1. A method of rubber-coating an annular surface (2) of a tire toroidal body (3); the method comprising the steps of:
issuing a continuous rod (11) of elastomeric material from an emitting device (10);
feeding the rod (11) automatically to a user unit (8) by a feed line (15) comprising at least one powered portion (16; 18) and a take-up unit (21) arranged upstream from the powered portion (16; 18) to apply a tension to the rod (11) and to compensate for any difference in the travelling speed of rod (11) upstream and downstream from take-up unit (21); and
applying, at the user unit (8), the rod (11) to the annular surface (2) of the tire toroidal body (3);
wherein the step of feeding the rod (11) to the user unit (8) comprises the further steps of:
pushing, when the process is started for the first time, the rod by means of the emitting device (10) to move a front end portion of the rod (11) toward the powered portion (16; 18) of the feed line (15) along and above a supporting device (22) of the take unit (21) arranged upstream from the powered portion (16; 18), the supporting device (22) comprising a plurality of middle rollers (27) between a plurality of outside rollers (23) defining, for the rod (11), a coplanar first path (P1) of given fixed length;
keeping the supporting device (22) of the take-up unit (21) in a rest position that does not apply any tension to the rod (11) until the rod (11) is not firmly engaged by the powered portion (16; 18) arranged downstream from the take-up unit (21);
moving, once the front end portion of the rod (11) reaches and is engaged by the powered portion (16; 18) of the feed line (15), only the middle rollers (27) of the supporting device (22) to form a window (45) between the outside rollers (23) at an intermediate portion of the supporting device (22); and
deviating the rod (11) through the window (45) by means of a take-up device (40) that rests on the rod (11) to feed the rod (11) along a U-shaped second path (P2) extending inside the window (45) and comprising a bend (46) of variable length for tensioning the rod (11) once the front end portion of the rod (11) reaches and is engaged by the powered portion (16; 18) of the feed line (15).
2. A method as claimed in claim 1, wherein, when withdrawn from the first path (P1), said middle rollers (27) are retained by the rod (11) in a variable work position at said bend (46) to impart a given, substantially constant tension to the rod (11).
3. A method as claimed in claim 2, wherein, in said variable work position, said middle rollers (27) are supported by the rod (11) at the bend (46), and applies said tension by force of gravity.
4. A method as claimed in claim 2, wherein, in said variable work position, said middle rollers (27) apply said tension to the rod (11) at the bend (46) by virtue of thrust imparted to the middle rollers (27) by calibrated thrust means (30, 37; 47).
5. A method as claimed in claim 1, wherein the rod (11) is emitted by an extruder (10).
6. A method as claimed in claim 1, wherein the first path (P1) is substantially horizontal.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. Method of controlling the supply of material onto a conveyor belt from a material dispenser, the material dispenser including multiple material storage compartments each having at least two dispenser openings associated therewith and at least one dispenser gate movable over each dispenser opening between at least one flow-open position and a flow-closed position, the dispenser openings being disposed over the conveyor belt, the method comprising:
coupling a discharge control device to each dispenser gate so that each discharge control device is moveable with its associated dispenser gate relative to the material dispenser into at least one open-flow position, each discharge control device including at least one wiper that extends downwardly across the width of the conveyor belt;
the at least one wiper of each discharge control device leveling the top of at least some of the material dispensed onto the conveyor belt through the associated dispenser opening when the associated discharge control device is in an open-flow position;
fully opening all the dispenser gates of a first material storage compartment to allow material therein to be dispensed onto the conveyor belt;
determining when the first material storage compartment is empty;
closing all the dispenser gates of the first material storage compartment;
fully opening all the dispenser gates of a second material storage compartment;
determining when the second material storage compartment is empty;
closing all the dispenser gates of the second material storage compartment; and
fully opening all the dispenser gates of a third material storage compartment.
2. Method of automatically controlling the supply of material onto a conveyor belt from a material dispenser, the material dispenser including multiple material storage compartments each having at least one dispenser opening associated therewith and at least one dispenser gate movable over each dispenser opening between at least one flow-open position and a flow-closed position, the dispenser openings being disposed over the conveyor belt, the method comprising:
coupling a discharge control device to each dispenser gate so that each discharge control device is moveable with its associated dispenser gate relative to the material dispenser into at least one open-flow position, each discharge control device including at least one wiper that extends downwardly across the width of the conveyor belt;
the at least one wiper of each discharge control device leveling the top of at least some of the material dispensed onto the conveyor belt through the associated dispenser opening when the associated discharge control device is in an open-flow position;
associating at least one sensor with each material storage compartment;
an electronic controller communicating with each dispenser gate and sensor;
each sensor notifying the electronic controller when its associated material storage compartment is empty of material; and
the electronic controller directing the movement of one or more of the dispenser gates between positions based, at least partially, upon the presence or absence of material in one or more material storage compartments.
3. The method of claim 2 wherein each material storage compartment includes at least two dispenser openings and associated dispenser gates, further including the electronic controller closing all the dispenser gates of a material storage compartment upon receiving a notification from the associated sensor that the material storage compartment is empty.
4. The method of claim 2 further including
providing multiple material dispensers configured to provide material onto the conveyor belt, each material dispenser including multiple material storage compartments with at least one dispenser opening associated therewith and at least one dispenser gate movable over each dispenser opening between at least one flow-open and a flow-closed position;
associating at least one sensor with each material storage compartment;
the electronic controller communicating with each dispenser gate and sensor;
each sensor notifying the electronic controller when its associated material storage compartment is empty of material; and
the electronic controller directing the movement of at least one dispenser gate between positions based, at least partially, upon the presence or absence of material in one or more material storage compartments.
5. The method of claim 4 further including
the electronic controller being provided with the actual rate of discharge of material off the end of the conveyor belt and a desired rate of discharge of material off the end of the conveyor belt; and
the electronic controller directing the movement of one or more of the dispenser gates between positions based, at least partially, upon at least one among the presence or absence of material in at least one material storage compartment, the actual rate of discharge of material off the end of the conveyor belt and a desired rate of discharge of material off the end of the conveyor belt.
6. The method of claim 2 further including
an operator using a remote control device providing the electronic controller with an opening and closing sequence of the material storage compartments; and
the operator using the remote control device directing the opening andor closing of all gates associated with one or more particular material storage compartments.
7. Apparatus useful for assisting in controlling the discharge of material onto a conveyor belt from a material dispenser, the material dispenser including at least one dispenser opening through which the material is discharged, the apparatus comprising:
a carrier slideably engaged with the material dispenser, said carrier having left and right side rails and at least a first carrier opening formed therebetween,
said carrier in at least a first position being disposed below the material dispenser so that said first carrier opening is aligned at least partially below the dispenser opening of the material dispenser to allow material to flow from the material dispenser, through said first carrier opening and onto the conveyor belt,
said carrier including at least one wiper extending downwardly between said left and right side rails and at least partially over the width of the conveyor belt, said wiper being configured to establish the height of material dispensed on the conveyor belt when said carrier is in said first position and as the conveyor belt moves relative to the material dispenser and said carrier, said wiper including at least one elongated wiper base and at least one elongated wiper extension, said wiper base being rigidly secured to said left and right side rails and said wiper extension being adjustably secured to said wiper base, wherein the vertical position of said wiper extension relative to said wiper base may be adjusted to establish the height of material dispensed on the conveyor belt from the material dispenser when said carrier is in said first position and as the conveyor belt moves relative to the material dispenser and said carrier, whereby the height of the material dispensed on the conveyor belt may be selectively adjusted by adjusting the position of said wiper extension relative to said wiper base.