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The George E. Brown Jr. Network for Earthquake Engineering Simulation (NEES) connects 14 earthquake research facilities across the United States through NEEShub, a user-demand-driven cyber infrastructure. A key challenge for NEES is the efficient maintenance and operation of mechanical testing and simulation testing systems used at member institutions. Efficient routine maintenance and calibration of testing systems are essential to consistently maintain high levels of testing accuracy and system uptime. In 2005, MTS launched a comprehensive support program for member institutions that utilize MTS technology for seismic testing and simulation. The MTS Hydraulix program regularly monitors the cleanliness of the hydraulic fluid in testing systems as a means to prevent significant and costly mechanical issues in the future. MTS's certified calibration and adjustment services contribute to maintaining the precision of equipment and the integrity of test data at exceptionally high levels. For more details, please contact us or refer to the catalog.
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On June 7, 2008, the Applied Mechanics Lab of Cummins Inc., headquartered in Columbus, Indiana, suffered damage from flooding. Cummins is a global leader in the design and production of diesel engines and related technologies, offering a wide range of products from 3.3L small engines to high-power 78L large engines. The fatigue evaluation tests for engine components conducted in this lab have long utilized MTS application software, load frames, control systems, actuators, and hydraulic supply systems, but the flooding completely devastated the load frames, control devices, and hydraulic systems. In response to the recovery efforts, MTS service representatives acted very quickly from the start, swiftly identifying which equipment could be repaired and which needed replacement, and provided guidance on how to restart and resume operations in the shortest possible time. As a result, 13 MTS load frames were repaired and restored to like-new performance. For more details, please contact us or refer to the catalog.
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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.
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MTS has been providing reliable testing machines and services as a trusted partner to the world's top automotive manufacturers and suppliers for over 40 years. The reason our testing solutions are trusted and continuously chosen is their wide applicability, accommodating everything from small vehicle parts and suspension components to extremely large items such as trucks and railway vehicles. 【Benefits of Implementation】 ● Reduction of product development time ● Decrease in quality assurance costs ● Accurate verification and prediction of product performance ■□━━━━━━━━━━━━━━━━━・・・・・‥‥‥……… For more details, please download our catalog or feel free to contact us. ■□━━━━━━━━━━━━━━━━━・・・・・‥‥‥………
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MTS is being sought by automotive manufacturers and suppliers around the world for next-generation testing technologies and specialized support necessary for the design and development of more efficient and high-performance passenger cars, commercial vehicles, and RVs. Whether it is testing materials, components, subsystems, or complete vehicles, MTS collaborates with customers to help achieve goals with greater speed and confidence. Please check how we can optimize the accuracy and efficiency of the mechanical testing process. For specific examples and details, please refer to the catalog or feel free to contact us.
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A test rig used for fatigue durability testing of all vehicles, which reproduces the loads and moments applied to the vehicle's suspension through the wheel spindle in a laboratory setting.
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Significantly improve experimental efficiency in vibration testing of hybrid and electric vehicle battery packs, achieving "quality improvement" and "reduction of testing costs"!! Designed to target simulation testing of automotive parts and subsystems in the high-frequency range up to 200Hz. It enables durability testing using time history data, as well as extensive vibration and noise testing for vehicles. 【Contents】 ○ Process for implementation ○ What is a vehicle load simulation testing system and multi-axis simulation table? ○ Effects and benefits of implementation ○ Future product development ■□━━━━━━━━━━━━━━━━━・・・・・‥‥‥……… For more details, please download the case study from the Pan Asia Automobile Technology Center (PAATC) or feel free to contact us. ・・・・・‥‥‥……… ━━━━━━━━━━━━━━━━━■□
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It is used to measure the steady-state and dynamic force characteristics and moment characteristics of tires in general automobiles. A wide range of tests can be conducted without worrying about inaccuracies caused by road surfaces with curvature common to rotating drum tire testing systems.
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It is used to evaluate the motion characteristics of vehicle suspension and its compatibility with the vehicle, measuring the deviation characteristics of vehicle suspension properties. ■□■Features■□■ ■Measures the six forces at the wheel motion and tire contact surface ■Imparts six-axis motion to each wheel of the test vehicle up to 35Hz, accurately measuring input load and wheel displacement ■Body inertia moment measurement (optional) For more details, please contact us.
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We provide testing solutions to verify the performance and durability of suspension components such as springs, control arms, struts and dampers, stabilizers, and air springs. We promise to help you choose the best approach tailored to your unique environment. (For more details, please contact us via the catalog download.)
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We propose a cost-effective testing solution to verify the performance and durability of the power steering system, steering shaft, steering pump, and steering knuckle. We promise the best approach tailored to your unique environment. (For details, please contact us via the catalog download.)
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We provide cost-effective testing solutions to verify the performance and durability of drivetrain components such as CV joints, clutches, and drive shafts. We promise that you will achieve the best approach for your unique environment.
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We propose the optimal testing solution for verifying the performance and durability of subframe bushings, suspension bushings, and engine mounts. (For more details, please contact us through the catalog download.)
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We propose the best testing solutions for verifying the performance and durability of welded joints in catalytic converters, flexible coupling pipes, mounting brackets, and muffler welds. (For details, please contact us via the catalog download.)
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MTS collaborates with suppliers to develop testing solutions to verify the performance and durability of interior components such as seats and adjusters, seat belts, dashboards, and instrument panels. We promise to help you choose the best approach for your unique environment. (For more details, please contact us via the catalog download.)
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MTS provides products, services, and support necessary for the fatigue evaluation of railway joints, the deflection and displacement characteristics of bogies, wheel and rail contact surface testing, and the performance and durability verification of actual vehicles. For over 40 years, we have been assisting customers in improving the accuracy and efficiency of their development and testing programs, and our track record is proven. 【Features】 - Accurate management of railway component simulations - Long-term accurate operation over millions of cycles through fatigue evaluation design - The FlexTest digital control system raises standards for versatility and scalability - Compact and quiet, allowing installation anywhere in the testing lab - "Wall-mounted" design saves valuable installation space - A variety of grips and fixtures available in different sizes and configurations
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It is possible to accurately control mechanical distortion and thermal distortion in phase.
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It is used for high-cycle fatigue testing for long-term life prediction.
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It is specially designed for testing small specimens under micro loads (0.001 to 250N) and provides precise control for static and dynamic testing. With advanced linear servo motors and high-speed digital control, it achieves unparalleled speed, frequency, and strain ranges.
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Realization of efficiency and acceleration in high-quality test data collection, response to increasing testing demands, and enhancement of lab productivity.
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Achieving efficiency and acceleration in high-quality test data collection, responding to increasing testing demands, and enhancing laboratory productivity.
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This product is adopted by JAXA, the research and development organization responsible for Japan's aerospace development policy, and meets high standards in durability, strength, and reliability. For passenger aircraft, quality means safety, and our equipment helps ensure that the wings that allow flight operate safely. For more details, please contact us or download the catalog.
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It is a powerful software that integrates the vast control of test channels and extensive data collection capabilities seen in aircraft structural testing.
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Reproducing the seismic motion of the Hyogo Prefecture South Inland Earthquake, which recorded unprecedented seismic motion in history.
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Adopting high value-added latest digital control technology to achieve high cost performance.
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It will be possible to conduct multi-axial quasi-static cyclic tests, quasi-static/dynamic tests, and continuous dynamic tests on large test specimens that include beam-column structures, walls, bridge piers, abutments, and other structures/components. The vertical loading level is 5,900 kN, the horizontal loading level is 3,900 kN, and the maximum horizontal displacement is 406 mm. With an extremely high loading capacity, testing of structures until failure occurs on ultra-large test specimens will be realized in a way that has never been achieved before. There is no other vibration testing system capable of conducting such large-scale tests. ■□━━━━━━━━━━━━━━━━━・・・・・‥‥‥……… We have published actual 'case studies'! Take this opportunity to download and view the catalog. Alternatively, feel free to contact us. ■□━━━━━━━━━━━━━━━━━・・・・・‥‥‥………
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By using a hybrid simulation method that constructs structures with computer models and partial physical models, it is possible to capture the behavior of large structures such as buildings and bridges during an earthquake in a more complete manner without conducting tests on full-scale structures. This allows for an accurate and efficient understanding of the effects of partial structures, and it becomes possible to reproduce the loads and motions that they are likely to experience.
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This is a solution that corresponds to simulation tests and multi-axis load control tests for wind power generation turbines, turbine blades, hubs, drive systems, and bearing systems.
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It is possible to perform control that maintains a constant average principal stress on the test specimen, allowing for the acquisition of high-precision and highly reproducible data.
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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.
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Conduct high-precision and highly reproducible tests on biomaterials, orthopedic constructs, medical devices, medical transport containers, and consumables! A 12-station simulator that reproduces hip joint movements, loads, and walking environments during walking, with a configuration that can accommodate examples of all designs, allows for simulation results to be obtained in the shortest time possible by achieving a 1Hz walking cycle. *For more details, please contact us.
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