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    • 16. 发明申请
    • Photonic three-dimensional structure and method for production thereof
    • 光子三维结构及其制备方法
    • US20050285115A1
    • 2005-12-29
    • US10525379
    • 2004-06-04
    • Takuji NakagawaKikuo Wakino
    • Takuji NakagawaKikuo Wakino
    • B29C67/00G02B1/02H01L29/15H01L31/0256
    • B29C64/135B33Y10/00B33Y30/00B33Y70/00B33Y80/00
    • A three-dimensional component having cavities containing a photocurable resin material and having a structure in which a plurality of cured resin layers composed of the photo-cured resin material are stacked, is manufactured by stereolithography. Inorganic members are inserted into concave portions when the concave portions are formed before covering the cavities, each of the concave portions being at least portion of the corresponding cavity, and the photocurable resin material remaining. When the three-dimensional component is completed, the photocurable resin material remaining in the cavity is thermally cured, thus being brought into contact with the inorganic members. In this manner, a three-dimensional photonic structure having the plurality of inorganic members precisely disposed at desired periodic positions within the resin matrix is efficiently manufactured.
    • 通过立体光刻法制造具有包含光固化树脂材料并具有多个由光固化树脂材料构成的多个固化树脂层的结构的具有空腔的三维部件。 当在覆盖空腔之前形成凹部时,将无机构件插入到凹部中,每个凹部为相应空腔的至少一部分,并且光固化树脂材料残留。 当三维成分完成时,留在空腔中的光固化树脂材料被热固化,从而与无机部件接触。 以这种方式,有效地制造了具有精确设置在树脂基体内的期望周期位置的多个无机部件的三维光子结构。
    • 18. 发明授权
    • Method of producing fine powders
    • 生产细粉的方法
    • US5435830A
    • 1995-07-25
    • US257268
    • 1994-06-09
    • Atsuo SendaTakuji NakagawaYoshihiko Takano
    • Atsuo SendaTakuji NakagawaYoshihiko Takano
    • B22F9/24
    • B22F9/24
    • First, an aqueous solution of water soluble compounds or an aqueous solution of water soluble complexes, which is a salt of elements belonging to the 6A, 7A, 1B, 2B, 3B, 4B, 5B, 6B, or 8 group in a periodic table are prepared. The pH of the aqueous solution is adjusted and titanium trichloride is added thereto. The aqueous solution provided with titanium trichloride is stirred at temperature below the boiling point of the solution under atmospheric pressure or under high pressure. Then, by the reducing action of the titanium trichloride, a fine titanium-free powder selected from the group consisting of a metal powder, an alloy powder containing two or more of metals and non-metals, or a compound powder containing two or more of metals and non-metals is obtained.
    • 首先,作为元素周期表中属于6A,7A,1B,2B,3B,4B,5B,6B或8族的元素的盐的水溶性化合物的水溶液或水溶性络合物的水溶液 准备好了 调节水溶液的pH,并向其中加入三氯化钛。 提供三氯化钛的水溶液在大气压或高压下在低于溶液沸点的温度下搅拌。 然后,通过三氯化钛的还原作用,可以使用选自金属粉末,含有两种以上金属和非金属的合金粉末的微细的无钛粉末,或者含有两种以上的金属和非金属的化合物粉末 获得金属和非金属。