DYNA is the most used explicit simulation program in the world and is capable of simulating the response of materials to short periods of severe loading. Its many elements, contact formulations, material models and other controls can be used to simulate complex models with control over all the details of the problem. LS-DYNA delivers a diverse array of analyses with extremely fast and efficient parallelization. Engineers can tackle simulations involving material failure and look at how the failure progresses through a part or through a system. Models with large amounts of parts or surfaces interacting with each other are also easily handled, and the interactions and load passing between complex behaviors are modeled accurately. -
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Creo
PTC
Imagine, design, create, and innovate your products better with Creo, 3D CAD/CAM/CAE software, and solutions for product design and development. Now, more than ever, product design and manufacturing teams are expected to create products more efficiently and cost effectively, without sacrificing innovation or quality. Fortunately, Creo delivers the most scalable range of 3D CAD product development packages and tools in today’s market. Creo 7.0 has breakthrough innovations in the areas of generative design, real-time simulation, multibody design, additive manufacturing, and others! Take your products from concept to digital prototype efficiently, precisely, and intuitively with Creo—on the cutting edge of CAD for more than 30 years. With Creo 7.0, PTC amply demonstrates its skill at adding compelling new features to an already robust tool-set using smart partnerships to extend its capabilities even further. -
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ISG-virtuos
ISG
An increasing number of variants with a tendency towards batch size 1, shorter product life cycles and high cost pressure: In the age of digitization, digital twins are indispensable in many areas. ISG Industrielle Steuerungstechnik GmbH has years of experience in the realization of simulation solutions with significant competitive advantages for customers in the field of mechanical and plant engineering. With the new generation ISG-virtuos 3 the simulation platform also becomes a solution for manufacturing automation and intralogistics. ISG-virtuos is an open, cross-company simulation platform, with which complete production systems including all components (controls, robots, material flow etc.) can be checked and optimized in deterministic real time. The simulations are created from virtual components, which - stored in corresponding libraries - can be reused and exchanged at any time. -
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AdditiveLab
AdditiveLab
Metal Additive Manufacturing (AM) at an industrial level is a fairly new challenge for many companies. Particularly in the early phases of adapting AM technology, companies spend several weeks with trial and error tests to optimize build configurations. This is inefficient and a waste of time and money. The software AdditiveLab helps to cut back the trial and error tests by providing simulation technology that can predict outcomes of metal-deposition AM processes. With AdditiveLab failure-prone regions can be identified efficiently and manufacturing configurations optimized to increase the manufacturing success, and subsequently, save time and money. AdditiveLab was particularly developed to address the engineering needs of AM engineers without requiring simulation knowledge. It provides a very simple user-interface and automated model preparation processes, reducing the state-of-the-art simulation to only a few clicks. -
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Digimat
e-Xstream engineering
e-Xstream engineering develops and commercializes the Digimat suite of software, a state-of-the-art multi-scale material modeling technology that speeds up the development process for composite materials and structures. Digimat is a core technology of 10xICME Solution and is used to perform detailed analyses of materials on the microscopic level and to derive micromechanical material models suited for multi-scale coupling of the micro- and macroscopic level. Digimat material models provide the means to combine processing simulation with structural FEA. This means to move towards more predictive simulation by taking into account the influence of processing conditions on the performance of the finally produced part. As an efficient and predictive tool Digimat helps its users to design and manufacture innovative composite materials and parts with great efficiency in time and costs. -
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WELSIM
WelSimulation LLC
WELSIM finite element analysis software helps engineers and researchers conduct simulation studies and prototype virtual products.Starting Price: $45 per user per month -
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SimScale
SimScale
SimScale is a cloud-based web application that plays a key part in simulation software for many kinds of industries. The platform allows the use of Computational Fluid Dynamics (CFD), Finite Element Analysis (FEA), and Thermal Simulation. It also offers 3D simulation, continuous modeling, and motion & dynamic modeling. -
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SIMHEAT
TRANSVALOR
Induction heat treatment simulation provides comprehensive information about temperature gradient from surface to core and also the location of areas where phase transformations occur. SIMHEAT® can monitor the impact of current frequency, coil geometry and even concentrators’ location within the heat affected zone. Material modelling considers electrical and magnetic properties that are temperature-dependent. SIMHEAT® can be used as a standalone solution or in combination with Transvalor software. The perfect interoperability guarantees seamless results transfer from one solution to another. All the capabilities and functionalities of SIMHEAT® are also integrated in our FORGE® software, dedicated to the simulation of hot, semi-hot and cold forming processes. -
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CADSIM Plus
Aurel Systems
CADSIM Plus is a chemical process simulation software that combines a first-principles dynamic simulator with a full-featured Computer Assisted Drawing (CAD) front-end in one package. It performs precise heat and material balances for any chemical process and can develop complex dynamic simulations with control logic and batch operations. The software includes a comprehensive set of generic process modules and offers optional module libraries for various applications. CADSIM Plus supports any level of drawing complexity, from simple block diagrams to detailed engineering drawings, and allows exporting drawings to AutoCAD and other standard CAD programs. Its 'electronic flowsheet' runtime simulation mode interface enables interactive and animated simulation tools, where users can change conditions while the simulated process is running. Applications of CADSIM Plus include process design, troubleshooting, prediction of future process conditions, and solutions to dynamic control. -
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Sentaurus Process
Synopsys
Sentaurus Process is an advanced 1D, 2D and 3D process simulator for developing and optimizing silicon semiconductor process technologies. It is a new-generation process simulator for addressing the challenges found in current and future process technologies. Equipped with a set of advanced process models, which include default parameters calibrated with data from equipment vendors, Sentaurus Process provides a predictive framework for simulating a broad range of technologies from nanoscale CMOS to large-scale high-voltage power devices. Sentaurus Process is part of a comprehensive suite of core TCAD products for multi-dimensional process, device, and system simulations, embedded into a powerful user interface. Fast prototyping, development, and optimization of a broad range of technologies with comprehensive physics-based process modeling capabilities. Enhance device performance by optimization of thermal and mechanical stress in process structures with stress history. -
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Creo Simulation
PTC
Enhance your product design with simulation and analysis to reduce costly physical prototyping while increasing your products' durability, reliability, and safety. Using digital prototypes to understand how your designs perform in real-world conditions is vital to your product development process. Creo Simulation is designed uniquely for the engineer. It comes complete with structural, thermal, and vibration analysis solutions and a comprehensive set of finite elements analysis (FEA) capabilities. With Creo Simulation, you can analyze and validate the performance of your 3D virtual prototypes before you make the first part. We offer flexible and unique simulation solutions for our customers. Utilize this section to gain insights into what we offer to fit your needs. If you have any questions about our tool stack, feel free to contact a Creo representative. -
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Fatigue Essentials
AppliedCAx
Fatigue Essentials is a desktop application used to efficiently conduct structural fatigue analysis. Fatigue Essentials provides a user-friendly tool for conducting stress-life analysis either using classical stress calculations or linked with FEMAP™ and using the finite element generated stresses. The program is structured to guide the user through the analysis by following a tree structure. General analysis options are selected following loads, materials, and spectrum branches. Within each branch are options for analysis variations or input methods. Analysis results are available on-screen to paste into a report and/or as a damage contour plot in FEMAP. Covers most engineering requirements. Classic mode with user input stresses. Professional mode (FEMAP-linked) with the ability to read nodal stresses and push back results in a damage contour plot. Option for either interactive input or file input for stresses and cycles.Starting Price: $695 one-time payment -
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Simcenter Optistruct
Siemens
Simcenter OptiStruct is a multiphysics and multidisciplinary simulation and optimization workhorse spanning implicit to explicit analysis. Its “One Model, One Solver” approach improves workflow efficiency, provides the analyses engineers need, and reduces time to results without compromising accuracy. True design innovation comes from assessing, refining, and optimizing the entire system within a single, integrated tool, and OptiStruct makes this possible. Engineers can assess multiple physics, including durability, heat transfer, acoustics, fatigue, and more, using one model to integrate structural and multiphysics analysis, streamline workflows, and accelerate time to market. Its open architecture allows teams to work with preferred tools, implement third-party code, and customize the software while maintaining the same model and solver methodology. OptiStruct sets the standard for optimization across lightweighting, structural, multi-model, nonparametric shape, and multi-material. -
44
Simcenter X
Siemens
Simcenter X is a cloud-powered multi-domain simulation suite from Siemens designed to help engineering teams accelerate innovation with flexible SaaS access. It brings together trusted Simcenter simulation applications with cloud deployment, high-performance computing, and scalable licensing. The platform supports CFD, mechanical, systems simulation, and MDAO tools so teams can work across multiple disciplines in one environment. Simcenter X helps reduce engineering silos by improving collaboration, data management, and cross-domain simulation workflows. Its centralized cloud-managed entitlements, universal tokens, and one-click HPC access make it easier to manage users, resources, and peak simulation workloads. With Simcenter X Advanced, organizations can simplify licensing, expand simulation capacity, and empower engineers to run complex studies more efficiently. -
45
Samadii Multiphysics
Metariver Technology Co.,Ltd
Metariver Technology Co., Ltd. is developing innovative and creative computer-aided engineering (CAE) analysis S/W based on the latest HPC technology and S/W technology including CUDA technology. We will change the paradigm of CAE technology by applying particle-based CAE technology and high-speed computation technology using GPUs to CAE analysis software. Here is an introduction to our products. 1. Samadii-DEM (the discrete element method): works with the discrete element method and solid particles. 2. Samadii-SCIV (Statistical Contact In Vacuum): working with high vacuum system gas-flow simulation. Using Monte Carlo simulation. 3. Samadii-EM (Electromagnetics): For full-field interpretation 4. Samadii-Plasma: Plasma simulation for Analysis of ion and electron behavior in an electromagnetic field. 5. Vampire (Virtual Additive Manufacturing System): Specializes in transient heat transfer analysis. additive manufacturing and 3D printing simulation software -
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Simcenter Inspire
Siemens
Simcenter Inspire is a Siemens simulation-driven design platform that helps users generate, optimize, validate, and manufacture innovative parts in one environment. It brings CAE capabilities into a CAD-like workspace so designers can explore concepts, test performance, and assess manufacturability earlier in the design process. The software combines geometry modeling, generative design, manufacturing simulation, and GPU-enhanced rendering to support faster product development. Simcenter Inspire includes advanced hybrid modeling tools that allow users to work with BRep, PolyNURBS, facets, and implicit geometry. It also provides embedded solvers for structural, motion, and fluid performance exploration while reducing or automating meshing. With optimization tools for lightweighting, material efficiency, and structural refinement, Simcenter Inspire helps teams move from early design ideas to manufacturable products with greater confidence. -
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Simcenter EDEM
Siemens
Simcenter EDEM is a high-performance Discrete Element Method tool for bulk material and particle simulation, designed to give engineers crucial insight into how granular materials interact with handling equipment across a range of operating and process conditions. It accurately simulates and analyzes the behavior of coal, ores, soils, fibers, grains, tablets, powders, rocks, crops, and other real-world materials. Users can get started quickly with extensive pre-calibrated material model libraries representing rocks, ores, soils, and powders, while validated physics models support dry, sticky, compressible, and more complex material behaviors. Simcenter EDEM can simulate complex, industry-scale particle systems involving many millions of particles with fast and scalable compute performance across CPU, GPU, and multi-GPU solvers. -
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Simcenter Motionsolve
Siemens
Simcenter MotionSolve helps engineers accurately predict the dynamic behavior of complex mechanical systems using multibody dynamics simulation. It reduces physical testing by enabling early evaluation of mechanisms and capturing real-world effects such as contact and flexibility. Engineers can quickly mechanize CAD to predict how a mechanism operates, study design variations, and select the right level of fidelity to predict loads for downstream finite element calculations, such as strength and fatigue. Simcenter MotionSolve enables detailed multibody dynamics simulation to predict the kinematic and dynamic behavior of complex mechanical systems, calculating motion, forces, accelerations, and reactions so engineers can understand how mechanisms behave under real operating conditions. It supports flexible bodies, allowing elastic deformation to be included alongside rigid-body motion when stiffness, compliance, or structural flexibility significantly influences system performance. -
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Ansys Discovery
Ansys
Ansys Discovery features the first simulation-driven design tool combining instant physics simulation, high-fidelity simulation and interactive geometry modeling in a single easy-to-use experience. By combining interactive modeling and multiple simulation capabilities in a first-of-its-kind product, Discovery allows you to answer critical design questions earlier in the design process. This upfront approach to simulation saves time and effort on prototyping as you explore multiple design concepts in real time with no need to wait for simulation results. Ansys Discovery answers critical design questions early in your process with speed and accuracy. Boost productivity and performance by eliminating long waits for simulation results. Discovery lets engineers focus on innovation and product performance. By answering critical design questions early in the process, thus decreasing engineer labor and physical prototyping costs, Ansys Discovery allows for a ROI boost across your organization. -
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Netfabb
Autodesk
Netfabb® software includes efficient build preparation capabilities alongside tools for optimizing designs for additive manufacturing, simulating metal additive processes, and planning for CNC post-processing. Import models from a variety of CAD formats and use repair tools to quickly correct errors. Make your models production ready by adjusting wall thicknesses, smoothing rough areas, and more. Identify areas that require support and use semi-automated tools to generate support structures. Convert organic, free-form mesh files to boundary representation models and make them available in CAD in STEP, SAT, or IGES format. Use 2D and 3D packing algorithms to optimally place parts within the build volume. Create custom reports that include critical information for manufacturing and quoting. Develop build strategies and define toolpath parameters for maximum surface quality, part density, and speed.Starting Price: $30 per month