All Categories

History

Compact universal material testing system μTS-ΜTS-100N
Compact universal material testing system μTS-Laser Measurement Co., Ltd.

Compact universal material testing system μTS
Laser Measurement Co., Ltd.

Laser Measurement Co., Ltd.'s Response Status

Response Rate

100.0%

Response Time

7.2hours

Fast Response


About This Product

■Summary

The μTS is a compact universal materials testing system that uniquely operates on length scales between nanoindenters and macrouniversal load frames. The combination of digital image correlation (DIC) and optical microscopy allows nanolength scale studies to be performed.

■Technology

μTS uniquely accommodates multiple scales of length, velocity, and force. ·length μTS, which constrains out-of-plane motion, effectively enables high-magnification digital image correlation despite the depth-of-field limitations of optical microscopy. ·speed Direct drive ball screw actuators cover nine orders of magnitude of speed. This allows effective load control, rate-dependent studies, creep or stress relaxation testing. ·force Proprietary ultra-high resolution sensor technology provides 100x higher performance compared to traditional strain gauges.

■Features

The main challenge in material testing under optical microscopy is out-of-plane specimen deflection. A small depth of field is required to obtain a displacement field resolution of 25 nm. A few microns of out-of-plane motion defocuses the image. The μTS is designed to keep the sample flat during testing, resulting in a sophisticated instrument suitable for: ・Verification of continuum model of finite element analysis by multi-scale testing ・Miniature sample testing to facilitate the development of materials with limited quantities ・Unprecedented versatility allowing implementation of new experimental techniques

■Verification of continuum model

μTS is a tool for validating continuum models across six length scales. Image correlation methods and optimized optical microscopy allow the observation of maximum displacement fields down to 0.1 pixel resolution during mechanical testing. This means that depending on the camera resolution, up to 25nm resolution in the displacement field and 0.01% resolution in the strain field can be analyzed.

■Miniature sample test

In research and development of new materials, sample yields may be too small to generate full-scale American Society for Testing and Materials (ASTM) samples. μTS uses image correlation local strain measurements to perform accurate tests even on very small samples, providing high-quality data even when available materials are limited.

  • Product

    Compact universal material testing system μTS

Share this product


20+ people viewing

Last viewed: 11 hours ago


Free
Get started with our free quotation service - no cost, no obligation.

No Phone Required
We respect your privacy. You can receive quotes without sharing your phone number.

1 Models of Compact universal material testing system μTS

Image Part Number Price (excluding tax) Mass (kg) Load capacity Minimum rate (nm/s) Maximum acceleration (m/s2) Maximum rate (mm/s) Power required Control loop (Hz) Resolution Positioning control (nm) Stroke (mm) Size LxWxH (mm)
Compact universal material testing system μTS-Part Number-ΜTS-100N

ΜTS-100N

Available upon quote

1.3-2.2

100N

12

10

160

120/240V@50/60Hz

1.6MHz (current), 16KHz (speed), 8KHz (position), 500Hz (outside)

50μN

<5

27

220x100x54

Customers who viewed this product also viewed

Reviews shown here are reviews of companies.

See More Universal Testers Products

Other products of Laser Measurement Co., Ltd.

Reviews shown here are reviews of companies.


View more products of Laser Measurement Co., Ltd.

About Company Handling This Product

Response Rate

100.0%


Response Time

7.2hrs

  • Japan

This is the version of our website addressed to speakers of English in the United States. If you are a resident of another country, please select the appropriate version of Metoree for your country in the drop-down menu.

Copyright © 2024 Metoree