Renewable Design for SV-312 Polyurethane Sealant for Windshield Glazing for Rwanda Importers
Short Description:
Description SV-312 is an isocyanate-free, high modulus,non conductive, thixotropic, single component modified polyurethane adhesive, which polymerizes rapidly under the effect of atmospheric moisture. It has been specially designed for bonding of fixed glass in automotive repair. It allows a drive away time of 6 hours in vehicles with or without airbag. *Providing the ambient temperature is at least 23°C and relative humidity 50 %. At lower temperatures and humidities drive away time will be...
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Description
SV-312 is an isocyanate-free, high modulus,non conductive, thixotropic, single component modified polyurethane adhesive, which polymerizes rapidly under the effect of atmospheric moisture. It has been specially designed for bonding of fixed glass in automotive repair.
It allows a drive away time of 6 hours in vehicles with or without airbag.
*Providing the ambient temperature is at least 23°C and relative humidity 50 %.
At lower temperatures and humidities drive away time will be longer.
Where to use
Bonding and sealing for windshield glass, glass fiber reinforced plastic fittings, steel and aluminum board of automobiles.
Key Features
a. Fast curing under room temperature, no sagging, solvent free
b. High bonding strength,
c. Good chemical and water resistance
d. No conductive
e. Excellent noise, vibration and impaction resistance
f. Automotive OEM quality
Technical data sheet
Test standard | Test project | Unit | value |
GB13477 | Flow, sagging or vertical flow | mm | 0 |
GB13477 | surface drying time(25℃,50%R.H.) | min | 30 |
Curing speed | mm/24h | 3 | |
GB/T 531.1-2008 | Durometer Hardness | Shore A | 45 |
GB/T 2793 | Non-volatile components | % | ≥96 |
GB/T 528 | The tensile strength | Mpa | 2.5Mpa |
GB/T 528 | Elongation at break | % | ≥400% |
GB/T 528 | Tear strength | N/mm | ≥5.0 |
Color
White, black, grey
Package
300ml plastic cartridges and 600ml in sausage
Shelf life
9 months
Note
If you want the TDS or MSDS or other details, please contact with our sales person.
in this video i show you how to clay your car. Using this clay bar kit you can leave your paint smooth like new and applying wax after claying the car, will leave it real smooth shiny and clean and the water will bead off the paint. You can clay bar your car anywhere, just make sure you wash it before to avoid putting a lot of dirt on your clay. When waxing you car, only do it in the shade, otherwise the wax will bake into your paint and it becomes a real problem to remove and sometimes it wont come off.
Clay bar kit:
https://www.meguiars.com/en/automotive/products/g1016-smooth-surfacereg-clay-kit/
Turtle Wax:
https://www.turtlewax.com/detail-Super%20Hard%20Shell%20Paste%20Wax-42-45.aspx
How does a transistor work? Our lives depend on this device.
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When I mentioned to people that I was doing a video on transistors, they would say “as in a transistor radio?” Yes! That’s exactly what I mean, but it goes so much deeper than that. After the transistor was invented in 1947 one of the first available consumer technologies it was applied to was radios, so they could be made portable and higher quality. Hence the line in ‘Brown-eyed Girl’ – “going down to the old mine with a transistor radio.”
But more important to our lives today, the transistor made possible the microcomputer revolution, and hence the Internet, and also TVs, mobile phones, fancy washing machines, dishwashers, calculators, satellites, projectors etc. etc. A transistor is based on semiconductor material, usually silicon, which is ‘doped’ with impurities to carefully change its electrical properties. These n and p-type semiconductors are then put together in different configurations to achieve a desired electrical result. And in the case of the transistor, this is to make a tiny electrical switch. These switches are then connected together to perform computations, store information, and basically make everything electrical work intelligently.
Special thanks to PhD Comics for awesome animations: https://bit.ly/16ZXcVY
And thanks to Henry Reich and Vanessa Hill for reviews of earlier drafts of this video.
Music: Kevin MacLeod (incompetech.com) Decisions