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LMS Virtual.Lab Durability - Industry Applications   LMS Virtual.Lab Durability - Industry Applications   LMS Virtual.Lab Durability - Industry Applications
 

LMS Virtual.Lab Durability - Industry Applications


Automotive and Ground Vehicle

For over a decade, LMS has been delivering advanced durability simulation and test solutions to the majority of automotive OEMs, their suppliers and an extensive list of ground vehicle manufacturing companies.

Whether the focus is on suspension knuckles, control arms and auxiliaries, or on brake calipers or steering system parts, LMS Virtual.Lab Durability accurately traces the fatigue performance of each involved chassis component. Its effective and robust processes are easily controllable, yield powerful seam weld capabilities and provide access to all simulation parameters.

It is quite striking how fast LMS Virtual.Lab Durability executes fatigue-life assessments on body frames, panels, cross-members and door systems as well as on sunroofs, latches and locking systems. LMS Virtual.Lab Durability also guarantees a high degree of accuracy for specific spot welds analyses.

Advanced numerical durability predictions can be applied to specific engine and powertrain parts. Engine brackets, gear box chain heels and exhaust lines are typical examples of components that can be effectively optimized with LMS Virtual.Lab Durability.

Aerospace

LMS Virtual.Lab Durability predicts the fatigue life of mechanical systems such as landing gear, control mechanisms, slat tracks and other critical assemblies. Local stress concentrations are identified based on all possible combinations of local load conditions, making it possible to address durability problems long before prototypes are built. A wide range of methods is offered to localize the weak spots and to assess fatigue life.

Industrial Machinery

In industrial applications, economic effi ciency depends on critical parts that are typically subjected to large dynamic multiaxial load cases. Any metal component subjected to dynamic loading cycles can be efficiently optimized. LMS Virtual.Lab Durability is capable of accurately determining the fatigue life of rotor bases used in large wind mills, or crane parts that are integrated in industrial trucks.
 
Component Process
System Process
Loads Prediction



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