Claims
- 1. A machine for transferring discrete areas of material from a flexible carrier onto a substrate at locations spaced apart along the substrate, comprising:
a transfer station including first and second rollers between which said substrate and said carrier are moved, at least one contact area positioned around a circumference of the second roller and with respect to the first roller to firmly force the carrier against the substrate when positioned opposite said first roller and otherwise allowing relative movement between the carrier and substrate between said first and second rollers, means for moving said substrate through the transfer station with a first velocity profile, means for supplying and taking up said carrier on opposing sides of said transfer station with a second velocity profile that is a fraction less than unity of said first velocity profile, and means driven independently of the first and second rollers for simultaneously adjusting by substantially equal and opposite amounts path lengths followed by the carrier on opposing sides of the transfer station in order to move a segment of the carrier within the transfer station according to a third velocity profile having a velocity that is equal to that of the substrate when said at least one contact area is urging the carrier against the substrate but otherwise having a velocity that is significantly lower than that of the substrate, thereby to efficiently utilize the material from the carrier.
- 2. The machine of claim 1, wherein said first and second velocity profiles each consist of a substantially constant velocity.
- 3. The machine of claim 1, wherein said path length adjusting means includes means synchronized with the rotatable position of the second roller and the first velocity profile for adjusting the path lengths followed by the carrier on opposing sides of the transfer station.
- 4. The machine of claim 3, wherein the path length adjusting means includes an electric motor and means for controllably energizing said motor.
- 5. The machine of claim 4, wherein the motor energizing means includes a microprocessor based electronic control system.
- 6. The machine of claim 5, which additionally includes a position encoder mechanically coupled with the first roller and a position sensor coupled with said second roller, and further wherein said control system includes means receiving signals from the encoder and sensor for energizing said motor to cause the carrier to move within the transfer station with said third velocity profile.
- 7. The machine of claim 4, wherein said electric motor includes a stepper motor.
- 8. The machine of claim 4, wherein said electric motor includes a servo motor.
- 9. The machine of any one of claims 3-8, wherein said carrier path length adjusting means includes first and second guides carried on opposing sides of the transfer station in the path of the carrier by a shuttle mechanism.
- 10. The machine of claim 9, wherein said shuttle mechanism includes means for moving said first and second guides back and forth along a substantially linear path.
- 11. The machine of claim 9, wherein said shuttle mechanism includes means for moving said first and second guides back and forth along arcuate paths.
- 12. A method of transferring discrete areas of material from a carrier onto areas spaced apart along the a substrate, comprising the steps of:
moving said substrate through a transfer station with a first velocity profile, providing a continuous length of said carrier and material at a second velocity profile, intermittently urging the carrier and material into contact with the substrate within the transfer station in a manner to transfer one of said discrete areas of material from the carrier onto one of said discrete areas of the substrate, and controlling an independent electric motor to move said carrier and material through the transfer station with a third velocity profile characterized by having a velocity equal to that of the first velocity profile when the carrier and material are in contact with the substrate while, during intervals between said contacts, decelerating the carrier and material to a minimum velocity and then accelerating the carrier and material.
- 13. The method of claim 12, wherein the material being transferred to the substrate is hot stamp foil.
- 14. A control system for a machine that includes first and second rollers between which a substrate and material carrier are passed, wherein the first roller includes at least one contact area positioned around a circumference thereof that transfers the material from said carrier to the substrate when rotated to a position opposite the second roller by urging an area of the carrier and material against the substrate, said control system comprising a mechanism driven by its own electric motor and electronic motor controller receiving position inputs from the rollers to move the material carrier between the first and second rollers at the speed of the substrate during intervals when the contact area is urging the material carrier against the substrate and at an independently controlled speed during intervals when the contact area is not urging the material carrier against the substrate such that an average speed of movement of the material carrier between the rollers is significantly less than an average speed of movement of the substrate between the rollers.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of provisional application no. 60/026,403, filed Sep. 20, 1996.
Continuations (1)
|
Number |
Date |
Country |
Parent |
08784752 |
Jan 1997 |
US |
Child |
09919424 |
Jul 2001 |
US |