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Micro Materials
Micro Materials Micro Materials

英國Micro Materials ?
英國Micro Materials成立于1988年.采用英國Micro Materials公司生產(chǎn)的Nano Test 600型納米多功能測試儀,對電熱爆炸噴涂方法制備的FeAl、FeCrAl、FeCrAlRE 3種電爆噴涂層,進行力學性能測試,通過3種涂層加卸載曲線的對比,以及每種涂層的硬度、彈性模量的測取,分析鐵基3種電爆噴涂層的力學性能及涂層表面規(guī)律,從而優(yōu)化電爆噴涂工藝參數(shù).




Micro Materials Ltd are based in Wrexham, UK, which is located approximately one hour from the cities of Manchester and Liverpool.

We provide innovative, versatile nanomechanical test instrumentation, and respond to developments in applications in response to customer and market requirements. The integrity, reliability and accuracy of our equipment is paramount, as is our relationship with our users.

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History
MML was established in 1988, with the aim of becoming the world leader in the development, manufacture and marketing of nanomechanical testing instruments for research and quality assurance.

The modern day NanoTestTM is a highly evolved system, which employs a unique pendulum system which is based on a prototype which was first developed at the University of Lancaster, UK.

Research and Development programs over the lifetime of the company have seen the NanoTestTM evolve into the current, fully-automated, highly versatile instrument it is today.

At Micro Materials, our highly specialised scientists and engineers take particular pride in their ability to solve complex problems related to specific customer needs and applications.

This responsive and flexible approach has earned us an enviable reputation for strong customer relations and for products designed to satisfy our customers' requirements.

Our pioneering approach has led to three recent world-firsts:

The first commercial nanoscale impact tester, for erosive wear, toughness and contact fatigue.
The first commercial high temperature nanoindentation stage, capable of reaching temperatures up to 750°C
The first liquid cell, allowing the testing of samples which are fully immersed in a fluid
User Profiles
Today, the NanoTestTM System is used throughout the world for quantitative nano-scale materials characterisation. Click here for a selection of our partner sites.
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