Conventional and UV Self adhesive blankets that use the unique ThermaSphere® compressible layer technology for 2 piece can decorating and label printing.
INNOVATION
Kinyo a major global manufacturer leads the industry with innovative blanket development.
Our commitment is to continue developing and delivering innovative products that improve quality and extend blanket life on press.
TECHNOLOGY
ThermaSphere® compressible layer, a process unique to Kinyo. This is the most advanced production technique available and is the next generation in blanket manufacturing.
RELIABILITY
The consistency and quality of our new ThermaSphere® compressible layer technology and improved gauge control from our advanced buffing techniques gives a superior result, faster recovery on press, improved smash resistance and reduced gauge loss.
VALUE
Improvements provided by ThermaSphere® compressible layer means exceptional long life from the blanket, improving production time and reducing down-time on press.
ECOLOGY
ThermaSphere® compressible layer, production is solvent free, another first in innovation from Kinyo.
Tough ThermaSphere® compressible layer, stays stable, gives longer life on press through improved shock absorption with rapid recovery. Gives constant printing conditions with very low gauge loss.
Ground breaking ecological improvement in blanket manufacturing resulting in solvent free laminating process.
Buffed and polished surface ensures good ink transfer on both conventional and UV inks.
Polyester backed adhesive makes the blanket easy to handle, mount and remove leaving no residue on the cylinder.
SURFACE
Rubber compound | Conventional inks |
Surface finish | Buffed and polished |
Roughness (Ra) | 0.5 μm |
Color | Blue |
CONSTRUCTION
Compressible layer design | ThermaSphere® |
Nominal thickness | 1.70 / 1.95 mm |
Fabric plies | 3 plies |
PHYSICAL PROPERTY
Thickness range | 1.69 - 1.72 mm/ 1.96 - 1.98 mm |
Overall hardness (Shore A) | 83° |
Micro hardness (Shore A) | 55° |
Tensile strength at break | > 60 N/mm |
Elongation at 10 N/mm | < 1.2 % |
Compressibility, indentation at 0.20 mm | 1.59 MPa |