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    • 1. 发明授权
    • Boring tool
    • US11045880B2
    • 2021-06-29
    • US16628138
    • 2018-07-11
    • Gary Richard Adams
    • Gary Richard Adams
    • B23B29/034B23B27/10B23B29/02
    • There is provided a undercutting boring tool (10) comprising a bar body (11). A lost motion link consists of a spring (26) selectively compressed by a lost motion rod (27) having a lost motion slot (33) spaced from a drive pin (34). An operating rod portion (36) has a trunnion body (37) at its front end having a pin (41) adapted to engage the lost motion slot (33). A tool carrier (42) forms a pair of spaced flat tines (43) and forms a bearing surface (44) in the bight. The upper tine (43) and the bearing surface (44) section are slotted at (45) to allow the passage of a control link (46). Apertures (47) in the tines (43) engage pins (50) on the trunnion body (37). The bar of a generally H-shaped tool assembly (52) comprises a bearing surface (53) running in the bearing surface (44). A crank portion (54) is connected to the control link (46) via crank pin (55). Drive pins (61) and (62) engage the tool assembly (52) with the end face of the bar body (11) providing positive engagement resisting rotational forces in use. The arrangement allows for post-insertion rotation of the tool assembly (52) from an aligned to a transverse (working) position before engagement of the drive pins (61) and (62).
    • 3. 发明申请
    • Method of producing metal matrix composite(MMC) with uniform surface layers
    • 具有均匀表面层的金属基复合材料(MMC)的制备方法
    • US20150096708A1
    • 2015-04-09
    • US14120702
    • 2014-06-18
    • Richard AdamsSarly Pino
    • Richard AdamsSarly Pino
    • B22D19/00B32B37/10
    • B22D19/0081B22D19/00B22D19/02B32B3/26B32B9/005B32B9/007B32B9/047B32B15/00B32B15/14B32B15/20B32B2250/03B32B2250/40B32B2255/205B32B2262/105B32B2311/00
    • A method of producing a Metal Matrix Composite (MMC) with uniform surface layers is disclosed. First, a low volume fraction compressible discontinuous ceramic fiber paper is set on the base of a mold cavity. Next, an array of reinforcement preform(s) (1×1,2×2, 4×4, 2×8, etc) are set in the mold on top of the ceramic fiber paper. A top layer of ceramic fiber paper is next placed on the array of reinforcement preforms and the mold cover seals the mold. The reinforcement porous preform(s) are held to the center of the mold cavity when the sealed mold compresses the top and bottom layers of ceramic fiber paper. The ceramic fiber paper exerts an equal and opposite force on the reinforcement preform(s) within the closed mold centering the preform(s) within the mold cavity. The mold cavity is next infiltrated under pressure with molten metal allowing for metal to penetrate into any open porosity of the ceramic fiber paper, reinforcement preform(s), and areas within the mold cavity that contain open spaces. Subsequent to molten metal infiltration, the aluminum rich surface layers are equal thickness on both sides of the reinforcement preform(s).
    • 公开了一种制备具有均匀表面层的金属基复合材料(MMC)的方法。 首先,将低体积分数的可压缩的不连续的陶瓷纤维纸设置在模腔的底部。 接下来,在陶瓷纤维纸的顶部的模具中设置加强预成型体(1×1,2×2,4×4,2×8等)的排列。 陶瓷纤维纸的顶层接下来放置在加强预成型件的阵列上,并且模具盖密封模具。 当密封模具压缩陶瓷纤维纸的顶层和底层时,加强多孔预成型件被保持在模腔的中心。 陶瓷纤维纸在封闭模具内的加强预成型件上施加相等且相反的力,使预成型件在模腔内定心。 模具腔随后在压力下渗入熔融金属,允许金属渗透到陶瓷纤维纸,加强预成型件以及模具腔中包含敞开空间的区域中的任何开孔。 在熔融金属浸渗之后,富铝表面层在加强预成型件的两侧具有相等的厚度。
    • 4. 发明申请
    • Vortex Flux Generator
    • 涡流助熔发电机
    • US20140265643A1
    • 2014-09-18
    • US14181834
    • 2014-02-17
    • Richard Adams
    • Richard Adams
    • H02N11/00
    • H02N11/002
    • A method and apparatus for generating electricity by electromagnetic induction, using a magnetic field modulated by the formation, dissipation, and movement of vortices produced by a vortex material such as a type II superconductor. Magnetic field modulation occurs at the microscopic level, facilitating the production of high frequency electric power. Generator inductors are manufactured using microelectronic fabrication, in at least one dimension corresponding to the spacing of vortices. The vortex material fabrication method establishes the alignment of vortices and generator coils, permitting the electromagnetic induction of energy from many vortices into many coils simultaneously as a cumulative output of electricity. A thermoelectric cycle is used to convert heat energy into electricity.
    • 一种通过电磁感应发电的方法和装置,使用由诸如II型超导体的涡流材料产生的涡流的形成,消散和运动调制的磁场。 磁场调制发生在微观层面,便于生产高频电力。 发电机电感器使用微电子制造制造,至少一维对应于涡流的间距。 涡流材料制造方法建立了涡流和发电机线圈的对准,允许将许多涡流的能量电磁感应成多个线圈,作为累积的电力输出。 热电循环用于将热能转换成电能。
    • 6. 发明授权
    • System, method, and apparatus for smoothing of edges in images to remove irregularities
    • 用于平滑图像边缘以消除不规则性的系统,方法和装置
    • US08559746B2
    • 2013-10-15
    • US12204760
    • 2008-09-04
    • Dale Richard Adams
    • Dale Richard Adams
    • G06K9/40
    • G06T5/002G06T3/403G06T5/50G06T7/13G06T2207/20192G06T2207/20221
    • System, method, and apparatus for smoothing of edges in images to remove irregularities are disclosed. In one aspect of the present disclosure, a method of image processing includes, identifying an edge in an image having an associated set of edge characteristics, determining the associated set of edge characteristics, and applying a low pass filter to a pixel of the edge based on the associated set of edge characteristics to generate a second image based on the image, wherein the edge in the image is smoothed in the second image. The method further includes generating a third image which is a blend of the original image and the second (edge-smoothed) image based on the associated set of edge characteristics.
    • 公开了用于平滑图像中的边缘以去除不规则性的系统,方法和装置。 在本公开的一个方面,图像处理的方法包括:识别具有相关联的边缘特征集合的图像中的边缘,确定相关的边缘特征集合,以及将低通滤波器应用于基于边缘的像素 在所述相关联的边缘特征集合上基于所述图像生成第二图像,其中所述图像中的边缘在所述第二图像中被平滑化。 该方法还包括基于相关联的边缘特征集合生成第三图像,其是原始图像和第二(边缘平滑)图像的混合。
    • 7. 发明授权
    • Method of producing a hybrid tile metal matrix composite armor
    • 混合瓦片金属基复合材料装甲的生产方法
    • US08528457B2
    • 2013-09-10
    • US13385104
    • 2012-02-02
    • Richard Adams
    • Richard Adams
    • F41H5/04B22D19/04
    • F41H5/0421
    • A Method of Producing a hybrid tile metal matrix composite armor is disclosed. First, dense ceramic plates are placed within the mold cavity and may rest on spacer(s) that separate the bottom surface of the ceramic plates from the base of the mold cavity to create a space therebetween. The plates are further positioned within the mold cavity to create a controlled space between any adjacent plates. A second set of spacers may be placed on the plates top surface to create a space between the mold cavity cover and the ceramic plates top surface. A plurality of ceramic plates and spacers may also be stacked into multiple layers according to the shape of the mold cavity and desired ballistic resistance. The mold cavity is next infiltrated with liquid metal under pressure forming a hybrid metal matrix composite structure with an encapsulating aluminum rich skin.
    • 公开了一种生产混合瓦片金属基复合材料装甲的方法。 首先,将致密的陶瓷板放置在模腔内,并且可以搁置在将陶瓷板的底表面与模腔的基部分离以在其间形成空间的间隔件上。 板进一步定位在模腔内,以在任何相邻板之间产生受控空间。 可以将第二组间隔件放置在板顶表面上以在模腔盖和陶瓷板顶表面之间形成空间。 多个陶瓷板和间隔物也可以根据模腔的形状和期望的防弹性层叠成多层。 模具腔随后在压力下渗入液态金属,形成具有密封铝丰富皮肤的混合金属基质复合结构。
    • 8. 发明授权
    • Edge detection
    • 边缘检测
    • US08446525B2
    • 2013-05-21
    • US13153230
    • 2011-06-03
    • Dale Richard Adams
    • Dale Richard Adams
    • H04N7/01H04N11/20
    • H04N7/012H04N5/142
    • A technique for deinterlacing an interlaced video stream is disclosed. A embodiment of a method includes calculating a pixel using edge detection, calculating a pixel using vertical interpolation, calculating a pixel using weaving, calculating a confidence level, calculating a motion value, blending the edge pixel calculation with the vertical interpolation calculation to generate a first output pixel calculation, the blending being based on the confidence level, and blending the first output pixel calculation with the weaving calculation to generate a second output pixel calculation, the blending being based on the motion value.
    • 公开了一种用于去隔行隔行视频流的技术。 一种方法的实施例包括使用边缘检测来计算像素,使用垂直内插计算像素,使用编织计算像素,计算置信度,计算运动值,将边缘像素计算与垂直内插计算相混合,以产生第一 输出像素计算,所述混合基于置信水平,并且将所述第一输出像素计算与所述织造计算混合以生成第二输出像素计算,所述混合基于所述运动值。
    • 10. 发明授权
    • Engine using hydrogen as a fuel
    • 使用氢气作为燃料的发动机
    • US08250850B2
    • 2012-08-28
    • US13352799
    • 2012-01-18
    • Richard AdamsCarol A. Becker
    • Richard AdamsCarol A. Becker
    • F02C5/02F02C3/14C07C1/00B05D7/00
    • F01D1/32F02C3/22F02C5/00
    • A pollution-free propulsion engine includes a rotating arm, a hollow axle defining a fuel delivery chamber, and hydrogen and oxygen sources. The rotating arm is formed with a detonation chamber, an opening and two tubular ducts therebetween. The axle is inserted into the opening. A pair of holes is formed in the axle to establish paths of fluid communication from the fuel delivery chamber through the ducts and into the detonation chamber as the rotating arm turns. The hydrogen source comprises a thin palladium binding layer deposited onto an aluminum sheet. Hydrogen molecules that are trapped in the binding layer are released, and the hydrogen is fed into the delivery chamber, through one duct and into the detonation chamber. At the same time, oxygen is delivered into the detonation chamber through the other duct, and the oxygen-hydrogen combination is detonated to release energy, which is converted into mechanical energy.
    • 无污染的推进发动机包括旋转臂,限定燃料输送室的中空轴,以及氢和氧源。 旋转臂形成有爆震室,开口和两个管状管道。 轴插入开口。 在该轴上形成一对孔,以便在旋转臂转动时建立从燃料输送室通过管道并进入爆炸室的流体连通路径。 氢源包括沉积在铝片上的薄的钯结合层。 被捕获在结合层中的氢分子被释放,并且氢气通过一个管道进入输送室并进入引爆室。 同时,通过另一个管道将氧气输送到爆轰室,并且引发氧 - 氢组合以释放能量,从而将其转化为机械能。