KB 1613 R80

KB 1613 R80
Model:-
Brand:-
Origin:Made In India
Category:Chemicals / Adhesives & Sealants
Label:one component epoxy , electrically insulat , high temperature epo
Price: -
Min. Order:1 pc
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Product Description

Kohesi Bond KB 1613 R80 is a single component epoxy system suitable for bonding, sealing, potting and encapsulation applications. Being a one component system, it does not require any mixing and offers an unlimited working life at room temperature. Unlike other one component epoxies, this product can be cured at temperatures as low as 80°C. Although superlative properties are obtained with higher temperature cures, good mechanical strength properties and dimensional stability are furnished by 80°C cures as well. KB 1613 R80 offers an extensive serviceable temperature range of -70°C to +180°C. This product’s exquisite flow properties and lower exotherm makes it ideal for use in potting and encapsulation applications for 1/2” thicknesses and beyond. KB 1613 R80 adheres well to a wide variety of substrates including metals, ceramics, most plastics and glass. In addition to superior electrical insulation and thermal conductivity, KB 1613 R80 also offers astounding chemical resistance to a variety of fuels, oils and water. It has a tan – yellow color. With a unique combination of remarkable performance, ease of use and speedy cures at convenient temperatures, KB 1613 R80 is widely used in electronics, aerospace, major OEM and similar applications.

PRODUCT HIGHLIGHTS

   Thermally conductive
   Lower exotherm while curing
   Expeditious cures at 80°C or higher
   Superior dimensional stability
   Exceptional electrical insulation properties
   Unlimited working life at room temperature

TYPICAL APPLICATIONS

   Potting
   Encapsulation
   Sealing
   Coating
   Bonding

Industrial Certification : RoHS Compliant

Packaging : Cans, Pails, Syringes

KB 1613 R80 1

Member Information

Kohesi Bond
Country/Region:India
Business Nature:Manufacturer
Phone:9819357209
Contact:Utsav (Managing Director)
Last Online:17 Oct, 2017