EP2592964A2 - Dispositif support avec enrouleur de courroie - Google Patents

Dispositif support avec enrouleur de courroie

Info

Publication number
EP2592964A2
EP2592964A2 EP11731256.1A EP11731256A EP2592964A2 EP 2592964 A2 EP2592964 A2 EP 2592964A2 EP 11731256 A EP11731256 A EP 11731256A EP 2592964 A2 EP2592964 A2 EP 2592964A2
Authority
EP
European Patent Office
Prior art keywords
belt
winding shaft
housing
carrying
belt retractor
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.)
Granted
Application number
EP11731256.1A
Other languages
German (de)
English (en)
Other versions
EP2592964B1 (fr
Inventor
Mathias Hiebl
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.)
Unternehmensgruppe Hiebl GmbH
Original Assignee
Unternehmensgruppe Hiebl 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
Application filed by Unternehmensgruppe Hiebl GmbH filed Critical Unternehmensgruppe Hiebl GmbH
Publication of EP2592964A2 publication Critical patent/EP2592964A2/fr
Application granted granted Critical
Publication of EP2592964B1 publication Critical patent/EP2592964B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45FTRAVELLING OR CAMP EQUIPMENT: SACKS OR PACKS CARRIED ON THE BODY
    • A45F3/00Travelling or camp articles; Sacks or packs carried on the body
    • A45F3/14Carrying-straps; Pack-carrying harnesses
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C13/00Details; Accessories
    • A45C13/30Straps; Bands
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45FTRAVELLING OR CAMP EQUIPMENT: SACKS OR PACKS CARRIED ON THE BODY
    • A45F3/00Travelling or camp articles; Sacks or packs carried on the body
    • A45F3/14Carrying-straps; Pack-carrying harnesses
    • A45F2003/142Carrying-straps
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45FTRAVELLING OR CAMP EQUIPMENT: SACKS OR PACKS CARRIED ON THE BODY
    • A45F3/00Travelling or camp articles; Sacks or packs carried on the body
    • A45F3/02Sacks or packs carried on the body by means of one strap passing over the shoulder

Definitions

  • the invention relates to a carrying device with a belt retractor and a belt retractor for a carrying device.
  • WO 2009/022105 A1 describes an apparatus intended to assist a person to carry one or more bags. This is a
  • Extendable tape provided by a coil inside a
  • Housing body extends outwards so that outside the
  • Housing body is formed a loop, which is a person on the
  • PCT WO 96/39891 describes a case attached to a suitcase
  • GB 2 238 955 A describes a handle for use with portable
  • US 3,198,300 describes a carrying device with an extendible shoulder strap. Described is u.a. a handle that can be injection molded or made of metal. In the handle two rollers are housed, on each of which a belt can be rolled, the end of which can be connected to a bag.
  • GB 2 298 360 A describes a bag with a retractable and retractable band which is formed as a closed loop.
  • a joint of the closed loop is connected to a spindle.
  • the tape can be wound on the spindle, both of which are wound on the spindle alternately and one above the other, the two ends of the loop extending away from the joint.
  • Object of the present invention is to provide a carrying device with a
  • Luggage can be subsequently replaced or supplemented with conventional risers. It is another object of the invention to provide a belt retractor for a carrying device, with a conventional strap on a piece of luggage can be added later.
  • the disadvantage is intended to be avoided or mitigated that a Carrying strap when parking an item, such as a piece of luggage, bothers or falls to the ground.
  • the objects should have a comfortable use
  • a first independent aspect for achieving the object relates to a belt retractor for use in a carrying device, wherein the belt retractor has a housing and a winding shaft rotatably mounted relative to the housing for rolling up a carrying strap, wherein the housing has a first belt inlet and a second belt inlet and wherein the winding shaft a
  • the belt receiving gap may define a belt receiving area in which a webbing is received in the assembled state.
  • the Gurt considerationspalt may be formed as a through hole, i. it can penetrate the winding shaft in such a way that a webbing arranged in the belt receiving gap enters the belt receiving gap from one side of the winding shaft, the winding shaft
  • the belt retractor can be provided without the corresponding strap as an accessory for risers and sold separately.
  • embodiments of the belt retractor may include the strap of a harness or a whole harness with one or more belt retractors.
  • the belt retractor according to the first aspect may include a webbing disposed in the belt-receiving nip. The belt retractor may be in a state in which the webbing is unrolled from the winding shaft and through the
  • Gurt techniquesspalt runs, freely arranged on the belt slidably. This ensures that the winding shaft, if the webbing is not rolled up on the winding shaft, in the longitudinal direction of the webbing on the Webbing can be moved.
  • the gap dimension so the inside width of the Gurt techniquesspalts can be matched to the corresponding thickness of a strap so that the webbing in the Gurt.spalt
  • the frictional force resulting from the clamping force may more than double or more than triple the weight resulting from the own weight of the belt retractor.
  • One embodiment relates to the belt retractor described above, which further comprises a spring element, which acts on the winding shaft with a torque, wherein the spring element upon rotation of the
  • Winding shaft is tensioned in the unwinding direction and relaxed during a rotation of the winding shaft in the winding direction.
  • unwinding direction refers to a direction of rotation of the winding shaft in which the winding shaft is rotated when a webbing wound on the winding shaft is unrolled.
  • Aufrollides denotes a direction of rotation of
  • Winding shaft in which the winding shaft is rotated when a belt is rolled up due to the spring action of the spring element.
  • the spring element may be formed, for example, as a spiral spring, in particular as a metal strip spirally wound in a plane.
  • the spring force of the spring element can be dimensioned such that the spring element acts on the winding shaft to a maximum curled state of the webbing with a torque which provides sufficient torque even at the end of the reeling operation.
  • the belt retractor may further be designed such that the spring element in a state of the belt retractor in which the webbing is completely unrolled from the winding shaft, the winding shaft applied with a torque which causes a pressing force between the pressure surfaces of the winding shaft with the webbing, the sufficient is great that slipping of the belt retractor is prevented due to its own weight. It is necessary that the spring element, the radius of the winding shaft or the width of the Gurtmakingspalts in the radial direction of the winding shaft and the coefficient of friction between the belt and
  • Winding shaft and the weight of the belt retractor are matched accordingly.
  • the torque which by the
  • Spring element is generated in the fully unrolled state of the belt retractor, be dimensioned such that the sum of the torque resulting from the torque between the belt and winding shaft is equal to or greater than the weight resulting from the weight of the belt retractor.
  • the sum of the frictional forces resulting from the torque can exceed this weight by more than twice or more than three times.
  • Gurt techniquesspalt be designed so narrow that it clamps the belt and due to this clamping inadvertent slipping of the belt retractor is prevented on the belt. It is also conceivable that the winding shaft has a Gurtan horrelement in the region of the Gurtusspalts, which the belt in
  • Such a Gurtan horrelement can e.g.
  • the belt receiving area serves to receive the webbing in the assembled state of the belt retractor.
  • the length of the belt receiving area in the axial direction of the winding shaft may correspond substantially to the width of the belt to be absorbed.
  • the belt receiving area can extend over the entire width of the belt substantially parallel to the axis of rotation of the winding shaft.
  • the Gurteingar Society serves as a connection of the belt receiving portion to the outside, so that the webbing can be introduced during assembly over the Gurteinlomi Kunststoff Quarry Society transverse to the longitudinal direction of the webbing in the Gurtry Silver.
  • the Gurtein gleich Quarry can transversely to the axis of rotation of the winding shaft, in particular at an angle between 5 ° and 85 ° to the axis of rotation of the winding shaft, extend such that the strap can be inserted transversely to the longitudinal direction of the winding shaft on the Gürtein2020 Society in the Gurtnessspalt. It is also conceivable that the Gurtein gleich Society of
  • Belt receiving gap further extends parallel to the axis of rotation of the winding shaft to the axial end of the winding shaft.
  • Winding shaft are split by the Gurtmakingspalt substantially symmetrically to a plane passing through an axis of rotation of the winding shaft plane.
  • the belt receiving area to be expanded outward Shen, so that insertion of the webbing is facilitated in the Gurtnessspalt.
  • the belt receiving area can be designed so that the belt is clamped in the belt receiving area.
  • Winding shaft of the belt retractor, the weight of the belt retractor and the coefficient of friction between the belt and the winding shaft, be designed so that unintentional slipping of the retractor on the belt in the unrolled state is prevented.
  • the belt retractor and the corresponding webbing be designed such that at a
  • Winding shaft are generated in the belt gap, equal to or greater than the weight force resulting from the weight of the belt retractor.
  • the sum of the friction forces can exceed this weight by more than twice or more than three times.
  • Gurt techniquesspalt cuts has a curved course.
  • Spring element is provided and which is transmitted to the winding shaft.
  • the harness is loaded with a tensile force (e.g., due to a piece of luggage attached to the harness)
  • the webbing is stretched longitudinally and may be pressed against respective abutment surfaces of the winding shaft halves in the belt receiving slot due to the curved nature of the belt receiving gap on the two opposite inner sides of the belt receiving slot.
  • the stronger the tensile force that pulls on the webbing the greater the pressure forces with which the surface of the belt to the
  • Yet another embodiment relates to one of the belt retractor described above, wherein the winding shaft is split along the course of the Gurteffortspalts along the course of the Gurtusspalts along the axis of rotation of the winding shaft in two winding shaft halves, wherein in a sectional plane which is perpendicular to the axis of rotation of the winding shaft, at least one of two winding shaft halves has a cross-sectional shape along a Gurtaustritts Suites along which a corresponding webbing in
  • Curvature has the nestling of the webbing to the
  • a clinging of the belt denotes a concern without kinking or buckling of the belt.
  • a curvature course which allows a clinging of the belt to the Gurtaustritts Scheme, for example, be given if the curvature along the Gurtaustritts Kunststoffs anywhere
  • a course of curvature which allows the belt to conform to the belt exit region can also be described as a function of a corresponding belt and be given, for example, if the respective winding shaft half has a cross-sectional shape which has a course of curvature along the belt exit region, which at any point along the belt Gurtaustritts Schemes has a radius of curvature which is greater than half the belt thickness, in particular greater than 0.8 times the belt thickness or greater than 1, 5 times the belt thickness.
  • Winding shaft half may have a cross-sectional shape which has a teardrop shape at least in a portion along the Gurtsuitspalts.
  • a teardrop-shaped cross-sectional shape may, for example, have a substantially straight or curved section on the inside of the belt receiving gap, which in the belt exit direction in the belt exit region merges into a rounded region which at least partially has a smaller radius of curvature than a circle with the diameter of the winding shaft to which the belt to be rolled up.
  • the belt exit area may be adjoined by an area having a radius of curvature that is substantially half of the radius
  • Diameter of the winding shaft corresponds. The area with one
  • Radius of curvature which corresponds to substantially half of the diameter of the winding shaft, the substantially straight or curved portion on the inside of the belt receiving gap can join, so that when the two areas meet, a tapered region or a region with a very small radius of curvature are formed can.
  • the other winding shaft half can have the same cross-sectional shape rotated through 180 ° about the axis of rotation of the winding shaft.
  • the cross-sectional shape can be designed so that no cross-sectional area over a circle with the
  • the two connecting elements can each be integral with the
  • the connecting elements the two housing halves may each be formed like a half shell and complement each other in the assembled state of the belt retractor to a housing shell in which the two Gurttein Concrete Schemee are formed and which surrounds the winding shaft radially spaced from the winding shaft circumferentially.
  • Housing halves is provided in each case by two pin-like extensions, in each case two of the total of four pin-like extensions in the assembled state of the belt retractor form one of the two Gurteincommended Schemee.
  • Each of the two housing halves can be a base element with a
  • Axle bearing can be designed as a rolling bearing, as a plain bearing or as a hole, in which one side of the winding shaft is received with play.
  • the other journal bearing can be configured as a rolling bearing, as a slide bearing or as a hole in which one side of the winding shaft is received with play.
  • the housing halves may e.g. in the aluminum pressure casting process or in
  • Carrying device comprising a carrying strap and at least one belt retractor having a housing and a rotatably mounted relative to the housing
  • Winding shaft for winding and unwinding of the carrying strap wherein the housing has a first belt inlet and a second belt inlet, wherein the carrying belt has a first belt portion, which is guided from outside the housing by the first belt inlet to the winding shaft and wherein the carrying belt a second Belt region, which is guided from outside the housing through the second belt inlet to the winding shaft.
  • the first and the second belt area can be so with the winding shaft in
  • Belt areas may be provided separately from each other as physically separate belt areas, wherein the winding shaft side ends of the belt areas may be fixed separately or jointly fixed to the shaft. It is also conceivable that the first and the second belt area are formed by different areas of a continuous webbing of the carrying belt, wherein the region of the carrying belt, in which the first and the second belt area adjoin one another, is in connection with the winding shaft, in particular on the winding shaft is attached or passes through a Gurtmakingspalt the winding shaft.
  • the strap may have one or more straps. In the case of several webbings these may be connected directly adjacent to one another or via intermediate elements, e.g. one
  • Carrying device wherein two belt retractor are provided on the strap.
  • Two belt retractors can ensure that the strap, e.g. when lifting a piece of luggage, is unrolled by the two belt retractors on the two sides of the strap evenly, so that no encirclement is required. This simplifies the handling. Furthermore, a strap by two
  • Belt retractors are shortened more than with a belt retractor.
  • the belt retractor can be made smaller and therefore less disturbing noticeable.
  • Each of the two belt retractor can be arranged in the region of a luggage-side fastening element of the carrying belt.
  • Carrying devices wherein on the strap two fasteners for releasably securing the strap are provided on a piece of luggage.
  • Fasteners in the sense may e.g. be designed as a carabiner, key rings, buckles, hook-and-loop fasteners or belt loops, or comprise one or more such elements. Loops can e.g. when
  • At least one of the belt dispensers according to the first aspect may be arranged on the carrying strap between the fastening elements.
  • Carrying devices wherein the carrying device further a
  • a Gurtlynverstellvortechnisch may be provided at one or both luggage ends of the riser or between two belt retractors, for example in the region of a shoulder pad. It is also conceivable that the carrying strap is formed by a continuous webbing, which extends in one piece from a first luggage-side end of the carrying belt through a first belt retractor, through a second belt retractor to a second luggage-side end of the carrying belt.
  • the Gurtinverstellvortechnisch may for example be designed as a single buckle, which is provided only at a luggage-side end of the carrying strap. By such a buckle, the total length of the strap can be adjusted and fixed. The supernatant of the webbing can be cut off, if subsequently no further adjustment is desired. So disturbing elements such as other Gurtlynverstellvortechnischen can be avoided.
  • Embodiments of the first aspect Embodiments of the first aspect.
  • FIG. 2 shows an embodiment of a belt retractor according to one of the aspects described.
  • Figure 3 shows the belt retractor of Figure 2 in a cut
  • Figure 4a shows a longitudinal section of an embodiment of a
  • Figures 4b to 4c show different embodiments of a winding shaft, which can be used in one of the described embodiments of a belt retractor.
  • Figures 5a and 5b each show a cross section of different
  • Embodiments of a winding shaft which can be used in one of the described embodiments of a belt retractor.
  • Figure 6 shows an exploded view of another
  • Embodiment of a belt retractor Embodiment of a belt retractor.
  • Figure 1 shows an embodiment of a carrying device 1 0 with two
  • the carrying device has a carrying belt 300.
  • the carrying belt 300 has in the illustrated embodiment a continuous webbing 310, two belt retractors 200 and two at the opposite ends of the
  • Such a carrying device 10 further elements not shown in Figure 1, such. a shoulder pad and / or Gurtinverstellvorraum. About a Gurtinverstellvorraum the length of the webbing can be adjusted and fixed in the set positions. The two
  • Belt retractor 200 is disposed on a portion of a continuous webbing, that is, ends of the continuous webbing extend from both sides of each of the two webbing retractors 200.
  • a comparable carrying device 10 is designed only with a belt retractor 200, wherein this belt retractor 200 a
  • Belt retractor 200 according to one of the described embodiments.
  • Belt retractors 200 can be wound evenly. It can the
  • Carrying device 10 are fastened by means of the two fastening elements 330, for example, at two spaced locations of a bag.
  • the carrying straps 300 may be in the center between the two belt retractors 200 are gripped and then rolls evenly from both sides when lifting a piece of luggage from the two belt retractors 200, so that the person who lifts the bag, does not have to embrace when lifting.
  • belt retractors 200 are described, which can be used in the carrying device 1 0.
  • FIG. 2 shows an embodiment of a belt retractor 200 according to one of the aspects described.
  • One or more comparable belt retractors 200 may be used in e.g. be used in the carrying device 10 shown in Figure 1 or in other carrying devices.
  • the belt retractor 200 has a housing 210, which has two housing halves 213 in the illustrated embodiment. Between the two housing halves 213, a winding shaft 220 is rotatably arranged. On the winding shaft 220, a webbing 310 is wound up. Each of the housing halves 213 has its base element 214.
  • Base member 21 4 extending fasteners 216 in the direction of the adjacent housing half 213, which ensure that the two
  • Housing halves 213 can be connected to each other at a defined distance.
  • the connecting elements 216 are integrally connected to the respective base member 214 of the respective housing half 213 of the housing 210.
  • each housing half 213 each have two pin-like extensions. If the two housing halves 213 are assembled, each form one of the two pin-like extensions of the first
  • Embodiment form the other two pin-like extensions a second belt inlet 212. It is also conceivable that two pin-like extensions of a first housing half 213 form a first belt inlet 21 1 and that two pin-like Extensions of a second housing half 213 form a second belt inlet 21. Furthermore, it is conceivable that in a further embodiment the
  • Connecting elements 216 are not formed as pin-like extensions, but the winding shaft shell-like, in particular half-shell-like, surrounded.
  • screw heads are represented by screws which pass through the respective base elements 214 into the pin-like extensions
  • Mounting options such as permanent detachable locking connections or the like, with which the two housing halves 2 3 can be fastened together.
  • the winding shaft 220 is rotatably mounted between the two housing halves 213.
  • a spring element 250 is provided which is formed in the illustrated embodiment as a spiral spring. The spring element 250 is tensioned during the unwinding of the webbing 310 and transmits a torque to the winding shaft 220, whereby a rolling of the webbing 310 is effected when the webbing 310 is released.
  • FIG. 3 shows the belt retractor 200 of Figure 2 in a cut
  • Gurt.spalt 230 of the winding shaft 220 is passed. That is, the Gurtbasedspalt 230 is designed as a through hole, which the
  • Gurt reasonsspalt 230 are threaded through the winding shaft 220.
  • FIG. 4a shows a longitudinal section of an embodiment of a belt retractor 200, which essentially corresponds to the belt retractor from FIGS. 2 and 3.
  • the winding shaft 220 is integrally formed and is mounted on rolling bearings, which are formed in the present embodiment as ball bearings. Also conceivable are other bearings, plain bearings or a bearing of the winding shaft 220 in axle bearings 215 of the respective housing half 213 without an intermediate bearing element, which between the winding shaft 220 and the respective
  • Housing half 213 is arranged.
  • FIGS. 4b to 4c show different embodiments of a winding shaft 220 which can be used in one of the described embodiments of a belt retractor 200. In all three embodiments is a
  • the belt receiving slot divides the winding shaft 220 into a winding shaft half 240 shown in the figures above and into a lower one shown in the figures below.
  • the winding shaft 220 is made in one piece.
  • the term winding shaft half in the context therefore only designates different regions of the same component, which are separated by the belt receiving gap 230 and which are nevertheless an integral part of the winding shaft 220. It is also conceivable that one or more embodiments of the winding shaft 220 are made in several parts, such as e.g. in the illustrated in Figure 6
  • the belt-receiving gap has a belt insertion region 232 which completely separates the wobble shaft 220 at one of the two axial ends.
  • the Gurtein réelle Scheme 232 allows insertion of the webbing 310 in the Gurtnessspalt 230 in the axial direction, without a lateral threading of the belt would be required in the Gurtbasedspalt 230. Accordingly, the Gurt techniquesspalt 230 is in the illustrated embodiment of a
  • Embodiment is not provided axially but laterally. Depending on the direction in which the webbing 310 from the
  • Belt outlet 233 executed in the embodiment shown there with a radius of curvature R, which makes it possible that the webbing 31 0 in this area of the respective winding shaft half 240 can cling to the Gurtaustritts Scheme 233.
  • the formation of a bead which e.g. could arise with a less flexible webbing with narrower radii of curvature, can be avoided.
  • the webbing can be wound around on the winding shaft 220.
  • the belt retractor 200 can be made smaller overall.
  • Figures 5a and 5b each show a cross section of different
  • Embodiments of a Gurtauf roiler 200 can be used.
  • the two Gurtaustritts Symposiume 233 are each provided with a radius of curvature R, which corresponds to slightly less than one third of the diameter of the winding shaft.
  • the arrows shown in the left cross section indicate the respective radii of curvature R in different areas of the cross section.
  • the belt receiving gap extends in this embodiment substantially straight through the cross section.
  • the same cross section is shown, in which the webbing 31 0 extends through the winding shaft and exits on both opposite sides of the winding shaft respectively through the first belt inlet 21 1 and the second belt inlet 212 on both sides of the housing 210.
  • the webbing 31 0 is in a stretched state illustrated, as it may be the case when on the carrying device 1 0 a piece of luggage is attached.
  • the arrows shown in this drawing give the Anyak mechanism F again, which are exerted on the webbing 310 due to the spring tension of the winding shaft 220 and the pin-like projections.
  • the frictional forces resulting from these pressing forces F act to displace the webbing
  • FIG. 5b shows a further embodiment of a winding shaft 220, in which the belt receiving gap is curved. As shown on the right side of the figure, the webbing 3 0 at this
  • Embodiment even if the webbing 310 is loaded with a strong tensile force, always a curved course.
  • the stronger the tensile force the greater the pressure forces F, with which areas of the winding shaft 220 are pressed against the webbing 310.
  • the force components due to a spring tension by the spring member 250 act on the webbing 310.
  • Figure 6 shows an exploded view of another embodiment of a belt retractor 200. Shown are two housing halves 213, each having a base member 214 and connecting elements 21 6, each as a pin-like
  • a winding shaft 220 is arranged, which is formed in two parts in the illustrated embodiment.
  • the winding shaft 220 is divided transversely to the axis of rotation of the winding shaft executed.
  • the two winding shaft parts can via pins and
  • winding shaft 220 can be rotatably received in axle bearings 215 of the two housing halves 213.
  • the winding shaft portion shown in the figure above has a stub axle having a smaller diameter than the axle stub of the winding shaft portion shown in the figure below.
  • the axle stub shown below also has a gap in which one end of the spring element 250 can be received.
  • the two stub axles of the winding shaft 220 are made identical.
  • both winding shaft parts can be made identical, so that they are e.g. can be produced with the same injection molds. In this case, each of the two winding shaft parts a complete

Landscapes

  • Automotive Seat Belt Assembly (AREA)

Abstract

Dispositif support (10) comportant une courroie support (300) et au moins un enrouleur de courroie (200) qui comprend un boîtier (210) et un arbre d'enroulement (220) logé pivotant relativement au boîtier et destiné à dérouler et à enrouler la courroie support (300). Le boîtier (210) comporte une première entrée de courroie (211) et une deuxième entrée de courroie (212). La courroie support (300) présente une première zone qui est guidée à partir de l'extérieur du boîtier (210) jusqu'à l'arbre d'enroulement (220) à travers la première entrée de courroie (211). La courroie support (300) comporte une deuxième zone qui est guidée à partir de l'extérieur du boîtier (210) jusqu'à l'arbre d'enroulement (220) à travers la deuxième entrée de courroie (211). L'arbre d'enroulement (220) présente un espace récepteur de courroie (230) qui travers l'arbre d'enroulement (220).
EP11731256.1A 2010-07-12 2011-06-22 Dispositif support avec enrouleur de courroie Not-in-force EP2592964B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102010026902 2010-07-12
PCT/EP2011/003092 WO2012007091A2 (fr) 2010-07-12 2011-06-22 Dispositif support avec enrouleur de courroie

Publications (2)

Publication Number Publication Date
EP2592964A2 true EP2592964A2 (fr) 2013-05-22
EP2592964B1 EP2592964B1 (fr) 2016-08-31

Family

ID=44628420

Family Applications (1)

Application Number Title Priority Date Filing Date
EP11731256.1A Not-in-force EP2592964B1 (fr) 2010-07-12 2011-06-22 Dispositif support avec enrouleur de courroie

Country Status (2)

Country Link
EP (1) EP2592964B1 (fr)
WO (1) WO2012007091A2 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103978857B (zh) * 2013-02-07 2016-12-28 黄汉卿 拖车带回收装置
CN117715563A (zh) * 2021-07-26 2024-03-15 株式会社爱迪生工坊 带卷收器及使用该带卷收器的包和头盔

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US3198300A (en) 1963-05-31 1965-08-03 George K Tuttle Handle having a retractable strap
US3826473A (en) * 1972-12-26 1974-07-30 Trans Technology Corp Slidable buckle assembly
GB2238955B (en) 1989-11-30 1994-03-16 Isos Ltd A handle assembly
DE4237364A1 (de) 1992-11-05 1994-05-11 Hugues Edwin Luedi Auto-Tragriemen
GB2298360B (en) 1995-01-30 1998-10-21 Carlton Int Plc Bag strap
US5762169A (en) 1995-06-07 1998-06-09 Samsonite Corporation Retractable auxiliary luggage case attachment and security tether mechanism and method
US7942360B2 (en) * 2006-01-25 2011-05-17 Winston Products Llc Retractable tow strap
US7513018B2 (en) * 2006-03-14 2009-04-07 Koenig Thomas L Animate load bearer radial adjuster device for cargo transport carriers
CN101342029B (zh) * 2007-07-09 2011-04-20 杨宏 具可调整带的携带装置及其使用方法
GB2451696B (en) 2007-08-10 2010-08-11 Yoke Entpr Ltd Apparatus to assist a person carrying one or more bags

Non-Patent Citations (1)

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Title
See references of WO2012007091A2 *

Also Published As

Publication number Publication date
WO2012007091A2 (fr) 2012-01-19
WO2012007091A3 (fr) 2012-05-10
EP2592964B1 (fr) 2016-08-31

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