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LMS Virtual.Lab Powertrain Motion   LMS Virtual.Lab Powertrain Motion   LMS Virtual.Lab Powertrain Motion
 

LMS Virtual.Lab Powertrain Motion

In developing new and improved engines, engineers often face conflicting design goals. They are challenged to reduce engine emissions and fuel consumption, yet deliver engines with more power, reduced vibrations, an optimal sound and maintenance free operation. LMS Virtual.Lab Powertrain Motion is a complete and integrated solution to simulate the complex dynamic performance of engines, and to accurately predict internal loads. These loads are needed to determine fatigue life, vibrations, and engine acoustic sound. Using virtual simulation, engineers can quickly identify the most promising concepts in developing new engine concepts, such as cam phasers, variable valve-lift devices and variable compression-ratio engines. Virtual.Lab Powertrain also supports engineers investigating shaft whirl, chain noise, gear rattle, and torsional vibrations in order to optimize the dynamics of driveline systems.

LMS Virtual.Lab Powertrain Motion offers dedicated powertrain modeling templates that help users to quickly build detailed models of full powertrain assemblies or specific sub-assemblies like valvetrain, cranktrain, driveline, timing chain and belt drive systems. Separately created sub-mechanisms can easily be joined together to study coupled behavior. The powertrain template generates fully parameterized models enabling fast modifications and an accelerated analysis of alternative designs.

Once the virtual prototype model is built, the Virtual.lab Motion Solver handles a broad range of powertrain applications:

  • Valvetrain: simulate high order/high speed effects including spring surge, cam-contact design, or valve seating performance
  • Cranktrain: analyze crankshaft and engine block interactions, bearing loads, crankshaft vibrations and dynamic stresses
  • Driveline: analyze prop shaft bending and whirl, garage clunk and shift clunk, or driveline booming
  • Timing Chain: quick layout and dynamic simulation of complicated sprocket, guide, and chain configurations

Features

  • Modeling elements for hydrodynamic bearings, flexible valve springs, cam contact forces, hydraulic lash adjuster
  • Combustion tacho elements apply measured gas forces to pistons and cylinder head
  • Cam profile synthesis tool
  • Automatic setup of valvetrain parts, gas forces and firing order adapted to engine configuration
  • Integrated engine-speed controls for simulation of stationary speeds, speed sweeps and transient run-ups
  • Flexible bodies support the computation of dynamic stresses
  • Dynamic stress animations indicate failure
  • Topological hot spot detection ranks most stressed regions on the FE mesh

Benefits

  • Templates accelerate modeling of crank train, valve train and timing drive systems
  • Predict loads throughout the powertrain system
  • Evaluate the dynamic stresses at different engine regimes to efficiently determine engine vibrations and analyze crankshaft and engine block reliability
  • Study new engine concepts such as cam phasers, variable valve-lift devices and variable compression-ratio engines
  • Design powertrain components while respecting dynamic performance targets
  • Study the dynamics of belts and chains and coupled behavior of powertrain subsystems

Solution Pack Content

  • Desktop
  • Motion Pre/Post-Processor
  • Motion Solver
  • User Defined Subroutines
  • Collision Detection
  • Basic Geometry
  • Solid Modeling
  • Flexible Bodies
  • Hydrodynamic Bearing
  • Helical Spring
  • CAM Generator / Contact
  • Combustion / Tacho
  • Timing Belt
  • Timing Chain
  • Accessory Drive
  • Crank Train
  • Valve Train
  • Hydraulic Lash Adjuster

Solution Pack Options

  • Ventil Interface
  • CAE Interface (ABAQUS, ANSYS, I-DEAS Universal File, MSC.NASTRAN, PERMAS)
  • NASTRAN Analysis Driver
  • ANSYS Analysis Driver
  • AMESIM, DSH+, EASY5, Matlab Interface
  • Component Structural Analysis
  • Stress Recovery
  • Design Sensitivity Analysis
  • Optimization
 
Download the LMS Virtual.Lab Motion Brochure



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