IP Library Granted Patent US 6,991,695
Granted Patent B2
US 6,991,695 · App. 10/268,118 · Granted Jan 31, 2006

Method for subdividing multilayer optical film cleanly and rapidly

Assignee: 3M Innovative Properties Company
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Quick Facts
Patent No.
US 6,991,695
App. No.
10/268,118
Granted
Jan 31, 2006
Kind
B2
Abstract

Polymeric multilayer optical films, and laminate bodies that include such films, are cut or subdivided into one or more discrete pieces by removably applying a first and second liner to opposed major surfaces of the multilayer optical film. Laser radiation is then directed at the multilayer optical film through the first liner in such a way as to produce cut lines that define a plurality of pieces of the first liner and of the multilayer optical film. Thereafter, the plurality of pieces of the first liner are removed from the plurality of pieces of the multilayer optical film while the pieces of multilayer optical film are supported by the second liner. Application of the first liner to the multilayer optical film can be accomplished with electrostatics.

Claims (45)

1. A method of subdividing a multilayer optical film body, comprising:

providing a multilayer optical film body comprising at least one multilayer optical film by unwinding a roll of the multilayer optical film body;

applying a first and second liner to opposed major surfaces of the multilayer optical film body wherein the first liner is applied to the multilayer optical film body electrostatically;

directing laser radiation at the multilayer optical film body through the first liner, the laser radiation being adapted to produce cut lines that define a plurality of pieces of the first liner and of the multilayer optical film body;

reducing the electrostatic attraction of the first liner to the multilayer optical film body;

removing the plurality of pieces of the first liner from the plurality of pieces of the multilayer optical film body while the pieces of multilayer optical film body are supported by the second liner; and

winding up the multilayer optical film body and the second liner into a roll.

2. The method of claim 1 , wherein the reducing step comprises passing the first liner and the multilayer optical film body proximate a neutralizer bar.

3. A method of subdividing a multilayer optical film body, comprising:

providing a multilayer optical film body comprising at least one multilayer optical film by unwinding a roll of the multilayer optical film body;

applying a first and second liner to opposed major surfaces of the multilayer optical film body, wherein the applying step comprises passing the first liner and the multilayer optical film body proximate a static bar;

directing laser radiation at the multilayer optical film body through the first liner, the laser radiation being adapted to produce cut lines that define a plurality of pieces of the first liner and of the multilayer optical film body;

removing the plurality of pieces of the first liner from the plurality of pieces of the multilayer optical film body while the pieces of multilayer optical film body are supported by the second liner; and

winding up the multilayer optical film body and the second liner into a roll after the directing and removing steps.

4. A method of subdividing a multilayer optical film body, comprising:

providing a multilayer optical film body comprising at least one multilayer optical film by unwinding a roll of the multilayer optical film body;

applying a first and second liner to opposed major surfaces of the multilayer optical film body;

directing laser radiation at the multilayer optical film body through the first liner, the laser radiation being adapted to produce cut lines that define a plurality of pieces of the first liner and of the multilayer optical film body;

removing the plurality of pieces of the first liner from the plurality of pieces of the multilayer optical film body while the pieces of multilayer optical film body are supported by the second liner; and

winding up the multilayer optical film body and the second liner into a roll after the directing and removing steps;

wherein the multilayer optical film body comprises a tearable outer layer, and wherein at least some of the cut lines are formed through the at least one multilayer optical film but not through the tearable outer layer.

5. A method of cutting a multilayer optical film body into a plurality of discrete pieces, comprising:

providing a multilayer optical film body comprising at least one multilayer optical film;

applying a first liner to the multilayer optical film body;

forming cut lines through the first liner and at least partially through the multilayer optical film body, the cut lines defining a plurality of discrete pieces;

removing the plurality of pieces of the first liner from the plurality of pieces of the multilayer optical film body;

supporting the multilayer optical film body with a second liner during at least the forming and removing steps; and

winding up the multilayer optical film body and the second liner into a roll after the forming and removing steps;

wherein the multilayer optical film body comprises a tearable outer layer, and wherein at least some of the cut lines are formed through the at least one multilayer optical film but not through the tearable outer layer.

6. A method of cutting a multilayer optical film body into a plurality of discrete pieces, comprising:

providing a multilayer optical film body comprising at least one multilayer optical film;

applying a first liner to the multilayer optical film body wherein the first liner is applied to the multilayer optical film body electrostatically;

forming cut lines through the first liner and at least partially through the multilayer optical film body, the cut lines defining a plurality of discrete pieces;

reducing the electrostatic attraction of the first liner to the multilayer optical film body before the removing step

removing the plurality of pieces of the first liner from the plurality of pieces of the multilayer optical film body;

supporting the multilayer optical film body with a second liner during at least the forming and removing steps; and

winding up the multilayer optical film body and the second liner into a roll after the forming and removing steps.

7. The method of claim 6 , wherein the reducing step comprises passing the first liner and the multilayer optical film body proximate a neutralizer bar.

8. A method of cutting a multilayer optical film body into a plurality of discrete pieces, comprising:

providing a multilayer optical film body comprising at least one multilayer optical film wherein the providing step comprises continuously unwinding a roll of the multilayer optical film body;

applying a first liner to the multilayer optical film body wherein the applying step comprises passing the first liner and the multilayer optical film body proximate a static bar;

forming cut lines through the first liner and at least partially through the multilayer optical film body, the cut lines defining a plurality of discrete pieces;

removing the plurality of pieces of the first liner from the plurality of pieces of the multilayer optical film body;

supporting the multilayer optical film body with a second liner during at least the forming and removing steps; and

winding up the multilayer optical film body and the second liner into a roll after the forming and removing steps.

Continuity (2)
Continuation In Part 1015241200 · May 21, 2002
Related Publication 20030217806A1 · Nov 27, 2003