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    • 84. 发明专利
    • Device for adhesively setting natural fiber bundle, natural fiber pellet using the same, and composite material of natural fiber-reinforced biodegradable resin
    • 用于粘贴自然纤维布的装置,使用其的天然纤维片和自然纤维增强生物降解树脂的复合材料
    • JP2010280116A
    • 2010-12-16
    • JP2009134830
    • 2009-06-04
    • Gunma Prefecture群馬県
    • SO TORETSUYOSHII KEI
    • B29B9/14B29B9/02B29C45/00B29K105/12B29K311/10
    • PROBLEM TO BE SOLVED: To provide a natural fiber pellet which can be manufactured at a low cost and has an adequate strength, as well as a composite material of a natural fiber-reinforced biodegradable resin.
      SOLUTION: This device 1 for adhesively setting a natural fiber bundle includes a body of the adhesively setting device 1 which has a drive unit 5 for driving to guide a natural fiber bundle and a melting bath 60 for melting paraffin etc. with the help of a warming heater enables the yield of the natural fiber pellet of a uniform length manufactured by adhesively setting paraffin etc. and the composite material of a natural fiber-reinforced biodegradable resin which is of high quality level and appropriately blended with a properly distributed biodegradable resin and besides, is friendly to global environments, can be obtained.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供可以以低成本制造并具有足够强度的天然纤维颗粒,以及天然纤维增强的可生物降解树脂的复合材料。 < P>解决方案:用于粘合设置天然纤维束的装置1包括:粘合固定装置1的主体,其具有用于引导天然纤维束的驱动单元5和用于熔化石蜡等的熔融浴60, 加热加热器的帮助使得通过粘合性固定石蜡等制造的具有均匀长度的天然纤维颗粒的产率和具有高质量水平的天然纤维增强的可生物降解树脂的复合材料并且与适当分布的可生物降解 树脂,而且,对全球环境友好,可以获得。 版权所有(C)2011,JPO&INPIT
    • 86. 发明专利
    • Method for manufacture of fiber reinforced porous hardened material
    • 纤维增强多孔硬化材料的制造方法
    • JP2003001629A
    • 2003-01-08
    • JP2001189475
    • 2001-06-22
    • Japan U-Pica Co Ltd日本ユピカ株式会社
    • MASAWAKI KEIZO
    • B01D39/00B01D39/14B29B15/08B29K311/10B29K311/12
    • PROBLEM TO BE SOLVED: To provide a reinforced porous hardened material having fine open pores possessed by a reinforced porous hardened material made by hardening a water base dispersion body of a radical polymeric thermosetting resin under the presence of a reinforcing material, free from interlaminar separation of the reinforced material, and excellent in wear resistance and mechanical strength. SOLUTION: In a method for manufacture of the fiber reinforced porous hardened material provided by hardening an O/W type thermosetting resin water base dispersion body wherein resin particles are uniformly dispersed by mixing a liquid radical polymeric thermosetting resin and water under the presence of the reinforcing material, the reinforcing material comprises a plurality of layers of the fibrous reinforcing material and at least one layer thereof is the fibrous reinforced material provided by interlaminar adhesion.
    • 要解决的问题:提供一种增强的多孔硬化材料,其具有由增强的多孔硬化材料所具有的微细开孔,所述增强多孔硬化材料是通过在增强材料的存在下固化自由基聚合物热固性树脂的水分散体而形成的,其不含层间分离 增强材料,耐磨性和机械强度优异。 解决方案:在通过硬化O / W型热固性树脂水基分散体而提供的纤维增强多孔硬化材料的制造方法中,其中树脂颗粒通过在增强剂的存在下混合液体自由基聚合物热固性树脂和水而均匀分散 材料,增强材料包括多层纤维增强材料,其至少一层是通过层间粘合提供的纤维增强材料。
    • 87. 发明专利
    • MANUFACTURE OF SPONTANEOUSLY DECOMPOSABLE MOLDING
    • JP2000202844A
    • 2000-07-25
    • JP683599
    • 1999-01-13
    • OHBAYASHI CORP
    • OGAWA ZENICHI
    • B29C41/40B29C39/18B29C41/32B29C41/46B29C69/02B29K311/10B29L22/00C08L3/00
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a spontaneously decomposable molding without particularly coating a surface with a decomposable plastic or the like simply in a manufacturing step while providing an effective waterproofness. SOLUTION: Starch and water are mixed at a ratio of, for example, 2:1 by weight, and agitated to form a paste-like starch solution 1. An inner mold 3 for molding and heated to about 90 deg.C is dipped in the solution 1. After a predetermined time is elapsed, the mold 3 is taken out, and a water-containing starch film 5 is stuck to its surface in a thickness of about 5 to 6 mm. Then, vegetable fibers 7 are adhered to the starch adhering to the surface of the mold 3. The mold 3 adhering to the film 5 and the fibers 7 is inserted into an outer mold 9 for molding, and the solution 1 is poured in a gap between the molds 3 and 9. The molds 3 and 9 are heated to a higher temperature than a heating temperature of the mold 3 to transpirate its moisture from the solution existing between the molds 3 and 9 and to solidify and mold the starch. Eventually, the molds 3, 9 are removed, and a bucket-like container 11 of the molding is removed.