EP0478508B1 - A steam producing apparatus for home use - Google Patents

A steam producing apparatus for home use Download PDF

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Publication number
EP0478508B1
EP0478508B1 EP91830098A EP91830098A EP0478508B1 EP 0478508 B1 EP0478508 B1 EP 0478508B1 EP 91830098 A EP91830098 A EP 91830098A EP 91830098 A EP91830098 A EP 91830098A EP 0478508 B1 EP0478508 B1 EP 0478508B1
Authority
EP
European Patent Office
Prior art keywords
boiler
water
reservoir
stem
steam
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.)
Expired - Lifetime
Application number
EP91830098A
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German (de)
French (fr)
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EP0478508A1 (en
Inventor
Costanzo Pan
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
DIERRE FINANZIARIA S.P.A.
Original Assignee
Anonima Costruzioni Tecniche Sammarinesi -Cts Soc
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Application filed by Anonima Costruzioni Tecniche Sammarinesi -Cts Soc filed Critical Anonima Costruzioni Tecniche Sammarinesi -Cts Soc
Priority to AT91830098T priority Critical patent/ATE98355T1/en
Publication of EP0478508A1 publication Critical patent/EP0478508A1/en
Application granted granted Critical
Publication of EP0478508B1 publication Critical patent/EP0478508B1/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22BMETHODS OF STEAM GENERATION; STEAM BOILERS
    • F22B1/00Methods of steam generation characterised by form of heating method
    • F22B1/28Methods of steam generation characterised by form of heating method in boilers heated electrically
    • F22B1/284Methods of steam generation characterised by form of heating method in boilers heated electrically with water in reservoirs
    • F22B1/285Methods of steam generation characterised by form of heating method in boilers heated electrically with water in reservoirs the water being fed by a pump to the reservoirs
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F75/00Hand irons
    • D06F75/08Hand irons internally heated by electricity
    • D06F75/10Hand irons internally heated by electricity with means for supplying steam to the article being ironed
    • D06F75/12Hand irons internally heated by electricity with means for supplying steam to the article being ironed the steam being produced from water supplied to the iron from an external source

Definitions

  • the present invention relates to a steam producing apparatus for home use of the type comprising a boiler provided with a resistor designed to heat and vaporize water a water reservoir independent of the boiler, a pump arranged to transfer water from the reservoir to the boiler.
  • these steam producing apparatus are equipped with a boiler provided with a resistor designed to heat and vaporize water.
  • This boiler has a steam outlet duct and a water admitting element which can be a filler or a duct connected to a reservoir.
  • the described apparatus comprises a boiler provided with a resistor to heat and vaporize water, a water reservoir independent of the boiler and a pump in fluid communication with the boiler on one hand, and the reservoir on the other hand.
  • the pump enabling the water to enter the boiler from the reservoir is activated by a detector detecting the minimum water level in the boiler and deactivated by another maximum water level detector.
  • topping-ups in the reservoir are effected on the discretion of the user who must periodically check the water level.
  • the pump carries out the subsequent boiler fillings upon command of minimum and maximum water level detectors and the apparatus works properly.
  • the object of the present invention is to solve the problems of the known art by an apparatus of easy construction offering an improved operation.
  • the invention receives a signalling about the total water consumption in the reservoir while having the apparatus operation interrupted.
  • a further advantage of the invention is the provision of an apparatus enabling a continuous steam delivery at constant pressure and temperature values, during the apparatus operation, without interruptions or waits.
  • Yet another advantage of the invention is the provision of an apparatus capable of ensuring a safe operation and preventing damage to the apparatus itself.
  • a steam producing apparatus for home use characterized in that the boiler and the reservoir contain a first and a second stem-like tank respectively, each consisting of a microcontact and a magnetic float adapted to close the microcontact when said float is in a predetermined position, the closing of the microcontact of the first stem-like tank causing operation of the pump thereby restoring the water level in the boiler and the closing of the microcontact (16) of the second stem-like tank signalling the lack of water in the reservoir, the microcontact being connected to a solenoid shutoff valve for carrying out the interruption of steam delivery from the boiler when a predetermined minimum water level is achieved in the reservoir.
  • a steam producing apparatus for home use in accordance with the invention has been generally identified by reference numeral 1.
  • the steam producing apparatus 1 comprises a steam producing boiler 2 provided with a resistor 3 designed to heat and vaporize water.
  • Boiler 2 is also equipped with a manostat 4 to keep the pressure control and at least a thermostat 5 to keep the temperature control.
  • the boiler 2 is connected to a reservoir 6 for cold water. Located at the bottom 6a of this reservoir 6 is one end 7a of a water outlet duct 7 which is connected, at the other end 7b thereof, to a pump 8 for the automatic charging of water into the boiler 2. At the pump outlet 8 there is one end 9a of a second duct 9 connected, at the other end 9b thereof, to the upper portion 2a of boiler 2.
  • a basin 10 having, at the inside thereof, one stem-like tank 11 consisting of a microcontact 12 and a magnetic float 13.
  • the float 13 is designed to close the microcontact 12 when the float 13 is in a lower position and open it when the float 13 is in an upper position relative to the average loading level corresponding to the water-steam separation line, denoted by L in the figure.
  • a second stem-like tank 14 for the cold water level control in the reservoir consisting of a magnetic float 15 and a microcontact 16.
  • the microcontact 16 when the float 15 is in a high position, that is when there is the presence of water, the microcontact 16 is open, whereas when the magnetic float 15 is in a low position, that is when water lacks, the microcontact 16 is closed.
  • Said stem-like tank 14, designed to signal the lack of water in the reservoir 6, is also connected to a solenoid shutoff valve 17 located at the top of the boiler 2, carrying out the interruption of steam delivery from the boiler 2 when a predetermined minimum water level is reached in the reservoir 6.
  • the second stem-like tank 14 also carries out the stoppage of the pump 8 when said minimum water level is reached in the reservoir.
  • the solenoid valve 17 is capable of ensuring steam having constant pressure and temperature characteristics to a steam iron 18 connected to the boiler 2.
  • the solenoid valve 17 is connected to the steam iron 18 by a third duct.
  • Apparatus 1 finally comprises an electric control board 20 of known type coordinating and connecting all the apparatus components.
  • control board 2 is connected to boiler 2 through a connection 24, in series with the thermostat 5, manostat 4 and resistor 3 respectively.
  • control board 20 is connected to the first stem-like tank 11, through a connection 25, and the steam iron through a connection 26.
  • resistor 3 begins heating the water until steam is produced, signalling on the control board 20, by means of a tell-tale lamp 20b that the steam iron 18 is ready for use.
  • the first stem-like tank 11 closes through its magnetic float 13, the microcontact 12 causing the operation of the pump 8 which begins sending water to the boiler 2, thereby restoring the water level.
  • the intervention of the pump 8 takes place each time the water level goes below the predetermined level corresponding to a slight level difference with respect to the starting level of the water in boiler 2.
  • the water contained in the reservoir 6 decreases in level and once it has reached its minimum level the second stem-like tank 14 sends a signal to the control board 20.
  • the control board 20 stops the apparatus use by means of the solenoid valve 17, also informing the user, by a warning light and/or an acoustic warning 20c located on the control board itself that water must be added into the reservoir 6 in order to restore the starting level.
  • the float 15 After the reservoir 6 has been filled with water, the float 15 reaches its maximum level position and opens the microcontact 16 again, thereby immediately restoring the apparatus use.
  • the boiler 2 would be further adjusted by the thermostat 5 and manostat 4 intervening on the resistor 3, through the control board 20.
  • the present invention attains the intended purposes.
  • the present invention allows the water consumption in the reservoir to be signalled, the emission of steam from the boiler to be stopped when the water level in the reservoir is below the minimum level, and the resistor overheating to be avoided, which could alter the good working of the whole apparatus.
  • the boiler is filled automatically and continuously thereby maintaining the steam amount and characteristics constant in use, all that without down times, while waiting for the water to be heated both between one topping up of the boiler and the other and after the second filling of the reservoir.
  • the apparatus offers a safe operation and greatly increases the practicality, continuity and duration of use.

Abstract

The apparatus comprises a boiler (2) provided with a resistor (3) arranged to heat and vaporize water, a water reservoir (6) independent of the boiler and a pump (8) designed to transfer water from the reservoir to the boiler. In the boiler a predetermined amount of water substantially corresponding to 50% of the overall capacity of the boiler itself is kept constant thereby maintaining the steam amount unaltered and making the steam use always immediate. A means (17) to stop the steam emission when the cold water reservoir (6) is empty is also provided. <IMAGE>

Description

  • The present invention relates to a steam producing apparatus for home use of the type comprising a boiler provided with a resistor designed to heat and vaporize water a water reservoir independent of the boiler, a pump arranged to transfer water from the reservoir to the boiler.
  • Presently these apparatuses are used in steam household appliances, such as steam irons or apparatus to clean carpets, fitted carpets and the like.
  • It is known that these steam producing apparatus are equipped with a boiler provided with a resistor designed to heat and vaporize water. This boiler has a steam outlet duct and a water admitting element which can be a filler or a duct connected to a reservoir.
  • The use of boilers directly admitting water through the filler on the part of a user, is somewhat dangerous, when the water topping up is to be carried out, and also has other drawbacks.
  • In fact, in order to eliminate the risk of dangerous steam jets when cold water is added into the boiler, a separate reservoir connected to the boiler by a pump has been accomplished.
  • This arrangement has been depicted in document FR-A-2 544 054.
  • The described apparatus comprises a boiler provided with a resistor to heat and vaporize water, a water reservoir independent of the boiler and a pump in fluid communication with the boiler on one hand, and the reservoir on the other hand. The pump enabling the water to enter the boiler from the reservoir is activated by a detector detecting the minimum water level in the boiler and deactivated by another maximum water level detector.
  • It has been found that the use of a cold water reservoir connected to the boiler through a duct eliminates some problems but leases other problems unsolved.
  • In fact, while the apparatus of the above described type have proved to have a good efficiency in operation, some drawbacks have however been found due to the prolonged use of the apparatus.
  • One problem resides in the fact that the topping-ups in the reservoir are effected on the discretion of the user who must periodically check the water level. As a result as far as there is water in the reservoir the pump carries out the subsequent boiler fillings upon command of minimum and maximum water level detectors and the apparatus works properly.
  • However,as soon as the reservoir is empty, the steam delivery is no longer homogeneous because the water used is that remaining in the boiler until it is completely exhausted.
  • Then another problem originates from the fact that when the water in the reservoir and the boiler has ended, the resistor becomes overheated since it is no longer cooled by the water. This fact brings about an alternation in the good operation of the apparatus unless the use of thermostats is provided which on the other hand cannot ensure an immediate intervention.
  • A further problem arises each time water is admitted to the boiler from the reservoir. In fact if given equilibrium conditions are not maintained between the water and steam amounts and consequently between temperature and pressure, under this condition it will be necessary to wait before having steam delivered again, due to the fact that the temperature of the water in the reservoir is lower than that in the boiler.
  • The object of the present invention is to solve the problems of the known art by an apparatus of easy construction offering an improved operation.
  • The invention receives a signalling about the total water consumption in the reservoir while having the apparatus operation interrupted.
  • A further advantage of the invention is the provision of an apparatus enabling a continuous steam delivery at constant pressure and temperature values, during the apparatus operation, without interruptions or waits.
  • Yet another advantage of the invention is the provision of an apparatus capable of ensuring a safe operation and preventing damage to the apparatus itself.
  • The foregoing object is substantially attained by a steam producing apparatus for home use, characterized in that the boiler and the reservoir contain a first and a second stem-like tank respectively, each consisting of a microcontact and a magnetic float adapted to close the microcontact when said float is in a predetermined position, the closing of the microcontact of the first stem-like tank causing operation of the pump thereby restoring the water level in the boiler and the closing of the microcontact (16) of the second stem-like tank signalling the lack of water in the reservoir, the microcontact being connected to a solenoid shutoff valve for carrying out the interruption of steam delivery from the boiler when a predetermined minimum water level is achieved in the reservoir.
  • The features and advantages will be best understood from the detailed description of a steam producing apparatus for home use, in accordance with the present invention, given hereinafter by way of example with reference to the accompanying drawings, in which the only figure is a general diagrammatic view of the apparatus in accordance with the present invention connected to a steam iron.
  • Referring to the drawing, a steam producing apparatus for home use in accordance with the invention has been generally identified by reference numeral 1.
  • The steam producing apparatus 1 comprises a steam producing boiler 2 provided with a resistor 3 designed to heat and vaporize water. Boiler 2 is also equipped with a manostat 4 to keep the pressure control and at least a thermostat 5 to keep the temperature control.
  • The boiler 2 is connected to a reservoir 6 for cold water. Located at the bottom 6a of this reservoir 6 is one end 7a of a water outlet duct 7 which is connected, at the other end 7b thereof, to a pump 8 for the automatic charging of water into the boiler 2. At the pump outlet 8 there is one end 9a of a second duct 9 connected, at the other end 9b thereof, to the upper portion 2a of boiler 2.
  • Externally of the boiler 2 and connected thereto following the principe of communicating vessels is a basin 10 having, at the inside thereof, one stem-like tank 11 consisting of a microcontact 12 and a magnetic float 13. The float 13 is designed to close the microcontact 12 when the float 13 is in a lower position and open it when the float 13 is in an upper position relative to the average loading level corresponding to the water-steam separation line, denoted by L in the figure.
  • Within the reservoir 6 there is a second stem-like tank 14 for the cold water level control in the reservoir consisting of a magnetic float 15 and a microcontact 16.
  • In this case, when the float 15 is in a high position, that is when there is the presence of water, the microcontact 16 is open, whereas when the magnetic float 15 is in a low position, that is when water lacks, the microcontact 16 is closed.
  • Said stem-like tank 14, designed to signal the lack of water in the reservoir 6, is also connected to a solenoid shutoff valve 17 located at the top of the boiler 2, carrying out the interruption of steam delivery from the boiler 2 when a predetermined minimum water level is reached in the reservoir 6.
  • The second stem-like tank 14 also carries out the stoppage of the pump 8 when said minimum water level is reached in the reservoir.
  • For the above reasons, the solenoid valve 17 is capable of ensuring steam having constant pressure and temperature characteristics to a steam iron 18 connected to the boiler 2.
  • In the embodiment shown the solenoid valve 17 is connected to the steam iron 18 by a third duct.
  • Apparatus 1 finally comprises an electric control board 20 of known type coordinating and connecting all the apparatus components.
  • In fact, when the second stem-like tank 14 sends a signal to the control board 20, through a connection 21, said board 20 sends a signal to the solenoid valve 17, through a connection 22, and to the pump 8, through a connection 23.
  • In addition, the control board 2 is connected to boiler 2 through a connection 24, in series with the thermostat 5, manostat 4 and resistor 3 respectively.
  • Finally the control board 20 is connected to the first stem-like tank 11, through a connection 25, and the steam iron through a connection 26.
  • Operation of the steam producing apparatus according to the invention described above mainly as regards structure, is as follows.
  • Water is poured into the reservoir 6 as far as the maximum reservoir capacity is reached. A switch 20a located on the electric control board 20 is brought to its "on" position. Automatically the pump 8 begins sending water to the boiler 2, taking it from the reservoir 6 as far as the water reaches the level controlled by the first stem-like tank 11. Said stem-like tank 11 stops the pump 8 operation at the moment that the water reaches an established level identified by L in the drawing and corresponding to about 50% of the capacity of boiler 2, leaving the remaining 50% free.
  • At this point resistor 3 begins heating the water until steam is produced, signalling on the control board 20, by means of a tell-tale lamp 20b that the steam iron 18 is ready for use.
  • As time goes by and steam is used, the water contained in the boiler tends to decrease and its level goes below the water-steam separation line L.
  • As a result, the first stem-like tank 11 closes through its magnetic float 13, the microcontact 12 causing the operation of the pump 8 which begins sending water to the boiler 2, thereby restoring the water level. The intervention of the pump 8 takes place each time the water level goes below the predetermined level corresponding to a slight level difference with respect to the starting level of the water in boiler 2.
  • By operating in this manner only small amounts of water are admitted each time so that the inner equilibrium conditions of the boiler are not altered and the steam iron 18 is always available for use.
  • In use the water contained in the reservoir 6 decreases in level and once it has reached its minimum level the second stem-like tank 14 sends a signal to the control board 20.
  • The control board 20 stops the apparatus use by means of the solenoid valve 17, also informing the user, by a warning light and/or an acoustic warning 20c located on the control board itself that water must be added into the reservoir 6 in order to restore the starting level.
  • This happens because the magnetic float 15 of the stem-like tank 14 closes the microcontact 16 once it has reached its minimum level position. As a result of the closure of the microcontact 16, a signal to the solenoid valve 17 and a signal to the pump are respectively sent from the control board 20, the first signal causing the stopping of steam issue from boiler 2 and the second blocking the operation of the pump itself.
  • After the reservoir 6 has been filled with water, the float 15 reaches its maximum level position and opens the microcontact 16 again, thereby immediately restoring the apparatus use.
  • Advantageously, if the second stem-like tank 14, pump 8 or solenoid valve 14 should not work perfectly, the boiler 2 would be further adjusted by the thermostat 5 and manostat 4 intervening on the resistor 3, through the control board 20.
  • The present invention attains the intended purposes.
  • In fact the present invention allows the water consumption in the reservoir to be signalled, the emission of steam from the boiler to be stopped when the water level in the reservoir is below the minimum level, and the resistor overheating to be avoided, which could alter the good working of the whole apparatus.
  • It is important to note that the availability of a boiler having constant amounts of water and steam also enables the steam temperature and pressure characteristics to be kept constant during the ironing.
  • It will be recognized that by keeping the water level constant in the boiler and not taking up the wbole boiler capacity at each filling any excess of water is avoided, which water would be on the other hand ejected making the apparatus temporarily unusable.
  • It is also important to note that the boiler is filled automatically and continuously thereby maintaining the steam amount and characteristics constant in use, all that without down times, while waiting for the water to be heated both between one topping up of the boiler and the other and after the second filling of the reservoir.
  • Finally, the apparatus offers a safe operation and greatly increases the practicality, continuity and duration of use.

Claims (5)

  1. A steam producing apparatus for home use comprising a boiler (2) provided with a resistor (3) designed to heat and vaporize water, a water reservoir (6) independent of the boiler (2), a pump (8) arranged to transfer water from the reservoir (6) to the boiler (2), characterized in that the boiler (2) and the reservoir (6) contain a first and a second stem-like tank (11, 14) respectively, each stem-like tank consisting of a microcontact (12, 16) and a magnetic float (13, 15) adapted to close the microcontact when said float is in a predetermined position, the closing of the microcontact (12) of the first stem-like tank (11) causing operation of the pump (8) thereby restoring the water level in the boiler (2) and the closing of the microcontact (16) of the second stem-like tank (14) signalling the lack of water in the reservoir (2), the microcontact (16) being connected to a solenoid shutoff valve (17) for carrying out the interruption of steam delivery from the boiler (2) when a predetermined minimum water level is achieved in the reservoir (6).
  2. An apparatus according to claim 1, characterized in that said second stem-like tank (14) carries out the stoppage of said pump (8) when the predetermined minimum water level is reached in the reservoir (6).
  3. An apparatus according to claim 1, characterized in that said second stem-like tank (14) activates a light warning (20c) located on an electric control board (20) connected to the second stem-like container itself.
  4. An apparatus according to claim 1, characterised in that said second stem-like container (14) activates an acoustic warning located on said electric control board (20).
  5. An apparatus according to claim 1, characterized in that said solenoid shutoff valve (17) adapted to control the steam emission from the boiler (2) and break the flowing thereof is disposed at the top of the boiler (2).
EP91830098A 1990-09-28 1991-03-12 A steam producing apparatus for home use Expired - Lifetime EP0478508B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AT91830098T ATE98355T1 (en) 1990-09-28 1991-03-12 STEAM GENERATOR FOR HOUSEHOLD USE.

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT21844U IT220195Z2 (en) 1990-09-28 1990-09-28 EQUIPMENT FOR THE PRODUCTION OF STEAM FOR DOMESTIC USE
IT2184490U 1990-09-28

Publications (2)

Publication Number Publication Date
EP0478508A1 EP0478508A1 (en) 1992-04-01
EP0478508B1 true EP0478508B1 (en) 1993-12-08

Family

ID=11187660

Family Applications (1)

Application Number Title Priority Date Filing Date
EP91830098A Expired - Lifetime EP0478508B1 (en) 1990-09-28 1991-03-12 A steam producing apparatus for home use

Country Status (5)

Country Link
EP (1) EP0478508B1 (en)
AT (1) ATE98355T1 (en)
DE (1) DE69100745T2 (en)
ES (1) ES2049539T3 (en)
IT (1) IT220195Z2 (en)

Families Citing this family (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0638767A1 (en) * 1993-05-20 1995-02-15 Satiber, S.L. Improvement of steam generators for household use
IT234849Y1 (en) * 1994-09-26 2000-03-20 Etairoi Holding Sa STEAM GENERATOR FOR DOMESTIC USE, IN PARTICULAR FOR CLEANING WORKS
DE19505342C1 (en) * 1995-02-17 1996-04-18 Kaercher Gmbh & Co Alfred Combined steam cleaning and steam ironing device
IT1278873B1 (en) * 1995-12-07 1997-11-28 Giuliano Franchini QUICK STEAM PRODUCTION BOILER
IT1297553B1 (en) * 1997-06-05 1999-12-17 Hot Line Srl AUTOMATIC WATER LOADING SYSTEM INTO THE BOILER OF HOUSEHOLD APPLIANCES IN GENERAL WHICH USE STEAM TO EXPLAIN
DE19742465A1 (en) * 1997-09-26 1999-04-15 Kaercher Gmbh & Co Alfred Combined steam cleaning and ironing appliance
EP1098138A1 (en) * 1999-11-04 2001-05-09 Ecovap S.A. Device for controlling a generator of hot fluid in liquid or gaseous form
PT1311786E (en) * 2001-07-27 2005-05-31 Imetec Spa ADJUSTMENT OF PRESSURE FOR A DOMESTIC STEAM GENERATOR
EP2287381A1 (en) * 2009-08-17 2011-02-23 BSH Bosch und Siemens Hausgeräte GmbH Steam generator for use in a laundry appliance, and laundry appliance
GB201102971D0 (en) * 2011-02-21 2011-04-06 Strix Ltd Electrical water heating appliances
WO2014171908A2 (en) * 2013-04-10 2014-10-23 Yapicioğlu Umut Heat transfer device used for heating any liquid and air

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BR8707906A (en) * 1987-10-09 1990-03-01 Termozeta Elettrodomestici Spa UTILITY STEAM GENERATOR WITH SELF-CONTROLLED PRESSURE
US4948947A (en) * 1988-07-26 1990-08-14 Pacific Steam Equipment, Inc. Steam boiler

Also Published As

Publication number Publication date
EP0478508A1 (en) 1992-04-01
ES2049539T3 (en) 1994-04-16
IT9021844U1 (en) 1992-03-28
IT9021844V0 (en) 1990-09-28
IT220195Z2 (en) 1993-07-13
ATE98355T1 (en) 1993-12-15
DE69100745D1 (en) 1994-01-20
DE69100745T2 (en) 1994-03-24

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