PROCESS FOR MANUFACTURING TYRES FOR VEHICLE WHEELS
20180009186 · 2018-01-11
Assignee
Inventors
Cpc classification
B29D30/48
PERFORMING OPERATIONS; TRANSPORTING
B29D2030/486
PERFORMING OPERATIONS; TRANSPORTING
B29D30/0016
PERFORMING OPERATIONS; TRANSPORTING
B29D30/50
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29D30/48
PERFORMING OPERATIONS; TRANSPORTING
B29D30/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
In the building of a carcass structure for tyres of vehicle wheels, the step of reinforcing with a loop at least one annular anchoring structure (10) associated at the axially opposite end edges of a carcass ply is carried out. Said reinforcement step is carried out on at least one radially expandable/contractable service drum (107a, 107b) and comprises the steps of: setting the service drum (107a, 107b) to a predetermined radial dimension selected according to the fitting diameter of the tyre to be manufactured, depositing the loop (5) on the service drum (107a, 107b), loading the annular anchoring structure (10) onto the service drum (107a, 107b) in a radially outer position with respect to the loop (5), radially expanding the service drum (107a, 107b) up to lock in position the annular anchoring structure (10), rotating the service drum (107a, 107b) about a longitudinal axis (X-X) thereof and, during such a rotation, turning the loop (5) up about the annular anchoring structure (10).
Claims
1. Process for manufacturing tyres for vehicle wheels, comprising the step of building a carcass structure comprising at least one carcass ply associated, at axially opposite end edges thereof, with respective annular anchoring structures (10); wherein the step of building the carcass structure comprises the step of reinforcing said at least one annular anchoring structure (10) with a loop (5), said reinforcement step being carried out on at least one radially expandable/contractable service drum (107a, 107b) and comprising the steps of: a) setting the service drum (107a, 107b) to a predetermined operative radial dimension selected according to the fitting diameter of the tyre to be manufactured; b) depositing the loop (5) on an annular portion of an annular outer surface (108) of the service drum (107a, 107b); c) loading the annular anchoring structure (10) onto the service drum (107a, 107b) in a radially outer position with respect to the loop (5); d) radially expanding the service drum (107a, 107b) up to lock in position the annular anchoring structure (10); e) rotating the service drum (107a, 107b) about a longitudinal axis (X-X) thereof; f) during rotation of the service drum (107a, 107b), turning the loop (5) up about the annular anchoring structure (10) so as to form a reinforced annular anchoring structure (15); g) unloading the reinforced annular anchoring structure (15) from the service drum (107a, 107b).
2. Process according to claim 1, further comprising the step of positioning the reinforced annular anchoring structure (15) on the end edge of the carcass ply, wherein before carrying out said positioning step, the aforementioned steps from a) to g) are repeated for a predetermined number of times.
3. Process for reinforcing with a loop (5) an annular anchoring structure (10) of a tyre for vehicle wheels, comprising the steps of: a) setting a radially expandable/contractable service drum (107a, 107b) to a predetermined operative radial dimension selected according to the fitting diameter of the tyre to be manufactured; b) depositing the loop (5) on an annular portion of an annular outer surface (108) of the service drum (107a, 107b); c) loading the annular anchoring structure (10) onto the service drum (107a, 107b) in a radially outer position with respect to the loop (5); d) radially expanding the service drum (107a, 107b) up to lock in position the annular anchoring structure (10); e) rotating the service drum (107a, 107b) about a longitudinal axis (X-X) thereof; f) during rotation of the service drum (107a, 107b), turning the loop (5) up about the annular anchoring structure (10) so as to form a reinforced annular anchoring structure (15); g) unloading the reinforced annular anchoring structure (15) from the service drum (107a, 107b).
4. Process according to any one of the previous claims, wherein at least one of the aforementioned steps a) and b) is carried out at least in part simultaneously to at least part of at least one of the aforementioned steps c) to g).
5. Process according to any one of the previous claims, wherein the step of turning the loop (5) up is carried out at least in part simultaneously to at least part of at least one from step g) of unloading the reinforced annular anchoring structure (15) from the service drum (107a, 107b) and step c) of loading a new annular anchoring structure (10) onto the service drum (107a, 107b).
6. Process according to any one of the previous claims, wherein step c) of loading the annular anchoring structure (10) onto the service drum (107a, 107b) comprises the steps of: taking the annular anchoring structure (10) from a first storage member (101); moving the annular anchoring structure (10) from the first storage member (101) to the service drum (107a, 107b).
7. Process according to any one of the previous claims, wherein step g) of unloading the reinforced annular anchoring structure (15) from the service drum (107a, 107b) comprises the steps of: radially contracting the service drum (107a, 107b); taking the reinforced annular anchoring structure (15) from the service drum (107a, 107b); moving the reinforced annular anchoring structure (15) from the service drum (107a, 107b) to a second storage member (102).
8. Process according to any one of the previous claims, wherein step a) of setting the service drum (107a, 107b) to a predetermined operative radial dimension, comprises a step of radially expanding the service drum (107a, 107b) until the annular outer surface (108) thereof reaches a predetermined diameter selected according to the fitting diameter of the tyre to be manufactured.
9. Process according to any one of the previous claims, comprising, between step b) of depositing the loop (5) onto an annular portion of an annular outer surface (108) of the service drum (107a, 107b) and step c) of loading the annular anchoring structure (10) onto the service drum (107a, 107b) in a radially outer position with respect to the loop (5), a step of moving the service drum (107a, 107b) from a first work station defined at a feeding device (140) of the loop (5) to a second work station defined at a device (130) for loading/unloading the annular anchoring structure (10) onto/from the service drum (107a, 107b).
10. Process according to any one of the previous claims, wherein the loop (5) is obtained by cutting to size a band-like reinforcement element (50) and step b) of depositing the loop (5) onto an annular portion of an annular outer surface (108) of the service drum (107a, 107b) comprises the steps of: feeding the band-like reinforcement element (50) towards the service drum (107a, 107b); depositing a head portion of the band-like reinforcement element (50) onto the annular outer surface (108) of the service drum (107a, 107b); rotating the service drum (107a, 107b) by a predetermined angle (a) about the longitudinal axis (X-X) thereof; during said rotation, depositing new portions of the band-like reinforcement element (50) onto the annular outer surface (108) of the service drum (107a, 107b) until a tail portion of the band-like reinforcement element (50) is deposited.
11. Process according to claim 10, wherein said predetermined angle (α) is equal to at least 360° and wherein the band-like reinforcement element (50) is cut to size before being fed towards the service drum (107a, 107b).
12. Process according to claim 10 or 11, wherein, during the step of feeding the band-like reinforcement element (50) towards the service drum (107a, 107b), the step of associating an element (60) made from elastomeric material on an outer side surface of the band-like reinforcement element (50) is carried out.
13. Process according to claim 12, wherein said element (60) made from elastomeric material is arranged astride the outer side surface of the band-like reinforcement element (50).
14. Process according to claim 12, wherein said element (60) made from elastomeric material is associated cantilevered to the outer side surface of the band-like reinforcement element (50).
15. Process according to any one of the previous claims, wherein said annular portion of annular outer surface (108) of the service drum (107a, 107b) is in an offset axial position with respect to a transversal middle plane (C) of the service drum (107a, 107b).
16. Process according to any one of the previous claims, wherein step c) of loading the annular anchoring structure (10) onto the service drum (107a, 107b) comprises the step of positioning the annular anchoring structure (10) in a centred position with respect to a transversal middle plane (C) of the service drum (107a, 107b).
17. Process according to any one of the previous claims, wherein the step of turning the loop (5) up is carried out by moving in synchrony at least one pair of turning members (181, 182) with a combined motion along a first direction (A) parallel to the longitudinal axis (X-X) of the service drum (107a, 107b) and along a second direction (B) perpendicular to the longitudinal axis (X-X) of the service drum (107a, 107b), said turning members (181, 182) being arranged on opposite sides with respect to a transversal middle plane (C) of the service drum (107a, 107b).
18. Apparatus (100) for reinforcing with a loop (5) an annular anchoring structure (10) of a tyre for vehicle wheels, the apparatus comprising: at least one service drum (107a, 107b) having its longitudinal axis (X-X); a device (140) for feeding the loop (5) towards the service drum (107a, 107b); a device (130) for loading/unloading the annular anchoring structure (10) onto/from the service drum (107a, 107b); a device (180) for turning the loop (5) up about the annular anchoring structure (10), to form a reinforced annular anchoring structure (15); wherein the service drum (107a, 107b) is radially expandable/contractable with respect to said longitudinal axis (X-X) so as to be adjusted to a plurality of predetermined radial dimensions selected according to the fitting diameter of the tyre to be manufactured.
19. Apparatus (100) according to claim 18, wherein said at least one service drum (107a, 107b) is rotatable about said longitudinal axis (X-X).
20. Apparatus (100) according to claim 18 or 19, comprising two service drums (107a, 107b) arranged on opposite sides with respect to a pivoting axis (Z-Z) and integrally movable about said pivoting axis (Z-Z) between a first work station defined at the device (140) for feeding the loop (5) and a second work station defined at the device (130) for loading/unloading the annular anchoring structure (10).
21. Apparatus (100) according to any one of claims 18 to 20, wherein said at least one service drum (107a, 107b) comprises a central shaft (106a, 106b) arranged coaxially to said longitudinal axis (X-X) and a plurality of support members (110) arranged adjacent to one another in a circumferential direction about said central shaft (106a, 106b) and radially movable in synchrony between a position of maximum contraction and a position of maximum expansion.
22. Apparatus (100) according to claim 21, wherein each support member (110) comprises a central support body (111) and two opposite side support bodies (112), the side support bodies (112) being slidable in synchrony toward/away from the central support body (111) along a direction parallel to said longitudinal axis (X-X).
23. Apparatus (100) according to claim 22, wherein each side support body (112) of at least one of said support members (110) comprises a radial opening (112a) extending longitudinally up to a free end facing the central support body (111).
24. Apparatus (100) according to any one of claims 21 to 23, comprising a device (114) for adjusting the radial movement of said support members (111) and a device (120) for locking said support members (111) in position.
25. Apparatus (100) according to any one of claims 18 to 24, wherein the device (180) for turning the loop up comprises at least one pair of turning members (181, 182) arranged on opposite sides with respect to a transversal middle plane (C) of the service drum (107a, 107b).
26. Apparatus (100) according to claim 25, wherein such turning members (181, 182) are movable in synchrony with a combined motion along a first direction (A) parallel to the longitudinal axis (X-X) of the service drum (107a, 107b) and along a second direction (B) perpendicular to the longitudinal axis (X-X) of the service drum (107a, 107b).
27. Apparatus (100) according to any one of claims 18 to 26, wherein the device (130) for loading/unloading the annular anchoring structure (10) onto/from the service drum (107a, 107b) comprises at least one motorised arm (131, 135) for gripping and moving the annular anchoring structure (10).
28. Apparatus (100) according to any one of claims 18 to 27, further comprising a member (190) for depositing an element (60) made from elastomeric material on a side surface of the loop (5).
29. Apparatus (100) according to claim 28, wherein said depositing member (190) comprises a plurality of rollers (191-195) arranged in succession along a moving direction (M) of the loop (5), with at least some of the respective rotation axes being skew to one another, to deposit said element (60) made from elastomeric material astride the side surface of the loop (5).
30. Apparatus (100) according to any one of claims 18 to 29, further comprising a first storage member (101) for annular anchoring structures (10) to be loaded onto the service drum (107a, 107b) and a second storage member (102) for reinforced annular anchoring structures (15) unloaded from the service drum (107a, 107b).
31. Apparatus (100) according to claim 30, wherein said first and second storage member (101, 102) belong to a moving line (L) arranged in a position adjacent to the service drum (107a, 107b).
32. Apparatus (100) according to claim 30 or 31, further comprising a third storage member (103) for annular anchoring structures (10) to be loaded onto the service drum (107a, 107b), said third storage member (103) being arranged upstream of the first storage member (101).
Description
[0129] Further features and advantages of the present invention will appear more clearly from the following detailed description of some preferred embodiments of an apparatus and process according to the present invention, made with reference to the annexed drawings. In such drawings:
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[0132]
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[0139]
[0140]
[0141] In
[0142] As illustrated in detail in
[0143] By the apparatus 100 and the deposition process of the present invention, the loop 5 is associated with the annular anchoring structure 10 so as to fully wrap the latter along the entire circumferential extension thereof and so that the two end edges 5a, 5b of loop 5 are offset in the radial direction (
[0144] The reinforced annular anchoring structures 15 are intended to be used in the building of a carcass structure of the tyre. They are located in the tyre beads and are intended to keep the tyre well fixed to the anchoring seat specifically provided in the rim of the vehicle wheel.
[0145] The building of the tyre carcass structure comprises at least the initial step of depositing a carcass ply on a forming support. Subsequently, each reinforced annular anchoring structure 15 is associated with each of the opposite end edges of the carcass ply.
[0146] In the specific example illustrated in
[0147] Each storage member 101-103 is substantially shaped as a cylindrical drum provided with longitudinal grooves 104 (for clarity of illustration, the reference numeral 104 is associated with only some of the above grooves) adapted to allow the gripping of the annular anchoring structures 10 from the storage member 101 at the radially inner surface of the substantially circumferential annular insert 11. The above grooves 104 also allow the unloading of the reinforced annular anchoring structures 15 on the storage member 102.
[0148] The storage members 101-103 may however be of a different type than what described above; for example, they may be provided as baskets wherein the annular anchoring structures 10 or the reinforced annular anchoring structures 15 are stacked.
[0149] As illustrated in
[0150] The service member 105 comprises two opposite shafts 106a, 106b having respective longitudinal axes X-X which extend along a same direction perpendicular to axis Z-Z. Respective service shafts 107a, 107b, totally identical to one another, are mounted on shafts 106a, 106b, each service shaft being capable of rotating about the respective longitudinal axis X-X.
[0151] As better described hereinafter, the position of the service drums 107a, 107b may be exchanged to allow carrying out in a sequence, on each of them, the deposition of the loop 5, the positioning of the annular anchoring structure 10 in a radially outer position with respect to the loop 5 and the turning up of the loop 5 about the annular anchoring structure 10, so as to form the reinforced annular anchoring structure 15.
[0152] In particular, with reference to the position of the two service drums 107a, 107b illustrated in
[0153] As better described hereinafter, in a subsequent step of the process of the present invention, the service drums 107a, 107b are moved integrally in rotation about the pivoting axis Z-Z exchanging their position; the service drum 107a therefore moves in the operating position occupied in
[0154] The use of two service drums 107a, 107b allows carrying out at least part of the steps carried out at the service drum 107a simultaneously with at least part of the steps carried out on the service drum 107b.
[0155] Apparatus 100 of the present invention shall be described hereinafter with reference to the operating position of the service drums 107a, 107b illustrated in
[0156] With reference to such figure, a device 130 for loading the annular anchoring structure 10 on the service drum 107b and unloading the reinforced annular anchoring structure 15 from the service drum 107b is operatively interposed between the storage members 101, 102 and 103 and the service member 105.
[0157] In particular, device 130 comprises a first motorised arm 131 which can be moved with articulated motion between the storage member 101 and the service member 105 for taking the annular anchoring structure 10 from the storage member 101 and loading it on the service drum 107b. Device 130 also comprises a second motorised arm 135 which can be moved with articulated motion between the service member 105 and the storage member 102 of the reinforced annular anchoring structures 15 for unloading the reinforced annular anchoring structure 15 from the service drum 107b and placing it on the storage member 102.
[0158] The motorised arm 131 is rotatable about a rotation axis Z′-Z′ parallel to the rotation axis of the service member 105 and comprises, at a free end thereof, a gripping member 132 of the annular anchoring structure 10. Likewise, the motorised arm 135 is rotatable about the above rotation axis Z′-Z′ and comprises, at a free end thereof, a gripping member 136 of the reinforced annular anchoring structure 15.
[0159]
[0160] The gripping members 132 and 136 are identical. For simplicity of description and clarity of illustration, only one of them is described hereinafter (in particular the gripping member 132), it being understood that the elements described below with reference to such a gripping member are also provided in the gripping member 136. Therefore, what said below with reference to the gripping member 132 also applies to the gripping member 136.
[0161] The gripping member 132 is rotatable with respect to a longitudinal extension axis Y-Y of the motorised arm 131 and is linearly movable in both directions along a direction perpendicular to said axis Y-Y (such direction is indicated in
[0162] The gripping member 132 comprises a plurality of gripping and centring arms 133 (for clarity of illustration, numeral reference 133 is associated to only one of the above arms) equally spaced in a circumferential direction with respect to a central axis of the gripping member 132 and radially movable, in a synchronous manner, with respect to the above central axis. Such radial movement allows gripping, centring and unloading the annular anchoring structure 10.
[0163] Opposite to the device 130 for loading (unloading) the annular anchoring structures 10 (reinforced annular anchoring structures 15), apparatus 100 comprises a device for depositing the loop 5 on the service drum 107a.
[0164] The loop 5 is obtained by cutting to size a band-like reinforcement element 50 previously collected on a reel 51. As illustrated in
[0165] Reel 51, diverter rollers 52 and 53, the first contrast roller 54 and the first winding roller 55 are preferably housed inside a support frame 20 arranged in a position adjacent the service member 105.
[0166] The feeding device 140 comprises, downstream of the second diverter roller 53, an output portion 145 supported cantilevered from the frame 20 and suitably oriented towards the annular outer surface 108 of the service drum 107a.
[0167] In particular, the output portion 145 of the feeding device 140 is tilted by a predetermined angle with respect to a horizontal plane and points from top downwards on the annular outer surface 108 of the service drum 107a.
[0168] The feeding of the band-like reinforcement element 50 towards the service drum 107a is obtained by a device 160 for capturing and moving the band-like reinforcement element 50.
[0169] In the embodiment shown in
[0170] More specifically, according to a preferred embodiment, suction cups 161 carry the head of loop 5 from the cutting zone to the service drum 107a. A depositing roller (not shown in the figures), preferably made from elastomeric material, is rested onto the head of loop 5, and after the suction cups 161 have released the grip on the loop 5, the service drum 107a starts rotating. The pressure the depositing roller creates on loop 5 during the deposition ensures the friction/adhesion between loop 5 and service drum 107a, necessary for winding the loop 5 on the service drum itself, thus carrying out the deposition step.
[0171] As an alternative to suction cups 161 it is possible to use suction members or, if the band-like reinforcement element 50 comprises metal cords, an electromagnet device, all of the conventional type.
[0172] Apparatus 100 of the present invention further comprises a cutting member 170 of the band-like reinforcement element 50. The cutting member 170 is arranged at the output portion 145 of the feeding device 140 of the band-like reinforcement element 50 and comprises a disc blade 172 of the conventional type.
[0173] Upstream of the output portion 145 of the feeding device 140, apparatus 100 of the present invention comprises a member 190 for depositing an element of an elastomeric material 60 on an outer surface (with respect to the upward direction of axis Z-Z, that is in the direction away from the support plane of the feeding device 140) of the band-like reinforcement element 50. As illustrated in
[0174] The element of elastomeric material 60, which is also associated with a service fabric, is collected in a reel 61 housed in the support frame 20. Thanks to the interaction provided by a second contrast roller 64, the service fabric leaves the element of elastomeric material 60 and is collected on a second winding roller 65. After that, the element of elastomeric material 60 unwound from the above reel 61 is deviated by the diverter roller 52 and, by means of the member 190, it is suitably positioned on the outer side surface of the band-like reinforcement element 50 (
[0175] In the preferred embodiment of apparatus 100, the element of elastomeric material 60 is arranged astride the outer side surface of the band-like reinforcement element 50, so as to take the configuration shown in
[0176] In any case, the element of elastomeric material 60 is coupled to the end edge 5b of loop 5 which is intended, when loop 5 is turned up about the annular anchoring structure 10, to be in a radially outer position with respect to the other end edge 5a.
[0177] With reference to
[0178] In particular, as also illustrated in
[0179] The particular arrangement of rollers 191-195 allows depositing the element of elastomeric material 60 astride the outer side surface of the band-like reinforcement element 50 while the latter is fed towards the service drum 107a.
[0180] According to the present invention, each of the service drums 107a, 107b is radially expandable/contractable so as to be set to a plurality of predetermined radial dimensions selected according to the tyre to be manufactured.
[0181] For simplicity of description, only the service drum 107a shall be described hereinafter, it being understood that what said also applies to the service drum 107b.
[0182] With reference to
[0183] Preferably, the support members 110 are at least eight. More preferably, such members are in a number comprised between twelve and twenty-four.
[0184] Each support member 110 comprises a central support body 111 and two opposite side support bodies 112 arranged at opposite sides with respect to the central body 111 along the circumferential direction. Such members define the annular outer surface 108 of the service drum 107a.
[0185] The central support body 111 comprises a fork-like radially inner portion 111a and a radially outer portion 111b which supports the loop 5 (
[0186] The two side support bodies 112 are slidingly mounted on a guide 113 which extends parallel to axis X-X and which is integral to the radially outer portion 111b of the central support body 111. The side support bodies 112 can therefore be moved parallel to the rotation axis X-X of the service drum 107a towards one other and away from one another with respect to the central support body 111.
[0187] As shown in
[0188] The radial movement of the support members 110 is achieved by means of a specifically provided adjustment device 114 described hereinafter.
[0189] Such adjustment device 114 comprises an annular flange 115 fitted on the shaft 106a. Such flange 115 is integral in rotation with the shaft 106a. Respective helically-shaped sliding guides 116 are formed on the opposite side faces of flange 115. In particular, such guides 116 are shaped according to an Archimedes spiral.
[0190] The central support body 111, at each arm of the fork portion 111a, carries a pin 117 housed in a respective sliding guide 116. The fork portion 111a, moreover, is integrally associated with a pair of sliding blocks 118 (only one of which is shown in
[0191] One of the sliding guides 119 may be selectively made integral in rotation with shaft 106a; in such configuration, a predetermined angular movement of shaft 106a causes a predetermined radial movement of each support member 111.
[0192] In order to keep the support members 110 in the desired radial position, apparatus 100 of the present invention comprises a locking device 120 active on one of the support members 110, as shown always in
[0193] The locking device 120 comprises a calibration flange 121 fitted on the shaft 106a so as to be integral in rotation with the latter. As shown in
[0194] The locking device 120 further comprises a cylindrical pin 123 slidingly associated, through a spring 124, to a sleeve 123a integral to the radially extended sliding guide 119 and pivotally mounted on the shaft 106a by the interposition of a pair of rolling bearings 119a.
[0195] In particular, spring 124 is a compression spring interposed between a free end surface of sleeve 123a and an abutment flange 125 integral to pin 123.
[0196] Pin 123 is housed in one of slits 122 and comprises, opposite to the spring 124 with respect to the abutment flange 125, a slit 126 extending by only part of the circumferential extension of the pin itself.
[0197] The locking device 120 further comprises, opposite to the sleeve 123a with respect to the pin 123, a pneumatic cylinder 127 adapted to control the movement of pin 123, in opposition to the elastic action exerted by spring 124, between a first operating position, shown in
[0198] In the position of
[0199] On the contrary, in the position of
[0200] Apparatus 100 further comprises, at the position occupied by the service drum 107b, a device 180 for turning loop 5 up about the annular anchoring structure 10.
[0201] As shown in
[0202] Rollers 181 therefore are axially and radially movable in a synchronous manner with respect to the service drum 107b along a path that reproduces the profile of the annular anchoring structure 10. The above synchronised radial movement of rollers 181 allows loop 5 to be turned up about the annular anchoring structure 10 for forming the reinforced annular anchoring structure 15.
[0203] Each roller 181 preferably has a conical shape and is idly rotatable about a rotation axis R which is tilted with respect to the longitudinal axis X-X of the drum. The rotation of rollers 181 about the respective axes R takes place by the effect of the dragging action exerted by loop 5 when the service drum 107b is made to rotate about its longitudinal axis X-X.
[0204]
[0205] In the step shown in
[0206]
[0207]
[0208]
[0209] Rollers 182 are each defined by a plurality of small rollers (all indicated with reference numeral 183) arranged circumferentially one next to the other at a plurality of circumferences with respect to an axis T perpendicular to the longitudinal axis X-X of the service drum 107b. Rollers 183 are therefore arranged on a base element 184 along a plurality of rays around axis T. They are mounted on the base element 184 through the interposition of respective bearings 185.
[0210] The movement of rollers 182 for carrying out the turning up of loop 5 about the annular anchoring structure 10 is identical to that described above with reference to rollers 181. They are therefore moved in a synchronous manner with combined motion along directions A and B following the profile of the annular anchoring structure 10. The rotation of rollers 183 takes place by the effect of the dragging action exerted by loop 5 when the service drum 107b is made to rotate about its longitudinal axis X-X.
[0211] With reference first to
[0212] In a first process step, the support members 110 of the service drum 107a are radially moved for setting the service drum 107a to a radial position selected on the basis of the fitting diameter of the tyre to be manufactured.
[0213] During the execution of this setting step, pin 123 of the locking device 120 is in the position shown in
[0214] During the execution of this step, the side support members 112 of support members 110 are close to the respective central support members 111, so as to define a substantially continuous annular outer surface 108 of the service drum 107a in the circumferential direction.
[0215] Once the service drum 107a has been set to the desired radial dimension, the locking device 120 is actuated moving pin 123 to the position of
[0216] Subsequent to the actuation of the locking device 120, the feeding of loop 5 on the annular outer surface 108 of the service drum 107a may begin.
[0217] In this step, a head portion of the band-like reinforcement element 50 is captured by suction cups 161 and moved onto the annular outer surface 108 of the service drum 107a.
[0218] The unwinding of the band-like reinforcement element 50 from reel 51 is caused by the movement of the band-like reinforcement element 50 towards the service drum 107a.
[0219] The service drum 107a is now moved in rotation about axis X-X. Because of the sticking of the head portion of the band-like reinforcement element 50 with the annular outer surface 108 of the service drum 107a, the band-like reinforcement element 50 is forced to follow the rotation of the service drum 107a; subsequent portions of band-like reinforcement element 50 are thus deposited on the annular outer surface 108 of the service drum 107a.
[0220] The service drum 107a is made to rotate by a predetermined angle a which is preferably comprised between 270° and 360°. Upon reaching such angle, the rotation of the service drum 107a is stopped and the band-like reinforcement element 50 is cut, thus obtaining a piece of band-like reinforcement element 50 which, by most of its longitudinal extension is associated with the annular outer surface 108 of the service drum 107a and which comprises a tail portion not yet deposited on the above annular outer surface 108.
[0221] At the end of the cut, the service drum 107a is set in rotation again at least up to completing one full revolution. During such rotation, the tail portion of the band-like reinforcement element 50 is deposited onto the annular outer surface 108 of the service drum 107a.
[0222] As an alternative to the process described above which provides for the cutting of the reinforcement element after most of the band-like reinforcement element 50 has been deposited on the annular outer surface 108 of the service drum 107a, a process can be provided wherein the band-like reinforcement element 50 is cut to size before being fed towards the service drum 107a. In this case, deposition of the band-like reinforcement element 50 onto the annular outer surface 108 of the service drum occurs in a continuous manner while the service drum 107a rotates by an angle at least equal to 360°.
[0223] During all the step of feeding the band-like reinforcement element 50 on the service drum 107a, member 190 applies the element made from elastomeric material 60 astride of the outer side surface of the band-like reinforcement element 50, as shown in
[0224] The unwinding of the element of elastomeric material 60 from reel 61 is preferably caused by the above movement of the band-like reinforcement element 50 towards the service drum 107a.
[0225] Preferably, the loop 5 is deposited on an annular portion of the annular outer surface 108 of the service drum 107a which is not centred with respect to a transversal middle plane C of the service drum 107a.
[0226] Once loop 5 has been deposited on the service drum 107a, the service member 105 is made to rotate about the pivoting axis Z-Z up to exchange the position of service drum 107a with service drum 107b.
[0227] After that, an annular anchoring structure 10 is loaded on the service drum 107a in a centred position with respect to the transversal middle plane C of the service drum 107a. The annular anchoring structure 10 is taken from the storage member 101 by the gripping member 132.
[0228] In particular, during the execution of such step, the motorised arm 131 of the gripping member 132 is brought to a front position with respect to the storage member 101 and is moved along direction P to insert arms 133 into grooves 104. The grip of the annular anchoring structure 10 takes place at the radially innermost surface thereof by the radial expansion of arms 133.
[0229] The motorised arm 131 is then brought to the service drum 107a. During such movement, the annular anchoring structure 10 is centred on the gripping member 132; such centring is obtained by radially moving in a synchronous manner the centring arms 133.
[0230] When the gripping member 132 is at the service drum 107a, it fits the annular anchoring structure 10 on the service drum 107a. The unloading of the annular anchoring structure 10 is obtained by retracting in a synchronous manner arms 133 of the gripping member 132.
[0231] The motorised arm 131, once the annular anchoring structure 10 has been unloaded on the service drum 107a, is moved towards the storage member 101, so as to be ready to take a new annular anchoring structure 10.
[0232] Following the positioning of the annular anchoring structure 10 onto the service drum 107a, the latter is made to radially expand to lock the annular anchoring structure into position before turning loop 5 up.
[0233] To this end, the locking device 120 is deactivated returning pin 123 in the position shown in
[0234] At this point, the locking device 120 is actuated again moving pin 123 to the position of
[0235] Loop 5 can now be turned up about the annular anchoring structure 10.
[0236] In a first step of the turning up process, rollers 181 are inserted from the top through the radial openings 112a of the side support members 112 to move to a radially inner position with respect to the side support members 112, as shown in
[0237] In a subsequent step, shown in
[0238] In an even subsequent step, shown in
[0239] At the end of this last step, rollers 181 have completed the turning up of loop 5, thus obtaining the reinforced annular anchoring structure 15.
[0240] Once the turning up of loop 5 has been completed, the reinforced annular anchoring structure 15 is taken from the service drum 107a and brought onto the storage member 102.
[0241] In such step, the service drum 107a is radially contracted to unload the reinforced annular anchoring structure 15. Such contraction occurs by moving pin 123 of the locking device 120 to the position shown in
[0242] The motorised arm 135 in the meantime has been moved up to position itself close to the service drum 107a, wherefrom it takes the reinforced annular anchoring structure 15. Taking of the reinforced annular anchoring structure 15 occurs by synchronously expanding arms 133 of the gripping member 136. In the meantime, the side support members 112 of the service drum 107a move close to the respective central support members 111.
[0243] After that, the motorised arm 135 is moved up to position itself close to the storage member 102. When the gripping member 136 is placed in front of the storage member 102, it is moved along direction P so as to insert arms 133 in grooves 104. The reinforced annular anchoring structure 15 is then unloaded on the storage member 102. Such unloading is obtained by synchronously retracting arms 133.
[0244] The motorised arm 135, once the annular anchoring structure 15 has been unloaded on the storage member 102, is moved towards the service drum 107a, so as to be ready to take a new reinforced annular anchoring structure 15.
[0245] During the movement of the motorised arm 135 towards the storage member 102, the service member 105 is made to rotate about the pivoting axis Z-Z to exchange again the position of service drum 107a with service drum 107b. At this point, apparatus 100 is ready to repeat the process described above.
[0246] According to the present invention, while the setting of the service drum 107a and/or the deposition of loop 5 on service drum 107a are carried out, at least part of the step of positioning an annular anchoring structure 10 on a loop 5 previously deposited on the service drum 107b and/or of the step of turning loop 5 up about the annular anchoring structure 10 for forming a reinforced annular anchoring structure 15 are carried out on service drum 107b. When position of the service drums 107a, 107b is exchanged, positioning of a new annular anchoring structure 10 and turning up of loop 5 about such annular anchoring structure 10 for forming a new reinforced annular anchoring structure 15 are carried out on the service drum 107a (that at this point is in the position occupied by service drum 107b in
[0247] Moreover, while the turning up of loop 5 is carried out, the loading/unloading device 130 deposits the reinforced annular anchoring structure 15 on the storage member 102 and takes a new annular anchoring structure 10 from the storage member 101.
[0248] The process described above may be repeated a predetermined number of times for forming, starting from a plurality of annular anchoring structures 10, a corresponding plurality of reinforced annular anchoring structures 15 to be used in subsequent process for building carcass structures for tyres for vehicle wheels.
[0249] From the above description it is clear that the process of the present invention allows carrying out the looping of annular anchoring structures having different radial dimensions with a single apparatus as described above.
[0250] It is clear that a man skilled in the art may make further changes and variants to the invention described hereinbefore in order to meet specific and incidental application requirements, changes and variants in any case falling within the scope of protection defined in the following claims.