会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Manufacturing method of resin molded object for shielding electromagnetic wave
    • 用于屏蔽电磁波的树脂模制对象的制造方法
    • JP2009016564A
    • 2009-01-22
    • JP2007176484
    • 2007-07-04
    • Ado Union Kenkyusho:KkFukuda Metal Foil & Powder Co Ltd株式会社アドユニオン研究所福田金属箔粉工業株式会社
    • KAJITA MITSURUMITANI KATSUAKIWADA HITOSHIKAJITA OSAMU
    • H05K9/00B32B7/02B32B15/08C08J7/04G09F9/00
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a resin molded object for shielding electromagnetic waves which can efficiently form an electromagnetic shielding layer at low cost on the face of the resin molded object to which an electromagnetic wave shielding process is applied simultaneously when the resin molded object of such as a resin housing is formed. SOLUTION: A coating material layer of a conductive base material sheet is arranged at a position used as the face of the resin molded object to be molded to which the electromagnetic wave shielding process is applied. The conductive base material sheet is formed by laminating a coating material in a finger-touch dry state on the face of a vehicle impregnating base material which is bendable and deformable, wherein the coating material includes conductive metal particles dispersed in a vehicle. When the resin molded object is formed, the conductive base material sheet is heated and pressurized to make the coating material layer-closely into contact with the face of the resin molded object to be molded to which the electromagnetic wave shielding process is applied, then the vehicle of the coating material layer is impregnated into the vehicle impregnating base material to form the electromagnetic wave shielding layer, in which the conductive metal particles of the coating material layer are flat-rolled and deformed between the resin molded object and the conductive base material sheet. The conductive base material sheet is peeled off and removed from the resin molded object in such a state that the electromagnetic wave shielding layer remains on the face of the resin molded object to which the electromagnetic wave shielding process is applied. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决问题的方案:提供一种用于屏蔽电磁波的树脂成型体的制造方法,该树脂成型体能够在施加电磁波屏蔽处理的树脂成型体的表面上以低成本有效地形成电磁屏蔽层 同时形成诸如树脂壳体的树脂模制物体。 解决方案:将导电性基材片的涂料层配置在作为被涂敷的电磁波屏蔽处理的成型用树脂成型体的面的位置上。 导电性基材片通过将手指接触干燥状态的涂布材料层叠在可弯曲变形的车辆用浸渍基材的表面上而形成,其特征在于,所述涂料包含分散在车辆中的导电性金属粒子。 当形成树脂成型体时,对导电性基材片进行加热加压,使涂料层与被涂敷有电磁波屏蔽处理的成型用树脂成型体的面紧密接触, 将涂料层的载体浸渍在载体浸渍基材中,形成电磁波屏蔽层,其中涂料层的导电金属颗粒在树脂模塑体和导电基材片之间被平轧和变形 。 在电磁波屏蔽层残留在施加有电磁波屏蔽处理的树脂成型体的表面上的状态下,将导电性基材片从树脂成型体上剥离除去。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • MnSi1.7 SYSTEM THERMOELECTRIC MATERIAL
    • MnSi1.7系统热电材料
    • JP2005303326A
    • 2005-10-27
    • JP2005170058
    • 2005-06-09
    • Fukuda Metal Foil & Powder Co Ltd福田金属箔粉工業株式会社
    • HASHII TERUYAWADA HITOSHI
    • C01B33/06H01L35/14H01L35/34
    • PROBLEM TO BE SOLVED: To provide an MnSi
      1.7 system thermoelectric material composed of a single-phase system of MnSi
      1.7 phase which becomes a mixed system with little segragation, minute crystal grains, and no mixing impurities through an aging annealing process.
      SOLUTION: This MnSi
      1.7 system thermoelectric material composed of a single phase system of MnSi
      1.7 phase, or the MnSi
      1.7 phase as the main phase is produced in the following processes. Following a melting process that melts raw material, the raw material molten in the melting process is dropped. A spraying medium is sprayed at the raw material being dropped, on which rapid cooling is performed without passing through the aging annealing process, and the raw material is pulverized through a cooling/pulverization process, and finally becomes the mixed system after the aging annealing process.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种MnSi 1.7 系统的热电材料,该热电材料由MnSi 1.7 相的单相体系组成,其变成几乎没有变化的混合体系, 通过老化退火处理,没有混合杂质。 解决方案:由MnSi 1.7 相的单相系统或MnSi 1.7 相组成的MnSi 1.7 系热电材料为 主相在以下工序中生产。 在熔化原料的熔融过程之后,在熔化过程中熔化的原料掉落。 在不经过老化退火处理的情况下,在滴下的原料上喷涂喷雾介质,进行快速冷却,通过冷却/粉碎处理将原料粉碎,最终在老化退火处理后成为混合体系 。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • 銅系ナノ粒子分散液とその製造方法及びその分散液から製造される銅導体膜が形成された基材
    • 基于铜的纳米颗粒分散体和用于制造相同的基材的方法,其形成由相同分散体制成的铜导体膜
    • JP2015028931A
    • 2015-02-12
    • JP2014137608
    • 2014-07-03
    • 国立大学法人京都大学Kyoto Univ福田金属箔粉工業株式会社Fukuda Metal Foil & Powder Co Ltd
    • KAWASAKI MITSUOWADA HITOSHISUGIMOTO MASAYUKI
    • H01B1/22C01G3/02C09D1/00C09D5/24H01B1/02H01B5/14H01B13/00
    • 【課題】300[℃]以下の加熱処理で、基材との密着性に優れる低抵抗性の導体膜を形成できる亜酸化銅ナノ粒子分散液の提供。【解決手段】亜酸化銅ナノ粒子、γ—ブチロラクトン、ジエチレングリコールと質量数600以下の炭素水素酸素化合物を主成分として含む亜酸化銅ナノ粒子分散液。前記分散液は、亜酸化銅ナノ粒子とγ—ブチロラクトンからなる分散液とジエチレングリコールとを混合する工程(工程A)と、流量比9/1〜0/10の窒素/酸素の混合ガスを工程Aで得た混合液中にバブリングしながら、前記混合液を155〜185[℃]で加熱攪拌する工程(工程B)を含む製造法により製造され、前記ジエチレングリコールの配合量a[wt%]は、工程Aで用いる亜酸化銅ナノ粒子とγ—ブチロラクトンからなる分散液中の亜酸化銅ナノ粒子含有量b[wt%]を変数にして決定される。【選択図】なし
    • 要解决的问题:提供一种能够基于300℃[℃]以下的热处理,形成具有优异的与基材的粘附性的低电阻导体膜的低氧化铜纳米颗粒分散体。溶解:所提供的低氧化铜纳米颗粒分散体 作为主要成分,作为主要成分,含有低氧化亚铜纳米粒子,γ-丁内酯,二甘醇和质量数为600以下的烃 - 氧化合物。 通过制造方法制造分散体,该制造方法包括将由低氧化铜纳米颗粒和γ-丁内酯组成的分散体与二甘醇(步骤A)混合的步骤和加热搅拌的步骤,同时具有流速 在步骤A中得到的混合溶液中9 / 1-0 / 10的比例被鼓泡,在155〜185℃的混合溶液中,测定二甘醇的混合比a [wt%] 通过将由低氧化铜纳米颗粒和γ-丁内酯组成的分散体中的低亚硫酸铜纳米颗粒含量b [重量%]设定为变量,并在步骤A中使用。