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    • 21. 发明申请
    • Composite armor plate and ceramic bodies for use therein
    • 复合铠装板和陶瓷体用于其中
    • US20070028757A1
    • 2007-02-08
    • US11187550
    • 2005-07-22
    • Michael Cohen
    • Michael Cohen
    • F41H5/02
    • F41H5/0414F41H5/0492
    • The invention provides a composite armor plate for absorbing and dissipating kinetic energy from high-velocity projectiles, the plate comprising a single internal layer of pellets which are bound and retained in plate form by an elastic material, substantially internally within the elastic material, such that the pellets are bound in a plurality of spaced-apart rows and columns, the pellets being made of ceramic material, and the pellets being substantially fully embedded in the elastic material so that the pellets form an internal layer, wherein the solidified material and the plate are elastic, and wherein a majority of each of the pellets is in direct contact with six adjacent pellets in the same layer to provide mutual lateral confinement therebetween, each of the pellets being characterized by a body having a substantially regular geometric cross-sectional area and first and second end faces, each of the end faces projecting from the body and having an outwardly decreasing cross-sectional area wherein the height of the end face disposed substantially opposite to an outer impact receiving major surface of the plate is less than 15% of the length of the diameter of the pellet body from which it projects.
    • 本发明提供了一种用于从高速弹丸吸收和耗散动能的复合装甲板,该板包括单个的内部颗粒,其内部基本上在弹性材料内部以弹性材料结合并保持为板状,使得 颗粒以多个间隔开的行和列结合,颗粒由陶瓷材料制成,并且颗粒基本上完全嵌入弹性材料中,使得颗粒形成内层,其中固化材料和板 并且其中大部分颗粒与相同层中的六个相邻颗粒直接接触以在其间提供相互的侧向约束,每个颗粒的特征在于具有基本上规则的几何横截面积的主体,以及 第一和第二端面,每个端面从主体突出并且具有向外减小的交叉 其特征在于,与所述板的外部冲击接收主表面大致相对的端面的高度小于其从其突出的球团体直径的长度的15%。
    • 22. 发明授权
    • Composite armor plate
    • 复合装甲板
    • US07117780B2
    • 2006-10-10
    • US10913591
    • 2004-08-05
    • Michael Cohen
    • Michael Cohen
    • F41H5/02
    • F41H5/0414F41H5/023F41H5/0492
    • The invention provides a composite armor plate for absorbing and dissipating kinetic energy from high-velocity projectiles, the plate comprising a single internal layer of pellets which are bound and retained in plate form by an elastic material, substantially internally within the elastic material, such that the pellets are bound in a plurality of spaced-apart rows and columns, the pellets being made of a material selected from the group consisting of ceramic material glass and sintered refractory material, and the pellets being substantially fully embedded in the elastic material so that the pellets form an internal layer, characterized in that a majority of each of the pellets in direct contact with four diagonally-adjacent pellets in the same layer to provide mutual lateral confinement therebetween and is retained in spaced-apart relationship relative to pellets in the same row and pellets in the same column by the elastic material.
    • 本发明提供了一种用于从高速弹丸吸收和耗散动能的复合装甲板,该板包括单个的内部颗粒,其内部基本上在弹性材料内部以弹性材料结合并保持为板状,使得 颗粒以多个间隔开的行和列结合,颗粒由选自陶瓷材料玻璃和烧结耐火材料的材料制成,并且颗粒基本上完全嵌入弹性材料中,使得颗粒 颗粒形成内层,其特征在于,每个颗粒中的大多数颗粒与同一层中的四个对角相邻的颗粒直接接触,以在它们之间提供相互的侧向约束,并且相对于相同排中的颗粒以间隔的关系保持 并通过弹性材料在同一列中的丸粒。
    • 24. 发明授权
    • Foveated wide-angle imaging system and method for capturing and viewing wide-angle images in real time
    • 移动广角成像系统和实时拍摄和观看广角图像的方法
    • US07084904B2
    • 2006-08-01
    • US10262292
    • 2002-09-30
    • Zicheng LiuMichael Cohen
    • Zicheng LiuMichael Cohen
    • H04N5/225H04N7/00H04N13/02
    • H04N7/142H04N5/232H04N5/23238H04N5/2628
    • The present invention includes a foveated wide-angle imaging system and method for capturing a wide-angle image and for viewing the captured wide-angle image in real time. In general, the foveated wide-angle imaging system includes a foveated wide-angle camera system having multiple cameras for capturing a scene and outputting raw output images, a foveated wide-angle stitching system for generating a stitch table, and a real-time wide-angle image correction system that creates a composed warp table from the stitch table and processes the raw output images using the composed warp table to correct distortion and perception problems. The foveated wide-angle imaging method includes using a foveated wide-angle camera system to capture a plurality of raw output images, generating a composed warp table, and processing the plurality of raw output images using the composed warp table to generate a corrected wide-angle image for viewing.
    • 本发明包括一种用于拍摄广角图像并实时观看拍摄的广角图像的移动广角成像系统和方法。 通常,移动广角成像系统包括具有用于捕捉场景并输出原始输出图像的多个相机的移动广角相机系统,用于生成针迹表的移动广角拼接系统和实时宽 角图像校正系统,其从针迹表创建组合的经线表,并使用组合的经线表处理原始输出图像以校正失真和感知问题。 移动广角成像方法包括使用移动广角相机系统来捕获多个原始输出图像,生成组合的经线表,以及使用组合的经线表处理多个原始输出图像, 角度图像进行观看。
    • 25. 发明授权
    • Real-time wide-angle image correction system and method for computer image viewing
    • 实时广角图像校正系统及计算机图像查看方法
    • US07058237B2
    • 2006-06-06
    • US10186915
    • 2002-06-28
    • Zicheng LiuMichael Cohen
    • Zicheng LiuMichael Cohen
    • G06K9/36G09G5/00H04N5/225
    • G06K9/00228G06T3/0062G06T5/006
    • The present invention includes a real-time wide-angle image correction system and a method for alleviating distortion and perception problems in images captured by wide-angle cameras. In general, the real-time wide-angle image correction method generates warp table from pixel coordinates of a wide-angle image and applies the warp table to the wide-angle image to create a corrected wide-angle image. The corrections are performed using a parametric class of warping functions that include Spatially Varying Uniform (SVU) scaling functions. The SVU scaling functions and scaling factors are used to perform vertical scaling and horizontal scaling on the wide-angle image pixel coordinates. A horizontal distortion correction is performed using the SVU scaling functions at and at least two different scaling factors. This processing generates a warp table that can be applied to the wide-angle image to yield the corrected wide-angle image.
    • 本发明包括一种实时广角图像校正系统和一种减轻由广角摄像机拍摄的图像中的失真和感知问题的方法。 通常,实时广角图像校正方法从广角图像的像素坐标生成变形表,并将经线表应用于广角图像,以产生校正的广角图像。 校正使用包括空间变化均匀(SVU)缩放函数的参数化的翘曲函数类来执行。 SVU缩放函数和缩放因子用于对广角图像像素坐标执行垂直缩放和水平缩放。 使用SVU缩放函数和至少两个不同的缩放因子执行水平失真校正。 该处理产生可应用于广角图像以产生校正广角图像的经线表。
    • 30. 发明授权
    • Composite armor panel
    • 复合装甲板
    • US06408734B1
    • 2002-06-25
    • US09673013
    • 2000-10-06
    • Michael Cohen
    • Michael Cohen
    • F41H502
    • F41H5/0414F41H5/023F41H5/0492
    • The invention provides a composite armor plate (4) for absorbing and dissipating kinetic energy from high velocity, armor-piercing projectiles, as well as from soft-nosed projectiles, the plate comprising a single internal layer of high density ceramic pellets (6), characterized in that the pellets are arranged in a single layer of adjacent rows and columns, wherein a majority of each of the pellets (6′) is in direct contact with at least four adjacent pellets (6″) and each of the pellets are substantially cylindrical in shape with at least one convexly-curved end face, further characterized in that spaces formed between the adjacent cylindrical pellets are filled with a material (10) for preventing the flow of soft metal from impacting projectiles through the spaces, the pellets (6) and material (10) being bound and retained in plate form by a solidified material (8), wherein the solidified material (8) and the plate material are elastic.
    • 本发明提供了一种用于从高速度,穿甲弹射体以及软弹丸吸收和耗散动能的复合装甲板(4),该板包括单个内层的高密度陶瓷球粒(6), 其特征在于,所述颗粒被布置在单层相邻的行和列中,其中每个颗粒(6')中的大部分与至少四个相邻的颗粒(6“)直接接触,并且每个颗粒是 基本上圆柱形的形状具有至少一个凸形弯曲的端面,其特征还在于,在相邻的圆柱形颗粒之间形成的空间填充有材料(10),用于防止软金属流动通过空间撞击射弹,颗粒( 6)和材料(10)通过固化材料(8)结合并保持为板形,其中固化材料(8)和板材料是弹性的。