광학식 촉각센서
    41.
    发明公开
    광학식 촉각센서 失效
    광학식촉각센서

    公开(公告)号:KR1020030040398A

    公开(公告)日:2003-05-22

    申请号:KR1020037002118

    申请日:2001-08-30

    CPC classification number: G01L1/247 G06F3/042 G06F3/0425

    Abstract: 광학식 촉각센서로 색, 즉 광스펙트럼을 이용하는 여러 채널의 센싱을 도입하는 것으로 면의 각 점에 복수자유도의 정보를 얻는 것이 가능한 촉각센서를 제공한다. 촉각부와 촬상수단을 구비한 광학식 촉각센서로서, 그 촉각부는 투명 탄성체와 그 탄성체내에 설치된 복수의 마커(marker)군으로 이루어지며, 각 마커군은 각각 다수의 유색마커로 구성되며, 상이한 마커군을 구성하는 마커군은 매군이 서로 상이한 색을 구비하며, 그 탄성체에 물체가 접촉되는 경우 그 유색 마커의 진무를 상기 촬상수단으로 촬영하도록 구성되어 있다. 상기 마커군은 서로 상이한 공간적 배열을 갖도록 하는 것이 바람직하다.

    Abstract translation: 本发明涉及一种触觉传感器,其能够通过向光学触觉传感器引入使用颜色或光谱的多通道感测来获得表面上每个点处的多个自由度的信息。 光学触觉传感器配备有触觉部分和成像装置,触觉部分包括透明弹性体和设置在弹性体内部的多组标记,每个标记组由多个彩色标记构成,标记 构成每个组具有不同颜色的不同标记组,以及当物体接触由成像装置拍摄的弹性体时彩色标记的行为。 优选; 标记组具有相互不同的空间排列。 <图像>

    압력 측정용 재료
    42.
    发明公开
    압력 측정용 재료 有权
    压力测量材料

    公开(公告)号:KR1020100054796A

    公开(公告)日:2010-05-25

    申请号:KR1020107002794

    申请日:2008-06-27

    CPC classification number: G01L1/247 H05K1/0269 H05K3/1233 Y10T428/254

    Abstract: Disclosed is a material for the measurement of a pressure, which comprises a plastic substrate, a color former layer comprising an electron-releasing colorless dye precursor and a color developer layer comprising an electron-accepting compound, and which can develop a color by utilizing the color-developing reaction between the electron-releasing colorless dye precursor and the electron-accepting compound, wherein the electron-releasing colorless dye precursor is enclosed in a microcapsule having an urethane bond, wherein at least one of the electron-accepting compounds is a metal salicylate having a substituent, and wherein the microcapsule meets the requirement represented by the following formula: δ/D = 1.0 x 10to 2.0 x 10[wherein δ represents a number average wall thickness (μm) of the microcapsule; and D represents a volume median diameter (μm) of the microcapsule ].

    Abstract translation: 公开了用于测量压力的材料,其包括塑料基材,包含电子发射性无色染料前体的显色剂层和包含电子接受性化合物的显色剂层,并且可以通过利用 电子发射性无色染料前体与电子接受性化合物之间的显色反应,其中将电子发射性无色染料前体封入具有氨基甲酸酯键的微胶囊中,其中至少一种电子接受性化合物为金属 具有取代基的水杨酸酯,并且其中所述微胶囊满足由下式表示的要求:δ/ D = 1.0×10 -2.0×10 [其中δ表示微胶囊的数均壁厚(μm) D表示微胶囊的体积中值粒径(μm)。

    해저 파이프라인의 부설 중 파이프라인의 응력 계측장치 및응력 계측방법
    43.
    发明公开

    公开(公告)号:KR1020100052197A

    公开(公告)日:2010-05-19

    申请号:KR1020080111119

    申请日:2008-11-10

    Inventor: 장영식

    CPC classification number: G01L1/242 F16L1/12 F16L2101/30 G01L1/247

    Abstract: PURPOSE: Stress measurement apparatus and method of a pipeline under the attachment of the pipeline at the bottom of the sea are provided to be able to attach in a stable range of acceptable stress by obtaining the information on the stress applied to a pipeline in real time. CONSTITUTION: A stress measurement apparatus of a pipeline during the attachment of the pipeline at the bottom of the sea comprises a detection pipe(20). The detection pipe is separated from the working line to arrange at the inside of the pipeline attaching toward the bottom of the sea. The detection pipe includes a plurality of sensors in the longitudinal and circumferential directions. The sensors are formed in order to measure the extension amount or the contraction amount on the curvature change of the detection pipe depending on the curvature change of the attaching pipeline. The sensor includes an optical fiber sensor.

    Abstract translation: 目的:提供在海底管道附着下的管道应力测量装置和方法,通过实时获取施加在管道上的应力信息,能够在可接受的应力稳定范围内附着 。 构成:在海底附近的管道附近的管道的应力测量装置包括检测管(20)。 检测管与工作线分离,配置在靠近海底的管道内部。 检测管在纵向和圆周方向上包括多个传感器。 形成传感器,以便根据附接管道的曲率变化来测量检测管的曲率变化的延伸量或收缩量。 传感器包括光纤传感器。

    鈍的衝撃を示す方法
    46.
    发明专利
    鈍的衝撃を示す方法 审中-公开
    BLUNT IMPACT指标方法

    公开(公告)号:JP2016136127A

    公开(公告)日:2016-07-28

    申请号:JP2015143116

    申请日:2015-07-17

    Abstract: 【課題】航空機のような構造物に対する高エネルギー鈍的衝撃をモニタするか、又は示すための改善された方法を提供する。 【解決手段】航空機のような構造物に対する高エネルギー鈍的衝撃のモニタすること、又は示すことを支援するために、流体で満たされた中空微小粒を使用する、システム及び方法である。多数の微小粒6が、基材2(例えばテープ又はアップリケ)の表面に適用されたコーティングに接着4されるか、又はコーティングの中に埋設され、かかる基材は次いで、モニタされるべき構造物の表面に接着されうる。微小粒は、一又は複数の特定の圧力閾値で破裂するよう設計される。 【選択図】図1

    Abstract translation: 要解决的问题:提供改进的系统和方法,用于监测或指示对结构如飞机的高能量钝影响。解决方案:提供了系统和方法,其使用流体填充的中空微球来辅助监测或指示高能量 对飞机等结构造成的钝器影响。 多个微球体(6)可以粘附(4)或嵌入施加在基底(2)的表面(例如,带或贴花)的涂层中,并且基底可以粘附到表面 的监测结构。 微球设计为在一个或多个指定的压力阈值下破裂。选择图:图1

    Two-dimensional pressure sensor
    48.
    发明专利
    Two-dimensional pressure sensor 失效
    二维压力传感器

    公开(公告)号:JPS6141938A

    公开(公告)日:1986-02-28

    申请号:JP16291784

    申请日:1984-08-03

    Inventor: NOMURA AKIRA

    CPC classification number: G01L1/247 G01L5/228

    Abstract: PURPOSE:To obtain a two-dimensional pressure sensor which has an expanded pressure detection range by arranging a light source and a photodetecting element in a pair in two dimensions and making light incident on a photodetecting element through a reflecting film. CONSTITUTION:This sensor consists of a light source substrate 1, light source 2, sensor substrate 3, photodetecting element 4, flexible part 10, light reflecting film 20, etc. Then, the light source 2 and photodetecting element 4 are paired with each other, and the element 4 is provided at the periphery of a light passing area when the substrate 3 is transparent or at the periphery of a light passing hole 5 formed in the substrate 3 so as to face the light source 2 when opaque. The flexible part 10 is formed by laminating plural transparent elastic bodies 11-13 which differ in hardness. The light reflecting film 20, on the other hand, is preferably hard to deform in the plate thickness direction and large in expansibility along plate surfaces. Radiant light 6 from the light source 2 passes through the light passing area 5 and flexible part 10 of the substrate 3 and is reflected by the film 20 to enter the element 4, which performs photoelectric conversion to generate an electric signal.

    Abstract translation: 目的:通过二维布置一对光源和光电检测元件,通过反射膜使光入射到受光元件上,获得具有扩大压力检测范围的二维压力传感器。 构成:该传感器由光源基板1,光源2,传感器基板3,光电检测元件4,柔性部10,光反射膜20等构成。然后,光源2和光检测元件4相互配对 并且当基板3是透明的时,元件4设置在光通过区域的周边,或者设置在形成在基板3中的光通过孔5的周边,以便在不透明时面向光源2。 柔性部10通过层叠多个硬度不同的透明弹性体11-13而形成。 另一方面,光反射膜20优选在板厚方向上难以变形,并且沿板表面的扩展性大。 来自光源2的辐射光6通过光通过区域5和基板3的柔性部分10,并被膜20反射,进入进行光电转换以产生电信号的元件4。

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