Patent classifications
A47L15/481
Dishwasher, in particular domestic dishwasher, comprising at least one guide structure on the inner face of the door thereof for deflecting drying fluid flowing along therefrom
A dishwasher, in particular a domestic dishwasher, including a washing compartment, at least one washing basket disposed in the washing compartment to hold items for washing, and a door configured to close the washing compartment. The door has a planar surface to form an inner face of the door as a whole or a part thereof. When the door is closed, a guide structure including a plurality of individual guide elements projects in a raised manner from the planar surface into an interior of the washing compartment and is disposed so as to guide a drying fluid flowing along the inner face of the door onto the items in the washing compartment, when the dishwasher is in drying mode.
DISHWASHER
A dish washer has a discharge flow path configured to carry air flow having passed through a moisture absorbent. The discharge flow path is defined between a cover of a moisture absorbent receiving space of a main housing and the moisture absorbent. The discharge flow path is configured to reduce non-uniformity in resistance against air flow having passed through the moisture absorbent inside the main housing and local non-uniformity in a moisture absorption amount to improve moisture absorption efficiency.
DISHWASHER HAVING AT LEAST ONE DRYING UNIT COMPRISING A SORBENT
A dishwasher includes a dishwasher cavity for receiving crockery, glasses, and/or cutlery to be processed. The dishwasher cavity is provided with a movable front door for loading and unloading. A drying unit which includes a sorbent is designed for passage of air from the dishwasher cavity in a drying phase, wherein the dishwasher is designed to guide during the drying phase a portion of the air out of the dishwasher cavity over the sorbent and to guide a portion of the air outwards to an air outlet, while the front door remains closed during an entire duration of the drying phase.
DISHWASHER
A dish washer includes a heater for regenerating a moisture absorbent. A portion of the heater is received in a heater receiving portion, and the remaining portion thereof is received in an air introduction space under a moisture absorbent receiving space, such that air flow sufficiently heated by the heater may flow into the air introduction space, thereby reducing a possibility of local variation in the regeneration of the moisture absorbent, and the moisture absorbent is directly heated by radiant heat of the heater received in the air introduction space to improve heat emission efficiency and energy efficiency of the heater.
Methods for operating dishwasher appliances having energy recovery features
Dishwasher appliances and method for operating dishwasher appliances are provided. A method includes executing a wet cycle, wherein a heating unit and a fan of a desiccant assembly are active during the wet cycle. The desiccant assembly includes the heating unit, the fan, and a desiccant module and is in fluid communication with a wash chamber of the dishwasher appliance. The method further includes executing a delay period, the delay period occurring for a predetermined time period between the wet cycle and a dry cycle, wherein the heating unit and the fan are active during the delay period. The method further includes draining liquid from the wash chamber after the delay period, and executing a dry cycle, wherein the fan is active and the heating unit is inactive during the dry cycle.
MISTING CHAMBER
The invention proposes a domestic appliance having a drying apparatus, such as a dishwasher, a tumble dryer, a washing machine or the like, wherein the drying apparatus (8) has a contact space (8, 14) for establishing contact between drying air which originates from a working space (11) in the domestic appliance and a hygroscopic liquid (4) which is provided for drying purposes, in which domestic appliance effective drying is possible in a comparatively short time. According to the invention, this is achieved in that at least one nozzle (15, 16) for atomizing the hygroscopic liquid (4) in the contact chamber (8, 14) and/or for sprinkling the hygroscopic liquid (4) in the contact chamber (8, 14) is provided.
Methods for Operating Dishwasher Appliances Having Energy Recovery Features
Dishwasher appliances and method for operating dishwasher appliances are provided. A method includes executing a wet cycle, wherein a heating unit and a fan of a desiccant assembly are active during the wet cycle. The desiccant assembly includes the heating unit, the fan, and a desiccant module and is in fluid communication with a wash chamber of the dishwasher appliance. The method further includes executing a delay period, the delay period occurring for a predetermined time period between the wet cycle and a dry cycle, wherein the heating unit and the fan are active during the delay period. The method further includes draining liquid from the wash chamber after the delay period, and executing a dry cycle, wherein the fan is active and the heating unit is inactive during the dry cycle.
Methods for Operating Dishwasher Appliances Having Energy Recovery Features
Dishwasher appliances and method for operating dishwasher appliances are provided. A method includes executing a wet cycle, wherein a heating unit and a fan of a desiccant assembly are active during the wet cycle. The desiccant assembly includes the heating unit, the fan, and a desiccant module and is in fluid communication with a wash chamber of the dishwasher appliance. The method further includes executing a delay period, the delay period occurring for a predetermined time period between the wet cycle and a dry cycle, wherein the heating unit and the fan are inactive during the delay period. The method further includes draining liquid from the wash chamber after the delay period, and executing a dry cycle, wherein the fan is active and the heating unit is inactive during the dry cycle.
DISHWASHER AND CONTROL METHOD THEREOF
Disclosed a control method of a dishwasher comprising a main-washing cycle for washing one or more washing objects which are held in a tub; a rinsing cycle for rinsing the washing objects washed in the main-washing cycle by injecting wash water; a normal drying cycle for drying the washing objects rinsed in the rinsing cycle, wherein the main-washing cycle comprises a pre-steam water supply step for supplying steam water to a sump so as to supply steam to the tub; a pre-steam supply step for generating steam by heating a heater and supplying the steam to the tub; a main-wash water supply step for supplying wash water for washing to the sump, without draining the steam water supplied to the sump; a main-washing step for washing the washing objects by circulating the supplied wash water; and a main-wash water drainage step for draining the wash water.
DISHWASHER AND CONTROL METHOD THEREOF
Disclosed a control method of a dishwasher comprising a main-washing cycle for washing one or more washing objects which are held in a tub; a rinsing cycle for rinsing the washing objects washed in the main-washing cycle by injecting wash water; a normal drying cycle for drying the washing objects rinsed in the rinsing cycle, wherein the main-washing cycle comprises a pre-steam water supply step for supplying steam water to a sump so as to supply steam to the tub; a pre-steam supply step for generating steam by heating a heater and supplying the steam to the tub; a main-wash water supply step for supplying wash water for washing to the sump, without draining the steam water supplied to the sump; a main-washing step for washing the washing objects by circulating the supplied wash water; and a main-wash water drainage step for draining the wash water.