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    • 13. 发明申请
    • ALKALINE PRIMARY BATTERY
    • 碱性电池
    • US20100183916A1
    • 2010-07-22
    • US12678389
    • 2008-10-14
    • Harunari ShimamuraJun NunomeFumio KatoYasuhiko Bito
    • Harunari ShimamuraJun NunomeFumio KatoYasuhiko Bito
    • H01M10/26
    • H01M6/08H01M4/62
    • An alkaline primary battery provided with a positive electrode containing a positive electrode active material and graphite, a negative electrode containing a negative electrode active material, a separator, and an alkaline electrolyte, the positive electrode active material containing manganese dioxide, the alkaline electrolyte containing zinc oxide, and the positive electrode containing metatitanic acid. Due to this, in a battery in which an alkaline electrolyte contains zinc oxide, productions of hetaerolite and the like at the positive electrode and depositions of titanium compound, zinc oxide, and the like on the inner face of a battery case are suppressed, and thus, excellent discharge performance and storage characteristics can be obtained.
    • 提供含有正极活性物质和石墨的正极的碱性一次电池,含有负极活性物质的负极,隔板和碱性电解质,含有二氧化锰的正极活性物质,含有锌的碱性电解质 氧化物,正极含有偏钛酸。 由此,在碱性电解质含有氧化锌的电池中,电池壳体的内表面上抑制了正电极中的白云石等的生成和钛化合物,氧化锌等的沉积, 因此,可以获得优异的放电性能和存储特性。
    • 14. 发明申请
    • ALKALINE BATTERY
    • 碱性电池
    • US20090269660A1
    • 2009-10-29
    • US12427231
    • 2009-04-21
    • Harunari ShimamuraJun NunomeFumio Kato
    • Harunari ShimamuraJun NunomeFumio Kato
    • H01M2/02
    • H01M6/08H01M4/24H01M4/366H01M4/50H01M4/604H01M6/085
    • An alkaline dry battery includes a positive electrode 2 containing manganese dioxide, a negative electrode 3 containing zinc, and an electrolyte containing a potassium hydroxide aqueous solution, which are encased in a cylindrical battery case 1 with a bottom. Among X-ray CT images scanned from part of the battery holding the positive electrode by slicing the battery by planes perpendicular to a center axis of the battery case 1 with intervals of 0.2 mm, CT images in which at least one crack is detected in a region of the positive electrode constitute 10% to 80% by number of the total X-ray CT images, the crack being identified by a brightness of 98% or less of that of part of the positive electrode region surrounding the crack.
    • 碱性干电池包括含有二氧化锰的正极2,含有锌的负极3和含有氢氧化钾水溶液的电解质,其被封装在具有底部的圆筒形电池壳体1中。 在通过以与间隔0.2mm的电池壳体1的中心轴垂直的平面切断电池的状态下,从保持正极的部分电池扫描的X射线CT图像中,在图像中检测到至少一个裂纹的CT图像 正电极的面积构成X射线CT图像的总数的10〜80%的范围,裂纹被围绕裂纹的正极区域的一部分的亮度的98%以下。
    • 16. 发明授权
    • Cylindrical sieve
    • 圆柱筛
    • US07549543B2
    • 2009-06-23
    • US12007950
    • 2008-01-17
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • B07B1/20
    • B07B1/4672B07B1/18B07B1/20B07B1/48B07B2201/02
    • In a cylindrical sieve, a first frame 7 is provided with a first ring plate 7a arranged in a radial direction and a ring plate 7b extended inward in an axial direction X of the sieve from an inner end of the first ring plate 7a. The ring plate 7b has an inwardly warped end. A ring projection 2a is fit in a ring-shaped cavity K1 defined by a ring recess 10a and the first frame 7. The ring plate 7b presses the ring projection 2a outward in the radial direction to prevent the ring projection 2a from being slipped off the matching recess. Through holes 7c (counter bores) are formed in the first frame 7 along the axial direction X. Four of the through holes 7c are used to fasten the rods 6 and receive the Phillips head screws 6f seated therein, and the remaining through holes 7c receives Phillips head screws 20 (see FIG. 1) seated therein for reinforced linkage of the first frame 7 with the holder frame 11.
    • 在圆筒筛中,第一框架7设置有沿径向布置的第一环板7a和从第一环板7a的内端沿筛轴的轴向X向内延伸的环板7b。 环形板7b具有向内弯曲的端部。 环形突起2a装配在由环形凹部10a和第一框架7限定的环形空腔K1中。环形板7b沿径向向外按压环形突出部2a,以防止环形突起2a从第一框架7滑出。 匹配凹槽 在第一框架7中沿着轴向X形成通孔7c(对应孔)。四个通孔7c用于固定杆6并接收其中放置的十字头螺钉6f,并且剩余的通孔7c接收 安置在其中的十字头螺钉20(参见图1)用于加强第一框架7与保持架11的连接。
    • 18. 发明申请
    • Sieve, Sifter, and Sieve Breakage Detector
    • 筛子,筛子和筛分破碎检测器
    • US20090000994A1
    • 2009-01-01
    • US11577071
    • 2005-10-06
    • Fumio KatoHitoshi Hanada
    • Fumio KatoHitoshi Hanada
    • B07B1/00G01N1/00
    • B07B1/469B07B1/18B07B13/18
    • The present invention aims to detect breakage of a sieve in real-time and thus substantially reduce a cost increase of products caused by sieve breakage. The present invention also aims to reduce management cost of a sieve substantially.Multiple conductive bands 40 through 51 of a predetermined width, composed of multiple (for example, ten, in the structure shown in the figures) conductive weaving threads 24 and multiple (for example, ten) nonconductive weaving threads 23 and a certain number of nonconductive weaving threads 25, are formed in one area of the screen member 5. These conductive bands 40 through 51 of combined weave are formed parallel to the axial direction X at certain intervals D. Between each conductive band 40 through 51, nonconductive bands 52 through 62 plane-woven by using the nonconductive weaving threads 23 and the nonconductive weaving threads 25 are formed. A continuous conductive element 82 of a folded shape is formed, as shown in FIGS. 4 and 5 by connecting adjacent ends of the multiple conductive bands 40 through 51 alternatively using conductive members 70 through 80 (conductive tapes made, for example, of thin cupper sheet).
    • 本发明旨在实时检测筛子的断裂,从而大大降低由筛分破碎引起的产品的成本增加。 本发明还旨在基本上降低筛子的管理成本。 由多个(例如,在图中所示的结构中的十个)组成的预定宽度的多个导电带40至51导电编织线24和多个(例如十个)非导电编织线23和一定数量的非导电 编织螺纹25形成在筛网构件5的一个区域中。这些组合织物的导电带40至51以一定间隔D平行于轴向X形成。在每个导电带40至51之间,非导电带52至62 通过使用非导电编织线23和非导电编织线25平面编织。 形成折叠形状的连续导电元件82,如图1和2所示。 通过使用导电构件70至80(例如由薄铜板制成的导电带)交替地连接多个导电带40至51的相邻端部来实现图4和5。
    • 19. 发明授权
    • Inline sifter
    • 内联筛选器
    • US07413086B2
    • 2008-08-19
    • US11454938
    • 2006-06-19
    • Fumio KatoTeruo Inoue
    • Fumio KatoTeruo Inoue
    • B07B1/20B01D29/00
    • B07B1/20B07B7/06
    • An inline sifter including a gas-powder mixture receiving module which receives a mixture of a gas and powdery material from an inlet, a sieving module which communicates with a supply chamber of the gas-powder mixture receiving module, a rotating mechanism which is laterally extended inside the supply chamber and the sieving chamber, a cylindrical sieve arranged such that the rotating shaft extended in said sieving chamber passes through a center thereof, a wind power amplifier located in an internal area of the sieve to amplify wind power and press the powdery material out from the sieve, a removal member used to remove a remaining material from the sieve, an outlet used to discharge material which has passed through the sieve, and a support member. The gas-powder mixture, being supplied in a circumferential direction of the supply chamber, flows around the rotating shaft and is fed into the sieving chamber.
    • 一个一体式筛子,包括一个从入口接收气体和粉末材料的混合物的气体 - 粉末混合物接收模块,与气体 - 粉末混合物接收模块的供应室连通的筛分模块,横向延伸的旋转机构 在所述供给室和所述筛分室内部设置圆筒状的筛子,所述圆筒状筛子使得在所述筛分室中延伸的所述旋转轴穿过其中心,位于所述筛子的内部区域的风力放大器,以放大风力并挤压所述粉末材料 从筛子出来,用于从筛子中除去剩余的材料的去除构件,用于排出已经通过筛子的材料的出口和支撑构件。 沿着供给室的圆周方向供给的气体 - 粉末混合物在旋转轴的周围流动并供给到筛分室。