Model 323 MAST System: versatile orthogonal configuration
Model 353 MAST System: high-frequency hexapod configuration
Flexible, Reliable MTS MAST™ SystemsAutomotive engineers worldwide employ MTS MAST (Multi-Axial Simulation Table) systems to accurately replicate the vibration phenomena of real-world service environments in controlled laboratory settings.
Available in both hexapod and orthogonal designs, these systems integrate robust, MTS-built tables, actuators and swivels, efficient hydraulic power systems, and advanced controls and software to provide precise six degree-of-freedom (6DOF) testing of automotive subsystems, assemblies and body components.
MTS has developed and delivered more than 100 MAST systems - including both standard and custom designs - for a broad array of applications, including durability; noise & vibration (squeak and rattle); ride comfort; modal evaluation; and model validation.
Designed for easy operation and accurate, repeatable vibration simulation, MTS MAST systems enhance a lab’s ability to obtain meaningful information about component and subsystem performance and durability early in the development process, effectively accelerating time to market and minimizing long-term costs.
The MTS MAST portfolio features an array of models capable of meeting a variety of payload and excitation requirements. Versatile digital controls and state-of-the-art software extend the utility of these systems across a wide range of product development and validation applications. Additionally, system table size, payload, or other performance capabilities, can be custom tailored to meet unique needs.
MTS MAST systems incorporate low-maintenance, zero-backlash bearings throughout their designs to optimize both performance and dependability. Reliability is further enhanced by the unrivaled MTS global service and support organization, which comprises hundreds of skilled technicians located strategically around the world.
Contact MTS today and learn how the diverse family of MTS MAST systems can be employed to enhance and accelerate the development of automotive subsystems, assemblies and body components.
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