Welcome to our new Instron Community Blog hosted by Instron. It is a compilation of the freshest, brightest, most-talented minds that Instron has to offer. The world of materials science is so vast and encompasses the broadest range of industries, materials, and challenges that no one person can possibly possess all the knowledge required to be the resident expert – or master of materials science. It takes a small army behind the scenes collaborating and sharing technical know-how, experiences, and ideas to present the most accurate, relevant, and timely information to you – our readers.

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Tuesday, March 25, 2014

4-Point Bend Testing of Carbon Fiber


Carbon fiber is an extremely strong material. Depending on the manufacturing process, this textile can have typical modulus values of about 138 Gpa and ultimate tensile strengths of about 3.5 Gpa. Industry professionals can find themselves seeking to replace traditional steel components with lighter carbon fiber counterparts to achieve a much higher stiffness to weight ratio. To determine the appropriate thickness for the corresponding carbon component, one must undergo some experimental validation.

 In a recent test, an ElectroPuls E3000 was fitted with a 5kN Dynacell™ load cell and a 4-point bend fixture. Once aligned, the upper and lower spans of the 4-point bend fixture were set to 30mm and 100mm respectively. For this sample, a cyclic load-controlled test was conducted with a mean load of 110N of compression and an R value of 0.1 (equivalent to a 90N amplitude). The cyclic loading was carried out at 10Hz for 2 million cycles, which was expected to last around 55 hours. The maximum deflection of the carbon fiber specimen was collected for every 1000 cycles with WaveMatrix™ software.

All ElectroPuls systems are fitted with an optical encoder for precise extension control. This allows for accurate displacement measurement readings of the carbon fiber specimen of up to one micron of a millimeter over the course of the entire 2 million cycles. The resultant displacement of the carbon fiber specimen is acquired by the 8800 controller at a rate of up to 5kHz. WaveMatrix™ software conveniently allows users to specify exactly which data is saved and at what frequency. For this test, a higher data acquisition rate was used during the first few hundred cycles. Thereafter, every 1000 cycles was recorded and exported in the form of an easy to read Microsoft Excel file. From this, researchers can then determine the overall changes in displacement of the carbon fiber over the entire 2 million cycles, and whether or not the material properties of the specimen suit a particular application.
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Monday, March 17, 2014

Changes Pipe & Tube Manufacturers and Suppliers Should Know

 
David Fry, Global Metals Market Manager, highlights recent changes in the market and what challenges should be anticipated.

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Friday, March 7, 2014

Charpy Impact Testing: Minimizing Hammer Changes


A common misconception within metals Charpy testing is that the specimen being tested must have an impact energy between 10% and 80% of the hammer capacity to be a standard compliant test. This is not true for metals tested to current common international standards such as ISO 148 and ASTM E23. This misconception sometimes comes from confusion with plastics standards (see ISO 179-1), other older metals standards (see GOST 9454-78), and historical use of a low resolution dial indicator on metals pendulum systems. Due to these misunderstandings, labs often have multiple systems or hammers for testing a range of specimen energies.

With the release of Instron’s latest MPX Motorized Pendulum Impact Testing System, we wanted to remove the need to swap hammers or have multiple systems in one lab. In order to achieve this, we had to address two areas: the resolution of the device and the method for changing hammer energies (weight).


The resolution of the latest encoder has been improved fourfold compared to the previous model. This enables the MPX to achieve a far lower resolution that had previously been possible with dial indicators or its digital predecessors. The MPX encoder delivers a resolution of 0.023J on a 450J system, this is compared to about 1-0.5J resolution on a dial indicator. This improved resolution translates to a usable limit down to 0.6 J to ASTM E23, the dial on the other hand has between 12.5J and 25J.

For more information, please visit our website.
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Tuesday, February 25, 2014

Software Module Increases Test Frequency for Fatigue Testing of Composites and Polymers


Senior Applications Specialist for Dynamic Systems, Peter Bailey shares with AZoM how the Specimen Self-Heating Control (SSHC) module to WaveMatrix™ Materials Testing Software can enhance fatigue testing of composites and polymers.

SSHC optimizes test frequency by maintaining consistent specimen temperature and reducing energy with shorter test durations, promoting increased throughput and consistency.

Visit AZoM to view the full article.


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Thursday, February 20, 2014

Going Global: Instron TERM Meets with Researchers Around the World!


The past several months have had Instron TERM circling the globe. We have attended conferences in Canada, China, South Korea, and the United States. We have been speaking with premier researchers, physicians, and industry leaders in the field of regenerative medicine and introducing Instron’s newest instrument solutions for this application.  We have had the pleasure of demonstrating both electromechanical and dynamic instruments in combination with bioreactors, receiving a great deal of interest in these combination solutions.

In Asia, we have learned that they are building tissue engineering labs for multiple tissue types and, as a result, researchers have a broad interest. This broad interest means an interest in all of Instron's instruments and solutions. These labs are aggressively building capabilities with short timelines to deliver regenerative medicine therapies to the population in quick order.
 

TERMIS AP: Wuzhen, China
In the United States, most researchers are focused on a specific tissue type; however, they still have an interest across the Instron instrument platform, especially for bone and ligament research applications.
 
TERMIS NA: Atlanta, GA United States
 The biggest takeaway was that there is a vibrant TERM research market happening around the world!


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Wednesday, February 12, 2014

Instron Drop Tower Showcased at 27th International Colloquium on Plastics Technology in Germany


Since 2011, the Institute of Plastics Processing (IKV) at RWTH Aachen University has been using a CEAST 9350 Drop Tower supplied by Instron Deutschland GmbH for its research activities. Visitors to the 27th International Colloquium on Plastics Technology in Aachen, Germany will be able to see the drop tower in action when presented by IKV March 19—20 .

With more than 700 visitors expected to attend and more than 50 exhibitors, the Colloquium is a major meeting point for innovative organizations from the plastics sector, providing them with fresh momentum for their work through exchange of ideas with experts from IKV and its network. At "IKV 360°" the Institute will present highlights of its work and open its laboratories for live demonstrations and discussions with its visitors while the systems are running.

http://www.ikv-kolloquium.de/en.html
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Thursday, February 6, 2014

Major Platform Extensions to Bluehill® 3


This is a release we and many of our customers have been waiting for. With release 3.51, lab managers can finally standardize on Bluehill® 3 for all their static tests across all our current static (ElectromechanicalStatic Hydraulic) and dynamic testing machines (Servo Hydraulic and ElectroPuls systems). Starting with 3.51, Bluehill® 3 can also be used to set up and run torsion tests on the MT Torsion line of testers. Apart from the platform extensions, this release also has some nice enhancements geared towards high temperature applications and metals testing.


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