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    • 32. 发明申请
    • Poppet Valve Member
    • 提升阀构件
    • US20060196556A1
    • 2006-09-07
    • US11276591
    • 2006-03-07
    • Robert Johnson
    • Robert Johnson
    • F16K15/06
    • F16K15/063F16K27/0209Y10T137/1632Y10T137/6116Y10T137/7043Y10T137/7932Y10T137/8811
    • A poppet valve member includes a main body, and a cover portion disposed at the first end of the valve member. The cover portion is removable from the main body, the cover portion including a first seal disposed about an outer perimeter of the cover portion. The valve member includes a head portion disposed proximate the first end and behind the cover portion, the head portion including a second seal disposed about an outer perimeter defined by the head portion. A webbing portion is disposed between the cover portion and the head portion, the webbing portion including a fault structure to enable the cover portion to be removed from the main body and broken off from the head portion. The main body is formed of a molded material, and the first and second seals are formed of an overmold material molded onto the main body.
    • 提升阀构件包括主体和设置在阀构件的第一端处的盖部。 盖部分可从主体移除,盖部分包括围绕盖部分的外周布置的第一密封件。 阀构件包括靠近第一端设置在盖部分后面的头部,头部包括围绕由头部限定的外周设置的第二密封件。 一个织带部分设置在盖部分和头部之间,织带部分包括故障结构,以使得盖部分能够从主体移除并从头部断开。 主体由模制材料形成,并且第一和第二密封件由模制在主体上的包覆模制材料形成。
    • 35. 发明申请
    • Methods and apparatuses for noninvasive determinations of analytes
    • 非侵入性测定分析物的方法和装置
    • US20060178570A1
    • 2006-08-10
    • US11350916
    • 2006-02-09
    • M. RobinsonRussell AbbinkRobert Johnson
    • M. RobinsonRussell AbbinkRobert Johnson
    • A61B5/00G01J4/00
    • G01N21/21A61B5/14558G01N21/49G01N2021/4792
    • The present invention provides methods and apparatuses for accurate noninvasive determination of tissue properties. Some embodiments of the present invention comprise an optical sampler having an illumination subsystem, adapted to communicate light having a first polarization to a tissue surface; a collection subsystem, adapted to collect light having a second polarization communicated from the tissue after interaction with the tissue; wherein the first polarization is different from the second polarization. The difference in the polarizations can discourage collection of light specularly reflected from the tissue surface, and can encourage preferential collection of light that has interacted with a desired depth of penetration or path length distribution in the tissue. The different polarizations can, as examples, be linear polarizations with an angle between, or elliptical polarizations of different handedness.
    • 本发明提供用于精确无创确定组织性质的方法和装置。 本发明的一些实施例包括具有照明子系统的光学采样器,适于将具有第一偏振光的光传送到组织表面; 收集子系统,适于在与所述组织相互作用之后收集从所述组织传递的具有第二极化的光; 其中所述第一极化不同于所述第二极化。 极化的差异可以阻止从组织表面反射的光的收集,并且可以鼓励优先收集与组织中所需的穿透深度或路径长度分布相互作用的光。 作为示例,不同的极化可以是具有不同手性的角度或椭圆偏振之间的线性偏振。
    • 37. 发明申请
    • Radiation-curable coatings suitable for high-speed application onto optical fibers
    • 适用于光纤高速应用的可辐射固化涂层
    • US20060076534A1
    • 2006-04-13
    • US11284306
    • 2005-11-21
    • David SzumRobert Johnson
    • David SzumRobert Johnson
    • C09K3/00
    • C08F290/141C03C25/1065C08F222/1006C08F290/06C08F290/061C08F290/14C08F2222/1086C09D4/00C08F220/00C08F2220/302C08F2220/1891C08F2222/102C08F226/06C08F2222/1013C08F2222/1026
    • Inner and outer primary and matrix material compositions which, after curing, exhibit a high degree of uniformity after curing even when the coating is applied onto optical fibers at relatively high shear rates, e.g., such as those experienced at high optical fiber coating line speeds. These compositions are provided in significant part by the selective incorporation of at least one radiation-curable oligomer into the compositions. In particular, and with respect to inner primary coatings, the oligomer should be selected so that the value m of an uncured radiation-curable inner primary coating composition in the equation τ = K ⁢   ⁢ λ ⁢   ⁢ γ 1 + ( λ ⁢   ⁢ γ ) m ( I ) is advantageously equal to or greater than about 0.90.
    • 固化后的固化后的内外原料和基体材料组合物即使在以较高的剪切速率将涂料施加到光纤上(例如在高光纤涂布线速度下经历的那些)下也能在固化后表现出高度的均匀性。 这些组合物在很大程度上通过将至少一种可辐射固化的低聚物选择性掺入组合物来提供。 特别地,对于内部主要涂层,应该选择低聚物,使得在等式 tau = K lambda MI / MROW> I 有利的是等于或大于约0.90的/ MTABLE>
        • 39. 发明申请
        • Impact absorbing protective gear
        • 冲击吸收保护装置
        • US20060064801A1
        • 2006-03-30
        • US10952518
        • 2004-09-28
        • Robert JohnsonCharles Sereff
        • Robert JohnsonCharles Sereff
        • A41D13/015
        • A42B3/121A41D19/01523A41D31/0044A43B5/00A43B13/189A43B19/00
        • An impact absorbing protective gear for protecting an area of the wearer's body includes a pad, which is configured to generally conform to the area of the wearer's body, and a fluid containing body. The pad includes an inner surface and an outer surface, with the inner surface for facing the area of the wearer's body. The pad is formed from a resilient energy-absorbing material wherein the outer surface flexes inwardly when impacted by a force applied to the outer surface. The inner surface includes at least one recessed portion. The fluid containing body is located in the recessed portion and has a volume less than the volume of the recessed portion wherein the fluid containing body can deform in the recessed portion upon impact from the force to thereby increase the amount of energy absorbed by the protective gear.
        • 用于保护穿戴者身体的区域的冲击吸收保护装置包括:大致符合穿着者身体的区域的衬垫和流体容纳体。 垫包括内表面和外表面,内表面用于面对穿用者身体的区域。 衬垫由弹性能量吸收材料形成,其中外表面在被施加到外表面的力撞击时向内弯曲。 内表面包括至少一个凹部。 流体容纳体位于凹部中,并且具有小于凹部的体积的体积,其中流体容纳体在从力的冲击时可在凹部中变形,从而增加由保护齿轮吸收的能量的量 。