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    • 2. 发明申请
    • Content display for use with conveyor systems
    • 内容显示用于输送系统
    • US20110198199A1
    • 2011-08-18
    • US13029615
    • 2011-02-17
    • Stephen William ArmstrongMichael Samuel Lagana
    • Stephen William ArmstrongMichael Samuel Lagana
    • B65G17/34B23P11/00
    • B64F1/368B65G15/48B65G17/00B65G2207/04G09F19/22Y10T29/49716
    • Systems and methods for displaying content in a conveyor system are provided. A content displaying conveyor plate includes a base plate and an upper plate that is configured to be releasably coupled to the base plate. The upper plate can be configured to display content, for example content that is integral to the base plate, content that is disposed between the upper plate and the base plate, or any combination thereof. The upper plate can be coupled to the base plate via one or more connection members defined on the upper plate and/or the base plate. Any, number, such as all of the base plates of an existing conveyor system can be replaced with respective content displaying conveyor plates. The base plate of the content displaying conveyor plate can define one or more recesses, the recesses configured to receive an attachment member and/or other components of a carousel therein.
    • 提供了用于在输送机系统中显示内容的系统和方法。 内容显示传送板包括基板和被配置为可释放地联接到基板的上板。 上板可以被配置为显示内容,例如与基板成一体的内容,设置在上板和基板之间的内容,或其任何组合。 上板可以通过限定在上板和/或底板上的一个或多个连接构件联接到基板。 可以用相应的内容显示传送器板代替任何数量,例如现有输送机系统的所有基板。 内容显示传送器板的底板可以限定一个或多个凹部,凹部被配置成在其中容纳转盘的附接构件和/或其它部件。
    • 4. 发明申请
    • Ground Engineering Method
    • 地面工程方法
    • US20090110489A1
    • 2009-04-30
    • US12227101
    • 2007-05-01
    • Andrew William Armstrong
    • Andrew William Armstrong
    • E02D3/12
    • E02D27/26E02D3/026E02D3/123
    • A method of modifying geotechnically unsuitable soils (21) at a site (20) so as to render the site (20) capable of bearing a load (30) comprises steps involving soil stabilisation treatment and rolling dynamic compaction (42). A portion (40) of the site (20) is excavated down to a pre-determined depth x. Both the excavated site (40) and the soil excavated therefrom are subjected to soils stabilisation treatments, before the treated excavated soils is backfilled in layers (43), and subjected to both standard compaction (45) and rolling dynamic compaction (42). The result is a raft (32) of modified soils capable of supporting bearing pressures associated with traditional housing foundations (33, 35). The need to drive piles (25) into deep strata (24) with load-bearing capabilities, or to use other costly or environmentally unsound techniques to address the issue of geotechnically unsuitable or contaminated soils is thus avoided. The use of modified soil (32) to backfill the same site (40) from which it was excavated results in major costs savings and reduced environmental impact due to a substantial reduction in the number of lorry movements required, as compared to conventional ‘dig and dump’ techniques.
    • 在现场(20)改变土工技术不合适的土壤(21)以使得能够承载载荷(30)的部位(20)的方法包括涉及土壤稳定化处理和轧制动态压实的步骤(42)。 将场地(20)的一部分(40)挖掘到预定的深度x。 在经过处理的挖掘土壤回填(43)之前,挖掘的土地(40)和从其挖掘的土壤都进行土壤稳定处理,并进行标准压实(45)和轧制动态压实(42)。 其结果是能够支撑与传统住房基础相关的承受压力的改良土壤的筏子(32)(33,35)。 因此避免了将桩(25)驱动到具有承载能力的深层(24)或者使用其他昂贵的或环境不良的技术来解决岩土不适合或污染的土壤的问题的需要。 与传统的“挖掘”和“挖掘”相比,使用改性土壤(32)来回填与其进行挖掘的同一地点(40)导致重大的成本节约和减少的环境影响,因为大量减少所需的货车运动数量 转储技术
    • 7. 发明申请
    • Replacing a failing physical processor
    • 更换故障物理处理器
    • US20070079176A1
    • 2007-04-05
    • US11241709
    • 2005-09-30
    • William ArmstrongNaresh NayarGary Ricard
    • William ArmstrongNaresh NayarGary Ricard
    • G06F11/00
    • G06F11/203G06F9/5066G06F11/2025G06F11/2035
    • Replacing a failing physical processor in a computer supporting multiple logical partitions, where the logical partitions include dedicated partitions and shared processor partitions, the dedicated partitions are supported by virtual processors having assigned physical processors, and the shared processor partitions are supported by pools of virtual processors. The pools of virtual processors have assigned physical processors. Embodiments operate generally by assigning priorities to the dedicated partitions and to the pools of virtual processors; detecting a checkstop of a failing physical processor; retrieving the failing physical processor's state; replacing by a hypervisor the failing physical processor with a replacement physical processor assigned to a dedicated partition or pool, which dedicated partition or pool has the lowest priority among the priorities of the dedicated partitions and pools; and assigning the retrieved state of the failing physical processor as the state of the replacement physical processor.
    • 在支持多个逻辑分区(其中逻辑分区包括专用分区和共享处理器分区)的计算机中替换故障物理处理器,专用分区由具有分配的物理处理器的虚拟处理器支持,并且共享处理器分区由虚拟处理器池支持 。 虚拟处理器池分配了物理处理器。 实施例通常通过将优先级分配给专用分区和虚拟处理器池来进行操作; 检测故障物理处理器的检查停止; 检索故障物理处理器的状态; 由管理程序替换故障物理处理器,其中分配给专用分区或池的替换物理处理器,专用分区或池在专用分区和池的优先级中具有最低优先级; 以及将所述故障物理处理器的检索状态分配为所述替换物理处理器的状态。