EP1525033B1 - Profile pour chassis d'appareils de culture physique et de reeducation - Google Patents

Profile pour chassis d'appareils de culture physique et de reeducation Download PDF

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Publication number
EP1525033B1
EP1525033B1 EP03783973A EP03783973A EP1525033B1 EP 1525033 B1 EP1525033 B1 EP 1525033B1 EP 03783973 A EP03783973 A EP 03783973A EP 03783973 A EP03783973 A EP 03783973A EP 1525033 B1 EP1525033 B1 EP 1525033B1
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EP
European Patent Office
Prior art keywords
profile
weight frame
frame according
profiles
supports
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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.)
Expired - Lifetime
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EP03783973A
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German (de)
English (en)
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EP1525033A1 (fr
Inventor
Sonja Stromberg
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Individual
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Individual
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Priority claimed from DE20211327U external-priority patent/DE20211327U1/de
Application filed by Individual filed Critical Individual
Publication of EP1525033A1 publication Critical patent/EP1525033A1/fr
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/06User-manipulated weights
    • A63B21/062User-manipulated weights including guide for vertical or non-vertical weights or array of weights to move against gravity forces
    • A63B21/0626User-manipulated weights including guide for vertical or non-vertical weights or array of weights to move against gravity forces with substantially vertical guiding means
    • A63B21/0628User-manipulated weights including guide for vertical or non-vertical weights or array of weights to move against gravity forces with substantially vertical guiding means for vertical array of weights

Definitions

  • the invention relates to a weight frame for fitness and health devices.
  • Fitness equipment is used to train athletes and health equipment to rehabilitate patients.
  • the various fitness and health devices are moved depending on the type of standing, lying or sitting.
  • a special device is provided for each muscle group.
  • the designation of the devices is partly based on the trained muscles, partly on moving body parts, partly on the type of movement.
  • the raisable and lowerable weights are guide devices or arranged in a frame.
  • the preferred shape of the guide means is formed by guide rods which are held in the frame and on which the weights slide.
  • the weights are moved by traction means.
  • pulling means serve ropes, chains and bands.
  • the traction means connect the weights with moving machine parts or are operated directly by hand.
  • the exercises then run against the resistance of the weights.
  • weight packages which can be coupled with the traction means as desired, so that the resistance can be adjusted by changing the number of weights.
  • the frame parts are referred to with the raisable and lowerable weights as a weight frame.
  • the weight frame above have connection surfaces for a cross-beam and optionally for a top plate as the upper connecting element
  • the cross-beam is the distance formation for the cable tensioning station and the top plate as a stable connection in the use of the dual station.
  • the top plate and the upper pads of the weight frame complement each other in an ideal way.
  • the cross-beam is provided with a connecting flange, which covers the top of the weight frame in whole or in part, so that the same connection as in the top plate is possible.
  • the weight frames are optionally provided with a U-shaped or a T-shaped or T- shaped foot.
  • the weight frames are part of the devices.
  • Other components include, for example, pivoting levers, seats, backrests.
  • the levers, seats and backrests require storage and mounting.
  • the holder is made by the machine frame or equipment frame.
  • the weight frame can become the machine frame by connection with the parts forming the holder. At least the weight frame complements the machine frame.
  • the known weight frame usually consist of a hollow profile.
  • the invention has the task of improving the profiles.
  • the invention according to claim 1 turns to a profile with the cross section of an ellipse, which has an extremely high application cost compared to rectangular profile cross sections.
  • the invention has recognized, however, that it does not depend solely on the strength against breakage or permanent deformation.
  • the invention has recognized that the vibration of the machine has influence on the user. The more vibration-stable the construction is, the greater the comfort feeling of the user. In itself, it would be obvious, after knowledge of the relationship between comfort and vibration resistance by additional supports or struts to effect a stiffening of the machine frame or equipment frame. It is also known to go another way. From the EP-A-0965365 It is known to manufacture weight frames from oval profiles, which can also be designed as elliptical profiles. Here, the weight frame is formed by an arc that frames the raised and lowered weights with the associated guide rods. This proposal goes with the elliptical profile another way.
  • the invention nonetheless retains the profiles with the cross-section of an ellipse.
  • the effort is considerably reduced by the fact that only straight profiles are used as lateral supports instead of the curved profiles for the weight frame and that the lateral supports are interconnected by a head plate / traverse. It should find a weld application.
  • the invention detaches itself from the known connectors and returns the invention to the joining techniques known from the rectangular profiles.
  • Compared to the arch construction results in significant structural advantages and significant savings.
  • the additional expense of the construction according to the invention compared to the use of rectangular profiles much more bearable than expected.
  • the invention is not diminished by the fact that from the US-PS 3971555 Machines are known with a weight frame, which consists of straight, parallel profiles, which are connected together above a top plate.
  • profiles with the cross section of an ellipse and preferably with the following dimensions are used for supports and struts of the machine frame 150mm (largest external dimension) to 75mm (smallest external dimension) or 120mm to 60mm or 100mm to 50mm or 80mm to 40mm or 60mm to 30mm. It is important to distinguish between the dimensional tolerances and other nominal dimensions.
  • the dimensional tolerances are at most equal to the possible thickness of a weld when welding profiles, preferably the dimensional tolerance is at most 4mm, more preferably at most 3mm.
  • the nominal dimensions deviate in other dimensions at most by 10%, preferably at most by 5%, from the nominal dimensions / external dimensions given above.
  • the wall thickness of the tubes according to the invention is preferably at most 6 mm, more preferably 5 mm and most preferably 4 mm.
  • the pipe joints come in different forms.
  • the invention distinguishes between the joints of pipe profiles of the same dimensions and the joints of pipe profiles of unequal dimensions.
  • the basic patterns are each based on a continuous larger profile and a subsequent to the continuous larger profile smaller profile.
  • the location of the smaller profile on the larger profile is determined by the longitudinal axis of the profiles, by the position of the narrow side and by the position of the broadside.
  • the side view of the profile is referred to below, in which the profile shows the largest external dimensions.
  • the side view of the profile is referred to below, in which the profile shows the smallest external dimensions.
  • the smaller profile is perpendicular to the outer shell of the larger profile.
  • the smaller profile is centered on the broad side of the larger profile.
  • the broad side of the smaller profile in the projection on the broad side of the larger profile runs exactly 90 degrees transverse to the longitudinal axis of the larger profile.
  • the broad side of the smaller profile in the projection runs on the broad side of the larger profile exactly parallel or in alignment with the longitudinal axis of the larger profile.
  • the smaller profile is centered on the narrow side of the larger profile and is the narrow side of the smaller profile in the projection on the narrow side of the larger profile exactly parallel or aligned with the longitudinal axis of the larger profile.
  • the outer dimension of the smaller profile is smaller than the narrow side of the larger profile.
  • the angular position of the smaller profile can vary to the larger profile. This applies both to the circumferential angle of the larger profile and to the angle to the plane in which the broad side or the narrow side of the larger profile is located.
  • the shocks according to the invention can be produced by introducing a bore with the contour of the smaller profile into the larger profile.
  • the contour can easily be produced with a computer-controlled milling cutter.
  • the end surface / contact surface of the smaller profile can be adapted to the respective curvature of the contact surface of the larger profile.
  • the adjustment can be made as above with the aid of a computer-controlled milling cutter.
  • the smaller profile can be brought there without injury to the outer surface of the larger profile to the plant without a gap forms, the opening width is greater than the allowable for the welding measure.
  • the opening width is at normal weld seam at most equal to 75% of the normal weld width, preferably at most 50% and even more preferably at most equal to 25% of the normal weld width.
  • the normal Weld seam width is the usual weld seam width for closing surfaces of larger and smaller profiles.
  • the usual weld seam width is a standardized weld seam width, more preferably DIN weld seam widths.
  • the opening width of the gap between the larger and smaller profiles, even with a straight face of the smaller profile is low enough to produce a desired weld with conventional weld. This is the case with larger dimensional differences between the tubes and especially when the smaller profile rests on the broad side of the larger profile.
  • opening gaps in welding can be closed when the material edges are approximated with a build-up weld until they can be closed with a last weld.
  • the build-up welding can be carried out continuously at the material edges or back and forth at individual edge points. In this case, a welding operation in smaller and / or larger steps is possible, in which by means of reciprocating welding, a connection between the material edges are generated.
  • the procedure according to the invention includes that for larger dimensional differences between the external dimensions of the profiles, straight end cuts for the connection surfaces of the smaller profiles are also used. The resulting gaps can be bridged with simple welds.
  • the standing on the continuous profile profile does not laterally beyond the edge of the continuous profile.
  • the continuous profile can take different rotational positions / angular positions relative to the upstanding profile.
  • the upstanding profile can occupy different rotational positions / angular positions relative to the continuous profile compared to the continuous profile.
  • Miter cuts are provided on the joints.
  • freedom of choice between miter cut and handling exists as a continuous profile with a raised profile. This situation exists when one profile covers and does not go beyond the entire face of the upstanding profile.
  • the bending is then carried out by separation at the intended Abwinkelstelle and reconnecting after preparation of the profile ends.
  • the profile ends are mitred so that then can be produced a welded joint.
  • the bending is preferably carried out with jaws, between which the profile is clamped and which are then pivoted against each other.
  • the profile is preferably bent only so that the deflection resulting at the bend results in strength values that is at most 25% less than the strength of a welded joint described above, and preferably equal to or better than the strength of one described above Welded joint is.
  • the quality of the deformation is essentially determined by the bending radius and the extent to which the bending axis parallel to the flat side of the profile (flat is bent) or parallel to the narrow side of the profile (upright is bent) runs and how far the bend runs and how thick the profile wall ,
  • the mean bending radius is at least equal to the largest profile external dimension, preferably at least equal to 1.25 times the largest profile external dimension and even more preferably at least 1.5 times the size of the external profile.
  • the mean bending radius is at least equal to the largest profile external dimension, preferably at least equal to 1.25 times the largest profile external dimension and even more preferably at least 1.5 times the size of the external profile.
  • this results in a bending of a 90 degree angle at least a mean bending radius of 120mm, preferably a mean bending radius of at least 150mm and even more preferably a mean bending radius of at least 180mm.
  • the resulting at the center line of the profile bending radius of the mean bending radius is at least equal to the largest profile external dimension, preferably at least equal to 1.25 times the largest profile external dimension and even more preferably at least 1.5 times the size of the external profile.
  • the mean bending radius is at least equal to 3 times the largest profile external dimension, preferably at least equal to 3.5 times the largest profile external dimension and even more preferably at least 4 times that sizes profile external dimension. For a profile with a maximum external dimension of 120, this results in a bending of a 90 degree angle, a mean bending radius of at least 360mm, preferably a mean bending radius of at least 420 mm and even more preferably of at least 480 mm.
  • the resulting bending radius at the center line of the profile is the mean bending radius.
  • the various weight frames consist of two mutually inclined supports 1 and 2, which are interconnected at the top by a top plate 4 and bottom by a cross member 3.
  • the supports 1 and 2 persist Fig. 2 from a hollow section 10 with the cross section of an ellipse with characteristic diameters of 75 mm and 150 mm. In other embodiments, the diameter is at least 80 mm, preferably at least 120 mm at the largest point.
  • the column height is at least 1200 mm, preferably 1500mm or 2000 mm.
  • the inclination of the supports 1 and 2 is 1 to 4 degrees, preferably 2.6 to 3 degrees to the vertical.
  • the cross member 3 is also formed by a profile with the cross section of an ellipse, preferably by a same profile as in the supports.
  • the support profiles and the truss profiles are arranged so that the profile longitudinal sides of the supports aligned with each other.
  • the long sides also form the flat sides / broad sides of the profile.
  • two flat sides of the supports 1 and 2 are opposite.
  • the lower cross member is arranged so that a narrow side of the ellipse cross section is at the top. The long side stands upright.
  • the impact between the cross member 3 and the support 2 is in the 3 and 4 and corresponds to the basic pattern B explained above.
  • the outer dimensions of the support 2 are denoted by H2 and B2, the outer dimensions of the cross member 3 by H1 and B1. It can be seen that the cross member 3 is adapted to the contact surface with the support 2 whose contour. This is done by form milling.
  • H1 is equal to H2 and B1 is equal to B2.
  • H1 is less than H2 and B1 is less than B2.
  • the latter is in FIGS. 5 and 6 represented by a shock.
  • the broad side of the traverse 3 ' extends exactly 90 degrees transverse to the longitudinal axis of the support 2, wherein the traverse 3' rests on the broad side of the cap 2. This corresponds to the basic pattern A described above.
  • the top plate has a thickness of 10mm.
  • the rounding at the outer edge of the top plate 4 corresponds to the local rounding on the supports 1 and 2.
  • the top plate 4 moreover, an elliptical shape.
  • the top plate still has a cap and / or another shape.
  • the attachment is adapted to the contour of the top plate and causes a central thickening of the top plate.
  • the thickening has a dimension of up to 60 mm, preferably up to 50 mm, based on a top plate length of at least 500 mm, preferably at least 600 mm.
  • top plate results in particular when several rollers are provided on the top plate for guiding the traction means to the weights. For this purpose, a dissemination of the plate in relation to the elliptical shape is provided in particular.
  • FIG. 9 An attachment 25 for a widened top plate is in the Fig. 9 to 11 shown.
  • Fig. 10 shows a plan view with two mounting holes 26. These holes are located at a Headstock without broadening in the center of the attachment. Due to the broadening is in the execution after Fig. 10 one-sided a larger edge distance emerged. The broadening of the top plate is used to attach other roles for deflecting the traction means to the raised and lowered weights.
  • the Fig. 9 is a front view that Fig. 11 a side view.
  • the two views show that the article thickened from the edge to the middle, with the largest thickness dimension is 50 mm with an attachment length of about 600 mm.
  • weights 5 are arranged raised and lowered.
  • the weights 5 are joined in the enclosed frame on rods 6.
  • the traction means are ropes, chains, belts, which are guided over rollers 8 and 9 to the weights.
  • the rollers 8 and 9 are arranged on the top plate and the traverse.
  • the weight frame are intended to be equipped with a pivoting lever.
  • a bearing 7 is provided internally from a sleeve or a tube. The tube is approximately halfway into the support 1.
  • the parts 1, 2, 3, 4 and 7 are welded together.
  • the pivot lever is moved in the embodiment of the practitioner with the lower leg.
  • the practitioner sits on a tight seat.
  • Such exercises occur in leg bending or leg stretching.
  • FIGS. 7 and 8 show a shock of a support 20 with a cross member 21 corresponding to the basic pattern C described above.
  • the cross member 21 is centered on the narrow side of the support 20.
  • the broad side of the cross member 21 is parallel or aligned to the longitudinal axis of the support 20.
  • the outer dimensions H1 and B1 of the traverses 21 are smaller than the external dimensions H2 and B2 of the support 20.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biophysics (AREA)
  • Orthopedic Medicine & Surgery (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Butt Welding And Welding Of Specific Article (AREA)
  • Body Structure For Vehicles (AREA)

Claims (25)

  1. Cadre pour poids pour appareils de culture physique et de santé, pour les personnes en récupération et pour des patients, avec des supports droits (1, 2), qui sont connectés par des traverses (3) et une plaque de tête (4), et avec des poids pouvant être soulevés et abaissés (5),
    des moyens de traction étant articulés aux poids pouvant être soulevés et abaissés, afin d'effectuer des exercices à l'encontre de la résistance des poids pouvant être soulevés et abaissés, les supports s'étendant vers le haut de manière inclinée l'un vers l'autre, l'inclinaison par rapport à la verticale étant d'au moins 1 degré, de préférence d'au moins 2 degrés et encore plus préférablement de 2,6 à 3 degrés, de préférence de 4 degrés au maximum,
    le cadre pour poids étant connecté à d'autres pièces d'un cadre d'appareil et les supports et traverses étant constitués de profilés ayant une section transversale en forme d'ellipse,
    caractérisé en ce que
    les connexions du cadre pour poids aux autres parties du cadre d'appareil sont constituées de profilés ayant une section transversale en forme d'ellipse,
    en ce que les supports (1, 2) s'étendent tout droit,
    en ce que les supports (1, 2), les traverses (3) et la plaque de tête (4) sont soudés les uns aux autres, et en ce que l'on réalise la connexion de sections transversales de profilés de même taille ou de sections transversales de profilés de tailles différentes,
    a) en prévoyant, pour la connexion de sections transversales de profilés de tailles différentes, trois modèles de base et des variations du modèle de base, dans tous les modèles de base, les premiers profilés étant posés debout avec une extrémité sur un profilé continu, et
    aa) dans le modèle de base (A), l'un des profilés se tenant sur le côté large du profilé continu et le côté large du profilé posé debout s'étendant à 90 degrés transversalement à l'axe longitudinal du profilé continu,
    bb) dans le modèle de base (B), l'un des profilés se tenant sur le côté large du profilé continu et le côté large du profilé debout s'étendant parallèlement à l'axe longitudinal du profilé continu ou étant en affleurement avec l'axe longitudinal,
    cc) dans le modèle de base (C), l'un des profilés se tenant sur le côté étroit du profilé continu et le côté large du profilé debout s'étendant parallèlement à l'axe longitudinal du profilé continu ou étant en affleurement avec l'axe longitudinal,
    dd) les autres connexions étant des variantes des modèles de base, les profilés adoptant d'autres positions angulaires et rotatives les uns par rapport aux autres, et dans des variantes du modèle de base (C), le profilé debout atteignant, en projection le long de l'axe longitudinal sur le profilé continu, des dimensions extérieures qui sont inférieures ou égales aux dimensions extérieures du profilé continu en projection le long du même axe, et
    b) où, pour la connexion de profilés identiques, les modèles de base (A) à (C) étant utilisés, et en outre des profilés étant disposés les uns derrière les autres dans la direction longitudinale, et étant soudés ensemble, des découpures en onglet étant prévues au niveau des points de connexion.
  2. Cadre pour poids selon la revendication 1, caractérisé en ce que la section transversale en forme d'ellipse possède la dimension extérieure maximale de 150 mm au plus pour une dimension extérieure la plus petite qui mesure 50% de la dimension extérieure maximale, des écarts de dimension pouvant aller jusqu'à 10% de préférence 5% de la dimension extérieure prévue.
  3. Cadre pour poids selon la revendication 2, caractérisé par une section transversale en forme d'ellipse ayant les dimensions suivantes :
    150 mm x 75 mm
    120 mm x 60 mm
    100 mm x 50 mm
    80 mm x 40 mm
    60 mm x 30 mm.
  4. Cadre pour poids selon l'une quelconque des revendications 1 à 3, caractérisé par une épaisseur de paroi de 6 mm au maximum, de préférence de 3 à 5 mm.
  5. Cadre pour poids selon l'une quelconque des revendications 1 à 3, caractérisé par un cadre pour poids ayant une plaque de tête avec une épaisseur de plaque d'au moins 8 mm, de préférence d'au moins 10 mm.
  6. Cadre pour poids selon la revendication 5, caractérisé par une plaque de tête qui possède au niveau des supports un arrondi adapté aux supports.
  7. Cadre pour poids selon la revendication 6, caractérisé par une plaque de tête avec une forme elliptique.
  8. Cadre pour poids selon l'une quelconque des revendications 1, 5 à 7, caractérisé par un élargissement de la plaque de tête.
  9. Cadre pour poids selon l'une quelconque des revendications 1, 5 à 8, caractérisé par un capot, qui s'épaissit depuis le bord jusqu'au milieu de la plaque de tête.
  10. Cadre pour poids selon la revendication 9, caractérisé par un épaississement du capot jusqu'à 60 mm, de préférence jusqu'à 50 mm.
  11. Cadre pour poids selon l'une quelconque des revendications 1 à 10, caractérisé en ce que lors du soudage de l'extrémité du profilé debout, un joint de soudure multicouche est prévu pour fermer l'interstice de soudage, ou l'interstice de soudage dans le cas d'un joint de soudure monocouche, a une largeur d'ouverture qui représente au maximum 50%, de préférence au maximum 25% de la largeur du joint de soudure.
  12. Cadre pour poids selon la revendication 11, caractérisé en ce que les surfaces de contact du profilé debout sont adaptées à la surface d'enveloppe du profilé continu.
  13. Cadre pour poids selon la revendication 12, caractérisé par des surfaces de contact façonnées par fraisage.
  14. Cadre pour poids selon l'une quelconque des revendications 11 à 13, caractérisé en ce que des interstices de soudage pour des joints de soudure monocouche présentent une ouverture de 2 mm au maximum, de préférence de 1 mm au maximum.
  15. Cadre pour poids selon l'une quelconque des revendications 1 à 14, caractérisé en ce que dans le cas des cadres pour poids, les extrémités inférieures des supports dépassent par rapport à la traverse inférieure.
  16. Cadre pour poids selon l'une quelconque des revendications 1 à 15, caractérisé en ce que dans le cas des cadres pour poids, les supports présentent une longueur d'au moins 1200 mm, de préférence une longueur d'au moins 1500 mm.
  17. Cadre pour poids selon l'une quelconque des revendications 1 à 16, caractérisé en ce que des paliers pour des leviers pivotants sur les supports des cadres pour poids sont incorporés au moins en partie dans les supports.
  18. Cadre pour poids selon la revendication 17, caractérisé en ce que les paliers sont prévus du côté intérieur sur les supports.
  19. Cadre pour poids selon les revendications 16 ou 17, caractérisé en ce que le palier est formé par un tube.
  20. Cadre pour poids selon l'une quelconque des revendications 1 à 19, caractérisé en ce que le cadre pour poids fait partie d'un cadre de machine ou d'un cadre d'appareil et les autres supports ou montants ou pieds se composent au moins également en partie d'un profilé ayant une section transversale elliptique.
  21. Cadre pour poids selon la revendication 20, caractérisé en ce que les leviers se composent également d'un profilé ayant une section transversale elliptique.
  22. Cadre pour poids selon les revendications 20 ou 21, caractérisé par des profilés coudés, qui sont cintrés ou séparés au niveau du coudage et qui sont pourvus au niveau des surfaces d'extrémité d'une découpure en onglet et qui sont à nouveau soudés l'un à l'autre.
  23. Cadre pour poids selon la revendication 22, caractérisé en ce que les profilés sont cintrés à plat ou sur chant, et
    a) dans le cas d'un cintrage à plat jusqu'à 90 degrés d'un profilé avec une épaisseur de paroi de 3 à 5 mm, le rayon de courbure moyen est au moins égal à la dimension extérieure maximale du profilé, de préférence au moins égal à 1,25 fois et encore plus préférablement au moins égal à 1,5 fois la dimension extérieure maximale du profilé,
    b) dans le cas d'un cintrage sur chant jusqu'à 90 degrés d'un profilé avec une épaisseur de paroi de 3 à 5 mm, le rayon de courbure moyen est au moins égal à 3 fois, de préférence au moins égal à 3,5 fois et encore plus préférablement au moins égal à 4 fois la dimension extérieure maximale du profilé.
  24. Cadre pour poids selon les revendications 22 ou 23, caractérisé en ce que les profilés avec une courbure au niveau du coudage possèdent des valeurs de résistance qui sont au maximum 25% inférieures aux valeurs de résistance d'une connexion soudée et de préférence supérieures ou égales aux valeurs de résistance d'une connexion soudée.
  25. Cadre pour poids selon l'une quelconque des revendications 22 à 24, caractérisé par une utilisation de dispositifs de cintrage avec des mâchoires pour serrer les profilés.
EP03783973A 2002-07-28 2003-06-04 Profile pour chassis d'appareils de culture physique et de reeducation Expired - Lifetime EP1525033B1 (fr)

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
DE20211327U DE20211327U1 (de) 2002-07-28 2002-07-28 Rahmen für heb- und senkbare Gewichte in Übungsgeräten
DE20211327U 2002-07-28
DE20307309U DE20307309U1 (de) 2002-07-28 2003-05-09 Profil für Rahmen von Fitneß- und Gesundheitsgeräten
DE20307309U 2003-05-09
PCT/EP2003/005850 WO2004014493A1 (fr) 2002-07-28 2003-06-04 Profile pour chassis d'appareils de culture physique et de reeducation

Publications (2)

Publication Number Publication Date
EP1525033A1 EP1525033A1 (fr) 2005-04-27
EP1525033B1 true EP1525033B1 (fr) 2010-09-15

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EP03783973A Expired - Lifetime EP1525033B1 (fr) 2002-07-28 2003-06-04 Profile pour chassis d'appareils de culture physique et de reeducation

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EP (1) EP1525033B1 (fr)
AU (1) AU2003242621A1 (fr)
WO (1) WO2004014493A1 (fr)

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IT1304009B1 (it) * 1998-06-16 2001-03-02 Technogym Srl Telaio per macchine ginniche.
US6019704A (en) * 1998-07-27 2000-02-01 Mark A. Morgan Exercise machine to exercise the wrist and forearm muscles
DE20018937U1 (de) * 2000-11-07 2001-01-25 Rheinauer Maschinen & Armature Kraftsport-Trainingsgerät

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WO2004014493A1 (fr) 2004-02-19
AU2003242621A1 (en) 2004-02-25

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