Abstract:
A water treatment unit mounted in a washing machine, comprising a cartridge type case. An inflow port and an outflow port connected to a water supply port and a water receiving port formed in the washing machine are formed in the case. An electrode eluting metal ions in water by energization is disposed in the case and a connector part for supplying power to the electrode is disposed on the outer surface of the case. The case is formed slender and the inflow port and the outflow port are formed in the case, concentrically to each other, at positions near one end thereof and the connector part is disposed at a position near the other end.
Abstract:
A water feeding apparatus (300) has an ion eluter (100) and a shower emitter (200). The shower emitter (200) receives water via a coupling pipe (250) from the ion eluter (100), and sprays the water, in the form of a shower, onto laundry. Liquid droplets in the form of a shower are small and easy to dry, and thus produce crystals having smaller particles (with large surface areas), having more lattice defects, and easier to dissolve. With these crystals attached to the laundry, when the crystals make contact with moisture next time, the silver ion in the liquid droplets easily dissolves. Even when the laundry is made of water-repellent or hydrophobic cloth, the solution dries up on the surface of the cloth before water is repelled. Thus, even this type of laundry can benefit from the antimicrobial effect of the silver ion.
Abstract:
The following are provided in a washing machine: a drum (630) in which laundry is put; an ion elution unit that elutes metal ions and adds them to water; sensing means (701) for sensing imbalance at the time of rotation of the laundry tub; and imbalance correcting means (702). When the sensing means (701) senses imbalance in the drum (630) at the time of spin-drying rotation of the drum (630) performed after metal ion added water supplied from the ion elution unit to the drum (630) is supplied, the imbalance correcting means (702) corrects the imbalance by performing a processing different from a processing performed when imbalance is sensed in a case where the metal ion added water is not supplied. The different processing is not supply of tap water but balance correction rinsing in which the metal ion added water is supplied to the drum (630) and agitation is performed. With this structure, imbalance in the drum (630) at the time of spin-drying rotation can be corrected without any loss of the antibacterial effect added to the laundry.
Abstract:
Apparatus for providing activated treated water to washing machines with a water treatment conduit connected between a water supply and an inlet of the washing machine, having a reactor chamber with a UV lamp and a coated metal target that generates oxidizing gases that communicate by an injector into the conduit and a transparent portion of the conduit treats the oxidated water by illumination from the UV lamp. A disinfector injects disinfecting silver ions into the treated oxidated water. A controller activates the apparatus during flow of water through the conduit. A method of activating and treating water for washing machines is disclosed.
Abstract:
Methods of improving tableware cleaning, sanitizing and stain removal using an automatic dishwashing appliance containing an electrochemical cell and/or electrolytic device. The methods comprise steps for generating electrolyzed water by intermittently activating and/or intermittently deactivating the cell so as to sequentially provide a bleaching species at specific times during the wash and/or rinse cycle. Said methods include a signal-sensing system capable of detecting a composition comprising a signal-providing agent, methods of using said compositions, and articles of manufacture.
Abstract:
A process for fabric article treatment in a single appliance using a substantially aqueous mediumd comprising a first predominant fluid and a substantially non-aqueous medium comprising a second predominant fluid. Specifically, the first and the second predominant fluids are selected to be different in order to deliver more effective results. The first predominant fluid is water and the second predominant fluid is selected from the group consisting of linear or cyclic silicones, hydrocarbons, glycol ethers, and mixtures thereof.
Abstract:
A washing machine incorporating a set of electrodes; anode and cathode, which is fed with a varying Direct Current to improve the performance of the washing machine. The electrodes are placed inside the washing drum in a manner in which it remains submerged below the level of water through the washing process. By the use of the DC current, which feeds the electrodes the cleaning action takes place by the attraction of hydrophobic hydrocarbon chain of the detergent which gets attracted and embedded in to the dirt particle on the laundry; which is then attracted to the positive terminal along with the embedded dirt. Because of this action dirt particles are easily cleaned and rinsed without the use of much water and less power and less time. Hence this invention reduces the consumption of Power, Time and Water.
Abstract:
A washing machine which deodorizes an object placed in the washing machine using functional water independently of a washing process, and a control method thereof. The washing machine includes a tub to contain wash water therein, a drum rotatably installed in the tub, and deodorizing means which includes a functional water producing unit to produce functional water having a deodorizing effect, a heating tank to receive and to heat the functional water, and a steam supply pipe to supplying steam obtained from the functional water heated by the heating tank, to an object placed in the drum to be deodorized.
Abstract:
A method for cleaning within a washing zone comprising: placing at least one article for treatment in the washing zone, providing of at least partially deionized water into the washing zone, and optionally providing cleaning composition into the washing zone wherein the combination of said optional cleaning composition and partial deionized water have a specific conductance of less than about 200 μS/cm.
Abstract:
An improved fabric article treatment method in a laundering appliance involving a fluid switchover step such that the first predominant fluid is at least partially removed and a second predominant fluid is added. Specifically, the first and the second predominat fluids are selected to have different dielectric constatns. The fluid swichover method is also useful in controlling the surfactant carryover in a laundering process.