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    • 2. 发明专利
    • Precoated metal plate superior in resistance to staining
    • 预防金属板材耐腐蚀
    • JP2014004829A
    • 2014-01-16
    • JP2013116054
    • 2013-05-31
    • Nippon Steel & Sumitomo Metal新日鐵住金株式会社Nippon Steel & Sumikin Coated Sheet Corp日鉄住金鋼板株式会社Toyota Central R&D Labs Inc株式会社豊田中央研究所Toyota Tsusho Corp豊田通商株式会社
    • KANAI TAKAOKIMATA YOSHIOHAMAMURA TOMONARINOMURA HIROMASAOWAKI TAKESHISUZUKI KENICHIMITSUBORI YUTAKA
    • B32B15/08B32B27/18E04F13/12
    • PROBLEM TO BE SOLVED: To provide a precoated metal plate exhibiting superior resistance to staining for a long term both indoors and outdoors.SOLUTION: A precoated metal plate has an organic resin layer on a metal plate and has two or more visible light type photocatalyst active coatings on the organic resin layer. The coating on the outermost layer of each coating contains a C1 to C4 alkoxy group-containing tetraalkoxysilane, a dehydrated condensation product of epoxy group-containing alkoxysilane or a dehydrated condensation product of tetraalkoxysilane, and a photocatalyst substance. The coating under the coating on the outermost layer contains a dehydrated condensation product of an alkoxysilane selected from the group consisting of a C1 to C4 alkoxy group-containing tetraalkoxysilane, a C1 to C12 alkyl group-containing alkoxysilane, an aryl group-containing alkoxysilane and an alkoxysilane having both C1 to C12 alkyl group and aryl group, and an epoxy group-containing alkoxysilane or an amino group-containing alkoxysilane, and the photocatalyst substance. The amount of the photocatalyst substance in the coating is the greatest in the coating on the outermost layer, and the total film thickness of the coating is not more than 5 μm.
    • 要解决的问题:提供在室内和室外长期显示出优异的抗污染性的预涂金属板。解决方案:预涂金属板在金属板上具有有机树脂层,并且具有两个或更多个可见光型光催化剂活性物质 有机树脂层上的涂层。 每个涂层的最外层上的涂层含有含有C1-C4烷氧基的四烷氧基硅烷,含环氧基的烷氧基硅烷的脱水缩合产物或四烷氧基硅烷的脱水缩合产物和光催化剂物质。 在最外层的涂层下的涂层含有选自含有C1〜C4烷氧基的四烷氧基硅烷,含C1〜C12烷基的烷氧基硅烷,含芳基的烷氧基硅烷和/或含有芳基的烷氧基硅烷的烷氧基硅烷的脱水缩合物 具有C1〜C12烷基和芳基的烷氧基硅烷和含环氧基的烷氧基硅烷或含氨基的烷氧基硅烷,以及光催化剂物质。 涂层中的光催化剂物质的量在最外层的涂层中最大,涂层的总膜厚不大于5μm。
    • 3. 发明专利
    • Water-repellent material and production process thereof
    • 水性材料及其生产工艺
    • JP2013103414A
    • 2013-05-30
    • JP2011249135
    • 2011-11-14
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • OTA RIICHIROKOGA TOMOYUKIOWAKI TAKESHIOKAMOTO ATSUHITO
    • B32B5/14B05D5/00B05D7/14B32B15/08B32B15/20
    • B05D3/102B05D2350/63
    • PROBLEM TO BE SOLVED: To provide a new water-repellent material having a super water-repellent property, and a production process therefor.SOLUTION: The water-repellent material includes a substrate, a fine uneven structure formed on a surface of the substrate, and a water-repellent molecule covering the surface of the fine uneven structure. The fine uneven structure includes a petal-like structure formed of an aggregate of a plurality of plate-like particles and a columnar structure formed of columnar particles, in which the length from the surface of the substrate to a tip of the columnar structure is longer than a length from the surface of the substrate to the tip of the petal-like structure. The water-repellent material is obtained by forming the fine uneven structure including the petal-like structure formed of the aggregate of a plurality of plate-like particles and the columnar structure formed of plate-like particles on the surface of the substrate, in which the length from the surface of the substrate to the tip of the columnar structure is longer than the length from the surface of the substrate to the tip of the petal-like structure, and covering the surface of the fine uneven structure with the water-repellent molecule.
    • 要解决的问题:提供一种具有超级防水性能的新型防水材料及其制造方法。 解决方案:防水材料包括基材,形成在基材表面上的细小凹凸结构和覆盖微细凹凸结构表面的防水分子。 精细的不均匀结构包括由多个板状颗粒的聚集体和由柱状颗粒形成的柱状结构形成的花瓣状结构,其中从基材表面到柱状结构的末端的长度较长 而不是从基板的表面到花瓣状结构的尖端的长度。 防水材料是通过在基材表面上形成包括由多个板状颗粒的聚集体形成的花瓣状结构和由板状颗粒形成的柱状结构的微细凹凸结构而获得的,其中 从基材表面到柱状结构的末端的长度比从基材表面到花瓣状结构的末端的长度长,并且用疏水性覆盖微细凹凸结构的表面 分子。 版权所有(C)2013,JPO&INPIT
    • 10. 发明专利
    • Electrode for lithium secondary battery and lithium secondary battery
    • 锂二次电池和锂二次电池电极
    • JP2009117165A
    • 2009-05-28
    • JP2007288540
    • 2007-11-06
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • INOUE TAKAOOWAKI TAKESHIUKIYOU YOSHIO
    • H01M4/133H01M4/134H01M4/38H01M4/587H01M4/70H01M10/052
    • Y02E60/122
    • PROBLEM TO BE SOLVED: To provide a negative electrode for a lithium secondary battery capable of suppressing drop in charge discharge capacity when charge discharge is repeated; and to provide the lithium secondary battery.
      SOLUTION: The lithium secondary battery 10 has a negative electrode equipped with a negative active material 15 containing a layer of graphite particles 22 formed on at least the outermost surface layer, having an active material filling density of 1.2-1.7 g/cm
      3 , a peak area intensity ratio I110/I002 of (002) plane and (110) plane determined by X-ray diffraction of an electrode of 0.0010 or more and an amorphous silicon layer 20 formed in a layer other than the outermost surface and having a density of 2.0 g/cm
      3 , and a current collector 14 on which the negative active material 15 is arranged through the amorphous silicon layer 20, and satisfying t≤Rz/2 when the surface roughness of the current collector 14 is represented by Rz and the thickness of the amorphous silicon layer is represented by t.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种当重复充电放电时能够抑制充电放电容量下降的锂二次电池用负极; 并提供锂二次电池。 解决方案:锂二次电池10具有装有负极活性物质15的负极,负极活性物质15含有形成于至少最外表面层上的石墨粒子22层,活性物质填充密度为1.2〜1.7g / cm 2 (002)面和(110)面的峰面积强度比I110 / I002和电极的X射线衍射测定的(110)面为0.0010以上的非晶硅层20, 除了最外表面,密度为2.0g / cm 3以上的集电体14,通过非晶硅层20配置有负极活性物质15,并满足t≤Rz/ 集电体14的表面粗糙度由Rz表示,非晶硅层的厚度由t表示。 版权所有(C)2009,JPO&INPIT