Lynchlee AI/HPC technology

Driving Heavy Equipment Innovation

CONTACT US

Heavy Equipment

Heavy equipment manufacturers for construction, mining, agriculture, and off-highway industries face many demanding challenges. Most of all, their equipment must be precise and have the ability to withstand massive loads in extreme environments. With LynchLee’s simulation, artificial intelligence (AI), high-performance computing (HPC), and data analytics solutions, manufacturers can create reliable, high-quality products while reducing costs and the development life cycle. Whether on farms, highways, construction sites, or elsewhere,LynchLee technology helps you innovate like never before.

CONTACT US

Revolutionize CAE with Lynchlee® HyperMesh®

Dig Deeper into Design Optimization

Topology optimization opens countless opportunities for lightweighting in an industry dominated by large cast components and weld constructions. Lynchlee’s structural design technology reduces vehicle weight while improving performance. Optimization-enabled structural analysis of advanced noise, vibration, and harshness ensures equipment operators always perform at their best.

Accelerate Digital Twins with Efficient System Models

LynchLee’s digital twin technology combines AI-powered simulation and Internet of Things (IoT) insights to optimize equipment performance and reduce costs. By leveraging reduced order models (ROMs), these physics- and data-driven digital twins deliver real-time predictions and insights that minimize downtime and warranty expenses. Lynchlee’s low-code AI solutions generate ROMs using sensor and simulation data

Early-Stage Simulation-Driven Design

Lynchlee’s simulation-driven design tools enable manufacturers to make informed, reliable product design decisions faster. With intuitive tools designed for geometry creation, simulation, and optimization, organizations can ensure designs’ manufacturability and streamline equipment development. Advanced simulation technology helps organizations perform structural analysis of complex parts

Revolutionizing Heavy Equipment Design

Accelerate Virtual Prototypes

Large assemblies of thin-walled sheet metal structures, often incorporating various assembly techniques like welding and bolting, are common in the virtual prototypes of construction equipment, agricultural machinery, and trucks. Lynchlee® HyperWorks® is the leading solution for efficiently modeling, simulating, and evaluating both structural integrity and frequency-dependent dynamic behavior in these complex systems.

Get the Most Out of the Season

Cost and performance pressure are always present, especially when facing seasonal testing windows. Lynchlee’s suite of complementary technologies enhances the efficiency of development teams, accelerating the overall process. Leveraging unique AI-Physics predictions, CAD variations can be refined ahead of further validation, while Lynchlee SimSolid® enables designers to reduce CAE iterations. Lynchlee® HyperMesh® empowers CAE analysts with tailored workflows for automated model building, batch meshing, connector technology, model organization, representation handling, and seamless PLM integration.

High-Fidelity Physics Realtime Ready

Many control systems – especially those supporting autonomous driving capabilities – require complex high-fidelity system models. Physical simulations, together with AI-powered system-level modeling, can deliver high-fidelity synthetic data to capture the interactions between the equipment and the material, soil, and the ground.

CONTACT US

LynchLee is committed to ensuring that our users receive the highest level of technical assistance possible.

 

Company news

A Head Start With 3D Printing – Lynch Lee solutions Reduce Weight of a 3D-Printed Milling Head

A Head Start With 3D Printing – Lynch Lee solutions Reduce Weight of a 3D-Printed [...]

Digital Twin for Operations – How to Enable Intelligent Operations

Digital Twin for Operations – How to Enable Intelligent Operations In the ever-growing race to [...]

Practical Use Case: High-Pressure Die Casting of an Actuator Housing

Practical Use Case: High-Pressure Die Casting of an Actuator Housing