Simcenter Radioss

Optimize product performance under dynamic loads with a leading structural solver for highly nonlinear problems like crash, impact, blast and stamping.

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Why Simcenter Radioss?

Simcenter Radioss is an explicit solver for highly nonlinear scenarios within Siemens’ software ecosystem.

It delivers accurate multiphysics simulations of complex systems responding to dynamic loadings, such as impact, crash, ballistics and blast, manufacturing and assembly processes, product misuse and accidental component failure scenarios.

OpenRadioss™ is a continuously developed open-source version for research and development.

Accelerate innovation

Combining crash and impact simulation expertise with rapid, community-driven development, Simcenter Radioss delivers regularly updated and enhanced features that accelerate innovation and keep users on the cutting edge.

Integrate seamless workflows

Enable users to directly run external input decks. This seamless experience minimizes workflow disruptions and accelerates productivity, providing immediate access to a modern, fully integrated simulation environment.

Scale performance

Deliver scalability across computing architectures, generating robust datasets from advanced multiphysics simulations for crash and impact-safe designs. This data enables rapid training of AI models and predictive insights.

Want to try Simcenter Radioss?

 

Simcenter Radioss for crash and safety

The advanced solver technology enables engineers to simulate complex scenarios such as full-vehicle crash, high-speed impacts and vehicle rollovers. The software supports the broader industry shift toward electrification with dedicated material and failure models for detailed analysis of applications like battery systems for electric vehicles and urban air mobility concepts.

Simcenter Radioss for high velocity and dynamic event analysis

Crucial for the safety and reliability of large-scale components, Simcenter Radioss enables accurate simulation of extreme events such as bird strikes, jet engine blade containment, and structural failures. Simcenter Radioss offers a range of composite material models that are used to ensure performance and efficiency.

Simcenter Radioss for blast and ballistic analysis

From blast analysis to ballistic impacts, Simcenter Radioss helps engineers design safer, more resilient protective systems. With advanced techniques such as Arbitrary Lagrangian-Eulerian (ALE) method and smoothed-particle hydrodynamics (SPH), the software enables accurate simulation of complex interactions in scenarios for protective systems and equipment and critical infrastructure.

Simcenter Radioss for renewable and sustainable energy

Simcenter Radioss supports the design and validation of energy systems that must perform reliably under harsh environmental and operational conditions. Simulate seismic activity and other large, sudden forces that impact the safety and longevity of energy infrastructure. Detailed simulation of scenarios such as hailstone impact help improve the resilience of components like solar panels.

Simcenter Radioss for drop and impact testing

Simcenter Radioss helps engineers enhance the performance and reliability of complex devices by simulating real-world scenarios such as drop tests, impacts and misuse. These insights enable teams to assess how components like screens, batteries, product casings and their packaging will behave under shock before physical prototypes are built.

Simcenter Radioss for material performance and fluid-structure interaction (FSI)

Simulating how complex materials behave and interact with fluids under dynamic conditions is critical for designing high-performance systems. Simcenter Radioss enables detailed analysis of complex nonlinear material behavior, large deformations and FSI to improve safety, reliability and functionality.

SUCCESS CASE

Discover how others use Simcenter Radioss

iLittleMiracle | Using Digital Transformation in oral healthcare to achieve 85 percent accuracy in predictive models

Using Simcenter Radioss, iLM achieved an accuracy of more than 85 percent, heightend the customer experience and enhanced analysis and prediction capabilities in treatment outcomes.

Featured capabilities

State-of-the-art libraries

Leverage state-of-the-art materials and damage models to design safer, more robust products with confidence.

Efficient scaling for complex models

Maximize computing efficiency with scalability across diverse architectures. Handle large-scale simulations with ease.

Open explicit dynamics with community support

Accelerate innovation in crash and impact simulation with an open platform designed to meet evolving industry demands. Community-driven development ensures continuous updates and relevant new features.

Validated safety tools for human modeling

Work with partner tools for extensive safety evaluation using crash dummies and human body models (HBM).

Run LS-DYNA input

Run LS-DYNA input decks directly within the GUI for a fully integrated experience. While robust file conversion tools support Abaqus users.

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