(19)
(11)EP 3 267 070 B1

(12)EUROPEAN PATENT SPECIFICATION

(45)Mention of the grant of the patent:
13.01.2021 Bulletin 2021/02

(21)Application number: 17179417.5

(22)Date of filing:  03.07.2017
(51)International Patent Classification (IPC): 
F16G 1/10(2006.01)
F16G 3/02(2006.01)
F16G 1/28(2006.01)
F16G 3/04(2006.01)

(54)

TRANSMISSION BELT

TRANSMISSIONSRIEMEN

COURROIE DE TRANSMISSION


(84)Designated Contracting States:
AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

(30)Priority: 07.07.2016 TW 105121648

(43)Date of publication of application:
10.01.2018 Bulletin 2018/02

(73)Proprietor: KMC Chain Industrial Co., Ltd.
Tainan City 70849 (TW)

(72)Inventor:
  • WU, Daniel
    70849 Tainan City (TW)

(74)Representative: Delorme, Nicolas et al
Cabinet Germain & Maureau BP 6153
69466 Lyon Cedex 06
69466 Lyon Cedex 06 (FR)


(56)References cited: : 
WO-A2-2005/049454
GB-A- 651 409
DE-A1- 3 406 333
GB-A- 2 290 515
  
      
    Note: Within nine months from the publication of the mention of the grant of the European patent, any person may give notice to the European Patent Office of opposition to the European patent granted. Notice of opposition shall be filed in a written reasoned statement. It shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention).


    Description


    [0001] The disclosure relates to a belt, and more particularly to a transmission belt.

    [0002] Referring to Figures 1, 2 and 3, a conventional transmission belt 1 is looped over two spaced-apart pulleys 10, and includes a plurality of reinforcing cords 11, a belt body 12, and a plurality of connecting pins 13. The belt body 12 is made of a flexible material, and includes a strip body 121 that forms a loop to define an inner space 120, and a plurality of spaced-apart teeth 122 each of which extends from the strip body 121 toward the inner space 120. The strip body 121 has a first longitudinal end portion 123 and a second longitudinal end portion 124 that is opposite to the first longitudinal end portion 123. The first longitudinal end portion 123 has two extensions 126 that cooperatively define a groove 125 therebetween. Each of the extensions 126 has a plurality of first connecting holes 127 that are respectively aligned with the first connecting holes 127 of the other one of the extensions 126. The second longitudinal end portion 124 is inserted into the groove 125, and has a plurality of second connecting holes 128 that are respectively aligned with the first connecting holes 127 of each of the extensions 126 of the first longitudinal end portion 123. Each of the reinforcing cords 11 is embedded in the belt body 12, and has two opposite longitudinal ends that are respectively flush with distal ends of the first and second longitudinal end portions 123, 124. Each of the connecting pins 13 is inserted into a respective one of the second connecting holes 128 of the second longitudinal end portion 124 and the aligned one of the first connecting holes 127 of each of the extensions 126 so as to interconnect the first and second longitudinal end portions 123, 124.

    [0003] When the conventional transmission belt 1 is in operation, the reinforcing cords 11 are designed to bear about 80 percent of the tension in the conventional transmission belt 1. However, since each of the reinforcing cords 11 is configured to form an incomplete loop, the strength of the conventional transmission belt 1 may be limited by a binding force among the belt body 12 and the reinforcing cords 11.

    [0004] WO2005/049454 A2 and GB2290515A both disclose configurations of spliced conveyor belts showing some features of the transmission belt according to the present invention.

    [0005] GB651409A, in turn, discloses a belt connector.

    [0006] Therefore, an object of the disclosure is to provide a transmission belt that can alleviate the drawback of the prior art.

    [0007] According to the present invention which is defined in the appended claims, the transmission belt includes a belt body, two spaced-apart mounting axles and a reinforcing unit. The belt body forms a loop that defines an inner space. The mounting axles are embedded in the belt body. The reinforcing unit is embedded in the belt body. The reinforcing unit includes at least one cord that includes a plurality of winding segments and a plurality of connecting segments. The winding segments alternately extend around the mounting axles. Each of the connecting segments interconnects a corresponding pair of the winding segments that respectively extend around the mounting axles.

    [0008] Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:

    Figure 1 is a sectional view illustrating a conventional transmission belt;

    Figure 2 is a fragmentary exploded perspective view illustrating the conventional transmission belt;

    Figure 3 is a fragmentary perspective view illustrating the conventional transmission belt;

    Figure 4 is a fragmentary sectional view illustrating a first embodiment of the transmission belt according to the disclosure;

    Figure 5 is a fragmentary side view illustrating a bicycle with the first embodiment;

    Figure 6 is a fragmentary perspective view illustrating two mounting axles and a reinforcing unit of the first embodiment;

    Figure 7 is an exploded perspective view illustrating a connecting unit of the first embodiment;

    Figure 8 is fragmentary sectional view illustrating the first embodiment;

    Figure 9 is an exploded perspective view illustrating a connecting unit of an exemplary embodiment of the transmission belt which is not part of the present invention;

    Figure 10 is an exploded perspective view illustrating a connecting unit of a third exemplary embodiment of the transmission belt which is not part of the present invention;

    Figure 11 is a sectional view illustrating a fourth exemplary embodiment of the transmission belt which is not part of the present invention;

    Figure 12 is an exploded perspective view illustrating a connecting unit of a fifth exemplary embodiment of the transmission belt which is not part of the present invention; and

    Figure 13 is a partly exploded perspective view illustrating a connecting unit of a sixth exemplary embodiment of the transmission belt which is not part of the present invention.



    [0009] Before the disclosure is described in greater detail, it should be noted that where considered appropriate, reference numerals or terminal portions of reference numerals have been repeated among the figures to indicate corresponding or analogous elements, which may optionally have similar characteristics.

    [0010] Referring to Figures 4, 5, 6 and 7, the first embodiment of the transmission belt according to the disclosure is looped over a plurality of pulleys 9 (see Figure 5). The pulleys 9 may be mounted to a bicycle, a motorcycle or another machine. The first embodiment includes a belt body 2, two mounting axles 3 that are embedded in the belt body 2, a reinforcing unit 4 that is embedded in the belt body 2 and that extends around the mounting axles 3, and a connecting unit 5.

    [0011] The belt body 2 is made of a flexible material, such as natural rubber, synthetic rubber, polyurethanes, or the like. The belt body 2 includes a strip body 21 and a plurality of spaced-apart teeth 23. The strip body 21 can form a loop by interconnecting two longitudinal ends thereof, and has an inner surface 213 that defines an inner space (22, see Figure 4) when the strip body 21 forms the loop, an outer surface 212 that is opposite to the inner surface 213, two opposite side surfaces 211 each of which is connected between the inner and outer surfaces 213, 212, two end surfaces 214 that are respectively located at the longitudinal ends thereof, and two mounting holes 215 each of which is formed through the side surfaces 211.

    [0012] Each of the teeth 23 extends from the inner surface 213 of the strip body 21 toward the inner space 22 when the strip body 21 forms the loop. In this embodiment, each of the teeth 23 has a width that decreases away from the inner surface 213, and includes two spaced-apart inclined surfaces 231, and a flat surface 232 that is connected between the inclined surfaces 231. The shape of each of the teeth 23 is not limited to such.

    [0013] The mounting axles 3 are respectively disposed in the mounting holes 215 of the strip body 21 of the belt body 2. Each of the mounting axles 3 may be solid (cylindrical) or hollow (tubular), and is disposed adjacent to a respective one of the end surfaces 214 of the strip body 21. In this embodiment, each of the mounting axles 3 is hollow, and has an axial through hole 31.

    [0014] In this embodiment, the reinforcing unit 4 includes a cord that is made of metal or carbon fiber tow, and has a plurality of winding segments 41 that alternately extend around the mounting axles 3, and a plurality of connecting segments 42 each of which interconnects a corresponding pair of the winding segments 41 that respectively extend around the mounting axles 3. As such, the cord forms a plurality of loops that extend around the mounting axles 3. The connecting segments 42 may be spaced apart from each other, or may abut against each other. In a variation, the reinforcing unit 4 includes a plurality of cords each of which is configured as a flexible hoop. Each of the flexible hoops (i.e., the cords) has two winding segments 41 that respectively extend around the mounting axles 3, and two connecting segments 42 each of which interconnects of the winding segments 41.

    [0015] Referring to Figures 4, 7 and 8, the connecting unit 5 includes two connecting pins 51 that respectively extend through the axial through holes 31 of the mounting axles 3, and a connecting assembly 52 that interconnects the connecting pins 51. Each of the connecting pins 51 has an enlarged head portion 511, and an engaging portion 512 that is opposite to the head portion 511 and that has an engaging groove 513 formed in an outer surrounding surface thereof. The connecting assembly 52 includes two L-shaped connecting plates 521 and a clip 522. Each of the connecting plates 521 has a connecting section 523 that is disposed adjacent to a respective one of the side surfaces 211 of the strip body 21, and a wing section 524 that is disposed adjacent to the outer surface 212 of the strip body 21. Preferably, the wing section 524 of each of the connecting plates 521 is arc-shaped, so as to form a space for accommodating the belt body 2 when the strip body 21 forms the loop. The clip 522 abuts against one of the connecting plate 521, and has two legs 525 each of which engages the engaging grooves 513 of the connecting pins 51.

    [0016] In assembling, the connecting pins 51 are first inserted through the connecting section 523 of one of the connecting plates 521 so that the head portions 511 of the connecting pins 51 abut against an outer surface of the connecting section 523 of the one of the connecting plates 521. Then, the connecting pins 51 are respectively inserted through the axial through holes 31 of the mounting axles 3 and through the connecting section 523 of the other one of the connecting plates 521 before the legs 525 of the clip 522 engage the engaging grooves 513 of the connecting pins 51 so as to interconnect the longitudinal ends of the strip body 21 (i.e., to interconnect the mounting axles 3).

    [0017] To manufacture the first embodiment, the reinforcing unit 4 is first looped on the spaced-apart mounting axles 3. Then, the reinforcing unit 4 and the mounting axles 3 are disposed in a mold before the belt body 2 is formed in the mold by injection molding. Finally, the connecting unit 5 is assembled to interconnect the longitudinal ends of the strip body 21 to form the loop, as mentioned above.

    [0018] Referring to Figures 4, 6 and 8, since the reinforcing unit 4 extends around the mounting axles 3 to form at least one loop and since the connecting unit 5 firmly interconnects the longitudinal ends of the strip body 21, when the first embodiment is in operation (see Figure 5), the strength of the first embodiment may not be limited to the binding force between the reinforcing unit 4 and the belt body 2. Moreover, the connecting unit 5 can be easily assembled and de-assembled for mounting the first embodiment on pulleys.

    [0019] Referring to Figure 9, the second embodiment of the transmission belt according to the disclosure is similar to the first embodiment. The difference between the first and second embodiments resides in the connecting unit 5. The connecting unit 5 of the second embodiment includes two connecting pins 51 that respectively extend through the mounting axles 3, and a connecting assembly 52 that interconnects the connecting pins 51. The connecting assembly 52 includes two flat connecting plates 521 that are respectively disposed at two opposite sides of the belt body 2, and a clip 522 that engages the engaging grooves 513 of the connecting pins 51.

    [0020] Referring to figure 10, the third embodiment of the transmission belt according to the disclosure is similar to the first embodiment. The difference between the first and third embodiments resides in the connecting unit 5. The connecting unit 5 of the third embodiment includes two connecting pins 51 that respectively extend through the mounting axles 3, and a connecting assembly 52 that interconnects the connecting pins 51. The connecting assembly 52 includes two connecting plates 521 that are respectively disposed at two opposite sides of the belt body 2. Each of the connecting plates 521 has an insertion hole 526 that permits insertion of one of the connecting pins 51, and an engaging hole 527 that is engaged with the engaging portion 512 of the other one of the connecting pins 51.

    [0021] In assembling, each of the connecting pins 51 is first inserted through the insertion hole 526 of a respective one of the connecting plates 521 so that the head portion 511 thereof abuts against the respective one of the connecting plates 521. Then, the engaging portion 512 of each of the connecting pins 51 are inserted through the axial through hole 31 of a respective one of the mounting axles 3 and through the engaging hole 527 of the other one of the connecting plates 521. Finally, two opposite longitudinal ends of the belt body 2 are pulled away from each other, so that the engaging portions 512 of the connecting pins 51 are respectively engaged with the engaging holes 527 of the connecting plates 521.

    [0022] Referring to Figure 11, the fourth embodiment of the transmission belt according to the disclosure includes the belt body 2, the mounting axles 3 and the reinforcing unit 4. The mounting axles 3 and the reinforcing unit 4 of the fourth embodiment are substantially identical to those of the first embodiment. The strip body 21 of the belt body 2 of the fourth embodiment is configured as an integrally-formed hoop that defines the inner space 22. Each of the teeth 23 has a semi-circular shape. The connecting unit 5 (see Figures 4, 9 and 10) of the first to third embodiments can be assembled to the fourth embodiment to enhance the strength of the fourth embodiment.

    [0023] Referring Figure 12, the fifth embodiment of the transmission belt according to the disclosure is similar to the first embodiment. The difference between the first and fifth embodiments resides in the connecting unit 5. The connecting unit 5 of the fifth embodiment includes two connecting pins 51 that respectively extend through the axial through holes 31 of the mounting axles 3, and a connecting assembly 52 that interconnects the connecting pins 51. Each of the connecting pins 51 has two opposite engaging portions 512. The connecting assembly 52 includes a connecting plate 521 that has a C-shaped cross-section, and two clips 522. Each of the clips 522 is configured to be identical to the clip 522 of the first embodiment. The connecting plate 521 has two connecting sections 523 that are respectively disposed adjacent to two opposite sides of the belt body 2. Each of the connecting sections 523 is formed with two connecting holes 528 that are respectively aligned with the connecting holes 528 of the other one of the connecting sections 523. The connecting pins 51 respectively extend through the axial through holes 31 of the mounting axles 3 and through the connecting holes 528 of each of the connecting sections 523.Each of the clips 522 is engaged with an engaging portion of one of the connecting pins 51 and a corresponding engaging portion of the other one of the connecting pins 51.

    [0024] Referring to Figure 13, the connecting unit 5 of the sixth embodiment of the transmission belt according to the disclosure includes two connecting pins 51 and a connecting assembly 52. The connecting assembly 52 includes a connecting plate 521 that has a C-shaped cross-section, and two clips 522. In this embodiment, one of the connecting pins 51 is inseparably fixed to the connecting plate 521, and the other one of the connecting pins 51 is positioned relative to the connecting plate 521 by the clips 522.

    [0025] In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiments. It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to "one embodiment," "an embodiment," an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects.


    Claims

    1. A transmission belt adapted for use in a cycle, comprising:

    a belt body (2) forming a loop that defines an inner space (22);

    two spaced-apart mounting axles (3) embedded in said belt body (2); and

    a reinforcing unit (4) embedded in said belt body (2), said reinforcing unit (4) including at least one cord that has a plurality of winding segments (41) and a plurality of connecting segments (42), said winding segments (41) extending around said mounting axles (3), each of said connecting segments (42) interconnecting a corresponding pair of said winding segments (41) that respectively extend around said mounting axles (3);

    wherein said belt body (2) includes a strip body (21) that has two opposite end surfaces (214), said mounting axles (3) being respectively disposed adjacent to said end surfaces (214), said transmission belt further comprising a connecting unit (5) that interconnects said mounting axles (3) so that said strip body (21) forms a loop to define said inner space (22);

    wherein said strip body (21) has two opposite side surfaces (211), and two mounting holes (215) each of which is formed through said side surfaces (211) and permits a respective one of said mounting axles (3) to be disposed therein;

    wherein each of said mounting axles (3) is configured to be tubular, said connecting unit (5) including two connecting pins (51) that respectively extend through said mounting axles (3), and a connecting assembly (52) that interconnects said connecting pins (51); and

    wherein said strip body (21) further has an inner surface (213) that defines said inner space (22) and that is connected between said side surfaces (211), and an outer surface (212) that is opposite to said inner surface (213) and that is connected between said side surfaces (211),

    wherein said connecting assembly (52) includes two L-shaped connecting plates (521) that are respectively disposed adjacent to said side surfaces (211) and that permit said connecting pins (51) to extend therethrough, and a clip (522) that is engaged with said connecting pin (51) and that abuts against one of said connecting plates (521), and wherein

    each of said connecting plates (521) having a connecting section (523) that is disposed adjacent to a respective one of said side surfaces (211) of said strip body (21), and a wing section (524) that is disposed adjacent to said outer surface (212) of said strip body (21).


     
    2. The transmission belt as claimed in claim 1, further characterized in that said belt body (2) further includes a plurality of spaced-apart teeth (23) each of which extends from said strip body (21) toward said inner space (22).
     
    3. The transmission belt as claimed in any one of claims 1 and 2, characterized in that said reinforcing unit (4) including a plurality of said cords, each of said cord being configured as a flexible hoop and having two of said winding segments (41) that respectively extend around said mounting axles (3), and two of said connecting segments (42) each of which interconnects of said winding segments (41).
     
    4. The transmission belt as claimed in any one of claims 1 to 4, further characterized in that each of said connecting pins (51) has an enlarged head portion (511) that abuts against an outer surface of one of said connecting plates (521), and an engaging portion (512) that extends through the other one of said connecting plates (521) and that has an engaging groove (513) formed in an outer surrounding surface thereof, said clip (522) having two legs (525) each of which engages said engaging grooves (513) of said connecting pins (51).
     
    5. The transmission belt as claimed in any one of claims 1 to 4, further characterized in that said wing section (524) of each of said connecting plates (521) is arc-shaped, so as to form a space for accommodating said belt body (2) when said strip body (21) forms the loop.
     


    Ansprüche

    1. Transmissionsriemen, der zur Verwendung in einem Fahrrad angepasst ist, Folgendes umfassend:

    einen Riemenkörper (2), der eine Schleife bildet, die einen Innenraum (22) definiert;

    zwei beabstandete Montageachsen (3), die in dem Riemenkörper (2) eingebettet sind; und

    eine Verstärkungseinheit (4), die in dem Riemenkörper (2) eingebettet ist, wobei die Verstärkungseinheit (4) mindestens ein Kabel beinhaltet, das eine Vielzahl von Wicklungssegmenten (41) und eine Vielzahl von Verbindungssegmenten (42) aufweist, wobei sich die Wicklungssegmente (41) um die Montageachsen (3) herum erstrecken, wobei jedes der Verbindungssegmente (42) ein entsprechendes Paar der Wicklungssegmente (41), die sich jeweils um die Montageachsen (3) herum erstrecken, miteinander verbindet;

    wobei der Riemenkörper (2) einen Streifenkörper (21) beinhaltet, der zwei gegenüberliegende Endflächen (214) aufweist, wobei die Montageachsen (3) jeweils an die Endflächen (214) angrenzend angeordnet sind, wobei der Transmissionsriemen weiter eine Verbindungseinheit (5) umfasst, die die Montageachsen (3) miteinander verbindet, sodass der Streifenkörper (21) eine Schleife bildet, um den Innenraum (22) zu definieren;

    wobei der Streifenkörper (21) zwei gegenüberliegende Seitenflächen (211) und zwei Montagelöcher (215) aufweist, von denen jedes durch die Seitenflächen (211) hindurch gebildet ist, und es einer jeweiligen der Montageachsen (3) erlaubt, darin angeordnet zu werden;

    wobei jede der Montageachsen (3) konfiguriert ist, um rohrförmig zu sein, wobei die Verbindungseinheit (5) zwei Verbindungsstifte (51) beinhaltet, die sich jeweils durch die Montageachsen (3) hindurch erstrecken, und eine Verbindungsbaugruppe (52), die die Verbindungsstifte (51) miteinander verbindet; und

    wobei der Streifenkörper (21) weiter eine Innenfläche (213) aufweist, die den Innenraum (22) definiert, und die zwischen den Seitenflächen (211) verbunden ist, und eine Außenfläche (212), die gegenüberliegend zur Innenfläche (213) ist, und die zwischen den Seitenflächen (211) verbunden ist,

    wobei die Verbindungsbaugruppe (52) zwei L-förmige Verbindungsplatten (521) beinhaltet, die jeweils an die Seitenflächen (211) angrenzend angeordnet sind, und die es den Verbindungsstiften (51) erlauben, sich dort hindurch zu erstrecken, und einen Clip (522), der in den Verbindungsstift (51) eingeführt ist, und an einer der Verbindungsplatten (521) anliegt, und wobei

    jede der Verbindungsplatten (521) eine Verbindungssektion (523) aufweist, die an eine jeweilige der Seitenflächen (211) des Streifenkörpers (21) angrenzend angeordnet ist, und eine Flügelsektion (524), die an die Außenfläche (212) des Streifenkörpers (21) angrenzend angeordnet ist.


     
    2. Transmissionsriemen nach Anspruch 1, weiter dadurch gekennzeichnet, dass der Riemenkörper (2) weiter eine Vielzahl von beabstandeten Zähnen (23) beinhaltet, von denen sich jeder aus dem Streifenkörper (21) zum Innenraum (22) erstreckt.
     
    3. Transmissionsriemen nach einem der Ansprüche 1 und 2, dadurch gekennzeichnet, dass die Verstärkungseinheit (4) eine Vielzahl der Kabel beinhaltet, wobei jedes des Kabels als flexibler Reif konfiguriert ist, und zwei der Wicklungssegmente (41) aufweist, die sich jeweils um die Montageachsen (3) herum erstrecken, und zwei der Verbindungssegmente (42), von denen jedes die Wicklungssegmente (41) miteinander verbindet.
     
    4. Transmissionsriemen nach einem der Ansprüche 1 bis 4, weiter dadurch gekennzeichnet, dass jeder der Verbindungsstifte (51) einen erweiterten Kopfabschnitt (511) aufweist, der an einer Außenfläche von einer der Verbindungsplatten (521) anliegt, und einen Eingriffsabschnitt (512), der sich durch die andere der Verbindungsplatten (521) hindurch erstreckt, und die eine Eingriffsnut (513) aufweist, die in einer äußeren umgebenden Fläche davon gebildet ist, wobei der Clip (522) zwei Schenkel (525) aufweist, von denen jeder in die Eingriffsnuten (513) der Verbindungsstifte (51) eingreift.
     
    5. Transmissionsriemen nach einem der Ansprüche 1 bis 4, weiter dadurch gekennzeichnet, dass die Flügelsektion (524) jeder der Verbindungsplatten (521) bogenförmig ist, um einen Raum zum Aufnehmen des Riemenkörpers (2) zu bilden, wenn der Streifenkörper (21) die Schleife bildet.
     


    Revendications

    1. Courroie de transmission adaptée pour une utilisation dans un cycle, comprenant :

    un corps de courroie (2) formant une boucle qui définit un espace interne (22) ;

    deux axes de montage espacés (3) incorporés dans ledit corps de courroie (2) ; et

    une unité de renforcement (4) incorporée dans ledit corps de courroie (2), ladite unité de renforcement (4) comportant au moins un cordon qui a une pluralité de segments d'enroulement (41) et une pluralité de segments de liaison (42), lesdits segments d'enroulement (41) s'étendant autour desdits axes de montage (3), chacun desdits segments de liaison (42) reliant entre eux une paire correspondante desdits segments d'enroulement (41) qui s'étendent respectivement autour desdits axes de montage (3) ;

    dans laquelle ledit corps de courroie (2) comporte un corps de bande (21) qui a deux surfaces d'extrémité opposées (214), lesdits axes de montage (3) étant respectivement disposés de manière adjacente auxdites surfaces d'extrémité (214), ladite courroie de transmission comprenant en outre une unité de liaison (5) qui relie entre eux lesdits axes de montage (3) de sorte que ledit corps de bande (21) forme une boucle pour définir ledit espace interne (22) ;

    dans laquelle ledit corps de bande (21) a deux surfaces latérales opposées (211), et deux trous de montage (215) dont chacun est formé à travers lesdites surfaces latérales (211) et permet à un axe respectif desdits axes de montage (3) d'être disposé à l'intérieur de celui-ci ;

    dans laquelle chacun desdits axes de montage (3) est configuré pour être tubulaire, ladite unité de liaison (5) comportant deux broches de liaison (51) qui s'étendent respectivement à travers lesdits axes de montage (3), et un ensemble de liaison (52) qui relie entre elles lesdites broches de liaison (51) ; et

    dans laquelle ledit corps de bande (21) a en outre une surface interne (213) qui définit ledit espace interne (22) et qui est reliée entre lesdites surfaces latérales (211), et une surface externe (212) qui est opposée à ladite surface interne (213) et qui est reliée entre lesdites surfaces latérales (211),

    dans laquelle ledit ensemble de liaison (52) comporte deux plaques de liaison en forme de L (521) qui sont respectivement disposées de manière adjacente auxdites surfaces latérales (211) et qui permettent auxdites broches de liaison (51) de s'étendre à travers celles-ci, et une attache (522) qui est engagée avec ladite broche de liaison (51) et qui vient en butée contre l'une desdites plaques de liaison (521), et

    dans laquelle chacune desdites plaques de liaison (521) a une section de liaison (523) qui est disposée de manière adjacente à une surface respective desdites surfaces latérales (211) dudit corps de bande (21), et une section d'aile (524) qui est disposée de manière adjacente à ladite surface externe (212) dudit corps de bande (21).


     
    2. Courroie de transmission telle que revendiquée dans la revendication 1, caractérisée en outre en ce que ledit corps de courroie (2) comporte en outre une pluralité de dents espacées (23) dont chacune s'étend à partir dudit corps de bande (21) vers ledit espace interne (22).
     
    3. Courroie de transmission telle que revendiquée dans l'une quelconque des revendications 1 et 2, caractérisée en ce que ladite unité de renforcement (4) comporte une pluralité desdits cordons, chacun desdits cordons étant configuré comme un anneau flexible et ayant deux desdits segments d'enroulement (41) qui s'étendent respectivement autour desdits axes de montage (3), et deux desdits segments de liaison (42) dont chacun relie entre eux lesdits segments d'enroulement (41).
     
    4. Courroie de transmission telle que revendiquée dans l'une quelconque des revendications 1 à 4, caractérisée en outre en ce que chacune desdites broches de liaison (51) a une partie de tête agrandie (511) qui vient en butée contre une surface externe de l'une desdites plaques de liaison (521), et une partie d'engagement (512) qui s'étend à travers l'autre desdites plaques de liaison (521) et qui a une rainure d'engagement (513) formée dans une surface environnante externe de celle-ci, ladite attache (522) ayant deux pattes (525) dont chacune s'engage dans lesdites rainures d'engagement (513) desdites broches de liaison (51).
     
    5. Courroie de transmission telle que revendiquée dans l'une quelconque des revendications 1 à 4, caractérisée en outre en ce que ladite section d'aile (524) de chacune desdites plaques de liaison (521) est en forme d'arc, de manière à former un espace pour recevoir ledit corps de courroie (2) lorsque ledit corps de bande (21) forme la boucle.
     




    Drawing












































    Cited references

    REFERENCES CITED IN THE DESCRIPTION



    This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.

    Patent documents cited in the description