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[国外] 日研发出可导电橡胶 可用于造电子皮肤

本主题由 sally208 于 2008-8-13 08:19 设置高亮

日研发出可导电橡胶 可用于造电子皮肤

来源:中新网 发布时间:2008-8-12 14:11:2

日研发出可导电橡胶 可用于造电子皮肤

日本研究人员8月12日表示,他们已经研发出一种可以导电的橡胶,这项研发结果将来可以做成覆盖在机器人身上的可伸缩的电子皮肤e-skin,可以感觉热和压力。

据“中央社”报道,东京大学表示,这是全世界首次解决金属所面临能导电但无法伸展问题的材料;一般橡胶几乎都无法导电。

东京大学工学部教授染谷隆夫表示,这项新科技材料和普通橡胶一样具有弹性,但导电性能却是含有碳化物粒子的商用橡胶的570倍。

这项产品如果被用在金属线路上,可以成为有弹性的集成电路,可以将原来的尺寸拉大到一点七倍,缠绕在弯曲的表面上,不会造成机械伤害或是导电性能的重大改变。

其中一项应用技术就是用来做机器人的人工皮肤。团队成员表示,随着机器人开始进入我们的日常生活,他们全身上下必须要有像人类一样的感应器。

他说:“试想,当机器人照顾一个小婴儿时,他必须要能感觉婴儿的体温、热和压力,就像普通人一样,否则就很危险。”

更多阅读

《自然》:神奇“自愈合”橡胶切断后可重接

我国研制出新型稀土异戊橡胶 属国内首创



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  • asymmsyn 在2008-8-13 08:36 评分: 金币 +3 原因: 感谢分享 再接再厉
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Carbon nanotube rubber could provide e-skin for robots

(Nanowerk News) Japanese researchers say they have developed a rubber that is able to conduct electricity well, paving the way for robots with stretchable "e-skin" that can feel heat and pressure like humans.
The material is the first in the world to solve the problems faced by metals – which are conductive but do not stretch – and rubber, which hardly transmits electricity, according to the team at the University of Tokyo.
The new technology is flexible like ordinary rubber but boasts conductivity some 570 times as high as commercially available rubbers filled with carbon particles, said the team led by Takao Someya at the university's School of Engineering.
Japan's Tokyo University researcher Tsuyoshi Sekitani displays an elastic sheet containing carbon nano tubes which conduct electricity at his laboratory in Tokyo. (Image: AFP/Yoshikazu Tsuno)
If used as wiring, the material can make elastic integrated circuits (ICs), which can be stretched to up to 1.7 times their original size and mounted on curved surfaces with no mechanical damage or major change in conductivity.
One application of the material would be artificial skin on robots, said Tsuyoshi Sekitani, a research associate in the team.
"As robots enter our everyday life, they need to have sensors everywhere on their bodies like humans," he told AFP.
"Imagine they bump into babies. Robots need to feel temperatures, heat and pressure like we do to co-exist. Otherwise it would be dangerous," he said.
The material itself can be stretched up to 2.3 times the original size but conductivity drops roughly by half at the maximum extension.
It can be stretched by 38 percent with no significant change in conductivity -- still a breakthrough considering that metal wires break on strains of one to two percent, the team said.
The material is made by grinding carbon nanotubes, or tube-shaped carbon molecules, with an ionic liquid and adding it to rubber.
Carbon nanotubes often bunch up together but the millimetre-long tubes coupled with the ionic liquid can be uniformly dispersed in rubber to realise both high conductivity and flexibility.
Sekitani said the new material could be used on the surface of steering wheels, which would analyse perspiration, body temperature and other data of the driver and judge whether he or she is fit enough to drive.
"It could be completely integrated into the normal driving system, making users unaware of using it," he said.
Or it could be used on top of a mattress for bed-ridden people, watching if some parts of the body were under constant pressure and tilting the bed to change the patient's posture to prevent bedsores, Sekitani said.
"Objects that come into contact with humans are often not square or flat. We believe interfaces between humans and electronics should be soft," he said.
The material could also give birth to a stretchable display, allowing people to take out a tiny sheet and stretch it to watch television.
The team aims to put the elastic conductor to practical use in several years, Sekitani said.
"We can't rule out the possibility of using this in living bodies but we're sticking to using it in electronics," Sekitani added.
Source: AFP


[ 本帖最后由 sally208 于 2008-8-13 08:18 编辑 ]

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