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    • 1. 发明申请
    • Acrylic sol composition
    • 丙烯酸溶胶组成
    • US20060173110A1
    • 2006-08-03
    • US10541400
    • 2004-08-27
    • Kazutaka Baba
    • Kazutaka Baba
    • C08K5/05
    • C09D175/04C08L2666/04C08L2666/14
    • An acrylic sol composition comprising (a) acrylic polymer fine particles, (b) blocked polyurethane, (c) a polyamine compound containing at least one modification product derived from a polyether polyamine compound represented by formula (I): wherein X represents a residue of a di- to hexahydric polyol with m hydroxyl groups removed therefrom; A represents an alkylene group having 2 to 4 carbon atoms; B represents an alkylene group having 1 to 4 carbon atoms; m represents a number of 2 to 6; and n represents a number of 0 to 50; a plurality of A's, B's, and n's per molecule may be each the same or different, (d) a plasticizer, and (e) a filler. The composition generates neither hydrogen chloride nor dioxin when incinerated, exhibits high storage stability, cures at relatively low temperatures, and provides a coating film excellent in adhesion to a substrate, cold resistance, and strength.
    • 一种丙烯酸类溶胶组合物,其包含(a)丙烯酸类聚合物微粒,(b)封端聚氨酯,(c)含有至少一种衍生自由式(I)表示的聚醚多胺化合物的改性产物的多胺化合物:其中X表示 从其中除去m个羟基的二元至六元多元醇; A表示碳原子数2〜4的亚烷基。 B表示碳原子数1〜4的亚烷基。 m表示2〜6的数; n表示0〜50的数; 每个分子的多个A,B和n可以各自相同或不同,(d)增塑剂和(e)填料。 该组合物在焚烧时不产生氯化氢和二恶英,表现出高的储存稳定性,在相对低的温度下固化,并且提供了对基材的粘附性,耐寒性和强度优异的涂膜。
    • 3. 发明申请
    • STEAM SYSTEM
    • 蒸汽系统
    • US20110005228A1
    • 2011-01-13
    • US12919653
    • 2008-04-14
    • Yuji YoshinariYasuo OchiHideo FurukawaYasukuni TanakaYusuke OkamotoKazutaka Baba
    • Yuji YoshinariYasuo OchiHideo FurukawaYasukuni TanakaYusuke OkamotoKazutaka Baba
    • F01K23/00
    • F01D15/08F01K7/38F02C6/006F02C6/16F05D2220/31Y02E60/15
    • A steam engine and an electric motor are arranged, which respectively drives an air compressor. The compressed air from the air compressor is supplied to a compressed air using device through a common air tank. The steam is supplied to the steam engine through a steam supply path, and the steam used in the steam engine is supplied to a steam using device through a steam exhaust path. The steam pressure is monitored by a pressure sensor arranged in a steam header ahead of the steam exhaust path. The air pressure is monitored by a pressure sensor arranged in an air tank. A steam supply valve is controlled based on the steam pressure and the air pressure, and the electric motor is controlled based on the air pressure. The steam engine is preferentially driven over the electric motor by shifting the target value of the air pressure.
    • 布置蒸汽机和电动机,分别驱动空气压缩机。 来自空气压缩机的压缩空气通过公共空气罐被供给到压缩空气使用装置。 蒸汽通过蒸汽供应路径供应给蒸汽发动机,并且蒸汽发动机中使用的蒸汽通过蒸汽排放路径被供应到蒸汽使用装置。 蒸汽压力通过设置在蒸汽排出通道前方的蒸汽集管中的压力传感器来监测。 空气压力由布置在空气罐中的压力传感器监测。 蒸汽供应阀根据蒸汽压力和空气压力进行控制,电机根据空气压力进行控制。 通过移动空气压力的目标值,蒸汽发动机优先地驱动通过电动机。
    • 5. 发明授权
    • Ion exchange apparatus and method of controlling the same
    • 离子交换装置及其控制方法
    • US07722772B2
    • 2010-05-25
    • US11727100
    • 2007-03-23
    • Hideo FurukawaHajime AbeMakoto HatoHironao KatoKazutaka Baba
    • Hideo FurukawaHajime AbeMakoto HatoHironao KatoKazutaka Baba
    • C02F1/42
    • C02F1/42B01J49/85C02F1/008C02F2209/40C02F2303/16
    • The present invention realizes an ion exchange apparatus capable of enhancing the reliability of regeneration operation. Further, the present invention realizes an ion exchange apparatus capable of simplifying the construction of a salt water supply device. The ion exchange apparatus includes a resin bed housing part (2) in which an ion exchange resin bed (5) is housed; a flow passage control valve (3) for switching between a water service operation and a regeneration operation; and a salt water tank (40) for reserving salt water to be used in regeneration, the flow passage control valve (3) being connected to the salt water tank (40) through a salt water supply line (31), in which the salt water supply line (31) is provided with a flow detecting unit (48) for detecting a flow rate in a direction of supplying salt water and a flow rate in a direction of supplying refill water.
    • 本发明实现了能够提高再生运转的可靠性的离子交换装置。 此外,本发明实现了能够简化盐水供给装置的结构的离子交换装置。 离子交换装置包括容纳有离子交换树脂床(5)的树脂床容纳部(2) 用于在供水操作和再生操作之间切换的流路控制阀(3) 以及用于储存用于再生的盐水的盐水箱(40),所述流路控制阀(3)通过盐水供给管线(31)与所述盐水箱(40)连接,所述盐水供给管路 供水管线(31)设有流量检测单元(48),用于检测在供给盐水的方向上的流量和在再供给水的供给方向上的流量。
    • 10. 发明授权
    • Optical isolator
    • 光隔离器
    • US5040863A
    • 1991-08-20
    • US403491
    • 1989-09-06
    • Shojiro KawakamiKazuo ShiraishiKazutaka BabaSeiji Hattori
    • Shojiro KawakamiKazuo ShiraishiKazutaka BabaSeiji Hattori
    • G02B6/42G02B27/28G02F1/09
    • G02B6/4208G02F1/093
    • A method of manufacturing an optical isolator which has a rotator capable of rotating a plane of polarization by the Faraday effect, and a polarizer of multilayer structure formed of alternately superposed transparent dielectric films and films having a complex dielectric constant, includes the steps of: forming the rotator as a plate having a large area and the polarizer as an array having a large area; forming an optical isolator array by attaching the polarizer array at least to one surface of the rotator plate in such a manner that the layers of the polarizer array extend perpendicularly to the surface of the rotator plate; and cutting the optical isolator array into a plurality of optical isolator chips. An optical module incorporating the isolator chip includes a case, a semiconductor laser provided in the case, an optical fiber fixed to the case with the optical axis thereof in alignment with that of the semiconductor laser, and the optical isolator chip attached directly or through a transparent member to the end of the optical fiber. The structure enables the optical module to be assembled easily and accurately, and to be of a compact lightweight construction.
    • 一种制造光隔离器的方法,该隔离器具有能够通过法拉第效应旋转偏振平面的旋转体,以及由交替重叠的透明电介质膜和具有复介电常数的膜形成的多层结构的偏振片,包括以下步骤: 作为具有大面积的板的旋转器和具有大面积的阵列的偏振器; 通过将所述偏振器阵列至少到达所述旋转板的一个表面,使得所述偏振器阵列的层垂直于所述旋转板的表面延伸来形成光学隔离器阵列; 以及将所述光隔离器阵列切割成多个光隔离器芯片。 并入有隔离芯片的光学模块包括外壳,设置在壳体中的半导体激光器,固定在壳体上的光纤,其光轴与半导体激光器对准,光隔离器芯片直接或通过 透明构件到光纤的端部。 该结构使得光学模块能够容易且精确地组装,并且具有紧凑的轻型结构。