Simulate Impact. Predict Failure. Design for Safety.
Ansys LS-DYNA is an explicit multiphysics solver used for highly transient events such as crash, impact, drop, penetration and severe loading. It supports detailed material, contact and structural behavior for demanding engineering simulations.
Talk to an ExpertKEY PRODUCT CAPABILITIES
Advanced System Evaluation. Full Process Integration.
1. Crash Simulation
Run full-scale vehicle crashworthiness simulations with highly complex contact surfaces.
2. Impact Analysis
Analyze high-velocity impact, component deformation and localized destruction.
3. Drop Test Simulation
Evaluate structural integrity of consumer electronics, batteries, and packaging.
4. Penetration Analysis
Simulate projectiles traversing physical barriers with severe material erosion.
5. Occupant Safety
Incorporate dummy models, airbags, and restraint systems into structural crash events.
6. Blast Simulation
Analyze high-rate loading from explosive blast waves interacting with solid structures.
7. Structural Dynamics
Solve highly transient dynamic events under severe loading conditions.
8. Nonlinear Materials
Model materials with physical yield points, plastic deformation and complex failure.
9. Fluid-Structure Interaction
Solve coupled Eulerian-Lagrangian (ALE) fluid and solid interactions.
10. Multiphysics Simulation
Unify thermal, electromagnetic, and structural physics into one explicit solver run.
Solve Your Most Demanding Transient Physics Challenges.
Crashworthiness
Validate cabin intrusion, energy management, and structural safety margins.
Durability Testing
Virtually test physical product degradation from repeated operational falls and impacts.
Extreme Loading
Predict material behavior under extreme impact velocities and ballistic penetration.
Occupant Protection
Verify seat belt tensioners, airbags, and dummy load limits during crashes.
Manufacturing Form
Analyze stamping, sheet metal bending, and manufacturing distortion rates.
FSI Physics
Model complex coupled behavior like fluid container sloshing and fuel tank impacts.
Step-by-Step Simulation-Driven Design Verification.
Explore
Test structural concepts with rapid numerical prototyping.
Refine
Modify component designs using real-time physics feedback.
Validate
Subject chosen iterations to strict compliance solvers.
Optimize
Finalize material topology for safe mass production.
Trusted Across Rigorous High-Performance Industries.
Automotive & EV
Full crash test compliance, battery casing impact, occupant safety.
Aerospace & Defense
Turbine blade out containment, bird strike, ballistic tests.
Energy & Power
Turbine structural failure, piping system integrity under blast.
Industrial Equipment
Structural drop tolerance, heavy equipment rollover.
Manufacturing
Stamping and metal forming validation.
Oil & Gas
Equipment casing blast response, accidental drop loads.
Heavy Machinery
Severe load structural durability, bucket impact tests.
Transportation
Locomotive crash structures, high-speed rail derailment impact.
Build Confidence in Your Simulation-Driven Design Workflow.
Kaizenat supports structural teams with LS-DYNA licensing, material model setups, vehicle crash setup coaching, high-performance solver configuration, and advanced explicit-dynamics training.

Verified technical competence, high-performance computing expert support.
Understand
Detailed mapping of product design bottlenecks and physical boundary objectives.
Implement
License setup, workspace syncing, and enterprise network integration.
Enable
Team onboarding with focused custom webinars, hands-on tutorials and local support.
Optimize
Scale development exploration with multiphysics models and detailed solvers.
Ready to Accelerate Your Performance Validation?
Talk to Kaizenat's seasoned simulation specialists to map out and deploy the ideal LS-DYNA workflow for your specific industrial application.