Acetic anhydride digestion transforms silicone coatings into recoverable siloxanes, enabling complete material recycling without exotic process aids.
Glycolysis of recycled PET with specific hydrophobes yields stable polyols, eliminating phase separation and high viscosity issues.
Segmented twin-screw and single-screw extruders remove odorous contaminants from recycled polymers, achieving 40% to 90% better deodorization rates.
A thermoplastic molding composition blends recycled acrylonitrile-butadiene-styrene with virgin polymers to restore impact resistance and toughness.
A thermoplastic polyether block amide copolymer blends with a hydrosilylation-cured silicone composition to form a soft elastomer.
Introducing a minimal volume of gaseous rinsing medium into a receiving tank detaches contaminants while maintaining a vacuum below 100 mbar.
Preheating thick loss films enables twisting into large twisted strings, bypassing compression limits that restrict cross-sectional area.
Optimized liquid jet milling reduces specific energy consumption and heat generation while producing uniform rubber granulates.
A guide system enables translatory displacement of an assembly plate, reducing fitting time for injection moulding tools.
Inclined conveyor parallelizes empty containers on carriers to feed detection units, resolving throughput bottlenecks caused by serial isolation of empties.
Conditioning PET feedstock with recycled oligomers reduces viscosity, enabling high pigment content recycling without equipment clogging.