Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > Heriot-Watt's Institute of Photonics & Quantum Sciences uses the Deben Microtest 2 kN tensile stage to characterise ceramics and engineering plastics

Dr Peter Schemmel loads a sample into the Deben tensile stage for testing at Heriot-Watt University.
Dr Peter Schemmel loads a sample into the Deben tensile stage for testing at Heriot-Watt University.

Abstract:
Deben, a leading provider of in-situ testing stages together with innovative accessories and components for electron microscopy, reports on the use of a Microtest tensile stage in the Institute of Photonics & Quantum Sciences at Heriot-Watt University, Edinburgh. It is being used for stress analysis studies of ceramics and engineering plastics.

Heriot-Watt's Institute of Photonics & Quantum Sciences uses the Deben Microtest 2 kN tensile stage to characterise ceramics and engineering plastics

Woolpit, UK | Posted on January 21st, 2016

Dr Peter Schemmel is a postdoctoral researcher in Applied Photonics at Heriot-Watt University. He is part of the team at the Institute of Photonics and Quantum Sciences in a group which focuses on stress analysis in ceramics and engineering plastics. They are particularly interested in ceramic thermal barrier coatings used on aeroplane engine turbine blades or power generating turbines. Typically, the air around these blades is hotter than the melting point of the blades themselves. Therefore, they must be coated with a ceramic thermal barrier coating. These coatings degrade over time and must be replaced after a certain number of hours determined by the manufacturer and application. The group is studying ways to increase the useable lifetime of these coatings by understanding the stresses built up in the coatings during manufacture and over time in service.

A quantity known as the “stress optic coefficient,” is used to convert measured sample birefringence into stress distributions. Each material has a different coefficient, which can depend on several factors. Some things that can alter the stress optic coefficient of a material include the frequency of the radiation used in the test, the manufacturing methods, material density and atomic structure. This list is not exhaustive. Part of the research tries to understand how the stress optic coefficient of a material can change.

Dr Schemmel describes how he applies the Deben 2 kN tensile stage: “In order to find the stress optic coefficient of a material, we must measure the birefringence whilst a known stress is applied to the sample. Deben’s tensile stage is indispensable to this operation. Constant loads can be applied to the sample, over the course of each birefringence measurement. Such measurements take around ten minutes. If the stress on the sample changes during this time, the measurement is invalid. Without the Deben tensile stage, we would not be able to accurately calibrate our materials.”

The benefits of the stage are fourfold. Dr Schemmel continues: “Firstly, it is small. We required a small stage to sit on our optical bench, inside an anechoic chamber. Secondly, Deben was able to machine a specifically sized window in the back of our tensile stage so that we could pass our GHz - THz beam through the sample under test. Thirdly, and most importantly, the Deben system allows us to control the applied load with great finesse. We are able to maintain a constant load on each sample during the birefringence measurement period, which is critical to achieve accurate results. Finally, the system is extremely easy to operate. It is really a “plug-and-play-system,” which allows us to be more productive.”

Research in the group applying the stage is moving rapidly with the first publication due shortly. This will show interesting results on the stress optic coefficient of YTZP ceramic and PTFE plastic. It was found that the stress optic coefficient of some materials can depend on sample preparation variables, e.g. cutting specimens parallel or perpendicular to the extrusion direction.

To obtain full details of the Deben applications and product portfolio, please visit www.deben.co.uk.

####

About Deben
Deben are a UK precision engineering company specialising in the field of in-situ tensile testing, motion control and specimen cooling for microscopy applications. Established in 1986 and named after a Suffolk river, Deben now operate from a large, modern business unit in Woolpit near Bury St. Edmunds in Suffolk. The product groups are motor control systems, in-situ micro-tensile stages, Peltier heating & cooling stages, detectors for SEMs and electro-static beam blankers. The company also makes custom and OEM versions of these products to specifically meet customer requirements.

Deben provide consultancy, design and prototype manufacturing services. In house facilities include SolidWorks and SolidEdge 3D CAD and COSMOS finite element analysis software, CNC machining, electronics design and manufacture and software design using Visual C++, Microsoft.net and DirectX. Utilising these resources and experience, Deben manufacture products for OEMs and end users in the UK and overseas.

Deben UK Ltd. is a subsidiary company of UK based Judges Scientific plc.

For more information, please click here

Contacts:
Deben UK Limited
Brickfields Business Park
Old Stowmarket Road
Woolpit, Bury St Edmunds
Suffolk IP30 9QS, UK
T +44 (0)1359 244870
F +44 (0)1359 244879
www.deben.co.uk


Talking Science Limited
39 de Bohun Court
Saffron Walden
Essex CB10 2BA

T +44(0)1799 521881
M +44(0)7843 012997
www.talking-science.com

Copyright © Deben

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related News Press

Imaging

New material to make next generation of electronics faster and more efficient With the increase of new technology and artificial intelligence, the demand for efficient and powerful semiconductors continues to grow November 8th, 2024

News and information

Beyond wires: Bubble technology powers next-generation electronics:New laser-based bubble printing technique creates ultra-flexible liquid metal circuits November 8th, 2024

Nanoparticle bursts over the Amazon rainforest: Rainfall induces bursts of natural nanoparticles that can form clouds and further precipitation over the Amazon rainforest November 8th, 2024

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Academic/Education

Rice University launches Rice Synthetic Biology Institute to improve lives January 12th, 2024

Multi-institution, $4.6 million NSF grant to fund nanotechnology training September 9th, 2022

National Space Society Helps Fund Expanding Frontier’s Brownsville Summer Entrepreneur Academy: National Space Society and Club for the Future to Support Youth Development Program in South Texas June 24th, 2022

How a physicist aims to reduce the noise in quantum computing: NAU assistant professor Ryan Behunin received an NSF CAREER grant to study how to reduce the noise produced in the process of quantum computing, which will make it better and more practical April 1st, 2022

Announcements

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Turning up the signal November 8th, 2024

Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024

Tools

New material to make next generation of electronics faster and more efficient With the increase of new technology and artificial intelligence, the demand for efficient and powerful semiconductors continues to grow November 8th, 2024

Turning up the signal November 8th, 2024

Quantum researchers cause controlled ‘wobble’ in the nucleus of a single atom September 13th, 2024

Faster than one pixel at a time – new imaging method for neutral atomic beam microscopes developed by Swansea researchers August 16th, 2024

New-Contracts/Sales/Customers

Bruker Light-Sheet Microscopes at Major Comprehensive Cancer Center: New Advanced Imaging Center Powered by Two MuVi and LCS SPIM Microscopes March 25th, 2021

Arrowhead Pharmaceuticals Announces Closing of Agreement with Takeda November 27th, 2020

Veeco Announces Aledia Order of 300mm MOCVD Equipment for microLED Displays: Propel™ Platform First 300mm System with EFEM Designed for Advanced Display Applications October 20th, 2020

GREENWAVES TECHNOLOGIES Announces Next Generation GAP9 Hearables Platform Using GLOBALFOUNDRIES 22FDX Solution October 16th, 2020

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project