• <abbr id="ck0wi"><source id="ck0wi"></source></abbr>
    <li id="ck0wi"></li>
  • <li id="ck0wi"><dl id="ck0wi"></dl></li><button id="ck0wi"><input id="ck0wi"></input></button>
  • <abbr id="ck0wi"></abbr>
  • <li id="ck0wi"><dl id="ck0wi"></dl></li>
  • Home >

    The United States Develops Fibers That Produce And Detect Sound Waves.

    2010/8/6 16:50:00 59

    U.S.A

    For hundreds of years,

    Man-made fiber

    Refers to the raw materials of clothes and ropes. In the information age, the meaning of fiber has become the glass filament carrying data in the communication network.

    But for Joel Fink, an associate professor of Electronics Research Laboratory at Massachusetts Institute of Technology, the fibers used in textiles or fibers are too passive.

    Over the past ten years, his laboratory has been working on developing more advanced fibers to enable fiber fabrics to interact with their surroundings.


    In a recent issue of the journal Nature and materials, Fink and his collaborators announced a landmark.

    New functional fiber

    A fiber that detects and produces sound.

    The application of this fiber includes: it can be made into clothes for microphone, can capture speech or monitor body function, or make a fine single filament that can measure blood flow or pressure in capillaries.


    New fiber contains asymmetric molecular plastic.


    The common optical fiber is made of "prefabricated". The pre - product is a large cylindrical single material that can be heated, drawn and cooled.

    In contrast, the fiber developed by Fink laboratory is a careful geometric arrangement of several different materials, enabling them to remain intact in heating and stretching processes.


    The core of the new acoustic fiber is commonly used in microphones.

    Plastic

    The fluorine content in this plastic enables researchers to ensure that their molecules are in an unbalanced state, that is, fluorine and hydrogen atoms are on one side, even during heating and stretching.

    The asymmetry of this molecule causes plastic to have "piezoelectricity", which means that when an electric field is applied to it, it will change its shape.


    In traditional piezoelectric microphones, the electric field is produced by metal electrodes.

    However, in a fiber microphone, the stretching process causes metal electrodes to lose their shape.

    Therefore, researchers substituted graphite conductive plastics.

    Conductive plastics will produce a dense liquid when heated, thus maintaining higher viscosity than metal electrodes.

    This not only prevents the material from mixing, but also more importantly, it also gives the fibers a normal thickness.


    After the fibers are stretched, the researchers need to arrange all the piezoelectric molecules in the same direction.

    At this point, a strong electric field (20 times stronger than the lightning induced lightning field) is needed.

    Because everywhere in the fiber is very narrow, it produces a tiny lightning ball that destroys the surrounding matter.


    Vocal fiber is widely used.


    Although this delicate balance is needed in the manufacturing process, researchers are able to produce this functional fiber in the laboratory.

    If they are connected to a power source and applied to a sinusoidal current (very stable alternating current), these fibers will vibrate.

    If it vibrates at the audio frequency and near its ears, it can hear different notes or sounds.

    In the papers on nature and materials, researchers have measured the acoustic properties of fibers more strictly.

    Because water can pmit sound better than air, they put fibers in a tank opposite to the standard sound energy converter. The sound pducer can send out the sound waves detected by the fibers alternately, and can also detect the sound waves emitted from the fibers.


    The researchers hope to eventually synthesize the properties of these experimental fibers into a single fiber.

    For example, strong vibration can change the optical properties of reflective fibers, so that fiber fabrics can be used for optical communication.

    In addition to wearable microphones and biosensors, the application of the fiber includes a network capable of monitoring the flow of water in the ocean and a high-resolution large area sonar imaging system. The fabric made of this acoustic fiber is equivalent to millions of tiny acoustic sensors.

    The researchers say that by using the same mechanism, piezoelectric elements can also turn electricity into motion in turn.

    • Related reading

    China'S First Flame Retardant Product Was Approved By Oeko-Tex&Nbsp; ACP.

    Technology Extension
    |
    2010/8/5 16:42:00
    39

    Making Future Textiles "Surname" Nano

    Technology Extension
    |
    2010/7/31 16:48:00
    41

    Textile Machinery Exhibition: Shiny Innovation Products Are Recognized By The Industry

    Technology Extension
    |
    2010/7/30 17:07:00
    28

    Test Method For Moisture Regain Of Cotton Fiber - Electric Detector Method

    Technology Extension
    |
    2010/7/28 16:16:00
    41

    Huntsman Textile Dyeing And Finishing To Expand Waterproofing Efficiency

    Technology Extension
    |
    2010/7/28 16:14:00
    41
    Read the next article

    Analysis Of Safety And Health Testing Items For Infant Clothing

    The pH value is an indicator of the intensity of a substance's acidity and alkalinity by chemical analysis and expressed in numerical terms. The number is from 0 to 14, with 7 as the center value, which is neutral. The closer to 14, the greater the 7, the stronger the alkalinity is, the closer to 0 is less than 7.

    主站蜘蛛池模板: 视频一区二区三区免费观看| 特黄大片又粗又大又暴| 野花国产精品入口| 免费在线观看视频网站| 双女车车好快的车车有点污| 免费在线观看视频a| 国产亚洲精品精品精品| 好色先生视频tv下载| 在线中文字幕第一页| 国产欧美日韩va另类在线播放| 国产一卡二卡四卡免费| 伊人精品视频一区二区三区| 亚洲中文字幕av在天堂| 久久国产高潮流白浆免费观看| www.插插插| 亚洲一二区视频| 久久国产欧美日韩精品| 一区二区三区四区在线观看视频| 香蕉狠狠再啪线视频| 老师粗又长好猛好爽视频| 特区爱奴在线观看| 日本娇小xxxⅹhd成人用品| 夫妇交换性3中文字幕| 国产日产卡一卡二乱码| 免费人成网站在线观看欧美| 亚洲av色无码乱码在线观看| 一级毛片免费不卡直观看| avtt2015天堂网| 精品在线视频免费| 欧产日产国产精品| 婷婷综合激情五月中文字幕| 国产成人涩涩涩视频在线观看| 做暧暧免费小视频| 久久精品人妻一区二区三区| av在线亚洲欧洲日产一区二区| 高级别墅贵妇交换俱乐部小说| 特级做a爰片毛片免费看| 日本高清免费一本视频无需下载| 在线播放免费人成毛片乱码 | 日韩大片高清播放器好| 欧美成人高清手机在线视频|