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    • 33. 发明申请
    • RFID AND PRODUCT LABELING INTEGRATED IN KNIT COMPOSITE TUBES FOR FLUID DELIVERY SYSTEM
    • RFID和产品标签集成在针对流体输送系统的复合管中
    • WO2014204765A1
    • 2014-12-24
    • PCT/US2014/042033
    • 2014-06-12
    • EATON CORPORATION
    • SCHOOLEY, Nicholas, ClancyMARETICH, David, EthanNEAL, Jon, WallaceSTATLER, Richard, LowellBREAY, Clifton, P.
    • B29C70/44B29C70/88B29C70/70F16L9/12F16L9/128B29L23/00
    • B29C70/446B29C70/70B29C70/882B29L2023/22F16L9/128F16L2201/60
    • The composite tube (10) comprises a tubular arrangement of knitted fiber (20, 100, 120, 140) having plurality of interlocking loops. The knitted pattern allows for variable electrical, mechanical and geometrical options. A matrix material (22) is applied over the knitted fiber pattern and is allowed to cure. The matrix material (22) may be applied by a vacuum bag molding process. The flexible knitted reinforcing layer (20, 100, 120, 140) allows use of an inflatable bladder (12) to hold the reinforcing layer in the desired shape, thereby facilitating tube (10) constructions of varying shapes and diameters. Continuous application of the matrix material (22) avoids overlapping seams that are prone to delamination. Identification and labeling (128, 130, 132) of the composite tube may be achieved with distinguishing knitted patterns (60, 62, 126) having different types and colors of knitted fibers within the knitted reinforcing layer. A clear or translucent matrix material (22) enables viewing of the underlying knitted patterns. Identification may also include RF ID tags (114) incorporated directly within the knitted reinforcing layer.
    • 复合管(10)包括具有多个互锁环的针织纤维(20,100,120,140)的管状布置。 针织图案允许可变的电气,机械和几何选项。 将基质材料(22)施加在针织纤维图案上并被固化。 基质材料(22)可以通过真空袋成型工艺施加。 柔性针织加强层(20,100,120,140)允许使用可充气气囊(12)将增强层保持在所需形状,从而便于具有不同形状和直径的管(10)构造。 基体材料(22)的连续应用避免了易于分层的重叠接缝。 复合管的识别和标记(128,130,132)可以通过在针织加强层内区分具有不同类型和颜色的针织纤维的针织图案(60,62,126)来实现。 透明或半透明的基质材料(22)能够观察下面的针织图案。 识别还可以包括直接结合在针织加强层内的RF ID标签(114)。
    • 40. 发明申请
    • HIGH STRAIGHTNESS ARROW AND METHOD OF MANUFACTURE
    • 高度直线和制造方法
    • WO2012074546A2
    • 2012-06-07
    • PCT/US2011/001916
    • 2011-11-16
    • ALDILA GOLF CORPORATION
    • CONNOLLY, Martin
    • F42B6/04B29C70/88
    • F42B6/04
    • The high straightness arrow in the present invention is designed to improve the straightness of the archery arrow by adopting new manufacturing technique and method. Chamber and post are made of dissimilar metals and the chamber includes a wall that creates an external housing and defines an internal airspace. Once the post with shaft is positioned through chamber, nuts are tightened securely, forming an assembly, to straighten post. Due to the different coefficients of thermal expansion of chamber and post, when they are heated simultaneously, the chamber expands more than the post, creating a natural tension along post which results in a near perfectly straight shaft. As the assembly cools, the post and chamber return to their original length, yet the shaft retains its straightened form and thus this manufacturing process yields an arrow shaft that is straighter than shafts made of the same materials but with a traditional manufacturing technique.
    • 本发明的高直线度箭头通过采用新的制造技术和方法来设计提高射箭的平直度。 室和柱由不同的金属制成,并且室包括形成外壳并且限定内部空域的壁。 一旦带有轴的柱通过室定位,螺母被牢固地拧紧,形成一个组件以拉直柱。 由于室和柱的热膨胀系数不同,当它们被同时加热时,室膨胀超过柱,从而产生沿柱的自然张力,导致近似完全直的轴。 当组件冷却时,柱和腔返回到其原始长度,但轴保持其矫直的形状,因此该制造过程产生比由相同材料制成的轴更直的箭头轴,但是具有传统的制造技术。