
Polyflow accelerates design while shrinking energy and raw material demands to make your manufacturing processes more cost-effective and environmentally sustainable. R&D teams use this technology extensively to design and optimize processes such as extrusion, thermoforming, blow molding, glass forming, fiber drawing and concrete shaping. Design engineers use Polyflow to minimize physical prototyping when manufacturing extrusion dies or to reduce thickness variation to improve the quality of thermoformed or blown products

ANSYS optiSLang optimizes your product designs by combining the powerful parametric modeling capabilities of ANSYS Workbench with the robust design optimization (RDO) methods of optiSLang. The optiSLang toolbox includes modules for sensitivity analysis, optimization and robustness evaluation that you can easily drag and drop into a Workbench project to form an interactive process chain. This process workflow enables your engineering teams to improve product performance, identify optimization potential, quantify risks and secure resource efficiency. ANSYS optiSLang is also available outside of Workbench with its own powerful process integration framework

ANSYS Autodyn simulates the response of materials to short duration severe loadings from impact, high pressure or explosions. It is best suited for simulating large material deformation or failure. Autodyn provides advanced solution methods without compromising ease of use. Complex physical phenomena such as the interaction of liquids, solids and gases; the phase transitions of materials; and the propagation of shock waves can all be modeled within Autodyn. Integrated within ANSYS Workbench with its own native user interface, this program has for decades led the industry in ease of use, enabling you to produce accurate results with the least amount of time and effort

ANSYS nCode DesignLife works with ANSYS Mechanical to reliably evaluate fatigue life. Using the results of finite element analysis (FEA) from ANSYS Mechanical, it calculates stresses and strains, then cumulates damage from repetitive loading to determine a product's predicted life. You can quickly evaluate the effects of different materials and alternative geometries for new designs, and then optimize them for the product's expected usage, long before the first prototype is built

Ansys GRANTA Materials Data for Simulation is a new license option available with Ansys Mechanical and Ansys Electronics Desktop. It provides instant, clickable access to the materials property data you need, eliminating data search time and input errors.

High-fidelity physics-based camera and lidar sensor simulation with ground truth information, Ansys VRXPERIENCE Sensors is part of the Ansys VRXPERIENCE product family.

The Ansys VRXPERIENCE driving simulator is powered by AVSimulation’s proven SCANeRTM. It is an open and scalable modular simulation solution that creates an ultrarealistic virtual world. Ansys VRXPERIENCE Driving Simulator powered by SCANeR enables testing against a variety of objectives and performance requirements

Ansys GRANTA EduPack 2020 is the new version of CES EduPack, a unique set of teaching resources that supports materials education across engineering, design, science and sustainable development curricula.

This product features functional and architectural system modeling and verification in a SysML-based environment. It provides a strong foundation to deploy model-based systems engineering (MBSE) processes and best practices. A key feature is the capability to generate consistent and comprehensive interface control documents (ICD)



For more than 50 years, Ansys software has enabled innovators across industries to push boundaries with the predictive power of simulation. From sustainable transportation and advanced semiconductors, to satellite systems and life-saving medical devices, the next great leaps in human advancement will be powered by Ansys.