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    • 2. 发明授权
    • Battery rack having low resistance compartment dividers and methods of
operation and manufacture thereof
    • 具有低电阻室分隔器的电池架及其操作和制造方法
    • US5890606A
    • 1999-04-06
    • US890898
    • 1997-07-10
    • Roy Kuipers
    • Roy Kuipers
    • A47B96/04H01M2/10A47F7/00
    • H01M2/1077A47B96/04
    • A battery rack for containing batteries and methods of operation and manufacture thereof. In one embodiment, the battery rack includes: (1) a plurality of shelf support members, (2) first and second shelves, coupled to the shelf support members to receive support therefrom, the first and second shelves having corresponding first and second pluralities of divider apertures therethrough, the first plurality of divider apertures substantially vertically-aligned with the second plurality of divider apertures and (3) a plurality of divider rods passing through corresponding vertically-aligned ones of the first and second pluralities of divider apertures to form dividers to divide the battery rack into battery compartments, the plurality of divider rods having a diameter less than that of the first and second pluralities of divider apertures to allow the plurality of divider rods to rotate and thereby present a low frictional resistance to movement of batteries within the battery compartments.
    • 一种用于容纳电池的电池架及其操作和制造方法。 在一个实施例中,电池架包括:(1)多个搁架支撑构件,(2)第一和第二搁架,联接到搁架支撑构件以从其接收支撑,第一和第二搁架具有对应的第一和第二多个 所述第一多个分隔开孔基本上与所述第二多个分隔开孔垂直对齐,以及(3)多个分隔杆穿过所述第一和第二多个分隔孔中的垂直对齐的第一和第二分隔孔,以形成分隔器 将电池架划分成电池隔间,多个分隔杆的直径小于第一和第二多个分隔孔的直径,以允许多个分隔杆旋转,从而对电池内部的电池的运动提供低的摩擦阻力 电池隔间。
    • 6. 发明授权
    • Apparatus for moving a battery
    • 用于移动电池的装置
    • US07189047B2
    • 2007-03-13
    • US10723844
    • 2003-11-26
    • Roy KuipersMin Chul Kim
    • Roy KuipersMin Chul Kim
    • B66C23/18
    • H01M2/1077B66C23/201H01M10/06H01M10/4214
    • An apparatus for moving a battery relative to a shelf unit includes: (a) a motion generating unit presenting a first force in a first motion type at a first output locus; (b) a motion translating unit receiving the first force and translating the first force to present a second force related to the first force in a second motion type at a second output locus; (c) a battery engaging structure coupled with the second output locus for applying the second force to the battery; and (d) a substantially rigid frame supporting the motion generating unit and the motion translating unit and cooperating with the shelf unit to substantially fixedly situate the frame during the moving. The moving is effected in a generally vertical axis in response to the second force.
    • 一种用于相对于搁架单元移动电池的装置包括:(a)运动产生单元,在第一输出轨迹处呈现第一运动类型的第一力; (b)运动平移单元,其在第二输出轨迹处接收第一力并平移第一力以呈现与第一运动类型相关的第一力相关的第二力; (c)与第二输出轨迹相耦合的电池接合结构,用于向电池施加第二力; 和(d)支撑运动产生单元和运动平移单元的基本上刚性的框架,并与搁板单元配合,以在运动期间基本上固定地定位框架。 响应于第二力在大致垂直的轴线上进行移动。
    • 7. 发明授权
    • Battery container
    • 电池容器
    • US06187474B1
    • 2001-02-13
    • US09244555
    • 1999-02-03
    • Subhas C. ChalasaniMathew JosephRoy Kuipers
    • Subhas C. ChalasaniMathew JosephRoy Kuipers
    • H01M210
    • H01M2/1077H01M2/1005H01M2/1072H01M10/06
    • The present invention provides, in one embodiment, a battery container. In this particular embodiment, the container comprises a housing having side walls and a spacing ridge formed in and extending outwardly from the side walls. The spacing ridge forms a groove on an interior surface of the walls and has a slot formed in the spacing ridge at first and second opposing ends of the housing. In an alternate embodiment, the spacing ridge has a plurality of slots formed on opposing ends of the container. Typically, two adjacent slots are formed on each end such that opposing ends of the handle may engage the retaining pin through the slots. The container further comprises a handle and a retaining pin configured to be received within the interior groove adjacent the slot. The handle is cooperatively engageable with the retaining pin to provide a lifting point for the container when the retaining pin is received in the interior groove. The handle and the retaining pin work cooperatively together to provide a handle that can easily be removed from the container, if so desired.
    • 在一个实施例中,本发明提供一种电池容器。 在该特定实施例中,容器包括具有侧壁和形成在侧壁中并从侧壁向外延伸的间隔脊的壳体。 间隔脊在壁的内表面上形成凹槽,并且在壳体的第一和第二相对端处具有形成在间隔脊中的槽。 在替代实施例中,间隔脊具有形成在容器的相对端上的多个槽。 通常,在每个端部上形成两个相邻的狭槽,使得手柄的相对端部可以通过狭槽与保持销接合。 该容器还包括手柄和固定销,其被配置为容纳在与槽相邻的内槽内。 当保持销被接收在内部凹槽中时,手柄可与保持销配合地接合,以为容器提供提升点。 如果需要,手柄和保持销共同协作地提供可容易地从容器移除的把手。
    • 10. 发明授权
    • Battery Handle
    • 电池手柄
    • US5565283A
    • 1996-10-15
    • US445322
    • 1995-05-19
    • Subhas C. B. ChalasaniRoy KuipersMichael C. Steeves
    • Subhas C. B. ChalasaniRoy KuipersMichael C. Steeves
    • H01M2/10
    • H01M2/1005Y10S16/15Y10S294/903
    • In a battery handle two bands of webbed material are each arranged and threaded to independently engage a plurality of slots at opposing ends of a support housing in which a battery is enclosed. Each end includes six slots arranged in pairs of slots. The longitudinal/major axis of the two uppermost slots are at an angle to the horizontal and the major axis of the remaining four slob are substantially horizontal. In another aspect, the band of webbed material is threaded through two or more slots and the ends are joined together. Another technique loops the ends and expands the loop with a mechanical insert to lock it to the support housing.Many variations of the invention will be readily apparent to those skilled in the art which do not depart form the spirit and scope of the invention.
    • 在电池手柄中,两个带状材料带被布置和螺纹连接,以独立地接合电池被封闭在其中的支撑壳体的相对端处的多个狭槽。 每个端部包括六个槽,排列成成对的槽。 两个最上面的槽的纵向/长轴与水平方向成一角度,而剩下的四个槽的长轴基本上是水平的。 另一方面,网状材料带穿过两个或更多个槽,并且端部连接在一起。 另一种技术使端部旋转并用机械插入件将环路扩大以将其锁定到支撑壳体上。 本发明的许多变化对于本领域技术人员来说将是显而易见的,其不脱离本发明的精神和范围。