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    • 3. 发明申请
    • GLASS SUBSTRATE PROCESSING DEVICE USING LASER BEAM
    • 使用激光束的玻璃基板加工装置
    • US20100326138A1
    • 2010-12-30
    • US12827267
    • 2010-06-30
    • Issei KUMATANISeiji SHIMIZU
    • Issei KUMATANISeiji SHIMIZU
    • C03B23/00
    • C03B33/0222B23K26/0676B23K26/082B23K26/389B23K26/40B23K2103/50C03B33/023C03B33/03
    • A processing device is configured to irradiate a laser beam onto a glass substrate for processing. The processing device has a work table, a laser beam output section, a multi-spot focus section, a rotation drive mechanism, an optical system, and a laser beam scan section. The multi-spot focus section receives a laser beam, and splits and focuses the laser beam inputted therein into a plurality of beam focus spots. The rotation drive mechanism rotates the plurality of beam focus spots about a single center axis that is arranged in a center of the plurality of beam focus spots. The optical system guides the laser beam to the multi-spot focus section. The laser beam scan section moves all the plurality of beam focus spots rotating about the single center axis in a desired direction within a predetermined range of a plane arranged along a surface of the glass substrate.
    • 处理装置被配置为将激光束照射到玻璃基板上进行处理。 处理装置具有工作台,激光束输出部,多点聚焦部,旋转驱动机构,光学系统和激光束扫描部。 多点聚焦部分接收激光束,并将其中输入的激光束分裂并聚焦成多个光束聚焦点。 旋转驱动机构围绕布置在多个束聚焦点的中心的单个中心轴旋转多个束聚焦点。 光学系统将激光束引导到多点聚焦部分。 激光束扫描部分将沿着沿着玻璃基板的表面布置的平面的预定范围内的期望方向围绕单个中心轴线旋转的所有多个光束聚焦点移动。
    • 5. 发明授权
    • High-accuracy sliding bearing
    • 高精度滑动轴承
    • US07785013B2
    • 2010-08-31
    • US11596530
    • 2005-05-24
    • Masaki EgamiSeiji ShimizuTakeshi Tanimaru
    • Masaki EgamiSeiji ShimizuTakeshi Tanimaru
    • F16C33/24
    • F16C33/1065B29C45/14622B29C45/2708B29K2705/00F16C17/02F16C17/10F16C33/201
    • The present invention provides a high-accuracy sliding bearing which eliminates the need for treating a gate mark, has a high accuracy, is excellent in its mechanical strength, and is in its productivity. A sintered metal (2) is used as a bearing peripheral part. A resin material is molded at a sliding portion of the bearing peripheral part to form a resin layer (3). In the resin layer (3), a product of a coefficient of linear thermal expansion of the resin material and a thickness of the resin layer is not more than 0.15. The resin layer (3) is molded through tunnel gates. The resin layer comprises a plurality of axial grooves (4A) and (4B) on a bearing sliding surface thereof, and the tunnel gate marks (5) are alternately formed on a bottom of each of the grooves.
    • 本发明提供一种高精度滑动轴承,其不需要处理门标,具有高精度,机械强度优异,并且其生产率。 使用烧结金属(2)作为轴承周边部。 树脂材料在轴承周边部的滑动部分成型,形成树脂层(3)。 在树脂层(3)中,树脂材料的线性热膨胀系数与树脂层的厚度的乘积不大于0.15。 树脂层(3)通过隧道浇口模制。 树脂层在其轴承滑动面上包括多个轴向槽(4A)和(4B),并且隧道浇口标记(5)交替地形成在每个槽的底部上。
    • 8. 发明申请
    • Air bubble removal in an ink jet printer
    • 喷墨打印机中的气泡去除
    • US20080174645A1
    • 2008-07-24
    • US12071787
    • 2008-02-26
    • Takaichiro UmedaHikaru KagaTsuyoshi SuzukiSeiji ShimizuTakamasa UsuiYoichiro Shimizu
    • Takaichiro UmedaHikaru KagaTsuyoshi SuzukiSeiji ShimizuTakamasa UsuiYoichiro Shimizu
    • B41J2/19
    • B41J2/17513B41J2/17523B41J2/17556
    • An ink jet printer including a carriage which is movable relative to a sheet of paper, a recording head which is mounted on the carriage and records an image on the sheet by ejecting a droplet of ink toward the sheet, one or more ink tanks which store the ink or inks to be supplied to the recording head, a buffer tank which is mounted on the carriage, and one or more ink flow passages in which the inks are supplied from the ink tanks to the recording head via the buffer tank. The buffer tank has, at a height position higher than a height position where the recording head is provided, one or more air buffer chambers which accommodate respective amounts of the inks, and collect air bubbles produced in the ink flow passages. The printer further includes one or more air-discharge passages which communicate, at one ends thereof, with upper portions of the air buffer chambers, and discharge, via the other ends thereof, the air bubbles collected by the air buffer chambers.
    • 一种喷墨打印机,其包括可相对于一张纸移动的托架;记录头,其安装在托架上,并通过向纸张喷射墨滴将图像记录在纸张上;一个或多个墨盒,其存储 要提供给记录头的墨水或墨水,安装在滑架上的缓冲罐,以及一个或多个墨水流动通道,其中墨水通过缓冲罐从墨水盒供应到记录头。 缓冲罐在高于设置有记录头的高度位置的高度位置处具有一个或多个空气缓冲室,其适应相应量的油墨,并且收集在油墨流动通道中产生的气泡。 打印机还包括一个或多个排气通道,其一端与空气缓冲室的上部连通,并且经由其另一端排出由空气缓冲室收集的气泡。
    • 10. 发明授权
    • Cellulose dope and method for producing the same
    • 纤维素涂料及其制造方法
    • US07108907B1
    • 2006-09-19
    • US09546665
    • 2000-10-25
    • Chihiro YamaneKunihiko OkajimaSeiji Shimizu
    • Chihiro YamaneKunihiko OkajimaSeiji Shimizu
    • D04H1/00D04H3/00B32B23/00
    • C08B1/003D01F2/02Y10T428/249924Y10T428/2913Y10T428/2965
    • A cellulose dope comprising an aqueous sodium hydroxide solution and cellulose dissolved in the solution, wherein the cellulose dope has a sodium hydroxide concentration (CNa) of from 6.5 to 11% by weight, a cellulose content (Cc) of from 5 to 10% by weight, a viscosity average degree of polymerization (DPc) of the cellulose of from 350 to 1,200 and a cellulose dissolution ratio (Sc) of 99.0% by weight or more, and wherein the zero-shear viscosity (η0) and the cellulose content (Cc) of the cellulose dope and the viscosity average degree of polymerization (DPc) of the cellulose in the cellulose dope satisfy the following formula (1): η0=kCcm×DPcp   (1) wherein: η0 represents the zero-shear viscosity (mPa·s) of the cellulose dope, Cc represents the cellulose content (% by weight) of the cellulose dope, DPc represents the viscosity average degree of polymerization of the cellulose in the cellulose dope, k=3.9×10−11, m is a number of from 5 to 7, and p is a number of from 3 to 4.
    • 一种含有氢氧化钠水溶液和溶于该溶液中的纤维素的纤维素原液,其中纤维素掺杂物的氢氧化钠浓度为6.5-11%(重量),纤维素含量(Cc )为5〜10重量%,纤维素的粘度平均聚合度(DPc)为350〜1200,纤维素溶解率(Sc)为99.0重量%以上,其中零剪切粘度 纤维素掺杂物的纤维素含量(Cc)和纤维素掺杂物中的纤维素的粘度平均聚合度(DPc)满足下式(1):<<< 0> -line-formula description =“In-line Formulas”end =“lead”?> eta = kCc xDPc

      (1) <?in-line-formula description =“In-line Formulas”end =“tail”?>其中:eta 0表示纤维素原料的零剪切粘度(mPa.s),Cc 表示纤维素的纤维素含量(重量%) 糊剂,DPc表示纤维素原液中纤维素的粘度平均聚合度,k = 3.9×10 -6,m为5〜7的数,p为3 到4。