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    • 3. 发明授权
    • Two liquid separating methods and apparatuses for implementing them
    • 两种液体分离方法和装置
    • US5244550A
    • 1993-09-14
    • US660063
    • 1991-02-25
    • Noboru Inoue
    • Noboru Inoue
    • B01D17/06C02F1/465
    • C02F1/465B01D17/06B03C11/00B03C2201/02C02F2201/003
    • The present invention is conceived to provide methods for efficiently separating two liquids different in sp. gr. which are in a mixed state and apparatuses for implementing them.The present invention devised an arrangement such that between an outer cylindrical electrode doubled as an apparatus container and an inner cylindrical electrode concentrically disposed relative to said outer cylindrical electrode and set to the equal potential to that of the outer cylindrical electrode, a charging electrode is provided concentrically thereto, thereby defining not only between the aforementioned electrodes mixture liquid passage spaces for letting the mixture of two liquids flow upwardly, but a separated liquid collecting space above said mixture liquid passage spaces, and that inside the inner cylindrical electrode, there is provided a space for letting the liquid to be separated flow down which is designed to guide downwardly the liquid to be separated left after removal of the impurity liquid, with a voltage high enough to neutralize the zeta potential of impurity liquid particles in the mixture applied between the aforementioned electrodes, respectively. In this way, not only the impurity liquid particles in the mixture are got cohere together into coarse particles by dint of their intermolecular attraction, but the separated liquid which has floated up or settled down, according to the sp. gr. difference between the mixture and the coarse particles, is collected and, then, discharged.
    • 本发明旨在提供有效分离两种不同种类的液体的方法。 gr。 它们处于混合状态以及用于实现它们的装置。 本发明设计了一种布置,使得在作为装置容器加倍的外圆柱形电极和相对于所述外圆柱形电极同心设置的内圆柱形电极并且设置成与外圆柱形电极相等的电位,设置充电电极 从而不仅在上述电极之间限定了用于使两种液体的混合物向上流动的混合液通道空间,而且在混合液通道空间之上分离的液体收集空间,并且在内圆柱形电极内部设置有 用于使待分离的液体的空间向下流动,其被设计成在去除杂质液体之后向下引导待分离的液体,其中电压足够高以中和施加在上述混合物之间的混合物中的杂质液体颗粒的ζ电位 电极。 以这种方式,不仅混合物中的杂质液体颗粒通过它们的分子间吸引力而被聚集在一起成为粗颗粒,而是根据sp。的分散液体悬浮或沉降。 gr。 收集混合物和粗颗粒之间的差异,然后排出。
    • 4. 发明授权
    • Interlocking cushioning mechanism for supporting seat portion and
backrest of chair in integral fashion
    • 用于以一体的方式支撑椅子的座椅部分和靠背的联锁缓冲机构
    • US4830431A
    • 1989-05-16
    • US127084
    • 1987-12-01
    • Noboru Inoue
    • Noboru Inoue
    • A47C1/032
    • A47C1/03272A47C1/03255A47C1/03266A47C1/03294
    • An interlocking cushioning mechanism for supporting a seat portion and a backrest of a chair in an integrally movable fashion. This mechanism has a primary mounting member secured to an upright support for swivel movement about the vertical axis thereof, slots formed in a portion of the primary mounting member which is located near the upper end of the upright support; a subsidiary mounting member having one end extending upwardly toward the rear of the chair and the other end secured to the slots by means of a shaft; a resilient member such as a spring held between the shaft and the forward end of the primary mounting member so as to cause the shaft to move rearwardly within the slot; a seat portion mounting frame for carrying the seat portion; and a backrest frame secured to the rear of the subsidiary mounting member. The resilient member is mounted by means of a simple mounting structure and the resilient force of the resilient member is altered with a minimal effort.
    • 一种用于以整体可移动的方式支撑椅子的座椅部分和靠背的互锁缓冲机构。 该机构具有固定到直立支架上的主要安装构件,用于围绕其垂直轴线的旋转运动,形成在主安装构件的位于直立支撑件的上端附近的部分中的槽; 辅助安装构件,其一端朝向椅子的后部向上延伸,另一端通过轴固定到狭槽; 保持在所述轴和所述主安装构件的前端之间的弹簧等弹性构件,以使所述轴在所述槽内向后移动; 座椅部分安装框架,用于承载座椅部分; 以及固定到辅助安装构件的后部的靠背框架。 弹性构件通过简单的安装结构安装,并且以最小的努力改变弹性构件的弹性力。
    • 5. 发明授权
    • Process for refining electric insulating liquids
    • 电绝缘液的精炼工艺
    • US4358379A
    • 1982-11-09
    • US209297
    • 1980-11-21
    • Noboru Inoue
    • Noboru Inoue
    • B01D15/00B03C5/02C10G25/00C10G32/02
    • B03C5/024B01D15/00C10G25/00C10G32/02
    • A method of efficiently eliminating impurities, particularly of low molecular weight and low concentration, from electric insulating liquids by means of applying an electric field to the electric insulating liquid to charge the contaminant particles therefrom and then contacting the thus-treated liquid with at least one absorbent to remove the charged contaminant particles from said liquid by means of an absorbent having ion-radicals in its structure, such as zeolite, and then eliminating the rough particles therefrom by means such as a percolator, centrifuge or precipitation tank. In certain cases wherein a large amount of contaminants which interfere with the insulating properties of the electric insulating liquid are present, the electric insulating liquid is first heated and subsequently contacted with an absorbent prior to the step of applying an electric field to preliminarily remove contaminants therefrom.
    • 一种通过向电绝缘液体施加电场来从电绝缘液体中有效地除去杂质,特别是低分子量和低浓度的方法,以从其中对污染颗粒进行充电,然后使如此处理的液体与至少一种 吸收剂,借助于其结构中具有离子自由基的吸收剂(例如沸石)从所述液体中除去带电荷的污染物颗粒,然后通过诸如渗滤器,离心机或沉淀池的方式从其中除去粗糙的颗粒。 在存在干扰电绝缘液体的绝缘性的大量污染物的某些情况下,首先对电绝缘液体进行加热,然后在施加电场以预先去除污染物的步骤之前与吸收剂接触 。
    • 10. 发明授权
    • Fluid-filtering device for filtering out particulates in fluid
    • 用于过滤流体中的微粒的流体过滤装置
    • US5593560A
    • 1997-01-14
    • US430283
    • 1995-04-28
    • Noboru Inoue
    • Noboru Inoue
    • B01D35/06B03C5/00B03C5/02
    • B03C5/00B01D35/06
    • A method of charging, coagulating, and filtering out particulates in a fluid. In this method, impurity particulates typified by coloring matter particulates can be efficiently removed without inducing clogging and without the need of maintenance for a long time. Also, a filter element used in this method and a fluid-filtering device are offered. The whole filtering layer of the filter element is made of a conductive layer having numerous voids passing the fluid, or the filter element has plural filtering layers of a conductive material. A filtering layer made of a conductive material is used as an electrically charging electrode.
    • 一种对流体中的颗粒进行充填,凝结和过滤的方法。 在该方法中,可以有效地除去以色素颗粒为代表的杂质颗粒,而不会导致堵塞并且不需要长时间的维护。 此外,提供了用于该方法的过滤元件和流体过滤装置。 过滤元件的整个过滤层由具有通过流体的多个空隙的导电层制成,或者过滤元件具有多个导电材料的过滤层。 使用由导电材料制成的过滤层作为充电电极。