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    • 2. 发明申请
    • METHOD OF MANUFACTURING CARBON NANOTUBE (CNT) FIELD EMISSION SOURCE
    • 制备碳纳米管(CNT)场发射源的方法
    • US20100285715A1
    • 2010-11-11
    • US12607706
    • 2009-10-28
    • Yuan-Yao LiMeng-Jey YouhChun-Lung TsengHung-Chih Wu
    • Yuan-Yao LiMeng-Jey YouhChun-Lung TsengHung-Chih Wu
    • H01J9/12
    • H01J9/025H01J2329/0455
    • A method of manufacturing carbon nanotube (CNT) field emission source, comprising the following steps of: providing a substrate; disposing an electrode layer on substrate; applying a mixture on electrode layer by means of screen printing, and mixture is a mixture of CNT paste and carbon powder; performing sinter in proceeding with a heat cracking reaction, and the carbon cracked and obtained in a heat cracking reaction of carbon powder and polymer in CNT paste is used as a carbon source, and that is used to grow a CNT emission layer of a hedgehog-shaped CNT cluster structure, thus obtaining a cathode plate after completion of sinter process. The hedgehog-shaped CNT cluster structure is a carbon nanotube (CNT) emission layer capable of having multi-direction electron emission routes. As such, it can realize the characteristics of high current density, and low turn-on voltage, while raising the stability of electron field emission.
    • 一种制造碳纳米管(CNT)场发射源的方法,包括以下步骤:提供衬底; 在基板上设置电极层; 通过丝网印刷在电极层上施加混合物,混合物是CNT浆料和碳粉末的混合物; 在进行热裂解反应时进行烧结,将碳粉和聚合物在CNT浆料中的热裂解反应中得到的碳作为碳源,用于生长刺猬蛋白的CNT发射层, 形成CNT簇结构,从而在烧结过程完成后获得阴极板。 刺猬状CNT簇结构是能够具有多向电子发射路线的碳纳米管(CNT)发射层。 因此,可以实现高电流密度,低导通电压的特性,同时提高电子场发射的稳定性。
    • 4. 发明申请
    • Tape-type magnet
    • 磁带式磁铁
    • US20070218234A1
    • 2007-09-20
    • US11377172
    • 2006-03-17
    • Hung-Chih WuChen-Liang Fan Chiang
    • Hung-Chih WuChen-Liang Fan Chiang
    • B32B33/00G09F3/00
    • G09F7/04H01F7/0215Y10S428/90Y10S428/906Y10T428/14Y10T428/1486Y10T428/15Y10T428/28
    • A tape-type magnet including a soft magnetic substrate which is a thin strip or tape with magnetic attraction. A first adhesive layer is uniformly laid on one face of the magnetic substrate. A releasable facial layer is bonded with the other face of the magnetic substrate via a second adhesive layer. The adhesion between the releasable facial layer and the second adhesive layer is greater than an adhesion between the releasable facial layer and the first adhesive layer, whereby the releasable facial layer is releasable from the first adhesive layer. The magnetic substrate is wound into a roll with the second adhesive layer serving as an outer face and the first adhesive serving as an outer face and the first adhesive layer serving as an inner face. An outermost end of the magnetic substrate can be easily unwound and torn off into a segment.
    • 一种磁带式磁体,其包括作为具有磁吸引力的薄带或磁带的软磁性基板。 第一粘合剂层均匀地铺设在磁性基材的一个表面上。 可剥离的面层通过第二粘合剂层与磁性基材的另一面粘合。 可释放面层与第二粘合剂层之间的粘合力大于可释放面层与第一粘合剂层之间的粘合力,由此可释放面层可从第一粘合层剥离。 将磁性基材卷绕成辊,其中第二粘合剂层用作外表面,第一粘合剂用作外表面,第一粘合剂层用作内表面。 磁性基板的最外端可以容易地展开并撕成一段。
    • 9. 发明申请
    • Magnetically attractable paper structure
    • 磁吸引纸结构
    • US20060096723A1
    • 2006-05-11
    • US10984812
    • 2004-11-10
    • Hung-Chih Wu
    • Hung-Chih Wu
    • D21H17/00G07D7/00G06K9/00
    • D21H19/06D21H21/28
    • A magnetically attractable paper structure including a substrate paper, an interface painting layer and a thin magnetically attractable material painting layer. The interface painting layer is painted on at least one surface of the substrate paper. The magnetically attractable painting layer is painted on an outer face of the interface painting layer. The interface painting layer serves to reduce the humidity absorbability of the substrate paper and enhance the strength thereof as well as prevent the substrate paper from being crimped. Therefore, the magnetically attractable material painting layer can be more easily and firmly bonded with the substrate paper. The magnetically attractable material painting layer is magnetically coordinated and magnetized to have magnetic attraction to form a magnetically attractable paper.
    • 一种磁吸引纸结构,包括基底纸,界面涂漆层和薄磁性吸引材料涂层。 界面涂装层涂在基片纸的至少一个表面上。 在该界面涂覆层的外表面上涂上可磁吸引涂层。 界面涂布层用于降低基材纸的吸湿性,提高其强度,防止基材卷曲。 因此,能够与基板纸更容易且牢固地粘合磁性吸引材料涂装层。 磁吸引材料涂层被磁性协调和磁化以具有磁吸引力以形成磁吸引纸。