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    • 6. 发明授权
    • Stackable low depth bottle case
    • 可堆叠低深度瓶套
    • US5660279A
    • 1997-08-26
    • US384331
    • 1995-02-01
    • William P. AppsGerald R. Koefelda
    • William P. AppsGerald R. Koefelda
    • A47B20060101B65D20060101B65D1/24B65D21/04B65D71/70B65D21/00
    • B65D1/243B65D21/04B65D71/70B65D2501/24108B65D2501/24114B65D2501/24133B65D2501/24152B65D2501/24216B65D2501/24254B65D2501/24261B65D2501/2435B65D2501/24522B65D2501/24605B65D2501/24656B65D2501/24681B65D2501/24694
    • A stackable case for retaining and transporting bottles including outer side walls forming an outer shell having a longitudinal axis and a horizontal axis, a case bottom disposed substantially within the outer shell, and a plurality of supports for supporting the outer surfaces of the bottles and which, in combination with the outer shell and the case bottom, define a plurality of bottle retaining pockets. A first receiving structure extends above the height of a top surface of one of the side walls and has a first longitudinal recess and a first transverse recess for cross-stacking with an upper identical case by receiving a side wall of the upper identical case when the lower cross-stacking case is empty. A second receiving structure having a second longitudinal recess along the longitudinal axis of the case and a second transverse recess along an axis parallel to the transverse axis of the case is also provided in a preferred embodiment. Ribs corresponding to the location of the receiving structures are disposed on the bottom of the case such that the size of the openings in the bottom structure is reduced. The case also includes a handle structure which allows the bottle case to be manipulated with either a palm up or palm down orientation of the hand.
    • 一种用于保持和运输瓶子的可堆叠的壳体,包括形成具有纵向轴线和水平轴线的外壳的外侧壁,基本上设置在外壳内的壳体底部,以及用于支撑瓶子的外表面的多个支撑件, 与外壳和壳体底部结合,限定多个瓶保持袋。 第一接收结构在一个侧壁的顶表面的高度上延伸,并且具有第一纵向凹槽和第一横向凹槽,用于通过接收上部相同壳体的侧壁与上部相同的壳体进行交叉堆叠,当第 较低的交叉堆叠情况是空的。 在优选实施例中还提供了具有沿着壳体的纵向轴线的第二纵向凹部和沿着平行于壳体的横向轴线的轴线的第二横向凹部的第二接收结构。 对应于接收结构的位置的肋布置在壳体的底部上,使得底部结构中的开口的尺寸减小。 该壳体还包括一个手柄结构,该手柄结构允许用手掌向上或手掌向下操纵手提箱。
    • 7. 发明授权
    • Molded case for returnable beverage bottles
    • 可回收饮料瓶的成型箱
    • US4295576A
    • 1981-10-20
    • US89304
    • 1979-10-30
    • Rudolf F. Steinlein
    • Rudolf F. Steinlein
    • B65D1/24
    • B65D1/243B65D2501/24019B65D2501/2407B65D2501/24133B65D2501/24152B65D2501/24216B65D2501/24254B65D2501/24324B65D2501/2435B65D2501/24522B65D2501/24598B65D2501/24681
    • A bottle case integrally molded from thermoplastic resin has at least one separator column subdivided into partial pillars rising from the floor of the case for separating bottles in the case sufficiently to prevent breakage in handling and transportation. Each column is subdivided by a gap so that bottles can be accepted together with a carrier or minicase, with one internal wall of one carrier or minicase or one external wall of each of two carriers or minicases being slid into the gap of the column. The pillars have single-webbed profiled walls, the surface of the profiled wall facing the side walls of the box structure being part of side faces of the column and the other surface of the profiled wall being part of the gap configuration. The upper mouth of the gap can be a slot to facilitate insertion of the carrier or minicase and to locate and adjust its walls. Vertical reinforcement corrugations stabilize the pillars. A web of material of reduced length fills the gap between the facing edges of the pillars adjacent the floor. The pillars are anchored to a floor lattice by anchoring points which include at least points located on the outside of the pillars directly opposite inner reinforcement ribs.
    • 由热塑性树脂一体成型的瓶子壳体具有至少一个分离柱,其细分为从壳体的地板上升的部分支柱,用于在该壳体中分离瓶子,以足以防止操作和运输中断。 每列细分间隔,使得瓶子可以与载体或微型酶一起被接受,其中一个载体的一个内壁或细菌酶或两个载体或细菌酶的每个的一个外壁滑入柱的间隙。 支柱具有单纤网成型壁,成型壁的面对箱结构的侧壁的表面是柱的侧面的一部分,而成型壁的另一表面是间隙构型的一部分。 间隙的上口可以是槽,以便于载体或微型酶的插入并且定位和调节其壁。 垂直的钢筋波纹稳定了支柱。 减小长度的材料网填充邻近地板的支柱的相对边缘之间的间隙。 支柱通过固定点固定在地板格架上,锚定点至少包括位于直立在内部加强肋上的支柱外侧的点。