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    • 4. 发明申请
    • Self-Adhesive Beverage Napkin
    • 自粘饮料餐巾
    • US20130017362A1
    • 2013-01-17
    • US13358486
    • 2012-01-25
    • Serkan BarutcuAdrian Pelkus
    • Serkan BarutcuAdrian Pelkus
    • A47G11/00B32B37/12
    • A47G11/002Y10T156/17Y10T428/24331
    • A self-adhesive napkin for releasably attaching to a beverage container having a plurality of openings formed along an edge of the napkin and a pressure sensitive, single-sided adhesive tape applied to the edge of the outer surface of the napkin containing the plurality of openings. The adhesive surface of the adhesive tape along one edge of the napkin is protected from inadvertent adherence by way of the recesses formed in the napkin from the plurality of openings. Further, for napkins in a uniformly oriented stack conformation, the non-adhesive surface of the adhesive tape functions as a release layer. Application of pressure to the adhesive tape collapses the adhesive surface into and through the plurality of openings for releasably attaching to a target surface.
    • 一种用于可剥离地附接到具有沿着卫生巾的边缘形成的多个开口的饮料容器的自粘式餐巾和应用于包含多个开口的卫生巾的外表面的边缘的压敏单面胶带 。 沿着卫生巾的一个边缘的粘合带的粘合表面通过在多个开口中形成在卫生巾中的凹槽来防止无意的粘附。 此外,对于均匀取向的叠层构造的卫生巾,粘合带的非粘合表面用作剥离层。 对粘合带施加压力将粘合剂表面折叠并穿过多个开口以可释放地附接到目标表面。
    • 7. 发明授权
    • Apparatus and method for recovering metals from solutions
    • 从溶液中回收金属的装置和方法
    • US5102513A
    • 1992-04-07
    • US612128
    • 1990-11-09
    • Adrian Pelkus
    • Adrian Pelkus
    • C25C7/06G05F1/46
    • G05F1/468C25C7/06
    • The improved power supply is controlled by a microprocessor which operates with instructions stored in software in a programmable read only memory within the unit. As the microprocessor operates, it constantly reads the conditions of the actual voltage, actual current, preset voltage and preset current at the electrodes of the plating system. The microprocessor makes adjustments to maintain the voltage at a preset level by outputting a digital signal to a digital-to-analog converter which changes the digital command into a voltage which is used to adjust an output transistor which controls the voltage to the electrodes. The microprocessor monitors the current draw and displays the current and voltage readings on a digital display. Signals received by the microprocessor are used in a virtually continuous comparison to preset current and voltage settings which are adjustable by variable resistors, and which determine a point at which insufficient metal is contained within the solution to continue the plating operation at which time a lockout condition is triggered. During lockout, no voltage is applied to the electrodes except when sampling is to occur. Frequency of sampling during lockout is determined by the microprocessor's reset function. The microprocessor will attempt to reset by switching on the plating voltage and monitoring the current drawn to determine if sufficient current is present to continue plating. If insufficient current is detected, the lockout condition will continue with the microprocessor resetting after another clock cycle.
    • 改进的电源由微处理器控制,该微处理器利用存储在该单元内的可编程只读存储器中的软件中的指令进行操作。 随着微处理器的运行,它不断读取电镀系统电极上的实际电压,实际电流,预设电压和预设电流的条件。 微处理器进行调整以通过将数字信号输出到数模转换器来将电压维持在预设电平,数字 - 模拟转换器将数字命令改变为用于调节控制电极电压的输出晶体管的电压。 微处理器监视电流抽头并在数字显示屏上显示电流和电压读数。 由微处理器接收的信号用于与可变电阻器可调节的预设电流和电压设置的实际连续的比较中,并且确定在溶液中不包含金属的点以继续电镀操作的点,此时锁定条件 被触发。 在锁定期间,除了要进行采样之外,电极不施加电压。 锁定期间的采样频率由微处理器的复位功能决定。 微处理器将通过接通电镀电压并监测所绘制的电流来尝试复位,以确定是否有足够的电流来继续电镀。 如果检测不到电流不足,则在另一个时钟周期之后,微处理器将重新设置锁定状态。
    • 9. 发明申请
    • Aquatic Metal Ion Harvesting Device and System
    • 水生金属离子收获装置及系统
    • US20160024671A1
    • 2016-01-28
    • US14773361
    • 2014-03-13
    • Adrian PELKUS
    • Adrian Pelkus
    • C25C7/00C25C7/02C25C1/00
    • C25C7/007C25C1/00C25C1/20C25C7/00C25C7/02
    • The present invention is a device and system for recovering metal ions from bodies of water. The device comprises two electrode cylinders, a keel, at least two connectors, a buoyant housing and a power supply. The first electrode cylinder comprises a top, a bottom, an exterior surface, a longitudinal axis and a means for connecting to a power supply. The second electrode cylinder is affixed within the first electrode cylinder by a bracket and has a means for connecting to a power supply. The keel is affixed to the bottom of the exterior surface along the longitudinal axis of the first electrode cylinder. There are least two connectors affixed to the top along the longitudinal axis of the first electrode cylinder.
    • 本发明是用于从水体中回收金属离子的装置和系统。 该装置包括两个电极圆柱体,龙骨,至少两个连接器,浮力壳体和电源。 第一电极圆筒包括顶部,底部,外部表面,纵向轴线和用于连接到电源的装置。 第二电极筒通过支架固定在第一电极筒内,并具有连接到电源的装置。 龙骨沿着第一电极柱的纵向轴线固定到外表面的底部。 沿着第一电极筒的纵向轴线,至少两个连接器固定到顶部。