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Testing Systems Product List

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User case introduction: A collection of case studies for the construction industry presented as a gift.

Free distribution of case studies! Cutting-edge testing and sensor solutions in the industry.

MTS Japan, Inc. has been providing various testing equipment and engineering consulting services related to testing to users in Japan for over 40 years as the Japanese subsidiary of MTS Systems Corporation in the United States. This case study collection features user cases of construction solutions that ensure safety even during earthquakes and tsunamis. We are currently offering a collection of case studies for construction free of charge! If you are interested, please feel free to download the catalog. [Example of a case] - Kajima Corporation → Reproducing the world's largest amplitude of long-period earthquakes - University of Minnesota → Revision of design standards - Dynamic Certification Laboratory → Safety even during earthquakes → Supporting the establishment of a new seismic certification body for hospital and medical facility equipment For more details, please contact us or download the catalog (free).

  • Vibration Testing

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Bionix tabletop material testing system for biomedical applications

Spinal Kinesiology Research System!

This is a modular and user-friendly mechanical testing platform designed for all types of spinal kinematics research. This system evaluates spinal test specimens across the entire range of real-world loads, motions, and displacements. 【Features】 ■ Minimizes joint parts of the frame to achieve high rigidity and high-precision alignment ■ Designed with consideration for maintenance and serviceability after installation ■ Ergonomically designed to enable safer and more efficient test setup and execution *For more details, please contact us.

  • Testing Equipment and Devices
  • others

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1000Hz High Cycle Fatigue Testing System

1000Hz High Cycle Fatigue Test System

It is used for high-cycle fatigue testing for long-term life prediction.

  • Testing Equipment and Devices
  • Other analyses
  • simulator

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Whole Machine Static Strength Test System

A solution that integrates control and data collection to efficiently conduct tests on all types of structures.

Realization of efficiency and acceleration in high-quality test data collection, response to increasing testing demands, and enhancement of lab productivity.

  • Testing Equipment and Devices
  • Strength Testing Equipment
  • Vibration Testing

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[Case Study] Rolls-Royce Plane 2-Axis Testing System

Millions of dollars saved by improving engine combustion efficiency and durability!!

Are you looking for ways to improve the efficiency and lifespan of aircraft design? ~Burning hotter, lasting longer~ MTS can save millions of dollars with just slight improvements in fuel efficiency and reliability of engines through our "High-Temperature Materials, Components, and Plane Two-Axis Testing System"! Testing of gas turbine materials and components can be conducted under high-stress, temperature-vacuum environments that closely resemble actual jet engine operating conditions, with advanced and precise multi-axis load and torque control for test specimens. ■□━━━━━━━━━━━━━━━━━・・・・・‥‥‥……… For more details on our adoption results at Rolls-Royce, please download our catalog or feel free to contact us.■□━━━━━━━━━━━━━━━━━・・・・・‥‥‥………

  • Testing Equipment and Devices
  • Strength Testing Equipment
  • Environmental Test Equipment

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[Case Study] MTS Model 858 Bionix Testing System

We are helping to provide more beneficial information before scoliosis surgery.

The Tara Technology Research Institute (ITT Dublin) is a university-level institution located in South Dublin, Ireland. The Biomechanics Technology Center (BTC) is a research center established within the Faculty of Engineering, providing intensive guidance to a small number of students aiming to obtain a graduate degree in biomedical engineering. In March 2009, BTC upgraded its mechanical testing capabilities related to the spine by purchasing the MTS Bionix testing system equipped with the MTS FlexTest control system and MTS MultiPurpose TestWare (MPT) software. The new MTS testing system allows for pre-loading of spinal test specimens to accurately determine the forces required to return the spine to its natural alignment during surgery. This process holds significant potential for understanding what is needed during spinal fixation procedures based on the curvature that varies from patient to patient. It is predicted that this new method will reduce operating room time by 25 percent, leading to a decrease in the risk of infection and a shorter recovery time. For more details, please contact us or refer to the catalog.

  • Testing Equipment and Devices
  • Strength Testing Equipment

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[Case Study] MTS 10kN Electromechanical Testing System

We contribute to the realization of a practical educational environment at the VCU School of Biomedical Engineering.

At the Virginia Commonwealth University (VCU) Biomedical Engineering Research Institute, there are currently eight MTS electromechanical testing systems with a load capacity of 10 kN in operation, utilizing the MTS TestWorks application software, which features a flexible and intuitive user interface for designing and conducting tests. Additionally, each testing device is equipped with MTS wedge mechanism grips, axial extensometers, and custom-designed clamps and test frames. Through practical training in the institute, students can design and conduct tests for various load sequences, including tension/compression and bending, on different tissues and engineering materials, while becoming familiar with the functions of the software, load frames, and accessories. According to customers, MTS testing equipment plays a crucial role in achieving the institute's initial goal of creating a practical and meaningful learning environment. For more details, please contact us or refer to the catalog.

  • Testing Equipment and Devices
  • Strength Testing Equipment

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[Case Study] Large Wave Channel and Tsunami Tank for Tsunami Simulation

We support the enhancement of tsunami measures through large-scale simulations.

Research at the O.H. Hinsdale Wave Research Laboratory (HWRL) of Oregon State University's College of Engineering, under the George E. Brown, Jr. Network for Earthquake Engineering Simulation Tsunami Research Facility (NEES TRF), influences how people interact with the ocean, including where they live, how coastal ecosystems are maintained, and how energy is generated. Over the past 40 years, MTS and HWRL/NEES TRF have worked on expanding several research facilities, with MTS playing a crucial role in the expansion of each facility, from equipment planning to hardware and software specifications, system integration, and ongoing maintenance. As NEES TRF continues to improve the scale and sophistication of testing facilities, engineers around the world can gain unprecedented insights into wave dynamics and assess the potential impacts of marine events on humans, which also aids in developing more resilient structures and more effective evacuation plans. For more details, please contact us or refer to the catalog.

  • Testing Equipment and Devices
  • simulator

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[Case Study] High-Temperature Material Testing System

A Canadian research institute provided support to open new frontiers in high-temperature material testing.

The development of "high-temperature materials" designed for long-term use under extremely high-temperature conditions is foundational for next-generation jet engines and gas turbines, redefining the concept of energy efficiency. Some of the most advanced investigations in this field are being conducted at the Structural and Materials Performance Laboratory of the National Research Council of Canada’s Institute for Aerospace Engineering in Ottawa, Ontario. The Materials and Components Technology Group has introduced 18 different MTS products for high-temperature testing. Their lineup includes the MTS Model 810 Load Frame and the latest MTS Landmark hydraulic testing system. The laboratory utilizes two MTS hydraulic power sources, FlexTest digital control systems, and multipurpose testing software (Multipurpose TestWare). Additionally, they use MTS testing accessories such as hydraulic grips, extensometers, and electric furnaces in combination with the testing equipment. Customers have commented, "MTS equipment is reliable and traceable. By using MTS testing devices, we can obtain the necessary data to make informed decisions." For more details, please contact us or refer to the catalog.

  • Testing Equipment and Devices
  • Environmental Test Equipment

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[Case Study] MTS Active Road Abatement (ALA) System

A major aircraft manufacturer has achieved the optimization of flight control for business jets.

To ensure safe and smooth flights with the Gulfstream G650 business jet, Gulfstream Aerospace Corporation has implemented the "Iron Bird" testing system. This is a structural model created with strict positional relationships and accurate dimensions to replicate the actual aircraft, rigorously evaluating flight control, hydraulic, electrical systems, and landing gear under various operational conditions. To prevent damage to the Iron Bird system, Gulfstream employs the MTS Active Load Abort (ALA) system, which simultaneously removes all hydraulic energy applied to the system when error thresholds are exceeded. With MTS's solution, Gulfstream has created an Iron Bird testing environment with dynamic load-following capabilities in the lab before the first flight. MTS engineers have participated in the design development, integration, execution, and training phases of this project and continue to provide technical support. "MTS's contribution to the success of the G650 aircraft is something to be proud of," the customer stated. For more details, please contact us or refer to the catalog.

  • Testing Equipment and Devices

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[Case Study] Introduction of Model 329 6DOF LT System

We are contributing to the development of next-generation electric vehicles and hybrid vehicles.

The Fraunhofer Institute LBF, based in Darmstadt, Germany, is a research institution specializing in the evaluation of structural durability and system reliability of components aimed at safety, primarily used in the European automotive industry. It serves as a key research institution and contract testing laboratory, as well as a development partner for automotive manufacturers. Currently, automotive manufacturers are focusing on the development of a wide range of next-generation electric vehicles, but the testing systems for the body structure of electric vehicles must be capable of accurately applying significant loads and braking forces in both vertical and longitudinal directions. In the spring of 2009, LBF, with the support of MTS, began integrating the MTS Model 329 6DOF LT system, which belongs to the MTS Model 329 spindle-coupled load simulator family, into its existing testing facilities. By February 2010, installation and setup were completed, and full-scale operations began. With the introduction of the MTS Model 329 6DOF LT system, LBF became the only contract research laboratory in Germany to provide comprehensive body structure testing for automotive manufacturers. For more details, please contact us or refer to our catalog.

  • Testing Equipment and Devices
  • Strength Testing Equipment

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[Case Study] Implementation of MTS TestSuite Software

He is also active in the engineering and testing business of marine product manufacturers.

Maritime International, headquartered in Broussard, Louisiana, works closely with port authorities, engineering companies, marine construction contractors, and private operators around the world to provide marine-related products such as fender systems and twin mooring posts tailored to customer needs. The company had been designing and manufacturing numerous load frames equipped with custom software and basic control functions to meet mechanical testing requirements, but it gradually became clear that both the software and control devices lacked flexibility and ease of use. In search of more flexible and user-friendly testing software, the company decided in 2008 to collaborate with MTS and began the transition to the MTS TestSuite software platform. They also decided to switch the control devices to the next-generation FlexTest digital controller. After implementation, they quickly utilized MTS TestSuite for the design and execution of ship deceleration tests involving contact with fenders, completing what was initially planned to take one month in just two days. For more details, please contact us or refer to the catalog.

  • Testing Equipment and Devices

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