Trim removal system
A system for removing chips from a web is disclosed, the system having a rotationally variable speed shoe for receiving a chip, a rotationally constant speed transfer roll for receiving a portion of a web from a die and anvil system, with the shoe initially rotating at a constant speed, slowing to allow a portion of the web to rip away from the chip at a leading rotational edge of the chip, next increasing in rotational speed to allow the chip to rip away from the web at a trailing rotational edge of the chip.
1. A system for removing chips from a web, the system comprising:
a shoe for receiving a chip, said shoe rotating about an axis driven by a first shaft at a variable speed of revolution, said shoe rotating at a fixed distance from said axis throughout revolution;
a transfer roll for receiving a portion of a web, said transfer roll rotating about the said axis driven by a second shaft concentric with said first shaft at a constant speed of revolution, said transfer roll rotating at a fixed distance from said axis throughout revolution at said fixed distance from said axis;
said shoe initially rotating at said constant speed of revolution, next slowing in speed of revolution to allow said portion of said web to rip away from said chip at a leading rotational edge of said chip, next increasing in speed of revolution to allow said chip to rip away from said web at a trailing rotational edge of said chip.
2. The system of claim 1 , wherein said shoe is a vacuum shoe.
3. The system of claim 1 , wherein said transfer roll is a vacuum transfer roll.
4. The system of claim 1 , wherein said chip is discharged by said shoe into a discharge chute.
5. The system of claim 1 , wherein said portion of said web is discharged onto a conveyor.
6. The system of claim 1 , wherein said shoe and said transfer roll receive said web from an anvil and a die.
7. A system for removing chips from a web, the system comprising:
a shoe rotating about an axis at a variable speed of revolution for receiving a chip portion of a web;
a transfer roll rotating about the axis at a constant speed of revolution for receiving a non-chip portion of said web;
said shoe rotating about an axis at a variable speed of revolution coaxial with said transfer roll rotating about the axis at a constant speed of revolution said shoe being driven rotationally by a first shaft and said transfer roll being driven rotationally by a second shaft that is concentric with the first shaft;
said transfer roll rotating about the axis at a constant speed of revolution having a void space for receiving said rotationally variable speed shoe and configured to allow said shoe rotating about an axis at a variable speed of revolution to rotate relative to said transfer roll rotating about the axis at a constant speed of revolution;
said shoe initially rotating at said constant speed of revolution, next slowing in speed of revolution to allow said chip portion of said web to rip away from said non-chip portion of said web at a leading rotational edge of said chip, next increasing in speed of revolution to allow said chip portion of said web to rip away from said non-chip portion of said at a trailing rotational edge of said chip;
said shoe rotating about an axis at a variable speed of revolution having a peripheral surface of non-uniform radius.
8. The system of claim 7 , wherein said shoe rotating about an axis at a variable speed of revolution is a vacuum shoe.
9. The system of claim 7 , wherein said transfer roll is a vacuum transfer roll.
10. The system of claim 7 , wherein said chip portion is discharged by said shoe rotating about an axis at a variable speed of revolution into a discharge chute.
11. The system of claim 7 , wherein said non-chip portion of said web is discharged onto a conveyor.
12. The system of claim 7 , wherein said shoe rotating about an axis at a variable speed of revolution and said transfer roll receive said web from an anvil and a die.
13. The system of claim 7 , said peripheral surface of said shoe rotating about an axis at a variable speed of revolution having a first radius and a second radius, said first radius greater than said second radius, thereby forming discontinuities on said peripheral surface.