EP2613682B1 - Dispositif d'aspiration comprenant un aspirateur et un sac filtrant - Google Patents

Dispositif d'aspiration comprenant un aspirateur et un sac filtrant Download PDF

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Publication number
EP2613682B1
EP2613682B1 EP11754303.3A EP11754303A EP2613682B1 EP 2613682 B1 EP2613682 B1 EP 2613682B1 EP 11754303 A EP11754303 A EP 11754303A EP 2613682 B1 EP2613682 B1 EP 2613682B1
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EP
European Patent Office
Prior art keywords
filter
filter bag
bag
vacuum
accommodating chamber
Prior art date
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Active
Application number
EP11754303.3A
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German (de)
English (en)
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EP2613682A2 (fr
Inventor
Jan Schultink
Ralf Sauer
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Eurofilters Holding NV
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Eurofilters Holding NV
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Priority to EP11754303.3A priority Critical patent/EP2613682B1/fr
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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/10Filters; Dust separators; Dust removal; Automatic exchange of filters
    • A47L9/14Bags or the like; Rigid filtering receptacles; Attachment of, or closures for, bags or receptacles
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/10Filters; Dust separators; Dust removal; Automatic exchange of filters
    • A47L9/14Bags or the like; Rigid filtering receptacles; Attachment of, or closures for, bags or receptacles
    • A47L9/1427Means for mounting or attaching bags or filtering receptacles in suction cleaners; Adapters
    • A47L9/1436Connecting plates, e.g. collars, end closures
    • A47L9/1445Connecting plates, e.g. collars, end closures with closure means
    • A47L9/1454Self-sealing closures, e.g. valves
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining

Definitions

  • the invention relates to a device for vacuuming with a vacuum cleaner and a filter bag, in which the filter bag is formed as a flat bag, as a non-woven filter bag and disposable filter bag, and the vacuum cleaner has a filter bag receiving space with rigid walls, wherein the filter bag receiving space closable by a flap opening with a has predetermined opening area through which the filter bag is inserted into the filter bag receiving space.
  • the invention relates to a filter bag and a method for inserting a filter bag in a filter bag receiving space of a vacuum cleaner.
  • Filter bags in the form of non-woven disposable flat bags are the filter bags most commonly used today.
  • the advantage of non-woven bags is the significantly higher dust absorption capacity of the filter bag with higher separation efficiency and longer service life.
  • the flat bag form is the most common form for nonwoven bags since bags of this shape are very easy to manufacture. Because in contrast to the paper filter material used in filter bags made of paper, nonwoven filter material is very difficult to permanently fold because of the high resilience, so that the production of more complex bag shapes, such as block bottom bag or other bottom bag forms, is very complicated and expensive.
  • a flat bag in the sense of the present invention is understood to mean filter bags which are formed from two individual layers of filter material with the same area such that the two individual layers are connected to one another only at their peripheral edges (the term same area does not exclude, of course, that the two individual layers differ from each other in that one of the layers has an entrance opening).
  • connection of the individual layers can be realized by a weld or adhesive seam along the entire circumference of the two individual layers; but it can also be formed by a single layer of filter material is folded around one of its symmetry axes and the remaining open peripheral edges of the resulting two partial layers are welded or glued (so-called tubular bag).
  • a single layer of filter material per se may consist of one or more layers, which may be laminated, for example. Likewise, a single layer of folded filter material may be formed.
  • Flat bags in the sense of the present invention may also have so-called gussets. These side folds can be completely unfoldable.
  • a flat bag with such gussets is for example in the DE 20 2005 000 917 U1 shown (see there Fig. 1 with folded gussets and Fig. 3 with unfolded gussets).
  • the gussets may be welded to portions of the peripheral edge.
  • Such a flat bag is in the DE 10 2008 006 769 A1 shown (see there in particular Fig. 1 ).
  • flat bag is 2-dimensional structures immediately after production, ie before use have an inner volume which is substantially equal to zero.
  • a filter bag having an internal volume that is substantially zero is not necessarily a flat bag in the sense of the present invention.
  • bag shapes that have a bottom such as in the DE 20 2005 016 309 U1 or the DE 20 2009 004 433 U1 are not flat bags, since they do not consist of two single layers with the same area, which are connected to each other only at their peripheral edges exist.
  • pouches which are already 3-dimensional structures after production and thus have a non-zero internal volume, as for example in the WO 00/00269 (see Figures 27 and 28 there) and the DE 10 2007 060 748 (see there in particular Fig. 9) are shown, are not flat bags in the sense of the present invention.
  • a nonwoven filter bag in the sense of the present invention comprises a nonwoven filter material.
  • a nonwoven fabric material a dry-laid or wet-laid nonwoven fabric or an extrusion nonwoven fabric, particularly a melt-spun microfiber spunbond fabric (meltblown nonwoven fabric) or spunbonded nonwoven fabric, may be used. There may also be additional nanofiber layers.
  • the demarcation between wet-laid nonwovens, or nonwovens, and conventional wet laid paper is as shown below definition as used by EDANA (International Association Serving the Nonwoven and Related Industries). A conventional (filter) paper is therefore not a nonwoven.
  • the nonwoven fabric may comprise staple fibers or continuous fibers. Manufacturing technology can also provide several layers of staple fibers or continuous fibers, which are solidified to exactly one layer of nonwoven fabric.
  • the filter material may also be a laminate of a plurality of nonwoven fabric layers, such as filament spunbond fabric and meltblown nonwoven fabric (SMS, SMMS or SnxMS). Such a laminate may be laminated or calendered by means of a hot melt adhesive. The layer of meltblown nonwoven fabric may be creped.
  • nonwoven fabric is used in accordance with the definition according to ISO standard ISO 9092: 1988 or standard EN 29092.
  • the terms nonwoven fabric or nonwoven fabric and nonwoven fabric in the field of production of nonwoven fabrics are delimited from one another as follows and also to be understood in the sense of the present invention.
  • To produce a nonwoven fabric fibers and / or filaments are used.
  • the loose or loose and still unconnected fibers and / or filaments are referred to as nonwoven or nonwoven web.
  • non-woven binding step such a non-woven fabric is finally used to form a non-woven fabric which has sufficient strength to be wound into rolls, for example.
  • a nonwoven fabric is self-supportingly formed by the solidification.
  • the nonwoven material may be present for a filter bag in the sense of the present invention as an unfolded layer or in turn have surface wrinkles. How such surface wrinkles can be formed results, for example, from the European patent application 10163463.2 ,
  • a commonly used size of such filter bags for household vacuum cleaners have a length and a width of about 30 cm each and a height of about 1 cm.
  • a commonly used size of such filter bags for household vacuum cleaners have a length and a width of about 30 cm each and a height of about 1 cm.
  • a conventional vacuum cleaner in particular, a conventional vacuum cleaner apparatus in which filter bags of the above size are used, has a filter bag accommodating space whose length, width and height are each in the range between 10 cm and 20 cm.
  • TM Ultra One
  • the filter bag accommodating space according to the present invention is formed of rigid walls.
  • the filter bag receiving space can be provided as an integral part of the housing or as a partial housing of the vacuum cleaner.
  • No rigid walls within the meaning of the invention have filter bag containment spaces made of a solid fabric known in the art of handheld vacuum cleaners (see, for example, US Pat EP 0 161 790 ).
  • the above-mentioned proportions of filter bag and filter bag receiving space of the vacuum cleaner to the filter bag in the filter bag receiving space can not be fully deployed, but (in addition to the two superimposed individual layers) rather cover different areas of the superimposed individual layers or cover themselves areas of one or both of the individual layers themselves.
  • the proportions also lead to the fact that the filter bag can not fully unfold even during operation of the vacuum cleaner. This effect is further enhanced by the fact that the filter bags are used in the folded state in the filter bag receiving space.
  • the present invention has the object to provide a combination between vacuum cleaner and filter bag, which better exploit the properties inherent in the filter bag, such as dust holding capacity, separation efficiency and service life.
  • a device for vacuuming of the type mentioned which is characterized in that the ratio of the area of a rectangle corresponding to the opening area and the surface of the filter bag is greater than 0.70, preferably greater than 0.85, and most preferably greater than 1.0.
  • the area of the rectangle corresponding to the opening area is determined in the context of the present invention by means of the so-called minimally circumscribing rectangle which is well known from image processing (see, for example, in US Pat Tamara Ostwald, "Object Identification Using Regions Descriptive Features in Hierarchically Partitioned Images", Aachener Kunststoffen Kunststoffbericht fürberichtatik, Volume 04, 2005 .)
  • the opening area is in one plane (two-dimensional opening area with two-dimensional edge) or the opening area is extending beyond one plane (three-dimensional opening area with three-dimensional edge).
  • the area of the rectangle corresponding to the opening area is determined directly by the area of the minimally circumscribing rectangle of the two-dimensional edge of the opening area.
  • the area of the rectangle corresponding to the opening area represents a good and unambiguous approximation of the opening area of the vacuum cleaner device, which can be easily determined even with complex opening areas and opening edges.
  • the surface of a filter bag in the sense of the present invention is determined on the filter bag when it lies flat in a completely unfolded form, ie in a 2-dimensional form.
  • the gussets are fully unfolded to determine the area.
  • the filter bag has welded gussets, these are not taken into account when determining the area.
  • the area of a filter bag having a rectangular shape results from taking the filter bag out of its packaging, fully unfolding it, measuring its length and width, and multiplying them by one another.
  • the opening area in relation to the surface of the filter bag satisfies this relation, then it is ensured that the filter bag can be introduced into the filter bag receiving space essentially completely unfolded. An overlap of the two individual layers or an overlap of one of the two individual layers with itself is thus avoided. It is from the beginning of the suction to (for this filter bag) the majority of the entire filter surface of the filter bag available and the filter properties of the filter bag, especially the achievable for the filter bag dust holding capacity with high separation efficiency and long life, are thus optimally utilized from the beginning.
  • the object underlying the invention is also achieved by a device of the type mentioned, in which the ratio of the receiving volume of the filter bag in the filter bag receiving space to the maximum receiving volume of the filter bag greater than 0.70, preferably greater than 0.75, most preferably greater than Is 0.8.
  • the receiving volume of the filter bag in the filter bag receiving space is determined according to the present invention according to EN 60312, Chapter 2.7.
  • the maximum receiving volume of the filter bag is determined according to the present invention analogous to EN 60312, Chapter 2.7.
  • EN 60312, Chapter 2.7 The only difference to EN 60312, Chapter 2.7, is that the filter bag is designed to be suspended in a chamber the volume of which is at least sufficient to prevent the filter bag from fully expanding to its maximum possible size when fully filled.
  • a cube-shaped chamber having an edge length equal to the root of the sum of the squares of maximum length and maximum width of the filter bag satisfies this requirement. If the filter bag accommodation space is designed such that the filter bag provided for it fulfills the above-mentioned conditions, then it is ensured that the entire filter surface of the filter bag is available during the entire suction operation (until the bag is changed) and thus the filter bag becomes available is filled optimally during operation.
  • the filter properties of the filter bag in particular the dust absorption capacity achievable for the filter bag with high separation efficiency and long service life, are thus optimally utilized until the filter bag is changed.
  • the ratio of the surface of the filter bag receiving space and the surface of the filter bag according to the invention is greater than 0.90, preferably greater than 0.95, most preferably greater than 1.0.
  • the surface of the filter bag in the sense of the present invention is defined as twice the area occupied by the filter bag when it lies flat in a completely unfolded form, ie in a 2-dimensional form.
  • the area of the entrance opening and the area of the welds are not taken into account as they are comparatively small in relation to the actual filter area.
  • any foldings provided in the filter material itself are disregarded.
  • the surface of a rectangular filter bag thus results simply from being taken out of its package, fully unfolded, measured its length and width, multiplied together and the result taken two times.
  • the surface of the filter bag containment space in the sense of the present invention is defined as the surface that the filter bag containment room would have, if any (if any), all facilities (ribs, rib-shaped sections, stirrups, etc.) in the filter bag containment space are provided so that the filter material of the filter bag remains away from the wall of the filter bag receiving space (which is required for a smooth filter material to ensure that even air can flow through the filter bag) are disregarded.
  • the surface of a cuboid filter bag receiving space with ribs thus results as maximum length times maximum width times maximum height of the filter bag receiving space without taking into account the dimensions of the ribs.
  • the surface of the filter bag accommodating space enters the above relation only as a lower limit, in order to determine whether a particular vacuum cleaner in combination with the filter bag makes use of the previously discussed embodiment, especially if the filter bag containing space is of complicated geometrical shape, alternatively the surface of a parallelepiped Body can be determined, which completely encloses the filter bag receiving space; the surface of such a body is obtained, for example, if one determines the surface of a cuboid with the edge lengths which correspond to the maximum extent of the actual filter bag receiving space in the length, width and height direction (length, width and height directions are of course orthogonal to one another) ,
  • the filter bag receiving space may be formed essentially of two curved surfaces.
  • the filter bag accommodation space may also be formed of two curved surfaces and one side surface, the side surface connecting the two curved surfaces along the circumference of the curved surfaces.
  • the filter bag On the one hand, conditions are always present until the filter bag is completely filled, so that the dust absorption capacity achievable for the filter bag does not adversely affect the high separation efficiency and long service life become.
  • the requirement can be met that the dust filter receiving space can be made as small as possible in order to keep the overall dimensions of the vacuum cleaner as small as possible.
  • the flat bag may also be diamond-shaped.
  • a vacuum cleaner apparatus using diamond-shaped filter bags can be made less wide than a vacuum cleaner in which rectangular bags are used correspondingly (same fill volume).
  • Such a diamond-shaped filter bag has substantially the same filling characteristics as a rectangular bag, that is, as has been described in the last paragraph.
  • diamond-shaped filter bags and rectangular filter bags can be manufactured with the same amount of filter material for the same surface area.
  • Particularly advantageous with respect to the filling characteristics is a diamond shape with opposing angles in the range of 100 ° to 120 °. If these angles are, for example, 105 °, this results in a diamond shape with the angles 105 ° - 75 ° - 105 ° - 75 °.
  • the vacuum cleaner can be a vacuum cleaner.
  • Vacuum cleaners in the sense of the present invention are vacuum cleaner devices in which filter bag receiving space and vacuum cleaner motor in a housing (which may also consist of two interconnected sub-housings) are provided, to this housing a hose and / or a pipe (to which or a dust receiving device, such as a floor nozzle, a suction brush, a furniture brush or the like) are connected and in which this housing is provided on rollers, so that in the suction only primarily the hose and / or pipe and the corresponding dust receiving device must be moved and secondarily it will be much heavier.
  • vacuum cleaner devices Since the weight of the components to be moved is minimized in such a vacuum cleaner devices, such vacuum cleaner devices are to operate with the least effort and therefore in households the most common devices in which the present invention can be advantageously used.
  • the invention can also be used advantageously in a hand vacuum cleaner.
  • the surface of the filter bag accommodation space may comprise ribs and / or rib-shaped sections and / or stirrups
  • the filter bags consist of a filter material with a fold-shaped surface
  • the height of the ribs and / or the rib-shaped sections and / or the stirrups is greater than that maximum fold height of the fold-shaped surface.
  • the surface of the filter bag receiving space may be formed substantially smooth and the surface of the filter bag be profiled such that when placed in the vacuum cleaner filter bag most of the surface of the filter bag remains at a distance from the surface of the filter bag receiving space.
  • the present invention may be provided at least a portion of the wall of the filter bag receiving space a hole wall at a predetermined distance from the wall.
  • the filter bag accommodation space is formed by two curved surfaces (with or without side wall), then advantageously at least one of the curved surfaces, preferably the curved surface forming the bottom of the filter bag accommodation space, may have a hole wall at a predetermined distance.
  • the filter bag accommodation space is formed by two curved surfaces (with or without side wall), then advantageously at least one of the curved surfaces, preferably the curved surface forming the bottom of the filter bag accommodation space, may have a hole wall at a predetermined distance.
  • Figs. 1 and 2 show a first embodiment of a device for vacuuming according to the present invention, wherein in Fig. 1 the filter bag receiving space is closed and in Fig. 2 the filter bag receiving space is opened. In Fig. 2 the filter bag is visible.
  • vacuum cleaner is a vacuum cleaner, which has a housing which consists of a first part 210 and a second part 220 connected thereto.
  • the first part 210 in this case represents the filter bag receiving space.
  • the second part 220 is the engine of the vacuum cleaner.
  • a tube 211 is connected to the first part 210.
  • the filter bag containment space is formed of a first curved surface 212a and a second curved surface 212b.
  • a filter bag 230 can be seen.
  • This filter bag has the inlet port 231 provided in one of its corners.
  • the distance D E of the center of gravity of the inlet opening from the corner is in the embodiment shown approximately 1 ⁇ 4 of the distance D FB of Center of gravity of the filter bag from the corner.
  • a flap 233 is provided which opens itself by the suction flow and which self-closes when the suction flow is interrupted. This is provided on a holding plate 232, by means of which the filter bag is fixed in the filter bag receiving space.
  • Fig. 2 In the in Fig. 2 is a filter bag with dovetail-shaped surface wrinkles inserted into the filter bag receiving space.
  • the ratio of the area of the opening area corresponding rectangle F RE to the filter surface F filter , the ratio of the receiving volume of the filter bag in the receiving space V AR to its maximum pickup volume V Max and the ratio of the surface of the filter bag receiving space S AR to the surface of the Filter bag S filter for in the Figs. 1 and 2 shown embodiment according to the invention and for a representative of the prior art device for vacuuming indicated.
  • the state-of-the-art device is the UltraOne ECO vacuum cleaner from AEG / Elektrolux with its S-Bag Ultra Long Perfomance vacuum cleaner bag.
  • Fig. 3 shows a cross section through the filter bag receiving space of a second embodiment of the present invention.
  • the cross section here passes through the center of the filter bag receiving space along a first direction.
  • the cross section is similar to that in FIG Fig. 3 , shown.
  • the filter bag accommodation space consists of two curved surfaces 400a and 400b.
  • Fig. 4 shows a cross section through the filter bag receiving space of a third embodiment of the present invention.
  • the filter bag accommodating space in addition to two curved surfaces 500a and 500b on a side surface 500c, which connects the two curved surfaces at their periphery with each other.
  • FIG. 12 is a cross-sectional view of a portion of a wall of the filter bag containing space 610 with the filter bag 620 loaded according to a fourth embodiment of the vacuuming apparatus according to the present invention.
  • the wall 610 has ribs 611 in this embodiment.
  • the filter bag 620 has so-called dovetail folds 621.
  • the maximum fold height of the dovetail folds 621 ie, the height when fully folded is less than the height of the ribs 611. This can greatly increase the effective filter area. This allows a highly efficient combination of vacuum cleaner and filter bag to be realized.
  • FIG. 12 is a cross-sectional view of a portion of a wall of the filter bag containing space 710 with the filter bag 720 loaded according to a fifth embodiment of the vacuuming apparatus according to the present invention.
  • the surface of the wall of the filter bag accommodating space 710 is smooth.
  • the surface of the filter bag 720 is profiled by standing folds, so that most of the surface of the filter bag remains at a distance from the surface of the filter bag receiving space. Also in this embodiment, the effective surface area of the filter material can be increased, which is also a highly efficient combination of vacuum cleaner and filter bag.

Claims (11)

  1. Dispositif pour aspirer des poussières à l'aide d'un aspirateur et d'un sac filtrant (230, 620, 720), dans lequel
    le sac filtrant (230, 620, 720) est réalisé sous forme de sac plat, de sac filtrant en un matériau non tissé et en tant que sac filtrant à usage unique,
    l'aspirateur présente un logement d'accueil de sac filtrant (210, 610, 710) à parois rigides, le logement d'accueil de sac filtrant (210, 610, 710) comportant une ouverture, qui peut être fermée par un volet basculant et présente une surface d'ouverture prédéterminée à travers laquelle le sac filtrant (230, 620, 720) peut être inséré dans le logement d'accueil de sac filtrant (210, 610, 710),
    le rapport de la surface d'un rectangle correspondant à la surface d'ouverture, et de la surface du sac filtrant (230, 620, 720) étant supérieur à 1,0 ;
    caractérisé en ce que
    le rapport de la surface du logement d'accueil de sac filtrant (210, 610, 710) et de la surface du sac filtrant (230, 620, 720) est supérieur à 0,90, de préférence supérieur à 0,95, et de manière particulièrement préférée supérieur à 1,0.
  2. Dispositif selon l'une des revendications précédentes, dans lequel le logement d'accueil de sac filtrant (210, 610, 710) est formé sensiblement par deux surfaces courbées (400a, 400b, 500a, 500b).
  3. Dispositif selon l'une des revendications précédentes, dans lequel le logement d'accueil de sac filtrant (210, 610, 710) est formé de deux surfaces courbées (400a, 400b, 500a, 500b) et d'une surface latérale, la surface latérale reliant les deux surfaces courbées (400a, 400b, 500a, 500b) le long de la périphérie des surfaces courbées (400a, 400b, 500a, 500b).
  4. Dispositif selon l'une des revendications précédentes, dans lequel le sac plat présente une forme de losange.
  5. Dispositif selon la revendication 4, dans lequel la forme de losange présente deux angles mutuellement opposés dans une plage de 100° à 120°.
  6. Dispositif selon l'une des revendications précédentes, dans lequel l'aspirateur est un aspirateur traineau ou un aspirateur balai.
  7. Dispositif selon l'une des revendications précédentes, dans lequel la surface du logement d'accueil de sac filtrant (210, 610, 710) comporte des nervures (611) et/ou des tronçons en forme de nervure et/ou des étriers, et le sac filtrant (230, 620, 720) est constitué d'un matériau filtrant avec une surface plissée, la hauteur de nervures (611) et/ou des tronçons en forme de nervure et/ou des étriers étant supérieure à la hauteur de pli maximale de la surface plissée.
  8. Dispositif selon l'une des revendications 1 à 6, dans lequel la surface du logement d'accueil de sac filtrant (210, 610, 710) est sensiblement plate et la surface du sac filtrant (230, 620, 720) est profilée de manière telle que pour un sac filtrant (230, 620, 720) placé dans l'aspirateur, la plus grande partie de la surface du sac filtrant (230, 620, 720) reste située à distance de la surface du logement d'accueil de sac filtrant (210, 610, 710).
  9. Dispositif selon la revendication 8, dans lequel le profilage du sac filtrant (230, 620, 720) présente des plis (621).
  10. Dispositif selon l'une des revendications 1 à 6, dans lequel au-devant de la paroi du logement d'accueil de sac filtrant (210, 610, 710), il est prévu une paroi perforée, à une distance d'espacement prédéterminée de la paroi.
  11. Dispositif selon la revendication 10 en combinaison avec l'une des revendications 3 ou 4, dans lequel au-devant de l'une au moins des surfaces courbées (400a, 400b, 500a, 500b), il est prévu une paroi perforée à une distance d'espacement prédéterminée.
EP11754303.3A 2010-09-08 2011-09-05 Dispositif d'aspiration comprenant un aspirateur et un sac filtrant Active EP2613682B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP11754303.3A EP2613682B1 (fr) 2010-09-08 2011-09-05 Dispositif d'aspiration comprenant un aspirateur et un sac filtrant

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
EP10009351.7A EP2428151B1 (fr) 2010-09-08 2010-09-08 Dispositif destiné à aspirer à l'aide d'un appareil d'aspiration et d'un sac filtrant
DE102010046463A DE102010046463A1 (de) 2010-09-08 2010-09-24 Vorrichtung zum Staubsaugen mit Staubsaugergerät und Filterbeutel
PCT/EP2011/004464 WO2012031734A2 (fr) 2010-09-08 2011-09-05 Dispositif d'aspiration comprenant un aspirateur et un sac filtrant
EP11754303.3A EP2613682B1 (fr) 2010-09-08 2011-09-05 Dispositif d'aspiration comprenant un aspirateur et un sac filtrant

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EP2613682A2 EP2613682A2 (fr) 2013-07-17
EP2613682B1 true EP2613682B1 (fr) 2016-08-31

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EP10009351.7A Active EP2428151B1 (fr) 2010-09-08 2010-09-08 Dispositif destiné à aspirer à l'aide d'un appareil d'aspiration et d'un sac filtrant
EP11754303.3A Active EP2613682B1 (fr) 2010-09-08 2011-09-05 Dispositif d'aspiration comprenant un aspirateur et un sac filtrant

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EP10009351.7A Active EP2428151B1 (fr) 2010-09-08 2010-09-08 Dispositif destiné à aspirer à l'aide d'un appareil d'aspiration et d'un sac filtrant

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US (1) US9554681B2 (fr)
EP (2) EP2428151B1 (fr)
JP (2) JP2013539397A (fr)
CN (1) CN103188977B (fr)
AU (1) AU2011300869B2 (fr)
DE (1) DE102010046463A1 (fr)
DK (2) DK2428151T3 (fr)
ES (2) ES2604637T3 (fr)
PL (2) PL2428151T3 (fr)
RU (1) RU2578989C2 (fr)
WO (1) WO2012031734A2 (fr)

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Publication number Publication date
EP2428151B1 (fr) 2016-11-09
EP2428151A1 (fr) 2012-03-14
EP2613682A2 (fr) 2013-07-17
RU2578989C2 (ru) 2016-03-27
DK2428151T3 (en) 2017-02-13
CN103188977B (zh) 2017-08-25
JP2013539397A (ja) 2013-10-24
ES2592941T3 (es) 2016-12-02
ES2604637T3 (es) 2017-03-08
JP2015144847A (ja) 2015-08-13
US20130198994A1 (en) 2013-08-08
US9554681B2 (en) 2017-01-31
PL2613682T3 (pl) 2017-02-28
AU2011300869A1 (en) 2013-03-21
AU2011300869B2 (en) 2015-09-24
WO2012031734A3 (fr) 2012-07-26
DK2613682T3 (en) 2016-12-12
PL2428151T3 (pl) 2017-05-31
DE102010046463A1 (de) 2012-03-08
CN103188977A (zh) 2013-07-03
WO2012031734A2 (fr) 2012-03-15
RU2013109769A (ru) 2014-10-20

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