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    • 74. 发明授权
    • Container structure for removal of vacuum pressure
    • 用于去除真空压力的容器结构
    • US08127955B2
    • 2012-03-06
    • US11704338
    • 2007-02-09
    • John DennerPaul KelleyDavid Melrose
    • John DennerPaul KelleyDavid Melrose
    • B65D1/02B65D1/44
    • B65D1/0276B65D79/005
    • A container has a longitudinal axis, and comprises an upper portion including an opening into the container, a sidewall portion extending from the upper portion to a lower portion, the lower portion including a base, and a pressure panel located in the lower portion substantially transversely to the longitudinal axis, the pressure panel being movable substantially along the longitudinal axis between an initial position and an inverted position to compensate for a change of pressure induced within the container. The pressure panel comprises an initiator portion and a control portion, the initiator portion adapted to move in response to the change of pressure prior to the control portion.
    • 容器具有纵向轴线,并且包括上部,该上部包括通向容器的开口,从上部延伸到下部的侧壁部分,下部包括基部,以及位于下部中的基本横向的压力板 压力面板可沿着纵向轴线在初始位置和倒置位置之间移动,以补偿在容器内引起的压力变化。 压力面板包括起动器部分和控制部分,启动器部分适于响应于控制部分之前的压力变化而移动。
    • 75. 发明申请
    • Process and a Device for Conveying Odd-Shaped Containers
    • 过程和输送奇形容器的装置
    • US20090218004A1
    • 2009-09-03
    • US12466472
    • 2009-05-15
    • Philip SheetsPaul KelleyJohn Denner
    • Philip SheetsPaul KelleyJohn Denner
    • B67C3/14B67C3/24
    • B65D1/0261B65G2201/0244B65G2201/0261
    • A process for efficiently conveying containers along a table-top conveying system includes the steps of temporarily securing a transfer stabilizing support (1a, 1b) to a bottom end of a formed container (14) so that the container can freely move along a production line using the table-top conveying system where the transfer stabilizing support has a bottom surface (2a, 2b) with an opening (4a, 4b), a sidewall (6a, 6b) extending substantially perpendicular to the bottom surface, and a ridge area (10b) surrounding the opening and inside the sidewall of the support; and after the container has gone through operations of the production line, the transfer stabilizing support is removed so that aesthetic qualities of the formed container shape are revealed.
    • 一种用于沿着台式输送系统有效地输送容器的方法包括以下步骤:将转移稳定支撑件(1a,1b)临时固定到成形容器(14)的底端,使得容器可以沿着生产线自由移动 使用台式输送系统,其中转印稳定支撑体具有带有开口(4a,4b)的底表面(2a,2b),基本上垂直于底表面延伸的侧壁(6a,6b)和脊区域 10b)围绕支撑件的开口和侧壁内部; 并且在容器经过生产线的操作之后,去除了转印稳定支撑体,从而显露出形成的容器形状的美观性。
    • 76. 发明申请
    • Semi-rigid collapsible container
    • 半刚性可折叠集装箱
    • US20070199916A1
    • 2007-08-30
    • US11704318
    • 2007-02-09
    • John DennerPaul KelleyDavid Melrose
    • John DennerPaul KelleyDavid Melrose
    • B65D90/02
    • B65D1/0223B65D79/005B65D2501/0036
    • A container for containing a heated liquid and having a longitudinal axis. The container comprises at least one substantially vertically folding vacuum panel portion disposed substantially transversely relative to the longitudinal axis, the vacuum panel portion adapted to compensate for vacuum pressure changes within the container caused by heating or cooling of a liquid contained within the container. The vacuum panel portion comprises an initiator portion and a control portion, with at least a portion of the control portion being more steeply inclined relative to the longitudinal axis than at least a portion of the initiator portion. The initiator portion causes the control portion to flex inwardly into the container. The pressure panel inverts vertically in a direction substantially parallel to the longitudinal axis.
    • 用于容纳加热液体并具有纵轴的容器。 容器包括至少一个基本垂直折叠的真空面板部分,其基本上相对于纵向轴线横向设置,真空面板部分适于补偿容器内容纳的液体的加热或冷却引起的容器内的真空压力变化。 真空面板部分包括引发部分和控制部分,其中控制部分的至少一部分相对于纵向轴线比起始部分的至少一部分更陡峭地倾斜。 引发部分使得控制部分向内弯曲到容器中。 压力面板在与纵轴大致平行的方向上垂直地反转。
    • 78. 发明授权
    • Grippable container
    • 可抓住的容器
    • US06273282B1
    • 2001-08-14
    • US09539359
    • 2000-03-31
    • Richard K. OggSheldon E. YouristMichael R. MooneyPaul Kelley
    • Richard K. OggSheldon E. YouristMichael R. MooneyPaul Kelley
    • B65D9002
    • B65D23/14B65D23/102B65D79/005
    • An ergonomically friendly container having hot-fill capabilities is disclosed. The container has a dome with grip surfaces that undergo controlled deformation for accommodating a portion of the volumetric shrinkage due to hot filling, capping and cooling. Preferably, a major portion of each grip surface is circumscribed by a brow rib which prevents unwanted dome distortion while permitting an amount of controlled vacuum absorption. In addition, the container body is provided with vacuum flex panels of at least two different sizes which enable the grip surfaces to be located close to the center of gravity of a filled container to provide balanced pouring of the contents from the container.
    • 公开了具有热填充能力的符合人体工程学的容器。 该容器具有一个具有抓握表面的圆顶,该表面经受受控变形以容纳由于热填充,封盖和冷却而产生的体积收缩的一部分。 优选地,每个抓握表面的主要部分由眉毛肋条限定,其可防止不必要的圆顶变形,同时允许一定量的受控真空吸收。 此外,容器主体设置有至少两种不同尺寸的真空柔性板,其使得抓握表面能够靠近填充的容器的重心定位,以提供容器从容器平衡地倾倒。
    • 79. 发明授权
    • Method for producing closed cell spherical porosity in spray formed
metals
    • 用于在喷射形成的金属中产生闭孔球形孔隙的方法
    • US5266099A
    • 1993-11-30
    • US927991
    • 1992-08-11
    • Paul Kelley
    • Paul Kelley
    • B22F3/11B22F3/115C22C1/10C23C4/12F28F13/00B22F7/04
    • B22F3/1125B22F3/115C22C1/1042C23C4/123F28F13/003B22F2003/1106B22F2998/00
    • Metal and metal alloy preforms having closed cell, spherical porosity are spray formed at high deposition rates by introducing blowing agents into the thixotropic semisolid deposition layer, within which gas formed in thermal decomposition reactions are trapped. Density reductions of nearly 30% were generated in a phosphor bronze matrix, using barium carbonate as the blowing agent. Hollow glass particles were produced in the same matrix alloy by injection of microsphere precursor frit containing sulfur. A simple Newtonian heat transfer model of agent heating in the spray predicts agent/matrix compatibility. Along with modest improvements in damping capacity, tensile and compressive properties were found to be equal or superior to powder metallurgy product at the same porosity levels.
    • 具有闭孔,球形孔隙率的金属和金属合金预制件通过将引发剂引入触变性半固体沉积层中,以高沉积速率喷射形成,其中在热分解反应中形成的气体被捕获。 使用碳酸钡作为发泡剂,在磷青铜基质中产生近30%的密度降低。 通过注入含硫的微球前体玻璃料,在相同的基质合金中生产中空玻璃颗粒。 喷雾剂中加热剂的简单牛顿传热模型预测了药剂/基质的相容性。 随着阻尼能力的适度改善,发现在相同孔隙率水平下,拉伸和压缩性能等于或优于粉末冶金产品。