Coextrusion film and method of mixing
A coextrusion film has a core layer made of thermoplastic elastomer, and first and second outer layers sandwiching the core layer. The outer layers are each formed from a polymer having a lower elasticity than the thermoplastic elastomer of the core, each have a layer thickness of less than 15 μm, each have a density of less than 0.800 g/cm 3 , and each have more than 500 gas-filled cells per 1 cubic millimeter of volume.
1. A coextrusion film comprising:
a core layer made of thermoplastic elastomer; and
first and second outer layers sandwiching the core layer, each formed from a polymer having a lower elasticity than the thermoplastic elastomer of the core, each having a layer thickness of less than 15 μm, each having a density of less than 0.800 g/cm 3 , and each having more than 10,000 gas-filled cells per 1 cubic millimeter of volume such that seen in top view the cells of each outer layer overlap in part.
2. The coextrusion film defined in claim 1 , wherein the outer layers each have a density of less than 0.7 g/cm 3 .
3. The coextrusion film defined in claim 1 , wherein the outer layers each have a thickness between 0.5 and 10 μm.
4. The coextrusion film defined in claim 1 , wherein the core layer has a thickness between 15 and 150 μm.
5. The coextrusion film defined in claim 1 , wherein the thermoplastic elastomer of the core layer is a styrene block copolymer, a thermoplastic polyurethane, or a polyolefinic block copolymer.
6. The coextrusion film defined in claim 1 , wherein the outer layers are each of a polyolefin.
7. The coextrusion film defined in claim 6 , wherein the polyolefin is a mixture of polyethylene and polypropylene.
8. The coextrusion film defined in claim 1 , wherein the outer layers each contain a filler of particles as a nucleating agent.
9. A coextrusion film comprising:
a core layer made in a first extruder of a thermoplastic elastomer; and
first and second outer layers formed from a polymer having a lower elasticity than the thermoplastic elastomer of the core layer by adding a liquid or gaseous propellant to a thermoplastic base substance in respective second extruders at a propellant pressure between 35 and 75 bar, the first and second layers and core layer being coextruded in a nozzle while maintaining the propellent at the propellant pressure such that when the first and second layers issue from the nozzle into ambient pressure the first and second layers each have a layer thickness of less than 15 μm, a density of less than 0.800 g/cm 3 , and more than 10,000 gas-filled cells per 1 cubic millimeter of volume in a homogenous distribution such that seen in top view the cells of each outer layer overlap in part.