Fiber-Optic-Bond 23, High Temp Epoxy Adhesive, Fast Cure, Low Visc, 2 Part, Fiber Optic Connectors

Customer rating 4.7 stars

Imported from USA | Ships in 10 working days

5% additional discount on UPI | Cash On Delivery available

1

₹38860 -39% ₹23700/-

The price at cart2india.com is inclusive of custom duties, GST, freight forwarding and other charges.

Free Shipping across India. Powered by BlueDart.
EMI and GST Invoice available.

Product Information


Specification
Brand : Epoxy International
BulletPoint1 : Components: 2 component - requires mixing
BulletPoint2 : Mix Ratio by weight: 100:10 / Resin:Hardener
BulletPoint3 : Benefits: Low viscosity Thermal shock and impact resistant Low stress connections Color coded
BulletPoint4 : Cure Type: Room temperature or Heat Cure
BulletPoint5 : Operating Temperature: -60 to 175 C
Color : Yellow,Green
CompatibleMaterial : Glass
CompatibleMaterial1 : Aluminum
CompatibleMaterial2 : Ceramic
CompatibleMaterial3 : Glass
CompatibleMaterial4 : Alloy Steel
ItemForm : Liquid
ItemName : Fiber-Optic-Bond 23, High Temp Epoxy Adhesive, Fast Cure, Low Visc, 2 Part, Fiber Optic Connectors
ItemPackageQuantity : 1
ItemTypeKeyword : conductive-adhesives
Manufacturer : Epoxy International
Material : Resin
NumberOfItems : 1
PartNumber : Fiber-Optic-Bond 23,-100
ProductDescription : Cure Type: Room temperature or Heat Cure Operating Temperature: -60 to 175 C Typical Applications: Fiber optic assembly, multimode and single mode connectors, small potting and sealing applications. Appearance: (Unmixed) Light yellow(cured) Reddish-amber Viscosity @ 25 C: 2100 Specific Gravity: 1.19 Pot Life: 2 hours 24 hours: @ 25C 5 minutes: @ 100C Glass Transition (Tg), ultimate, C: 120 Hardness, Shore D: 85 Refractive Index: 1.54 Tensile Shear, alum to alum, psi: 2800 Dielectric Strength: 15.7 kV/mm 400 kV/in Fiber-Optic-Bond 23, High Temp Epoxy Adhesive, Fast Cure, Low Visc, 2 Part, Fiber Optic Connectors is a low viscosity, two-component epoxy formulation that signals both proper mixing and curing when bonding fiber optic bundles, potting glass fibers, and/or terminating single or multi-channel fiber optic connectors. Although this unique three-step color-change formulation unmixed components are light yellow, it turns light green on mixing, and changes again to a deep reddish-amber after the REQUIRED 100C HIGH TEMPERATURE CURE. It exhibits good wicking, and develops strong, tough, mechanically stable bonds to a wide variety of fiber optic and optical materials that includes most metals, ceramics, glass and many plastics.Fiber-Optic-Bond 23, High Temp Epoxy Adhesive, Fast Cure, Low Visc, 2 Part, Fiber Optic Connectors has good impact and thermal shock resistance, and yields excellent low stress, pot-and-polish connections which do not piston during cycle tests. It is also resistant to water and weathering, vapors and gases, most petroleum products, and an extended range of organic and inorganic environments. Shorter cures at higher temperatures (e.g. 2 minutes at 120C or 1 minute at 150C) are also possible. An additional post-cure of 30 minutes at 150C is recommended when application temperatures higher than 150C are anticipated.For safe handling information on this product, consult the Material Safety Data Sheet, (MSDS).1
ProductSiteLaunchDate : 2016-03-28T14:21:51.153Z
UnspscCode : 43223300
WaterResistanceLevel : water_resistant

Questions & Answers

Have a question? Ask experts

?
No question found

Ratings & Review

Rating Breakdown (average)

5*
11
4*
2
3*
1
2*
0
1*
0

Read all 14 customer reviews

Awesome product and great experience.

Truly exceeded my expectations.

High quality and great value.

Performs perfectly and looks amazing.

Just fine for the price, not more.

Everything about this is perfect.

This deserves more than 5 stars.

IÕm extremely impressed with this item.

Nice features and easy to handle.

IÕm extremely impressed with this item.

Will be purchasing again soon.

Everything about this is perfect.

Happy with the quality and performance.

This deserves more than 5 stars.

Have an opinion on this page? Let's hear it.