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    • 1. 发明授权
    • Fiber-reinforced composite materials structures and methods of making
same
    • 纤维增强复合材料结构及其制造方法
    • US6103337A
    • 2000-08-15
    • US112493
    • 1998-07-09
    • Keith E. Burgess
    • Keith E. Burgess
    • B32B5/00B29C70/24B32B5/12
    • B29C66/43441B29B11/16B29C65/564B29C66/112B29C66/114B29C66/721B29C66/72141B29C70/24B29C66/71B29C66/7212B29L2031/003Y10T428/24033Y10T428/24174Y10T428/249923
    • Reinforcement preforms and methods for making same for use in fiber-reinforced composite materials structures are disclosed, in which the reinforcement preforms comprise first and second reinforcement preform elements which include strength reinforcement fibers that are in desired directional orientation. The first element has a cross-fiber surface which extends transverse of its constituent strength reinforcement fibers and is in contacting juxtaposition to a selected surface region of the second element, forming an abutment therebetween. Abutment strength reinforcing fibers, which may optionally be introduced in situ by a continuum of fibers, such as a yarn or thread, extend through at least a portion of said second element and its said selected surface region, the abutment, said cross-fiber edge surface, and into the first element substantially in the direction of orientation to its constituent strength fibers to which its cross-fiber surface is transverse.
    • 公开了用于制造纤维增强复合材料结构的增强预成型件及其制造方法,其中加强预成型件包括第一和第二加强预成型件元件,其包括处于期望的方向取向的强度增强纤维。 第一元件具有跨越其组成强度增强纤维横向延伸并且与第二元件的选定表面区域并列接触的交叉纤维表面,在其之间形成基台。 可以任选地通过纤维连续体如纱线或线原位引入的基台强度增强纤维延伸穿过所述第二元件及其所选择的表面区域的至少一部分,邻接,所述交叉纤维边缘 表面,并且基本上沿着其横向纤维表面的构成强度纤维的取向方向进入第一元件。
    • 2. 发明授权
    • Fluid separation devices and methods of making same
    • 流体分离装置及其制造方法
    • US5384044A
    • 1995-01-24
    • US116856
    • 1993-09-07
    • Keith E. Burgess
    • Keith E. Burgess
    • B01D45/08B01D46/00B01D46/10B01D46/12B01D46/24B01D27/06
    • B01D46/106B01D45/08B01D46/0012B01D46/0024B01D2265/06Y10S55/05Y10T29/49604
    • Embodiments of this invention include pressure differential barrier members for separating selected substances from fluid, gaseous and/or liquid, and methods of making same. They include separation material which, with respect to the fluid to be treated, is pervious and exhibits desired separation capabilities. They may also, at least in part, include material which is substantially impervious to the fluid. They include bridges spanning flow paths to form lateral flow paths, and they may also include flow paths that are unbridged. All flow paths through such embodiments are either through structural elements which themselves have desired separation capabilities or are occupied by separation material that is pervious to the fluid being treated and is of such desired characteristics. By this means, it is possible to finely control structural parameters of the device and therefore the results of the process of separation which are affected by them, such as the separation media surface area presented to the fluid, the volume of separation material through which the fluid may pass, and whether and the extent to which the fluid passes transversely through the separation material or flows linearly along relatively long channel passageways therein.
    • 本发明的实施例包括用于从液体,气体和/或液体中分离所选物质的压力差动阻挡件及其制造方法。 它们包括分离材料,其相对于待处理的流体是可渗透的并且具有期望的分离能力。 它们还可以至少部分地包括基本上不渗透流体的材料。 它们包括跨越流动路径以形成横向流动路径的桥梁,并且它们还可以包括未桥接的流动路径。 通过这些实施例的所有流动路径都是通过其本身具有期望的分离能力的结构元件或被可被渗透待处理的流体并且具有所需特征的分离材料占据。 通过这种方式,可以精细地控制装置的结构参数,并因此精细地控制其受到影响的分离过程的结果,例如提供给流体的分离介质表面积,分离材料的体积 流体可以通过,以及流体是否以及其横向通过分离材料的程度,或者通过其中较长的通道通道线性地流动。
    • 4. 发明授权
    • Yarn insertion mechanism
    • 纱线插入机构
    • US06196145B1
    • 2001-03-06
    • US09438242
    • 1999-11-12
    • Keith E. Burgess
    • Keith E. Burgess
    • D05C1518
    • D05B23/00D10B2505/02
    • The present invention is an apparatus for inserting yarns into a reinforcement material along their longitudinal path. The apparatus for moving yarn and for constraining yarn movement, such as yarn brakes, are each actuated at the appropriate time. The yarn is prevented from buckling by a hollow member of a diameter only slightly greater than the yarn, when the yarn is pushed on. The reinforcement material may be woven or non-woven fabrics, cellular foams, or combinations that may include fabrics, foams or air gaps. “Yarn” in this case is taken to include any textile yarn, monofilament, coated yarns, and the like.
    • 本发明是一种用于沿其纵向路线将纱线插入增强材料中的装置。 用于移动纱线和用于约束纱线运动的装置(例如纱线制动器)均在合适的时间被致动。 当纱线被推入时,纱线被直径仅略大于纱线的中空构件阻止。 增强材料可以是织造或非织造织物,泡沫泡沫或可以包括织物,泡沫或气隙的组合。 在这种情况下,“纱线”被认为包括任何纺织纱,单丝,包衣纱等。
    • 5. 发明授权
    • Fluid separation devices
    • 流体分离装置
    • US5141641A
    • 1992-08-25
    • US686797
    • 1991-04-17
    • Keith E. Burgess
    • Keith E. Burgess
    • B01D24/00
    • B01D24/001
    • Filters, catalytic converters and the like, for separating particulate matter and/or other constituents from a stream of gas or liquid so arranged that substantially all of the fluid passing through the filter must pass through separation material which permits the passage of the fluid therethrough while separating out and retaining the selected substances. Continuums of material are arranged parallel to each other in planar arrays, with periodic spacings between the continuums in each array. Such arrays are superimposed to form a "laminated" grouping, with each continuum in each array angularly oriented with respect to and in contact with the continuums in each next adjacent array which that continuum crosses. Internal distribution paths for the fluid thereby formed by the spacings between the continuums include passageways which extend laterally within each layer and cross-array or translaminar distribution channels produced by aggregations of intersecting paths of the lateral array channels. Selected translaminar channels are adapted as ingress channels, and others as egress channels. The translaminar channels are either left void, or occupied by separation material, or occupied by blocking material so that flow paths are created via which the fluid exiting the device has to have first passed through separation material. The flow paths may include selected among said ingress and egress channels, and separation material that forms either the contents of cross-array channels or that from which said continuums are formed, or both.
    • 过滤器,催化转化器等用于将颗粒物质和/或其它成分从气体或液体流中分离出来,使得基本上通过过滤器的所有流体必须通过允许流体通过其中的分离材料, 分离并保留所选择的物质。 连续材料在平面阵列中彼此平行布置,每个阵列中的连续体之间具有周期性间隔。 这样的阵列被叠加以形成“层叠”分组,其中每个阵列中的每个连续体相对于连续体交叉的每个下一个相邻阵列中的连续体角度地取向。 由此由连续体之间的间隔形成的流体的内部分配路径包括在每个层内横向延伸的通道和由侧向阵列通道的相交路径的聚集产生的交叉排列或平移分配通道。 所选择的译文信道被适配为入口信道,而其他信道被称为出口信道。 层状通道被留空,或由分离材料占据,或被阻塞材料占据,从而产生流动路径,流经设备的流体必须首先通过分离材料。 流路可以包括在所述入口和出口通道中选择的,以及形成交叉阵列通道的内容物或形成所述连续体的分离材料的分离材料,或两者。