Glue application method for cold seal cohesive packaging
A method for applying a cold seal adhesive is disclosed. The method includes the steps of delivering a cold seal adhesive to a nip between a rotating metering roller and an adjacent rotating transfer roller having a transfer surface, transferring a quantity of adhesive to the transfer surface, rotating the transfer roller whereby the transfer surface contacts a printing die mounted to a rotating die roller disposed adjacent to the transfer roller, rotating the die roller whereby the printing die contacts the at least one adhesive region on the interior surface of the housing and transfers at least a second portion of the quantity of adhesive from the printing die to the at least one adhesive region forming a film as the housing advances between the die roller and the impression roller, the film having a thickness between 0.0015-0.007 inches, and drying the adhesive on the housing.
1. A method for applying a cold seal adhesive, the method comprising the steps of:
delivering a cold seal adhesive to a nip between a rotating metering roller and an adjacent rotating transfer roller having a transfer surface;
transferring a quantity of adhesive to the transfer surface;
rotating the transfer roller whereby the transfer surface contacts a printing die mounted to a rotating die roller disposed adjacent to the transfer roller, whereby at least a first portion of the quantity of adhesive is transferred from the transfer surface to the printing die;
feeding a housing between the die roller and an adjacent rotating impression roller, wherein the housing comprises an interior surface, an opposing exterior surface, a top portion, a bottom portion, and at least one adhesive region on the interior surface, and wherein the impression roller is capable of supporting the exterior surface of the housing, whereby simultaneous rotation of the die roller and the impression roller advances the housing therebetween;
rotating the die roller whereby the printing die contacts the at least one adhesive region on the interior surface of the housing and transfers at least a second portion of the quantity of adhesive from the printing die to the at least one adhesive region forming a film as the housing advances between the die roller and the impression roller, the film having a thickness between 0.0015-0.007 inches; and
drying the adhesive on the housing;
wherein the adhesive is a latex-based adhesive, with a viscosity of no more than 450 centipoise, which adheres to the housing when applied in a liquid form but is capable of drying such that the dried adhesive lacks tackiness and is cohesive only to itself when compressed with a pressure of at least 10,000 pounds per square inch.
2. The method of claim 1 , wherein the transfer roller further comprises a plurality of cells engraved into the transfer surface of the transfer roller, the cells being capable of accepting the quantity of the adhesive from the nip,
wherein the cells contact the printing die mounted to the rotating die roller disposed adjacent to the transfer roller, whereby the adhesive is transferred from the cells to the printing die.
3. The method of claim 1 , wherein the housing is capable of a folded configuration whereby the interior surface of the top portion at least partially contacts the interior surface of the bottom portion.
4. The method of claim 3 , further comprising the steps of:
folding the housing having a cold seal adhesive applied thereon into a folded configuration; and
applying at least 10,000 pounds per square inch of pressure to at least a portion of the exterior surface of the housing opposite the adhesive region when the housing is in the folded configuration.
5. The method of claim 1 , wherein the adhesive is delivered to the nip using a peristaltic pump.
6. The method of claim 1 , wherein the adhesive is dried on the housing using one or more dryers and is advanced to the one or more dryers by a plurality of feed rollers.
7. The method of claim 6 , wherein the one or more dryers is selected from a group consisting of radio-wave dryers, macro-wave dryers, and infrared dryers.