FIBREX PAPERSTAR CREPING BLADE
-
Thickness: 0.6 to 1.25 mm
Width: 88 to 125 mm
Length: up to 8m
-
Sliding angle: -20° to 0°
Bevel angle: 75° to 90°
-
BLUE: high durability
GENTLE: reduced wear on the yankee and optimal tissue quality
TECHNICAL INFORMATION
CERAMIC TIP
Engineered for the specific tissue making process and creping process:
Edge crack: <4 mm (outside working area)
Ceramic treatment by thermal sprayingHardness: 1100 - 1400 HVIT Vickers (BLUE)
1000 - 1300 HVIT Vickers (GENTLE)
finsihing by precise diamond grinding and polishingRoughness (Ra): < 0.4 müHighly wear-resistant and tough oxide ceramic materials. Designed for resisting high mechanical load, friction on the sliding and impact surfaces, and thermal constraints.
HIGH PERFORMANC COATED BLADES
FIBREX PAPERSTAR
A high-performance, Swiss-made range of coated blades engineered to meet individual customer needs and deliver outstanding results in tissue and paper production.
Engineered for maximum precision and performance: Through our premium PAPERSTAR product lines, Daetwyler FIBREX delivers custom coating blades (0.30–0.70 mm) and creping blades (0.60–1.25 mm).
COATING FEATURES
-
High durability for high speed machine, pre- & top-coat
-
Improved coated paper quality for top-coat position, low to medium speed.
Reduce wear on the Yankee and optimal tissue quality
CREPING BLADES
-
These wear-resistant, coated blades ensure consistent product quality while significantly reducing resource consumption during production.
KEY FACTS
-
The edge protection ensures that the coating of the product remains fully protected until it is used on the machine and reduces the risk of injury for workers.
-
This versatile range boosts your production efficiency while ensuring consistently high tissue quality across all your products.
-
This coated blade solution ensures highly efficient production while keeping resource consumption to a minimum.
-
This advanced solution minimizes vibrations to eliminate chatter marks, ensuring flawless surface quality and highly sustainable, cost-efficient manufacturing.