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    • 74. 发明授权
    • Method for producing coated article
    • 生产涂层制品的方法
    • US07537805B2
    • 2009-05-26
    • US11384494
    • 2006-03-21
    • Yasuhito NaruseKenji HayashiManabu Hashigaya
    • Yasuhito NaruseKenji HayashiManabu Hashigaya
    • B05D1/00B05D7/00B05D3/00B41F1/18B41F23/04
    • B41C1/1008B41C1/1016B41C2201/02B41C2210/24
    • In the present invention, a coating liquid satisfies the liquid physical property conditions: (A) in the drying process, after the solid content concentration in the coating liquid is increased to 15% by mass or more by drying the coating film, or after the start of drying when the solid content concentration in the coating liquid is 15% by mass or more at the time of coating; (B) the shear viscosity of the coating liquid becomes 5 mPas or more for the shear rate of 103 sec−1 or less; (C) the value obtained through dividing by the average viscosity the first differential coefficient, the increase coefficient of the increase rate of the shear viscosity relative to the increase rate of the solid content concentration is 0.15 or more; and (D) the second differential coefficient, an additional increase coefficient of the increase coefficient relative to the solid content concentration is positive.
    • 在本发明中,涂布液在干燥工序中满足液体物性条件(A),通过干燥涂膜将涂布液中的固体成分浓度提高到15质量%以上 当涂布液中固体成分浓度为15质量%以上时开始干燥; (B)剪切速率为103秒-1以下时,涂布液的剪切粘度为5mPa·s以上; (C)将平均粘度除以第一微分系数得到的值,剪切粘度的增加率相对于固体成分浓度的上升率的增加系数为0.15以上; 和(D)第二微分系数,增加系数相对于固体含量浓度的附加增加系数为正。
    • 78. 发明申请
    • High Tensile Strength Steel Material Having Excellent Delayed Fracture Resistance Property, and Method of Manufacturing the Same
    • 具有优异的延迟耐断裂性的高抗拉强度钢材及其制造方法
    • US20080110535A1
    • 2008-05-15
    • US11795362
    • 2006-05-29
    • Kenji OiAkihide NagaoKenji Hayashi
    • Kenji OiAkihide NagaoKenji Hayashi
    • C21D7/00C22C38/00
    • C21D9/08C21D9/10C22C38/02C22C38/04C22C38/22
    • The invention provides a high tensile strength steel material having a tensile strength of 600 MPa, which is excellent in delayed fracture resistance property, and a method of manufacturing the steel material. As means for this, a steel material contains, in mass percent, C of 0.02 to 0.25%, Si of 0.01 to 0.8%, Mn of 0.5 to 2.0%, Al of 0.005 to 0.1%, N of 0.0005 to 0.008%, P of 0.03% or less, and S of 0.03% or less. In addition, the steel material contains at least one element selected from Mo, Nb, V, and Ti, and contains at least one of Cu, Ni, Cr, W, B, Ca, REM and Mg, as needed. The remainder includes Fe and inevitable impurities. In addition, in the steel material, precipitates having an average grain size of 20 nm or less, which contains at least one of Mo, Nb, V and Ti, are contained in steel in the number of at least 5 per 250000 nm2, and a microstructure includes residual austenite in a volume fraction of 0.5 to 5%. When Ca to be added is specified to be 0.0010% to 0.0020%, it is specified that S is 0.0005% to 0.0020% and O is 0.0008% to 0.0025%. ACR is specified to be 0.2≦ACR(=(Ca-(0.18+130*Ca)*O)/1.25/S)≦1.0.
    • 本发明提供一种拉伸强度为600MPa,耐延迟断裂性优异的高强度钢材,以及钢材的制造方法。 作为这种方式,钢材以质量%计含有0.02〜0.25%的C,0.01〜0.8%的Si,0.5〜2.0%的Mn,0.005〜0.1%的Al,0.0005〜0.008%的N,P 为0.03%以下,S为0.03%以下。 此外,钢材含有选自Mo,Nb,V,Ti中的至少一种元素,根据需要含有Cu,Ni,Cr,W,B,Ca,REM和Mg中的至少一种。 余量包括Fe和不可避免的杂质。 此外,在钢材中,钢中含有Mo,Nb,V,Ti中的至少一种的平均粒径为20nm以下的析出物,以每250000nm 2,微观结构包括体积分数为0.5〜5%的残余奥氏体。 当添加Ca为0.0010〜0.0020%时,规定S为0.0005〜0.0020%,O为0.0008〜0.0025%。 ACR被指定为0.2 <= ACR(=(Ca-(0.18 + 130 * Ca)* O)/1.25/S)<= 1.0。
    • 79. 发明授权
    • Organic electroluminescent device and electronic apparatus
    • 有机电致发光器件和电子设备
    • US07329987B2
    • 2008-02-12
    • US11012493
    • 2004-12-16
    • Kozo ShitagamiKenji Hayashi
    • Kozo ShitagamiKenji Hayashi
    • H01J1/62
    • H01L51/525H01L27/3244H01L51/5246
    • To provide an organic electroluminescent device having a sealing structure in which an adhesive layer and a protective substrate are provided on light-emitting elements, the organic electroluminescent device being capable of emitting display light from the protective substrate and of obtaining higher reliability in a peripheral region in which connecting terminals are provided. The organic electroluminescent device of the present invention comprises an element substrate having organic EL elements on one surface thereof and a protective substrate bonded to the element substrate with an adhesive layer that is provided on the organic EL elements interposed therebetween. A separating member is provided between the protective substrate and the element substrate to uniformly maintain the gap between the two substrates.
    • 为了提供一种具有密封结构的有机电致发光器件,其中在发光元件上设置粘合剂层和保护衬底,该有机电致发光器件能够从保护衬底发出显示光并且在周边区域中获得更高的可靠性 其中设置有连接端子。 本发明的有机电致发光元件包括在其一个表面上具有有机EL元件的元件基板和与元件基板接合的保护基板,其中粘合层设置在有机EL元件之间。 在保护基板和元件基板之间设置分离部件,以均匀地保持两个基板之间的间隙。
    • 80. 发明申请
    • SHEET SORTING METHOD AND APPARATUS
    • 表格分类方法和装置
    • US20070175912A1
    • 2007-08-02
    • US11622399
    • 2007-01-11
    • Mitsuhiro UeharaKenji Hayashi
    • Mitsuhiro UeharaKenji Hayashi
    • G07F11/72B23Q7/12
    • B65H29/62B65H29/041B65H31/24B65H39/10B65H43/04B65H2301/4314B65H2701/1912
    • Disclosed is a sheet sorting method in which, on paper sheets each with a plurality of identical patterns printed thereon side by side in a longitudinal direction and in a lateral direction, a quality of the patterns thereof is inspected; in a case where the quality of the patterns on the sheets in all of groups into which the plurality of patterns are grouped is determined to be non-defective, these paper sheets are discharged to non-defective sheet discharge locations; in a case where a defect is determined to exist among the patterns in only one of the groups on each of the sheets, these paper sheets are discharged to single-column defective discharge locations (single-group defective sheet discharge locations); and in a case where defects are determined to exist among the patterns in a plurality of groups on each of the sheets, these paper sheets are discharged to plural-group defective discharge locations.
    • 公开了一种片材分选方法,其中,在纵向和横向上并排印刷有多个相同图案的纸张上,检查其图案的质量; 在将多个图案分组成的所有组中的纸张上的图案的质量确定为无缺陷的情况下,将这些纸张排出到无缺陷的纸张排出位置; 在每个纸张中只有一个组中的图案中确定存在缺陷的情况下,这些纸张被排出到单列不良排出位置(单组有缺陷的纸张排出位置); 并且在每个纸张上的多个组中的图案中确定存在缺陷的情况下,这些纸张被排出到多组不良排放位置。