EP3405722B1 - A domestic hood comprising a fluid collection device - Google Patents

A domestic hood comprising a fluid collection device Download PDF

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Publication number
EP3405722B1
EP3405722B1 EP16822739.5A EP16822739A EP3405722B1 EP 3405722 B1 EP3405722 B1 EP 3405722B1 EP 16822739 A EP16822739 A EP 16822739A EP 3405722 B1 EP3405722 B1 EP 3405722B1
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EP
European Patent Office
Prior art keywords
hood
section
front side
fluid
forced
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.)
Active
Application number
EP16822739.5A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP3405722A1 (en
Inventor
Fabrizio Crisà
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.)
Elica SpA
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Elica SpA
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Publication date
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Publication of EP3405722A1 publication Critical patent/EP3405722A1/en
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Publication of EP3405722B1 publication Critical patent/EP3405722B1/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/20Removing cooking fumes
    • F24C15/2042Devices for removing cooking fumes structurally associated with a cooking range e.g. downdraft

Definitions

  • the present invention relates to a forced-extraction domestic hood, particularly a hood designed for vertical installation, as defined in the preamble of claim 1.
  • Range hoods are designed, by their own nature, to intercept the fumes generated when cooking food and exhaust them. These fumes are often rich in steam, which is generated when heating the water in which food is cooked. Thus, the fumes so generated will obviously have a relative humidity (i.e. the ratio of the amount of vapor contained therein to the maximum amount of vapor that the air volume can contain under the same temperature and pressure conditions) that is higher than the relative humidity of ambient air. In kitchens with gas or electric cooktops, no significant problem arises when fumes having a high relative humidity impinge upon the hood.
  • the burners heat pots and pans (and the food cooked therein) and also the air that surrounds such pots and pans, as the energy source (the burner) does not only act upon the pots and pans but also on anything around the burner itself.
  • This will generate an upstream flow of heated air which necessarily also impinges upon the hood.
  • Such hot air flow releases heat to the hood (which has a lower temperature), or at least to the surfaces of the hood upon which the heated air (and the cooking fumes) directly impinge. Therefore, when the water-rich cooking fumes impinge upon the aforementioned surfaces of the hood, the latter are not cold (i.e. room temperature), but have been partially heated. The temperature of the cooking fumes that impinge upon the hood does not fall below the dew point of the steam contained therein.
  • hoods those designed for vertical installation, i.e. the hoods in which the gas intake is formed in a front side extending in a direction transverse to a vertical axis, such as the axis that extends perpendicular to the plane of the food-cooking burners, are particularly affected by the above discussed problem.
  • hood manufacturers have developed hoods with integrated drip trays, which effectively address the problem. Namely, hoods are originally equipped with particular trays that are designed to intercept condensation and prevent dripping on the food being prepared.
  • the present invention provides a device or accessory for collecting condensation droplets, which device is associated with an existing hood installed in the kitchen of a user.
  • the fluid collection device can add the condensation collecting feature to previously installed hoods, thereby extending their useful life.
  • the present invention provides a fluid collection device that can be adapted to hoods of various lengths without requiring devices of various lengths designed for each hood.
  • numeral 1 designates a fluid collection device for a hood designed for domestic use.
  • the device 1 comprises a fluid-holding container 3, i.e. for holding fluids dripping off along the hood 2.
  • the fluids collected into the container 3 are the condensation that builds up because the cooking fumes have a high relative humidity which, as they contact the cold surfaces of the hood (locally) decreases the temperature of the cooking fumes below the dew point of the steam contained therein, and condensation builds up on such surfaces of the hood 2.
  • the device 1 finds application as an accessory designed for association with the hood 2.
  • the hood 2 is preferably a hood known in the art as a vertical hood, which is located in domestic environments, such as a kitchen.
  • the hood 2 is preferably located at a predetermined distance, e.g. 55 cm or more, from a cooktop (e.g. an induction cooktop), having burners for preparing hot food.
  • a cooktop e.g. an induction cooktop
  • the term vertical hood is intended to designate a hood comprising a front side 2A having an opening for gas intake, such front side 2A extending in a direction Z-Z transverse to a vertical axis Y-Y which is perpendicular to the cooktop plane ( Figure 4 ).
  • the front side has an inclination angle ⁇ typically greater than 60°.
  • the vertical hood 2 comprises:
  • the housing frame of the hood 2 is known to enclose a forced air extraction unit having an extraction section and an exhaust section, in which the first opening is in fluid communication with the extraction section when the forced air extraction unit is actuated, and the exhaust section is in fluid communication with the second opening for gas exhaust.
  • the housing frame 2 comprises one or more filters (not shown) for filtering gases that flow through the extraction section. These filters are interposed between the opening and the extraction section of the air extraction unit.
  • the front side 2A has predetermined width L and thickness S.
  • the hood 2 comprises the fluid collection device 1 for collecting condensation fluids that drip off along the inclined front side 2A.
  • the device 1 comprises at least one first fluid-collecting section, preferably two sections 4 and 5, each extending in a preset direction X-X.
  • the section 4, 5 can be sealingly associated with the front side 2A of the hood 2 to collect condensation droplets flowing along such front side.
  • the section 4, 5 is in fluid communication with the container 3 for transferring the condensation droplets into such container 3.
  • the device 1 is associated with the hood 2 by engagement members 6, which are configured to engage the first section 4, 5 with an edge 2B of the front side 2A of the hood 2.
  • the engagement members 6 are configured to move from a first configuration in which they engage the edge 2B of said front side 2A of the hood 2, to thereby rigidly join the fluid collection device 1 to the hood 2 to a second configuration in which they do not engage such edge 2B of the front side 2A of the hood 2, to thereby remove said device.
  • each of the sections 4, 5 is a telescopic section which is configured to be telescoped from a retracted position (see Figure 2 ) to an extended position (see Figure 3 ) such that it may extend in the preset direction X-X to match at least one portion of the length L of the front side 2A of the hood 2.
  • This feature advantageously allow the device 1 to fit the various possible lengths L of the front side 2A of the hood 2.
  • the fluid collection device 1 extends along the entire width L of the front side 2A.
  • both the first section 4 and the second section 5 are embodied by telescopic element that may be telescoped from a minimum length L1 (see Figure 2 ) to a maximum length L2 (see Figure 3 ).
  • the device 1 has a thickness S1 that is sufficient to enclose the thickness S of the front side 2A of the hood 2 and a predetermined height T that is sufficient to cover the bottom portion (i.e. the portion that is closest to the cooktop) of the front side 2A of the hood 2.
  • such device 1 when associated with the hood 2 it preferably extends along the entire width letter L of the front side 2A, encloses the thickness S of such front side 2A and covers the bottom portion of such front side 2A.
  • the device 1 in the retracted position (see Figure 2 ), the device 1 may fit hoods 2 having a front side 2A with a length L of 55 cm, and in the extended position (see Figure 3 ) the device 1 may fit hoods 2 having a front side 2A with a length L of 90 cm.
  • each section 4, 5 comprises a first section portion 4A (or 5A) that is stationary, and one or more section portions 4B (or 5B) that are able to move relative to each other and to the stationary portion 4A (or 5B) in the direction of extension.
  • the movable portions 4B may slide relative to the first stationary portion 4A (or 5A) in appropriate seats formed in the thickness of the latter.
  • the movable portions 4B (or 5A) slide relative to the first stationary portion 4A (or 5A) once the user has preferably manually pulled the movable portions 4B (or 5B) out of the stationary portion 4A (or 5A).
  • both the first section 4 and the second section 5 are embodied by a channel section.
  • Each of these channel sections 4 and 5 define at least:
  • the height of the short sides of the movable portions 4B or 5B of the first section 4 or the second section 5 is slightly smaller than the height of the short sides of the stationary portions 4A or 5A of the first section 4 or the second section 5. This is due to the telescopic feature of the device 1.
  • the movable portions 4B slide relative to the first stationary portion 4A (or 5A) once the short side of the movable portions 4B (or 5B) has been manually pulled out.
  • the engagement members 6 are located proximate to a short side of each of the sections 4 and 5.
  • the step to move from the first configuration, in which the edge 2B of the front side 2A of the hood 2 is engaged to the second configuration in which such edge 2B is not engaged, is performed after a manual action by the user upon the engagement members 6.
  • a mechanical elastic mechanism is provided which, upon a pressure preferably exerted by the user on such engagement members 6 can switch from the first engagement configuration to the second release configuration or vice versa.
  • the mechanical elastic engagement members 6 are embodied by a clamp that is joined to the short side of the movable portions 4B and 5B in such a manner as to rotate about an axis W-W.
  • each of the first stationary section portion 4A (or 5A) and the movable section portion/s 4B (or 5B) defines a front face 7A and a rear face 7B opposite to the front face 7A.
  • the rear face 7B with the fluid collection device 1 in operation, i.e. associated with the hood 2, faces the front side 2A of the hood 2.
  • the rear face 7B does not directly contact the front side 2A of the hood 2 but forms a gap H.
  • the device 1 comprises, for each rear face 7B of the stationary section portion 4A (or 5A) and the movable section portions 4B (or 5B) at least one feed line 8 projecting out of the rear face 7B.
  • Such feed line and 8 is configured to intercept the fluid (i.e. the condensation droplets) dripping off the front side 2A.
  • feed lines 8 are in surface contact with the front side 2A of the hood 2 to collect the condensation droplets that flow along such front side 2A, thereby preventing any contamination of the food being prepared.
  • the feed lines 8 are advantageously in fluid communication with each other and with the container 3 for the condensation to be collected in such container 3.
  • the container 3 can be removed from the device 1 to be emptied and/or cleaned, as needed, of the condensation that has build up therein during operation of the hood 2.
  • the feed lines 8 extend in a direction S-S transverse to the preset direction of extension X-X of the device 1 (see Figure 4 ).
  • the direction S-S of the feed lines 8 defines an angle of repose or an inclined path, facilitating the flow of condensation droplets toward the container 3 (see Figure 4 ).
  • the feed lines 8 extend in a non-parallel, transverse direction relative to the cooktop plane, and act as water collection downspouts, to channel condensation droplets into the container 3.
  • the feed lines 8 extend across the rear face 7B of the stationary section portion 4A (or 5A) and the movable section profiles 4B (or 5B).
  • the feed lines 8 originate proximate to the short side, for example, of the movable portion 4B of the section 4, and end at the opposite short side of the same movable portion 4B, thereby covering the entire path between such short sides.
  • the condensation droplets flow into a first feed line 8 projecting out of the rear face 7B of the movable portion 4B.
  • This feed line 8 of the movable portion 4B is in turn in fluid communication with another feed line 8, projecting out of the rear face 7B of the stationary portion 4A and the latter feed line opens into the container 3.
  • the fluid collection device 1 comprises mechanical connection members 9, which are configured to connect the two sections 4 and 5 together.
  • the two sections 4, 5 are rigidly connected by the mechanical connection members 9 to form a fluid collection device 1 in which no relative movement occurs between the two sections 4 and 5.
  • the mechanical connection members 9 consist of a hinge mechanism defining an axis of rotation R-R.
  • first section 4 and/or the second section 5 are pivotally movable about such axis of rotation R-R.
  • the first section 4 and/or the second section 5 may be rotated toward each other to form a device with a more compact design.
  • Such compact design is particularly useful during transport of the fluid collection device, as it minimizes its dimensions, or if the fluid collection device 1 has to be stored for further use.
  • the mechanical connection members 9 are located proximate to a the short sides of the first and second sections 4,5.
  • the container 3 is preferably located in a middle area relative to the length L1 or L2 of the fluid collection device 1.
  • the fluid collection device 1 is made of materials that have such characteristics as to ensure sufficient rigidity and reliability with time in terms of fluid-tight coupling.
  • the fluid collection device 1 is designed to include plastic materials, rubbers and resins, but also metal or other compatible materials, complying with the standards that regulate the use of such device in a domestic kitchen.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Ventilation (AREA)
  • Frying-Pans Or Fryers (AREA)
EP16822739.5A 2016-01-20 2016-11-21 A domestic hood comprising a fluid collection device Active EP3405722B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITUB2016A000157A ITUB20160157A1 (it) 2016-01-20 2016-01-20 Dispositivo di raccolta fluidi per una cappa per ambienti domestici e cappa per ambienti domestici dotata di detto dispositivo di raccolta fluidi
PCT/IB2016/056993 WO2017125804A1 (en) 2016-01-20 2016-11-21 A domestic hood comprising a fluid collection device

Publications (2)

Publication Number Publication Date
EP3405722A1 EP3405722A1 (en) 2018-11-28
EP3405722B1 true EP3405722B1 (en) 2019-12-25

Family

ID=55806638

Family Applications (1)

Application Number Title Priority Date Filing Date
EP16822739.5A Active EP3405722B1 (en) 2016-01-20 2016-11-21 A domestic hood comprising a fluid collection device

Country Status (5)

Country Link
EP (1) EP3405722B1 (zh)
CN (1) CN108603666B (zh)
ES (1) ES2774698T3 (zh)
IT (1) ITUB20160157A1 (zh)
WO (1) WO2017125804A1 (zh)

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4266529A (en) * 1979-09-12 1981-05-12 Gaylord Industries, Inc. Kitchen ventilator with removable grease extractor
US4869236A (en) * 1988-05-20 1989-09-26 Blough John W Apparatus for collecting and storing grease discharged from roof mounted exhaust systems
CN2458649Y (zh) * 2000-12-12 2001-11-07 施水源 伺服器机柜滑轨新结构
CN202000418U (zh) * 2010-12-17 2011-10-05 翁卓林 一种伸缩下水管
IL219114A (en) * 2012-04-05 2013-04-30 Ori Fichman Fat drainage system for air vapor and smoke
CN202687198U (zh) * 2012-07-20 2013-01-23 青岛金黄海集装箱有限公司 具有集水槽的箱形罐体
ITMI20131085A1 (it) * 2013-06-28 2014-12-29 Elica Spa Cappa ad aspirazione forzata per ambienti domestici dotata di un contenitore di raccolta fluidi.
DE102014108237A1 (de) * 2014-06-12 2015-12-17 Miele & Cie. Kg Dunstabzugshaube
CN104398170B (zh) * 2014-11-18 2017-12-29 浙江理工大学 一种尺寸可调的水槽沥水篮

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
CN108603666B (zh) 2020-03-03
CN108603666A (zh) 2018-09-28
WO2017125804A1 (en) 2017-07-27
ITUB20160157A1 (it) 2017-07-20
EP3405722A1 (en) 2018-11-28
ES2774698T3 (es) 2020-07-22

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