Alle Fallstudien
Automobil-Thermik

ATO in PVB besteht 2.000-Stunden-Schnellbewitterungstest

Ein Tier-1-PVB-Zwischenschichthersteller

Kennzahlen

2,000 hrSchnellbewitterung bestanden
<0.3%Trübung gehalten
PassNIR-Blockierung erhalten
0Signifikante Degradation

01

Die Herausforderung

Before committing to production integration, the Tier-1 PVB interlayer manufacturer required long-term durability validation of ATO nanoparticles in PVB under accelerated weathering conditions. Automotive glazing must maintain optical and thermal performance for the lifetime of the vehicle.

02

Unser Ansatz

Kriya ATO in PVB samples were subjected to 2,000-hour accelerated weathering per automotive industry standards. Optical properties (transmission, haze, SHGC) and mechanical integrity were measured at intervals throughout the test programme.

03

Das Ergebnis

All samples passed the full 2,000-hour accelerated weathering protocol with no significant degradation of optical or thermal properties. Haze remained below 0.3%, and NIR blocking performance was maintained. The results validated ATO-PVB as production-ready for automotive glazing.

Warum Kriya

Kriya’s bottom-up synthesised ATO nanoparticles are inherently more stable than ball-milled alternatives because the controlled synthesis produces uniform particle size with consistent surface chemistry.

Kennzahlen

2,000 hrSchnellbewitterung bestanden
<0.3%Trübung gehalten
PassNIR-Blockierung erhalten
0Signifikante Degradation

Verwendete Produkte

Verwandte Anwendung

Automotive Thermal

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