GATOR 337DC ABRASIVE BELTS 3M® Pro
GATOR 337DC ABRASIVE BELTS structured by macroreplication. The 3M™ Trizact™ 337DC GATOR strips are made of premium aluminium oxide grains distributed by macroreplication. With this technology, dry working of the hardest surfaces can be done at medium pressure without the risk of overhe...
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DIMENSIONS
Longueur | 1020 mm |
Largeur | 50 mm |
Further information
Utilisation | Aciers inoxydables, Aciers rapides, Aciers trempés, Aciers-fontes, Chrome-Cobalt, Matériaux composites, Aluminium, Laiton, Titane |
Sous-catégorie | Bandes abrasives |
Matière | Oxyde d'aluminium |
Support | Coton,X = Rigide |
DIMENSIONS
Longueur | 2000 mm |
Largeur | 50 mm |
Further information
Utilisation | Aciers inoxydables, Aciers rapides, Aciers trempés, Aciers-fontes, Chrome-Cobalt, Matériaux composites, Aluminium, Laiton, Titane |
Sous-catégorie | Bandes abrasives |
Matière | Oxyde d'aluminium |
Support | Coton,X = Rigide |
DIMENSIONS
Longueur | 2000 mm |
Largeur | 50 mm |
Further information
Utilisation | Aciers inoxydables, Aciers rapides, Aciers trempés, Aciers-fontes, Chrome-Cobalt, Matériaux composites, Aluminium, Laiton, Titane |
Sous-catégorie | Bandes abrasives |
Matière | Oxyde d'aluminium |
Support | Coton,X = Rigide |
DIMENSIONS
Longueur | 2000 mm |
Largeur | 50 mm |
Further information
Utilisation | Aciers inoxydables, Aciers rapides, Aciers trempés, Aciers-fontes, Chrome-Cobalt, Matériaux composites, Aluminium, Laiton, Titane |
Sous-catégorie | Bandes abrasives |
Matière | Oxyde d'aluminium |
Support | Coton,X = Rigide |
DIMENSIONS
Longueur | 2000 mm |
Largeur | 50 mm |
Further information
Utilisation | Aciers inoxydables, Aciers rapides, Aciers trempés, Aciers-fontes, Chrome-Cobalt, Matériaux composites, Aluminium, Laiton, Titane |
Sous-catégorie | Bandes abrasives |
Matière | Oxyde d'aluminium |
Support | Coton,X = Rigide |
DIMENSIONS
Longueur | 2000 mm |
Largeur | 50 mm |
GATOR 337DC ABRASIVE BELTS structured by macroreplication.
The 3M™ Trizact™ 337DC GATOR strips are made of premium aluminium oxide grains distributed by macroreplication. With this technology, dry working of the hardest surfaces can be done at medium pressure without the risk of overheating.
Three-dimensional pyramid structure of the GATOR 337DC ABRASIVE BELTS.
The pyramidal structure of the structured abrasive and its distribution in successive layers in uniform blocks give GATOR belts an exceptional cutting capacity. The homogeneous arrangement facilitates the removal of dust and chips. The cut remains constant while reducing the risk of overheating, deformation and discolouration.
Self-sharpening grit and constant renewal.
The self-sharpening pyramids of 3M™ GATOR 337DC Trizact™ ABRASIVE BELTS remain sharp throughout use and break down after repeated use, exposing ever-new abrasive grit. The regular grit renewal cycle significantly reduces processing and costs while significantly extending belt life.
A high strength Film-Lok seal.
GATOR 337DC 3M™ Trizact™ ABRASIVE BELTS are joined by a high strength Film-Lok joint for smooth rotation throughout their service life.
The preferred tapes in cutlery and medical instrument and prosthesis manufacturers' environments.
Trizact™ 337DC GATOR belts offer a finer finish, faster predictable results and up to five times the wear life of conventional abrasive products. Its outstanding qualities make it the most widely used belt type by knife makers for finish polishing of knife blades and in the surgical instrument and implant manufacturing communities for the exceptional finish quality.
Manufacturer's recommendations for use.
Designed for dry use, GATOR 337DC abrasive belts provide excellent consistency under medium pressure conditions.
Best results are achieved with a medium hardness (50-70 Shore A) rubber contact wheel.
3M™ 337DC Trizact™ GATOR abrasive belts have been developed especially for finishing materials that are more difficult to process such as titanium, cobalt, stainless steel, as well as all alloys in the aerospace, aeronautical and medical industries. They are also perfectly effective for finishing processes on carbon steel, copper, bronze, aluminium, composite and synthetic materials.
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