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    • 7. 发明申请
    • Washer, Such As A Dishwasher Or A Washing Machine, And Method For Operating A Washer
    • 洗衣机,如洗碗机或洗衣机,以及操作洗衣机的方法
    • US20120125369A1
    • 2012-05-24
    • US13388862
    • 2010-07-30
    • Per-Erik PersSarah ForsterNiklas Olson
    • Per-Erik PersSarah ForsterNiklas Olson
    • A47L15/46B08B7/04
    • A47L15/0031A47L15/0023A47L15/0089A47L15/4217A47L2401/09A47L2401/14A47L2501/01A47L2501/02A47L2501/26A47L2501/30A47L2501/32
    • The invention relates to a method for operating a washer which comprises a washing chamber for accommodating goods to be cleaned, said washing chamber having in its lower portion a sump for collecting water during operation of the washer, a water inlet connected to a water tank, preferably to a water tank that is integrally, still preferably detachably, formed with the dishwasher, a pump for circulating water through the washing chamber, and a control unit for controlling a washing process carried out by the washer. In accordance dance with a first embodiment of the method of the invention, in this method: water is fed from the tank into the sump by the action of the hydrostatic pressure prevailing within the tank; the pressure within the sump or close to the sump is measured; and based on the pressure measurement the speed of the water flow is monitored and the filling level of the tank is determined, and at least one parameter and/or step of the washing process is controlled and/or indicator signals are issued to a user of the washer.
    • 本发明涉及一种操作洗衣机的方法,该洗衣机包括用于容纳待清洁物品的洗涤室,所述洗涤室在其下部具有用于在洗涤器操作期间收集水的贮槽,连接到水箱的进水口, 优选地与通过洗碗机一体地,仍然优选地可拆卸地形成的水箱,用于使水循环通过洗涤室的泵,以及用于控制由洗衣机执行的洗涤过程的控制单元。 按照本发明方法的第一个实施例,在这种方法中,水通过槽内的流体静力学压力的作用将水从罐中进料到贮槽中; 测量油底壳内的压力或接近油底壳的压力; 并且基于压力测量,监测水流的速度并且确定罐的填充水平,并且控制洗涤过程的至少一个参数和/或步骤和/或向 洗衣机。
    • 8. 发明申请
    • METHOD FOR OPERATING A WARE WASHER AND WARE WASHER
    • US20110056520A1
    • 2011-03-10
    • US12990965
    • 2009-05-20
    • Alan J. VaracinsJoseph E. FabinFrank A. BondarowiczHarald DischKlaus Padtberg
    • Alan J. VaracinsJoseph E. FabinFrank A. BondarowiczHarald DischKlaus Padtberg
    • A47L15/42
    • A47L15/24A47L15/0049A47L2401/14A47L2501/05A47L2501/07A47L2501/24A47L2501/26A47L2501/30
    • The invention relates to a ware washer (40, 50) and to a method for operating a ware washer (40, 50) which is designed as a programmable machine (40) or as a conveyor ware washer (50) and which has at least one pump (11, 11-1, 11-2, 11-3, 11-4, 11-5, 11-6), at least one line system (12, 12-1, 12-2, 12-3, 12-4, 12-5, 12-6) connected to the pump (11, 11-1, 11-2, 11-3, 11-4, 11-5, 11-6), and at least one nozzle system connected to the line system (12, 12-1, 12-2, 12-3, 12-4, 12-5, 12-6) and having at least one nozzle (13, 13-1, 13-2, 13-3, 13-4, 13-5, 13-6, 13-7), a liquid being supplied at least intermittently to the at least one nozzle (13, 13-1, 13-2, 13-3, 13-4, 13-5, 13-6, 13-7) via the line system (12, 12-1, 12-2, 12-3, 12-4, 12-5, 12-6). Furthermore, a sensor device (30, 30′, 30″) connected to a control device (20) is provided for detecting a profile of the hydrostatic pressure (Pi) of the liquid in the line system (12, 12-1, 12-2, 12-3, 12-4, 12-5, 12-6) and for comparing the detected pressure profile (Pi) with a predetermined pressure profile (Ps). In order to achieve the situation where potential deviations of the water circulation capacity or potential deviations of the nozzle pressure can be ascertained and automatically reacted to correspondingly in order to counteract the deviation of the water circulation capacity, according to the invention the control device (20) is designed, in the event of a deviation of the detected pressure profile (Pi) from the predetermined pressure profile (Ps), automatically either to carry out a regulating action on the operation of the ware washer (40, 50) as a function of the size and the time gradient of a difference between the predetermined pressure profile (Ps) and the detected pressure profile (Pi) or to issue a fault warning via an optical and/or acoustic interface (22) or to issue a fault warning to a remote maintenance station via a remote control interface (23).
    • 10. 发明授权
    • Dishwashing method
    • 洗碗法
    • US4673441A
    • 1987-06-16
    • US677970
    • 1984-12-04
    • Theodore F. Mayers
    • Theodore F. Mayers
    • A47L15/00A47L15/42B08B7/04
    • A47L15/4225A47L15/0026A47L15/0028A47L2401/10A47L2401/14A47L2501/02A47L2501/26
    • A multiple-fill dishwasher and method includes a wash chamber having a sump at the bottom thereof, a remotely controlled inlet valve for supplying cleansing liquid into the sump, a drain for draining liquid and entrained soil from the sump, and a recirculating pump having a spraying system receiving the output thereof for spraying liquid onto soiled ware contained within the chamber. A control circuit controls the valve, drain means, and pump to perform a selected one of a plurality of different cleansing cycles which are automatically selected according to the extent of soil on the ware. An operator-actuated switch for commencing operating of the control circuit, and a chamber for collecting soil particles in a concentrated fashion during liquid recirculation, are also provided. The improvement comprises a sensor responsive to a predetermined particulate soil concentration in the soil collection chamber, the sensor being operable during liquid recirculation to cause the control circuit to select either a cycle designed to wash heavily soiled ware, or a cycle designed to wash lightly soiled ware.
    • 多重洗碗机和方法包括在其底部具有贮槽的洗涤室,用于将清洁液体供应到贮槽中的远程控制的入口阀,用于从油底壳排出液体和夹带的污物的排水口以及具有 喷射系统接收其输出以将液体喷射到容纳在腔室内的污染物上。 控制电路控制阀,排水装置和泵,以执行根据器皿上的土壤程度自动选择的多个不同清洁循环中选择的一个。 还提供了用于开始操作控制电路的操作者致动的开关和用于在液体再循环期间集中地收集土壤颗粒的室。 该改进包括响应于土壤收集室中的预定颗粒污垢浓度的传感器,该传感器可在液体循环期间操作,以使控制电路选择设计用于洗涤严重污染的物品的循环,或设计成洗涤轻度污染的循环 商品