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    • 61. 发明申请
    • MEMORY STICK HAVING A USB PORT
    • 具有USB端口的记忆棒
    • US20060023433A1
    • 2006-02-02
    • US10901223
    • 2004-07-29
    • Chih Lin
    • Chih Lin
    • H05K7/02
    • H05K5/0278G06K19/07732
    • A memory stick includes a plastic shell, an elongated metal casing mounted in the plastic shell and having a front extension exposed to the outside of the plastic shell for insertion into a USB socket of a computer, a circuit board mounted inside the elongated metal casing and having a USB connector suspended in the front extension of the elongated metal casing, a locating frame mounted inside the metal casing to support the circuit board, and an end cap capped on the rear end of the circuit board and inserted with the circuit board into the rear end of the hollow plastic shell.
    • 记忆棒包括塑料外壳,安装在塑料外壳中的细长金属外壳,并具有暴露于塑料外壳外部的前延伸部分,用于插入计算机的USB插座,安装在细长金属外壳内部的电路板, 具有悬挂在细长金属外壳的前延伸部中的USB连接器,安装在金属外壳内部以支撑电路板的定位框架,以及封装在电路板的后端上的端盖,并将电路板插入 中空塑料外壳的后端。
    • 62. 发明申请
    • Ternary and multi-nary iron-based bulk glassy alloys and nanocrystalline alloys
    • 三元和多元铁基块状玻璃合金和纳米晶合金
    • US20050263216A1
    • 2005-12-01
    • US11138287
    • 2005-05-27
    • Tsung ChinChih Lin
    • Tsung ChinChih Lin
    • H01F1/153
    • C22C45/02H01F1/15325H01F1/15333
    • Disclosed in this invention is a family of ternary and multi-nary iron-based new compositions of bulk metallic glasses which possess promising soft magnetic properties, and the composition selection rules that lead to the design of such new compositions. The embodiment alloys are represented by the formula MaXbZc, where M represents at least one of ferromagnetic elements such as iron and may partly be replaced by some other substitute elements; X is an element or combinations of elements selected from those with atomic radius at least 130% that of iron and in the mean time is able to form an M-rich eutectic; and Z is an element or combinations of elements selected from semi-metallic or non-metallic elements with atomic radius smaller than 86% that of iron and in the meantime is able to form an M-Z eutectic; a, b, c are the atomic percentage of M, X, Z, respectively, and a+b+c=100%. When 1%
    • 在本发明中公开了一种具有期望的软磁性质的块状金属玻璃的三元和多元铁基新组合物族,以及导致这种新组合物的设计的组成选择规则。 本实施方式的合金由式M代表其中M表示铁磁性元素如铁中的至少一种,并且可以 部分由其他替代要素代替; X是选自原子半径至少为铁的130%的元素或元素的组合,并且同时能够形成富M的共晶; Z是选自半金属或非金属元素的元素或元素的组合,其原子半径小于铁的86%,同时能够形成M-Z共晶; a,b,c分别为M,X,Z的原子百分数,a + b + c = 100%。 当1%
    • 64. 发明授权
    • Optimal material pair for metal face seal in earth-boring bits
    • 钻孔中金属表面密封的最佳材料对
    • US5791421A
    • 1998-08-11
    • US692939
    • 1996-08-06
    • Chih Lin
    • Chih Lin
    • E21B10/22E21B10/25E21B10/24
    • E21B10/25
    • An earth-boring bit has a bit body, at least one cantilevered bearing shaft, including a base and a cylindrical journal bearing surface extending inwardly and downwardly from the bit body, and at least one cutter mounted for rotation on the cylindrical journal bearing surface of the bearing shaft. A seal assembly is disposed between the cylindrical journal bearing surface and the cutter proximally to the base of the cantilevered bearing shaft. The seal assembly includes at least one rigid seal ring having a seal face in contact with a second seal face. A selected one of the seal faces is at least partially formed of a hard ceramic type material with the other seal face being formed of a relatively softer material to provide improved wear resistance for the seal assembly.
    • 一个钻头具有一个位体,至少一个悬臂轴承轴,包括一个底座和一个从钻头体向内和向下延伸的圆柱形轴颈轴承表面,以及至少一个刀片,其安装成用于在圆柱形轴颈轴承表面上旋转 轴承轴。 密封组件设置在圆柱形轴颈轴承表面和切割器之间的靠近悬臂轴承轴的底部。 密封组件包括至少一个具有与第二密封面接触的密封面的刚性密封环。 所选择的一个密封面至少部分地由硬陶瓷型材料形成,另一个密封面由相对较软的材料形成,以为密封组件提供改进的耐磨性。
    • 67. 发明授权
    • Metal face seal for an earth-boring bit
    • 用于钻孔的金属表面密封
    • US07413037B2
    • 2008-08-19
    • US11226948
    • 2005-09-15
    • Chih LinDon Quy NguyenGregory L. RicksTerry J. Koltermann
    • Chih LinDon Quy NguyenGregory L. RicksTerry J. Koltermann
    • E21B10/22E21B10/25F16J15/22
    • E21B10/25
    • A metal face seal for an earth boring drill bit where the drill bit has a bit body, at least one bit leg, a bearing pin on each bit leg, and a cone rotatably mounted on each bearing pin. The metal face seal is located in the cavity formed between the interior surface of the cone and the bearing pin. The metal face seal consists of a rigid seal ring having a forward surface that engages a rotating seal surface of the cone. An energizer ring biases the rigid seal ring toward the rotating seal surface. A secondary seal engages the bearing pin surface, the energizer ring, and the rigid seal ring. The secondary seal ring has a protuberance on its forward side for filling void spaces between the energizer ring, the rigid seal ring, and the secondary seal ring.
    • 一种用于钻孔钻头具有钻头体,至少一个位腿,每个钻头腿上的支承销以及可旋转地安装在每个轴承销上的锥体的钻孔钻头的金属表面密封件。 金属表面密封件位于形成在锥体的内表面和轴承销之间的空腔中。 金属表面密封件由刚性密封环组成,其具有接合锥体的旋转密封表面的前表面。 活力环将刚性密封环朝向旋转的密封表面偏压。 辅助密封件接合轴承销表面,增力环和刚性密封环。 二次密封环在其前侧具有用于填充增力环,刚性密封环和次级密封环之间的空隙的突起。
    • 69. 发明申请
    • Fluid injection devices with sensors, fluid injection system and method of analyzing fluid in fluid injection devices
    • 具有传感器,流体注射系统和流体注射装置中流体分析方法的流体注射装置
    • US20070040860A1
    • 2007-02-22
    • US11505796
    • 2006-08-16
    • Chung ChouChih Lin
    • Chung ChouChih Lin
    • B41J2/195
    • B41J2/14153B41J2002/14354
    • A fluid injection device integrating a piezoelectric sensor, a fluid injection apparatus and a method for analyzing fluid content in a fluid injection device. The fluid injection device comprises a fluid injector and a piezoelectric sensor. The fluid injector comprises a plurality of fluid chambers formed in a substrate for receiving fluid. A structural layer is disposed on the substrate and the plurality of fluid chambers. At least one fluid actuator is disposed on the structural layer opposing each fluid chamber. A nozzle is adjacent to the at least one fluid actuator and connecting each fluid chamber through the structural layer. The piezoelectric sensor id disposed on the structural layer to analyze fluid content in each fluid chamber.
    • 一种集成压电传感器,流体注射装置和用于分析流体注射装置中的流体含量的方法的流体注入装置。 流体注射装置包括流体注射器和压电传感器。 流体注射器包括形成在用于接收流体的基底中的多个流体室。 结构层设置在基板和多个流体室上。 至少一个流体致动器设置在与每个流体室相对的结构层上。 喷嘴与所述至少一个流体致动器相邻,并且将每个流体室连接通过结构层。 设置在结构层上的压电传感器id用于分析每个流体室中的流体含量。