WO2016085432A1 - A laundry dryer - Google Patents
A laundry dryer Download PDFInfo
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- WO2016085432A1 WO2016085432A1 PCT/TR2015/050187 TR2015050187W WO2016085432A1 WO 2016085432 A1 WO2016085432 A1 WO 2016085432A1 TR 2015050187 W TR2015050187 W TR 2015050187W WO 2016085432 A1 WO2016085432 A1 WO 2016085432A1
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- WIPO (PCT)
- Prior art keywords
- water
- filter
- sections
- laundry dryer
- valve
- Prior art date
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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
- D06F58/00—Domestic laundry dryers
- D06F58/20—General details of domestic laundry dryers
- D06F58/22—Lint collecting 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
- D06F58/00—Domestic laundry dryers
- D06F58/20—General details of domestic laundry dryers
- D06F58/24—Condensing arrangements
Definitions
- the present invention relates to a laundry dryer comprising a filter that holds particles such as fiber, lint and dust etc. in the drying air.
- a filter that holds particles such as fiber, lint and dust etc. in the drying air.
- the heated air is directed into the drum containing the articles to be dried and is sucked to be included in the heating cycle again.
- the particles such as fiber, lint and dust etc. should be filtered.
- various filters are developed for holding these particles in dryers. These filters produced by using various materials are disposed on the circulation path of the air inside the dryer. Accumulation of the particles held by means of the filters during the cycle of air adversely affects the flow rate of the drying air and hence the drying performance. Therefore, during the drying cycle these filters have to be cleaned at certain intervals and to be removed from the cycle of the drying air.
- the filter area as large as possible is advantageous in cleaning the filters less frequently but in this situation using more than one nozzle is required in order to effectively wash the entire filter area.
- the amount of water required to wash the entire filter area increases.
- the amount of water delivered to each nozzle decreases and this decreases water pressure, preventing the filter from being cleaned effectively.
- the amount of lint removed from the filter being quite large highly increases the risk of the said lint to cause the carrying line or the discharge pump to be clogged.
- the water sprayed from the nozzles forms a water film on the filter surface.
- a certain amount of time has to pass in order for the water film to be broken and the air flow rate to rise to the desired value.
- the temperature may increase momentarily depending on the decreased drying air flow rate. Temperature increasing momentarily causes the compressor to increase above limit values especially in closed circuit dryers and in this situation the compressor stops operating automatically. The compressor has to wait for a certain time period in order to operate again. This adversely affects time and energy consumption.
- the aim of the present invention is the realization of a laundry dryer having a filter that can be cleaned without affecting the drying effectiveness.
- the laundry dryer realized in order to attain the aim of the present invention, explicated in the first claim and the respective claims thereof, provides the cleaning of the filter gradually by directing water to at least one pipe in one go such that water is sprayed to only one portion of the filter surface.
- the entire filter surface is enabled to be cleaned gradually, preventing the formation of a water film on the entire surface of the filter and the drying performance from being affected adversely.
- more than one outlet port is arranged on the pipe.
- each outlet port nozzles are provided that enable water to be sprayed and delivered to the filter surface thus cleaning the filter surface effectively.
- water is not delivered to the other pipe and water is not sprayed onto the other surface. This process is repeated successively until the entire surface of the filter is cleaned.
- water is enabled to be delivered at one time to the pipes that are selected adjacently. In this embodiment, water is delivered simultaneously to the first two sections or the last two sections or the first and the last section while water is not delivered to the other section. In another one of the embodiments wherein the filter surface is divided into at least three sections, water is enabled to be delivered at one time to the selected pipes for cleaning the filter surfaces that are not side by side such that water is sprayed to only one portion of the filter surface divided into the sections. In another embodiment of the present invention, water is delivered to each pipe intermittently. Thus, the filter surface is enabled to be cleaned more effectively.
- water is not delivered simultaneously to each pipe, thus preventing the formation of film on the filter and enabling the filter surface to be effectively cleaned without any kind of interruption in the drying air cycle.
- the present invention By means of the present invention, furthermore since the water received from the tank is directed only to the selected pipes instead of all the pipes, a more effective cleaning is performed by a more pressurized water. A lesser amount of water is directed onto the filter for cleaning the filter. Furthermore, by means of the present invention, lesser amount of particles are removed from the filter surface since only one section of the filter surface is cleaned at one time and the probable clogging that may occur in the water conduit and the pump is prevented.
- Figure 1 - is the schematic view of a laundry dryer.
- Figure - 2 is the schematic view of the filter and the water conduit providing the washing of the said filter in an embodiment of the present invention.
- Figure - 3 is the schematic view of the filter and the water conduit providing the washing of the said filter in an alternative embodiment of the present invention.
- the laundry dryer (1) comprises a body (2), a drum (3) wherein the laundry to be dried is placed, an air circulation duct (5) providing the delivery of the drying air onto the laundry in the drum (3), a heat exchanger (4) that is disposed on the air circulation duct (5) and that enables the temperature of the drying air to be changed, a tank (7) wherein the condensed water is stored, at least one filter (6) that holds the particles such as fiber, lint, etc. in the drying air and a water conduit (11) that carries the water received from the tank (7) to the filter (6).
- the laundry dryer (1) of the present invention comprises
- the filter (6) washing process is performed as follows.
- the water received from the tank (7) is directed to the valve (9) by means of the water conduit (11).
- valve (9) By controlling the valve (9) with the control unit (13) and selecting at least one pipe (12) such that water is sprayed at one time to only one portion of the filter (6) surface divided into the sections (A, B, C), the water is directed to the said pipe (12).
- the valve (9) allows water to pass through at least one pipe (12) and does not allow water to pass to at least one of the other pipes (12).
- the laundry dryer (1) comprises at least one outlet port (15) that is disposed on the pipe (12) and that is positioned so as to spray water to the filter (6) surface divided into the sections (A, B, C) and an inlet port (14) that is connected to the water conduit (11).
- the inlet port (14) of the pipe (12) is connected to the water conduit (11) by means of a valve (9).
- the laundry dryer (1) comprises at least two outlet ports (15) positioned to correspond to each section (A, B, C) of the filter (6) surface that is divided into more than one section (A, B, C).
- the laundry dryer (1) comprises a plurality of nozzles (10) that are mounted on each outlet port (15) and that enable the water to be sprayed and delivered onto the divided sections (A, B, C) on the filter (6) surface.
- the water is enabled to be transferred from the outlet port (15) to the filter (6) surface effectively.
- the laundry dryer (1) comprises a pump (8) that receives the water from the tank (7) containing condensed water and that delivers it to the pipes (12).
- the valve (9) is disposed between the water conduit (11) and the inlet ports (14) of the pipes (12), and enables the water received from the water conduit (11) to be transferred to the pipes (12).
- the valve (9) is a three-way valve.
- the valve (9) connects the water conduit (11) with the inlet ports (14) of at least two pipes (12) and allows water to pass only to one inlet port (14).
- the laundry dryer (1) comprises the filter (6), the surface of which is divided into two sections (A, B) and two pipes (12) that have at least one outlet port (15) aligned with these two sections (A, B) and that are disposed such that the water is sprayed onto the filter (6) surface divided into the sections (A, B).
- the control unit (13) controls the valve (9) and enables the valve (9) to direct water to one pipe (12) at one time such that the water is sprayed onto only one section (A or B) of the filter (6) surface that is divided into two sections (A, B).
- the water that is firstly directed to the first pipe (12) by the control unit (13) by means of the valve (9) reaches the outlet ports (15) on the pipe (12) and are sprayed by means of the nozzles (10) to the section (B) of the filter (6) surface opposite the nozzles (10). In the meantime, the water is not delivered to the second pipe (12).
- the water is delivered to the second pipe (12) from the valve (9) by means of the control unit (13) and the water is directed to the outlet ports (15) situated on the other section (A) of the filter (6) surface, enabling the water to be sprayed by means of the nozzles (10) to the section (A) opposite the nozzles (10) at the second pipe (12).
- the filter (6) surface is divided into more than two sections (A, B, C).
- the laundry dryer (1) comprises an equal number of pipes (12) as the number of filter (6) surface sections (A, B, C).
- the valves (9) the water can be delivered to these pipes (12) at different times and in different combinations.
- the sections (A, B, C) of the filter (6) surface are enabled to be cleaned one by one without delivering the water to all the pipes (12) simultaneously. Since the water is not delivered to all the pipes (12) simultaneously, the entire surface of the filter (6) is not washed simultaneously and formation of a water film along the entire surface of the filter (6) is prevented. Thus, the filter (6) is cleaned gradually without causing any interruption in the drying air cycle.
- the control unit (13) enables the water to be delivered simultaneously to the pipes (12) selected in pairs by means of the valve (9) for cleaning the sections (A, B, C) of the filter (6) surface such that the water is sprayed only to one portion of the filter (6) surface divided into the sections (A, B, C).
- the water is delivered simultaneously to the first two sections (A, B) or the last two sections (B, C) ( Figure 3) or the first and last sections (A, C), however the water is not delivered to the other section (C in the first example, A in the second example and B in the third example).
- the control unit (13) enables the water to be delivered successively to the selected pipes (12) for cleaning the sections (A, B, C) of the filter (6) surface that are not side by side such that the water is sprayed only onto one portion of the filter (6) surface divided into the sections (A or B or C).
- the filter (6) surface is divided into three sections (A, B, C)
- the water is delivered to each section (A, B, C) successively. In this embodiment, the water is not sprayed simultaneously onto any two sections (A, B or A, C or B, C).
- control unit (13) enables the water to be delivered to each pipe (12) intermittently by means of the valve (9).
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Detail Structures Of Washing Machines And Dryers (AREA)
Abstract
The laundry dryer (1) of the present invention comprises a body (2), a drum (3) wherein the laundry to be dried is placed, an air circulation duct (5) providing the delivery of the drying air onto the laundry in the drum (3), a heat exchanger (4) that is disposed on the air circulation duct (5) and that enables the temperature of the drying air to be changed, a tank (7) wherein the condensed water is stored, at least one filter (6) that holds the particles such as fiber, lint, etc. in the drying air and a water conduit (11) that carries the water received from the tank (7) to the filter (6).
Description
DESCRIPTION
A LAUNDRY DRYER
The present invention relates to a laundry dryer comprising a filter that holds particles such as fiber, lint and dust etc. in the drying air. In dryers, the heated air is directed into the drum containing the articles to be dried and is sucked to be included in the heating cycle again. During this cycle of air, the particles such as fiber, lint and dust etc. should be filtered. To this end, various filters are developed for holding these particles in dryers. These filters produced by using various materials are disposed on the circulation path of the air inside the dryer. Accumulation of the particles held by means of the filters during the cycle of air adversely affects the flow rate of the drying air and hence the drying performance. Therefore, during the drying cycle these filters have to be cleaned at certain intervals and to be removed from the cycle of the drying air.
Keeping the filter area as large as possible is advantageous in cleaning the filters less frequently but in this situation using more than one nozzle is required in order to effectively wash the entire filter area. In the situation where more nozzles are used, the amount of water required to wash the entire filter area increases. When water is delivered to all the nozzles, the amount of water delivered to each nozzle decreases and this decreases water pressure, preventing the filter from being cleaned effectively. At the end of the filter cleaning operation, the amount of lint removed from the filter being quite large highly increases the risk of the said lint to cause the carrying line or the discharge pump to be clogged.
In the state of the art International Patent Application No. WO2009015919, explanation is given for washing the filter by multiple nozzles in an intermittent manner. In this document, water is delivered to the nozzles by means of pump simultaneously, forming a film on the surface of the filter and enabled the particles accumulated on the filter to be almost swept and removed from the filter.
In the situation the entire filter surface is washed, the water sprayed from the nozzles forms a water film on the filter surface. A certain amount of time has to pass in order for the water film to be broken and the air flow rate to rise to the
desired value. The temperature may increase momentarily depending on the decreased drying air flow rate. Temperature increasing momentarily causes the compressor to increase above limit values especially in closed circuit dryers and in this situation the compressor stops operating automatically. The compressor has to wait for a certain time period in order to operate again. This adversely affects time and energy consumption.
The aim of the present invention is the realization of a laundry dryer having a filter that can be cleaned without affecting the drying effectiveness.
The laundry dryer realized in order to attain the aim of the present invention, explicated in the first claim and the respective claims thereof, provides the cleaning of the filter gradually by directing water to at least one pipe in one go such that water is sprayed to only one portion of the filter surface. Thus, the entire filter surface is enabled to be cleaned gradually, preventing the formation of a water film on the entire surface of the filter and the drying performance from being affected adversely.
In an embodiment of the present invention, more than one outlet port is arranged on the pipe. In each outlet port nozzles are provided that enable water to be sprayed and delivered to the filter surface thus cleaning the filter surface effectively. In the embodiment wherein the filter surface is divided into two sections, while water is sprayed to the respective section of the filter surface, water is not delivered to the other pipe and water is not sprayed onto the other surface. This process is repeated successively until the entire surface of the filter is cleaned.
In the first of the embodiments wherein the filter surface is divided into at least three sections, in order to clean the side by side filter surfaces in pairs, water is enabled to be delivered at one time to the pipes that are selected adjacently. In this embodiment, water is delivered simultaneously to the first two sections or the last two sections or the first and the last section while water is not delivered to the other section.
In another one of the embodiments wherein the filter surface is divided into at least three sections, water is enabled to be delivered at one time to the selected pipes for cleaning the filter surfaces that are not side by side such that water is sprayed to only one portion of the filter surface divided into the sections. In another embodiment of the present invention, water is delivered to each pipe intermittently. Thus, the filter surface is enabled to be cleaned more effectively.
By means of the present invention, water is not delivered simultaneously to each pipe, thus preventing the formation of film on the filter and enabling the filter surface to be effectively cleaned without any kind of interruption in the drying air cycle.
By means of the present invention, furthermore since the water received from the tank is directed only to the selected pipes instead of all the pipes, a more effective cleaning is performed by a more pressurized water. A lesser amount of water is directed onto the filter for cleaning the filter. Furthermore, by means of the present invention, lesser amount of particles are removed from the filter surface since only one section of the filter surface is cleaned at one time and the probable clogging that may occur in the water conduit and the pump is prevented.
A laundry dryer realized in order to attain the aim of the present invention is illustrated in the attached figures, where:
Figure 1 - is the schematic view of a laundry dryer.
Figure - 2 is the schematic view of the filter and the water conduit providing the washing of the said filter in an embodiment of the present invention.
Figure - 3 is the schematic view of the filter and the water conduit providing the washing of the said filter in an alternative embodiment of the present invention.
The elements illustrated in the figures are numbered as follows:
1. Laundry dryer . Body . Drum
. Heat exchanger . Air circulation duct . Filter . Tank . Pump . Valve
10. Nozzle
11. Water conduit
12. Pipe
13. Control unit
14. Inlet port
15. Outlet port
The laundry dryer (1) comprises a body (2), a drum (3) wherein the laundry to be dried is placed, an air circulation duct (5) providing the delivery of the drying air onto the laundry in the drum (3), a heat exchanger (4) that is disposed on the air circulation duct (5) and that enables the temperature of the drying air to be changed, a tank (7) wherein the condensed water is stored, at least one filter (6) that holds the particles such as fiber, lint, etc. in the drying air and a water conduit (11) that carries the water received from the tank (7) to the filter (6).
The laundry dryer (1) of the present invention comprises
• the filter (6) surface divided into more than one section (A, B, C),
• at least two pipes (12) that separate into at least two branches to extend to each section (A, B, C) of the filter (6) surface and that are disposed so as to spray water to these sections (A, B, C),
• at least one valve (9) that is disposed on the water conduit (11) and whereto the pipes (12) are connected and
• a control unit (13) that controls the valve (9) and enables the valve (9) to direct water to at least one pipe (12) such that water is sprayed to only one portion of the filter (6) that is divided into sections (A, B, C) (Figure 1). In the laundry dryer (1) of the present invention, the filter (6) washing process is performed as follows. The water received from the tank (7) is directed to the valve (9) by means of the water conduit (11). By controlling the valve (9) with the control unit (13) and selecting at least one pipe (12) such that water is sprayed at one time to only one portion of the filter (6) surface divided into the sections (A, B, C), the water is directed to the said pipe (12). The valve (9) allows water to pass through at least one pipe (12) and does not allow water to pass to at least one of the other pipes (12).
In an embodiment of the present invention, the laundry dryer (1) comprises at least one outlet port (15) that is disposed on the pipe (12) and that is positioned so as to spray water to the filter (6) surface divided into the sections (A, B, C) and an inlet port (14) that is connected to the water conduit (11). The inlet port (14) of the pipe (12) is connected to the water conduit (11) by means of a valve (9). In this embodiment, the laundry dryer (1) comprises at least two outlet ports (15) positioned to correspond to each section (A, B, C) of the filter (6) surface that is divided into more than one section (A, B, C).
In an embodiment of the present invention, the laundry dryer (1) comprises a plurality of nozzles (10) that are mounted on each outlet port (15) and that enable the water to be sprayed and delivered onto the divided sections (A, B, C) on the filter (6) surface. Thus, the water is enabled to be transferred from the outlet port (15) to the filter (6) surface effectively.
In an embodiment of the present invention, the laundry dryer (1) comprises a pump (8) that receives the water from the tank (7) containing condensed water and that delivers it to the pipes (12).
In an embodiment of the present invention, the valve (9) is disposed between the water conduit (11) and the inlet ports (14) of the pipes (12), and enables the water received from the water conduit (11) to be transferred to the pipes (12). In an
embodiment of the present invention, the valve (9) is a three-way valve. In this embodiment, the valve (9) connects the water conduit (11) with the inlet ports (14) of at least two pipes (12) and allows water to pass only to one inlet port (14).
In an embodiment of the present invention, the laundry dryer (1) comprises the filter (6), the surface of which is divided into two sections (A, B) and two pipes (12) that have at least one outlet port (15) aligned with these two sections (A, B) and that are disposed such that the water is sprayed onto the filter (6) surface divided into the sections (A, B). In this embodiment of the present invention, the control unit (13) controls the valve (9) and enables the valve (9) to direct water to one pipe (12) at one time such that the water is sprayed onto only one section (A or B) of the filter (6) surface that is divided into two sections (A, B).
In this embodiment, the water that is received from the tank (7) by means of the pump (8) and flows along the water conduit (11) towards the valve (9). The water that is firstly directed to the first pipe (12) by the control unit (13) by means of the valve (9) reaches the outlet ports (15) on the pipe (12) and are sprayed by means of the nozzles (10) to the section (B) of the filter (6) surface opposite the nozzles (10). In the meantime, the water is not delivered to the second pipe (12). After the water is sprayed onto one section (B) of the filter (6) surface, the water is delivered to the second pipe (12) from the valve (9) by means of the control unit (13) and the water is directed to the outlet ports (15) situated on the other section (A) of the filter (6) surface, enabling the water to be sprayed by means of the nozzles (10) to the section (A) opposite the nozzles (10) at the second pipe (12). Thus, it is provided that all the sections (A, B) of the filter (6) surface are not cleaned simultaneously but successively and that the filter (6) is cleaned without forming a water film on both sections (A, B) of the filter (6) surface (Figure 2).
In another embodiment of the present invention, the filter (6) surface is divided into more than two sections (A, B, C). In this embodiment, the laundry dryer (1) comprises an equal number of pipes (12) as the number of filter (6) surface sections (A, B, C). By means of the valves (9) the water can be delivered to these pipes (12) at different times and in different combinations. In other words, the sections (A, B, C) of the filter (6) surface are enabled to be cleaned one by one
without delivering the water to all the pipes (12) simultaneously. Since the water is not delivered to all the pipes (12) simultaneously, the entire surface of the filter (6) is not washed simultaneously and formation of a water film along the entire surface of the filter (6) is prevented. Thus, the filter (6) is cleaned gradually without causing any interruption in the drying air cycle.
In the embodiment of the present invention wherein the filter (6) surface is divided into more than two sections (A, B, C), the control unit (13) enables the water to be delivered simultaneously to the pipes (12) selected in pairs by means of the valve (9) for cleaning the sections (A, B, C) of the filter (6) surface such that the water is sprayed only to one portion of the filter (6) surface divided into the sections (A, B, C). For example, in an embodiment wherein the filter (6) surface is divided into three sections (A, B, C), the water is delivered simultaneously to the first two sections (A, B) or the last two sections (B, C) (Figure 3) or the first and last sections (A, C), however the water is not delivered to the other section (C in the first example, A in the second example and B in the third example).
In the embodiment of the present invention wherein the filter (6) surface is divided into more than two sections (A, B, C), the control unit (13) enables the water to be delivered successively to the selected pipes (12) for cleaning the sections (A, B, C) of the filter (6) surface that are not side by side such that the water is sprayed only onto one portion of the filter (6) surface divided into the sections (A or B or C). For example, in an embodiment wherein the filter (6) surface is divided into three sections (A, B, C), the water is delivered to each section (A, B, C) successively. In this embodiment, the water is not sprayed simultaneously onto any two sections (A, B or A, C or B, C).
In another embodiment of the present invention, the control unit (13) enables the water to be delivered to each pipe (12) intermittently by means of the valve (9).
By means of the present invention, by not delivering water simultaneously to each pipe (12) formation of film on the filter (6) is prevented, enabling the filter (6) surface to be effectively cleaned without any kind of interruption in the drying air cycle.
By means of the present invention, furthermore since the water received from the tank (7) is directed only to the selected pipes (12) instead of all the pipes (12) simultaneously, a more effective cleaning is performed with a more pressurized water. Also, a lesser amount of water is directed onto the filter (6) for cleaning the filter (6).
Furthermore, by means of the present invention, a lesser amount of particles are removed from the filter (6) surface since only one part of the filter (6) surface is cleaned at one time and the probable clogging that may occur in the water conduit (11) and the pump (8) is prevented.
Claims
A laundry dryer (1) comprising a body (2), a drum (3) wherein the laundry to be dried is placed, an air circulation duct (5) providing the delivery of the drying air onto the laundry in the drum (3), a heat exchanger (4) that is disposed on the air circulation duct (5) and that enables the temperature of the drying air to be changed, a tank (7) wherein the condensed water is stored, at least one filter (6) that holds the particles such as fiber, lint, etc. in the drying air and a water conduit (11) that carries the water received from the tank (7) to the filter (6), characterized in that
• the filter (6) surface divided into more than one section (A, B, C),
• at least two pipes (12) that separate into at least two branches to extend to each section (A, B, C) of the filter (6) surface and that are disposed so as to spray water to these sections (A, B, C),
• at least one valve (9) that is disposed on the water conduit (11) and whereto the pipes (12) are connected and
• a control unit (13) that controls the valve (9) and enables the valve (9) to direct water to at least one pipe (12) such that the water is sprayed to only one portion of the filter (6) surface that is divided into the sections (A, B, C).
A laundry dryer (1) as in Claim 1, characterized in that at least one outlet port (15) that is disposed on the pipe (12) and that is positioned so as to spray water onto the filter (6) surface divided into the sections (A, B, C) and an inlet port (14) that is connected to the water conduit (11).
A laundry dryer (1) as in Claim 2, characterized in that a plurality of nozzles (10) that are mounted on each outlet port (15) and that enable the water to be sprayed and delivered to the divided sections (A, B, C) on the filter (6) surface.
A laundry dryer (1) as in any one of the above claims, comprising the filter
(6), the surface of which is divided into two sections (A, B) and two pipes
(12) that have at least one outlet port (15) aligning with these two sections
(A, B) and that are disposed such that water is the sprayed onto the sections (A, B) of the filter (6) surface, characterized in that the control unit (13) that controls the valve (9) and enables the valve (9) to direct the water to one pipe (12) such that the water is sprayed to only one section (A or B) of the filter (6) surface that is divided into two sections (A, B).
A laundry dryer (1) as in any one of the Claims 1 to 3, characterized in that the control unit (13) that enables the water to be delivered simultaneously to the pipes (12) selected in pairs by means of the valve (9) for cleaning the sections (A, B, C) of the filter (6) surface such that the water is sprayed only onto one portion of the filter (6) surface divided into at least three sections (A, B, C).
A laundry dryer (1) as in any one of the Claims 1 to 3, characterized in that the control unit (13) that enables the water to be delivered successively to the pipes (12) selected for cleaning the sections (A, B, C) of the filter (6) surface that are not side by side such that the water is sprayed only onto one portion of the filter (6) surface divided into at least three sections (A, B, C).
A laundry dryer (1) as in any one of the above claims, characterized in that the control unit (13) that enables the water to be delivered intermittently to each pipe (12) by means of the valve (9).
A laundry dryer (1) as in any one of the Claims 1 to 4 and 7, characterized in that a three way valve (9).
A laundry dryer (1) as in any one of the above claims, characterized in that at least two outlet ports (15) that are positioned to be aligned with each one section (A, B, C) of the filter (6).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP15817617.2A EP3224402B1 (en) | 2014-11-28 | 2015-11-18 | A laundry dryer |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TR2014/14327 | 2014-11-28 | ||
TR201414327 | 2014-11-28 |
Publications (1)
Publication Number | Publication Date |
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WO2016085432A1 true WO2016085432A1 (en) | 2016-06-02 |
Family
ID=55066742
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/TR2015/050187 WO2016085432A1 (en) | 2014-11-28 | 2015-11-18 | A laundry dryer |
Country Status (2)
Country | Link |
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EP (1) | EP3224402B1 (en) |
WO (1) | WO2016085432A1 (en) |
Cited By (9)
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EP3282050A1 (en) * | 2016-08-10 | 2018-02-14 | Whirlpool Corporation | Maintenance free dryer having multiple self-cleaning lint filters |
US10087569B2 (en) | 2016-08-10 | 2018-10-02 | Whirlpool Corporation | Maintenance free dryer having multiple self-cleaning lint filters |
US10502478B2 (en) | 2016-12-20 | 2019-12-10 | Whirlpool Corporation | Heat rejection system for a condenser of a refrigerant loop within an appliance |
US10514194B2 (en) | 2017-06-01 | 2019-12-24 | Whirlpool Corporation | Multi-evaporator appliance having a multi-directional valve for delivering refrigerant to the evaporators |
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EP3282049A1 (en) * | 2016-08-10 | 2018-02-14 | Whirlpool Corporation | Maintenance free dryer having multiple self-cleaning lint filters |
US10087569B2 (en) | 2016-08-10 | 2018-10-02 | Whirlpool Corporation | Maintenance free dryer having multiple self-cleaning lint filters |
EP3282050A1 (en) * | 2016-08-10 | 2018-02-14 | Whirlpool Corporation | Maintenance free dryer having multiple self-cleaning lint filters |
US10633785B2 (en) | 2016-08-10 | 2020-04-28 | Whirlpool Corporation | Maintenance free dryer having multiple self-cleaning lint filters |
US10738411B2 (en) | 2016-10-14 | 2020-08-11 | Whirlpool Corporation | Filterless air-handling system for a heat pump laundry appliance |
US11299834B2 (en) | 2016-10-14 | 2022-04-12 | Whirlpool Corporation | Combination washing/drying laundry appliance having a heat pump system with reversible condensing and evaporating heat exchangers |
US10519591B2 (en) | 2016-10-14 | 2019-12-31 | Whirlpool Corporation | Combination washing/drying laundry appliance having a heat pump system with reversible condensing and evaporating heat exchangers |
US11542653B2 (en) | 2016-10-14 | 2023-01-03 | Whirlpool Corporation | Filterless air-handling system for a heat pump laundry appliance |
US10502478B2 (en) | 2016-12-20 | 2019-12-10 | Whirlpool Corporation | Heat rejection system for a condenser of a refrigerant loop within an appliance |
US11920288B2 (en) | 2017-02-27 | 2024-03-05 | Whirlpool Corporation | Heat exchanger filter for self lint cleaning system in dryer appliance |
US11634856B2 (en) | 2017-02-27 | 2023-04-25 | Whirlpool Corporation | Heat exchanger filter for self lint cleaning system in dryer appliance |
US10544539B2 (en) | 2017-02-27 | 2020-01-28 | Whirlpool Corporation | Heat exchanger filter for self lint cleaning system in dryer appliance |
US11142864B2 (en) | 2017-02-27 | 2021-10-12 | Whirlpool Corporation | Heat exchanger filter for self lint cleaning system in dryer appliance |
US10514194B2 (en) | 2017-06-01 | 2019-12-24 | Whirlpool Corporation | Multi-evaporator appliance having a multi-directional valve for delivering refrigerant to the evaporators |
US10823479B2 (en) | 2017-06-01 | 2020-11-03 | Whirlpool Corporation | Multi-evaporator appliance having a multi-directional valve for delivering refrigerant to the evaporators |
US10718082B2 (en) | 2017-08-11 | 2020-07-21 | Whirlpool Corporation | Acoustic heat exchanger treatment for a laundry appliance having a heat pump system |
US11015281B2 (en) | 2017-09-26 | 2021-05-25 | Whirlpool Corporation | Laundry appliance having a maintenance free lint removal system |
US11739472B2 (en) | 2017-09-26 | 2023-08-29 | Whirlpool Corporation | Laundry appliance having a maintenance free lint removal system |
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