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    • 1. 发明授权
    • Apparatus for expanding a metal sheet
    • 用于膨胀金属板的装置
    • US06212744B1
    • 2001-04-10
    • US09130713
    • 1998-08-07
    • Akira InanobeYasuyuki YoshiharaAkira IwamuraFumiaki Seta
    • Akira InanobeYasuyuki YoshiharaAkira IwamuraFumiaki Seta
    • B21D3104
    • B21D31/04Y10T29/10Y10T29/18
    • The apparatus comprises a reticulating machine (39) for simultaneously producing in metal sheet (2) of strip form a plurality of slits (67) disposed in a continuous and zigzag arrangement extending in the lengthwise direction thereof, and an expanding machine (40) for expanding in the lateral direction the metal sheet (2) in which slits (67) have been formed in order to produce a lozenge-shaped mesh configuration. The expanding machine (40) comprises two endless conveyor elements (44) disposed at the two lateral edges of the metal sheet (2), chuck members (47), a plurality of which are provided in an equally-spaced arrangement to the endless conveyor elements (44), and a center guide member (91) for conveying the metal sheet (2) while guiding the transverse central portion such that it is deflected to one side in the direction of thickness of the metal sheet (2). The chuck members (47) grip the lateral edges of the metal sheet (2) in which slits (67) have been formed, thereby expanding the metal sheet (2) while conveyed by the endless conveyor elements (44).
    • 该装置包括一个网状机器(39),用于同时制造带状的金属板(2),形成多个沿其长度方向延伸的连续且锯齿形布置的狭缝(67),以及扩展机(40),用于 在横向上沿着形成有切口(67)的金属板(2)膨胀以产生菱形网状结构。 膨胀机(40)包括设置在金属板(2)的两个侧边缘处的两个环形输送机元件(44),卡盘构件(47),其多个设置成与环形输送机 元件(44)和用于在引导横向中心部分的同时沿金属片(2)的厚度方向偏转到一侧的金属片(2)的中心引导构件(91)。 卡盘构件(47)夹持已经形成狭缝(67)的金属板(2)的侧边缘,从而在由环形输送元件(44)输送的同时使金属板(2)膨胀。
    • 4. 发明授权
    • Battery holding device
    • 电池保持装置
    • US06400122B1
    • 2002-06-04
    • US09680824
    • 2000-10-06
    • Akira Iwamura
    • Akira Iwamura
    • H02J700
    • H01M2/105H01M10/613H01M10/643H01M10/6561H01M10/6566
    • The battery holding device is structurally simplified. It is not necessary to use many parts to form the casing, and the parts used have simple shapes. Accordingly, it is very easy to finish the parts. Also, the parts can be easily assembled. The battery holding device embodying the present invention includes a pair of plate type supports having a first plate type support and a second plate type support, and a projection disposed on at least one of the first and second plate type supports. The first support and the second support are opposed to each other. The projection extends toward the opposed support. The first support and the second support are connected to each other via the projection. A pair of the plate type supports and the projection form a casing. The space is formed by an inner surface of the casing, the casing has a space formed inside the casing, and the casing catches and holds a plurality of batteries arranged in rows in the space.
    • 电池保持装置在结构上简化。 不需要使用许多部件来形成外壳,并且所使用的部件具有简单的形状。 因此,很容易完成零件。 而且,这些零件可以很容易的组装。 实施本发明的电池保持装置包括一对具有第一板式支撑件和第二板式支撑件的板式支撑件,以及设置在第一和第二板式支撑件中的至少一个上的突起。 第一个支持和第二个支持是相互对立的。 突出部朝向相对的支撑部延伸。 第一支撑件和第二支撑件通过突出部彼此连接。 一对板式支撑件和突起形成套管。 空间由壳体的内表面形成,壳体具有形成在壳体内部的空间,并且壳体捕获并保持在该空间中排成行的多个电池。
    • 6. 发明授权
    • Fiber reinforced structural member
    • 纤维增强结构件
    • US4795666A
    • 1989-01-03
    • US49054
    • 1987-05-12
    • Yukio OkadaAkira IwamuraShuji Akashi
    • Yukio OkadaAkira IwamuraShuji Akashi
    • B29C70/06B29D99/00B29L31/10B61F5/50B61F5/52B32B3/12B32B3/26
    • B29D99/0007B61F5/523Y02T30/38Y10S52/07Y10S52/08Y10T428/233Y10T428/234
    • A fiber reinforced structural member comprises a shell element formed of a fiber reinforced material such as, for example, a fiber reinforced plastic, and a core element having a large joining surface fixedly joined to the inner surface of the shell element, and comprising one or a plurality of primary core elements each formed of a fiber reinforced material such as, for example, a fiber reinforced plastic, in the form of a tube or a channel, and internally filled with a filling material such as, for example, foam polyurethane. Since the shell element and the core element are joined together over the large joining area, an external force applied to the fiber reinforced structural member is distributed over the large joining surface and hence the stress in the joining surface is reduced, so that the durability and reliability of the fiber reinforced structural member is enhanced.
    • 纤维增强结构件包括由诸如纤维增强塑料的纤维增强材料形成的壳体元件和具有固定地连接到壳元件的内表面的大接合表面的芯元件,并且包括一个或多个 多个主芯元件,各自由管或通道形式的纤维增强材料例如纤维增强塑料形成,并且内部填充有填充材料,例如泡沫聚氨酯。 由于壳单元和芯元件在大接合区域上接合在一起,所以施加到纤维增强结构构件的外力分布在大接合面上,因此接合面中的应力减小, 增强了纤维增强结构件的可靠性。
    • 7. 发明授权
    • Railway truck spring height adjustment device
    • 铁路卡车弹簧高度调节装置
    • US4505457A
    • 1985-03-19
    • US384675
    • 1982-06-02
    • Yukio OkadaAkira Iwamura
    • Yukio OkadaAkira Iwamura
    • B61F5/06B61F5/34B61F5/50F16F1/26F16M7/00
    • B61F5/34B61F5/50
    • A height adjusting device for the truck of a railroad vehicle including spring retainer supporting members consisting of a plurality of concentric segments which are arranged around the axis of a spring retainer in symmetry with respect to the axis. Each segment has an upper surface which is so stepped that the height thereof is successively increased as the distance of the upper surface from the spring axis increases, providing thereby a plurality of horizontal supporting surfaces, and a tongue or groove for locating and fixing the segment. The spring height can easily be adjusted simply by changing the position of the segments relative to the spring retainer.
    • 一种用于铁路车辆的货车的高度调节装置,包括由相对于轴对称的弹簧保持器的轴线周围布置的多个同心段组成的弹簧保持器支撑构件。 每个段具有上表面,其阶梯状使得其高度随着上表面与弹簧轴线的距离的增加而相继增加,由此提供多个水平支撑表面,以及用于定位和固定该段的舌部或凹槽 。 通过改变片段相对于弹簧保持器的位置,可以简单地简单地调整弹簧高度。
    • 8. 发明授权
    • Combined battery and battery holding frame
    • 组合电池和电池架
    • US07410722B2
    • 2008-08-12
    • US10511482
    • 2003-06-03
    • Akira IwamuraKenji Kimura
    • Akira IwamuraKenji Kimura
    • H01M2/10H01M10/50
    • H01M2/26H01M2/0245H01M2/10H01M2/105H01M2/12H01M2/202H01M6/42H01M10/613H01M10/625H01M10/6563
    • A battery pack includes a plurality of batteries (2) and a plurality of holding frames (3) each of which is capable of accommodating and holding a corresponding one of the batteries (2) with spaces (10a, 10b) provided therein and which are opened on both side faces opposed to each other to form openings. When the holding frames (3) respectively accommodating and holding the batteries (2) are arranged with their openings aligned; end plates (4a, 4b) are arranged at both ends of the holding frames (3); and the end plates (4a, 4b) and the holding frames (3) are jointed as a unit so as to form an outer case (5) that forms a cooling space (6) surrounding each battery (2), a gas-discharge passage portion (18) is provided in each holding frame (3), which seals and covers a space surrounding a gas-discharge port (8) provided in the battery (2) and has connection ports (19a, 19b) opened on both side faces of the holding frame (3).
    • 电池组包括多个电池(2)和多个保持框架(3),每个保持框架能够容纳并保持相应的一个电池(2),其中设置有空间(10a,10b),并且 它们在彼此相对的两个侧面上打开以形成开口。 当分别容纳和保持电池(2)的保持框架(3)以其开口对齐的方式布置时; 端板(4a,4b)布置在保持框架(3)的两端; 并且端板(4a,4b)和保持框架(3)作为一个单元接合,以形成形成围绕每个电池(2)的冷却空间(6)的外壳(5),气体 在每个保持框架(3)中设置有 - 设置在电池(2)中的气体排出口(8)周围的空间,并具有连接口(19a,19b)的放电通道部分(18) 在保持框架(3)的两个侧面上打开。
    • 9. 发明授权
    • Enclosed storage battery and its manufacturing method
    • 封闭蓄电池及其制造方法
    • US06440180B2
    • 2002-08-27
    • US09064694
    • 1998-04-22
    • Akira Iwamura
    • Akira Iwamura
    • H01M230
    • H01M2/344H01M2/307Y10T29/49108Y10T29/4911
    • An enclosed storage battery having an excellent closed tightness and reliability is obtained. An annular bump is formed integrally with the upper periphery of the penetration hole of a lead-alloy bushing buried in the top of the lid for covering the jar. The leading end of the pole passing through the penetration hole of the bushing is inserted into the lower part of the annular bump. A recess is formed on the, top of the leading end of the pole so as to be easier to melt the upper portion of the pole, and by welding with the inner wall of the penetration hole of the bushing, the annular bump is later melted, and the bushing penetration hole is filled up with the fused lead.
    • 获得具有优异的封闭密封性和可靠性的封闭式蓄电池。 与埋在盖顶部的铅合金衬套的贯通孔的上周一体地形成环状凸块,以覆盖该罐。 穿过衬套穿透孔的杆的前端插入环形凸块的下部。 在极的前端的顶部形成凹部,以便更容易熔化极的上部,并且通过与衬套的穿透孔的内壁焊接,随后熔化环形凸起 并且衬套穿透孔被熔融引线填满。
    • 10. 发明授权
    • Manufacturing method of expanded grid and its manufacturing apparatus
    • 扩大电网的制造方法及其制造装置
    • US06243932B1
    • 2001-06-12
    • US09141215
    • 1998-08-27
    • Go KashioAkira Iwamura
    • Go KashioAkira Iwamura
    • B23P1300
    • H01M4/745Y10T29/10Y10T29/18Y10T29/185Y10T29/49108
    • A manufacturing method for an expanded grid includes the steps of: (a) supplying a thin plate of band form from the longitudinal direction, (b) forming a plurality of intermittent cuts parallel to the edge in a first region, excluding the central portion, of the thin plate of band form, (c) bending the central portion at a desired angle, and (d) expanding and developing the cuts in the width direction, while moving sequentially in the longitudinal direction the thin plate having the first region forming the plurality of cuts and the central portion not having the cuts, in which the first track distance of the outermost side portion of the first region having the cuts developed and formed is nearly the same distance as the track distance of the central portion. The plane distortion of the grid is eliminated, the width dimension of the grid is stable, and the quality of the electrode plate using such grid is enhanced. Further, local stress concentration of the grid is suppressed.
    • 扩展网格的制造方法包括以下步骤:(a)从纵向供给带状的薄板,(b)在除了中心部分之外的第一区域中形成平行于边缘的多个间歇切口, (c)以期望的角度弯曲所述中心部分,以及(d)在宽度方向上使所述切口膨胀和显影,同时沿着所述纵向依次移动,所述薄板具有形成所述第一区域的薄板 多个切口和不具有切口的中心部分,其中具有展开和形成的切口的第一区域的最外侧部分的第一轨道距离与中心部分的轨迹距离几乎相同的距离。 消除了电网的平面失真,网格的宽度尺寸稳定,提高了使用这种格栅的电极板的质量。 此外,电网的局部应力集中被抑制。