EP4119722B1 - Séchoir à linge - Google Patents

Séchoir à linge Download PDF

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Publication number
EP4119722B1
EP4119722B1 EP22182538.3A EP22182538A EP4119722B1 EP 4119722 B1 EP4119722 B1 EP 4119722B1 EP 22182538 A EP22182538 A EP 22182538A EP 4119722 B1 EP4119722 B1 EP 4119722B1
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EP
European Patent Office
Prior art keywords
lower shell
upper shell
shell
motor
retaining bracket
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
EP22182538.3A
Other languages
German (de)
English (en)
Other versions
EP4119722A3 (fr
EP4119722C0 (fr
EP4119722A2 (fr
Inventor
Rainer Drösler
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.)
Miele und Cie KG
Original Assignee
Miele und Cie KG
Priority date (The priority date 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 date listed.)
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Publication date
Application filed by Miele und Cie KG filed Critical Miele und Cie KG
Publication of EP4119722A2 publication Critical patent/EP4119722A2/fr
Publication of EP4119722A3 publication Critical patent/EP4119722A3/fr
Application granted granted Critical
Publication of EP4119722B1 publication Critical patent/EP4119722B1/fr
Publication of EP4119722C0 publication Critical patent/EP4119722C0/fr
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Anticipated expiration legal-status Critical

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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/02Domestic laundry dryers having dryer drums rotating about a horizontal axis
    • D06F58/04Details 
    • D06F58/08Driving arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/02Domestic laundry dryers having dryer drums rotating about a horizontal axis
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/20General details of domestic laundry dryers 
    • D06F58/206Heat pump arrangements

Definitions

  • the invention relates to a tumble dryer of the type mentioned in the preamble of claim 1.
  • Such tumble dryers are already known from the prior art in a variety of embodiments and include a dryer housing, a drum rotatably mounted in the dryer housing about a drum axis and a module arranged in the dryer housing and connected to the drum in a flow-conducting manner with a module housing in which a heat pump for heating and dehumidifying process air flowing through the drum and on which a motor with a drive axle for driving the drum and for driving a fan wheel that conveys the process air through the module and the drum are accommodated, the module housing having a lower shell and an upper shell and the Motor is mounted on the module housing with two end shields of the motor.
  • a tumble dryer with a housing and a rotatable laundry drum, the housing comprising a base module in which a heat pump and a motor for driving the rotatable drum are mounted.
  • the invention therefore faces the problem of improving a tumble dryer.
  • this problem is solved by a tumble dryer with the features of patent claim 1, which is characterized in that the motor is mounted by means of the two end shields between the lower shell and the upper shell, with corresponding designs on the lower shell and on the upper shell to the two end shields Bearing plate receptacles are formed.
  • the tumble dryer according to the invention can be designed as a household appliance or a commercial device, i.e. a tumble dryer for professional use.
  • the tumble dryer according to the invention can also be a combination device for washing and drying laundry, i.e. a so-called washer-dryer.
  • the advantage that can be achieved with the invention is, in particular, that a tumble dryer is improved. Due to the design of the tumble dryer according to the invention, namely the extensive integration of the end shield receptacles into the lower shell and the upper shell, a reduction in the number of components required is made possible. The effort involved in warehousing, logistics and assembly when producing the tumble dryer according to the invention is correspondingly reduced. Furthermore, this also shortens the tolerance chain, so that a more precise positioning of the motor is possible. This is particularly important for the function of the tumble dryer, since the motor is used, on the one hand, to drive the drum and, on the other hand, to drive the fan wheel to convey the process air.
  • the tumble dryer according to the invention can be freely selected within wide suitable limits in terms of type, functionality, material and dimensions. See, for example, the relevant statements in the introduction to the description.
  • the end shield receptacles are designed to directly hold the two end shields of the motor. In this way, the number of components in the tumble dryer according to the invention is further reduced. This is possible, for example, if the motor is designed as a permanent magnet excited motor.
  • embodiments of the tumble dryer according to the invention are also conceivable in which the end shield receptacles are designed to indirectly hold the two end shields of the motor. For example, in which an elastic element for acoustically decoupling the motor from the module housing is arranged between the respective end shield of the motor and the corresponding end shield receptacles of the module housing. This makes sense if the motor is designed, for example, as an asynchronous motor.
  • a further advantageous development of the tumble dryer according to the invention provides that the motor is mounted on the module housing outside of a process air channel which is essentially closed by the module housing except for a process air inlet and a process air outlet, with the bearing plate receptacles of the lower shell and the upper shell each being on a projection of the lower shell and the upper shell are formed.
  • the attachment of the motor to the module housing is decoupled from the design of the process air duct, so that the attachment of the motor is easier to implement in terms of design and production technology.
  • This also significantly reduces the volume enclosed by the module housing, so that this design of the module housing is accompanied by a lower use of material and therefore less weight.
  • a particularly advantageous development of the last-mentioned embodiment of the tumble dryer according to the invention provides that at least one of the projections of the upper shell is designed as a retaining bracket protruding from the upper shell, the half-shell of this projection being arranged on the retaining bracket, and the retaining bracket on the one hand, on the side facing the upper shell, a first screwing point for screwing the retaining bracket to a corresponding first screwing point on the lower shell and, on the other hand, on the side facing away from the upper shell, either a second screwing point for screwing the retaining bracket to a corresponding second screwing point on the lower shell or a locking hook for locking with one corresponding locking hook receptacle of the lower shell.
  • a particularly advantageous development of the tumble dryer according to the invention according to claim 5 provides that the first screwing point of the retaining bracket and the first screwing point of the lower shell correspond to one another and/or the second screwing point of the retaining bracket and the second screwing point of the lower shell or the locking hook of the retaining bracket and the locking hook receptacle Lower shell each have corresponding holding bracket positioning means.
  • the retaining bracket positioning means at the first or at the first and second screw points can be designed, for example, as screw cups and as screw domes corresponding to the screw cups.
  • the headband positioning means of the at least one latching hook and the latching hook receptacle assigned to it can be designed, for example, as a positioning projection and a positioning projection receptacle corresponding to the positioning projection.
  • the holding bracket has at least one stiffening rib, particularly preferably that the stiffening rib has a weakening on the side of the first screw point facing the upper shell, the weakening being designed in such a way that the holding bracket is at a screw connection can be positioned at the first screw point by means of the retaining bracket positioning means.
  • the retaining bracket is, on the one hand, largely stiffened and therefore designed to be more dimensionally stable.
  • the headband is designed to be so elastic at its first screwing point that the headband can be safely and correctly positioned using the headband positioning means.
  • Abrasion pocket is designed to accommodate abrasion, preferably that the abrasion pocket is opened towards a free environment.
  • abrasion in the area of the respective end shield receptacles which is unavoidable during operation of the tumble dryer, can fall from the actual storage area of the respective end shield receptacle into the abrasion pocket, so that the storage of the motor end shields in the end shield receptacles is not affected by the abrasion.
  • the preferred embodiment of this development also has the further advantage that the individual abrasion pocket can be dimensioned relatively small, since the abrasion can be released from the respective abrasion pocket into the free environment.
  • a further advantageous development of the tumble dryer according to the invention provides that the lower shell and the upper shell have module housing positioning means which correspond to one another for the proper alignment of the upper shell to the lower shell during the production of the module housing. This makes it much easier to properly align the upper shell with the lower shell when producing the module housing.
  • the assembly of the upper shell on the lower shell is correspondingly simplified.
  • the tumble dryer according to the invention provides that the lower shell and the upper shell are pivotally connected to one another on a side of the module housing opposite the motor by means of a hinge about a hinge axis, preferably that the hinge consists of a lower shell hinge part of the lower shell and an upper shell hinge part the upper shell is formed, particularly preferred that the upper shell hinge part is plug-connectable to the lower shell hinge part for the purpose of forming the hinge.
  • the assembly of the upper shell on the lower shell during the production of the module housing is further simplified and thus saves time and money. This applies particularly to the preferred and particularly preferred embodiment of this development.
  • the tumble dryer 2 is designed as a household appliance and comprises a dryer housing, which is rotatably mounted in the dryer housing about a drum axis Drum and a module 4 arranged in the dryer housing and connected to the drum in a flow-conducting manner with a module housing 6, in which a heat pump for heating and dehumidifying process air flowing through the drum and on which a motor 8 with a drive shaft 10 for driving the drum and for Drive of a fan wheel 12 conveying the process air through the module 4 and the drum.
  • the drum, the drum axis, the heat pump and the process air are in the 1a to 5 not shown.
  • the blower wheel 12 is only in the Fig. 4d shown.
  • the module housing 6 has a lower shell 14 and an upper shell 16 and the motor 8 is mounted on the module housing 6 with two end shields 18, 20 of the motor 8, the motor 8 being between the lower shell 14 and the upper shell by means of the two end shields 18, 20 16 is mounted, and bearing plate receptacles 22, 24, 26, 28 corresponding to the two end shields 18, 20 are formed on the lower shell 14 and on the upper shell 16.
  • the end shields 18, 20 of the motor 8 are, for example, in the Fig. 1c shown.
  • the end shield mounts 22, 24, 26, 28 are from the Fig. 1a and 1b visible.
  • the end shield receptacles 22, 24, 26, 28 are designed to directly hold the two end shields 18, 20 of the motor 8. There is therefore no elastic element for acoustically decoupling the module housing 6 from the motor 8 between the two end shields 18, 20 and the end shield receptacles 22, 24, 26, 28. This is not necessary with this type of motor 8.
  • the motor 8 is mounted on the module housing 6 outside of a process air channel which is essentially closed by the module housing 6 except for a process air inlet and a process air outlet, with the bearing plate receptacles 22, 24, 26, 28 of the lower shell 14 and the upper shell 16 each on one Projection of the lower shell 14 and the upper shell 16 are formed. See also this Fig. 1a and 1b .
  • the process air inlet is marked by an arrow 30 and the process air outlet is marked by an arrow 32.
  • the projections of the lower shell 14 and the upper shell 16 each have a half-shell to form the respective bearing plate receptacle 22, 24, 26, 28. Accordingly, the half-shells are designated with the same reference numbers as the end shield mounts.
  • the projection of the upper shell 16 facing away from the fan wheel is designed as a retaining bracket 34 protruding from the upper shell 16, the half-shell 26 of this projection being arranged on the retaining bracket 34, and the retaining bracket 34 having a first screw point on the side facing the upper shell 36 for screwing the retaining bracket 34 to a corresponding first screw point 38 of the lower shell 14 and, on the other hand, on the side facing away from the upper shell, a latching hook 40 for latching to a corresponding latching hook receptacle 42 of the lower shell 14.
  • the retaining bracket 34 on the side facing away from the upper shell has a second screwing point 44 instead of the locking hook 40 for screwing the retaining bracket 34 to a corresponding second screwing point 46 of the lower shell 14.
  • the fastening screws 48, 50 screwed into the first and second screw points 36, 38 and 44, 46 are also shown.
  • the basic shape with the locking hook 40 and the locking hook receptacle 42 that corresponds to the basic shape explained above Fig. 4c with only the fastening screw 48.
  • the first screwing point 36 of the holding bracket 34 and the first screwing point 38 of the lower shell 14 on the one hand and the locking hook 40 of the holding bracket 34 and the locking hook receptacle 42 of the lower shell 14 on the other hand each have holding bracket positioning means 52, 54 and 56, 58 that correspond to one another
  • the holding bracket positioning means 52, 54 are designed here as a screw cup 52 and a screw dome 54 corresponding to the screw cup 52.
  • the holding bracket positioning means 56, 58 are designed here as a positioning projection or groove 58 and a corresponding positioning groove or groove 56.
  • the retaining bracket positioning means designed as a tongue-and-groove fit these can be used, for example in the variant according to Fig. 5 , can be designed analogously to the headband positioning means 52, 54.
  • the holding bracket 34 also has two stiffening ribs 60, 62, the stiffening ribs 60, 62 each having a weakening 64 on the side of the first screw point 36 facing the upper shell, the weakenings 64 being designed in such a way that the holding bracket 34 is in place when a screw connection is produced the first screw point 36 can be positioned by means of the retaining bracket positioning means 52, 54 and 56, 58. Like from the Fig. 5 As can be seen, such a weakening was omitted in the relevant variant.
  • an abrasion pocket 66 for receiving abrasion was formed on the end shield receptacles 22, 24 of the lower shell 14 at a lowest point, the respective abrasion pocket 66 being opened towards a free environment. See the 3a and 3b .
  • module housing positioning means 68, 70 are designed analogously to the retaining bracket positioning means 52, 54, namely as a screw cup 68 and as a screw dome 70 corresponding to the screw cup 68 for producing a screw connection by means of a fastening screw, not shown. See the Fig. 2a and 2 B .
  • the lower shell 14 and the upper shell 16 are here on a side of the module housing 6 opposite the motor 8 by means of a hinge 72 pivotally connected to one another about a hinge axis, the hinge 72 being formed from a lower shell hinge part 74 of the lower shell 14 and an upper shell hinge part 76 of the upper shell 16 , namely in such a way that the upper shell hinge part 76 can be plugged into the lower shell hinge part 74 for the purpose of forming the hinge 72. See the Fig. 2a .
  • the module housing 6 according to the in the Fig. 2b illustrated variant of the module housing 6 is formed. With this variant no hinge is required. Instead, the upper shell 16 is in the image plane during the production of the module housing 6 Fig. 2b placed on the lower shell 14 from above.
  • the module housing positioning means 68, 70 in turn help to properly align the upper shell 16 with the lower shell 14.
  • the tumble dryer 2 is in an unassembled state. Accordingly, the lower shell 14 and the upper shell 16 of the module housing 6 are not yet connected to one another.
  • the module 4 is, among other things, assembled with the heat pump (not shown) and the motor 8 and mounted in the dryer housing of the tumble dryer 2, also not shown.
  • the entire heat pump module is pre-assembled as a single assembly, i.e. all relevant assemblies for driving and generating the process air are assembled and connected to each other accordingly.
  • the dryer housing is then assembled on the module or the module is inserted into a pre-assembled housing.
  • the heat pump is inserted into the lower shell 14 of the heat pump module 6.
  • the motor 8 with the two end shields 18, 20 is then placed on the end shield receptacles 22, 24 of the lower shell 14, which are designed as half-shells.
  • the upper shell 16 is then connected to the lower shell 14 on the hinge side by the upper shell 16 with the upper shell hinge part 76 is inserted into the lower shell hinge part 74 of the lower shell 14 for the purpose of forming the hinge 72.
  • the upper shell 16 is then pivoted about the hinge axis (not shown) of the hinge 72 in such a way that the upper shell 16 comes into engagement with the lower shell 14 on the motor side.
  • the module housing positioning means 68, 70 engage with one another.
  • the mutually assigned end shield receptacles 22, 24, 26, 28 of the upper shell 16 and the lower shell 14 come into engagement with the motor 8, namely with the end shields 18, 20 of the motor 8, in such a way that the motor 8 is engaged by means of the end shields 18, 20 and the end shield receptacles 22, 24, 26, 28 are pre-attached to the module housing 6.
  • the retaining bracket 34 comes into engagement with the screw dome 54 of the lower shell 14 at the first screw points 36, 38 with the screw cup 52 and, on the other hand, by means of the locking hook 40, it comes into engagement with the locking hook receptacle 42 of the lower shell 14.
  • the holding bracket 34 is aligned relative to the lower shell 14 on the one hand by means of the holding bracket positioning means 52, 54 designed as a screw cup and screw dome and on the other hand by means of the holding bracket positioning means 56, 58 designed as positioning projections.
  • a final positioning of the retaining bracket 34 to the lower shell 14 then takes place when the retaining bracket 34 is fastened to the lower shell 14 by means of the fastening screw 48.
  • the retaining bracket 34 can deform elastically within certain technical limits due to the weakenings 64 in the stiffening ribs 60, 62.
  • the retaining bracket 34 of the variant according to Fig. 5 In contrast to the basic form of the present exemplary embodiment, it does not have a locking hook that engages in a corresponding locking hook receptacle on the lower shell. Instead of the latching hook 40 and the latching hook receptacle 42 of the basic form explained, the holding bracket 34 and the lower shell 14 of this variant have second screw points 44, 46. Accordingly, the holding bracket 34 of the variant arrives according to Fig. 5 on the one hand, at the first screw points 36, 38 with the screw cup 52 in engagement with the screw dome 54 of the lower shell 14.
  • the retaining bracket of this variant with the lower shell at the second screw points with the screw cup 52 and the screw dome 54 analogously designed headband positioning means comes into engagement.
  • the holding bracket 34 is thus on the one hand by means of the holding bracket positioning means 52, 54 designed as a screw cup and screw dome and on the other hand, if available, by means of the holding bracket positioning means designed analogously to the lower shell 14 at the second screw points 44, 46, with a final positioning of the holding bracket 34 to the lower shell 14 then at the retaining bracket 34 is fastened to the lower shell 14 by means of the fastening screws 48 and 50.
  • the module 4 with the module housing 6 is completed in the manner explained above, both in the basic form and in the variants of the present exemplary embodiment.
  • the invention is not limited to the present exemplary embodiment and the variants explained.
  • the invention is not limited to the structural and manufacturing details of the exemplary embodiment.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)
  • Motor Or Generator Frames (AREA)

Claims (10)

  1. Sèche-linge (2), comprenant un boîtier de sèche-linge, un tambour monté de manière à pouvoir tourner autour d'un axe de tambour dans le boîtier de sèche-linge et un module (4) comportant un boîtier de module (6), disposé dans le boîtier de sèche-linge et relié d'une manière conductrice d'écoulement au tambour, dans lequel module est logée une pompe à chaleur permettant de chauffer et de déshumidifier un air de processus s'écoulant à travers le tambour et sur lequel module est logé un moteur (8) comportant un arbre d'entraînement (10) permettant d'entraîner le tambour et d'entraîner une roue de soufflante (12) transportant l'air de processus à travers le module (4) et le tambour, dans lequel le boîtier de module (6) présente une coque inférieure (14) et une coque supérieure (16) et le moteur (8) est monté sur le boîtier de module (6) avec deux flasques (18, 20) du moteur (8), dans lequel le moteur (8) est monté au moyen des deux flasques (18, 20), dans lequel des logements de flasque (22, 24) réalisés de manière à correspondre aux deux flasques (18, 20) sont réalisés sur la coque inférieure (14), caractérisé en ce que le moteur est monté entre la coque inférieure (14) et la coque supérieure (16) au moyen des deux flasques (18, 20), dans lequel des logements de flasque (26, 28) correspondant aux deux flasques (18, 20) et permettant de loger les flasques (18, 20) sont réalisés sur la coque supérieure (16).
  2. Sèche-linge (2) selon la revendication 1, caractérisé en ce que
    les logements de flasque (22, 24, 26, 28) sont réalisés pour le maintien direct des deux flasques (18, 20) du moteur (8).
  3. Sèche-linge (2) selon la revendication 1 ou 2, caractérisé en ce que le moteur (8) est monté sur le boîtier de module (6) à l'extérieur d'un conduit d'air de processus sensiblement fermé par le boîtier de module (6) jusqu'à une entrée d'air de processus (30) et une sortie d'air de processus (32), dans lequel les logements de flasque (22, 24, 26, 28) de la coque inférieure (14) et de la coque supérieure (16) sont respectivement réalisés sur une saillie de la coque inférieure (14) et de la coque supérieure (16).
  4. Sèche-linge (2) selon la revendication 3, caractérisé en ce que les saillies de la coque inférieure (14) et de la coque supérieure (16) présentent respectivement une demi-coque pour la formation du logement de flasque (22, 24, 26, 28) respectif.
  5. Sèche-linge (2) selon la revendication 4, caractérisé en ce qu'au moins l'une des saillies de la coque supérieure (16) est réalisée en tant qu'étrier de maintien (34) faisant saillie depuis la coque supérieure (16), dans lequel la demi-coque (26) de ladite saillie est disposée sur l'étrier de maintien (34), et dans lequel l'étrier de maintien (34) présente, d'une part sur le côté tourné vers la coque supérieure, un premier point de vissage (36) permettant de visser l'étrier de maintien (34) à un premier point de vissage (38) correspondant de la coque inférieure (14) et, d'autre part sur le côté opposé à la coque supérieure, soit un second point de vissage (44) permettant de visser l'étrier de maintien (34) à un second point de vissage (46) correspondant de la coque inférieure (14), soit un crochet d'encliquetage (40) permettant l'encliquetage avec un logement de crochet d'encliquetage (42) correspondant de la coque inférieure (14).
  6. Sèche-linge (2) selon la revendication 5, caractérisé en ce que le premier point de vissage (36) de l'étrier de maintien (34) et le premier point de vissage (38) de la coque inférieure (14) présentent des moyens de positionnement d'étrier de maintien (52, 54 ; 56, 58) correspondant les uns aux autres et/ou le second point de vissage (44) de l'étrier de maintien (34) et le second point de vissage (46) de la coque inférieure (14) ou les crochets d'encliquetage (40) de l'étrier de maintien (34) et le logement de crochet d'encliquetage (42) de la coque inférieure (14) présentent respectivement des moyens de positionnement d'étrier de maintien correspondant les uns aux autres.
  7. Sèche-linge (2) selon la revendication 5 ou 6, caractérisé en ce que l'étrier de maintien (34) présente au moins une nervure de rigidification (60, 62), de manière particulièrement préférée, en ce que la nervure de rigidification (60, 62) présente un affaiblissement (64) sur le côté tourné vers la coque supérieure du premier point de vissage (36), dans lequel l'affaiblissement (64) est réalisé de telle sorte que l'étrier de maintien (34) peut être positionné au niveau du premier point de vissage (36, 38) au moyen des moyens de positionnement d'étrier de maintien (52, 54, 56, 58) lors de la fabrication d'une liaison vissée.
  8. Sèche-linge (2) selon l'une des revendications 1 à 7,
    caractérisé en ce qu'une poche d'abrasion (66) permettant la réception d'abrasion est réalisée respectivement au niveau d'un point le plus bas sur les logements de flasque (22, 24) de la coque inférieure (14), de préférence, en ce que la poche d'abrasion (66) est ouverte en direction d'un environnement libre.
  9. Sèche-linge (2) selon l'une des revendications 1 à 8,
    caractérisé en ce que la coque inférieure (14) et la coque supérieure (16) présentent des moyens de positionnement de boîtier de module (68, 70) correspondant l'un à l'autre pour l'alignement correct de la coque supérieure (16) avec la coque inférieure (14) lors de la fabrication du boîtier de module (6).
  10. Sèche-linge (2) selon l'une des revendications 1 à 9,
    caractérisé en ce que la coque inférieure (14) et la coque supérieure (16) sont reliées l'une à l'autre au moyen d'une charnière (72) de manière à pouvoir pivoter autour d'un axe de charnière sur un côté du boîtier de module (6) opposé au moteur (8), de préférence, en ce que la charnière (72) est réalisée à partir d'une partie de charnière de coque inférieure (74) de la coque inférieure (14) et d'une partie de charnière de coque supérieure (76) de la coque supérieure (16), de manière particulièrement préférée, en ce que la partie de charnière de coque supérieure (76) peut être reliée par emboîtement à la partie de charnière de coque inférieure (74) dans le but de former la charnière (72).
EP22182538.3A 2021-07-15 2022-07-01 Séchoir à linge Active EP4119722B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102021118353.7A DE102021118353A1 (de) 2021-07-15 2021-07-15 Wäschetrockner

Publications (4)

Publication Number Publication Date
EP4119722A2 EP4119722A2 (fr) 2023-01-18
EP4119722A3 EP4119722A3 (fr) 2023-02-08
EP4119722B1 true EP4119722B1 (fr) 2023-12-20
EP4119722C0 EP4119722C0 (fr) 2023-12-20

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EP22182538.3A Active EP4119722B1 (fr) 2021-07-15 2022-07-01 Séchoir à linge

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EP (1) EP4119722B1 (fr)
DE (1) DE102021118353A1 (fr)

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DE102006002713A1 (de) 2005-03-18 2006-10-12 BSH Bosch und Siemens Hausgeräte GmbH Frontbaugruppe für eine Wäschetrockenmaschine
EP2990524B1 (fr) * 2014-08-29 2017-02-01 Electrolux Appliances Aktiebolag Sèche-linge à pompe à chaleur
DE102014218248A1 (de) 2014-09-11 2016-03-17 BSH Hausgeräte GmbH Motoranordnung in einem Wäschebehandlungsgerät
EP3029194B1 (fr) * 2014-12-05 2020-07-22 Electrolux Appliances Aktiebolag Séchoir à linge
DE102015103875B4 (de) 2015-03-17 2024-02-01 Miele & Cie. Kg Hausgerät, Halterungsmodul für ein Hausgerät, Verfahren zum Herstellen desselben und Verfahren zum Montieren eines Spannelements zum Spannen eines Riemens für eine Antriebseinheit eines Hausgeräts
DE102017103633A1 (de) * 2017-02-22 2018-04-05 Miele & Cie. Kg Wärmepumpe
CN111206400A (zh) * 2018-11-22 2020-05-29 宁波吉德电器有限公司 一种干衣机的电机装配结构及干衣机
DE102020102864A1 (de) 2020-02-05 2021-08-05 Miele & Cie. Kg Motorhaltevorrichtung für einen Motor eines Haushaltsgeräts

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EP4119722A3 (fr) 2023-02-08
EP4119722C0 (fr) 2023-12-20
EP4119722A2 (fr) 2023-01-18

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