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    • 5. 发明授权
    • Versatile wide opening vise
    • 多功能开口虎钳
    • US5224692A
    • 1993-07-06
    • US743771
    • 1991-08-12
    • Donald W. AndersonRobert C. Anderson
    • Donald W. AndersonRobert C. Anderson
    • B23Q1/28B23Q1/54
    • B23Q1/28B23Q1/545
    • A fast acting and adjustable vise is disclosed herein having an elongated base movably supporting a pair of jaws adjustable between opposing holding surfaces for releasably supporting small parts or workpieces. Manually rotatable wheels are operably coupled to each jaw for independent and separate movement along a linear path and a universal mounting device adjustably supports the vise on a supporting surface. In one form, one jaw of the pair includes a finger-operated resilient clamp for selectively and rapidly positioning the clamp to a desired location on the base.
    • 本文公开了一种快速作用和可调节的虎钳,其具有可移动地支撑在相对的保持表面之间可调节的一对夹爪的细长基座,用于可释放地支撑小部件或工件。 可手动旋转的轮可操作地联接到每个钳口,用于沿线性路径独立和分离的运动,并且通用安装装置可调节地将虎钳支撑在支撑表面上。 在一种形式中,该对的一个钳口包括用于选择性地并快速地将夹具定位到基座上的期望位置的手指式弹性夹具。
    • 7. 发明授权
    • Wearable communication device with contoured back
    • 带有轮廓背面的穿戴式通讯设备
    • US07844310B2
    • 2010-11-30
    • US11608875
    • 2006-12-11
    • Robert C. Anderson
    • Robert C. Anderson
    • H04M1/00
    • H04B1/385
    • An improved PDA-like portable electronic communication device includes a housing having a display screen on the front and a mounting surface that is contoured to generally conform to the shape of a user's forearm. In this way, the communication device can be comfortably and securely worn on a user's forearm so that it is constantly or immediately available for use. In example embodiments, the mounting surface is formed by the back side of the housing and is cylindrically concave or frustoconically concave. In other example embodiments, the device includes a mount to which the housing attaches in multiple positions, with the mount having a frustoconically concave back surface in one embodiment and with another embodiment additionally including mating cylindrically convex and concave surfaces of the mount and the housing.
    • 改进的PDA式便携式电子通信装置包括:具有在前面的显示屏幕的壳体和具有轮廓以使其大致符合用户前臂形状的安装表面。 以这种方式,通信装置可以舒适和牢固地佩戴在用户的前臂上,使得它不断地或立即可用于使用。 在示例性实施例中,安装表面由壳体的后侧形成并且是圆柱形凹形或截头圆锥形凹形的。 在其他示例性实施例中,该装置包括一个安装座,在一个实施例中,该壳体附接到多个位置,其中安装件具有截头圆锥形凹面后表面,另一个实施例另外包括安装座和壳体的配合的圆柱形凸起和凹形表面。
    • 8. 发明授权
    • Two-tier backup mechanism
    • 两层备份机制
    • US07197520B1
    • 2007-03-27
    • US10824091
    • 2004-04-14
    • Kevin C. MatthewsGuido WestenbergRobert C. AndersonDonald J. Stryker
    • Kevin C. MatthewsGuido WestenbergRobert C. AndersonDonald J. Stryker
    • G06F12/00G06F17/00
    • G06F11/1458G06F11/1451Y10S707/99952Y10S707/99953Y10S707/99955
    • System and method for performing two-tier backups in file systems without requiring Hierarchical Storage Management (HSM). A two-tier backup mechanism may perform first-tier backups of dynamic and candidate static data, and second-tier backups of candidate static data. Data is examined by the two-tier backup mechanism and, if the data qualifies as candidate static data, metadata is created for the data. Candidate static data and its metadata are copied to first-tier backups along with dynamic data, and are also copied to second-tier backups a specified number of times, after which the static data is reclassified as “static copied data”. Only metadata for static copied data is written to the first-tier backups. Embodiments may be implemented in file systems that do not support HSM and in file systems that support HSM, whether HSM is operational or not.
    • 在文件系统中执行两层备份而不需要分层存储管理(HSM)的系统和方法。 两层备份机制可以执行动态和候选静态数据的一级备份,以及候选静态数据的二级备份。 数据由两层备份机制检查,如果数据符合候选静态数据,则为数据创建元数据。 候选静态数据及其元数据与动态数据一起复制到一级备份,并将其复制到指定次数的二级备份,之后将静态数据重新分类为“静态复制数据”。 仅将静态复制数据的元数据写入第一层备份。 实施例可以在不支持HSM的文件系统以及支持HSM的文件系统中实现,HSM是否可操作。
    • 9. 发明授权
    • Gap filling for thermoplastic welds
    • 热塑性焊缝间隙填充
    • US5705795A
    • 1998-01-06
    • US467509
    • 1995-06-06
    • Robert C. AndersonStephen ChristensenTodd R. Peterson
    • Robert C. AndersonStephen ChristensenTodd R. Peterson
    • B29C65/36H05B6/10
    • B29C65/3644B29C65/368B29C66/301B29C66/524B29C66/5326B29C66/721B29C66/7212B29C66/73116B29C66/73921B29C66/836B29C66/71B29C66/72141B29C66/72143B29C66/7394
    • Thermoplastic welding is an emerging technology targeted at significantly reducing the cast of manufacture of aerospace structure by eliminating fasteners and the touch labor associated with fasteners to prepare, install, and inspect the assemblies. Thermoplastic welds, however, suffer from significant residual tensile strain caused by differences in the coefficient of thermal expansion between the carbon fiber reinforced composite laminates and the unreinforced weld. Holding fiber reinforcement to the weld using a structural susceptor which is a laminate of alternating layers of thermoplastic resin and fiber reinforcement sandwiching a conventional metal susceptor alleviates this strain. The structural susceptor can be peeled in selected locations to fill the gap between the laminates, eliminating costly profilometry of the faying surfaces and the associated problem of resin depletion where machining occurred to match the faying surfaces. The peeled susceptor is complementary in contour to the gap it will fill.
    • 热塑性焊接是一种新兴技术,其目标是通过消除紧固件和与紧固件相关的触摸工作来大幅度减少航空航天结构的制造,以准备,安装和检查组件。 然而,热塑性焊缝遭受由碳纤维增强复合层压板和非增强焊接之间的热膨胀系数的差异引起的显着的残余拉伸应变。 使用作为夹层常规金属基座的热塑性树脂和纤维增强剂的交替层的层压体的结构感受器将纤维增强物保持在该焊缝中,减轻了该应变。 结构感受体可以在选定的位置剥离以填补层压板之间的间隙,消除了拼接表面的昂贵轮廓测量以及相关的加工发生的树脂消耗问题以匹配拼接表面。 被剥离的感受器在轮廓上与其将填充的间隙互补。