Bondloc B641 Bearing Fit Retaining Compound 50ml BONB64150
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Description
ManoMano
General description Bondloc B641 is a single-part anaerobic retaining compound designed for securing cylindrical metal assemblies. It cures when confined between the parts, providing a strong bond suitable for future disassembly. This medium strength compound is ideal for securing bearings, shafts, and other cylindrical components of various sizes and types, and is color-coded yellow for easy identification. Technical specifications Resin: Modified Dimethacrylate Color: Yellow Fixture speed without activator: 10-15 minutes Fixture speed with activator: Less than 5 minutes Viscosity: 400-800 cps Gap fill: Up to 0.2 mm Flash point: Greater than 100°C Shelf life: Minimum 12 months Specific gravity: 1.06 Maximum operating temperature: -55°C to +150°C Full cure time: 12 hours Static shear strength: 12 N/mm² ISO 10123 pin/collar range: 1-16 N/mm² Compatibility and accessories Compatible with cylindrical metal parts, bearings, and shafts requiring secure fitting and future disassembly.
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General description Bondloc B641 is a single-part anaerobic retaining compound designed for securing cylindrical metal assemblies. It cures when confined between the parts, providing a strong bond suitable for future disassembly. This medium strength compound is ideal for securing bearings, shafts, and other cylindrical components of various sizes and types, and is color-coded yellow for easy identification. Technical specifications Resin: Modified Dimethacrylate Color: Yellow Fixture speed without activator: 10-15 minutes Fixture speed with activator: Less than 5 minutes Viscosity: 400-800 cps Gap fill: Up to 0.2 mm Flash point: Greater than 100°C Shelf life: Minimum 12 months Specific gravity: 1.06 Maximum operating temperature: -55°C to +150°C Full cure time: 12 hours Static shear strength: 12 N/mm² ISO 10123 pin/collar range: 1-16 N/mm² Compatibility and accessories Compatible with cylindrical metal parts, bearings, and shafts requiring secure fitting and future disassembly.