IN-MOLD TRANSFER FILM WHICH CHANGES ITS COLOR ACCORDING TO A TEMPERATURE AND WHICH HAS A SCENT-EMITTING FUNCTION AND METHOD FOR MANUFACTURING SAME
    35.
    发明申请
    IN-MOLD TRANSFER FILM WHICH CHANGES ITS COLOR ACCORDING TO A TEMPERATURE AND WHICH HAS A SCENT-EMITTING FUNCTION AND METHOD FOR MANUFACTURING SAME 有权
    根据温度变化并具有发光功能的其它颜色的模内转印膜及其制造方法

    公开(公告)号:US20140230717A1

    公开(公告)日:2014-08-21

    申请号:US14344218

    申请日:2012-09-21

    申请人: LG Hausys, Ltd.

    发明人: Jae Bong Hwang

    IPC分类号: G01K11/14

    摘要: An in-mold transfer film includes a release layer, a scent-emitting hard layer, a color-changing print layer and an adhesive layer formed sequentially in one direction on one side of a base layer, wherein the scent-emitting hard layer includes aromatic microcapsules, and the color-changing print layer changes its color according to the temperature. An method for manufacturing an in-mold transfer film includes the following steps: forming a release layer on one side of a base layer; forming a scent-emitting hard layer on an upper surface of the release layer; forming a print primer layer on an upper surface of the scent-emitting hard layer; forming a color-changing print layer formed on an upper surface of the print primer layer; forming an adhesive primer layer on an upper surface of the color-changing print layer; and forming an adhesive layer on an upper surface of the adhesive primer layer.

    摘要翻译: 模内转移膜包括在基底层的一侧上沿一个方向依次形成的剥离层,香味发光硬质层,变色印刷层和粘合层,其中发光硬质层包括芳族化合物 微胶囊,并且变色印刷层根据温度改变其颜色。 制造模内转印膜的方法包括以下步骤:在基层的一侧上形成剥离层; 在剥离层的上表面上形成香味发射硬质层; 在发光硬质层的上表面上形成印刷底漆层; 形成在所述印刷底漆层的上表面上的变色印刷层; 在变色印刷层的上表面上形成粘合底漆层; 以及在粘合底漆层的上表面上形成粘合剂层。

    Fluorescence standard, and the use thereof
    36.
    发明授权
    Fluorescence standard, and the use thereof 有权
    荧光标准及其用途

    公开(公告)号:US08704158B2

    公开(公告)日:2014-04-22

    申请号:US12937009

    申请日:2009-04-17

    摘要: The invention concerns fluorescence standards, and in particular fluorescence standards for calibrating optical detectors. According to the invention, a fluorescent mineral or mixtures of minerals are employed for use as a fluorescence standard. The fluorescent mineral can be a naturally occurring mineral or a synthetically produced mineral. Preferred fluorescent minerals for use as fluorescence standards are corundum, fluorite, turquoise, amber, zircon, zoisite, iolite or cordierite, spinel, topaz, calcium fluorite, sphalerite or zincblende, calcite or calcspar, apatite, scheelite or calcium tungstate, willemite, feldspars, sodalite, a uranium mineral, a mineral containing Al3+, and in particular ruby and sapphire.

    摘要翻译: 本发明涉及荧光标准,特别是用于校准光学检测器的荧光标准。 根据本发明,荧光矿物或矿物质的混合物用作荧光标准。 荧光矿物可以是天然存在的矿物质或合成产生的矿物质。 用作荧光标准的优选的荧光矿物是刚玉,萤石,绿松石,琥珀,锆石,堇青石,石英或堇青石,尖晶石,黄玉,萤石,闪锌矿或闪锌矿,方解石或钙质,磷灰石,白钨矿或钨酸钙,硅锌矿,长石 ,钠盐,铀矿物质,含有Al3 +的矿物,特别是红宝石和蓝宝石。

    Temperature indicating paint
    38.
    发明授权
    Temperature indicating paint 有权
    温度指示油漆

    公开(公告)号:US06864096B2

    公开(公告)日:2005-03-08

    申请号:US10226077

    申请日:2002-08-23

    IPC分类号: C09D5/26 G01N21/78

    摘要: An irreversible temperature indicating paint comprises 29 wt % to 37 wt % cobalt chromite spinel, alumina, gold purple and frit, 35 wt % to 45 wt % acrylic resin and 20 wt % to 30 wt % silicone resin excluding solvent. The solvent comprises a mixture of 80% 1-methoxy-2-propanol and 20% dipropylene glycol monomethyl ether. A particular irreversible temperature indicating paint comprises 34.9 wt % cobalt chromite spinel, alumina, gold purple and frit, 42.5 wt % acrylic resin and 22.6 wt % silicone resin excluding solvent. The irreversible temperature indicating paint has four or more colour changes in the temperature range 500° C. to 900° C. The irreversible temperature indicating paint is used to determine the temperatures to which various parts of turbine blades, turbine vanes or other component are subjected in operation of a gas turbine engine.

    摘要翻译: 不可逆温度指示油漆包括29重量%至37重量%的亚铬酸钴尖晶石,氧化铝,金紫色和玻璃料,35重量%至45重量%的丙烯酸树脂和20重量%至30重量%的除了溶剂的硅树脂。 溶剂包括80%1-甲氧基-2-丙醇和20%二丙二醇单甲醚的混合物。 特定的不可逆温度指示涂料包括34.9重量%的亚铬酸钴尖晶石,氧化铝,金紫和玻璃料,42.5重量%的丙烯酸树脂和22.6重量%的除树脂之外的有机硅树脂。 不可逆温度指示涂料在500℃至900℃的温度范围内具有四种或更多种颜色变化。不可逆温度指示涂料用于确定涡轮叶片,涡轮叶片或其他组分的各个部分受到的温度 在燃气轮机的运行中。

    Structure with variable emittance
    39.
    发明申请
    Structure with variable emittance 审中-公开
    具有可变发射度的结构

    公开(公告)号:US20040155154A1

    公开(公告)日:2004-08-12

    申请号:US10473775

    申请日:2004-03-15

    IPC分类号: B64G001/22

    摘要: A structure is disclosed which comprises a thermochromic layer located between a front layer and a back layer, wherein the front layer is a dielectric and is in contact with the thermochromic layer, and wherein the back layer is reflective to infrared (IR) radiation. Below the thermochromic transition temperature of the thermochromic layer, the front layer and thermochromic layer are IR-transparent, so the structure is highly reflective to IR radiation because of the presence of the reflective back layer. Consequently, the structure has a low emittance in this state. Above the thermochromic transition temperature of the thermochromic layer, the device structure becomes IR-absorbent, so the reflectance of the structure is reduced and hence its emittance is increased. The front layer index-matches with the thermochromic layer above the transition temperature of the thermochromic layer to enable radiation to enter the thermochromic layer.

    摘要翻译: 公开了一种结构,其包括位于前层和背层之间的热致变色层,其中前层是电介质并与热致变色层接触,并且其中背层为红外(IR)辐射。 在热致变色层的热变色温度以下,前层和热变色层是IR透明的,因此由于反射背层的存在,结构对IR辐射具有高反射性。 因此,该结构在该状态下具有低发射度。 在热致变色层的热变色温度以上时,器件结构变为IR吸收剂,因此结构的反射率降低,因此其发射率增加。 前层折射率与热变色层​​的热变色层的转变温度之上匹配,以使辐射进入热致变色层。

    Rare earth optical temperature sensor
    40.
    发明授权
    Rare earth optical temperature sensor 失效
    稀土光学温度传感器

    公开(公告)号:US06746149B1

    公开(公告)日:2004-06-08

    申请号:US09323650

    申请日:1999-06-01

    IPC分类号: G01K1100

    摘要: A rare earth optical temperature sensor is disclosed for measuring high temperatures. Optical temperature sensors exist that channel emissions from a sensor to a detector using a light pipe. The invention uses a rare earth emitter to transform the sensed thermal energy into a narrow band width optical signal that travels to a detector using a light pipe. An optical bandpass filter at the detector removes any noise signal outside of the band width of the signal from the emitter.

    摘要翻译: 公开了用于测量高温的稀土光学温度传感器。 存在光学温度传感器,其将使用光管的传感器发射到探测器。 本发明使用稀土发射器将感测到的热能转换成使用光管行进到检测器的窄带宽光信号。 在检测器处的​​光学带通滤波器去除了来自发射器的信号的带宽之外的任何噪声信号。