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    • 63. 发明授权
    • Electrostatic holding and conveying apparatus
    • 静电保持和输送设备
    • US4244465A
    • 1981-01-13
    • US30859
    • 1979-04-17
    • Shintaro HishikawaHideo Yamada
    • Shintaro HishikawaHideo Yamada
    • B65G15/28B65G15/58B65G21/20B65H3/18B65H5/00B65G47/92
    • B65G21/20B65G15/58B65H3/18B65G2201/02
    • An electrostatic holding and conveying apparatus having an endless belt member which comprises a base layer of soft, flexible insulative material and two groups of electrodes equally spaced and disposed on a first surface of the base layer. A protective layer of soft flexible semiconductive or insulative material is disposed on the first surface of the base layer to cover the electrodes. Two groups of terminals are provided on a second surface of the base layer and electrically connected to the two groups of electrodes, respectively. The endless belt extends between a drive roller and a driven roller with the second surface of the base layer in contact with the rollers. One of the rollers has two contact rings isolated from each other and supplied with a high DC voltage. The endless belt is driven by the drive roller with at least one terminal of each terminal group in electrical contact with the corresponding contact ring of the one roller so that the endless belt conveys sheet materials while electrostatically holding them.
    • 一种具有环形带构件的静电保持和输送装置,其包括柔性,柔性绝缘材料的基层和等距间隔设置在基层的第一表面上的两组电极。 柔性半导体或绝缘材料的保护层设置在基层的第一表面上以覆盖电极。 两组端子设置在基层的第二表面上并分别电连接到两组电极。 环形带在驱动辊和从动辊之间延伸,基层的第二表面与辊接触。 其中一个辊子具有两个彼此隔离并具有高直流电压的接触环。 环形带由驱动辊驱动,每个端子组的至少一个端子与一个辊的相应的接触环电接触,使得环形带在静电保持它们的同时传送片材。
    • 64. 发明授权
    • Sheet advancing and positioning device
    • 纸张推进和定位装置
    • US4132475A
    • 1979-01-02
    • US815741
    • 1977-07-14
    • Tomio Suzuki
    • Tomio Suzuki
    • B65H3/02B65H3/18B65H5/00B65H5/16B65H9/00G03B27/04G03G15/00
    • G03G15/6597B65H5/004B65H5/16B65H9/00G03G2215/00371G03G2215/00396G03G2215/00405G03G2215/00518G03G2215/00654
    • An apparatus for advancing a sheet and stopping it in a predetermined position including: a mechanism for transporting the sheet along a predetermined path and releasing the transporting force from being transmitted to the sheet in the course of advance; an insulating member positioned in the transporting path; and a charging device for charging the insulating member. The charging device charges the insulating member prior to the passing of the sheet over the insulating member by being transported by the transporting means. In addition, the transporting force is released from the sheet prior to the passing of the trailing edge of the sheet over the insulating member thus charged thereby precisely stopping the sheet in said predetermined position due to the electrostatic attracting force produced between the insulating member thus charged and the sheet.
    • 一种用于推进片材并将其停止在预定位置的装置,包括:用于沿着预定路径传送片材并释放传送力的机构在提前过程中传递到片材; 位于传送路径中的绝缘构件; 以及用于对绝缘构件进行充电的充电装置。 充电装置在通过传送装置传送之前使片材通过绝缘构件之后对绝缘构件进行充电。 此外,在片材的后缘通过绝缘构件之前,输送力从片材释放,因此由此在由于如此填充的绝缘构件之间产生的静电引力而将片材精确地停止在所述预定位置 和表。
    • 65. 发明授权
    • Protective housing for a liquid sample container
    • 液体样品容器的保护壳体
    • US3933186A
    • 1976-01-20
    • US421210
    • 1973-12-03
    • Scheffler, Norman E.
    • Scheffler, Norman E.
    • B01L1/00B65H3/18F16P1/00
    • B01L1/00Y10T137/7043
    • Disclosed is a protective housing unit for a liquid sample container. Basic components include an outer housing member and an inner housing member, which are defined by cylindrical sections. The outer member has an open top, an opening in the side wall, and a bottom which connects to a drain line. Positioned within the outer member is a plate for supporting a liquid sample container, such as a bottle. The inner member has an open top, an open bottom, and an opening in the side wall. Also, the inner member is adapted to fit down into the outer member and to rotate within the outer member. A liquid sample is directed into the container through a fill pipe, which connects to an inlet line and which extends through the top of the inner member and down into the container. During filling, the sample container can be completely enclosed by rotating the inner member to mis-align the side wall openings in each member. After filling, the inner member is rotated to a position which aligns the openings, to permit removal of the container.
    • 公开了一种用于液体样品容器的保护性壳体单元。 基本部件包括由圆柱形部分限定的外部壳体部件和内部壳体部件。 外部构件具有开口顶部,侧壁中的开口和连接到排水管线的底部。 位于外部构件内的是用于支撑诸如瓶子的液体样品容器的板。 内部构件具有敞开的顶部,敞开的底部和侧壁中的开口。 此外,内部构件适于装配到外部构件中并在外部构件内旋转。 液体样品通过填充管引入容器中,该填充管连接到入口管线并且延伸穿过内部构件的顶部并向下进入容器。 在填充期间,样品容器可以通过旋转内部构件而完全封闭,以使每个构件中的侧壁开口错误对准。 在填充之后,内部构件旋转到对准开口的位置,以允许移除容器。
    • 66. 发明授权
    • Apparatus for automatically conveying sheets of paper by means of electrostatic adsorption
    • 通过静电吸附自动输送纸张的装置
    • US3726520A
    • 1973-04-10
    • US3726520D
    • 1970-08-10
    • HITACHI LTD
    • DOI T
    • B65H1/14B65H1/08B65H3/18B65H5/00B65H20/00G03G15/04H04N1/00
    • B65H3/18Y10S271/901
    • For automatically conveying sheets of paper one after another from the top of a stack of sheets of paper to a predetermined position by taking advantage of the electrostatic adsorption phenomenon, an apparatus comprises sheet of paper carrier means electrostatically charged by charging means, means for supporting said carrier means in parallel opposed relation to the sheet of paper to pick up said sheet of paper under electrostatic force and means for releasing the sheet of paper from said carrier means after the sheet of paper is located in the predetermined position, whereby the sheets of paper can be fed automatically regardless of the thickness of the sheets of paper, the presence or absence of a folded line or wrinkles in the sheets of paper and the type of paper.
    • 为了通过利用静电吸附现象将纸张从纸张堆叠的顶部一个接一个地自动输送到预定位置,装置包括由充电装置静电充电的纸张载体装置,用于支撑所述 承载装置与纸张平行地相对关系,以在静电力下拾取所述纸张,以及用于在纸张位于预定位置之后从所述载体装置释放纸张的装置,由此纸张 可以自动进纸,而不管纸张的厚度如何,折纸线的存在或不存在或纸张中的皱纹和纸张的类型。
    • 67. 发明授权
    • Methods and apparatus for electrostatically performing a tacking operation
    • 用于静电执行插拔操作的方法和装置
    • US3717801A
    • 1973-02-20
    • US3717801D
    • 1971-04-12
    • XEROX CORP
    • SILVERBERG M
    • B65H5/00B65H3/18G09F7/02
    • B65H5/004Y10T29/49998
    • Methods and apparatus for electrostatically performing a tacking operation are provided in accordance with the teachings of the instant invention wherein tacking charges are imposed by a coronode connected to an ac source and disposed in a charging relationship with the medium to be tacked. As the coronode is connected to an ac source, ion charging currents delivered thereby will exhibit the periodic variation and alternating polarity of the ac source. The tacking force applied to such medium will thereby display a periodic variation having a magnitude which is sufficient to maintain the medium in a tacked relationship with a desired surface when the medium is in the immediate environment of the coronode; however, as the medium is increasingly displayed from the immediate environment of the coronode, the magnitude of such tacking force will approach a zero value because the ion charging current delivered manifests a variation resembling a damped sinusoid or the like depending upon the nature of the periodic variation of said ac source. Therefore, upon the completion of the tacking operation, stripping of the medium may be readily achieved.
    • 根据本发明的教导提供了用于静电执行定位操作的方法和装置,其中固定电荷由连接到交流电源并与待固定的介质的充电关系设置的冠状结构施加。 当冠状结构连接到交流电源时,由此产生的离子充电电流将呈现交流源的周期性变化和交替极性。 因此,施加在这种介质上的粘合力将显示周期性的变化,当介质处于冠状体的直接环境中时,具有足以使介质保持与期望表面有粘结关系的量值; 然而,随着介质越来越多地从冠状体的直接环境显示出来,这种粘合力的大小将接近零值,因为所输送的离子充电电流表现出类似于阻尼正弦曲线等的变化,这取决于周期性的性质 所述交流电源的变化。 因此,在完成定位操作之后,可以容易地实现介质的剥离。