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    • 4. 发明授权
    • Adjustable refrigerator door shelf retainer
    • 可调冰箱门架保持架
    • US5160191A
    • 1992-11-03
    • US780709
    • 1991-10-18
    • James R. HollandCharles J. Hoffman
    • James R. HollandCharles J. Hoffman
    • F25D23/04
    • F25D23/04F25D2400/06
    • A horizontally adjustable retainer for a refrigerator door shelf is provided. The retainer is a unitary injection molded piece having an elongated vertical front wall and two vertical sidewalls which extend from the ends of the front wall in the same direction and substantially at right angles from the front wall. The top edge of each sidewall is provided with a resilient depressible projecting release integral to the retainer and having a plurality of spaced recesses for engaging the top edge of a pair of rectangular apertures provided in a refrigerator door liner for receiving and supporting the retainer. A plurality of spaced notches vertically aligned with the recesses are provided at the bottom edge of each sidewall for engaging the bottom edges of the apertures in the door liner. A notch and its associated recess at each sidewall cooperate to rigidly affix the retainer to the refrigerator door liner at one of various positions associated with each notch-recess pair. The retainer can be easily adjusted to accommodate items of varying widths which are supported on an associated shelf.
    • 提供了一种用于冰箱门架的可水平调节的保持器。 保持器是一体的注塑件,其具有细长的垂直前壁和两个垂直侧壁,其从前壁的端部沿与前壁大致相同的方向和基本上成直角地延伸。 每个侧壁的顶边设置有与保持器一体的弹性可压缩的突出释放件,并且具有多个间隔开的凹部,用于接合设置在冰箱门衬套中的一对矩形孔的顶部边缘,用于接收和支撑保持器。 在每个侧壁的底部边缘处设置有多个与凹部垂直对准的间隔开的凹口,用于接合门衬里中的孔的底部边缘。 在每个侧壁处的凹口及其相关联的凹部配合以将保持器刚性地附接到与每个凹口 - 凹槽对相关联的各个位置之一处的冰箱门衬垫。 可以容易地调节保持器以适应支撑在相关架上的宽度不同的物品。
    • 5. 发明授权
    • Multishell inertial confinement fusion target
    • 多壳惯性约束融合目标
    • US4477958A
    • 1984-10-23
    • US269286
    • 1981-06-01
    • James R. HollandRobert M. Del Vecchio
    • James R. HollandRobert M. Del Vecchio
    • H05H1/22B23P17/00G21B1/00
    • G21B1/19Y02E30/16Y10S376/916Y10T29/4981Y10T29/49888
    • A method of fabricating multishell fuel targets for inertial confinement fusion usage. Sacrificial hemispherical molds encapsulate a concentric fuel pellet which is positioned by fiber nets stretched tautly across each hemispherical mold section. The fiber ends of the net protrude outwardly beyond the mold surfaces. The joint between the sacrificial hemispheres is smoothed. A ceramic or glass cover is then deposited about the finished mold surfaces to produce an inner spherical surface having continuously smooth surface configuration. The sacrificial mold is removed by gaseous reaction accomplished through the porous ceramic cover prior to enclosing of the outer sphere by addition of an outer coating. The multishell target comprises the inner fuel pellet concentrically arranged within a surrounding coated cover or shell by fiber nets imbedded within the cover material.
    • 一种制造用于惯性约束融合使用的多壳燃料靶的方法。 牺牲半球形模具封装同心式的燃料芯片,其通过纤维网定位,拉伸横跨每个半球形模具部分。 网的纤维端向外突出超出模具表面。 牺牲半球之间的关节平滑。 然后在成品模具表面上沉积陶瓷或玻璃盖,以产生具有连续平滑表面构造的内球面。 在通过添加外涂层封闭外球之前,通过多孔陶瓷罩实现的气态反应去除牺牲模具。 多壳体目标包括通过嵌入在覆盖材料内的纤维网同心地布置在周围涂覆的盖或壳内的内燃料颗粒。
    • 6. 发明授权
    • Dynamic payment cards and related management systems and associated methods
    • 动态支付卡及相关管理系统及相关方法
    • US07319986B2
    • 2008-01-15
    • US10083445
    • 2001-10-19
    • C. Todd PraisnerJames R. Holland, IVRoy H. Kipp, Jr.Melissa T. BalbachWilliam R. Leiserowitz
    • C. Todd PraisnerJames R. Holland, IVRoy H. Kipp, Jr.Melissa T. BalbachWilliam R. Leiserowitz
    • G06Q40/00
    • G07F7/1008G06Q20/10G06Q20/102G06Q20/3552G06Q20/40G06Q20/403G07F7/08
    • Dynamic payment cards and related dynamic payment card management systems and associated methods are disclosed that allow for the efficient management of corporate purchasing needs. The dynamic payment cards can be traditional payment cards with card control settings that are dynamically managed. In addition, a dynamic card management system can automatically interface with card processor systems to dynamically modify these card control settings, and a purchasing management system or other request and approval workflow engine can provide an interface between a company and the dynamic card management system. More generally, an advantageous solution for purchasing management is disclosed that utilizes dynamically or actively managed approval parameters to help control transaction authorization determinations associated with purchasing mechanisms. These dynamic approval parameters can be generated and/or managed through the application of configurable company purchasing policies and rules, and these dynamic approval parameters can be stored, for example, by a processing system that makes authorization determinations when transactions are initiated using the purchasing mechanisms.
    • 公开了动态支付卡和相关动态支付卡管理系统及相关方法,以便有效地管理公司采购需求。 动态支付卡可以是具有动态管理的卡控制设置的传统支付卡。 此外,动态卡管理系统可以自动与卡处理器系统接口,以动态修改这些卡控制设置,而采购管理系统或其他请求和批准工作流引擎可以提供公司与动态卡管理系统之间的接口。 更普遍地,公开了一种用于采购管理的有利解决方案,其利用动态或主动管理的批准参数来帮助控制与购买机制相关联的交易授权确定。 可以通过应用可配置的公司采购政策和规则来生成和/或管理这些动态批准参数,并且这些动态批准参数可以例如由处理系统存储,当使用采购机制启动交易时进行授权确定 。
    • 7. 发明授权
    • Multishell inertial confinement fusion target
    • 多壳惯性约束融合目标
    • US4634567A
    • 1987-01-06
    • US521810
    • 1983-08-10
    • James R. HollandRobert M. Del Vecchio
    • James R. HollandRobert M. Del Vecchio
    • H05H1/22G21B1/00
    • G21B1/19Y02E30/16Y10S376/916
    • A method of fabricating multishell fuel targets for inertial confinement fusion usage. Sacrificial hemispherical molds encapsulate a concentric fuel pellet which is positioned by fiber nets stretched tautly across each hemispherical mold section. The fiber ends of the net protrude outwardly beyond the mold surfaces. The joint between the sacrificial hemispheres is smoothed. A ceramic or glass cover is then deposited about the finished mold surfaces to produce an inner spherical surface having continuously smooth surface configuration. The sacrificial mold is removed by gaseous reactions accomplished through the porous ceramic cover prior to enclosing of the outer sphere by addition of an outer coating. The multishell target comprises the inner fuel pellet concentrically arranged within a surrounding coated cover or shell by fiber nets imbedded within the cover material.
    • 一种制造用于惯性约束融合使用的多壳燃料靶的方法。 牺牲半球形模具封装同心式的燃料芯片,其通过纤维网定位,拉伸横跨每个半球形模具部分。 网的纤维端向外突出超出模具表面。 牺牲半球之间的关节平滑。 然后在成品模具表面上沉积陶瓷或玻璃盖,以产生具有连续平滑表面构造的内球面。 在通过添加外涂层封闭外球体之前,通过多孔陶瓷罩实现的气态反应除去牺牲模具。 多壳体目标包括通过嵌入在覆盖材料内的纤维网同心地布置在周围涂覆的盖或壳内的内燃料颗粒。