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    • 5. 发明授权
    • Convertible sleep shell
    • 可转换睡眠壳
    • US08424113B2
    • 2013-04-23
    • US12562848
    • 2009-09-18
    • Beth B. Sprole
    • Beth B. Sprole
    • A41D13/00
    • A47G9/064A47G9/086
    • A sleep shell is provided comprising a flexibly foldable sheet material having complementary engageable side enclosures enabled to surround at least a user's torso. The sheet material has aligned recessed neck openings to form a neck hole when folded and at least a pair of complementary fasteners engageable with one another and disposed substantially toward the top side of the sheet material. An arm opening is also provided disposed selectively between top and bottom of the sheet material. The shell can be used for sleeping or as a blanket and allows a user to become ambulatory while wearing it.
    • 提供了一种睡眠外壳,其包括柔性可折叠片材,其具有能够至少包围使用者躯干的互补的可接合侧罩。 片材具有对准的凹入的颈部开口,以在折叠时形成颈部孔,并且至少一对互补的紧固件可彼此接合并且基本上朝向片材的顶侧设置。 还设置有选择性地设置在片材的顶部和底部之间的臂开口。 外壳可以用于睡觉或毯子,并允许使用者在穿着时变得流动。
    • 9. 发明授权
    • Macrotexture map visualizing texture heterogeneity in polycrystalline parts
    • US11047812B2
    • 2021-06-29
    • US16530997
    • 2019-08-02
    • Advanced Manufacturing LLC
    • Dongsheng Li
    • G01N23/20G06T11/00G01N23/203G06K9/62G01N23/2206G06T11/20
    • This invention provides a method, system, and computer program to visualize texture (crystal orientation distribution) heterogeneity in polycrystalline aggregate part in large length scale. This is a critical representation step for microstructure characterization, useful in effective behavior simulation, risk analysis and hotspot identification. In contrast to orientation image map where each color component represents a crystal orientation, each color in this macrotexture map represents a set of texture. Different color represent different texture and similar texture shall have similar color. This method will provide a critical tool in evaluating texture heterogeneity of components, leading to a first-hand understanding of property heterogeneity and anisotropy. For an experienced user, these maps serve the same purpose in identifying high risk locations in the investigated component as medical imaging maps do for diagnosis purpose. This method will also serve as a starting point in mesoscale simulation with meshing sensitivity based on the texture heterogeneity. It will provide a bridge between texture characterization and behavior simulation of component with texture heterogeneity. This method will also offer a linkage between crystal plasticity simulation in small length scale and finite element/difference simulation in large length scale.