Showing posts with label micro-structured. Show all posts
Showing posts with label micro-structured. Show all posts

Thursday, February 23, 2012

Smart paint uses Fly Ash to revolutionize structural safety - Scottish Research

Dr. Mohamed Saafi, University of Strathclyde. Credit: University of Strathclyde

An innovative low-cost smart paint that can detect microscopic faults in wind turbines, mines and bridges before structural damage occurs is being developed by researchers at the University of Strathclyde in Glasgow, Scotland.

The environmentally-friendly paint uses nanotechnology to detect movement in large structures, and could shape the future of safety monitoring.

Traditional methods of assessing large structures are complex, time consuming and use expensive instrumentation, with costs spiraling into millions of pounds each year.

However, the smart paint costs just a fraction of the cost and can be simply sprayed onto any surface, with electrodes attached to detect structural damage long before failure occurs.

Dr Mohamed Saafi, of the Strathclyde University's Department of Civil Engineering, said: "The development of this smart paint technology could have far-reaching implications for the way we monitor the safety of large structures all over the world.

"There are no limitations as to where it could be used and the low-cost nature gives it a significant advantage over the current options available in the industry. The process of producing and applying the paint also gives it an advantage as no expertise is required and monitoring itself is straightforward."

The paint is formed using a recycled waste product known as fly ash and highly aligned carbon nanotubes. When mixed it has a cement-like property which makes it particularly useful in harsh environments.

Dr Saafi explained: "The process of monitoring involves in effect a wireless sensor network. The paint is interfaced with wireless communication nodes with power harvesting and warning capability to remotely detect any unseen damage such as micro-cracks in a wind turbine concrete foundation.

"Wind turbine foundations are currently being monitored through visual inspections. The developed paint with the wireless monitoring system would significantly reduce the maintenance costs and improve the safety of these large structures.

"Current technology is restricted to looking at specific areas of a structure at any given time, however, smart paint covers the whole structure which is particularly useful to maximise the opportunity of preventing significant damage."

The research has been carried out at Strathclyde with Dr Saafi working alongside David McGahon, who initiated the work as part of his PhD project.

With fly ash being the main material used to make the paint, it costs just one percent of the alternative widely used inspection methods.

A prototype has been developed and tests have shown the paint to be highly effective. It is hoped further tests will be carried out in Glasgow in the near future.

Dr Saafi added: "We are able to carry out the end-to-end process at the University and we are hoping that we can now demonstrate its effectiveness on a large structure.

"The properties of the fly ash give the paint a durability that will allow it to be used in any environment which will be a massive advantage in areas where the weather can make safety monitoring particularly difficult.

"The smart paint represents a significant development and is one that has possibly been overlooked as a viable solution because research tends to focus on high-tech options that look to eliminate human control. Our research shows that by maintaining the human element the costs can be vastly reduced without an impact on effectiveness."

Thursday, November 10, 2011

Honda Microcommuter Concept: Can it outsmart the Smart


Honda's Micro Commuter Concept EV has heads-up display, social networking, advanced aerodynamics, seating for three (1+2 like the T25 and T27 city cars), luggage capacity, a customizable exterior and a fold-up electric bike for last mile transport.

Honda's Micro Commuter Concept looks like it will take the basic design Micro Car design and update it to the world of today, with advanced aerodynamics, seating for three (1+2), luggage capacity, a customizable exterior and last mile transport in the form of an ingenious fold-up electric two-wheeler known as the Motor Compo.


Very little has been revealed by Honda in its pre Tokyo Motor Show press release, but the electric city commuter vehicle looks like a winner from the get-go.

Studying the photos released with the press blurb suggests that the Micro Commuter Concept has seen plenty of time inside a wind tunnel to optimise its aerodynamics for the low to medium speed range of urban roads.


The relationship between the compact, fold-up Motor Compo electric two-wheeler is not clear as yet, but one of the very few indications of the functionality of the two-wheeler in the press releases states it to be a "compact EV commuter which offers the casual and convenient mobility of a two-wheeler, but also strives to be useful even when it's not being ridden.

This model can be loaded into the Micro Commuter Concept, with the battery that drives this commuter detachable and designed to be used as a power source in everyday life."

The Micro Commuter Concept and Motor Compo are just two of seven concepts to be shown in Tokyo, but Honda clearly has the concept of last mile transport still firmly in its mind.

It may be difficult for Americans living in cities with a lot of space to comprehend the problems faced by other city dwellers around the world, but as urban roads become more crowded, the distance between where you park and your final destination is set to become a significant part of the daily commute.

Read the full article here

Tuesday, July 12, 2011

Micro Air Vehicles - AVs

Dr Gregory Parker, Micro Air Vehicle team leader, holds a small winged drone that resembles a dragonfly at Wright Patterson Air Force Base in Dayton, Ohio.

The Micro Air Vehicles unit of the Air Force Research Laboratory at Wright Patterson AFB is developing small military drones, with the goal of making them so small that they resemble small birds and insects, including some that will have moving wings.

Picture: REUTERS

Monday, September 13, 2010

Transparent Winged Butterfly - Chorinea Faunus

Chorinea faunus, a transparent winged butter from Satipo, Peru, is shown on a large array of micro-structured elastomeric pressure sensors. New artificial 'skin' fashioned out of flexible semiconductor materials can sense touch, making it possible to create robots with a grip delicate enough to hold an egg, yet strong enough to grasp the frying pan, US researchers said

Chorinea faunus, a transparent winged butterfly from Satipo, Peru, is shown on a large array of micro-structured elastomeric pressure sensors.

New artificial "skin" fashioned out of flexible semiconductor materials can sense touch, making it possible to create robots with a grip delicate enough to hold an egg, yet strong enough to grasp the frying pan, US researchers said