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    • 1. 发明授权
    • Lightweight resin molded product and production method thereof
    • 轻质树脂成型体及其制造方法
    • US06623838B1
    • 2003-09-23
    • US09508091
    • 2000-03-16
    • Manabu NomuraToru ShimaAtsushi SatoHirofumi Gouda
    • Manabu NomuraToru ShimaAtsushi SatoHirofumi Gouda
    • B32B328
    • B29C45/0005B29C44/12B29C45/1705B29C2045/1723Y10T428/2457Y10T428/24744Y10T428/2495Y10T428/249971Y10T428/249986
    • Using a mold equipped with a rib-forming member capable of moving forward and backward relative to the mold cavity, produced is a lightweight, hollow resin molding having a reinforcing rib structure in the hollow area, from a fiber-containing thermoplastic resin having a fiber content of from 10 to 70% by weight. To produce the molding, a melt of a fiber-containing thermoplastic resin is injected into the mold cavity or is injected thereinto under compression, then the movable mold member is moved backward in the direction in which the mold cavity is expandable, and after the start of the mold member moving, a gas is introduced into the resin melt. Even though the molding has a hollow structure and has a large surface area, it has good stiffness and high strength, and has good appearances. The weight of the molding can be well controlled and reduced to any desired degree. The molding has many applications in various fields.
    • 使用具有能够相对于模腔前后移动的肋形成构件的模具,是具有在中空区域中具有加强肋结构的轻质中空树脂模制品,其具有纤维的含纤维热塑性树脂 含量为10〜70重量%。 为了制造模制品,将含纤维的热塑性树脂的熔体注射到模腔中或在压缩下被注入,然后可动模具沿模腔扩展的方向向后移动,并且在开始之后 模具构件移动时,将气体引入到树脂熔体中。 即使成型件具有中空结构并且具有大的表面积,其具有良好的刚度和高强度,并且具有良好的外观。 模制品的重量可以很好地控制并减少到任何所需的程度。 该模具在各个领域有很多应用。
    • 3. 发明授权
    • Method of obtaining a gas-introduced fiber-reinforced resin injection
molding
    • 获得导入纤维增强树脂注射成型的方法
    • US6165396A
    • 2000-12-26
    • US73908
    • 1998-05-07
    • Atsushi SatoManabu NomuraToru ShimaKaoru Wada
    • Atsushi SatoManabu NomuraToru ShimaKaoru Wada
    • B29C45/00B29C45/17B29C45/56B29C44/02B29C44/04
    • B29C45/56B29C45/0005B29C45/1705B29C45/1706B29C45/1734B29C2045/1707B29C2045/1709B29C2045/171B29C2045/1723B29C2045/1726B29C2045/1737
    • The present invention is directed to a method of obtaining a gas-introduced fiber-reinforced resin injection molding and to a molding obtained by the method. According to the present invention, there can be obtained a lightweight gas-introduced fiber-reinforced resin injection molding containing glass fibers or like fibers having excellent rigidity and strength and improved surface properties. The method includes the steps of: injecting into a die a molten resin obtained through the plasticization of a molding material; and introducing gas into the molten resin, the molding material comprising fiber-containing thermoplastic resin pellets which contain reinforcing fibers having a length of 2 mm to 100 mm, the reinforcing fibers accounting for 5% to 70% by weight of the molding material, the die including a movable die capable of advancing into and retracting from the internal cavity of the die, wherein after the injection of the molten resin into the die cavity is started, the movable die is retracted to a position where the die cavity assumes a volume corresponding to the molding, and gas is introduced into the molten resin filling the die cavity.
    • 本发明涉及一种获得引入气体的纤维增强树脂注射成型体的方法和通过该方法得到的成型体。 根据本发明,可以获得具有优异的刚度和强度以及改进的表面性能的玻璃纤维或类似纤维的轻质导气纤维增强树脂注射成型体。 该方法包括以下步骤:向模具注入通过模塑材料增塑而获得的熔融树脂; 并且将气体引入熔融树脂中,所述成型材料包含含纤维的热塑性树脂颗粒,其含有长度为2mm至100mm的增强纤维,所述增强纤维占成型材料的5重量%至70重量%, 其包括能够从模具的内腔前进和退出的活动模具,其中在将熔融树脂注入模腔之后开始,可动模具缩回到模腔呈相当体积的位置 并将气体引入填充模腔的熔融树脂中。
    • 9. 发明授权
    • Controller, controlling method, and solar cell
    • 控制器,控制方法和太阳能电池
    • US08848327B2
    • 2014-09-30
    • US13161589
    • 2011-06-16
    • Atsushi SatoYoshiaki InoueMikio Takenaka
    • Atsushi SatoYoshiaki InoueMikio Takenaka
    • H02H3/00H01L31/02H01L31/04H02M7/539
    • H01L31/02021Y02E10/542
    • Disclosed is a controller for controlling short-circuit across positive and negative terminals of a dye sensitized solar cell for converting a light energy into an electrical energy. The controller includes: a voltage detecting section detecting a voltage developed across the positive and negative terminals of the cell; a current detecting section detecting a current caused to flow through the positive terminal of the cell; a judging section judging how a power generation state of the cell is, and whether or not a release state is provided across the positive and negative terminals of the cell in accordance with a value of the voltage detected by the voltage detecting section and a value of the current detected by the current detecting section; and a short-circuiting/releasing section short-circuiting or releasing across the positive and negative terminals of the cell in accordance with a result of the judgment made by the judging section.
    • 公开了一种用于控制用于将光能转换成电能的染料敏化太阳能电池的正极和负极端子之间的短路的控制器。 所述控制器包括:电压检测部分,检测在所述电池的正极和负极端子两端产生的电压; 电流检测部,检测流过所述电池的正极的电流; 判断单元的发电状态的判定部,以及根据电压检测部检测出的电压的值,判定单元的正极和负极两端的释放状态是否为 由电流检测部检测出的电流; 以及短路/释放部分,根据判断部分的判断结果,在电池的正极和负极端子之间短路或释放。