US20110214456A1 - Washing machine and drain pump thereof - Google Patents
Washing machine and drain pump thereof Download PDFInfo
- Publication number
- US20110214456A1 US20110214456A1 US13/009,870 US201113009870A US2011214456A1 US 20110214456 A1 US20110214456 A1 US 20110214456A1 US 201113009870 A US201113009870 A US 201113009870A US 2011214456 A1 US2011214456 A1 US 2011214456A1
- Authority
- US
- United States
- Prior art keywords
- wash water
- water inlet
- drain pump
- chamber
- inlet chamber
- 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
- 238000005406 washing Methods 0.000 title claims abstract description 41
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 354
- 238000005192 partition Methods 0.000 claims description 28
- 238000005086 pumping Methods 0.000 description 6
- 239000003599 detergent Substances 0.000 description 4
- 230000002093 peripheral effect Effects 0.000 description 4
- 239000012535 impurity Substances 0.000 description 2
- 230000002159 abnormal effect Effects 0.000 description 1
- 230000004308 accommodation Effects 0.000 description 1
- 230000006866 deterioration Effects 0.000 description 1
- 239000012530 fluid Substances 0.000 description 1
- 230000007257 malfunction Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
Images
Classifications
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F39/00—Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00
- D06F39/08—Liquid supply or discharge arrangements
- D06F39/083—Liquid discharge or recirculation arrangements
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F37/00—Details specific to washing machines covered by groups D06F21/00 - D06F25/00
- D06F37/20—Mountings, e.g. resilient mountings, for the rotary receptacle, motor, tub or casing; Preventing or damping vibrations
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F39/00—Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00
- D06F39/08—Liquid supply or discharge arrangements
- D06F39/083—Liquid discharge or recirculation arrangements
- D06F39/085—Arrangements or adaptations of pumps
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F2103/00—Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers
- D06F2103/26—Imbalance; Noise level
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F2103/00—Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers
- D06F2103/42—Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers related to filters or pumps
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F2103/00—Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers
- D06F2103/44—Current or voltage
- D06F2103/48—Current or voltage of the motor driving the pump
Definitions
- Embodiments relate to a washing machine having a drain pump to reduce noise.
- a washing machine is an apparatus that washes laundry using frictional force between the laundry and wash water.
- One of various kinds of washing machines is a drum washing machine.
- a drum washing machine will be described by way of example.
- a conventional drum washing machine includes a tub in which wash water is stored, a rotating tub rotatably mounted in the tub, a drive device to rotate the rotating tub, a water supply device to supply wash water into the tub, and a drain pump to forcibly discharge the wash water from the tub.
- the drain pump generally includes a pump case in which a filter chamber and a drain pump chamber are defined, and a pump motor coupled to the pump case.
- the filter chamber contains a filter to capture impurities contained in wash water
- the drain pump chamber contains an impeller to be rotated by the pump motor.
- the interior wash water of the tub is introduced into the filter chamber, and then, after passing through the filter placed in the filter chamber, is suctioned into the drain pump chamber. Thereafter, the wash water is forcibly discharged from the drain pump chamber to the outside of the drain pump via rotation of the impeller.
- air mixed in the wash water may be introduced into the drain pump. If the air is introduced into the drain pump, the air may deteriorate the performance of the impeller placed in the drain pump chamber, causing drain malfunction or abnormal noise generation.
- a drain pump of a washing machine includes a pump case in which a wash water inlet chamber and a drain pump chamber are defined, a wash water inlet port formed at the pump case, to allow wash water to be introduced into the wash water inlet chamber, a wash water outlet port formed at the pump case, to allow the wash water to be discharged from the drain pump chamber, a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber, and an air discharge path arranged at a distance from the wash water suction port between the wash water inlet chamber and the drain pump chamber, to allow air inside the wash water inlet chamber to be discharged through the wash water outlet port.
- a partition may be arranged between the wash water inlet chamber and the drain pump chamber, and the wash water suction port and the air discharge path may be formed at the partition.
- the air discharge path may be located higher than the wash water suction port.
- the air discharge path may have an exit communicating with the drain pump chamber, the exit being located at a radial outward position of an impeller placed in the drain pump chamber.
- a cross sectional area of the air discharge path may be smaller than a cross sectional area of the wash water suction port.
- the wash water inlet port may be located higher than the wash water suction port.
- An upper inner wall surface of the wash water inlet port may be connected to an upper inner wall surface of the wash water inlet chamber without a stepped portion.
- the wash water outlet port may be located close to the air discharge path, to allow the air introduced into the drain pump chamber to be directly discharged through the wash water outlet port, rather than staying in the drain pump chamber.
- a cross sectional area of the wash water outlet port may be smaller than a cross sectional area of the wash water suction port.
- the wash water suction port may protrude from the partition into the wash water inlet chamber.
- a washing machine includes a body, a tub placed in the body, in which wash water is stored, a first drain pipe connected to the tub to allow the wash water to be discharged from the tub, a second drain pipe to guide the wash water discharged from the tub to the outside of the body, a pump case having a wash water inlet port connected to the first drain pipe and a wash water outlet port connected to the second drain pipe, a wash water inlet chamber defined in the pump case, into which the wash water is introduced through the wash water inlet port, a drain pump chamber defined in the pump case, in which an impeller is placed to discharge the wash water through the wash water discharge port, a partition arranged between the wash water inlet chamber and the drain pump chamber, a wash water suction port formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of the impeller, the wash water suction port protruding into the wash water inlet chamber, and an air discharge path formed at the partition to allow the air of
- the air discharge path may be located higher than the wash water suction port.
- the air discharge path may have an exit communicating with the drain pump chamber, the exit being located at a radial outward position of the impeller.
- An upper inner wall surface of the wash water inlet port may be connected to an upper inner wall surface of the wash water inlet chamber in a tangential direction.
- the wash water outlet port may be located close to the air discharge path, to prevent the air introduced into the drain pump chamber from staying in the drain pump chamber.
- a drain pump of a washing machine includes a pump case in which a wash water inlet chamber and a drain pump chamber are defined, a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber, a wash water outlet port formed at the pump case to allow wash water to be discharged from the drain pump chamber, and a wash water inlet port formed at the pump case to allow the wash water to be introduced into the wash water inlet chamber, the center of the wash water inlet port being located higher than the center of the pump case.
- the drain pump may further include a partition arranged between the wash water inlet chamber and the drain pump chamber, the wash water suction port may be formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of an impeller, and the drain pump may further include an air discharge path formed at the partition to allow air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
- a washing machine includes a body, a tub placed in the body, in which wash water is stored, a first drain pipe connected to the tub to allow the wash water to be discharged from the tub, a second drain pipe to guide the wash water discharged from the tub to the outside of the body, a pump case in which a wash water inlet chamber and a drain pump chamber are defined, a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber, a wash water outlet port formed at the pump case to connect the drain pump chamber and the second drain pipe to each other, and a wash water inlet port formed at the pump case to connect the first drain pipe and the wash water inlet chamber to each other, the center of the wash water inlet port being located higher than the center of the pump case.
- the washing machine may further include a partition arranged between the wash water inlet chamber and the drain pump chamber, the wash water suction port may be formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of an impeller, and the washing machine may further include an air discharge path formed at the partition to allow air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
- FIG. 1 is a sectional view illustrating a general configuration of a washing machine according to an embodiment
- FIG. 2 is a perspective view illustrating a drain pump according to the embodiment
- FIG. 3 is a sectional view of the drain pump taken along the line I-I of FIG. 2 ;
- FIG. 4 is a sectional view of the drain pump taken along the line II-II of FIG. 2 ;
- FIG. 5 is a sectional view of the drain pump taken along the line III-III of FIG. 2 ;
- FIG. 6 is a view illustrating operation of the drain pump provided in the washing machine according to the embodiment.
- FIG. 1 is a sectional view illustrating a general configuration of a washing machine according to an embodiment.
- the washing machine includes a body 10 defining an external appearance of the washing machine, a tub 11 mounted in the body 10 , in which wash water is stored during a washing operation, and a rotating tub 12 rotatably mounted in the tub 11 .
- the body 10 has an input opening 13 perforated in a front wall thereof to allow a user to put laundry into the rotating tub 12 .
- a door 14 is provided to open or close the input opening 13 .
- a water supply device 20 and a detergent supply device 30 are mounted in an upper region of the body 10 to supply wash water and detergent into the tub 11 .
- the water supply device 20 includes water supply valves 21 to control the supply of wash water, water supply pipes 22 connecting the water supply valves 21 to the detergent supply device 30 , and a connecting pipe 23 to guide the wash water, having passed through the detergent supply device 30 , into the tub 11 .
- the tub 11 is externally provided with a drive motor 41 , which rotates the rotating tub 12 forwardly or reversely.
- a drive shaft 42 is mounted between the rotating tub 12 and the drive motor 41 to transmit rotation force of the drive motor 41 to the rotating tub 12 .
- a bearing housing 43 is mounted to a rear wall of the tub 11 to rotatably support the drive shaft 42 , and a bearing 44 is interposed between the bearing housing 43 and the drive shaft 42 .
- a drain pump 100 is mounted on an inner bottom surface of the body 10 to pump the wash water stored in the tub 11 .
- the drain pump 100 is connected to the tub 11 via a first drain pipe 50 .
- the drain pump 100 serves to pump the wash water drained through the first drain pipe 50 to forcibly discharge the wash water to the outside of the body 10 .
- FIG. 2 is a perspective view illustrating the drain pump according to the embodiment
- FIG. 3 is a sectional view of the drain pump taken along the line I-I of FIG. 2
- FIG. 4 is a sectional view of the drain pump taken along the line II-II of FIG. 2
- FIG. 5 is a sectional view of the drain pump taken along the line of FIG. 2 .
- a pump filter mounted in a wash water inlet chamber is not illustrated.
- the drain pump 100 includes a pump case 101 in which a wash water inlet chamber 110 and a drain pump chamber 120 are defined, and a pump filter 102 mounted in the wash water inlet chamber 110 .
- the pump case 101 has a cylindrical shape and is provided with a bracket 103 to couple the pump case 101 to the body 10 . Both ends of the cylindrical pump case 101 are open. The pump filter 102 and an impeller 121 that will be described hereinafter are coupled respectively to both the open ends of the cylindrical pump case 101 .
- the cylindrical pump case 101 is coupled to the body 10 such that a peripheral portion of the cylindrical pump case 101 faces the bottom surface of the body 10 .
- the wash water inlet chamber 110 is defined in the pump case 101 . During operation of the drain pump 100 , the wash water stored in the tub 11 is introduced into the wash water inlet chamber 110 through the first drain pipe 50 .
- the drain pump 100 further includes a wash water inlet port 130 provided at a lateral position of a peripheral surface of the pump case 101 .
- the wash water inlet port 130 internally communicates with the wash water inlet chamber 110 and is externally connected to the first drain pipe 50 .
- the wash water having passed through the first drain pipe 50 is introduced into the wash water inlet chamber 110 through the wash water inlet port 130 .
- the wash water inlet port 130 may have a circular shape, and may protrude outward from the pump case 101 for connection with the first drain pipe 50 . In this case, the wash water inlet port 130 may protrude parallel to the bottom surface of the body 10 .
- the center of the wash water inlet port 130 is located higher than the center of the pump case 101 . This serves to minimize the amount of air to be suctioned into the drain pump chamber 120 along with the wash water.
- the air moves upward of the wash water within the wash water inlet chamber 110 because the air is lighter than the wash water and during this movement, may be suctioned into the drain pump chamber 120 .
- highly positioning the wash water inlet port 130 may reduce the above described movement path, thereby minimizing the amount of air to be suctioned into the drain pump chamber 120 and preventing generation of noise due to movement of the wash water.
- An upper inner wall surface of the wash water inlet port 130 may be connected in a tangential direction to an upper inner wall surface of the wash water inlet chamber 110 without a stepped portion. That is, this tangential arrangement of the wash water inlet port 130 and the wash water inlet chamber 110 may be effective in collecting the air in an upper region of the wash water inlet chamber 110 and reducing generation of noise due to movement of the wash water.
- the wash water inlet port 130 is located higher than a wash water suction port 150 that will be described hereinafter.
- the air introduced along with the wash water is located above the wash water and therefore, positioning the wash water inlet port 130 higher than the wash water suction port 150 may minimize the amount of air to be introduced, along with the wash water, into the drain pump chamber 120 through the wash water suction port 150 .
- the drain pump chamber 120 is adapted to suction the wash water introduced into the wash water inlet chamber 110 and discharge the wash water to the outside of the body 10 .
- the wash water inlet chamber 110 and the drain pump chamber 120 may be neighbor to each other in a longitudinal direction within the cylindrical pump case 101 .
- the impeller 121 is mounted in the drain pump chamber 120 and serves to forcibly suction the wash water from the wash water inlet chamber 110 and discharge the wash water from the drain pump chamber 120 .
- a pumping motor 122 is connected to the impeller 121 . As the impeller 121 is rotated by the pumping motor 122 , The impeller 121 suctions the interior wash water of the wash water inlet chamber 110 in a lateral direction and discharges the wash water in a radial direction.
- the drain pump 100 further includes a wash water outlet port 140 provided at an upper position of the peripheral surface of the pump case 101 .
- the wash water outlet port 140 internally communicates with the drain pump chamber 120 and is externally connected to a second drain pipe 60 . All the wash water suctioned into the drain pump chamber 120 and the air directed into the drain pump chamber 120 through an air discharge path 160 that will be described hereinafter are discharged out of the body 10 through the wash water outlet port 140 and the second drain pipe 60 .
- the wash water outlet port 140 may be oriented perpendicular to the bottom surface of the body 10 . In this case, the wash water inlet port 130 provided at the lateral position of the pump case 101 and the wash water outlet port 140 provided at the upper position of the pump case 101 are perpendicular to each other.
- the wash water outlet port 140 may have a circular shape, and may protrude outward from the pump case 101 for connection with the second drain pipe 60 .
- the air is introduced into the drain pump chamber 120 through the air discharge path 160 .
- the wash water outlet port 140 is located close to the air discharge path 160 , to allow the air having passed through the air discharge path 160 to be directly discharged rather than staying in the drain pump chamber 120 .
- the wash water outlet port 140 may be located at a distance of 10 mm or less from the air discharge path 160 .
- the wash water passing through the wash water outlet port 140 may have a higher velocity than that of the wash water passing through the wash water suction port 150 . If the area of an exit is smaller than the area of an entrance, the velocity of a fluid at the exit may be increased. Since the wash water suction port 150 corresponds to the entrance of the drain pump chamber 120 and the wash water outlet port 140 corresponds to the exit of the drain pump chamber 120 , the velocity of the wash water passing through the wash water outlet port 140 may be increased if the area of the wash water outlet port 140 is smaller than the area of the wash water suction port 150 . Accordingly, the area of the wash water outlet port 140 may be smaller than the area of the wash water suction port 150 .
- the wash water suction port 150 is located between the wash water inlet chamber 110 and the drain pump chamber 120 .
- the wash water inlet chamber 110 and the drain pump chamber 120 are arranged side by side within the pump case 101 and communicate with each other through the wash water suction port 150 . If the drain pump 100 is operated, the wash water introduced into the wash water inlet chamber 110 is suctioned into the drain pump chamber 120 through the wash water suction port 150 .
- the air discharge path 160 is located between the wash water inlet chamber 110 and the drain pump chamber 120 , to allow the air inside the wash water inlet chamber 110 to be discharged through the wash water outlet port 140 .
- a conventional drain pump uses an additional air discharge pipe, and this increases the number of places that necessitate leakage management and an additional operation of connecting the air discharge pipe to the drain pump and the tub increases the number of overall processes.
- the air discharge path 160 substitutes for the air discharge pipe, allowing the air introduced into the wash water inlet chamber 110 during pumping of the wash water to be directed into the drain pump chamber 120 and consequently, be discharged out of the drain pump 100 .
- the air discharge path 160 communicates with the wash water inlet chamber 110 and the other end communicates with the drain pump chamber 120 .
- the air discharge path 160 may have a constant cross sectional area from one end to the other end thereof.
- the air inside the wash water inlet chamber 110 is directed into the drain pump chamber 120 through the air discharge path 160 , and then, is discharged to the outside of the body 10 through the wash water outlet port 140 and the second drain pipe 60 .
- the air is directed into the drain pump chamber 120 under a pressure difference between one end and the other end of the air discharge path 160 .
- the air discharge path 160 may be located to communicate the wash water inlet chamber 110 and the drain pump chamber 120 with each other at a position as high as possible, and at least, may be located higher than the wash water suction port 150 .
- the air discharge path 160 has an exit communicating with the drain pump chamber 120 , and the exit of the air discharge path 160 is located at a radial outward position of the impeller 121 . This may serve to prevent the air directed into the drain pump chamber 120 from coming into direct contact with the impeller 121 , thereby preventing deterioration in the rotation efficiency of the impeller 121 and generation of noise.
- the air discharge path 160 may have a smaller cross sectional area than those of the wash water suction port 150 and the wash water outlet port 140 .
- the drain pump 100 may further include a partition 170 placed between the wash water inlet chamber 110 and the drain pump chamber 120 .
- the wash water suction port 150 and the air discharge path 160 are formed at the partition 170 .
- the wash water suction port 150 may protrude from the partition 170 into the wash water inlet chamber 110 to define a protruding entrance. If the protruding entrance of the wash water suction port 150 is located close to the wash water inlet port 130 , the wash water introduced through the wash water inlet port 130 may be directly suctioned into the drain pump chamber 120 through the protruding entrance of the wash water suction port 150 without undergoing unnecessary movement in the wash water inlet chamber 110 .
- the protruding entrance of the wash water suction port 150 may define an air accommodation space between the upper inner wall surface of the wash water inlet chamber 110 and an outer peripheral surface of the wash water suction port 150 , thereby minimizing the amount of air to be suctioned into the drain pump chamber 120 through the wash water suction port 150 .
- the pump filter 102 includes a head portion 102 a coupled to the pump case 101 , and a filter portion (not shown) placed in the wash water inlet chamber 110 to capture impurities contained in the wash water introduced into the wash water inlet chamber 110 .
- a periphery of the head portion 102 a is fastened to the pump case 101 by screws, and a grip 102 b is provided at a front surface of the head portion 102 a to allow a user to grip and rotate the head portion 102 a.
- FIG. 6 is a view illustrating operation of the drain pump in the washing machine according to the embodiment.
- the impeller 121 mounted in the drain pump chamber 120 is driven when draining the wash water. If the impeller 121 is rotated, the interior wash water of the tub 11 is introduced into the wash water inlet chamber 110 through the first drain pipe 50 and the wash water inlet port 130 , and then, is suctioned into the drain pump chamber 120 through the wash water suction port 150 . Subsequently, by operation of the impeller 121 , the wash water suctioned into the drain pump chamber 120 is forcibly directed to the wash water outlet port 140 and is discharged to the outside through the second drain pipe 60 ( FIG. 2 ).
- the air mixed in the wash water is introduced into the wash water inlet chamber 110 . Since the air is lighter than the wash water, the air is located in the upper region of the wash water inlet chamber 110 . In this way, the air is located at one side of the air discharge path 160 communicating with the wash water inlet chamber 110 , whereas the wash water moves at a high velocity toward the wash water outlet port 140 at the other side of the air discharge path 160 communicating with the drain pump chamber 120 . Since one side of the air discharge path 160 has a higher pressure than the other end of the air discharge path 160 , the air is directed into the drain pump chamber 120 through the air discharge path 160 . Thereby, the air is discharged to the outside of the washing machine through the wash water outlet port 140 and the second drain pipe 60 along with the wash water.
- a wash water inlet port of the drain pump is located higher than the center of a pump case of the drain pump such that air is located in an upper region of the drain pump. This may effectively prevent the air from being suctioned toward the impeller.
- the drain pump is configured such that wash water is introduced in a tangential direction of an upper inner surface of the drain pump. This may reduce generation of noise due to movement of the wash water within the drain pump.
- the drain pump may discharge the air, introduced into the drain pump during pumping of the wash water, to the outside without using a separate air discharge pipe or hose. This may minimize the number of pipes to be connected to the drain pump and consequently, reduce the number of places that necessitate leakage management. Furthermore, it may be possible to omit an operation of connecting the separate air discharge pipe or hose to the pump and a tub of the washing machine.
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Detail Structures Of Washing Machines And Dryers (AREA)
- Structures Of Non-Positive Displacement Pumps (AREA)
Abstract
Disclosed herein is a drain pump of a washing machine to reduce generation of noise. The drain pump includes a pump case in which a wash water inlet chamber and a drain pump chamber are defined, a wash water inlet port formed at the pump case, to allow wash water to be introduced into the wash water inlet chamber, a wash water outlet port formed at the pump case, to allow the wash water to be discharged from the drain pump chamber, a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber, and an air discharge path arranged at a distance from the wash water suction port between the wash water inlet chamber and the drain pump chamber to allow air inside the wash water inlet chamber to be discharged through the wash water outlet port.
Description
- This application claims the priority benefit of Korean Patent Application No. 10-2010-0019003, filed on Mar. 3, 2010 in the Korean Intellectual Property Office, the entire disclosure of which is incorporated herein by reference.
- 1. Field
- Embodiments relate to a washing machine having a drain pump to reduce noise.
- 2. Description of the Related Art
- Generally, a washing machine is an apparatus that washes laundry using frictional force between the laundry and wash water. One of various kinds of washing machines is a drum washing machine. Hereinafter, a drum washing machine will be described by way of example.
- A conventional drum washing machine includes a tub in which wash water is stored, a rotating tub rotatably mounted in the tub, a drive device to rotate the rotating tub, a water supply device to supply wash water into the tub, and a drain pump to forcibly discharge the wash water from the tub.
- The drain pump generally includes a pump case in which a filter chamber and a drain pump chamber are defined, and a pump motor coupled to the pump case. The filter chamber contains a filter to capture impurities contained in wash water, and the drain pump chamber contains an impeller to be rotated by the pump motor.
- If the impeller is rotated by the pump motor, the interior wash water of the tub is introduced into the filter chamber, and then, after passing through the filter placed in the filter chamber, is suctioned into the drain pump chamber. Thereafter, the wash water is forcibly discharged from the drain pump chamber to the outside of the drain pump via rotation of the impeller.
- During the above described pumping of wash water, air mixed in the wash water may be introduced into the drain pump. If the air is introduced into the drain pump, the air may deteriorate the performance of the impeller placed in the drain pump chamber, causing drain malfunction or abnormal noise generation.
- Therefore, it is an aspect to provide a drain pump to discharge air introduced therein to reduce noise, and a washing machine having the same.
- Additional aspects will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the embodiments.
- In accordance with one aspect, a drain pump of a washing machine includes a pump case in which a wash water inlet chamber and a drain pump chamber are defined, a wash water inlet port formed at the pump case, to allow wash water to be introduced into the wash water inlet chamber, a wash water outlet port formed at the pump case, to allow the wash water to be discharged from the drain pump chamber, a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber, and an air discharge path arranged at a distance from the wash water suction port between the wash water inlet chamber and the drain pump chamber, to allow air inside the wash water inlet chamber to be discharged through the wash water outlet port.
- A partition may be arranged between the wash water inlet chamber and the drain pump chamber, and the wash water suction port and the air discharge path may be formed at the partition.
- The air discharge path may be located higher than the wash water suction port.
- The air discharge path may have an exit communicating with the drain pump chamber, the exit being located at a radial outward position of an impeller placed in the drain pump chamber.
- A cross sectional area of the air discharge path may be smaller than a cross sectional area of the wash water suction port.
- The wash water inlet port may be located higher than the wash water suction port.
- An upper inner wall surface of the wash water inlet port may be connected to an upper inner wall surface of the wash water inlet chamber without a stepped portion.
- The wash water outlet port may be located close to the air discharge path, to allow the air introduced into the drain pump chamber to be directly discharged through the wash water outlet port, rather than staying in the drain pump chamber.
- A cross sectional area of the wash water outlet port may be smaller than a cross sectional area of the wash water suction port.
- The wash water suction port may protrude from the partition into the wash water inlet chamber.
- In accordance with another aspect, a washing machine includes a body, a tub placed in the body, in which wash water is stored, a first drain pipe connected to the tub to allow the wash water to be discharged from the tub, a second drain pipe to guide the wash water discharged from the tub to the outside of the body, a pump case having a wash water inlet port connected to the first drain pipe and a wash water outlet port connected to the second drain pipe, a wash water inlet chamber defined in the pump case, into which the wash water is introduced through the wash water inlet port, a drain pump chamber defined in the pump case, in which an impeller is placed to discharge the wash water through the wash water discharge port, a partition arranged between the wash water inlet chamber and the drain pump chamber, a wash water suction port formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of the impeller, the wash water suction port protruding into the wash water inlet chamber, and an air discharge path formed at the partition to allow the air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
- The air discharge path may be located higher than the wash water suction port.
- The air discharge path may have an exit communicating with the drain pump chamber, the exit being located at a radial outward position of the impeller.
- An upper inner wall surface of the wash water inlet port may be connected to an upper inner wall surface of the wash water inlet chamber in a tangential direction.
- The wash water outlet port may be located close to the air discharge path, to prevent the air introduced into the drain pump chamber from staying in the drain pump chamber.
- In accordance with another aspect, a drain pump of a washing machine includes a pump case in which a wash water inlet chamber and a drain pump chamber are defined, a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber, a wash water outlet port formed at the pump case to allow wash water to be discharged from the drain pump chamber, and a wash water inlet port formed at the pump case to allow the wash water to be introduced into the wash water inlet chamber, the center of the wash water inlet port being located higher than the center of the pump case.
- The drain pump may further include a partition arranged between the wash water inlet chamber and the drain pump chamber, the wash water suction port may be formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of an impeller, and the drain pump may further include an air discharge path formed at the partition to allow air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
- In accordance with a further aspect, a washing machine includes a body, a tub placed in the body, in which wash water is stored, a first drain pipe connected to the tub to allow the wash water to be discharged from the tub, a second drain pipe to guide the wash water discharged from the tub to the outside of the body, a pump case in which a wash water inlet chamber and a drain pump chamber are defined, a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber, a wash water outlet port formed at the pump case to connect the drain pump chamber and the second drain pipe to each other, and a wash water inlet port formed at the pump case to connect the first drain pipe and the wash water inlet chamber to each other, the center of the wash water inlet port being located higher than the center of the pump case.
- The washing machine may further include a partition arranged between the wash water inlet chamber and the drain pump chamber, the wash water suction port may be formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of an impeller, and the washing machine may further include an air discharge path formed at the partition to allow air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
- These and/or other aspects of the embodiments will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
-
FIG. 1 is a sectional view illustrating a general configuration of a washing machine according to an embodiment; -
FIG. 2 is a perspective view illustrating a drain pump according to the embodiment; -
FIG. 3 is a sectional view of the drain pump taken along the line I-I ofFIG. 2 ; -
FIG. 4 is a sectional view of the drain pump taken along the line II-II ofFIG. 2 ; -
FIG. 5 is a sectional view of the drain pump taken along the line III-III ofFIG. 2 ; and -
FIG. 6 is a view illustrating operation of the drain pump provided in the washing machine according to the embodiment. - Reference will now be made in detail to an embodiment, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to like elements throughout.
-
FIG. 1 is a sectional view illustrating a general configuration of a washing machine according to an embodiment. - As illustrated in
FIG. 1 , the washing machine according to the embodiment includes abody 10 defining an external appearance of the washing machine, atub 11 mounted in thebody 10, in which wash water is stored during a washing operation, and a rotatingtub 12 rotatably mounted in thetub 11. - The
body 10 has an input opening 13 perforated in a front wall thereof to allow a user to put laundry into the rotatingtub 12. Adoor 14 is provided to open or close the input opening 13. - A
water supply device 20 and adetergent supply device 30 are mounted in an upper region of thebody 10 to supply wash water and detergent into thetub 11. Thewater supply device 20 includeswater supply valves 21 to control the supply of wash water,water supply pipes 22 connecting thewater supply valves 21 to thedetergent supply device 30, and a connectingpipe 23 to guide the wash water, having passed through thedetergent supply device 30, into thetub 11. - The
tub 11 is externally provided with adrive motor 41, which rotates the rotatingtub 12 forwardly or reversely. Adrive shaft 42 is mounted between the rotatingtub 12 and thedrive motor 41 to transmit rotation force of thedrive motor 41 to the rotatingtub 12. In addition, a bearinghousing 43 is mounted to a rear wall of thetub 11 to rotatably support thedrive shaft 42, and abearing 44 is interposed between the bearinghousing 43 and thedrive shaft 42. - A
drain pump 100 is mounted on an inner bottom surface of thebody 10 to pump the wash water stored in thetub 11. Thedrain pump 100 is connected to thetub 11 via afirst drain pipe 50. In the embodiment, thedrain pump 100 serves to pump the wash water drained through thefirst drain pipe 50 to forcibly discharge the wash water to the outside of thebody 10. -
FIG. 2 is a perspective view illustrating the drain pump according to the embodiment,FIG. 3 is a sectional view of the drain pump taken along the line I-I ofFIG. 2 ,FIG. 4 is a sectional view of the drain pump taken along the line II-II ofFIG. 2 , andFIG. 5 is a sectional view of the drain pump taken along the line ofFIG. 2 . InFIG. 3 , a pump filter mounted in a wash water inlet chamber is not illustrated. - As illustrated in
FIGS. 2 to 5 , thedrain pump 100 includes apump case 101 in which a washwater inlet chamber 110 and adrain pump chamber 120 are defined, and apump filter 102 mounted in the washwater inlet chamber 110. - The
pump case 101 has a cylindrical shape and is provided with abracket 103 to couple thepump case 101 to thebody 10. Both ends of thecylindrical pump case 101 are open. Thepump filter 102 and animpeller 121 that will be described hereinafter are coupled respectively to both the open ends of thecylindrical pump case 101. Thecylindrical pump case 101 is coupled to thebody 10 such that a peripheral portion of thecylindrical pump case 101 faces the bottom surface of thebody 10. - The wash
water inlet chamber 110 is defined in thepump case 101. During operation of thedrain pump 100, the wash water stored in thetub 11 is introduced into the washwater inlet chamber 110 through thefirst drain pipe 50. - The
drain pump 100 further includes a washwater inlet port 130 provided at a lateral position of a peripheral surface of thepump case 101. The washwater inlet port 130 internally communicates with the washwater inlet chamber 110 and is externally connected to thefirst drain pipe 50. The wash water having passed through thefirst drain pipe 50 is introduced into the washwater inlet chamber 110 through the washwater inlet port 130. The washwater inlet port 130 may have a circular shape, and may protrude outward from thepump case 101 for connection with thefirst drain pipe 50. In this case, the washwater inlet port 130 may protrude parallel to the bottom surface of thebody 10. - In this case, the center of the wash
water inlet port 130 is located higher than the center of thepump case 101. This serves to minimize the amount of air to be suctioned into thedrain pump chamber 120 along with the wash water. The air moves upward of the wash water within the washwater inlet chamber 110 because the air is lighter than the wash water and during this movement, may be suctioned into thedrain pump chamber 120. However, highly positioning the washwater inlet port 130 may reduce the above described movement path, thereby minimizing the amount of air to be suctioned into thedrain pump chamber 120 and preventing generation of noise due to movement of the wash water. - An upper inner wall surface of the wash
water inlet port 130 may be connected in a tangential direction to an upper inner wall surface of the washwater inlet chamber 110 without a stepped portion. That is, this tangential arrangement of the washwater inlet port 130 and the washwater inlet chamber 110 may be effective in collecting the air in an upper region of the washwater inlet chamber 110 and reducing generation of noise due to movement of the wash water. - The wash
water inlet port 130 is located higher than a washwater suction port 150 that will be described hereinafter. The air introduced along with the wash water is located above the wash water and therefore, positioning the washwater inlet port 130 higher than the washwater suction port 150 may minimize the amount of air to be introduced, along with the wash water, into thedrain pump chamber 120 through the washwater suction port 150. - The
drain pump chamber 120 is adapted to suction the wash water introduced into the washwater inlet chamber 110 and discharge the wash water to the outside of thebody 10. The washwater inlet chamber 110 and thedrain pump chamber 120 may be neighbor to each other in a longitudinal direction within thecylindrical pump case 101. - The
impeller 121 is mounted in thedrain pump chamber 120 and serves to forcibly suction the wash water from the washwater inlet chamber 110 and discharge the wash water from thedrain pump chamber 120. A pumpingmotor 122 is connected to theimpeller 121. As theimpeller 121 is rotated by the pumpingmotor 122, Theimpeller 121 suctions the interior wash water of the washwater inlet chamber 110 in a lateral direction and discharges the wash water in a radial direction. - The
drain pump 100 further includes a washwater outlet port 140 provided at an upper position of the peripheral surface of thepump case 101. The washwater outlet port 140 internally communicates with thedrain pump chamber 120 and is externally connected to asecond drain pipe 60. All the wash water suctioned into thedrain pump chamber 120 and the air directed into thedrain pump chamber 120 through anair discharge path 160 that will be described hereinafter are discharged out of thebody 10 through the washwater outlet port 140 and thesecond drain pipe 60. The washwater outlet port 140 may be oriented perpendicular to the bottom surface of thebody 10. In this case, the washwater inlet port 130 provided at the lateral position of thepump case 101 and the washwater outlet port 140 provided at the upper position of thepump case 101 are perpendicular to each other. The washwater outlet port 140 may have a circular shape, and may protrude outward from thepump case 101 for connection with thesecond drain pipe 60. - The air is introduced into the
drain pump chamber 120 through theair discharge path 160. The washwater outlet port 140 is located close to theair discharge path 160, to allow the air having passed through theair discharge path 160 to be directly discharged rather than staying in thedrain pump chamber 120. The washwater outlet port 140 may be located at a distance of 10 mm or less from theair discharge path 160. - To allow the air to be moved from the wash
water inlet chamber 110 to thedrain pump chamber 120 under a pressure difference, the wash water passing through the washwater outlet port 140 may have a higher velocity than that of the wash water passing through the washwater suction port 150. If the area of an exit is smaller than the area of an entrance, the velocity of a fluid at the exit may be increased. Since the washwater suction port 150 corresponds to the entrance of thedrain pump chamber 120 and the washwater outlet port 140 corresponds to the exit of thedrain pump chamber 120, the velocity of the wash water passing through the washwater outlet port 140 may be increased if the area of the washwater outlet port 140 is smaller than the area of the washwater suction port 150. Accordingly, the area of the washwater outlet port 140 may be smaller than the area of the washwater suction port 150. - The wash
water suction port 150 is located between the washwater inlet chamber 110 and thedrain pump chamber 120. The washwater inlet chamber 110 and thedrain pump chamber 120 are arranged side by side within thepump case 101 and communicate with each other through the washwater suction port 150. If thedrain pump 100 is operated, the wash water introduced into the washwater inlet chamber 110 is suctioned into thedrain pump chamber 120 through the washwater suction port 150. - The
air discharge path 160 is located between the washwater inlet chamber 110 and thedrain pump chamber 120, to allow the air inside the washwater inlet chamber 110 to be discharged through the washwater outlet port 140. A conventional drain pump uses an additional air discharge pipe, and this increases the number of places that necessitate leakage management and an additional operation of connecting the air discharge pipe to the drain pump and the tub increases the number of overall processes. In thedrain pump 100 according to the embodiment, theair discharge path 160 substitutes for the air discharge pipe, allowing the air introduced into the washwater inlet chamber 110 during pumping of the wash water to be directed into thedrain pump chamber 120 and consequently, be discharged out of thedrain pump 100. - One end of the
air discharge path 160 communicates with the washwater inlet chamber 110 and the other end communicates with thedrain pump chamber 120. Theair discharge path 160 may have a constant cross sectional area from one end to the other end thereof. The air inside the washwater inlet chamber 110 is directed into thedrain pump chamber 120 through theair discharge path 160, and then, is discharged to the outside of thebody 10 through the washwater outlet port 140 and thesecond drain pipe 60. Differently from the wash water that is suctioned into thedrain pump chamber 120 by rotation force of theimpeller 121, the air is directed into thedrain pump chamber 120 under a pressure difference between one end and the other end of theair discharge path 160. - The
air discharge path 160 may be located to communicate the washwater inlet chamber 110 and thedrain pump chamber 120 with each other at a position as high as possible, and at least, may be located higher than the washwater suction port 150. - The
air discharge path 160 has an exit communicating with thedrain pump chamber 120, and the exit of theair discharge path 160 is located at a radial outward position of theimpeller 121. This may serve to prevent the air directed into thedrain pump chamber 120 from coming into direct contact with theimpeller 121, thereby preventing deterioration in the rotation efficiency of theimpeller 121 and generation of noise. - In addition, to minimize the amount of wash water to be directed from the wash
water inlet chamber 110 into thedrain pump chamber 120 through theair discharge path 160 and also, to prevent the wash water, which is moving at a high velocity toward the washwater outlet port 140, from moving backward into the washwater inlet chamber 110 through theair discharge path 160, theair discharge path 160 may have a smaller cross sectional area than those of the washwater suction port 150 and the washwater outlet port 140. - The
drain pump 100 may further include apartition 170 placed between the washwater inlet chamber 110 and thedrain pump chamber 120. The washwater suction port 150 and theair discharge path 160 are formed at thepartition 170. The washwater suction port 150 may protrude from thepartition 170 into the washwater inlet chamber 110 to define a protruding entrance. If the protruding entrance of the washwater suction port 150 is located close to the washwater inlet port 130, the wash water introduced through the washwater inlet port 130 may be directly suctioned into thedrain pump chamber 120 through the protruding entrance of the washwater suction port 150 without undergoing unnecessary movement in the washwater inlet chamber 110. In addition, the protruding entrance of the washwater suction port 150 may define an air accommodation space between the upper inner wall surface of the washwater inlet chamber 110 and an outer peripheral surface of the washwater suction port 150, thereby minimizing the amount of air to be suctioned into thedrain pump chamber 120 through the washwater suction port 150. - The
pump filter 102 includes ahead portion 102 a coupled to thepump case 101, and a filter portion (not shown) placed in the washwater inlet chamber 110 to capture impurities contained in the wash water introduced into the washwater inlet chamber 110. A periphery of thehead portion 102 a is fastened to thepump case 101 by screws, and agrip 102 b is provided at a front surface of thehead portion 102 a to allow a user to grip and rotate thehead portion 102 a. -
FIG. 6 is a view illustrating operation of the drain pump in the washing machine according to the embodiment. Hereinafter, operation of the pump according to the embodiment will be described with reference toFIG. 6 . Theimpeller 121 mounted in thedrain pump chamber 120 is driven when draining the wash water. If theimpeller 121 is rotated, the interior wash water of thetub 11 is introduced into the washwater inlet chamber 110 through thefirst drain pipe 50 and the washwater inlet port 130, and then, is suctioned into thedrain pump chamber 120 through the washwater suction port 150. Subsequently, by operation of theimpeller 121, the wash water suctioned into thedrain pump chamber 120 is forcibly directed to the washwater outlet port 140 and is discharged to the outside through the second drain pipe 60 (FIG. 2 ). - During the pumping of the wash water, the air mixed in the wash water is introduced into the wash
water inlet chamber 110. Since the air is lighter than the wash water, the air is located in the upper region of the washwater inlet chamber 110. In this way, the air is located at one side of theair discharge path 160 communicating with the washwater inlet chamber 110, whereas the wash water moves at a high velocity toward the washwater outlet port 140 at the other side of theair discharge path 160 communicating with thedrain pump chamber 120. Since one side of theair discharge path 160 has a higher pressure than the other end of theair discharge path 160, the air is directed into thedrain pump chamber 120 through theair discharge path 160. Thereby, the air is discharged to the outside of the washing machine through the washwater outlet port 140 and thesecond drain pipe 60 along with the wash water. - As is apparent from the above description, in a drain pump of a washing machine according to an embodiment, a wash water inlet port of the drain pump is located higher than the center of a pump case of the drain pump such that air is located in an upper region of the drain pump. This may effectively prevent the air from being suctioned toward the impeller. In particular, the drain pump is configured such that wash water is introduced in a tangential direction of an upper inner surface of the drain pump. This may reduce generation of noise due to movement of the wash water within the drain pump.
- Further, the drain pump may discharge the air, introduced into the drain pump during pumping of the wash water, to the outside without using a separate air discharge pipe or hose. This may minimize the number of pipes to be connected to the drain pump and consequently, reduce the number of places that necessitate leakage management. Furthermore, it may be possible to omit an operation of connecting the separate air discharge pipe or hose to the pump and a tub of the washing machine.
- Although a few embodiments have been shown and described, it would be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the claims and their equivalents.
Claims (26)
1. A drain pump of a washing machine, comprising:
a pump case in which a wash water inlet chamber and a drain pump chamber are defined;
a wash water inlet port formed at the pump case, to allow wash water to be introduced into the wash water inlet chamber;
a wash water outlet port formed at the pump case, to allow the wash water to be discharged from the drain pump chamber;
a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber; and
an air discharge path arranged at a predetermined distance from the wash water suction port between the wash water inlet chamber and the drain pump chamber, to allow air inside the wash water inlet chamber to be discharged through the wash water outlet port.
2. The drain pump according to claim 1 , wherein a partition is arranged between the wash water inlet chamber and the drain pump chamber, and the wash water suction port and the air discharge path are formed at the partition.
3. The drain pump according to claim 1 , wherein the air discharge path is located higher than the wash water suction port.
4. The drain pump according to claim 1 , wherein the air discharge path has an exit communicating with the drain pump chamber, the exit being located at a radial outward position of an impeller placed in the drain pump chamber.
5. The drain pump according to claim 1 , wherein a cross sectional area of the air discharge path is smaller than a cross sectional area of the wash water suction port.
6. The drain pump according to claim 1 , wherein the wash water inlet port is located higher than the wash water suction port.
7. The drain pump according to claim 1 , wherein an upper inner wall surface of the wash water inlet port is connected to an upper inner wall surface of the wash water inlet chamber without a stepped portion.
8. The drain pump according to claim 1 , wherein the wash water outlet port is located close to the air discharge path, to allow the air introduced into the drain pump chamber to be directly discharged through the wash water outlet port, rather than staying in the drain pump chamber.
9. The drain pump according to claim 1 , wherein a cross sectional area of the wash water outlet port is smaller than a cross sectional area of the wash water suction port.
10. The drain pump according to claim 2 , wherein the wash water suction port protrudes from the partition into the wash water inlet chamber.
11. A washing machine, comprising:
a body;
a tub placed in the body, in which wash water is stored;
a first drain pipe connected to the tub to allow the wash water to be discharged from the tub;
a second drain pipe to guide the wash water discharged from the tub to the outside of the body;
a pump case having a wash water inlet port connected to the first drain pipe and a wash water outlet port connected to the second drain pipe;
a wash water inlet chamber defined in the pump case, into which the wash water is introduced through the wash water inlet port;
a drain pump chamber defined in the pump case, in which an impeller is placed to discharge the wash water through the wash water discharge port;
a partition arranged between the wash water inlet chamber and the drain pump chamber;
a wash water suction port formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of the impeller, the wash water suction port protruding into the wash water inlet chamber; and
an air discharge path formed at the partition to allow the air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
12. The washing machine according to claim 11 , wherein the air discharge path is located higher than the wash water suction port.
13. The washing machine according to claim 11 , wherein the air discharge path has an exit communicating with the drain pump chamber, the exit being located at a radial outward position of the impeller.
14. The washing machine according to claim 11 , wherein a cross sectional area of the air discharge path is smaller than a cross sectional area of the wash water suction port.
15. The washing machine according to claim 11 , wherein the wash water inlet port is located higher than the wash water suction port.
16. The washing machine according to claim 11 , wherein an upper inner wall surface of the wash water inlet port is connected to an upper inner wall surface of the wash water inlet chamber in a tangential direction.
17. The washing machine according to claim 11 , wherein the wash water outlet port is located close to the air discharge path, to prevent the air introduced into the drain pump chamber from staying in the drain pump chamber.
18. The washing machine according to claim 11 , wherein a cross sectional area of the wash water outlet port is smaller than a cross sectional area of the wash water suction port.
19. A drain pump of a washing machine, comprising:
a pump case in which a wash water inlet chamber and a drain pump chamber are defined;
a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber;
a wash water outlet port formed at the pump case to allow wash water to be discharged from the drain pump chamber; and
a wash water inlet port formed at the pump case to allow the wash water to be introduced into the wash water inlet chamber, the center of the wash water inlet port being located higher than the center of the pump case.
20. The drain pump according to claim 19 , wherein an upper inner wall surface of the wash water inlet port is connected to an upper inner wall surface of the wash water inlet chamber without a stepped portion.
21. The drain pump according to claim 19 , further comprising a partition arranged between the wash water inlet chamber and the drain pump chamber,
wherein the wash water suction port is formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of an impeller, and
wherein the drain pump further comprises an air discharge path formed at the partition to allow air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
22. The drain pump according to claim 21 , wherein the wash water suction port protrudes from the partition into the wash water inlet chamber.
23. A washing machine, comprising:
a body;
a tub placed in the body, in which wash water is stored;
a first drain pipe connected to the tub to allow the wash water to be discharged from the tub;
a second drain pipe to guide the wash water discharged from the tub to the outside of the body;
a pump case in which a wash water inlet chamber and a drain pump chamber are defined;
a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber;
a wash water outlet port formed at the pump case to connect the drain pump chamber and the second drain pipe to each other; and
a wash water inlet port formed at the pump case to connect the first drain pipe and the wash water inlet chamber to each other, the center of the wash water inlet port being located higher than the center of the pump case.
24. The washing machine according to claim 23 , wherein an upper inner wall surface of the wash water inlet port is connected to an upper inner wall surface of the wash water inlet chamber in a tangential direction.
25. The washing machine according to claim 23 , further comprising:
a partition arranged between the wash water inlet chamber and the drain pump chamber,
wherein the wash water suction port is formed at the partition to allow the wash water of the wash water inlet chamber to be introduced into the drain pump chamber by suction force of an impeller, and
wherein the washing machine further comprises an air discharge path formed at the partition to allow air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located around the wash water suction port.
26. A washing machine, comprising:
a pump case in which a wash water inlet chamber and a drain pump chamber are defined:
a wash water suction port arranged between the wash water inlet chamber and the drain pump chamber;
a wash water inlet port formed at the pump case to receiving wash water; and
a wash water outlet port formed at the pump case to output the wash water to the washing machine;
an air discharge path formed between the wash water inlet chamber and the wash water outlet port to allow air of the wash water inlet chamber to be introduced into the drain pump chamber and subsequently, be discharged through the wash water outlet port, the air discharge path being located near the wash water suction port,
wherein the wash water suction port protrudes to the wash water inlet chamber.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR1020100019003A KR20110099967A (en) | 2010-03-03 | 2010-03-03 | Washing machine and drain pump thereof |
KR10-2010-0019003 | 2010-03-03 |
Publications (1)
Publication Number | Publication Date |
---|---|
US20110214456A1 true US20110214456A1 (en) | 2011-09-08 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US13/009,870 Abandoned US20110214456A1 (en) | 2010-03-03 | 2011-01-20 | Washing machine and drain pump thereof |
Country Status (6)
Country | Link |
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US (1) | US20110214456A1 (en) |
EP (2) | EP2712952B1 (en) |
KR (1) | KR20110099967A (en) |
CN (1) | CN102191669A (en) |
ES (1) | ES2444294T3 (en) |
PL (1) | PL2363526T3 (en) |
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US20130174615A1 (en) * | 2012-01-10 | 2013-07-11 | Samsung Electronics Co., Ltd. | Drum washing machine |
US20140255155A1 (en) * | 2011-11-08 | 2014-09-11 | Haier Group Corporation | Drainage pump device for washing machine and washing machine therewith |
US20180179691A1 (en) * | 2016-12-23 | 2018-06-28 | Samsung Electronics Co., Ltd. | Washing machine |
US20230167597A1 (en) * | 2020-04-29 | 2023-06-01 | Lg Electronics Inc. | Clothing treatment apparatus |
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KR20130034311A (en) * | 2011-09-28 | 2013-04-05 | 삼성전자주식회사 | Drain pump and washing machine having the same |
EP2631350B1 (en) * | 2012-02-27 | 2016-01-20 | Electrolux Home Products Corporation N.V. | Draining device for a washing machine and washing machine |
KR20200022690A (en) * | 2018-08-23 | 2020-03-04 | 엘지전자 주식회사 | laundry apparatus |
CN110094335B (en) * | 2019-06-21 | 2020-12-29 | 江苏大学 | Energy-saving reliable low-noise small-sized draining pump |
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---|---|---|---|---|
US20140255155A1 (en) * | 2011-11-08 | 2014-09-11 | Haier Group Corporation | Drainage pump device for washing machine and washing machine therewith |
JP2014532530A (en) * | 2011-11-08 | 2014-12-08 | 海爾集団公司 | Drainage pump for washing machine and washing machine |
US9683572B2 (en) * | 2011-11-08 | 2017-06-20 | Haier Group Corporation | Drainage pump device for washing machine and washing machine therewith |
US20130174615A1 (en) * | 2012-01-10 | 2013-07-11 | Samsung Electronics Co., Ltd. | Drum washing machine |
US20180179691A1 (en) * | 2016-12-23 | 2018-06-28 | Samsung Electronics Co., Ltd. | Washing machine |
US11299845B2 (en) * | 2016-12-23 | 2022-04-12 | Samsung Electronics Co., Ltd. | Washing machine |
US20230167597A1 (en) * | 2020-04-29 | 2023-06-01 | Lg Electronics Inc. | Clothing treatment apparatus |
Also Published As
Publication number | Publication date |
---|---|
EP2712952A1 (en) | 2014-04-02 |
KR20110099967A (en) | 2011-09-09 |
EP2363526A3 (en) | 2012-03-14 |
EP2712952B1 (en) | 2016-10-19 |
PL2363526T3 (en) | 2014-04-30 |
ES2444294T3 (en) | 2014-02-24 |
EP2363526B1 (en) | 2013-11-06 |
EP2363526A2 (en) | 2011-09-07 |
CN102191669A (en) | 2011-09-21 |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
AS | Assignment |
Owner name: SAMSUNG ELECTRONICS CO., LTD., KOREA, REPUBLIC OF Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:JANG, JAE HYUN;REEL/FRAME:025717/0991 Effective date: 20110110 |
|
STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |