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    • 104. 发明专利
    • Attachment and orchard bottom processing method using the same
    • 使用相同的附件和底部底部处理方法
    • JP2014079201A
    • 2014-05-08
    • JP2012229483
    • 2012-10-17
    • National Agriculture & Food Research Organization独立行政法人農業・食品産業技術総合研究機構Hyogo Prefecture兵庫県
    • TANAKA HIROAKINAKAMOTO YOICHIFUJIKAWA MASUHIROOKA NOBUMITSUMIZUTA YASUNORIORIBE FUTOSHI
    • A01G23/00A01G7/00
    • PROBLEM TO BE SOLVED: To provide an attachment which can carry out a freezing damage countermeasure for an orchard by using a small-sized hydraulic shovel and an orchard bottom processing method using the same.SOLUTION: An attachment 20 comprises: a connection part 21 which is capable of being mounted to a hydraulic breaker body 10 arranged at a tip part of an operation arm 7 of a hydraulic shovel 1 in which the operation arm 7 is disposed on a traveling vehicle body 2; a pair of insertion members 30 which are arranged at both sides of the connection part 21, extend in a direction of separation from the tip part of the operation arm 7, and are inserted into soil around bottom of a chestnut tree T1; and a tabular member 40 which is arranged at each of the tip parts of the insertion members 30, extends in a direction crossing the insertion direction of the insertion member 30, and cuts roots of the chestnut tree T1. The attachment 20 is moved to a surface in front of the chestnut tree T1 by the operation arm 7 to be deeply inserted into a ground, cuts roots in the ground by using the tabular member 40, and crushes soil between the adjacent insertion members 30.
    • 要解决的问题:提供一种通过使用小型液压挖掘机和使用其的果园底部处理方法可以对果园进行冷冻破坏对策的附件。附件20包括:连接部分21,其连接部分21 能够安装在设置在行驶体2上的操作臂7的液压铲1的操作臂7的前端的液压破碎机主体10上; 配置在连接部21的两侧的一对插入部件30从与操作臂7的前端部分离的方向延伸,插入板栗树T1的底部周围的土壤中, 并且布置在插入构件30的每个尖端部分的平板状构件40沿与插入构件30的插入方向交叉的方向延伸,并且切断栗树T1的根部。 附件20通过操作臂7移动到板栗树T1前面的表面,以深度地插入地面,通过使用平板状构件40将根部切割在地面上,并在相邻的插入构件30之间压碎土壤。
    • 105. 发明专利
    • Solar cell including interface stabilization film
    • 太阳能电池,包括界面稳定膜
    • JP2014075440A
    • 2014-04-24
    • JP2012221492
    • 2012-10-03
    • Hyogo Prefecture兵庫県
    • SATO SHINICHIARAFUNE KOJIYOSHIDA HARUHIKOHOTTA IKUJIMORI HIDEKI
    • H01L31/04
    • Y02E10/546
    • PROBLEM TO BE SOLVED: To provide a solar cell including an interface stabilization film capable of reducing a trap level and further increasing the effect of stationary charges.SOLUTION: A solar cell includes: an n-type silicon semiconductor layer; a p-type silicon semiconductor layer having an interface with the n-type silicon semiconductor layer; an interface stabilization film provided on at least one of a surface of the n-type silicon semiconductor layer and a surface of the p-type silicon semiconductor layer, and including a stack of a first layer composed of SiOx (x≥2), a second layer composed of AlOand having stationary charges locally existing at the interface with the first layer, and a third layer composed of AlOx (x>1.5) in that order; a first electrode connected to the n-type silicon semiconductor layer; and a second electrode connected to the p-type silicon semiconductor layer.
    • 要解决的问题:提供一种太阳能电池,其包括能够降低陷阱水平并进一步增加静电荷的影响的界面稳定膜。解决方案:太阳能电池包括:n型硅半导体层; 与n型硅半导体层具有界面的p型硅半导体层; 设置在n型硅半导体层的表面和p型硅半导体层的表面中的至少一个上的界面稳定膜,并且包括由SiO x(x≥2)构成的第一层的叠层, 由AlO组成的第二层,具有与第一层界面局部存在的固定电荷,以及由AlOx(x> 1.5)构成的第三层; 与n型硅半导体层连接的第一电极; 以及与p型硅半导体层连接的第二电极。
    • 106. 发明专利
    • Coating material and method for manufacturing the same
    • 涂料及其制造方法
    • JP2014025018A
    • 2014-02-06
    • JP2012168028
    • 2012-07-30
    • Nippon Paamiru Kk日本パーミル株式会社Naoyuki Kato直行 加藤Tanaka Kogyo:Kk有限会社 タナカ興業Hyogo Prefecture兵庫県
    • KATO TAICHIROKAWANAMI OSAMUKATO NAOYUKIKAMON TAKAHIROTANAKA RYOJI
    • C09D201/00C01G23/04C09D5/00C09D7/12
    • PROBLEM TO BE SOLVED: To provide an ultraviolet-shielding material having, despite having an excellent ultraviolet-shielding effect, an excellent dispersibility within an aqueous solvent and an excellent transparency.SOLUTION: In a case where an ultraviolet-shielding material is manufactured by a method comprising: a synthesis step of synthesizing a suspension including titanium oxide nanotubes based on a hydrothermal synthesis treatment of titanium oxide; a dispersion step of dispersing the titanium oxide nanotubes by adding beads to the titanium oxide nanotubes and then agitating the titanium oxide nanotubes and the beads; and an ultrasonic treatment step of irradiating ultrasound onto the titanium oxide nanotubes; and then dispersed within an aqueous resin or latex, it becomes possible to provide a coating material capable of simultaneously realizing an advanced ultraviolet-shielding effect and transparency by virtue of the dispersion, within the aqueous resin or latex, of titanium oxide nanotubes whose tube lengths are longer than 150 nm and shorter than 1000 nm.
    • 要解决的问题:提供一种紫外线屏蔽材料,其具有优异的紫外线屏蔽效果,在水性溶剂中具有优异的分散性和优异的透明性。溶解性:在紫外线屏蔽材料由 方法包括:合成步骤,基于氧化钛的水热合成处理合成包含氧化钛纳米管的悬浮液; 分散步骤,通过在二氧化钛纳米管中加入珠子然后搅拌氧化钛纳米管和珠子来分散氧化钛纳米管; 以及将超声波照射到所述氧化钛纳米管上的超声波处理工序; 然后分散在水性树脂或胶乳中,可以提供能够同时实现高级紫外线屏蔽效果和透明度的涂层材料,其通过在水性树脂或胶乳中在水性树脂或胶乳中分散其管长度 长于150nm且小于1000nm。
    • 108. 发明专利
    • Photoelectric conversion device and photovoltaic power generation device using the same
    • 光电转换装置和使用该光电转换装置的光伏发电装置
    • JP2013214685A
    • 2013-10-17
    • JP2012085334
    • 2012-04-04
    • Daiwa Sangyo:Kk株式会社大和産業Hyogo Prefecture兵庫県
    • ITO SHOGOHARADA TOMITAROKUDO YOSHINOBUMORISHITA ISAYA
    • H01L31/042
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To provide a photoelectric conversion device equipped with a solar cell module which excels in durable reliability and maintainability at trouble occurrence time.SOLUTION: A solar cell module is composed of an array of packages. The packages each comprise: a first inorganic material substrate having light transmissivity; a second inorganic material substrate disposed oppositely to the first inorganic material substrate leaving a space in between; one or a plurality of photovoltaic power generation devices, disposed between the first and the second inorganic material substrates, and arranged so that its first inorganic material substrate side of those is a light-receiving face; an inorganic material encapsulation member, disposed between the first and the second inorganic material substrates, which is formed so as to encapsulate from the outside a space in which the photovoltaic power generation device is disposed by enclosing the outer periphery of the photovoltaic power generation device while sandwiching the photovoltaic power generation device between the first and the second inorganic material substrates; and a positive and a negative electrode terminal connected to the photovoltaic power generation device and led out to the outside from the encapsulated space in which the photovoltaic power generation device is disposed.
    • 要解决的问题:提供一种配备太阳能电池模块的光电转换装置,该太阳能电池模块在故障发生时具有耐用的可靠性和可维护性。解决方案:太阳能电池模块由一组封装组成。 所述封装各自包括:具有透光性的第一无机材料基板; 第二无机材料基板,与第一无机材料基板相对设置,在第一无机材料基板之间留有空间; 一个或多个光伏发电装置,设置在第一和第二无机材料基板之间,并且布置成使得其第一无机材料基板侧是光接收面; 设置在第一和第二无机材料基板之间的无机材料封装构件,其被形成为通过封装光伏发电装置的外周而从其外部封装设置有光伏发电装置的空间,同时 将光电发电装置夹在第一和第二无机材料基板之间; 以及正极和负极端子,其连接到所述光伏发电装置,并从设置有所述光伏发电装置的封装空间导出到外部。
    • 109. 发明专利
    • High durability reliable dye-sensitized photoelectric conversion device by dye polymerized on porous semiconductor
    • 通过聚合多孔半导体的DYE高耐磨性可靠的透明光电转换器件
    • JP2013149504A
    • 2013-08-01
    • JP2012009481
    • 2012-01-19
    • Hyogo Prefecture兵庫県Nissha Printing Co Ltd日本写真印刷株式会社
    • ITO SHOGOSAKANE MASAYASU
    • H01M14/00H01L31/04
    • Y02E10/542
    • PROBLEM TO BE SOLVED: To provide a dye-sensitized photoelectric conversion device in which thermal durability and reliability of photoelectric conversion characteristics are enhanced by a dye-sensitization phenomenon, by polymerizing the dye on a porous semiconductor.SOLUTION: The dye-sensitized photoelectric conversion device comprises: a first electrode 7 including a determination means translucent substrate 2 formed on one surface of the dye-sensitized photoelectric conversion device, a translucent conductive layer 3 formed on the translucent substrate 2, a porous semiconductor layer 4 formed on the translucent conductive layer, and an alternative copolymer adsorbed to the surface of the porous semiconductor layer 4 where two different kinds of dye-sensitizer are copolymerized while being alternately arranged; a second electrode 13 formed to face the first electrode 7; a charge transport layer 8 formed between the translucent conductive layer 3 of the first electrode 7 and the second electrode 13; and a sealing member 9 for sealing the first electrode 7 and the second electrode 13 so that the charge transport layer 8 does not appear to the outside of the system.
    • 要解决的问题:提供通过在多孔半导体上聚合染料,通过染料敏化现象提供热稳定性和光电转换特性的可靠性的染料敏化光电转换装置。解决方案:染料敏化光电转换 装置包括:第一电极7,包括形成在染料敏化光电转换装置的一个表面上的确定装置半透明基板2,形成在透光性基板2上的透光性导电层3,形成在透光性导电层上的多孔半导体层4 以及吸附到多孔半导体层4的表面的替代共聚物,其中两种不同种类的染料敏化剂在交替排列的同时共聚; 形成为与第一电极7相对的第二电极13; 形成在第一电极7的半透明导电层3和第二电极13之间的电荷输送层8; 以及用于密封第一电极7和第二电极13的密封构件9,使得电荷输送层8不会出现在系统的外部。
    • 110. 发明专利
    • Fiber reinforced composite fabric material and article made therefrom
    • 纤维增强复合材料及其制品
    • JP2013091870A
    • 2013-05-16
    • JP2011234464
    • 2011-10-26
    • Hyogo Prefecture兵庫県Doshisha学校法人同志社Miyata Fuhaku Kk宮田布帛有限会社Toho Orimono Kk藤邦織物株式会社
    • FUJITA HIROYUKIFUJII TORUMATSUOKA TAKASHIMIYATA YASUJIFUJII ATSUKIFUJII KUNIO
    • D04B1/14B29C43/34B29K105/08C08J5/04D02G3/04D02G3/38
    • PROBLEM TO BE SOLVED: To provide a fiber reinforced composite fabric material with high strength and high elastic modulus capable of being formed into a complicated curving shape or a deep drawing shape without damaging fiber even when carbon fiber is used.SOLUTION: A fiber reinforced composite fabric material is obtained by the steps of: subjecting a carbon fiber bundle 3 to rolling stitch and engagement with an engaging yarn 4 of thermoplastic synthetic fiber yarn to form a composite fiber yarn 1 with these yarns varying their tensions; and weaving the composite fiber yarn 1 as warp and/or weft into a fabric sheet with a prescribed size. Preferably, the fabric material is obtained by the steps of: parallelling one or plural of the carbon fiber bundle 3 bundling multifilament with a parallelling yarn 5 made of thermoplastic synthetic fiber yarn comprising nylon, polypropylene and polyester; and subjecting the parallelled yarn to rolling stitch and engagement with an engaging yarn 4 of thermoplastic, synthetic, monofilament fiber yarn with these yarns varying their tensions.
    • 要解决的问题:提供具有高强度和高弹性模量的纤维增强复合织物材料,即使在使用碳纤维时也能形成复杂的弯曲形状或深拉伸形状而不损伤纤维。 解决方案:通过以下步骤获得纤维增强复合织物材料:使碳纤维束3进行滚动线圈并与热塑性合成纤维纱线的接合纱线4接合以形成复合纤维纱线1,这些纱线变化 他们的紧张 并将复合纤维纱线1作为经纱和/或纬纱编织成具有规定尺寸的织物片材。 优选地,通过以下步骤获得织物材料:将一根或多根碳纤维束3捆扎复丝与由尼龙,聚丙烯和聚酯构成的热塑性合成纤维纱线制成的平行纱线5并联; 并且使平行的纱线进行滚动线圈并与热塑性,合成的单丝纤维纱线的接合纱线4接合,这些纱线改变其张力。 版权所有(C)2013,JPO&INPIT