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    • 5. 发明申请
    • BEVERAGE CONTAINER DEVICE
    • 饮料容器装置
    • US20140326731A1
    • 2014-11-06
    • US14331060
    • 2014-07-14
    • Tommy RaymusRobert Sinclair
    • Tommy RaymusRobert Sinclair
    • A47G19/22B65D51/18B65D81/32B65D1/24
    • A47G19/2272A47G2019/122B65D1/04B65D1/24B65D47/06B65D51/18B65D81/3205B65D2217/04
    • A beverage holding device comprising a container and a removably engageable lid. The container includes a partition extending between opposing sides of the sidewall of the container to define a plurality of separated cavities. The partition includes an edge surface forming an interior seal against a lower surface of the lid upon an engagement of the lid with the container for maintaining the plurality of cavities fluidly separated. A plurality of apertures in offset elevated positions above an upper surface of the lid are provided, with each communicating with a respective one of the plurality of cavities. The elevated and offset apertures provide a respective relief area to accommodate a projecting nose of a user during an engagement of the user's mouth with a respective aperture while tipping the container.
    • 一种饮料保持装置,包括容器和可拆卸地接合的盖子。 容器包括在容器的侧壁的相对侧之间延伸的隔板,以限定多个分离的空腔。 所述分隔件包括边缘表面,所述边缘表面在所述盖与所述容器接合时形成抵靠所述盖的下表面的内部密封件,用于保持所述多个腔体流体分离。 提供了在盖的上表面上方的偏移升高位置中的多个孔,每个孔与多个空腔中的相应一个连通。 升高和偏移的孔提供相应的释放区域,以在使用者的嘴与相应的孔接合期间容纳使用者的突出的鼻子,同时倾卸容器。
    • 7. 发明申请
    • Adaptive computing environment
    • 自适应计算环境
    • US20050108642A1
    • 2005-05-19
    • US10715765
    • 2003-11-18
    • Robert Sinclair
    • Robert Sinclair
    • G06F20060101G06F3/00
    • G06F9/44505H04M1/72569H04M2250/12
    • A method and system for adapting a computing device in response to changes in an environment surrounding the computing device, or in response to the user's stated preferences. The computing device includes one or more sensors that sense the environment. A changed characteristic of the environment is detected. A determination is made as to one or more settings to change in response to the changed characteristic. Then one or more of the settings are changed to cause the computing device to interact with the user in a different mode. A mode may include which inputs, outputs, and/or processes are used to communicate with the user. A mode may also include how an application formats output or receives input.
    • 一种用于响应于所述计算设备周围的环境的变化或者响应于所述用户所述的偏好来适配计算设备的方法和系统。 计算设备包括感测环境的一个或多个传感器。 检测到环境变化的特征。 确定响应于改变的特性而改变的一个或多个设置。 然后改变一个或多个设置以使计算设备以不同的模式与用户交互。 模式可以包括哪些输入,输出和/或处理被用于与用户通信。 模式还可以包括应用程序如何格式化输出或接收输入。
    • 8. 发明授权
    • Method for producing uniaxial tetragonal thin films of ternary
intermetallic compounds
    • 三元金属间化合物单轴四方薄膜的制备方法
    • US5603766A
    • 1997-02-18
    • US393560
    • 1995-02-23
    • Mark R. VisokayBruce M. LairsonRobert Sinclair
    • Mark R. VisokayBruce M. LairsonRobert Sinclair
    • C23C14/02C23C14/18C30B23/02G11B5/64G11B11/105H01F41/18H01F41/30C30B29/10
    • B82Y25/00B82Y40/00C23C14/025C23C14/18C30B23/002C30B23/02C30B29/52G11B11/10582G11B11/10586G11B5/65H01F10/123H01F41/18H01F41/301H01F10/3286
    • A method for making oriented thin films of a ternary intermetallic compound and such films having a tetragonal structure and generally uniaxial magnetic, optical, electronic, and mechanical properties, as well as a generally lower Curie temperature than oriented binary intermetallic films. The steps of the method involve selecting a substrate material for biasing the orientation of the ternary intermetallic compound and exhibiting no chemical reactiveness to the ternary intermetallic compound. Preferably, such substrate is a single crystal, such as MgO or Al.sub.2 O.sub.3, or an amorphous material such as pure SiO.sub.2, amorphous carbon, or glass. In a second step the substrate is heated to a temperature above 450.degree. C. and then, a first metal, a second metal, and a third metal are simultaneously deposited on the substrate material. The first metal and second metal are selected from among metals pairs including CoNi, CoFe, FeNi, and the third metal is selected from the group of metals consisting of Pd and Pt. The thin film formed is a ternary intermetallic compound exhibiting an L1.sub.0 crystal structure and the desired uniaxial properties. The method of the invention allows one to accurately control the relative amounts of the three metals.
    • 制备三元金属间化合物的取向薄膜的方法以及具有四方结构和通常单轴磁性,光学,电子和机械性能以及与定向二元金属间膜相比大致较低的居里温度的膜。 该方法的步骤包括选择用于偏置三元金属间化合物的取向并且对三元金属间化合物没有化学反应性的基板材料。 优选地,这种衬底是诸如MgO或Al 2 O 3的单晶,或者诸如纯SiO 2,无定形碳或玻璃的无定形材料。 在第二步骤中,将衬底加热到​​高于450℃的温度,然后在衬底材料上同时沉积第一金属,第二金属和第三金属。 第一金属和第二金属选自包括CoNi,CoFe,FeNi的金属对,第三金属选自Pd和Pt组成的金属组。 所形成的薄膜是显示出L10晶体结构和期望的单轴性质的三元金属间化合物。 本发明的方法可以精确地控制三种金属的相对量。
    • 10. 发明申请
    • Beverage Container Device
    • 饮料容器装置
    • US20140216959A1
    • 2014-08-07
    • US13761978
    • 2013-02-07
    • Tommy RaymusRobert Sinclair
    • Tommy RaymusRobert Sinclair
    • A47G19/22B65D25/08B65D45/16B65D1/04
    • A47G19/2272A47G2019/122B65D1/04B65D1/24B65D47/06B65D51/18B65D81/3205B65D2217/04
    • A beverage holding device comprising a container and a removably engageable lid. The container includes a partition extending between opposing sides of the sidewall of the container to define a plurality of separated cavities. The partition includes an edge surface forming an interior seal against a lower surface of the lid upon an engagement of the lid with the container for maintaining the plurality of cavities fluidly separated. A plurality of apertures in offset elevated positions above an upper surface of the lid are provided, with each communicating with a respective one of the plurality of cavities. The elevated and offset apertures provide a respective relief area to accommodate a projecting nose of a user during an engagement of the user's mouth with a respective aperture while tipping the container.
    • 一种饮料保持装置,包括容器和可拆卸地接合的盖子。 容器包括在容器的侧壁的相对侧之间延伸的隔板,以限定多个分离的空腔。 所述分隔件包括边缘表面,所述边缘表面在所述盖与所述容器接合时形成抵靠所述盖的下表面的内部密封件,用于保持所述多个腔体流体分离。 提供了在盖的上表面上方的偏移升高位置中的多个孔,每个孔与多个空腔中的相应一个连通。 升高和偏移的孔提供相应的释放区域,以在使用者的嘴与相应的孔接合期间容纳使用者的突出的鼻子,同时倾卸容器。