6.4.10

Printable Sensors for Cell Phones and Other Devices?


ScienceDaily (Mar. 31, 2010) — The cellphone is switched off but immediately springs into action at the point of a finger. It is not necessary to touch the display. This touchless control is made possible by a polymer sensor affixed to the cellphone which, like human skin, reacts to the tiniest fluctuations in temperature and differences in pressure and recognizes the finger as it approaches.
The sensor recognizes the finger's heat signal without being touched. (Credit: Copyright image/Joanneum Research Forschungsgesellschaft mbH)

(Submitted by Alex Ross)

Plastic Electronics Could Slash the Cost of Solar Panels

A new technique developed by Princeton University engineers for producing electricity-conducting plastics could dramatically lower the cost of manufacturing solar panels.
(Submitted by Alex Ross)

Chemists Create Self-assembling Conductive Rubber

Polymer chemists have created a flexible, indestructible material, called metal rubber, that can be heated, frozen, washed or doused with jet fuel, and still retain its electricity-conducting properties. To make metal rubber, chemists and engineers use a process called self-assembly. The material is repeatedly dipped into positively charged and negatively charged solutions. The positive and negative charges bond, forming layers that conduct electricity. Uses of metal rubber include bendy, electrically charged aircraft wings, artificial muscles and wearable computers.
(Submitted by Alex Ross)

moldable, adhesive, self curing silicon.

This is a mold-able silicon developed by an art student to repair and customize existing products.
(Submitted by Alex Ross)

Mini Generators Make Energy from Random Ambient Vibrations

Tiny generators developed at the University of Michigan could produce enough electricity from random, ambient vibrations to power a wristwatch, pacemaker or wireless sensor.
(submitted by Alex Ross)

Making Car fuel and Plastic from carbon dioxide

ScienceDaily (Mar. 29, 2010) — Researchers from the South West are working on a £1.4 million project that could take carbon dioxide from the air and turn it into car fuel.

The project aims to develop porous materials that can absorb the gas that causes global warming and convert it into chemicals that can be used to make car fuel or plastics in a process powered by renewable solar energy.

The researchers hope that in the future the porous materials could be used to line factory chimneys to take carbon dioxide pollutants from the air, reducing the effects of climate change.

(Submitted by Alex Ross)

29.3.10


Rotterdam Cube Houses as Stayokay Hostel

From Stayokay, the famous Kubuswoningen, designed by Dutch architect Piet Blom in the 1980's, are now a hotel. In December 2009 the Cube Houses became the most modern of Rotterdam's listed buildings. The new Stayokay Rotterdam hostel officially opened March 24th.

from M.Claiborne

The Perfect Machine by Lance Letscher



Cubes and collage are the name of the game, or rather, the Perfect Machine, as far as Lance Letscher is concerned. Themes of technology, locomotion and the creative impulse fuel the latest collages and sculptures by this artist who combines record covers, pages from books and other paper cast-offs into colourful pieces of art. Guns, walking feet and a festive looking cycle are among the collaged items that take their place among Letscher's recent work.

Artist: Lance Letscher
+ dbermangallery.com

From M.Claiborne

Bowery FMX Bike by Giant

Via @uncrate, cross between a traditional track racer and a BMX bike, the Giant Bowery FMX Bike is a mix of the old and the new. "It features a lightweight ALUXX aluminum frame, a BMX custom 'no rail' saddle, a CroMo 3-piece tubular crankset, alloy high-rise handlebars, and the ability to go fixie or freewheel."

From M.Claiborne

17.3.10

3-D Printing Whole Buildings in Stone...in Space: This Printer Rocks

In Pisa, Italy, mad genius Enrico Dini is building sandcastles on the moon. His giant 3-D printer is the first of its kind with the potential to print whole buildings, and it makes them out of solid rock, cutting down a thousand-year-long process into a few minutes. It uses sand, but someday it'll use moon dust.

The machine, called D-Shape, sprays a thin layer of sand with a magnesium-based glue from hundreds of nozzles--its resolution is about 25 dpi, not bad for printing on this scale. The glue binds the sand into solid rock, which builds up, layer after layer, into a sculpture, or a piece of furniture or, someday, into a cathedral. "What I really want to do is to use the machine to complete the Sagrada Familia," Dini says. Okay, it seems a little crazy, but not much.

Dini claims the d-shape process is four times faster than conventional building, costs a third to a half as much as using Portland cement, creates little waste and is better for the environment. But its chief selling point may simply be that it makes creating Gaudiesque, curvy structures simple.

It's not enough for D-Shape to be the missing link between the tiny 3-D printers of today, which never really caught on beyond gimmicky jewelry and model-making, and bigger printers capable of making full-size structures. No, Dini wants the moon. As part of the European Space Agency's Aurora program, he's talking with La Scuola Normale Superiore, Alta Space, and Norman Foster to modify D-Shape to build with moon dust. Voila: instant moonbase.

By Ian Kempton

Shape-shifting polymer pulls off amazing memory tricks

CALL it the yoga polymer: Nafion, a material used in some fuel cells, has an unrivalled memory for contortions.

Tao Xie at General Motors in Warren, Michigan, has twisted and stretched a Nafion strip into three distinct shapes, and found that it will revert to each shape at the appropriate temperature.

Nafion becomes softer as it is heated. At 140 °C Xie stretched it into a particular shape, which was locked in the polymer's "memory" as it cooled to 107 °C and stiffened. Stretching and cooling it twice more allowed two other shapes to be memorised, so that when heated to the appropriate temperature the Nafion formed the corresponding shape (Nature, DOI: 10.1038/nature08863).

Previously the best shape-memory polymers were able to remember only two shapes.

By Ian Kempton

1.3.10

Funky Chair




Another wacky clear chair. Ron Arad calls it the "Well transparent Chair." It's well strange and probably well expensive too. Made from bent plastic sheets; the sitting surface gives a bit so it's probably not as uncomfortable as it looks.

-Rob Todd