US20090095332A1 - Condensing apparatus of dish washer - Google Patents
Condensing apparatus of dish washer Download PDFInfo
- Publication number
- US20090095332A1 US20090095332A1 US10/580,117 US58011705A US2009095332A1 US 20090095332 A1 US20090095332 A1 US 20090095332A1 US 58011705 A US58011705 A US 58011705A US 2009095332 A1 US2009095332 A1 US 2009095332A1
- Authority
- US
- United States
- Prior art keywords
- air duct
- vapor
- fan
- condensing apparatus
- condenser fan
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
Links
Images
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
- A47L15/42—Details
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
- A47L15/42—Details
- A47L15/48—Drying arrangements
- A47L15/486—Blower arrangements
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
- A47L15/42—Details
- A47L15/48—Drying arrangements
- A47L15/481—Drying arrangements by using water absorbent materials, e.g. Zeolith
Definitions
- the present invention relates to a dish washer, and more particularly, to a condensing apparatus of a dish washer capable of condensing steam that is created during a drying cycle.
- a dish washer is a home appliance that uses a wash pump to circulate wash liquid to be sprayed from spray nozzles to wash dishes placed in an upper and lower rack, and dries the dishes after they are washed.
- Conventional dish washers have an air duct for outwardly exhausting hot, moist vapor that forms during a drying cycle.
- This air duct is installed on the door of the dish washer.
- a dryer fan rotates to vent the hot, moist vapor into the air duct.
- the vented vapor is discharged outward from the front of the dishwasher through a steam vent formed at the front of the door.
- such a condensing apparatus of a related art dish washer expels hot, moist vapor directly out into an interior of a room. Accordingly, it can be directly expelled towards persons near the dish washer, and can cause bums and other discomfort. Furthermore, the expelled vapor can affect wallpaper and wood inside the room, causing corrosion and deformation thereof. Moreover, the expelled hot, moist vapor can condense and collect on the floor around the dishwasher, which can cause passers-by to slip and injure themselves.
- the present invention provides a condensing apparatus of a dish washer that can reliably condense the moisture from the vapor created in a drying cycle, and prevent the vapor from being directly expelled outward from the dish washer.
- a condensing apparatus of a dish washer including: an air duct for circulating and condensing vapor from inside a dish washer tub; a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct; and a blower including a dryer fan for providing suctioning force to suction the vapor from inside the tub.
- a condensing apparatus of a dish washer including: an air duct for circulating and condensing vapor from inside the tub; a dryer fan for generating suctioning force to suction vapor from inside the tub into the air duct; a motor for driving the dryer fan; and a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct, the condenser fan being driven by the motor.
- a condensing apparatus of a dish washer including: an air duct for circulating and condensing vapor from inside the tub; and a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct.
- An advantage of the condensing apparatus of a dish washer according to the present invention is that a separate condenser fan is installed to blow air towards the air duct, so that hot, moist vapor formed during a drying cycle can be vented into the air duct and quickly condensed.
- Another advantage of the condensing apparatus of a dish washer according to the present invention is that vapor that has passed through the air duct and has been de-moisturized flows back into the tub of the dish washer, and is not expelled outside the dish washer. Accordingly, users near the dish washer being injured or articles such as wallpaper and wooden furniture being damaged and deformed by the vapor can be prevented.
- a further advantage of the condensing apparatus of a dish washer according to the present invention is that because the dryer fan and the condenser fan are driven by a common motor, the above effects are achieved by the condenser fan while its operational efficiency increases.
- a still further advantage of the condensing apparatus of a dish washer according to the present invention is that due to a ridge formed in the vapor passage inside the duct, condensed water is caught by the ridge. Therefore, the condensed water vapor is reliably condensed, and processing of the condensed water becomes easier.
- FIG. 1 is a sectional view of a dishwasher having a condensing apparatus according to the present invention
- FIG. 2 is a perspective view showing the front of a dishwasher having a condensing apparatus according to the present invention
- FIG. 3 is a frontal view of a condensing apparatus according to the present invention.
- FIG. 4 is a frontal perspective view of a blower for a condensing apparatus according to the present invention.
- FIG. 5 is a rear perspective view of the blower in FIG. 4 ;
- FIG. 6 is a rear perspective view of an air duct for a condensing apparatus according to the present invention.
- FIG. 1 is a sectional view of a dishwasher having a condensing apparatus according to the present invention.
- a dish washer 100 includes a tub 110 forming the outer shape of the dish washer 100 and a wash compartment within, a door 113 formed at the front of the tub 110 for opening and closing the wash compartment, and a sump 170 formed at a lower central portion of the tub 110 for holding wash liquid.
- the door 113 has a front panel 111 forming the exterior thereof and a liner 112 installed behind the front panel 111 .
- An air duct according to the present invention (to be henceforth described) is installed between the front panel 111 and the liner 112 .
- a wash pump 180 for pumping wash liquid stored in the sump 170 under high pressure is formed inside the sump 170 , and a wash motor 190 is mounted below the wash pump 180 for driving the wash pump 180 .
- the dish washer 100 further includes a water guide 140 providing a route for wash water pumped by the wash pump 180 , a lower spray arm 160 provided above the sump 170 and formed at the bottom of the wash compartment to spray wash water upward, an upper spray arm 150 extending vertically from the upper portion of the water guide 140 and located in the central portion inside the wash compartment, and a top spray nozzle 155 formed at the ceiling of the tub for spraying wash liquid in a vertically downward direction.
- an upper rack 120 installed above the upper spray arm 150 for holding dishes to be washed by the upper spray arm 150
- a lower rack 130 installed above the lower spray arm 160 for holding dishes to be washed by the lower spray arm 160 .
- the upper rack 120 is supported by rails (not shown) on the inner walls of the tub 110 to be capable of moving forward and backward.
- a user opens the door 111 of the dishwasher, and pulls out the upper rack 120 and/or the lower rack 130 . Then, dishes are placed on the racks 120 and 130 . Next, the user closes the door 111 , turns the power on, and activates the dish washer.
- wash liquid from a water supply enters the sump 170 .
- the wash motor 190 is activated.
- An impeller (not shown) attached to the wash motor 190 shaft and installed in the wash pump 180 rotates, pumping the wash liquid to the lower nozzle 160 and the water guide 140 .
- the wash liquid pumped to the water guide 140 moves to the top spray nozzle 155 and the upper spray arm 150 to be sprayed therefrom into the wash compartment.
- the dishes stacked on the racks 120 and 130 are cleaned by the sprayed wash liquid.
- top spray nozzle 155 sprays wash liquid vertically downward
- the upper spray arm 150 sprays wash liquid vertically upward to wash the dishes stacked on the upper rack 120 .
- the lower spray arm 160 sprays wash liquid vertically upward to wash the dishes stacked on the lower rack 130 .
- spray holes may be formed on the bottom of the upper spray arm 150 to spray wash liquid downward to simultaneously wash the upper portions of dishes stacked on the lower rack 130 .
- wash liquid When wash liquid is discharged to the outside, clean wash liquid is routed into the sump 170 via an entrance hole and is discharged through the nozzles 150 and 160 in the same manner as in the wash cycle.
- the clean wash liquid that is discharged rinses the dishes in the racks.
- a drying cycle is implemented, to complete the entire wash cycle.
- hot air that enters the tub 110 absorbs moisture from the dishes.
- the hot, dry air in the tub 110 becomes hot, moist air.
- the hot, moist air passes through an air duct (not shown) installed at the front of the liner 112 on the door 113 , and is discharged from the tub 110 to the outside.
- FIG. 2 is a perspective view showing the front of a dishwasher having a condensing apparatus according to the present invention.
- the air duct 200 is installed at the front of the liner 112 , and is protected by the front panel 111 .
- a blower 210 is installed at one end of the upper portion of the liner 112 to allow the moist vapor to be discharged into the air duct 200 from inside the tub 110 .
- the blower 210 is connected to the air duct 200 . Therefore, the moist vapor that is suctioned by the blower 210 flows along the air duct 200 .
- a condenser fan 240 installed at the front of the blower 210 is a condenser fan 240 for blowing cold air to lower the temperature of the moist vapor flowing through the inside of the air duct 200 .
- the condenser fan 240 evenly circulates the cold air, which is supplied at the top of the air duct 200 to flow towards the bottom thereof. Therefore, the blower 210 may be disposed at the top of the air duct 200 .
- a moist air absorber 115 is installed at the lower portion of the air duct 200 to absorb the cool air discharged from the air duct 200 .
- the moist air absorber 115 is supported by a bracket 114 at the front of the liner 112 connecting either side thereof.
- the moist air absorber 115 used may be made of a porous material such as a sponge.
- the moist air leaving the tub 110 during the drying cycle in the above embodiment flows through the blower 210 and the air duct 200 .
- the air that is condensed while exiting the bottom of the air duct 200 passes through the moist air absorber 115 to be re-circulated.
- the condensed air that leaves the air duct 200 is diffused as it passes through the moist air absorber 115 , and is expelled from the bottom of the dish washer 100 . Accordingly, a user is not directly subjected to the air expelled from the air duct 200 .
- FIG. 3 is a frontal view of a condensing apparatus according to the present invention.
- the condensing apparatus of a dish washer includes: a blower 210 installed at the front of the liner 112 for suctioning air from inside the tub 110 , and an air duct 200 that is coupled to the front of the blower 210 at a top portion of the air duct 200 .
- Installed within the blower 210 is a fan (to be described later) for suctioning air from inside the tub 110 .
- a condenser fan 240 for blowing cold air to lower the temperature of the air duct 200 is integrally coupled with the fan and is installed at the front of the blower 210 .
- the air duct 200 is bent a plurality of times to form a meander line in order to lengthen the passage for air flowing through the air duct 200 .
- Disposed at a lower portion of the air duct 200 are a condensed water discharge port 201 for discharging condensed water from the air cooled while flowing through the air duct 200 , and a vapor exhaust port 202 for exhausting the air that flows through the air duct 200 .
- the vapor exhaust port 202 formed at the end of the air duct 200 is formed vertically.
- the straight portion 208 connecting the curved portion (where the condensed water discharge port 201 is formed) and the curved portion (where the vapor exhaust port 202 begins) is inclined at a predetermined angle.
- the curved portion at the point where the condensed water discharge port 201 is formed is disposed below the curved portion where the vapor exhaust port 202 begins. Accordingly, the condensed water flowing along the inside of the air duct is ultimately discharged at the condensed water discharge port 201 into the tub.
- the vapor exhausted from the air duct 200 passes through the moist air absorber 115 .
- the hot, moist air inside the tub 110 is suctioned by the blower 210 into the air duct 200 .
- the hot, moist air flows along the air duct 200 , and exchanges heat with the cold air fed by the rotating condenser fan 240 .
- the cold air may be fed by the condenser fan 240 to flow along the outside of the air duct 200 .
- the water vapor is condensed through the heat exchange, and the condensed water re-enters the tub 110 through the condensed water discharge port 201 .
- the air is then exhausted through the vapor exhaust port 202 to the outside.
- FIG. 4 is a frontal perspective view of a blower for a condensing apparatus according to the present invention
- FIG. 5 is a rear perspective view of the blower in FIG. 4
- FIG. 6 is a rear perspective view of an air duct for a condensing apparatus according to the present invention.
- the air duct 200 includes a water vapor intake port 204 at the top of the air duct 200 for intaking water vapor provided by the blower 210 , and a vapor passage 207 that the water vapor that enters the water vapor intake port 204 flows through.
- the vapor passage 207 is formed with alternating curved and straight portions 205 and 206 , creating a meander line. Therefore, the water vapor spends a longer period of time within the vapor passage 207 . As the water vapor flows along the vapor passage 207 , it encounters resistance that makes it contact the inner surface of the air duct 200 , thereby increasing heat exchange effectiveness.
- the vapor passage 207 has a ridge 203 formed to protrude a predetermined height from its floor.
- the ridge 203 protrudes a predetermined height from the floor at a point where the straight portion 206 ends and the curved portion 205 begins, or protrudes a predetermined height from the floor at a predetermined point along the straight portion 206 .
- the condensed water (formed during the passage of water vapor through the inside of the air duct 200 ) collects on the floor of the air duct 200 .
- the blower 210 that blows water vapor into the air duct 200 has a dryer fan 230 installed within and a drive motor 220 installed at the front for driving the dryer fan 230 .
- Installed at the front of the drive motor 220 is a condenser fan 240 for blowing cold air for cooling the water vapor flowing through the inside of the air duct 200 .
- the drive shaft of the dryer fan 230 is connected to the condenser fan 240 , so that the dryer fan 230 and the condenser fan 240 rotate together.
- the condenser fan 240 increases heat-exchanging effectiveness by evenly condensing the vapor circulating inside the air duct 200 . Because a separate motor for driving the condenser fan 240 is not needed, the structure of the blower is simplified and compacted.
- the dryer fan 230 and the condenser fan 240 may be cross-flow fans that suction air towards the shaft and discharge air in a radial direction.
- a water vapor exhaust port 211 connected to the water vapor intake port 204 of the air duct 200 , and a water vapor suction port 212 for suctioning water vapor from inside the tub 110 is formed at the rear of the blower 210 .
- the dryer fan 230 and the condenser fan 240 operate, and the water vapor inside the tub 110 is suctioned through the water vapor suction port 212 into the blower 210 . Then, the water vapor is discharged through the water vapor exhaust port 211 and flows into the air duct 200 . The water vapor that flows into the air duct 200 exchanges heat with cold air provided by the rotating condenser fan 240 .
- the vapor passage of the air duct 200 is formed in a meandering line, and the condenser fan 240 is installed at the front of the blower 210 , so that hot, moist air from inside the tub 110 can be cooled rapidly.
- the condensing apparatus of a dish washer according to the present invention has a separately installed condenser fan that blows air towards the air duct, so that hot, moist air generated during a drying cycle is able to quickly condense while flowing through the air duct.
- vapor that has passed through the air duct and has been de-moisturized flows back into the tub of the dish washer, and is not expelled outside the dish washer. Accordingly, users near the dish washer being injured or articles such as wallpaper and wooden furniture being damaged and deformed by the vapor can be prevented.
- the condensing apparatus of a dish washer according to the present invention has the dryer fan and the condenser fan driven by a common motor, so that the above effects are achieved by the condenser fancondenser fanrational efficiency increases.
- the condensing apparatus of a dish washer according to the present invention has a ridge formed in the vapor passage inside the duct, so that condensed water is caught by the ridge. Therefore, the water vapor is reliably condensed, and processing of the condensed water becomes easier.
- the condensing apparatus of a dish washer according to the present invention reliably condenses steam, and can prevent vapor from affecting persons/objects outside the dishwasher. Therefore, the condensing apparatus has a wide industrial application.
Landscapes
- Washing And Drying Of Tableware (AREA)
Abstract
A condensing apparatus of a dish washer is provided. The condensing apparatus includes an air duct and a blower. Vapor from inside a tub of the dish washer flows through the air duct in which it condenses. The blower has a condenser fan that blows air at the air duct to exchange heat with the vapor flowing through the air duct, and a dryer fan that provides suctioning force for suctioning vapor from inside the tub.
Description
- The present invention relates to a dish washer, and more particularly, to a condensing apparatus of a dish washer capable of condensing steam that is created during a drying cycle.
- A dish washer is a home appliance that uses a wash pump to circulate wash liquid to be sprayed from spray nozzles to wash dishes placed in an upper and lower rack, and dries the dishes after they are washed.
- Conventional dish washers have an air duct for outwardly exhausting hot, moist vapor that forms during a drying cycle. This air duct is installed on the door of the dish washer. After the drying cycle is completed, a dryer fan rotates to vent the hot, moist vapor into the air duct. The vented vapor is discharged outward from the front of the dishwasher through a steam vent formed at the front of the door.
- However, such a condensing apparatus of a related art dish washer expels hot, moist vapor directly out into an interior of a room. Accordingly, it can be directly expelled towards persons near the dish washer, and can cause bums and other discomfort. Furthermore, the expelled vapor can affect wallpaper and wood inside the room, causing corrosion and deformation thereof. Moreover, the expelled hot, moist vapor can condense and collect on the floor around the dishwasher, which can cause passers-by to slip and injure themselves.
- To solve these problems, the present invention provides a condensing apparatus of a dish washer that can reliably condense the moisture from the vapor created in a drying cycle, and prevent the vapor from being directly expelled outward from the dish washer.
- To achieve the above objects, there is provided a condensing apparatus of a dish washer including: an air duct for circulating and condensing vapor from inside a dish washer tub; a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct; and a blower including a dryer fan for providing suctioning force to suction the vapor from inside the tub.
- According to another aspect of the present invention, there is provided a condensing apparatus of a dish washer including: an air duct for circulating and condensing vapor from inside the tub; a dryer fan for generating suctioning force to suction vapor from inside the tub into the air duct; a motor for driving the dryer fan; and a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct, the condenser fan being driven by the motor. According to a further aspect of the present invention, there is provided a condensing apparatus of a dish washer including: an air duct for circulating and condensing vapor from inside the tub; and a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct.
- An advantage of the condensing apparatus of a dish washer according to the present invention is that a separate condenser fan is installed to blow air towards the air duct, so that hot, moist vapor formed during a drying cycle can be vented into the air duct and quickly condensed.
- Another advantage of the condensing apparatus of a dish washer according to the present invention is that vapor that has passed through the air duct and has been de-moisturized flows back into the tub of the dish washer, and is not expelled outside the dish washer. Accordingly, users near the dish washer being injured or articles such as wallpaper and wooden furniture being damaged and deformed by the vapor can be prevented.
- A further advantage of the condensing apparatus of a dish washer according to the present invention is that because the dryer fan and the condenser fan are driven by a common motor, the above effects are achieved by the condenser fan while its operational efficiency increases.
- A still further advantage of the condensing apparatus of a dish washer according to the present invention is that due to a ridge formed in the vapor passage inside the duct, condensed water is caught by the ridge. Therefore, the condensed water vapor is reliably condensed, and processing of the condensed water becomes easier.
- The spirit of the present invention can be understood more fully with reference to the accompanying drawings. In the drawings:
-
FIG. 1 is a sectional view of a dishwasher having a condensing apparatus according to the present invention; -
FIG. 2 is a perspective view showing the front of a dishwasher having a condensing apparatus according to the present invention; -
FIG. 3 is a frontal view of a condensing apparatus according to the present invention; -
FIG. 4 is a frontal perspective view of a blower for a condensing apparatus according to the present invention; -
FIG. 5 is a rear perspective view of the blower inFIG. 4 ; and -
FIG. 6 is a rear perspective view of an air duct for a condensing apparatus according to the present invention. - Hereinafter, preferred embodiments of a condensing apparatus of a dish washer according to the present invention will be described in detail with reference to the accompanying drawings.
-
FIG. 1 is a sectional view of a dishwasher having a condensing apparatus according to the present invention. - Referring to
FIG. 1 , adish washer 100 according to the present invention includes atub 110 forming the outer shape of thedish washer 100 and a wash compartment within, adoor 113 formed at the front of thetub 110 for opening and closing the wash compartment, and asump 170 formed at a lower central portion of thetub 110 for holding wash liquid. - In further detail, the
door 113 has afront panel 111 forming the exterior thereof and aliner 112 installed behind thefront panel 111. An air duct according to the present invention (to be henceforth described) is installed between thefront panel 111 and theliner 112. - Also, a
wash pump 180 for pumping wash liquid stored in thesump 170 under high pressure is formed inside thesump 170, and awash motor 190 is mounted below thewash pump 180 for driving thewash pump 180. - The
dish washer 100 further includes awater guide 140 providing a route for wash water pumped by thewash pump 180, alower spray arm 160 provided above thesump 170 and formed at the bottom of the wash compartment to spray wash water upward, anupper spray arm 150 extending vertically from the upper portion of thewater guide 140 and located in the central portion inside the wash compartment, and atop spray nozzle 155 formed at the ceiling of the tub for spraying wash liquid in a vertically downward direction. - Also included are an
upper rack 120 installed above theupper spray arm 150 for holding dishes to be washed by theupper spray arm 150, and alower rack 130 installed above thelower spray arm 160 for holding dishes to be washed by thelower spray arm 160. - In more detail, the
upper rack 120 is supported by rails (not shown) on the inner walls of thetub 110 to be capable of moving forward and backward. An explanation on the operation of thedish washer 100 according to the present invention will now be given. - First, a user opens the
door 111 of the dishwasher, and pulls out theupper rack 120 and/or thelower rack 130. Then, dishes are placed on theracks door 111, turns the power on, and activates the dish washer. - When the start button is pressed on the
dishwasher 100 and the wash cycle begins, wash liquid from a water supply enters thesump 170. After the entry of a predetermined amount of wash liquid into thesump 170 is completed, thewash motor 190 is activated. An impeller (not shown) attached to thewash motor 190 shaft and installed in thewash pump 180 rotates, pumping the wash liquid to thelower nozzle 160 and thewater guide 140. - The wash liquid pumped to the
water guide 140 moves to thetop spray nozzle 155 and theupper spray arm 150 to be sprayed therefrom into the wash compartment. The dishes stacked on theracks - Here, the
top spray nozzle 155 sprays wash liquid vertically downward, and theupper spray arm 150 sprays wash liquid vertically upward to wash the dishes stacked on theupper rack 120. - Additionally, the
lower spray arm 160 sprays wash liquid vertically upward to wash the dishes stacked on thelower rack 130. Also, spray holes may be formed on the bottom of theupper spray arm 150 to spray wash liquid downward to simultaneously wash the upper portions of dishes stacked on thelower rack 130. - After the wash cycle is completed, contaminants in the dirty wash water collected in the
sump 170 are removed by a filter (not shown). The wash water from which the contaminants are removed is then discharged from thedishwasher 100 via a drain pump (not shown). - When wash liquid is discharged to the outside, clean wash liquid is routed into the
sump 170 via an entrance hole and is discharged through thenozzles - When the rinse cycle is complete, a drying cycle is implemented, to complete the entire wash cycle. Here, in the drying cycle, hot air that enters the
tub 110 absorbs moisture from the dishes. Thus, the hot, dry air in thetub 110 becomes hot, moist air. The hot, moist air passes through an air duct (not shown) installed at the front of theliner 112 on thedoor 113, and is discharged from thetub 110 to the outside. The discharging of moist vapor through the air duct will now be described with reference to the drawings. -
FIG. 2 is a perspective view showing the front of a dishwasher having a condensing apparatus according to the present invention. - Referring to
FIG. 2 , theair duct 200 according to the present invention is installed at the front of theliner 112, and is protected by thefront panel 111. - In further detail, a
blower 210 is installed at one end of the upper portion of theliner 112 to allow the moist vapor to be discharged into theair duct 200 from inside thetub 110. Theblower 210 is connected to theair duct 200. Therefore, the moist vapor that is suctioned by theblower 210 flows along theair duct 200. Also, installed at the front of theblower 210 is acondenser fan 240 for blowing cold air to lower the temperature of the moist vapor flowing through the inside of theair duct 200. Thecondenser fan 240 evenly circulates the cold air, which is supplied at the top of theair duct 200 to flow towards the bottom thereof. Therefore, theblower 210 may be disposed at the top of theair duct 200. - A
moist air absorber 115 is installed at the lower portion of theair duct 200 to absorb the cool air discharged from theair duct 200. Themoist air absorber 115 is supported by abracket 114 at the front of theliner 112 connecting either side thereof. Themoist air absorber 115 used may be made of a porous material such as a sponge. - The moist air leaving the
tub 110 during the drying cycle in the above embodiment flows through theblower 210 and theair duct 200. The air that is condensed while exiting the bottom of theair duct 200 passes through themoist air absorber 115 to be re-circulated. In other words, the condensed air that leaves theair duct 200 is diffused as it passes through themoist air absorber 115, and is expelled from the bottom of thedish washer 100. Accordingly, a user is not directly subjected to the air expelled from theair duct 200. -
FIG. 3 is a frontal view of a condensing apparatus according to the present invention. - Referring to
FIG. 3 , the condensing apparatus of a dish washer according to the present invention includes: ablower 210 installed at the front of theliner 112 for suctioning air from inside thetub 110, and anair duct 200 that is coupled to the front of theblower 210 at a top portion of theair duct 200. Installed within theblower 210 is a fan (to be described later) for suctioning air from inside thetub 110. Acondenser fan 240 for blowing cold air to lower the temperature of theair duct 200 is integrally coupled with the fan and is installed at the front of theblower 210. - Specifically, the
air duct 200, as illustrated, is bent a plurality of times to form a meander line in order to lengthen the passage for air flowing through theair duct 200. Disposed at a lower portion of theair duct 200 are a condensedwater discharge port 201 for discharging condensed water from the air cooled while flowing through theair duct 200, and avapor exhaust port 202 for exhausting the air that flows through theair duct 200. - The
vapor exhaust port 202 formed at the end of theair duct 200 is formed vertically. Thestraight portion 208 connecting the curved portion (where the condensedwater discharge port 201 is formed) and the curved portion (where thevapor exhaust port 202 begins) is inclined at a predetermined angle. Specifically, the curved portion at the point where the condensedwater discharge port 201 is formed is disposed below the curved portion where thevapor exhaust port 202 begins. Accordingly, the condensed water flowing along the inside of the air duct is ultimately discharged at the condensedwater discharge port 201 into the tub. By dividing the end of thevapor exhaust port 202 into an opposing dual port, the vapor exhausted from theair duct 200 passes through themoist air absorber 115. In the above structure, the hot, moist air inside thetub 110 is suctioned by theblower 210 into theair duct 200. The hot, moist air flows along theair duct 200, and exchanges heat with the cold air fed by the rotatingcondenser fan 240. The cold air may be fed by thecondenser fan 240 to flow along the outside of theair duct 200. The water vapor is condensed through the heat exchange, and the condensed water re-enters thetub 110 through the condensedwater discharge port 201. The air is then exhausted through thevapor exhaust port 202 to the outside. -
FIG. 4 is a frontal perspective view of a blower for a condensing apparatus according to the present invention,FIG. 5 is a rear perspective view of the blower inFIG. 4 , andFIG. 6 is a rear perspective view of an air duct for a condensing apparatus according to the present invention. - Referring to
FIGS. 4 through 6 , theair duct 200 according to the present invention includes a watervapor intake port 204 at the top of theair duct 200 for intaking water vapor provided by theblower 210, and avapor passage 207 that the water vapor that enters the watervapor intake port 204 flows through. - In detail, the
vapor passage 207, as explained above, is formed with alternating curved andstraight portions vapor passage 207. As the water vapor flows along thevapor passage 207, it encounters resistance that makes it contact the inner surface of theair duct 200, thereby increasing heat exchange effectiveness. - Additionally, the
vapor passage 207 has aridge 203 formed to protrude a predetermined height from its floor. Theridge 203 protrudes a predetermined height from the floor at a point where thestraight portion 206 ends and thecurved portion 205 begins, or protrudes a predetermined height from the floor at a predetermined point along thestraight portion 206. By forming theridge 203, the condensed water (formed during the passage of water vapor through the inside of the air duct 200) collects on the floor of theair duct 200. - The
blower 210 that blows water vapor into theair duct 200 has adryer fan 230 installed within and adrive motor 220 installed at the front for driving thedryer fan 230. Installed at the front of thedrive motor 220 is acondenser fan 240 for blowing cold air for cooling the water vapor flowing through the inside of theair duct 200. The drive shaft of thedryer fan 230 is connected to thecondenser fan 240, so that thedryer fan 230 and thecondenser fan 240 rotate together. - Because a
single drive motor 220 rotates thedryer fan 230 and thecondenser fan 240 together, a separate motor for driving thecondenser fan 240 is not required. Thecondenser fan 240 increases heat-exchanging effectiveness by evenly condensing the vapor circulating inside theair duct 200. Because a separate motor for driving thecondenser fan 240 is not needed, the structure of the blower is simplified and compacted. Thedryer fan 230 and thecondenser fan 240 may be cross-flow fans that suction air towards the shaft and discharge air in a radial direction. - Formed at the front of the
blower 210 is a watervapor exhaust port 211 connected to the watervapor intake port 204 of theair duct 200, and a watervapor suction port 212 for suctioning water vapor from inside thetub 110 is formed at the rear of theblower 210. - During a drying cycle, the
dryer fan 230 and thecondenser fan 240 operate, and the water vapor inside thetub 110 is suctioned through the watervapor suction port 212 into theblower 210. Then, the water vapor is discharged through the watervapor exhaust port 211 and flows into theair duct 200. The water vapor that flows into theair duct 200 exchanges heat with cold air provided by the rotatingcondenser fan 240. - As described above, the vapor passage of the
air duct 200 is formed in a meandering line, and thecondenser fan 240 is installed at the front of theblower 210, so that hot, moist air from inside thetub 110 can be cooled rapidly. - The condensing apparatus of a dish washer according to the present invention has a separately installed condenser fan that blows air towards the air duct, so that hot, moist air generated during a drying cycle is able to quickly condense while flowing through the air duct.
- Also, in the condensing apparatus of a dish washer according to the present invention, vapor that has passed through the air duct and has been de-moisturized flows back into the tub of the dish washer, and is not expelled outside the dish washer. Accordingly, users near the dish washer being injured or articles such as wallpaper and wooden furniture being damaged and deformed by the vapor can be prevented.
- In addition, the condensing apparatus of a dish washer according to the present invention has the dryer fan and the condenser fan driven by a common motor, so that the above effects are achieved by the condenser fancondenser fanrational efficiency increases.
- Furthermore, the condensing apparatus of a dish washer according to the present invention has a ridge formed in the vapor passage inside the duct, so that condensed water is caught by the ridge. Therefore, the water vapor is reliably condensed, and processing of the condensed water becomes easier.
- While the present invention has been described and illustrated herein with reference to the preferred embodiments thereof, it will be apparent to those skilled in the art that various modifications and variations can be made therein without departing from the spirit and scope of the invention. Thus, it is intended that the present invention covers the modifications and variations of this invention that come within the scope of the appended claims and their equivalents.
- The condensing apparatus of a dish washer according to the present invention reliably condenses steam, and can prevent vapor from affecting persons/objects outside the dishwasher. Therefore, the condensing apparatus has a wide industrial application.
Claims (20)
1. A condensing apparatus of a dish washer for condensing vapor inside a dish washer tub, the condensing apparatus comprising:
an air duct for circulating and condensing vapor from inside the tub; and
a blower including a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct, and a dryer fan for providing suctioning force to suction vapor from inside the tub.
2. The condensing apparatus according to claim 1 , wherein the condenser fan blows air along an outside of the air duct.
3. The condensing apparatus according to claim 1 , wherein the blower further includes a motor for driving the condenser fan and the dryer fan together.
4. The condensing apparatus according to claim 3 , wherein the motor has a rotating shaft to which both the condenser fan and the dryer fan are mounted.
5. The condensing apparatus according to claim 1 , wherein the condenser fan is disposed at a front of the blower.
6. The condensing apparatus according to claim 1 , wherein the dryer and/or the condenser fan is a cross-flow fan.
7. The condensing apparatus according to claim 1 , wherein the blower is disposed at a top of the air duct.
8. The condensing apparatus according to claim 1 , wherein the air duct includes a condensed water discharge port for discharging moisture condensed from the vapor and a split-type vapor exhaust port for exhausting vapor from which moisture has been removed.
9. The condensing apparatus according to claim 8 , wherein the air duct further includes a portion between the condensed water discharge port and the vapor exhaust port, the portion being inclined at a predetermined angle to dispose the condensed water discharge port lower than the vapor exhaust port.
10. A condensing apparatus of a dish washer for condensing vapor inside a dish washer tub, the condensing apparatus comprising:
an air duct for circulating and condensing vapor from inside the tub;
a dryer fan for generating suctioning force to suction vapor from inside the tub into the air duct;
a motor for driving the dryer fan; and
a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct, the condenser fan driven by the motor.
11. The condensing apparatus according to claim 10 , wherein the motor drives the dryer fan and the condenser fan together.
12. The condensing apparatus according to claim 11 , wherein the motor has a rotating shaft to which both the dryer fan and the condenser fan are coupled.
13. The condensing apparatus according to claim 10 , further comprising a blower to which the dryer fan, the motor, and the condenser fan are installed.
14. The condensing apparatus according to claim 13 , wherein the condenser fan is disposed at a front of the blower.
15. The condensing apparatus according to claim 10 , wherein the condenser fan blows air along an outside of the air duct.
16. The condensing apparatus according to claim 10 , wherein the dryer fan and/or the condenser fan is a cross-flow fan.
17. A condensing apparatus of a dish washer comprising:
an air duct for circulating and condensing vapor from inside a dish washer tub; and
a condenser fan for blowing air at the air duct to exchange heat with the vapor circulating inside the air duct.
18. The condensing apparatus according to claim 17 , wherein the condenser fan blows air along an outside of the air duct.
19. The condensing apparatus according to claim 17 , wherein the condenser fan is disposed at a top of the air duct.
20. The condensing apparatus according to claim 17 , further comprising a dryer fan providing suctioning force for suctioning the vapor into the air duct and a motor for driving the dryer fan, wherein the condenser fan is driven together with the dryer fan by the motor.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR1020040081271A KR101122837B1 (en) | 2004-10-12 | 2004-10-12 | A condensing apparatus of a dish washer |
KR10-2004-008127 | 2004-10-12 | ||
PCT/KR2005/003317 WO2006080706A1 (en) | 2004-10-12 | 2005-10-06 | Condensing apparatus of dish washer |
Publications (1)
Publication Number | Publication Date |
---|---|
US20090095332A1 true US20090095332A1 (en) | 2009-04-16 |
Family
ID=36740686
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/580,117 Abandoned US20090095332A1 (en) | 2004-10-12 | 2005-10-06 | Condensing apparatus of dish washer |
Country Status (4)
Country | Link |
---|---|
US (1) | US20090095332A1 (en) |
KR (1) | KR101122837B1 (en) |
DE (1) | DE112005000856B4 (en) |
WO (1) | WO2006080706A1 (en) |
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20070102025A1 (en) * | 2005-05-31 | 2007-05-10 | Lg Electronics Inc. | Dishwasher and controlling method thereof |
US20070102026A1 (en) * | 2005-05-31 | 2007-05-10 | Lg Electronics Inc. | Dishwasher and controlling method thereof |
US20100192977A1 (en) * | 2009-02-04 | 2010-08-05 | Electrolux Home Products, Inc. | Dishwasher, a door assembly for the dishwasher, and an associated method for drying dishware |
CN108403061A (en) * | 2018-05-09 | 2018-08-17 | 火星人厨具股份有限公司 | A kind of interior cyclic drying system of domestic bowl-washing |
US10295256B2 (en) | 2009-02-04 | 2019-05-21 | Electrolux Home Products, Inc. | Dishwasher, a door assembly for the dishwasher, and an associated method for drying dishware |
US11278180B2 (en) * | 2018-02-09 | 2022-03-22 | Lg Electronics Inc. | Dishwasher |
US11297998B2 (en) * | 2018-02-08 | 2022-04-12 | Lg Electronics Inc. | Dishwasher |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR100820584B1 (en) * | 2007-01-17 | 2008-04-08 | 주식회사 파세코 | Clothes drying machine |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3068877A (en) * | 1958-09-12 | 1962-12-18 | Gen Motors Corp | Dishwasher |
US4247158A (en) * | 1979-07-02 | 1981-01-27 | The Maytag Company | Dishwasher airflow drying system |
US5076306A (en) * | 1988-11-16 | 1991-12-31 | Sanyo Electric Co., Ltd. | Dish washer with dryer |
US5277210A (en) * | 1991-05-27 | 1994-01-11 | Samsung Electronics Co., Ltd. | Drying duct of dishwasher |
US5337500A (en) * | 1992-02-05 | 1994-08-16 | Kabushiki Kaisha Toshiba | Utensil drying apparatus |
US5660195A (en) * | 1996-03-05 | 1997-08-26 | White Consolidated Industries, Inc. | Dishwasher vent system |
Family Cites Families (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE8026939U1 (en) * | 1980-10-08 | 1982-02-04 | Bosch-Siemens Hausgeräte GmbH, 7000 Stuttgart | DISHWASHER |
DE3741652A1 (en) * | 1987-12-09 | 1989-06-22 | Bauknecht Hausgeraete | Device for drying dishes |
IT1280784B1 (en) * | 1995-01-16 | 1998-02-11 | Merloni Elettrodomestici Spa | DISHWASHER MACHINE WITH DRYING FAN. |
IT1277350B1 (en) * | 1995-07-26 | 1997-11-10 | Smeg Spa | DRYING DEVICE FOR STEAM CONDENSATION APPLIED TO A DISHWASHER MACHINE |
DE19946456A1 (en) * | 1999-09-28 | 2001-04-05 | Bsh Bosch Siemens Hausgeraete | Domestic dishwasher has fan in door above heat exchanger to suck moist and fresh air from near upper part of door and force moist air and fresh air horizontally through heat exchanger |
DE10013399A1 (en) * | 2000-03-17 | 2001-09-27 | Aeg Hausgeraete Gmbh | Heat recovery method for dishwasher involves transferring heat to water in water container during cooling of hot washing liquid in washing chamber e.g. before pumping out, during pre-wash |
DE60313428T2 (en) * | 2003-02-11 | 2008-01-10 | Whirlpool Corp., Benton Harbor | Dishwasher with drying device |
-
2004
- 2004-10-12 KR KR1020040081271A patent/KR101122837B1/en not_active IP Right Cessation
-
2005
- 2005-10-06 WO PCT/KR2005/003317 patent/WO2006080706A1/en active Application Filing
- 2005-10-06 US US10/580,117 patent/US20090095332A1/en not_active Abandoned
- 2005-10-06 DE DE112005000856.8T patent/DE112005000856B4/en not_active Expired - Fee Related
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3068877A (en) * | 1958-09-12 | 1962-12-18 | Gen Motors Corp | Dishwasher |
US4247158A (en) * | 1979-07-02 | 1981-01-27 | The Maytag Company | Dishwasher airflow drying system |
US5076306A (en) * | 1988-11-16 | 1991-12-31 | Sanyo Electric Co., Ltd. | Dish washer with dryer |
US5277210A (en) * | 1991-05-27 | 1994-01-11 | Samsung Electronics Co., Ltd. | Drying duct of dishwasher |
US5337500A (en) * | 1992-02-05 | 1994-08-16 | Kabushiki Kaisha Toshiba | Utensil drying apparatus |
US5660195A (en) * | 1996-03-05 | 1997-08-26 | White Consolidated Industries, Inc. | Dishwasher vent system |
Cited By (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20070102025A1 (en) * | 2005-05-31 | 2007-05-10 | Lg Electronics Inc. | Dishwasher and controlling method thereof |
US20070102026A1 (en) * | 2005-05-31 | 2007-05-10 | Lg Electronics Inc. | Dishwasher and controlling method thereof |
US7695572B2 (en) * | 2005-05-31 | 2010-04-13 | Lg Electronics Inc. | Dishwasher and controlling method thereof |
US7758705B2 (en) * | 2005-05-31 | 2010-07-20 | Lg Electronics Inc. | Dishwasher having a door passage through which steam flows |
US20100192977A1 (en) * | 2009-02-04 | 2010-08-05 | Electrolux Home Products, Inc. | Dishwasher, a door assembly for the dishwasher, and an associated method for drying dishware |
US8696824B2 (en) | 2009-02-04 | 2014-04-15 | Electrolux Home Products, Inc. | Dishwasher, a door assembly for the dishwasher, and an associated method for drying dishware |
US9907450B2 (en) | 2009-02-04 | 2018-03-06 | Electrolux Home Products, Inc. | Dishwasher, a door assembly for the dishwasher, and an associated method for drying dishware |
US10295256B2 (en) | 2009-02-04 | 2019-05-21 | Electrolux Home Products, Inc. | Dishwasher, a door assembly for the dishwasher, and an associated method for drying dishware |
US11297998B2 (en) * | 2018-02-08 | 2022-04-12 | Lg Electronics Inc. | Dishwasher |
US11278180B2 (en) * | 2018-02-09 | 2022-03-22 | Lg Electronics Inc. | Dishwasher |
CN108403061A (en) * | 2018-05-09 | 2018-08-17 | 火星人厨具股份有限公司 | A kind of interior cyclic drying system of domestic bowl-washing |
Also Published As
Publication number | Publication date |
---|---|
KR101122837B1 (en) | 2012-03-21 |
KR20060032350A (en) | 2006-04-17 |
DE112005000856B4 (en) | 2014-02-13 |
WO2006080706A1 (en) | 2006-08-03 |
DE112005000856T5 (en) | 2007-04-05 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US7798157B2 (en) | Condensing apparatus of dish washer | |
US20090095332A1 (en) | Condensing apparatus of dish washer | |
EP1913860B1 (en) | Dishwasher with condenser in the door | |
KR20070105055A (en) | Dish washer | |
US20080072935A1 (en) | Dishwasher | |
JP4670595B2 (en) | Dishwasher | |
KR102384522B1 (en) | Dishwasher | |
KR101238136B1 (en) | A condensing apparatus of a dish washer | |
US11134827B2 (en) | Dishwasher | |
AU2019200883B2 (en) | Dishwasher | |
KR100630974B1 (en) | Dish washer | |
KR101214705B1 (en) | A dish washer and condensation assembly of dish washer | |
KR20080083393A (en) | Dish washer | |
KR20070007547A (en) | A condensing apparatus of a dish washer | |
KR20070105058A (en) | Condensation apparatus of a dish washer | |
KR101204568B1 (en) | Dish washer | |
JP2875707B2 (en) | dishwasher | |
KR200397407Y1 (en) | Duct structure of dish washer | |
KR0131403Y1 (en) | Dishwasher | |
KR101178688B1 (en) | Condensing system of dish washer | |
JP2002282193A (en) | Dishwasher | |
JPH05220081A (en) | Dish washer |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
AS | Assignment |
Owner name: LG ELECTRONICS INC., KOREA, REPUBLIC OF Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:LEE, GANG HYUN;REEL/FRAME:017934/0160 Effective date: 20060127 |
|
STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |