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公开(公告)号:US20070181775A1
公开(公告)日:2007-08-09
申请号:US11734856
申请日:2007-04-13
申请人: Michael Fick , James Sorensen
发明人: Michael Fick , James Sorensen
IPC分类号: B28B7/28
CPC分类号: B22D19/14 , B22C9/105 , B22D29/002 , C22C47/06 , C22C47/064 , C22C47/12 , C22C2204/00 , Y10T428/12333 , Y10T428/12465 , Y10T428/12486 , Y10T428/12993 , Y10T428/249927
摘要: Mold components comprising soluble cores, metal matrix composite articles, and methods of making metal matrix composite articles.
摘要翻译: 包含可溶性芯,金属基复合制品的模具成分,以及制造金属基复合材料制品的方法。
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公开(公告)号:US20050133188A1
公开(公告)日:2005-06-23
申请号:US10740299
申请日:2003-12-18
申请人: Michael Fick , James Sorensen
发明人: Michael Fick , James Sorensen
CPC分类号: B22D19/14 , B22C9/105 , B22D29/002 , C22C47/06 , C22C47/064 , C22C47/12 , C22C2204/00 , Y10T428/12333 , Y10T428/12465 , Y10T428/12486 , Y10T428/12993 , Y10T428/249927
摘要: Mold components comprising soluble cores, metal matrix composite articles, and methods of making metal matrix composite articles.
摘要翻译: 包含可溶性芯,金属基复合制品的模具成分,以及制造金属基复合材料制品的方法。
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公开(公告)号:US20120247312A1
公开(公告)日:2012-10-04
申请号:US13065844
申请日:2011-03-31
IPC分类号: F41H5/02
CPC分类号: F41H5/0421
摘要: A structural insert with a cellular core as a holder for filler materials, in combination with other dense or porous material types arranged in the structural insert, to achieve a desired shear strength and stiffness in desired locations. The insert having metal within any areas of open porosity and the insert capable of being used as a component in a composite system such as a light weight armor.
摘要翻译: 具有多孔芯作为填充材料的保持器的结构插入件,与布置在结构插入件中的其它致密或多孔材料类型相结合,以在期望的位置实现期望的剪切强度和刚度。 该插入件具有开放孔隙度的任何区域内的金属,该插入件能够用作复合系统中的组件,例如轻质装甲。
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公开(公告)号:US20160363418A1
公开(公告)日:2016-12-15
申请号:US14121210
申请日:2014-08-12
申请人: James Sorensen
发明人: James Sorensen
IPC分类号: F41H5/04
CPC分类号: F41H5/0421 , F41H5/0492
摘要: A ceramic armor is disclosed that utilizes a titanium frame assembly surrounding monolithic ceramic tiles combined with aluminum pressure infiltration. The aluminum pressure infiltration serves to “wet” the ceramic, bonding the ceramic to the titanium frame on the top, bottom, sides and interior of the frame assembly. After aluminum pressure infiltration at high temperature followed by cooling, this combination creates compressive stress in all directions surrounding the ceramic thereby enhancing localization of a blast/projectile hit to enhance the armors effectiveness. Even after damage due to a projectile hit, adjacent tiles retain their structural integrity, residual stress, and bond to the frame assembly.
摘要翻译: 公开了一种陶瓷装甲,其利用围绕与铝压力渗透结合的整体式瓷砖的钛框架组件。 铝压力渗透用于“陶瓷”,将陶瓷结合到框架组件的顶部,底部,侧面和内部的钛框架。 在铝压力在高温下渗透然后冷却之后,这种组合在陶瓷周围的所有方向上产生压应力,从而增强爆破/射弹撞击的定位以提高装甲效能。 即使在由于抛射物撞击造成的损坏之后,相邻的瓦片仍保持其结构完整性,残余应力并且结合到框架组件。
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公开(公告)号:US20160375593A1
公开(公告)日:2016-12-29
申请号:US14545834
申请日:2015-06-26
申请人: Richard Adams , James Sorensen
发明人: Richard Adams , James Sorensen
CPC分类号: B26B9/00 , B22F2998/10 , B22F2999/00 , B32B3/10 , B32B3/266 , B32B5/02 , B32B5/142 , B32B5/26 , B32B7/02 , B32B15/14 , B32B15/20 , B32B18/00 , B32B2260/021 , B32B2260/023 , B32B2260/04 , B32B2262/105 , B32B2307/50 , B32B2307/546 , B32B2307/72 , B32B2307/732 , C04B37/02 , C04B2237/36 , C04B2237/363 , C04B2237/38 , C04B2237/40 , C04B2237/402 , C04B2237/62 , C22C47/20 , B22F7/08 , B22F2003/247 , B22F2005/002 , B22F2207/01 , B22F2207/17
摘要: A composite knife made from layers of Metal Matrix Composite (MMC) is disclosed. It includes a middle layer of fibrous preform including a hard insert placed longitudinally at its periphery. The hard insert, after sharpening, represents the cutting blade portion of the composite knife. The composite knife further includes a carrier which forms the load bearing member of the cutting blade, as well as forming the integral handle of the composite knife. The carrier portion of the composite knife includes at least one top and at least one bottom layers of fibrous preform, sandwiching the middle layer that contains the cutting edge portion of the knife. A metallic material is infiltrated within the fibrous preforms and extends throughout the composite blade structure forming the MMC knife, the metallic material bonding the middle layer within the carrier, and bonding the top and bottom surface of the hard insert within the carrier.
摘要翻译: 公开了由金属基复合材料(MMC)层制成的复合刀。 它包括纤维预型体的中间层,其包括在其周边纵向放置的硬嵌件。 磨刀后的硬质刀片代表复合刀的刀片部分。 复合刀还包括形成切割刀片的承载构件的载体,以及形成复合刀的整体手柄。 复合刀的承载部分包括纤维预制件的至少一个顶部和至少一个底层,夹着包含刀的切割边缘部分的中间层。 金属材料渗透在纤维预成型件内并延伸穿过形成MMC刀的复合刀片结构,金属材料将中间层粘合在载体内,并将硬质插入物的顶表面和底表面粘结在载体内。
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公开(公告)号:US09718197B2
公开(公告)日:2017-08-01
申请号:US14545834
申请日:2015-06-26
申请人: Richard Adams , James Sorensen
发明人: Richard Adams , James Sorensen
CPC分类号: B26B9/00 , B22F2998/10 , B22F2999/00 , B32B3/10 , B32B3/266 , B32B5/02 , B32B5/142 , B32B5/26 , B32B7/02 , B32B15/14 , B32B15/20 , B32B18/00 , B32B2260/021 , B32B2260/023 , B32B2260/04 , B32B2262/105 , B32B2307/50 , B32B2307/546 , B32B2307/72 , B32B2307/732 , C04B37/02 , C04B2237/36 , C04B2237/363 , C04B2237/38 , C04B2237/40 , C04B2237/402 , C04B2237/62 , C22C47/20 , B22F7/08 , B22F2003/247 , B22F2005/002 , B22F2207/01 , B22F2207/17
摘要: A composite knife made from layers of Metal Matrix Composite (MMC) is disclosed. It includes a middle layer of fibrous preform including a hard insert placed longitudinally at its periphery. The hard insert, after sharpening, represents the cutting blade portion of the composite knife. The composite knife further includes a carrier which forms the load bearing member of the cutting blade, as well as forming the integral handle of the composite knife. The carrier portion of the composite knife includes at least one top and at least one bottom layers of fibrous preform, sandwiching the middle layer that contains the cutting edge portion of the knife. A metallic material is infiltrated within the fibrous preforms and extends throughout the composite blade structure forming the MMC knife, the metallic material bonding the middle layer within the carrier, and bonding the top and bottom surface of the hard insert within the carrier.
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公开(公告)号:US20070097421A1
公开(公告)日:2007-05-03
申请号:US11382926
申请日:2006-05-11
申请人: James Sorensen , David Alexander
发明人: James Sorensen , David Alexander
IPC分类号: G06F3/12
CPC分类号: G06F17/3028 , G06F17/30265
摘要: Digital images are captured on a digital camera, automatically formatted, and uploaded to a server for review and collaborative modifications. An on-line web gallery is automatically generated by the server whereby low resolution versions of the images are transferred to the server and appear in the gallery within seconds from capturing the images. Among other things, a viewer located remotely from a photographer can observe new images in the gallery in real time as they are captured, place a request for post-production modifications to selected images and download a high resolution version of selected images.
摘要翻译: 数字图像在数码相机上捕获,自动格式化,并上传到服务器进行审查和协同修改。 服务器会自动生成一个在线网络图库,从而将图像的低分辨率版本传输到服务器,并在数秒内出现在图库中,从捕获图像。 除了别的以外,远离摄影师的观众可以在被拍摄的时候实时地观看画廊中的新图像,向所选择的图像发出对后期制作修改的请求,并下载所选图像的高分辨率版本。
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公开(公告)号:US20160375648A1
公开(公告)日:2016-12-29
申请号:US14545835
申请日:2015-06-26
申请人: Richard Adams , James Sorensen
发明人: Richard Adams , James Sorensen
CPC分类号: B32B3/12 , B22D19/02 , B22D19/04 , B22D19/14 , B32B5/02 , B32B5/26 , B32B9/005 , B32B9/047 , B32B15/14 , B32B15/20 , B32B2262/103 , B32B2262/105 , B32B2264/101 , B32B2264/107 , B32B2264/12 , B32B2305/024 , B32B2307/50 , B32B2307/542 , B32B2307/56 , B32B2307/732 , B32B2311/00 , B32B2571/02 , B32B2607/00 , F41H5/0492
摘要: A structural insert according to the present invention can be utilized in a Metal Matrix Composite (MMC) structure such as an armor structure having one or more material layers with each material layer having at least one structural insert arranged along a common surface. Utilizing a polygonal or HoneyComb Core, a reinforcement material containing a fraction of high volume hollow microspheres with interior voids can be utilized and placed within the inserts cellular structure to decrease the weight of the armor system. Subsequent to metal infiltration, the metal encapsulates the micro-spheres within the cells of the cellular structure, forming pockets of micro-spheres therein. These encapsulated hollow microspheres comprise a ceramic or glass wall around an interior void having a wall thickness that reinforces the void wall surface. The encapsulating metal further bonds to the walls of the cellular structure increasing the crush strength of the cell wall. In one embodiment, having the entire cellular structure filled with micro-spheres, the combination of microsphere diameter, face-sheet type and thickness, and core thickness, combined with the increased bonding effect of the encapsulated spheres to the cell walls, has demonstrated superior energy absorption characteristics.
摘要翻译: 根据本发明的结构插入件可用于金属基复合材料(MMC)结构,例如具有一层或多层材料层的铠装结构,每个材料层具有沿公共表面布置的至少一个结构嵌件。 使用多边形或HoneyComb芯,可以使用含有一部分具有内部空隙的高体积中空微球的增强材料并将其放置在插入式细胞结构内以减小装甲系统的重量。 在金属渗透之后,金属将微球包封在细胞结构的细胞内,在其中形成微球穴。 这些包封的中空微球包括围绕具有加强空隙壁表面的壁厚的内部空隙的陶瓷或玻璃壁。 封装金属进一步结合到细胞结构的壁上,增加细胞壁的压碎强度。 在一个实施方案中,使整个细胞结构填充有微球,微球直径,面片类型和厚度以及芯厚度的组合以及封装的球体对细胞壁的增加的粘合效应已经表现出优异的 能量吸收特性。
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公开(公告)号:US20060225685A1
公开(公告)日:2006-10-12
申请号:US11447372
申请日:2006-06-06
申请人: Leland Hix , James Sorensen
发明人: Leland Hix , James Sorensen
IPC分类号: F01L1/14
CPC分类号: F01L1/146 , F01L2101/00 , F01L2103/00 , Y10T29/49295
摘要: In one embodiment, the invention comprises a polymer matrix pushrod comprising a composite rod having an annular collar affixed over each end portion of the composite rod and an endcap affixed at each end. The composite rod comprises a thermosetting polymer matrix and reinforcing fibers within the polymer matrix.
摘要翻译: 在一个实施例中,本发明包括聚合物基质推杆,其包括复合杆,复合杆具有固定在复合杆的每个端部上的环形套圈和固定在每个端部的端盖。 复合棒包括聚合物基质内的热固性聚合物基质和增强纤维。
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公开(公告)号:US20060065220A1
公开(公告)日:2006-03-30
申请号:US10950076
申请日:2004-09-24
申请人: Leland Hix , James Sorensen
发明人: Leland Hix , James Sorensen
IPC分类号: F01L1/04
CPC分类号: F01L1/146 , F01L2101/00 , F01L2103/00 , Y10T29/49295
摘要: In one embodiment, the invention comprises a polymer matrix pushrod comprising a composite rod having an annular collar affixed over each end portion of the composite rod and an endcap affixed at each end. The composite rod comprises a thermosetting polymer matrix and reinforcing fibers within the polymer matrix.
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