Recyclable heavy-gauge films and methods of making same
Methods of making recyclable heavy-gauge films are provided. The methods of the present disclosure involve bonding the inner layers of a coextruded blown film together such that the film is sufficiently thick enough for it to be oriented in the MDO section using the typical 5:1 orientation ratio and result in a film with twice the gauge typically made by the MDO process (while maintaining acceptable stiffness and dimensional rigidity). Recyclable heavy-gauge films formed by the methods are also provided.
1. A method of forming a multi-layer film, comprising:
coextruding a film to form a bubble, wherein the bubble comprises a first side and a second side, each of the first side and the second side comprising a plurality of co-extruded layers and having a first thickness, wherein each plurality of co-extruded layers comprises an inner layer comprising a low melt point polymer having a melting point of about 100° C. or below, wherein the low melt point polymer is metallocene catalyzed, very-low-density polyethylene (m-VLDPE);
heating the low melt point polymer present in the innermost layers to join the first side to the second side to form a multi-layer film having a second thickness that is double the first thickness; and
stretching the multi-layer film, wherein, after stretching, the multi-layer film has a third thickness that is at least about one-fifth of the second thickness, wherein the low melt point polymer is present in the inner layers in an amount of about 75% to about 92% by weight.
2. The method of claim 1 , wherein each plurality of co-extruded layers comprises a middle layer comprising a blend of a first thermoplastic polymer and a second thermoplastic polymer, each of the first thermoplastic polymer and the second thermoplastic polymer having a melt index of about 0.5 g/10 min. or less.
3. A method of forming a recyclable multi-layer film, comprising:
coextruding a film through a die to form a bubble, wherein the bubble comprises a first side and a second side, each of the first and second sides comprising three co-extruded layers and having a first thickness, wherein the three co-extruded layers comprise an outer layer, a middle layer, and an inner layer, wherein the middle layer comprises a blend of a first thermoplastic polymer and a second thermoplastic polymer, each of the first thermoplastic polymer and the second thermoplastic polymer having a melt index of about 0.5 g/ 10 min. or less, and the inner layer comprises a low melt point polymer having a melting point of about 100° C. or below, wherein the low melt point polymer is metallocene catalyzed, very-low-density polyethylene (m-VLDPE);
passing the co-extruded film through parallel rollers, wherein the parallel rollers are configured to heat the low melt point polymer present in the inner layers such that the inner layer on the first side and the inner layer on the second side are bonded together to form a recyclable, multi-layer film having a second thickness that is double the first thickness; and
passing the recyclable multi-layer film through a series of rollers configured to stretch the recyclable multi-layer film in at least one direction, wherein, after stretching, the recyclable multi-layer film has a third thickness that is at least about one-fifth of the second thickness, wherein the low melt point polymer is present in the inner layers in an amount of about 75% to about 92% by weight.
4. The method of claim 3 , wherein the low melt point polymer has a density of about 0.890 g/cm 3 to about 0.915 g/cm 3 .
5. The method of claim 3 , wherein the first thermoplastic polymer is linear low-density polyethylene (LLDPE), super hexene linear low-density polyethylene (super hexene LLDPE), bimodal metallocene linear low-density polyethylene (mLLDPE), or a combination of the foregoing.
6. The method of claim 3 , wherein the second thermoplastic polymer is high-density polyethylene (HDPE), bimodal high-density polyethylene (bimodal HDPE), or a combination of the foregoing.
7. The method of claim 3 , wherein the first thermoplastic polymer has a melt index of about 0.5 g/10 min and the second thermoplastic polymer has a melt index of about 0.45 g/10 min.
8. The method of claim 3 , wherein the first thickness is 5 MIL, the second thickness is 10 MIL, and the third thickness is 2 MIL.
9. A recyclable multi-layer film formed by the method of claim 3 and having a thickness of 2 MIL.