Nano composite functional agglomerate for sunshine plate and method for preparing same
A nanocomposite and functional masterbatch technology, which is applied in the field of functional masterbatches for solar panels, can solve problems such as uneven coating methods and complex co-extrusion processes
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Embodiment 1
[0059] Table 1 Formula of Example 1 of Nanocomposite Functional Masterbatch for Solar Panels
[0060]
formula
components
polycarbonate
Yogurt
Nanocomposite
antioxidant
(1076)
antioxidant
(168)
light stabilizer
(744)
Toughener
(MBS)
Nano
TiO 2
A silane coupling agent
(KH550)
weight /
(Kilogram)
96.2
0.1
0.1
0.1
0.3
0.2
3
[0061] Dry 1 kg of nano-TiO2 with an average particle size of 20-30nm at 90-110°C for 2-4 hours, and dry 0.5 kg of dried nano-TiO 2 Grinding and mixing with 0.5 kg of silane coupling agent KH550 in a ratio of 1:1 in a ball mill for 20 minutes to complete surface treatment and compounding, and then spray drying, ultra-high speed mixing, Inorganic nano-composites are formed by processes su...
Embodiment 2
[0065] Table 2 Example 2 formula of nanocomposite functional masterbatch for solar panels
[0066]
[0067] Concrete preparation method is with embodiment 1. According to the GB / T 16422.2-1999 standard, the standard test sample of the nano-composite functional masterbatch for solar panels was subjected to accelerated weathering for 1500 hours by using a xenon lamp weather resistance tester. After testing, the notched impact strength of the nanocomposite functional masterbatch test sample before accelerated aging is 75% higher than that of the pure polycarbonate test sample before aging, and the light transmittance of the test sample with a thickness of 2mm before accelerated aging is 45%. %, after 1500 hours of xenon lamp climate accelerated aging, the color change grade is 0, the gloss retention rate is 86.75%, the notched impact strength retention rate is 86.54%, and the 25J cantilever beam pendulum is "continuous" when it is impacted without notch.
Embodiment 3
[0069] Table 3 Example 3 formula of nanocomposite functional masterbatch for solar panels
[0070]
[0071] Concrete preparation method is with embodiment 1. According to the GB / T 16422.2-1999 standard, the standard test sample of the nano-composite functional masterbatch for solar panels was subjected to accelerated weathering for 1500 hours by using a xenon lamp weather resistance tester. After testing, the notched impact strength of the nanocomposite functional masterbatch test sample before aging is 95% higher than that of the pure polycarbonate test sample before aging, and the light transmittance of the test sample with a thickness of 2mm before aging is 42%. After 1500 hours of accelerated weathering, the color change grade is 0, the gloss retention rate is 83.24%, the notched impact strength retention rate is 84.79%, and the 25J cantilever pendulum is "continuous" when impacting without notch.
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