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130UV UV Curable Cyanoacrylate Adhesive, Clear
Permabond® 130UV is a low-viscosity, solvent-free, light-cure cyanoacrylate adhesive that fluoresces under UV light. It is developed for applications where fast bonding between opaque substrates and tack-free fillets are needed. The UV light cure facilitates the curing, minimising the blooming effect, and allowing rapid bonding through transparent parts. When used as a UV-curable adhesive or coating, the moisture cure provides polymerization in small shadow areas.
- Cures in shadow areas
- Good adhesion to metals and plastics
- Tack-free in seconds using UV torch (flashlight)
- Reduced odor, reduced bloom
- Good open time for accurate alignment
- Transparent in a thin layer
- Excellent environmental resistance
- Low-hazard SDS
- ISO 10993-5 Cytotoxicity Biocompatibility
PAC Item Code | C100371 |
---|---|
Brand | Permabond |
Type | Cyanoacrylate |
Physical Properties of Uncured Adhesive
- Chemical composition: Ethyl cyanoacrylate
- Appearance: Yellow before cure. Clear in a thin bond line
- Viscosity @ 25°C: 200 mPa.s (cP)
- Specific gravity: 1.1
Typical Curing Properties
- Open time (moisture cure only [22°C/50% RH])
- NBR: 3s
- EPDM: 20s
- Stainless steel: 30s
- Mild steel: 30s
- Aluminum: 30s
- Nylon 6: 20s
- ABS: 10s
- PC: 40s
- PMMA: 80s
- PETG: 55s
- Tack free time (UV cure)*
- ≤1s (spot LED, 150 mW/cm2, 405nm)
- ≤5s (spot LED, 25mW/cm2, 405nm)
*The time depends on the power of the UV lamp, its spectral output, and the distance between the lamp and the components.
Typical Performance of Cured Adhesive
- Shear strength*:
- Abraded mild steel 12-17 N/mm2 (1740 psi - 2465 psi)
- Stainless steel 14-19 N/mm2 (2030 psi - 2755 psi)
- Aluminium 5-9 N/mm2 (725 psi - 1305 psi)
- Polycarbonate 6-10 N/mm2 (870 psi - 1450 psi)
- PMMA 7-11 N/mm2 (1015 psi - 1595 psi)
- PA6 7-11 N/mm2 (1015 psi - 1595 psi)
- PVC 8-12 N/mm2 (1160 psi - 1740 psi)
- ABS 6-10 N/mm2 (870 psi - 1450 psi)
- Hardness (ISO868): 70-80 Shore D
*24 hour moisture cure only. Higher strengths can be obtained on clear substrates using UV light secondary cure. Strength results will vary depending on the level of surface preparation and gap.