EP3207828B1 - Commande de meuble - Google Patents

Commande de meuble Download PDF

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Publication number
EP3207828B1
EP3207828B1 EP17156511.2A EP17156511A EP3207828B1 EP 3207828 B1 EP3207828 B1 EP 3207828B1 EP 17156511 A EP17156511 A EP 17156511A EP 3207828 B1 EP3207828 B1 EP 3207828B1
Authority
EP
European Patent Office
Prior art keywords
section
drive
toothing
output element
slider
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
EP17156511.2A
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German (de)
English (en)
Other versions
EP3207828A1 (fr
Inventor
Sascha Koltzenburg
Sven Müller
Christian Müller
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.)
Dewertokin GmbH
Original Assignee
Dewertokin GmbH
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.)
Filing date
Publication date
Priority claimed from DE202016100782.8U external-priority patent/DE202016100782U1/de
Priority claimed from DE202016100783.6U external-priority patent/DE202016100783U1/de
Application filed by Dewertokin GmbH filed Critical Dewertokin GmbH
Publication of EP3207828A1 publication Critical patent/EP3207828A1/fr
Application granted granted Critical
Publication of EP3207828B1 publication Critical patent/EP3207828B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C20/00Head -, foot -, or like rests for beds, sofas or the like
    • A47C20/04Head -, foot -, or like rests for beds, sofas or the like with adjustable inclination
    • A47C20/041Head -, foot -, or like rests for beds, sofas or the like with adjustable inclination by electric motors

Definitions

  • the invention relates to a drive for adjusting mutually movable parts of furniture, in particular of armchairs, according to the preamble of claim 1.
  • Generic drives are used for adjusting movable furniture parts to each other.
  • the furniture which have these mutually movable parts, it may be, for example, sitting or lying furniture, for example, beds, armchairs, sofas or slatted frames.
  • the drives are used to adjust the reclining position of a bed or the relative position of chair seat and chair back to each other.
  • they are also used to adjust the angle of inclination of a support surface in desks or tables.
  • generic drives usually have a housing in which a slide and a driven by an electric motor spindle are arranged.
  • the slider is connected to the spindle so that it can be linearly displaced over the spindle in a longitudinal direction.
  • the spindle in turn is driven by an electric motor.
  • the electric motor drives a spindle nut, wherein the spindle is rotatably connected to the slider, so that by a rotation of the spindle nut relative to the spindle, a linear displacement of the slider is effected.
  • the electric motor drives the spindle to rotate, wherein on the slide a spindle nut is provided, which is rotationally fixed to the slider, so that a linear displacement of the slider is effected by a rotation of the spindle nut relative to the spindle .
  • generic drives on a housing in which the slide, the spindle and the electric motor are arranged.
  • generic drives have an output element which is likewise arranged in the housing, that is to say at least in sections in the housing.
  • the arrangement comprising the slide, the spindle and the output element in the housing is set so that the components of the arrangement assume mutually defined positions.
  • the slide and the driven element are arranged and formed relative to each other, that via a linear displacement of the slider in the longitudinal direction, a rotation of the driven element is effected about a rotation axis, wherein the rotation axis is usually perpendicular to the longitudinal direction in generic drives.
  • the slide and the driven element are connected to each other via an operative connection.
  • the output element is designed as a lever which has a first lever arm, which rests against an end face of the slider, and a second lever arm, which is connected to a furniture part to be moved.
  • the output element is rotatably mounted about a rotation axis, so that a movement of the slider causes a corresponding movement of the first lever arm in the longitudinal direction, whereby due to the rotatable mounting of the output element of the second lever arm is pivoted about the axis of rotation.
  • Generic drives allow relative movement of furniture parts movable to one another, in particular one Angular adjustment of such movable furniture parts.
  • a generic drive is in the DE 202007005130 U1 disclosed.
  • the operative connection which connects the slide with the output element, an interlocking toothing between the slide and the driven element, wherein the driven element extends with a driven portion in a transverse direction above the meshing teeth, and wherein the intermeshing teeth on a in the Transverse direction lower end portion of the slider is provided.
  • the present invention has for its object to provide a novel drive for adjusting mutually movable parts of furniture.
  • the drive according to the invention comprises a housing in which an arrangement is arranged, which guides a linearly displaceable in a longitudinal direction Slider and connected to the slider via an operative connection output member comprises.
  • the arrangement is designed to effect a rotation of the output element about an axis of rotation during a linear displacement of the slider in the longitudinal direction.
  • the housing can have a guide rail running linearly in the longitudinal direction, in which the slider is guided.
  • the drive according to the invention may comprise, for example, an electric motor and a spindle, the spindle extending in the longitudinal direction and with the slider connected to move the slider linearly along the longitudinal direction.
  • the operative connection comprises an interlocking toothing between the slide and the driven element.
  • the driven element extends with a driven portion in a transverse direction above the meshing toothing, wherein the meshing toothing is provided at a transversely lower end portion of the slider.
  • the transverse direction is in particular perpendicular to the axis of rotation and / or perpendicular to the longitudinal direction.
  • the output section may be designed for coupling to a transmission shaft with which a rotation of the output element can be transmitted to a movable furniture part. In any case, the output element extends with respect to the transverse direction in sections above the meshing teeth.
  • the intermeshing toothing is provided at a lower end portion of the slider with respect to this transverse direction, that is, at a portion of the slider along the transverse direction extending from the lower end of the slider in the transverse direction and at most half, in particular at most one Third, in particular at most a quarter of the maximum extension of the slider in the transverse direction extends.
  • the slider can be formed in one piece or in several parts.
  • the slider may have a drive portion connected to the spindle for ensuring the drivability of the slider by the spindle, that is, the displaceability of the slider in the longitudinal direction by the spindle, wherein the slider has a toothed portion, which is for providing the intermeshing teeth is formed with the output element.
  • Gear section and drive section can be arranged consecutively in the longitudinal direction and, for example, each be made separately and then fixed to each other positionally fixed for the realization of the slide.
  • the interlocking interlocking between Slider and driven element can be ensured for example by the fact that the output element has at least one projection which engages in at least one recess of the slider.
  • the teeth can be ensured by the fact that the slider has at least one projection which engages in at least one recess of the output element.
  • the output member may be formed in the manner of a gear, wherein the slider has a toothed portion which is formed in the manner of a rack.
  • the drive according to the invention has various advantages. On the one hand, it is ensured by the interlocking toothing between slide and output element that the operative connection between slide and output element is bidirectional. Both in positive and negative movement of the slider along the longitudinal direction thus a respective force transmission from the slider to the output element is made possible, so that a relative movement of two furniture parts in a positive and a negative direction are respectively performed under force load by the drive according to the invention can. In addition, the most compact design of the drive according to the invention is ensured by the interlocking teeth.
  • a plurality of first gear elements are arranged on the output element, wherein at the lower end portion of the slider a plurality of second gear elements are arranged, which are spaced apart in the longitudinal direction.
  • the first gear elements are spaced apart in the longitudinal direction.
  • at least one of the first toothed elements engages at least one of the second toothed elements in order to provide the operative connection.
  • the first gear elements and the second gear elements may be formed as an array with mutually corresponding projections and recesses, which engage for providing the intermeshing toothing.
  • the first gear elements may each be formed as a projection and the second gear elements each as a recess.
  • first gear elements may each be formed as a recess and the second gear elements each as a projection.
  • the operative connection and thus the interlocking toothing between slide and driven element is always provided by the interaction of at least one first toothed element with at least one second toothed element.
  • the first gear elements are arranged in a circular arc-shaped arrangement.
  • a reliable operative connection between the slide and the output element can be ensured over a wide position range of the slide along the longitudinal direction and over a wide angular position range of the output element about the axis of rotation.
  • the axis of rotation lies in the center of the circular arc of the circular arc-shaped arrangement.
  • the second gear elements are arranged in a linear arrangement, in particular in a linear arrangement along the longitudinal direction.
  • the output element has a running around a pivot center arcuate portion with radially directed projections and gaps between these projections for the design of the first gear elements, said arrangement may be formed in the manner of a gear segment.
  • longitudinally arranged on the slider and each extending transversely to the longitudinal extent of the second toothing elements may be provided, wherein first and second toothing elements are arranged and arranged to provide an operative connection between the slide and driven element, to mesh with each other.
  • the slider may be arranged so that it extends at a distance from the pivot center of the output element.
  • the slider has a drive section, wherein along the direction of the axis of rotation laterally on the drive section, the second toothed elements are arranged.
  • the second gear elements are thus arranged at a side end with respect to the direction of the rotation axis of the drive section.
  • the drive section is arranged in the longitudinal direction in alignment with the spindle.
  • the second gear elements are arranged offset with respect to the direction of the axis of rotation to the spindle and arranged offset with respect to the longitudinal direction of the spindle.
  • the second gear elements are designed as recesses provided laterally on the drive section.
  • the second gear elements are formed as rod-like elements which project laterally from the drive section.
  • the rod-like elements have a rounded, in particular elliptical, in particular circular cross-section.
  • first gear elements are particularly preferably designed as gear teeth, which have a belly.
  • a first group of second gear elements is arranged on a first side of the drive section of the slider, and a second group of second gear elements is arranged on a second side of the drive section.
  • “lateral” or “side” refers to a side with respect to the direction of the axis of rotation.
  • the output element has a first toothed section with a first group of the first toothed elements and a second toothed section with a second group of the first toothed elements.
  • the drive section is arranged between the two gear sections of the output element, wherein the first group of the first gear elements cooperates with the first group of the second gear elements, and wherein the second group of the first gear elements cooperates with the second group of second gear elements.
  • the first group of the first gear elements cooperates exclusively with the first group of the second gear elements and the second group of the first gear elements exclusively with the second group of second gear elements.
  • the drive portion of the slider is arranged with respect to the direction of the axis of rotation between the toothed portions, wherein the drive portion is arranged in one embodiment in the longitudinal direction offset from the toothed portions.
  • the slider is adapted to be driven via its drive portion, that is to be displaced in the longitudinal direction, for example by a spindle is coupled to the drive portion of the slider.
  • the slider may have in its drive portion a threaded bore corresponding to a spindle in a conventional manner to allow displacement of the slider along the longitudinal direction via the spindle.
  • the two gear portions of the output member are formed as a portion of a gear or as a gear, wherein the drive portion of the slider is disposed between the gear portions.
  • the gear portions overlap with the drive portion in the transverse direction to provide guidance of the drive portion.
  • the toothed sections of the output element thus extend over a section in the transverse direction away laterally next to the drive section of the slide.
  • an overlap of the drive section with the toothing sections along the longitudinal direction may be particularly preferably provided.
  • the slider has a transfer section, which is designed in the manner of a perforated rail is.
  • the output element has a corresponding transmission section, which is designed in the manner of a gear. Due to the design of the transfer section of the slide as a perforated rail can be provided in a particularly simple and cost-effective manner, a stable operative connection between the output element and slide.
  • the slider has a transmitting portion and a driving portion arranged successively in the longitudinal direction.
  • the slide is made in several parts, wherein the transfer section is formed as one of the several parts and made separately from the other parts.
  • the transmission portion of the slide is formed in the manner of a U-profile, wherein the arrangement comprising slide and driven element is formed so that in the U-profile of the transmission section of the corresponding transmission portion of the driven element is guided.
  • the output element has a passage extending along the axis of rotation, which has a cross section which is suitable for receiving a transmission shaft with a corresponding cross section.
  • the bushing is provided in the output section of the output element.
  • the drive according to the invention may comprise the transmission shaft arranged in the feedthrough.
  • the cross-section of the bushing and the corresponding cross-section of the transmission shaft are formed relative to one another such that a fixation of the transmission shaft in the bushing via the mutually corresponding cross-sections is provided with respect to a rotation about the rotation axis.
  • a rotation of the driven element are transmitted to a movable furniture part by the transmission shaft is connected to the furniture part.
  • the transmission shaft may be formed as a rotation axis of the furniture part.
  • the cross-section of the bushing may be formed, for example, at least in sections as a polygon, in particular as a square, rectangle or trapezoid.
  • the transmission shaft is formed in the manner of a tube with a round cross section, on which a driver is fixed in a fixed position.
  • the transmission shaft is designed in the manner of a rod with a round cross section, on which a driver is fixed in a fixed position.
  • a rod made of solid material can be made particularly stable.
  • the driver may for example be welded to the pipe or rod, riveted or screwed.
  • the cross section of the passage corresponds to the common cross section of the pipe or rod and driver.
  • the corresponding cross section of the transmission shaft is thus formed by the arrangement of the tube and the carrier fixed thereto or formed by the arrangement of the rod and the carrier fixed thereto.
  • the transmission shaft can act particularly advantageous as a rotation axis of a furniture part and in a particularly simple manner an anti-rotation be provided between the output element and transmission shaft.
  • the bushing has an opening at its transversely upper end for ensuring insertion of the transmission shaft into the passageway perpendicular to the axis of rotation, in particular along the transverse direction.
  • This embodiment enables a particularly simple mounting of the drive according to the invention on a piece of furniture in which the transmission shaft acts as a rotation axis of a furniture part.
  • the drive can be pushed in a simple manner perpendicular to the axis of rotation on the transmission shaft by the transmission shaft slides in the opening of the output element and thus in the implementation of the output element.
  • driving element in a passage along the axis of rotation in the implementation extending perpendicular to the rotational direction driving element is arranged, wherein the driving element is arranged relative to the opening, that the driving element during insertion of the transmission shaft into the passage with a corresponding driving element of the transmission shaft into engagement can be brought.
  • the driving element of the output element may be formed as provided in the implementation pin which is disposed on the opposite side of the opening of the passage, wherein the corresponding driving element of the transmission shaft is formed as a hole in the transmission shaft, in which the pin during the insertion of the transmission shaft is insertable into the implementation.
  • the driving element of the output element may be formed as provided on the opposite side of the opening of the passage hole, wherein the corresponding driving element of the transmission shaft is formed as a pin, for example as a pin welded or bolted to the transmission shaft.
  • At least one circular arc-shaped groove is arranged laterally on the output element, which groove engages in a circular arc-shaped projection which is provided on the housing.
  • at least one circular arc-shaped projection is provided laterally on the driven element, which engages in a circular arc-shaped groove which is provided on the housing.
  • the axis of rotation is arranged in the center of the circular arcs which describe the groove and projection.
  • the invention further relates to a piece of furniture, in particular a sitting or lying furniture, in particular a chair comprising at least two mutually movable furniture parts and a drive according to the invention.
  • the housing of the drive is fixedly connected to a first furniture part of the furniture and the output element of the drive with a second furniture part of the furniture connected in a fixed position, with the drive relative movement of the two furniture parts is feasible to each other.
  • the housing of the drive always remains fixed in position, while the driven element with the second furniture part rotates relative to the first furniture part and the housing.
  • the output element and the second furniture part always maintain their position, while the housing and the first furniture part relative to the fixed second furniture part or output element can be adjusted by the drive.
  • change in an adjustment of the two mutually movable furniture parts both furniture parts and thus housing and output element in their position.
  • the invention further relates to a transmission shaft, which may also be referred to as a pivot shaft, in particular for one or the inventive development of an electromotive furniture drive as described above, with a radially projecting cam lever which is fixedly and rigidly secured to the pivot shaft and by means of an output element an adjustment is actuated.
  • the pivot shaft can in principle have any cross-section.
  • the driving lever can be generally designed as radially to the pivot shaft projecting driver element, which is fixedly and rigidly fixed to the pivot shaft and which is actuated by means of an output element of an adjustment.
  • radially extending to the pivot shaft driver elements such as bolts, screws, pins, projections, etc., or even radially projecting from the pivot shaft elements such as the pivot shaft encompassing holding part as a driving lever in the context of the invention for generating a positive connection between the pivot shaft and driven element are considered.
  • This positive connection can be designed in such a way that the driver lever engages radially in a corresponding recess of the output element.
  • the driving lever may be formed as a pin or the like, which engages in the normal operating state in the recess of the output element.
  • the pin can have positive locking means, which are designed, for example, in the form of projections which at least counteract or inhibit a sliding out of the pin out of the recess or prevent it altogether.
  • Swivel shafts which are intended for electromotive furniture drives, often consist of square shafts or round tubes.
  • the problem is the attachment of the driving lever, which are in operative connection with an output member of the adjustment, for example, a forward and réellefahrbaren slide or a trained as described above output member which is in operative connection with a linearly displaceably guided in a longitudinal slide and with this an arrangement forms, which is arranged in the housing of the drive.
  • an output member of the adjustment for example, a forward and réellefahrbaren slide or a trained as described above output member which is in operative connection with a linearly displaceably guided in a longitudinal slide and with this an arrangement forms, which is arranged in the housing of the drive.
  • this is designed as a round profile, wherein the driving lever is positively connected to an attachment point of the pivot shaft with this.
  • a "local form fit" is created on a hollow shaft which is round in cross section, such a local form fit being created by means of a positive connection between pivot shaft and driving lever.
  • the local form fit can be achieved by various methods.
  • an additional auxiliary element is provided for producing the positive connection.
  • This can be designed such that on the pivot shaft, a bolt is welded in an approximately radial arrangement.
  • an element arranged in a radial arrangement with respect to the pivot shaft such as a bolt or pin element, which can be rigidly and firmly connected to the pivot shaft in any manner, represents the driving lever for the rigid connection of the pivot shaft and driven element.
  • the driving lever may have a positive connection to the output element.
  • the bolt may be provided with an external toothing. Such a bolt then expediently engages positively in a pocket of the driving lever, so that a positive connection is created.
  • the round profile can have at least one transverse hole, wherein a screw or a bolt passes through the transverse hole and is connected to the driving lever.
  • the round profile is designed as a round tube, this can be combined with at least one reinforcing element for stiffening the transverse hole, which is arranged within the round tube.
  • Another variant for generating a local form-fit is to locally transform the pivot shaft formed as a round tube, thereby increasing the stability of the connection. This measure can also be combined with an additional auxiliary element.
  • transverse hole is to be made in the deformed area of the round tube, then this can be provided with inwardly curved edges, wherein these curved edges are preferably provided at both ends of the transverse hole.
  • a bolt can be welded.
  • the round tube may be flattened locally in the region of the attachment point of the driving lever. It can be compressed, for example, oval.
  • the flattened area may then be provided with the aforementioned transverse hole to secure an additional auxiliary member therein.
  • a screw or a bolt can be inserted through the transverse hole.
  • the screw or the bolt can be screwed or welded into the transverse hole.
  • a sleeve may be welded into the transverse hole through which the additional auxiliary element engages.
  • an insert can be inserted into the round tube in the region of its attachment point.
  • a round tube piece can be provided, which fits positively into the circular shaft designed as a pivot shaft, wherein the round tube is pressed together with the pipe section square.
  • the pipe piece serving as an insert can be made relatively thick-walled, thereby making the attachment point of the pivot shaft very stable.
  • the insert may also be designed as a square tube, wherein the pivot shaft formed as a round tube is pressed square around the square tube around.
  • the insert can also be a square block made of solid material, the round tube is then pressed square around the square block around.
  • a transverse hole may be drilled in the region of the fastening point through the round tube and the inserted insert.
  • FIG. 1 For example, this encompassing may comprise a polygon-shaped pipe section, which surrounds it in full circumference over a predetermined longitudinal section of the pivot shaft.
  • a pipe section holding part can be welded to the outer circumferential surface of the shaft, wherein the holding part itself represents the driving lever.
  • it may also be provided to form on the holding part a radially outwardly projecting projection to the pivot shaft, for example by welding a sleeve or a bolt to the holding part for the design of the driving lever.
  • the holding part may also be provided to form the holding part as a round pipe section, which surrounds the pivot shaft circumferentially. It can be provided to provide the holding part on its lateral surface with at least one recess to weld pivot shaft and holding part not only on the end faces of the holding part to the pivot shaft, but also between these two end faces in the region of a radially and partially circumferential recess in the holding part.
  • the round tube can also be penetrated for attachment of the driving lever and finally both last-mentioned fastening methods can be combined with each other become.
  • Fig. 1 is a cross section perpendicular to the axis of rotation of an embodiment of a drive 1 according to the invention shown schematically.
  • the drive 1 according to the invention comprises a housing 8, in which a spindle 2, a spindle nut 3, a motor drive 4, a slide 5 and an output element 6 are arranged.
  • the spindle nut 3 is driven by a motor drive 4 of an electric motor.
  • the spindle 2 is rotatably connected to the slider 5.
  • the spindle 2 and thus the slider 5 changes the position along the longitudinal direction X.
  • the output element 6 is designed in the manner of a toothed wheel, which has teeth 61 as the first toothed elements.
  • the slider 5 has as second gear elements rod-like elements 51, which with respect to the direction along the axis of rotation laterally on a drive portion of the Slider 5 are arranged, which is firmly connected to the spindle 2.
  • an active connection between the driven element 6 and the slider 5 is provided by the interlocking toothing of teeth 61 of the output element 6 with the rod-like elements 51 of the slider 5.
  • the driven element 6 has a passage 62 which has a square cross-section.
  • a transmission shaft 7 with a corresponding, in particular square cross-section or round cross-section with provided thereon drivers are introduced so that the transmission shaft is rotatably connected to the output member 6.
  • Fig. 2 an arrangement comprising output element 6 and slide 5 of an embodiment of a drive 1 according to the invention is shown schematically.
  • the driven element 6 has two toothed sections.
  • a first group of teeth 61 is provided on a first toothed section, and a second group of teeth 61 is provided on a second toothed section.
  • the slider 5 has a drive section 53, on one side of which a first group of rod-like elements 51 is provided with respect to a direction along the axis of rotation, and on the second side thereof with respect to a direction along the axis of rotation a second group of rod-like elements 51 is provided.
  • the rod-like elements 51 are each formed like a cylinder and have a circular cross-section.
  • the teeth 61 each have a belly.
  • the driving portion 53 of the slider 5 with respect to a direction along the rotational axis between the two toothed portions of the driven element 6, wherein the toothed portions of the driven element 6 with the slider 5 in sections along the transverse direction Y and along the longitudinal direction X overlap.
  • a drive portion 53 to which a spindle 2 can be arranged to drive the slider 5 and by providing an interlocking toothing on both sides of the drive portion 53 ensures a particularly uniform force transmission between the slide 5 and driven element 6, so that an oblique loading of slide 5 or driven element 6 is avoided if possible.
  • a threaded bore provided, into which a spindle 2 can engage with a corresponding external thread. Accordingly, a displacement of the slider 5 along the longitudinal direction can be effected via a rotation of the spindle 2.
  • FIG. 3 an arrangement of a further embodiment of a drive 1 according to the invention is shown schematically.
  • the arrangement according to Fig. 3 differs from the arrangement according to Fig. 2 essentially in that the output element 6 in the embodiment according to Fig. 3 circular arc-shaped projections 63 which are provided with respect to a direction along the axis of rotation laterally on the driven element 6.
  • circular-arc-shaped projections 63 which engage in corresponding circular arc-shaped grooves of the housing 8 in a drive 1 according to the invention, a particularly good guidance of the output element 6 in the housing 8 is ensured.
  • Fig. 4 a section of the slider 5 of an embodiment of a drive 1 according to the invention is shown.
  • Fig. 4 the transfer section of the slider 5 is shown.
  • This transfer section is designed in the manner of a perforated rail, which is designed in the manner of a U-profile.
  • the U-profile has at its bottom openings 52, which are spaced apart in the longitudinal direction X.
  • the slider 5 according to Fig. 4 includes, the output element 6 is formed in the manner of a gear whose teeth engage to provide the operative connection between the slide 5 and output element 6 in the openings 52 of the slider 5.
  • Fig. 5 the output element 6 and the transmission shaft 7 of an embodiment of a drive 1 according to the invention are shown schematically.
  • the transmission shaft 7 is formed in the manner of a tube with a round cross section, on which a driver 71 is fixed in a fixed position.
  • the driver 71 is welded to the round tube.
  • the driven element 6 has a passage 62 which has a cross section perpendicular to the axis of rotation, which corresponds to the common cross section of the tube and driver 71.
  • the transmission shaft 7 may be particularly easily stored in a piece of furniture due to the circular cross-section of its tube, so that the transmission shaft 7 can act as a rotation axis of a furniture part.
  • a cross-section of the transmission shaft 7 is provided in a particularly simple manner via the carrier 71 welded to the tube of the transmission shaft 7, which can be fixed in a rotationally fixed manner to a feedthrough 62 which has a corresponding cross-section.
  • the insertion of the transmission shaft 7 into the output element 6 alone through the bushing 62 or sliding on is alone of the output element 6 on the transmission shaft 7 along the axis of rotation required.
  • FIG. 6 an arrangement of the output element 6 and the transmission shaft 7 of an embodiment of a drive 1 according to the invention is shown schematically.
  • the output member 6 has a passage 62 having an opening at its upper end in the transverse direction Y for ensuring insertion of the transmission shaft 7 into the passage 62 along the transverse direction Y.
  • the passage 62 further has a portion whose sides are parallel to each other and run parallel to the transverse direction Y. This allows a particularly simple insertion of the transmission shaft 7 in the bushing 62.
  • FIG. 5 illustrates a driver 71, wherein the driver 71 and the tube of the transmission shaft 7 together form a cross section corresponding to the cross section of the passage 62 of the output member 6 for ensuring a rotationally fixed fixation of the transmission shaft 7 relative to the output member.
  • Fig. 7 an arrangement comprising the output element 6 and the transmission shaft 7 of a drive 1 according to the invention is shown schematically. How to Fig. 6 explained also in the embodiment according to Fig. 7 the output element 6 a bushing 62 having an opening into which the transmission shaft 7 is inserted perpendicular to the axis of rotation. In contrast to the embodiment according to Fig. 6 is in the embodiment according to Fig. 7 at the side of the bushing 62, which is opposite to its opening along the transverse direction Y, a pin 72 is arranged. The pin 72 acts as a driving element of the output element 6, which extends perpendicular to the direction of the axis of rotation.
  • the transmission shaft 7 is formed as a tube with a round cross section and has a hole which is perpendicular is provided to the rotation axis in the transmission shaft 7 and corresponds to a pin 72 of the output element 6.
  • the pin 72 is arranged in the passage, in particular relative to the opening of the bushing 62, that the pin can be brought into engagement with the hole in the transmission shaft 7, while the transmission shaft 7 in the Implementation 62 is introduced.
  • this is designed as a round tube 101.
  • Fig. 8 is welded to the outer surface of the round tube 101, a bolt 102 which engages in a pocket 103 of a driving lever 104.
  • the driving lever 104 is actuated by means of a slider, not shown in the drawing of an adjusting drive.
  • the cam lever 104 When the cam lever 104 is operated, the pivot shaft is pivoted by a predetermined angle, respectively.
  • Fig. 9 the drawing is in place of the in Fig. 8 a toothed bolt 105 welded to the outer surface of the round tube 101 shown.
  • the outer toothing 106 serves for the positive connection with a driver not shown in detail in the drawing.
  • the round tube 101 is provided with a transverse hole 107.
  • a screw 108 is inserted, the threaded end 109 is screwed into a driving lever, not shown in the drawing, while the screw head 110 abuts against the opposite outer surface of the round tube 101.
  • a screw 108 may also be a bolt or a be provided other pin-shaped connecting element, which is connected to the respective driving lever.
  • Fig. 11 is a similar embodiment as in Fig. 10 shown. In this case, however, the inner sides of the round tube 101 are combined with reinforcing elements 110, through which the screw 108 or another pin-shaped fastening element engages.
  • FIGS. 12 and 13 is again a similar embodiment as in 10 and 11
  • the transverse hole 107 is provided on both sides with inwardly curved edges 112. These edges 112 provide additional stability.
  • a bolt 113 is inserted, which is welded from both sides into the transverse hole 107.
  • the inwardly directed edges 112 thereby assist the welding process, since they form an additional accumulation of material, in particular in the section according to FIG Fig. 13 can be seen.
  • the round tube 101 is locally flattened or oval compressed in the region of the fastening point 116 of the driving lever 104, and in the flattened or compressed region 114 is as well as in the Fig. 10 to 13 illustrated embodiments, a transverse hole 107 is provided, through which engages a screw, not shown in the drawing or a bolt.
  • the screw or the bolt can be screwed or welded into the transverse hole 107.
  • FIGS. 14 and 15 As can be seen, a sleeve 115 is inserted into the transverse hole 107 and welded in the transverse hole 107, whereby an additional reinforcement is achieved. As already described, a screw or a bolt is then guided through the sleeve 115 and connected to a driver lever (not illustrated in the drawing).
  • a further embodiment of a designed as a round tube 101 pivot shaft is shown, wherein in the region of the attachment point 116, the pivot shaft forming round tube 101 is pressed square. This geometric shape already creates an additional reinforcement effect.
  • an insert is inserted into the region of the fastening point 116 before it is pressed in a quadrangular manner, around which the fastening point is pressed around in a quadrangular manner.
  • the insert may be formed, for example, as a piece of pipe, which is positively inserted into the round tube 101.
  • the round tube 101 is then pressed together with the inserted pipe section square, so that the in Fig. 16 shown outer shape arises.
  • the round tube 101 is then in its mounting region 116 of a thick-walled four-edge unit, which forms a good fit for the attachment of a driving lever.
  • FIGS. 17 to 19 three further embodiments of an insert are shown.
  • the insert 117 is formed as a square tube, which is inserted into the round tube 101 and the mounting portion 116 is then pressed square shape around the square tube.
  • the insert may be formed as a solid square block 118 which is inserted prior to pressing the round tube 101. Thereafter, the pressing is done to the four-edge unit.
  • the square block 119 is provided with a transverse hole 120, which with a provided in the round tube, before or after the pressing to be mounted transverse hole flees. By passing through both parts transverse hole then a screw or a bolt can be inserted, which is connected to a driving lever.
  • the pressing can take place over the entire length of the insert.
  • the compression can also be done in sections, whereby the same positive effect is achieved.
  • FIGS. 20 and 21 show exemplary embodiments.
  • the round profile 101 is encompassed by a square holding tube 121, which is welded to the round profile.
  • the holding tube 121 is used as such as a driving lever, which has the pivot shaft or the round profile 101 radially outwardly extending portions which serve to provide a positive connection with the driven element, not shown.
  • FIG. 21 shows a further embodiment, wherein the holding tube 122 is formed as a round tube, which includes a teilumftician recess 123 to increase the weld, so that the holding part at both its end faces, as well as at the edge of this recess to the tube profile 101 is weldable.
  • a radially extending to the pivot shaft pin 124 is welded to the support tube 122 to provide a positive connection with the output elements of the furniture drive according to the invention, not shown.

Claims (14)

  1. Commande pour ajuster des parties mobiles l'une par rapport à l'autre de meubles, en particulier de fauteuils, la commande (1) comprenant un bâti (8) dans lequel est placé un arrangement comprenant une glissière (5) guidée en étant déplaçable de manière linéaire dans une direction longitudinale et un élément de sortie (6) relié à la glissière (5) par une liaison fonctionnelle, l'arrangement étant configuré pour provoquer une rotation de l'élément de sortie (6) autour d'un axe de rotation lors d'un déplacement linéaire de la glissière (5) dans la direction longitudinale, la liaison fonctionnelle comprenant une denture à engagement mutuel entre la glissière (5) et l'élément de sortie (6), l'élément de sortie (6) s'étendant avec une portion d'élément de sortie dans une direction transversale au-dessus de la denture à engagement mutuel et la denture à engagement mutuel étant prévue sur une portion d'extrémité inférieure de la glissière (5) dans la direction transversale, caractérisée en ce qu'au moins une rainure en forme d'arc de cercle est placée latéralement sur l'élément de sortie (6) pour garantir un guidage de l'élément de sortie dans le bâti (8) pendant la rotation, rainure qui s'engrène dans une saillie en forme d'arc de cercle qui est prévue sur le bâti (8) et/ou au moins une saillie en forme d'arc de cercle (63), qui s'engrène dans une rainure en forme d'arc de cercle qui est prévue sur le bâti (8), est placée latéralement sur l'élément de sortie (6).
  2. Commande selon la revendication 1, caractérisée en ce que plusieurs premiers éléments de denture sont placés sur l'élément de sortie (6) et que plusieurs seconds éléments de denture, qui sont espacés l'un de l'autre dans la direction longitudinale, sont placés sur la portion d'extrémité inférieure de la glissière (5), cependant qu'au moins l'un des premiers éléments de denture s'engrène dans au moins l'un des seconds éléments de denture pour fournir la liaison fonctionnelle.
  3. Commande selon la revendication 2, caractérisée en ce que les premiers éléments de denture sont placés dans un arrangement en forme d'arc de cercle et qu'en particulier les seconds éléments de denture sont placés dans un arrangement linéaire.
  4. Commande selon l'une des revendications 2 ou 3, caractérisée en ce que les premiers éléments de denture sont configurés comme des saillies et les seconds éléments de denture comme des évidements qui sont appropriés pour recevoir les saillies ou que les seconds éléments de denture sont configurés comme des saillies et les premiers éléments de denture comme des évidements qui sont appropriés pour recevoir les saillies.
  5. Commande selon l'une des revendications 2 à 4, caractérisée en ce que la glissière présente une portion d'entraînement (53), cependant que les seconds éléments de denture sont placés le long de la direction de l'axe de rotation latéralement sur la portion d'entraînement (53).
  6. Commande selon la revendication 5, caractérisée en ce que les seconds éléments de denture sont configurés comme des éléments de type barre (51) qui font saillie latéralement de la portion d'entraînement (53).
  7. Commande selon l'une des revendications 5 ou 6, caractérisée en ce qu'un premier groupe de seconds éléments de denture est placé sur un premier côté de la portion d'entraînement (53) et un second groupe de seconds éléments de denture est placé sur un second côté de la portion d'entraînement (53), l'élément de sortie (6) présentant une première portion de denture avec un premier groupe des premiers éléments de denture et une seconde portion de denture avec un second groupe des premiers éléments de denture, la portion d'entraînement (53) étant placée entre les deux portions de denture et le premier groupe des premiers éléments de denture coopérant avec le premier groupe des seconds éléments de denture et le second groupe des premiers éléments de denture coopérant avec le second groupe des seconds éléments de denture.
  8. Commande selon la revendication 7, caractérisée en ce que les portions de denture se chevauchent avec la portion d'entraînement (53) dans la direction transversale pour fournir un guidage de la portion d'entraînement (53).
  9. Commande selon l'une des revendications 2 à 4, caractérisée en ce que la glissière (5) présente une portion de transmission qui est configurée à la manière d'un rail perforé, l'élément de sortie (6) présentant une portion de transmission correspondante qui est configurée à la manière d'une roue dentée, cependant qu'en particulier la portion de transmission de la glissière (5) est formée à la manière d'un profil en U dans lequel la portion de transmission correspondante de l'élément de sortie (6) est guidée.
  10. Commande selon l'une des revendications précédentes, caractérisée en ce que l'élément de sortie (6) présente un passage traversant (62) qui s'étend le long de l'axe de rotation avec une section transversale pour loger un arbre de transmission (7) avec une section transversale correspondante.
  11. Commande selon la revendication 10, caractérisée en ce que la section transversale du passage traversant (62) présente une portion avec deux côtés parallèles l'un à l'autre et/ou est configurée au moins par sections comme un polygone, en particulier comme un carré ou un rectangulaire ou un trapèze.
  12. Commande selon la revendication 10 ou 11, caractérisée en ce que l'arbre de transmission (7) est configuré à la manière d'un tube ou d'une barre avec une section transversale ronde sur laquelle un entraîneur (71) est fixé en position fixe, en particulier est soudé, riveté ou vissé, la section transversale du passage traversant (62) correspondant avec la section transversale commune du tube et de l'entraîneur (71) ou de la barre et de l'entraîneur (71).
  13. Commande selon l'une des revendications 10 à 12, caractérisée en ce que le passage traversant (62) présente, à son extrémité supérieure dans la direction transversale, une ouverture pour garantir l'introduction de l'arbre de transmission (7) dans le passage traversant (62) perpendiculairement à l'axe de rotation, cependant qu'un élément d'entraînement, qui s'étend perpendiculairement au sens de rotation, est placé en particulier dans une portion le long de l'axe de rotation dans le passage traversant (62), l'élément d'entraînement étant placé par rapport à l'ouverture de telle manière qu'il peut venir en prise dans le passage traversant avec un élément d'entraînement correspondant de l'arbre de transmission pendant l'introduction de l'arbre de transmission dans le passage traversant.
  14. Meuble comprenant au moins deux parties de meuble mobiles l'une par rapport à l'autre ainsi qu'un entraînement selon l'une des revendications précédentes, caractérisé en ce que le bâti (8) de l'entraînement (1) est en position fixe avec une première partie de meuble et que l'élément de sortie (6) de l'entraînement (1) est relié en position fixe à une seconde partie de meuble, cependant qu'un mouvement relatif des deux parties de meuble l'une par rapport à l'autre peut être exécuté par l'entraînement (1).
EP17156511.2A 2016-02-16 2017-02-16 Commande de meuble Active EP3207828B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202016100782.8U DE202016100782U1 (de) 2016-02-16 2016-02-16 Möbelantrieb
DE202016100783.6U DE202016100783U1 (de) 2016-02-16 2016-02-16 Schwenkwelle, insbesondere für einen elektromotorischen Möbelantrieb

Publications (2)

Publication Number Publication Date
EP3207828A1 EP3207828A1 (fr) 2017-08-23
EP3207828B1 true EP3207828B1 (fr) 2018-09-26

Family

ID=58054064

Family Applications (1)

Application Number Title Priority Date Filing Date
EP17156511.2A Active EP3207828B1 (fr) 2016-02-16 2017-02-16 Commande de meuble

Country Status (2)

Country Link
EP (1) EP3207828B1 (fr)
DK (1) DK3207828T3 (fr)

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4397199A (en) * 1980-12-17 1983-08-09 Gebr. Eickhoff, Maschinenfabrik Und Eisengiesserei, M.B.H. Gear rack for a mining machine
DE10138025A1 (de) * 2001-08-08 2003-05-22 Cimosys Ltd Möbelantrieb zum Verstellen von Teilen eines Möbels relativ zueinander
DE20218712U1 (de) * 2002-12-02 2004-04-15 Cimosys Ag Elektromotorischer Möbelantrieb
DE10231290B3 (de) * 2002-07-10 2004-01-22 Cimosys Ag Elektromotorischer Möbelantrieb
DE202007005130U1 (de) * 2006-04-07 2007-08-23 Linak A/S Linearantrieb
US20100101408A1 (en) * 2008-10-29 2010-04-29 Shawn Keel Rotary actuator

Non-Patent Citations (1)

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

Also Published As

Publication number Publication date
DK3207828T3 (en) 2019-01-21
EP3207828A1 (fr) 2017-08-23

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