COMPOSITE WITH IMPROVED MECHANICAL PROPERTIES AND MOLDED PRODUCT CONTAINING SAME
    22.
    发明公开
    COMPOSITE WITH IMPROVED MECHANICAL PROPERTIES AND MOLDED PRODUCT CONTAINING SAME 审中-公开
    具有改善的机械性能的复合材料和包含该材料的模制产品

    公开(公告)号:EP3187526A1

    公开(公告)日:2017-07-05

    申请号:EP15836340.8

    申请日:2015-08-31

    Applicant: LG Chem, Ltd.

    Abstract: The present invention provides a composite obtained by processing a resin composition including a thermoplastic resin, multi-walled carbon nanotubes, and a reinforcing material. The multi-walled carbon nanotubes have an average diameter of 10 nm or more and an I d /I g of 1 or less. The walls of the multi-walled carbon nanotubes consist of 10 or more layers of graphene. The rate of residual length of the carbon nanotubes present in the composite is 40% or more. The composite has improved mechanical properties without deterioration of conductivity. Due to these advantages, the composite can be used to manufacture various molded articles.

    Abstract translation: 本发明提供通过处理包含热塑性树脂,多壁碳纳米管和增强材料的树脂组合物而获得的复合物。 多壁碳纳米管具有10nm或更大的平均直径和1或更小的Id / Ig。 多壁碳纳米管的壁由10层或更多层石墨烯组成。 存在于复合材料中的碳纳米管的残留长度的比例为40%以上。 该复合材料具有改善的机械性能而不降低导电性。 由于这些优点,该复合材料可用于制造各种模制品。

    CONDUCTIVE PASTE AND METHOD FOR MANUFACTURING CONDUCTIVE FILM USING SAME
    23.
    发明公开
    CONDUCTIVE PASTE AND METHOD FOR MANUFACTURING CONDUCTIVE FILM USING SAME 审中-公开
    LEITFÄHIGEPASTE UND VERFAHREN ZUR HERSTELLUNG EINES LEITENDEN FILMS DAMIT

    公开(公告)号:EP3070719A4

    公开(公告)日:2017-07-05

    申请号:EP14869580

    申请日:2014-12-05

    Abstract: After there is prepared a conductive paste which contains fine copper particles having an average particle diameter of 1 to 100 nm, each of the fine copper particles being coated with an azole compound, coarse copper particles having an average particle diameter of 0.3 to 20 µm, a glycol solvent, such as ethylene glycol, and at least one of a polyvinylpyrrolidone (PVP) resin and a polyvinyl butyral (PVB) resin and wherein the total amount of the fine copper particles and the coarse copper particles is 50 to 90% by weight, the weight ratio of the fine copper particles to the coarse copper particles being in the range of from 1:9 to 5:5, the conductive paste thus prepared is applied on a substrate by screen printing to be preliminary-fired by vacuum drying, and then, fired with light irradiation by irradiating with light having a wavelength of 200 to 800 nm at a pulse period of 500 to 2000 µs and a pulse voltage of 1600 to 3800 V to form a conductive film on the substrate.

    Abstract translation: 准备含有平均粒径为1〜100nm的微细铜粒子的导电性糊剂后,分别涂布唑类化合物,平均粒径为0.3〜20μm的粗大铜粒子, 乙二醇等乙二醇溶剂和聚乙烯吡咯烷酮(PVP)树脂和聚乙烯醇缩丁醛(PVB)树脂中的至少一种,并且其中细铜粒子和粗铜粒子的总量为50-90重量% ,细铜颗粒与粗铜颗粒的重量比在1:9至5:5的范围内,由此制备的导电浆料通过丝网印刷施加在基板上,通过真空干燥预先烧制, 然后以500〜2000μs的脉冲周期和1600〜3800V的脉冲电压照射波长200〜800nm的光,进行光照射,在基板上形成导电膜。

    MICROCAPSULE TYPE CURABLE RESIN COMPOSITION
    25.
    发明公开
    MICROCAPSULE TYPE CURABLE RESIN COMPOSITION 审中-公开
    MIKROKAPSELARTIGEHÄRBAREHARZZUSAMMENSETZUNG

    公开(公告)号:EP3050903A4

    公开(公告)日:2017-05-31

    申请号:EP14848416

    申请日:2014-09-08

    Abstract: The present invention provides a microcapsule type curable resin composition which produces substantially no gases when applied to an adherend, e.g. to a threaded member, which is then tightened, and which moreover, due to exceptional coating properties to an adherent, does not give rise to coating irregularities, and which additionally has exceptional adhesive strength and durability. The present invention is a microcapsule type curable resin composition containing (A) microcapsules encapsulating a curable compound (a), (B) a substance able to bring about curing of component (a); and (C) a binder able to adhere the microcapsules to an adherend, wherein the microcapsule type curable resin composition is characterized by including, per total 100 mass parts of all of the microcapsules, (D) 1-25 mass parts of mica having average particle diameter of 10-150 µm, and (E) 1-25 mass parts of an inorganic filler having average particle diameter of 3-50 µm, the mass ratio of component (D) and component (E) being 0.2-2.0 of component (E) with respect to 1.0 of component (D).

    Abstract translation: 本发明提供了一种微胶囊型可固化树脂组合物,该组合物当施加到被粘物上时基本上不产生气体,例如, 然后拧紧到螺纹构件上,并且此外,由于对粘附物的特殊涂覆性能,不会产生涂层不规则性,并且另外具有优异的粘合强度和耐久性。 本发明是一种微胶囊型固化性树脂组合物,其含有(A)包封固化性化合物(a)的微胶囊,(B)能够使成分(a)固化的物质, (C)能够使微胶囊附着于被粘物的粘合剂,其中,微胶囊型固化性树脂组合物的特征在于,相对于全部微胶囊100质量份,含有(D)平均1〜25质量份的云母 (E)平均粒径为3〜50μm的无机填充剂1〜25质量份,成分(D)与成分(E)的质量比为0.2〜2.0 (E)相对于组分(D)的1.0。

    COATED LITHIUM-NICKEL COMPOSITE OXIDE PARTICLES, AND METHOD FOR MANUFACTURING COATED LITHIUM-NICKEL COMPOSITE OXIDE PARTICLES
    29.
    发明公开
    COATED LITHIUM-NICKEL COMPOSITE OXIDE PARTICLES, AND METHOD FOR MANUFACTURING COATED LITHIUM-NICKEL COMPOSITE OXIDE PARTICLES 审中-公开
    涂覆的锂镍VERBUNDOXIDTEILCHEN和方法制备涂覆锂镍VERBUNDOXIDTEILCHEN

    公开(公告)号:EP3151315A1

    公开(公告)日:2017-04-05

    申请号:EP15799658.8

    申请日:2015-05-20

    Inventor: OTA, Yosuke

    Abstract: Provided are excellent coated lithium-nickel composite oxide particles with which it is possible, due to the high environmental stability thereof, to minimize the incidence of impurities owing to absorption of moisture and carbon dioxide gas, said particles having high adhesiveness such that the coating layer does not easily delaminate, and having lithium-ion conductivity. The coated lithium-nickel composite oxide particles, in which an electroconductive polymer is crosslinked to the lithium-nickel composite oxide particles by a three-dimensional structure, are electrically and ionically conductive, and the compound is capable of suppressing the transmission of moisture and carbon dioxide. It is therefore possible to provide coated lithium-nickel composite oxide particles for a lithium-ion cell positive-electrode active substance that is excellent for use in a lithium-ion cell.

    Abstract translation: 本发明提供优异的涂覆的锂镍复合氧化物粒子与它是可能的,由于高的环境稳定性上,以最小化的杂质由于水分和二氧化碳气体的吸收率,所述具有高的粘附性寻求DASS模涂布层的颗粒 不容易剥离,并且具有锂离子传导性。 其中涂覆的锂镍复合氧化物粒子来导电性聚合物是交联的由三维结构的锂 - 镍复合氧化物粒子,电和离子导电的,并且该化合物能够抑制水分和碳的传输 二氧化碳。 因此能够用于锂离子电池的正极活性物质提供THEREFORE涂敷锂 - 镍复合氧化物粒子的确是优异的用于锂离子电池的用途。

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