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    • 3. 发明专利
    • Electrodeposition-coated object and method for manufacturing the same
    • 电沉积对象及其制造方法
    • JP2014173110A
    • 2014-09-22
    • JP2013045124
    • 2013-03-07
    • Mitsubishi Materials Corp三菱マテリアル株式会社Mitsubishi Cable Ind Ltd三菱電線工業株式会社
    • IIDA SHINTAROARIIZUMI KUMIKOSAKURAI HIDEAKIKAMIBAYASHI HIROYUKINAGATO TOYOKAZU
    • C25D13/06C09D5/02C09D201/00C25D13/16
    • PROBLEM TO BE SOLVED: To obtain an electrodeposition-coated object having an insulating coating film devoid of pinholes and exhibiting excellent insulating characteristics and to manufacture an electrodeposition-coated object capable of forming an insulating coating film devoid of pinholes and having a flat surface easily within a safe environment.SOLUTION: In a method for manufacturing an electrodeposition-coated object wherein an insulating layer of a polymer is formed on the surface of a coating target based on an electrodeposition method using a polymer-containing electrodeposition coating material and wherein an insulating coating film consisting of the polymer is formed by baking the formed layer, the electrodeposition coating material includes a polymer-containing solvent and an organic solvent added to the electrodeposition coating material, whereas the organic solvent has a boiling point exceeding 100°C and is highly compatible with the polymer because of the Hansen solubility parameter thereof being similar to that of the other.
    • 要解决的问题:为了获得具有无针孔绝缘涂层并且具有优异的绝缘特性的电沉积涂覆物体,并且制造能够容易地形成不具有针孔并且具有平坦表面的绝缘涂层的电沉积涂覆物体 一种安全的环境。解决方案:在一种电沉积涂覆物的制造方法中,基于使用含聚合物的电沉积涂料的电沉积法,在涂覆靶的表面上形成聚合物的绝缘层,并且其中绝缘涂层 通过焙烧形成的层来形成由聚合物构成的膜,电沉积涂料包括添加到电沉积涂料中的含聚合物的溶剂和有机溶剂,而有机溶剂的沸点超过100℃并且高度相容 与聚合物,因为汉森溶解度 y参数与其他参数相似。
    • 4. 发明专利
    • Ferroelectric thin film manufacturing method
    • 电磁薄膜制造方法
    • JP2013207155A
    • 2013-10-07
    • JP2012076096
    • 2012-03-29
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • IIDA SHINTAROSAKURAI HIDEAKI
    • H01L21/316H01L21/31H01L21/8242H01L21/8246H01L27/105H01L27/108H01L41/18H01L41/187H01L41/39
    • B05D1/04B05B5/025B05B5/1675C23C18/02C23C18/1216C23C18/1245C23C18/125C23C18/1254H01L21/02197H01L21/02282
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a ferroelectric thin film which has excellent material utilization efficiency, an intended film composition and excellent electrical characteristics.SOLUTION: A manufacturing method of a ferroelectric thin film on a lower electrode 20a comprises: electrostatic spraying a sol-gel solution 21 for ferroelectric thin film formation toward the lower electrode 20a of a substrate 20 having the lower electrode 20a from a discharge port 14a of a capillary 14 for coating the sol-gel solution 21 on the lower electrode 20a to form a coating film on the lower electrode 20a; and performing dehydration and calcination of the coating film and subsequently performing burning of the coating film for crystallization. A distance between the discharge port 14a of the capillary 14 and the lower electrode 20a and an applied voltage at the time of electrostatic spraying are set so as to make a refraction index after the dehydration and calcination of the coating film be 2 and over. And a fluid volume of the sol-gel solution 21 per one spray is set so as to make a film thickness when the sol-gel solution 21 by one spray is coated and calcined and subsequently burned and crystallized be within a range of 150 nm and under.
    • 要解决的问题:提供具有优异的材料利用效率,期望的膜组成和优异的电特性的铁电薄膜的制造方法。解决方案:下电极20a上的铁电薄膜的制造方法包括:静电喷涂 从用于在下电极20a上涂布溶胶 - 凝胶溶液21的毛细管14的排出口14a向具有下电极20a的基板20的下电极20a形成的溶胶 - 凝胶溶液21,形成 下电极20a上的涂膜; 并对涂膜进行脱水和煅烧,随后进行结晶用涂膜的燃烧。 将毛细管14的排出口14a与下部电极20a之间的距离与静电喷雾时的施加电压进行设定,使得涂膜脱水和煅烧后的折射率为2以上。 将溶胶 - 凝胶溶液21的每一个喷雾液体积设定为当通过一次喷雾将溶胶 - 凝胶溶液21涂覆并煅烧并随后烧结并结晶化在150nm的范围内时,使膜厚度达到 下。
    • 6. 发明专利
    • Method for producing ferroelectric thin film
    • 生产薄膜薄膜的方法
    • JP2013203611A
    • 2013-10-07
    • JP2012075448
    • 2012-03-29
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • IIDA SHINTAROSAKURAI HIDEAKI
    • C01G25/00H01B3/00H01B3/12H01L21/31H01L21/316H01L21/8246H01L27/105
    • H01L21/02104B05B5/1608B05B5/1675B05D1/06B05D3/007C23C18/1216C23C18/1245C23C18/1254C23C18/127C23C18/1279C23C18/1283H01L41/314H01L41/318
    • PROBLEM TO BE SOLVED: To obtain a dense and crack-free ferroelectric thin film after firing a thin film ejected and formed using electrostatic spray.SOLUTION: A method for producing a ferroelectric thin film on a lower electrode includes electrostatically spraying a ferroelectric thin film-forming electrostatic spray solution from a spout of a capillary toward a lower electrode of a substrate having the lower electrode so as to coat the electrostatic spray solution on the lower electrode and form a coated film, drying, calcining, and then firing the coated film so as to crystallize the coated film. In this method, the electrostatic spray solution is a mixed solution in which a ferroelectric thin film-forming sol-gel solution and powder having the same composition as the solid content of the sol-gel solution and having a particle diameter that can be ejected from the spout are uniformly mixed, and, when the mass of the metallic compound, which is converted into a mass of a metal oxide, dissolved in the sol-gel solution is represented by A and the mass of the powder is represented by B, the ratio of B with respect to (A+B) is in a range of ≥5% and ≤40%.
    • 要解决的问题:在烧制使用静电喷涂形成的薄膜之后获得致密且无裂纹的铁电薄膜。解决方案:在下电极上制造铁电薄膜的方法包括静电喷涂铁电薄膜 - 从毛细管的喷口形成静电喷雾溶液到具有下电极的基板的下电极,以便将下电极上的静电喷雾溶液涂覆在其上,形成涂膜,干燥,煅烧,然后焙烧涂膜 以使涂膜结晶。 在该方法中,静电喷雾溶液是其中形成铁电薄膜的溶胶 - 凝胶溶液和具有与溶胶 - 凝胶溶液的固体成分相同组成并且具有可从 喷口均匀混合,当溶解在溶胶 - 凝胶溶液中的转化成金属氧化物的金属化合物的质量由A表示时,粉末的质量用B表示, B相对于(A + B)的比例在≥5%和≤40%的范围内。