Claims
- 1. A method for advancing a web to a nip formed by a pair of main feed rollers powered by a main motor and utilizing a normally deenergized auxiliary motor, a pair of input rollers normally displaced from one another and driven by the auxiliary motor and a sensor located on a downstream side of said input rollers for providing a first signal when a web reaches the sensor, comprising the steps of:
- (a) providing a gap between said input rollers;
- (b) inserting a web into said gap;
- (c) employing said sensor to detect when said web moves adjacent to said sensor thereby indicating that the web has entered the gap;
- (d) moving the input rollers toward engagement with one another when the sensor indicates that a web has entered said gap;
- (e) energizing said auxiliary motor a first given time interval after completion of step (d); and
- (f) deenergizing said auxiliary motor after a given time interval sufficient to assure that the web is fed to said nip.
- 2. A method for advancing a web to a nip formed by a pair of main feed rollers powered by a normally energized main motor and utilizing a normally deenergized auxiliary motor, a pair of input rollers normally displaced from one another and a sensor for providing a signal when a web reaches a given position comprising the steps of:
- (a) providing a gap between said input rollers;
- (b) inserting a web into said gap;
- (c) employing said sensor to detect when said web moves adjacent to said sensor thereby indicating that the web has entered the gap;
- (d) moving the input rollers toward engagement with one another when the sensor indicates that a web has moved into said gap;
- (e) energizing said auxiliary motor a first given time after completion of step (d) to assure that the web has been fed to the nip;
- (f) deenergizing said auxiliary motor after a given time interval.
- 3. The method of claim 1 further comprising:
- employing the sensor to detect an absence of a web at the location of said sensor and separating the input rollers when the sensor detects an absence of the web at the location of said sensor to prepare the input rollers for insertion of a new web.
- 4. Apparatus for advancing a web to a nip formed by a pair of main feed rollers, driven by a main motor, comprising:
- a pair of input rollers;
- said input rollers being movable between an engaged and a disengaged position;
- an auxiliary motor for driving said input rollers;
- a sensor for generating an output responsive to presence or in absence of a web at a given position;
- operating means for moving said input rollers to said engaged position responsive to an output of said sensor in a presence of a web;
- said operating means including means for energizing said auxiliary motor when said input rollers have moved to said engaged position; and
- means for deenergizing said auxiliary motor after an interval sufficient to feed said web to said nip.
- 5. The apparatus of claim 4 wherein said main motor is normally energized to enable driving of said web by said main feed rollers upon movement of the main feed rollers to the engaged position.
- 6. The apparatus of claim 4 wherein said main motor is normally energized to enable feeding of a web by the main feed rollers upon their engagement.
- 7. The apparatus of claim 4 further comprising means for guiding a web from said input rollers to said main feed rollers, said guide means preventing an operator from coming into contact with the input rollers.
- 8. The apparatus of claim 4 further comprising means for moving the main feed rollers toward engagement a predetermined time after energization of the auxiliary motor sufficient to assure movement of a web driven by the input rollers to enter into a gap between the main feed rollers.
- 9. Apparatus for feeding a web into a feed nip formed by a pair of main feed rollers driven by a main motor to feed a web to a web feeding and creasing assembly, comprising:
- a pair of input rollers for advancing a web to the main feed rollers and an auxiliary motor for rotating said input rollers and being energized independently of the main motor to insert a web into the feed nip formed by the main feed rollers, said auxiliary motor being energized for a time interval sufficient to enable a portion of the web being fed by said input rollers to enter said feed nip.
- 10. The apparatus of claim 9 further comprising means for deenergizing the auxiliary motor at an end of said time interval.
- 11. The apparatus of claim 10 further comprising means for separating said input rollers when said sensor detects that no web is present in a nip of said input rollers.
- 12. The apparatus of claim 11 further comprising means separating said main feed rollers when said input rollers are separated.
- 13. The apparatus of claim 9 further comprising mean for preventing the input rollers from rotating in a direction opposite a feed direction.
- 14. A device for feeding a free end of a web into a nip formed by a first pair of main feed rollers driven by a main motor for feeding a web in a given direction comprising:
- a pair of initial feed rollers including a first roller and a second movably mounted roller;
- a first drive assembly for selectively moving said second roller between a first position engaging said first roller and a second position displaced from said first roller;
- a proximity sensor for sensing the presence or absence of a web;
- said drive assembly moving the second roller to said second position when said sensor detects an absence of a web to facilitate insertion of a free end of a web between said first and second rollers and moving said second roller to said first position when said sensor detects a presence of a web;
- an auxiliary motor independent of said main motor being activated to rotate said first roller when said second roller is moved to said first position;
- one of said first pair of main feed rollers being driven by said main motor and one another of said first pair of main feed rollers being movably mounted; and
- means for normally retaining said movably mounted main feed roller displaced from said one of said pair of main feed rollers.
- 15. The device of claim 14 further comprising:
- a second drive assembly for moving said second main feed roller from a position normally displaced from said first main feed roller after a time interval the web has entered between said first and second feed rollers.
- 16. The device of claim 14 wherein said first motor is a small, compact motor.
- 17. The device of claim 14 wherein said first motor is smaller than said second motor.
- 18. The device of claim 14 wherein at least one of said first and second initial feed rollers is provided with a one-way clutch to prevent a web in said initial feed nip from moving in a direction opposite said given direction.
- 19. The device of claim 18 wherein tension means is provided for maintaining a given tension in a web extending between a web supply roll and said initial feed nip.
- 20. The device of claim 18 herein said main feed rollers move a web through said main feed nip in an upward direction.
- 21. Apparatus for wrapping a bundle comprising:
- means for conveying a signature bundle along a substantially horizontal path and toward and through a wrapping station;
- means arranged beneath said path for feeding an elongated wrapping sheet in a generally upward direction so as to cross said path;
- means for causing the wrapping sheet to wrap about a portion of the bundle;
- said means for feeding being comprised of a first pair of main feed rollers for feeding the wrapping sheet in said upward direction comprising:
- a second pair of initial feed rollers positioned upstream of said pair of main feed rollers and including a first roller and a second mounted roller;
- a first drive assembly for moving said second roller between a first position for providing an initial feed nip with said first roller and a second position displaced from said first roller;
- a proximity sensor positioned in a sensing region located between said first and second pairs of rollers for sensing a presence of a wrapping sheet passing a sensing location adjacent to said sensor;
- said drive assembly moving the second roller to said second position when said sensor detects an absence of a wrapping sheet in said sensing region to facilitate insertion of a free end of a wrapping sheet between said first and second rollers and moving said second roller to said first position when said sensor detects a web in said sensing region;
- a motor being activated to rotate said first roller when said second roller is moved to said first position;
- one of said first pair of main feed rollers being driven by a second motor and a second one of said first pair of main feed rollers being movably mounted; and
- means for normally retaining said movably mounted main feed roller displaced from said first one of said pair of main feed rollers.
- 22. Apparatus for wrapping a bundle comprising:
- means for conveying a signature bundle along a substantially horizontal path and toward and through a wrapping station;
- feeding means comprising a pair of cooperating rollers arranged beneath said path and having a feeding nip for feeding an elongated wrapping sheet in a generally upward direction so as to cross said path;
- shaping means selectively engaging said wrapping sheet for shaping the wrapping sheet as it is being fed upwardly from said shaping means so that the wrapping sheet is sufficiently rigid and self-supporting to feed an end of the sheet to a point above the bundle;
- means for causing the wrapping sheet to wrap about a portion of the bundle; and
- means for selectively disengaging said shaping means from said web while said web continues to be fed by said feeding means to provide a bottom wrap.
- 23. The apparatus of claim 9 wherein said auxiliary motor is smaller than said main motor.
Parent Case Info
This application claims the benefit of U.S. Provisional Application No. 60/020,086, filed Jun. 13, 1996.
US Referenced Citations (6)